3900 Series Base Station V100R009C00
Technical Description Issue
14
Date
2016-01-30
HUAWEI TECHNOLOGIES CO., LTD.
Copyright © Huawei Technologies Co., Ltd. 2016. All rights reserved. No part of this document may be reproduced or transmitted in any form or by any means without prior written consent of Huawei Technologies Co., Ltd.
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Issue 14 (2016-01-30)
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3900 Series Base Station Technical Description
About This Document
About This Document Huawei 3900 series base stations adopt a uniform modular design for multiple radio network systems. These base stations support the co-existence of devices serving different modes at the same site, sharing of base station resources, and unified operation and maintenance. With these merits, operators' requirements of evolution to multimode base stations become possible. This document describes the network architecture, logical structure, physical devices, product specifications, and reliability of 3900 series base stations. NOTE
l 3900 series base stations described in this document do not include the LampSite. For technical descriptions about the LampSite, see LampSite Technical Description. l If eNodeB is used rather than eNodeB FDD or eNodeB TDD in this document, the eNodeB can be an eNodeB FDD or an eNodeB TDD. If LTE is used rather than LTE FDD or LTE TDD in this document, the LTE mode can be the LTE FDD mode or LTE TDD mode. l In this document, G is short for GSM, U is short for UMTS, L is short for LTE FDD and T is short for LTE TDD.
Product Version The following table lists the product versions related to this document. Product Name
Solution Version
Product Version
BTS3900
l l l l
V100R009C00
BTS3900A BTS3900L
SRAN9.0 GBSS16.0 RAN16.0 eRAN7.0
BTS3900AL DBS3900
l SRAN9.0 l GBSS16.0 l RAN16.0 l eRAN7.0 l eRAN TDD 7.0
BTS3900C
l SRAN9.0 l RAN16.0
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3900 Series Base Station Technical Description
About This Document
This document is intended for: l
Network planning engineers
l
Field engineers
l
System engineers
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3900 Series Base Station Technical Description
Contents
Contents About This Document.....................................................................................................................ii 1 Changes in the 3900 Series Base Station Technical Description..........................................1 2 Network Architecture................................................................................................................. 19 2.1 BTS in the RAN Physical Layer...................................................................................................................................20 2.2 BTS in the RAN Logical Layer.................................................................................................................................... 21 2.3 Mapping of a BTS in the RAN Physical Layer and RAN Logical Layer.................................................................... 23
3 Logical Structure.......................................................................................................................... 25 3.1 BTS Subsystems........................................................................................................................................................... 26 3.2 BTS Functional Structure............................................................................................................................................. 27 3.3 Deployment of 3900 Series Base Stations....................................................................................................................28 3.3.1 Co-MPT Base Stations.............................................................................................................................................. 28 3.3.2 Separate-MPT Base Stations..................................................................................................................................... 29 3.3.3 Different Functions with Different Deployment Methods........................................................................................ 31
4 Operation and Maintenance......................................................................................................33 5 Physical Devices.......................................................................................................................... 40 5.1 Cabinets........................................................................................................................................................................ 41 5.2 BBU.............................................................................................................................................................................. 42 5.3 RF Module.................................................................................................................................................................... 42 5.3.1 RFU........................................................................................................................................................................... 43 5.3.2 RRU........................................................................................................................................................................... 44 5.3.3 AAU...........................................................................................................................................................................47
6 Product Specifications................................................................................................................ 49 6.1 Technical Specifications of the BBU............................................................................................................................50 6.1.1 Capacity Specifications............................................................................................................................................. 50 6.1.2 Baseband Specifications............................................................................................................................................ 55 6.1.3 Signaling Specifications............................................................................................................................................ 79 6.1.4 CPRI Specifications...................................................................................................................................................91 6.1.5 Transmission Port...................................................................................................................................................... 99 6.1.6 Engineering Specifications...................................................................................................................................... 100 6.2 Technical Specifications of RFUs.............................................................................................................................. 105 6.2.1 DRFU Technical Specifications.............................................................................................................................. 105 Issue 14 (2016-01-30)
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Contents
6.2.2 GRFU Technical Specifications...............................................................................................................................110 6.2.3 WRFU Technical Specifications..............................................................................................................................117 6.2.4 WRFUa Technical Specifications............................................................................................................................125 6.2.5 WRFUd Technical Specifications............................................................................................................................129 6.2.6 WRFUe Technical Specifications............................................................................................................................137 6.2.7 CRFUd Technical Specifications.............................................................................................................................144 6.2.8 CRFUe Technical Specifications.............................................................................................................................149 6.2.9 LRFU Technical Specifications...............................................................................................................................153 6.2.10 LRFUe Technical Specifications........................................................................................................................... 156 6.2.11 MRFU Technical Specifications............................................................................................................................ 162 6.2.12 MRFUc Technical Specifications.......................................................................................................................... 179 6.2.13 MRFUd Technical Specifications..........................................................................................................................185 6.2.14 MRFUe Technical Specifications.......................................................................................................................... 202 6.3 Technical Specifications of RRUs.............................................................................................................................. 210 6.3.1 RRU3004 Technical Specifications.........................................................................................................................210 6.3.2 RRU3008 Technical Specifications.........................................................................................................................216 6.3.3 RRU3801E Technical Specifications...................................................................................................................... 228 6.3.4 RRU3804 Technical Specifications.........................................................................................................................235 6.3.5 RRU3805 Technical Specifications.........................................................................................................................243 6.3.6 RRU3806 Technical Specifications.........................................................................................................................251 6.3.7 RRU3808 Technical Specifications.........................................................................................................................257 6.3.8 RRU3821E Technical Specifications...................................................................................................................... 273 6.3.9 RRU3824 Technical Specifications.........................................................................................................................281 6.3.10 RRU3826 Technical Specifications.......................................................................................................................286 6.3.11 RRU3828 Technical Specifications....................................................................................................................... 292 6.3.12 RRU3829 Technical Specifications.......................................................................................................................302 6.3.13 RRU3832 Technical Specifications....................................................................................................................... 311 6.3.14 RRU3838 Technical Specifications.......................................................................................................................327 6.3.15 RRU3839 Technical Specifications.......................................................................................................................336 6.3.16 RRU3201 Technical Specifications.......................................................................................................................345 6.3.17 RRU3203 Technical Specifications.......................................................................................................................352 6.3.18 RRU3220 Technical Specifications.......................................................................................................................359 6.3.19 RRU3220E Technical Specifications.................................................................................................................... 366 6.3.20 RRU3221 Technical Specifications.......................................................................................................................374 6.3.21 RRU3222 Technical Specifications.......................................................................................................................381 6.3.22 RRU3229 Technical Specifications.......................................................................................................................388 6.3.23 RRU3240 Technical Specifications.......................................................................................................................396 6.3.24 RRU3249 Technical Specifications.......................................................................................................................404 6.3.25 RRU3260 Technical Specifications....................................................................................................................... 411 6.3.26 RRU3262 Technical Specifications.......................................................................................................................419 6.3.27 RRU3268 Technical Specifications.......................................................................................................................428 6.3.28 RRU3269 Technical Specifications.......................................................................................................................437 Issue 14 (2016-01-30)
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Contents
6.3.29 RRU3281 Technical Specifications.......................................................................................................................446 6.3.30 RRU3668 Technical Specifications.......................................................................................................................456 6.3.31 RRU3841 Technical Specifications.......................................................................................................................460 6.3.32 RRU3908 Technical Specifications ......................................................................................................................468 6.3.33 RRU3926 Technical Specifications.......................................................................................................................486 6.3.34 RRU3928 Technical Specifications.......................................................................................................................498 6.3.35 RRU3929 Technical Specifications.......................................................................................................................510 6.3.36 RRU3936 Technical Specifications.......................................................................................................................525 6.3.37 RRU3938 Technical Specifications.......................................................................................................................538 6.3.38 RRU3939 Technical Specifications.......................................................................................................................550 6.3.39 RRU3942 Technical Specifications.......................................................................................................................559 6.3.40 RRU3952 Technical Specifications.......................................................................................................................583 6.3.41 RRU3953/RRU3953w Technical Specifications...................................................................................................602 6.3.42 RRU3958 Technical Specifications.......................................................................................................................624 6.3.43 RRU3959/RRU3959w Technical Specifications...................................................................................................634 6.3.44 RRU3961 Technical Specifications.......................................................................................................................656 6.3.45 RRU3971 Technical Specifications.......................................................................................................................671 6.3.46 RRU3952m Technical Specifications....................................................................................................................681 6.3.47 RRU3168 Technical Specifications.......................................................................................................................693 6.3.48 RRU3232 Technical Specifications.......................................................................................................................697 6.3.49 RRU3251 Technical Specifications.......................................................................................................................702 6.3.50 RRU3252 Technical Specifications.......................................................................................................................707 6.3.51 RRU3253 Technical Specifications.......................................................................................................................712 6.3.52 RRU3256 Technical Specifications.......................................................................................................................717 6.3.53 RRU3259 Technical Specifications.......................................................................................................................722 6.3.54 RRU3276 Technical Specifications.......................................................................................................................727 6.3.55 RRU3278 Technical Specifications.......................................................................................................................732 6.4 Technical Specifications of AAUs..............................................................................................................................738 6.4.1 AAU3902 Technical Specifications........................................................................................................................ 738 6.4.2 AAU3910 Technical Specifications........................................................................................................................ 758 6.4.3 AAU3911 Technical Specifications.........................................................................................................................771 6.4.4 AAU3920 Technical Specifications........................................................................................................................ 789 6.4.5 AAU3940 Technical Specifications........................................................................................................................ 800 6.5 Engineering Specifications of Cabinets......................................................................................................................812 6.5.1 BTS3900 Engineering Specifications......................................................................................................................812 6.5.2 BTS3900L Engineering Specifications................................................................................................................... 818 6.5.3 BTS3900A Engineering Specifications...................................................................................................................823 6.5.4 BTS3900AL Engineering Specifications................................................................................................................ 829 6.5.5 DBS3900 Engineering Specifications..................................................................................................................... 834 6.5.6 BTS3900C Engineering Specifications................................................................................................................... 837
7 Reliability....................................................................................................................................843
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1 Changes in the 3900 Series Base Station Technical Description
3900 Series Base Station Technical Description
1
Changes in the 3900 Series Base Station Technical Description This section describes changes in the 3900 Series Base Station Technical Description of each version.
14 (2016-1-30) This is Issue 14. Compared with Issue 13 (2015-10-30), this issue includes the following new topics: l
6.2.12 MRFUc Technical Specifications
l
6.3.42 RRU3958 Technical Specifications
l
6.3.45 RRU3971 Technical Specifications
l
6.3.24 RRU3249 Technical Specifications
l
6.3.29 RRU3281 Technical Specifications
l
6.3.54 RRU3276 Technical Specifications
l
6.3.55 RRU3278 Technical Specifications
Compared with Issue 13 (2015-10-30), this issue includes the following changes. Topic
Change Description
6.1.1 Capacity Specifications
Modified the capacity specifications of the UMTS and LTE FDD modes.
6.1.2 Baseband Specifications
l Modified descriptions of hybrid configurations for LTE FDD cells. l Added the maximum number of UEs in RRC Connected Mode in the smartphone traffic model for LTE FDD. l Added constraints on LTE FDD cell hybrid configurations when the UBBPd works in co-BBP scenarios.
6.1.3 Signaling Specifications
Issue 14 (2016-01-30)
Deleted formulas for calculating signaling specifications.
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1 Changes in the 3900 Series Base Station Technical Description
3900 Series Base Station Technical Description
Topic
Change Description
6.2.11 MRFU Technical Specifications
Added specifications of the MRFU V6.
6.3.41 RRU3953/RRU3953w Technical Specifications
Added specifications of the RRU3953 working in the 900 MHz frequency band.
6.3.43 RRU3959/RRU3959w Technical Specifications
Added specifications of the RRU3959 working in the 2100 MHz frequency band.
6.4.3 AAU3911 Technical Specifications
Added specifications of the RRU3952m (2100 MHz) working in LTE mode.
6.4.5 AAU3940 Technical Specifications
Added the power specifications of the AAU3940 (DC). Other specifications are the same as those of the AAU3940 (AC).
Compared with Issue 13 (2015-10-30), this issue does not exclude any topics.
13 (2015-10-30) This is Issue 13. Compared with Issue 12 (2015-08-30), this issue does not include any new topics. Compared with Issue 12 (2015-08-30), this issue includes the following changes. Topic
Change Description
6.1.3 Signaling Specifications
Modified the signaling specifications of eNodeB FDD.
6.3.46 RRU3952m Technical Specifications
Added the specifications of the RRU3952m (2100 MHz) working in LTE mode.
6.4.2 AAU3910 Technical Specifications
Modified the technical specifications of the AAU3910.
6.5.3 BTS3900A Engineering Specifications, 6.5.4 BTS3900AL Engineering Specifications and 6.5.6 BTS3900C Engineering Specifications
Optimized the description of the cabinet heat dissipation capability.
6.5.1 BTS3900 Engineering Specifications and 6.5.2 BTS3900L Engineering Specifications
Added biological requirements.
Compared with Issue 12 (2015-08-30), this issue does not exclude any topics.
12 (2015-08-30) This is Issue 12. Issue 14 (2016-01-30)
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1 Changes in the 3900 Series Base Station Technical Description
3900 Series Base Station Technical Description
Compared with Issue 11 (2015-05-30), this issue does not include any new topics. Compared with Issue 11 (2015-05-30), this issue includes the following changes. Topic
Change Description
6.1.1 Capacity Specifications
Added configuration scenarios of the GTMUc board.
6.1.2 Baseband Specifications
Modified the maximum number of uplink synchronized UEs of the LBBPd boards.
6.1.4 CPRI Specifications
Added specifications of the GTMUc board.
6.1.3 Signaling Specifications
Modified descriptions of the traffic model for eNodeB FDD.
6.2.13 MRFUd Technical Specifications
Added the specifications of the MRFUd V6 and MRFUdw V6.
6.5.3 BTS3900A Engineering Specifications
Added specifications of the BTS3900A (Ver.E) cabinet.
Compared with Issue 11 (2015-05-30), this issue does not exclude any topics.
11 (2015-05-30) This is Issue 11. Compared with Issue 10 (2015-03-30), this issue includes the following new topics: l
6.3.28 RRU3269 Technical Specifications
Compared with Issue 10 (2015-03-30), this issue includes the following changes. Topic
Change Description
6.1.3 Signaling Specifications
l Added descriptions of the traffic model for eNodeB FDD. l Modified the signaling specifications of co-MPT multimode base stations.
Issue 14 (2016-01-30)
6.1.2 Baseband Specifications
Added restrictions on the hybrid configuration of 2R and 4R cells supported by a UBBPd board.
6.2.10 LRFUe Technical Specifications
Modifed the total bandwidth between the maximum frequency and the minimum frequency of the spectrums for two carriers when the LRFUe works in the DD 800 MHz frequency band.
6.2.13 MRFUd Technical Specifications
Added the specifications of the MRFUd when it works in the 2100 MHz frequency band.
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1 Changes in the 3900 Series Base Station Technical Description
3900 Series Base Station Technical Description
Topic
Change Description
6.3.36 RRU3936 Technical Specifications
Modified the receiver sensitivity of the RRU3936 when it works in LTE FDD mode and operates in the 1900 MHz frequency band.
6.3.46 RRU3952m Technical Specifications
Added the specifications of the RRU3952m when it works in the 2100 MHz 2T4R and 2100 MHz 2T2R+1800 MHz 2R modes.
6.4.3 AAU3911 Technical Specifications
l Optimized the information structure. l Added the following configuration scenarios: 2100 A (2T4R 2x60 W) + 1800 P (4 Ports) + 2600 P (4 Ports) + 700-900 P (2 Ports) and 2100 A (2T4R 2x60 W) + 1800 A (2T4R 2x60 W) + 2600 P (4 Ports) + 700-900 P (2 Ports). l Modified the maximum input power per port for antennas.
Compared with Issue 10 (2015-03-30), this issue does not exclude any topics.
10 (2015-03-30) This is Issue 10. Compared with Issue 09 (2015-01-30), this issue includes the following new topics: l
6.3.19 RRU3220E Technical Specifications
l
6.3.40 RRU3952 Technical Specifications
l
6.4.5 AAU3940 Technical Specifications
Compared with Issue 09 (2015-01-30), this issue includes the following changes.
Issue 14 (2016-01-30)
Topic
Change Description
6.1.3 Signaling Specifications
Modified the signaling specifications of the eNodeB.
6.2.13 MRFUd Technical Specifications, 6.2.14 MRFUe Technical Specifications, 6.2.3 WRFU Technical Specifications, and 6.3.4 RRU3804 Technical Specifications
Modified the CPRI data rate.
6.3.32 RRU3908 Technical Specifications
Added the following description: The power capacity of the RRU3908 V2 is 2x60 W. When the working temperature is considered, the actual power capacity can only reach 2x40 W.
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1 Changes in the 3900 Series Base Station Technical Description
3900 Series Base Station Technical Description
Topic
Change Description
6.3.41 RRU3953/RRU3953w Technical Specifications
l Added the 1900 MHz frequency band for the RRU3953. l Added the following description: For RRU3953w, the scenario where the third-order intermodulated signal falls in the receive frequency range of a configured carrier is not supported.
RRU3638 Technical Specifications, 6.3.13 RRU3832 Technical Specifications, 6.3.36 RRU3936 Technical Specifications, 6.3.37 RRU3938 Technical Specifications, and 6.3.43 RRU3959/RRU3959w Technical Specifications
Modified the weight of the RRU.
6.3.43 RRU3959/RRU3959w Technical Specifications
Added the following description: For RRU3959w, the scenario where the thirdorder intermodulated signal falls in the receive frequency range of a configured carrier is not supported.
Compared with Issue 09 (2015-01-30), this issue does not exclude any topics.
09 (2015-01-30) This is Issue 09. Compared with Issue 08 (2014-12-30), this issue includes the following new topics: l
6.3.46 RRU3952m Technical Specifications
l
6.4.4 AAU3920 Technical Specifications
Compared with Issue 08 (2014-12-30), this issue includes the following changes.
Issue 14 (2016-01-30)
Topic
Change Description
6.1.1 Capacity Specifications
Modified the capacity specifications of 3900 series base stations working in multiple modes.
6.1.3 Signaling Specifications
Modified signaling specifications of a coMPT multimode base station.
6.3.32 RRU3908 Technical Specifications
Added the LTE FDD and UL modes when the RRU3908 V1 working in the 1900 MHz frequency band.
6.4.3 AAU3911 Technical Specifications
Added the configuration scenario for AAU3911: 1800A(2T4R 2x60W)+ 2100P(4 Ports)+ 2600 P(4 Ports)+700~900P(2 Ports)
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1 Changes in the 3900 Series Base Station Technical Description
3900 Series Base Station Technical Description
Compared with Issue 08 (2014-12-30), this issue does not exclude any topics.
08 (2014-12-30) This is Issue 08. Compared with Issue 07 (2014-11-15), this issue includes the following new topics: l
4 Operation and Maintenance
l
6.3.47 RRU3168 Technical Specifications
l
6.4.3 AAU3911 Technical Specifications
Compared with Issue 07 (2014-11-15), this issue includes the following changes. Topic
Change Description
6.1.3 Signaling Specifications
Added signaling specifications for LTE TDD.
Compared with Issue 07 (2014-11-15), this issue does not exclude any topics.
07 (2014-11-15) This is Issue 07. Compared with Issue 06 (2014-09-30), this issue includes the following new topics: l
6.3.41 RRU3953/RRU3953w Technical Specifications
l
6.3.43 RRU3959/RRU3959w Technical Specifications
Compared with Issue 06 (2014-09-30), this issue includes the following changes. Topic
Change Description
6.2.13 MRFUd Technical Specifications
Modified the output power for the MRFUd (GL MSR, 900 MHz/1800 MHz).
6.3.35 RRU3929 Technical Specifications
Modified the output power for the RRU3929 (GL MSR, 900 MHz/1800 MHz).
6.5 Engineering Specifications of Cabinets
Added hyperlinks to the configurations of upper-level circuit breakers and power cables for each cabinet.
Compared with Issue 06 (2014-09-30), this issue does not exclude any topics.
06 (2014-09-30) This is Issue 06. Compared with Issue 05 (2014-08-30), this issue includes the following new topic: l Issue 14 (2016-01-30)
6.3.30 RRU3668 Technical Specifications Huawei Proprietary and Confidential Copyright © Huawei Technologies Co., Ltd.
6
1 Changes in the 3900 Series Base Station Technical Description
3900 Series Base Station Technical Description
Compared with Issue 05 (2014-08-30), this issue includes the following changes. Topic
Change Description
6.2.9 LRFU Technical Specifications, 6.3.16 RRU3201 Technical Specifications, 6.3.17 RRU3203 Technical Specifications
Deleted the description that the LRFU, RRU3201, and 3203 do not support the 1T2R configuration.
6.3.7 RRU3808 Technical Specifications
Deleted the following description: The RRU3808 does not support the 1T2R configuration when working in LTE FDD mode.
6.3.27 RRU3268 Technical Specifications
Modified the maximum continuous bandwidth of two carriers in the 800 MHz frequency band to 20 MHz.
Compared with Issue 05 (2014-08-30), this issue does not exclude any topics.
05 (2014-08-30) This is Issue 05. Compared with Issue 04 (2014-07-30), this issue does not include any new topics. Compared with Issue 04 (2014-07-30), this issue includes the following changes. Topic
Change Description
6.1.1 Capacity Specifications
l Modified board configurations in the capacity specifications of 3900 series base stations working in UMTS mode. l Modified the maximum number of cells supported by a BBU and the maximum number of UEs in RRC_Connected mode supported by an eNodeB FDD in the capacity specifications of 3900 series base stations working in LTE FDD mode. l Modified the capacity specifications of 3900 series base stations working in multiple modes.
6.1.2 Baseband Specifications
l Updated the maximum number of cells supported by the LBBP and UBBP boards working in LTE FDD mode. l Updated the maximum number of UEs in RRC_Connected mode in LTE FDD mode.
Issue 14 (2016-01-30)
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1 Changes in the 3900 Series Base Station Technical Description
3900 Series Base Station Technical Description
Topic
Change Description
6.1.3 Signaling Specifications
l Modified the signaling specifications of the eNodeB. l Modified signaling specifications of a co-MPT multimode base station.
6.2.13 MRFUd Technical Specifications, 6.3.34 RRU3928 Technical Specifications, 6.3.35 RRU3929 Technical Specifications, 6.3.37 RRU3938 Technical Specifications
Added the UL mode when the MRFUd, RRU3928, RRU3929, and RRU3938 working in the 900 MHz frequency band.
6.3.8 RRU3821E Technical Specifications
Added the power specifications of the RRU3821E.
Compared with Issue 04 (2014-07-30), this issue does not exclude any topics.
04 (2014-07-30) This is Issue 04. Compared with Issue 03 (2014-06-30), this issue includes the following new topic: l
6.3.26 RRU3262 Technical Specifications
Compared with Issue 03 (2014-06-30), this issue includes the following changes.
Issue 14 (2016-01-30)
Topic
Change Description
6.2.10 LRFUe Technical Specifications
Added specifications when the LRFUe works in the 700 MHz frequency band.
6.3.17 RRU3203 Technical Specifications
Modified the carrier number specifications supported by the RRU3203.
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1 Changes in the 3900 Series Base Station Technical Description
3900 Series Base Station Technical Description
Topic
Change Description
6.3 Technical Specifications of RRUs
l Added the following description in the technical specifications of the RRU3824, RRU3826, RRU3832, RRU3838, RRU3839, RRU3936, RRU3938, RRU3939, RRU3260, RRU3268, RRU3632, and RRU3638: According to the installation scenario, traffic load, and carrier configuration, the output power of some RRUs may temporarily decrease when they work in the highest 10°C temperature range. l Technical specifications of the RRU3808, RRU3821E, RRU3832, RRU3908, RRU3926, RRU3928, RRU3929, RRU3936, RRU3938, RRU3939, RRU3942, and RRU3961: Modified the maximum distance between the RRUs and BBU in multimode scenarios.
Compared with Issue 03 (2014-06-30), this issue does not exclude any topics.
03 (2014-06-30) This is issue 03. Compared with Issue 02 (2014-05-27), this issue includes the following changes.
Issue 14 (2016-01-30)
Topic
Change Description
6.2.9 LRFU Technical Specifications, 6.3.16 RRU3201 Technical Specifications, 6.3.17 RRU3203 Technical Specifications
Added a description that the LRFU, RRU3201, and 3203 do not support the 1T2R configuration.
6.3.7 RRU3808 Technical Specifications
Added the following description: The RRU3808 does not support the 1T2R configuration when working in LTE FDD mode.
6.3.39 RRU3942 Technical Specifications
Added the LTE and UL modes supported by the RRU3942 working in the 850 MHz frequency band.
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1 Changes in the 3900 Series Base Station Technical Description
3900 Series Base Station Technical Description
Topic
Change Description
6.4 Technical Specifications of AAUs
l Optimized the layout of technical specifications of AAUs. l Added the equivalent isotropically radiated power (EIRP) specifications and the storage time requirements to the technical specifications of all types of AAUs.
Compared with Issue 02 (2014-05-27), this issue does not exclude any topics.
02 (2014-05-27) This is Issue 02. Compared with 01 (2014-04-26), this issue does not include any new topics. Compared with 01 (2014-04-26), this issue includes the following changes: Topic
Change Description
6.3.49 RRU3251 Technical Specifications and 6.3.50 RRU3252 Technical Specifications
Modified the operating temperature.
6.3.16 RRU3201 Technical Specifications
Modified the output power.
6.1.1 Capacity Specifications
Modified the maximum cell throughput supported by an LTE TDD cell.
6.1.3 Signaling Specifications
Modified signaling specifications of eNodeBs.
6.1.6 Engineering Specifications
Added Noise Sound Power Level and Storage Time to Environment Specifications.
Compared with 01 (2014-04-26), this issue does not exclude any topics.
01 (2014-04-26) This is Issue 01. Compared with Draft D (2014-04-10), this issue does not include any new topics. Compared with Draft D (2014-04-10), this issue includes the following changes:
Issue 14 (2016-01-30)
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1 Changes in the 3900 Series Base Station Technical Description
3900 Series Base Station Technical Description
Topic
Change Description
6.3 Technical Specifications of RRUs
Added the following description in the technical specifications of the RRU3824, RRU3826, RRU3828, RRU3829, RRU3832, RRU3838, RRU3839, RRU3221, RRU3229, RRU3240, RRU3260, RRU3268, RRU3628, RRU3632, RRU3638, RRU3642, RRU3841, RRU3926, RRU3928, RRU3929, RRU3936, RRU3938, RRU3939, and RRU3942: The RRU supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
6.5 Engineering Specifications of Cabinets
l Moved descriptions about Noise from Standards to Noise Sound Power Level in Environment Specifications and added the corresponding sound power level. l Moved descriptions about the storage time from Storage in Standards to Storage Time in Environment Specifications.
6.3 Technical Specifications of RRUs and 6.4 Technical Specifications of AAUs
Added requirements for the storage time to the technical specifications of RRUs and AAUs.
3900 Series Base Station Power Consumption Specifications
l Added power consumption of the RRU3936 when it works in the 850 MHz and 1900 MHz frequency bands, respectively. l Added power consumption of the RRU3942 when it works in the 1900 MHz frequency band in GUL triple modes.
Compared with Draft D (2014-04-10), this issue does not exclude any topics.
Draft D (2014-04-10) This is Draft D. Compared with Draft C (2014-03-26), this issue includes the following new topics: l
6.3.53 RRU3259 Technical Specifications
Compared with Draft C (2014-03-26), this issue incorporates the following changes: Issue 14 (2016-01-30)
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Topic
Change Description
6.1.2 Baseband Specifications
Modify the number of cells supported by a UBBPd9 working in LTE TDD mode.
6.3.51 RRU3253 Technical Specifications
Modify the description for the output power: when the uplink-downlink subframe configuration 2:2 is used, the maximum output power of the RRU3253 is 8 x 16 W.
6.3.52 RRU3256 Technical Specifications
Added specifications when the RRU3256 operates in the 3500 MHz frequency bands.
6.1.4 CPRI Specifications
Added the maximum number of cells supported by a UBBP when it works at a data rate of 6.144 Gbit/s in UMTS mode.
Compared with Draft C (2014-03-26), this issue does not exclude any topics.
Draft C (2014-03-26) This is Draft C. Compared with Draft B (2014-02-28), this issue does not include any new topics. Compared with Draft B (2014-02-28), this issue incorporates the following changes:
Issue 14 (2016-01-30)
Topic
Change Description
2.1 BTS in the RAN Physical Layer
Modified the names of feature parameter description documents related to the transport network.
6.1.1 Capacity Specifications
GSM capacity specifications: Added BBU board configurations when GSM baseband signals are processed by the UBBPd and the TDM transmission scheme is used.
6.1.2 Baseband Specifications
Added the maximum number of cells supported by LTE FDD in the baseband specifications of a multimode base station.
6.1.3 Signaling Specifications
Modified the signaling specifications of an eNodeB in UMPT+UBBPd scenarios.
6.1.4 CPRI Specifications
Added the maximum number of cells supported by a WBBPf when its CPRI data rate is 4.9 Gbit/s and 6.144 Gbit/s, respectively.
6.3.36 RRU3936 Technical Specifications
Added specifications when the RRU3936 operates in the 850 MHz and 1900 MHz frequency bands.
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1 Changes in the 3900 Series Base Station Technical Description
3900 Series Base Station Technical Description
Topic
Change Description
6.3.16 RRU3201 Technical Specifications, 6.3.17 RRU3203 Technical Specifications, 6.3.18 RRU3220 Technical Specifications, 6.3.20 RRU3221 Technical Specifications, 6.3.21 RRU3222 Technical Specifications, 6.3.22 RRU3229 Technical Specifications, 6.3.23 RRU3240 Technical Specifications, 6.3.25 RRU3260 Technical Specifications, 6.3.27 RRU3268 Technical Specifications, RRU3628 Technical Specifications, RRU3632 Technical Specifications, RRU3638 Technical Specifications, RRU3642 Technical Specifications, 6.3.31 RRU3841 Technical Specifications
Modified the maximum distance between an RRU and a BBU.
6.2 Technical Specifications of RFUs, 6.3 Technical Specifications of RRUs, 6.4 Technical Specifications of AAUs
Added a description for the typical output power configurations in the technical specifications of RFUs, RRUs, and AAUs: The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
6.4.1 AAU3902 Technical Specifications
l Optimized the configuration information of virtual antenna ports on an AAU3902. l Modified the surge protection specifications of ports on an AAU3902.
Compared with Draft B (2014-02-28), this issue does not exclude any topics.
Draft B (2014-02-28) This is Draft B. Compared with Draft A (2014-01-20), this issue does not include any new topics. Compared with Draft A (2014-01-20), this issue includes the following changes:
Issue 14 (2016-01-30)
Topic
Change Description
6.1.1 Capacity Specifications
Renamed "Maximum Number of Cells per eNodeB FDD" to "Maximum Number of Cells per BBU" and modified its specifications.
6.2.11 MRFU Technical Specifications
Modified the output power for an MRFU V2/MRFU V2a (900 MHz/1800 MHz, GL MSR).
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1 Changes in the 3900 Series Base Station Technical Description
3900 Series Base Station Technical Description
Topic
Change Description
6.3.27 RRU3268 Technical Specifications
Modified the receive and transmit frequency bands of the RRU3268 operating in the 800 MHz frequency band.
6.5.2 BTS3900L Engineering Specifications
Modified the equipment specifications of a BTS3900L cabinet.
6.4.1 AAU3902 Technical Specifications
Modified the output power for the AAU3902 (GL, 1800 MHz, 3 sectors).
Compared with Draft A (2014-01-20), this issue excludes the following topics: l
Moved descriptions about the pRRU and RHUB3908 from 5 Physical Devices to LampSite Technical Description.
l
Moved technical specifications of the pRRU and RHUB3908 from 6 Product Specifications to LampSite Technical Description.
Draft A (2014-01-20) This is draft A. Compared with Issue 07 (2013-08-29) of V100R008C00, this issue includes the following new topics: l
pRRU
l
RHUB3908
l
6.3.15 RRU3839 Technical Specifications
l
6.3.48 RRU3232 Technical Specifications
l
6.3.49 RRU3251 Technical Specifications
l
6.3.50 RRU3252 Technical Specifications
l
6.3.51 RRU3253 Technical Specifications
l
6.3.52 RRU3256 Technical Specifications
l
6.3.37 RRU3938 Technical Specifications
l
6.3.38 RRU3939 Technical Specifications
l
pRRU3901 Technical Specifications
l
RHUB3908 Technical Specifications
l
6.4.1 AAU3902 Technical Specifications
Compared with Issue 07 (2013-08-29) of V100R008C00, this issue incorporates the changes described in the following table.
Issue 14 (2016-01-30)
Topic
Change Description
2.3 Mapping of a BTS in the RAN Physical Layer and RAN Logical Layer
Modified the presentation of the mapping of a BTS in the RAN physical layer and RAN logical layer from a figure to a video.
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1 Changes in the 3900 Series Base Station Technical Description
3900 Series Base Station Technical Description
Topic
Change Description
5.2 BBU
l Changed the title to BBU. l Modified descriptions of the BBU3910. l Added descriptions of the RRU3938, RRU3939, RRU3839, RRU3232, RRU3251, RRU3252, RRU3253, and RRU3256.
5.3.2 RRU
l Added GUL to the supported modes of the RRU3942. 5.3.3 AAU
Added descriptions of the AAU3902.
6.1 Technical Specifications of the BBU
Changed the title to Technical Specifications of the BBU.
6.1.1 Capacity Specifications
l GSM: Modified the capacity specifications. l UMTS: Modified capacity specifications. l LTE FDD: – Modified the maximum number of cells supported by an eNodeB FDD. – Modified the maximum throughput supported by a cell whose bandwidth is 20 MHz. – Modified the maximum number of UEs in RRC_connected mode supported by an eNodeB FDD when an LBBPd is configured. Added the maximum number of UEs in RRC_connected mode supported by an eNodeB FDD when a UBBPd is configured. l Added capacity specifications for the LTE TDD mode. l Added capacity specifications when a 3900 series base station works in multiple modes.
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Topic
Change Description
6.1.2 Baseband Specifications
l Added specifications for the UBBP. l Modified the maximum number of UEs in RRC_connected mode supported by an LTE FDD cell and an LBBPd, respectively when the cell bandwidth is 1.4 MHz. l Modified the maximum cell throughput supported by an LTE FDD cell. l Added baseband specifications for the eNodeB TDD. l Added baseband specifications when a 3900 series base station works in multiple modes.
6.1.3 Signaling Specifications
l Modified signaling specifications of a NodeB. l Modified signaling specifications of an eNodeB. l Modified signaling specifications of a co-MPT multimode base station.
6.1.4 CPRI Specifications
l Added CPRI specifications of a UBRI. l Modified CPRI specifications of an LBBPd. Added the number of cells supported by 6.144 Gbit/s and 9.8 Gbit/s LBBPds, respectively. l Added CPRI specifications of a UBBP.
6.1.5 Transmission Port
l Changed the title to Transmission Port. l Added transmission port specifications for the LTE TDD mode. l UMTS: Added specifications of transmission ports on the UTRPa.
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6.1.6 Engineering Specifications
Added specifications for the BBU3910.
6.5.1 BTS3900 Engineering Specifications
Modified the input power, size, and weight of a BTS3900 (Ver.D) cabinet.
6.5.2 BTS3900L Engineering Specifications
Modified the input power, size, and weight of a BTS3900L (Ver.D) cabinet.
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Topic
Change Description
6.4.2 AAU3910 Technical Specifications
l Modified the frequency band specifications of an AAU3910. l Added the specifications of AAU3910 operating in the 1.8A+2.6P, 2.6A+2.1A, and 2.6A+1.8A scenarios. l Modified the size and weight. l Added the maximum distance of the RU3832 from the BBU when the RU3832 works in LTE and UL modes. l Modified the surge protection specifications. l Modified the protection rating.
Issue 14 (2016-01-30)
6.3.7 RRU3808 Technical Specifications
Modified carrier and bandwidth specifications when an RRU3808 works in LTE FDD mode.
All sections
Changed LTE to LTE FDD.
6.3 Technical Specifications of RRUs and 6.2 Technical Specifications of RFUs
Added hyperlinks for typical PA configurations in the Output Power columns.
3900 Series Base Station Power Consumption Specifications
Changed the title to 3900 Series Base Station Power Consumption Specifications.
6.3 Technical Specifications of RRUs
Added the following description in the technical specifications of the RRU3628, RRU3632, RRU3638, RRU3824, RRU3826, RRU3828, RRU3829, RRU3832, RRU3838, RRU3839, RRU3926, RRU3928, RRU3929, RRU3936, RRU3938, RRU3939, and RRU3942: An Outdoor Power Module 15M (OPM15M) can be used to provide AC power supply for these RF modules. For details about the OPM15M, see OPM15M User Guide.
6.2.3 WRFU Technical Specifications
Added specifications for the 80 W WRFU (Optimized).
6.2.13 MRFUd Technical Specifications, 6.2.14 MRFUe Technical Specifications, 6.3.33 RRU3926 Technical Specifications, 6.3.35 RRU3929 Technical Specifications, 6.3.36 RRU3936 Technical Specifications, 6.3.39 RRU3942 Technical Specifications, and 6.3.44 RRU3961 Technical Specifications
Modified LTE FDD bandwidth specifications.
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Topic
Change Description
6.3.18 RRU3220 Technical Specifications
Modified tower-mounted amplifier (TMA) support capabilities.
6.3.27 RRU3268 Technical Specifications
l Added specifications for the RRU3268 when it works in the 800 MHz frequency band. l Modified the receive and transmit frequency band ranges for the RRU3268 when it works in band A of band 28 of the 700 MHz frequency band.
RRU3642 Technical Specifications
Modified the CPRI-based topology.
6.3.39 RRU3942 Technical Specifications
l Added specifications for the RRU3942 when it works in the 1,900 MHz frequency band in GUL triple-mode. l Modified LTE bandwidth specifications. l Modified the table Output power for the RRU3942 (GL MSR, 1900 MHz, 2x60 W). l Added the table Output power for the RRU3942 (GL MSR, 1900 MHz, 40 W +80 W)
6.5 Engineering Specifications of Cabinets
Added the following description in the storage standards for a cabinet: To avoid product degradation, the cabinet should be put into use, specifically within the first year of storage.
Compared with Issue 07 (2013-08-29) of V100R008C00, this issue does not exclude any topics.
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3900 Series Base Station Technical Description
2 Network Architecture
2
Network Architecture
About This Chapter Radio access network (RAN) consists of the RAN physical layer and RAN logical layer. l
The RAN physical layer consists of physical devices in a base station and base station controller. Base station devices communicate with base station controller devices through the transport network.
l
The RAN logical layer consists of logical functions implemented on a base station and base station controller. Base station logical functions communicate with base station controller logical functions through interface protocols.
2.1 BTS in the RAN Physical Layer The RAN physical layer consists of BTS nodes, BSC nodes, and the transport network that connects BTS and BSC nodes. 2.2 BTS in the RAN Logical Layer The RAN logical layer is classified into the GBSS, UTRAN, and E-UTRAN according to protocols used by each network. The RAN logical layer consists of logical functions implemented on base stations and base station controllers. Logical functions of base stations include GBTS Service, NodeB Service, and eNodeB Service. Logical functions of base station controllers include GBSC Service and RNC Service. GBSS is short for GSM base station system, UTRAN is short for universal terrestrial radio access network, and E-UTRAN is short for evolved universal terrestrial radio access network. 2.3 Mapping of a BTS in the RAN Physical Layer and RAN Logical Layer The logical functions of a base station are deployed on physical devices. One physical device can be deployed with one or several logical functions.
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2.1 BTS in the RAN Physical Layer The RAN physical layer consists of BTS nodes, BSC nodes, and the transport network that connects BTS and BSC nodes. The following figure shows the position of BTS nodes in the RAN physical layer. Figure 2-1 BTS nodes in the RAN physical layer
UE: user equipment
BTS Node: a physical base station BSC Node: a physical base station controller
MME: mobility management entity S-GW: serving gateway
-
BTS Node: provides the infrastructure and application platform for a base station to deploy GBTS Service, NodeB Service, and eNodeB Service. BTS nodes are classified into singlemodeand multi-mode base stations based on the types and quantity of services deployed. BSC Node: provides GBSC Service or RNC Service. Transport network: forwards data between BTS nodes and BSC nodes, between BTS nodes and the operation and maintenance center (OMC). Multiple modes can share one transport network or use an independent transport network. The transmission scheme supported by each mode is as follows: l
GSM: TDM and IP transmission
l
UMTS: ATM and IP transmission
l
LTE: IP transmission
For details about Abis transmission for GSM, see Abis Independent Transmission. For details about ATM transmission, see ATM Transport. For details about IP transmission, see IP Transmission. For details about the networking where multiple modes share the transport network, see Common Transmission. Issue 14 (2016-01-30)
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NOTE
To obtain the preceding reference documents, choose 3900 Series Base Stations Product Documentation > Descriptions > Function Description.
2.2 BTS in the RAN Logical Layer The RAN logical layer is classified into the GBSS, UTRAN, and E-UTRAN according to protocols used by each network. The RAN logical layer consists of logical functions implemented on base stations and base station controllers. Logical functions of base stations include GBTS Service, NodeB Service, and eNodeB Service. Logical functions of base station controllers include GBSC Service and RNC Service. GBSS is short for GSM base station system, UTRAN is short for universal terrestrial radio access network, and E-UTRAN is short for evolved universal terrestrial radio access network.
GBTS Service in the GBSS Logical Network The GBSS logical network consists of GBTS Service and GBSC Service. The following figure shows the position of GBTS Service in the GBSS logical network. Figure 2-2 GBTS Service in the GBSS logical network
MS: mobile station
GBTS Service: services provided by GSM base stations
GBSC Service: services provided by GSM base station controllers
GBSS: GSM base station system
GBTS Service: performs logical functions of GSM base stations and is controlled by the GBSC Service. These functions are radio channel management, physical layer protocol processing, and signaling procedure processing. The GBTS Service communicates with the GBSC Service through the Abis interface and communicates with the MS through the Um interface.
GBSC Service: provides logical functions of GSM base station controllers. These functions are radio resource management, base station management, mobility management, and access control. Issue 14 (2016-01-30)
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NodeB Service in the UTRAN Logical Network The UTRAN logical network consists of NodeB Service and RNC Service. The following figure shows the position of NodeB Service in the UTRAN logical network. Figure 2-3 NodeB Service in the UTRAN logical network
UE: user equipment
NodeB Service: services provided by WCDMA base stations
RNC Service: services provided by WCDMA base UTRAN: universal terrestrial radio access network station controllers
NodeB Service: performs logical functions of WCDMA base stations and is controlled by the RNC Service. These functions are radio channel management, physical layer protocol processing, and signaling procedure processing. The NodeB Service communicates with the RNC Service through the Iub interface and communicates with the UE through the Uu interface. RNC Service: performs logical functions of WCDMA base station controllers. These functions are radio resource management, base station management, mobility management, and access control. The RNC Service communicates with each other through the Iur interface.
eNodeB Service in the E-UTRAN Logical Network The E-UTRAN logical network consists of the eNodeB Service. The following figure shows the position of the eNodeB Service in the E-UTRAN logical network.
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Figure 2-4 eNodeB Service in the E-UTRAN logical network
UE: user equipment
eNodeB Service: services provided by LTE base stations
MME/S-GW: mobility management entity and serving gateway
E-UTRAN: evolved universal terrestrial radio access network
eNodeB Service: performs logical functions of LTE base stations. These functions are radio resource management, radio channel management, mobility management, physical layer protocol processing, signaling procedure processing, and access control. The LTE FDD single-mode, LTE TDD single-mode, and LTE FDD and LTE TDD (LT) dual-mode are supported. The eNodeB Service communicates with the MME/S-GW through the S1 interface, communicates with other eNodeB Service through the X2 interface, and communicates with the UE through the Uu interface.
2.3 Mapping of a BTS in the RAN Physical Layer and RAN Logical Layer The logical functions of a base station are deployed on physical devices. One physical device can be deployed with one or several logical functions. The following figure shows the mapping of a BTS in the RAN physical layer and RAN logical layer.
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Figure 2-5 Mapping of a BTS in the RAN physical layer and RAN logical layer
The red, green, and blue lines in the preceding figure indicate the deployment of services for each base station on each BTS node. BTS nodes are classified into single-mode and multimode base stations based on the types and quantity of deployed services. l
BTS Node 1 is deployed with GBTS services only. Therefore, BTS Node 1 is a GSMonly base station.
l
BTS Node 2 is deployed with NodeB and eNodeB services. Therefore, BTS Node 2 is a UL dual-mode base station.
l
BTS Node 3 is deployed with GBTS, NodeB, and eNodeB services. Therefore, BTS Node 3 is a GUL triple-mode base station.
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3900 Series Base Station Technical Description
3 Logical Structure
3
Logical Structure
About This Chapter This section describes the logical structure of 3900 series base stations in terms of subsystems and functional structures. 3.1 BTS Subsystems The BTS subsystems include the control subsystem, transport subsystem, baseband subsystem, radio frequency (RF) subsystem, clock subsystem, and power and environment monitoring subsystem. 3.2 BTS Functional Structure BTS functional structure consists of BTS nodes, GBTS Service, NodeB Service, and eNodeB Service. 3.3 Deployment of 3900 Series Base Stations 3900 series base stations can be deployed as separate-MPT or co-MPT base stations.
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3900 Series Base Station Technical Description
3 Logical Structure
3.1 BTS Subsystems The BTS subsystems include the control subsystem, transport subsystem, baseband subsystem, radio frequency (RF) subsystem, clock subsystem, and power and environment monitoring subsystem. The following figure shows the BTS subsystems. Figure 3-1 BTS subsystems
BTS CTL subsystem: BTS control BTS TRP subsystem: BTS subsystem transport subsystem BTS RF subsystem: BTS radio frequency subsystem
BTS BB subsystem: BTS baseband subsystem
BTS TAS subsystem: BTS clock BTS MPE subsystem: BTS power and subsystem environment monitoring subsystem
BTS CTL subsystem: controls and manages resources in a base station. This subsystem provides the management plane interface between the base station and the OMC, the control plane interface between the base station and other NEs, and the interface for controlling and negotiating common devices in a multimode base station. BTS TRP subsystem: forwards data between the transport network and the base station. This subsystem provides physical ports between the base station and the transport network, and the user plane interface between the base station and other NEs. BTS BB subsystem: processes uplink and downlink baseband data. The UMTS mode supports the baseband resource pool. For details, see NodeB Baseband Resource Management. Issue 14 (2016-01-30)
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BTS RF subsystem: receives and transmits radio signals. This subsystem provides ports to connect the base station and antenna system. The baseband subsystem is connected to the RF subsystem through CPRI ports. CPRI links support the star, chain, ring, and dual-star topologies. For details, see RF Unit and Topology Management. BTS TAS subsystem: synchronizes the base station clock with external clock sources. This subsystem provides ports to connect the base station clock to external clock sources. For details about time management, see Time Management. Multiple modes can share one clock or use an independent clock. For details about the synchronization modes supported by GSM, UMTS, and LTE, see the corresponding Synchronization. For the clock synchronization mode of multimode base station common clock, see Common Clock. BTS MPE subsystem: provides power supply, dissipates heat, and monitors the environment for a base station. This subsystem provides ports to connect the base station and site devices. For details about power supply management, see Power Supply Management. For details about environment monitoring management, see Monitoring Management. NOTE
To obtain the preceding reference documents, choose 3900 Series Base Stations Product Documentation > Descriptions > Function Description.
3.2 BTS Functional Structure BTS functional structure consists of BTS nodes, GBTS Service, NodeB Service, and eNodeB Service. The following figure shows the functional structure of a BTS. Figure 3-2 BTS functional structure
BTS nodes use abstract resources and a unified interface design. In this case, software and hardware differences are shielded and each Service can be flexibly deployed on each type of resources. As a result, resources can be flexibly shared and allocated among each type of Service. Issue 14 (2016-01-30)
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BTS Node: for details about the functions of a BTS node, see 2.1 BTS in the RAN Physical Layer. GBTS Service, NodeB Service, and eNodeB Service: for details about the functions of GBTS Service, NodeB Service, and eNodeB Service, see 2.2 BTS in the RAN Logical Layer. Itf_Platform-Service: service control interface provided by BTS nodes, including the service deployment interface, version upgrade interface, starting and restarting interface, and status monitoring interface. Itf_Node-RAT: interface provided by BTS nodes to control the common resources in a base station, including resource application, releasing, activation, and reconfiguration interfaces. Common resources in a base station include transmission resources, carrier resource, and universal resources such as SCTP links, RF TX and RX channels, and CPU progress. SCTP is short for Signaling Control Transmission Protocol.
3.3 Deployment of 3900 Series Base Stations 3900 series base stations can be deployed as separate-MPT or co-MPT base stations.
3.3.1 Co-MPT Base Stations In a co-MPT 3900 series base station, all the services are deployed on one BTS node and managed by the operation and maintenance center (OMC) through one O&M channel. The following figure shows a 3900 series base station with co-MPT. Figure 3-3 3900 series base stations with co-MPT
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In a co-MPT base station, the BTS node manages the software and hardware platforms. Resources can be shared or used independently for each Service to achieve flexible resource scheduling and allocation. This facilitates the evolution of multimode base stations. In a co-MPT base station, different modes can be flexibly combined to implement GSM, UMTS, LTE FDD, and LTE TDD single-mode base stations, GU, GL, and UL dual-mode base stations, GUL triple-mode base stations, and GULT four-mode base stations.
NOTICE If operations that affect services are performed on the shared resources, services of modes that share these resources will be affected. These operations include parameter adjustments, resets, board additions and removals, power-off, blocking, loopbacks, offline tests, offline performance tests, and software upgrades and rollbacks.
3.3.2 Separate-MPT Base Stations In a separate-MPT 3900 series base station, services of each mode are deployed on its own BTS node and managed by the operation and maintenance center (OMC) through its own O&M channel. The following figure shows a 3900 series base station with separate-MPT. Figure 3-4 3900 series base station with separate-MPT
3900 GSM: 3900 series base stations deployed only with GBTS 3900 WCDMA: 3900 series base stations Service deployed only with NodeB Service 3900 LTE: 3900 series base stations deployed only with eNodeB — Service
In a separate-MPT base station, each mode has an independent software platform and an independent hardware platform. However, these modes can still share part of the resources, such as site devices, cabinets, the BBU, transmission resources, clocks, RF modules, and the antenna system. The more the resources are shared, the more each Service depends on each other. The less the resources are shared, the less each Service depends on each other. The BTS nodes communicate with each other through the Itf_RBS_MRI interface to negotiate how to allocate shared resources and prevent resource conflicts. Issue 14 (2016-01-30)
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In a separate-MPT base station, the four modes can be flexibly combined to implement GSM, UMTS, LTE FDD, and LTE TDD single-mode base stations, GU, GL, and UL dual-mode base stations, GUL triple-mode base stations, and GULT four-mode base stations.
Different Deployment of GBTS Service GBTS Service can be deployed in two ways: 3900 GSM and 3900 (Co-MPT). The following figure shows the differences between 3900 GSM and 3900 (Co-MPT). Figure 3-5 Differences between 3900 GSM and 3900 (Co-MPT)
3900 GSM: The base stations are managed by the OMC through the O&M interface on the BSC. The BSC together with the base stations under this BSC are displayed as an independent NE on the OMC interface. The base stations are not independent NEs. 3900 (Co-MPT): The base stations are directly managed by the OMC and function as independent NEs. The base stations now independently manage changes in product forms, hardware configuration, networking capability and specifications of RF modules. Moreover, GSM, UMTS, and LTE base stations have unified O&M methods. This facilitates the evolution of multimode base stations.
Special Type of Separate-MPT 3900 Series Base Stations If UMTS and LTE services are to be deployed in a 3900 GSM base station, the following special type of separate-MPT base stations can be used to achieve high service integration through co-MPT without changing the existing base stations. Issue 14 (2016-01-30)
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Figure 3-6 Special type of separate-MPT 3900 series base stations
3.3.3 Different Functions with Different Deployment Methods To meet the requirements of different application scenarios and promote the competitiveness of Huawei base station products, Huawei 3900 series base stations can implement different functions if deployed in different ways. The following table lists different functions implemented by separate-MPT and co-MPT base stations. Function
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Separate-MPT
Co-MPT (GSM, UMTS, LTE, GU, GL, UL, and GUL)
3900 GSM
3900 WCDM A
3900 LTE
Multimo de (GU, GL, UL, and GUL)
Clock over IP (using Huawei proprietary protocols)
Not supported
Supported
Supported
Cannot be shared
Supported
RGPS clock synchronization
Not supported
Not supported
Supported
Cannot be shared
Supported
1PPS+TOD clock synchronization
Not supported
Not supported
Supported
Cannot be shared
Supported
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Function
Separate-MPT
E1/T1 transmission ports
CPRI topology
ring
Co-MPT (GSM, UMTS, LTE, GU, GL, UL, and GUL)
3900 GSM
3900 WCDM A
3900 LTE
Multimo de (GU, GL, UL, and GUL)
TDM/IP
ATM/IP
IP
Can be shared
ATM/IP NOTE The UMTS mode supports the ATM and IP transmiss ion schemes. The GSM and LTE support the IP transmiss ion scheme.
Supported
Supported
Supported
Cannot be shared
Supported
CPRI loadsharing topology
Not supported
Not supported
Supported
Cannot be shared
Supported
CPRI dual-star topology
Not supported
Not supported
Not supported
Can be shared
Not supported
CPRI MUX
Not supported
Not supported
Not supported
Can be shared
Supported
NOTE
l In the Multimode (GU, GL, UL, and GUL) column, Can be shared means that multiple modes can either share or not share this function. In this case, multiple modes must interoperate with each other to implement this function. For details, see Management Method of Shared Resources. Cannot be shared means that multiple modes cannot share this function. In this case, this function can be deployed and enabled independently for each mode. l The CPRI dual-star topology applies only to a separate-MPT multimode (GU, GL, UL, and GUL) base station.
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4
Operation and Maintenance
Huawei provides convenient and flexible operation and maintenance methods for 3900 series base stations. 3900 series base stations can be maintained in the following methods: l
Local maintenance: OM personnel maintain the base station on the base station LMT or SMT through the local maintenance port on the base station.
l
Remote maintenance: OM personnel maintain the base station on the U2000 or LMT in the equipment room or the centralized management center.
On the U2000, the base station is a management entity managing the services of one or multiple modes. Base stations are independent of each other and have different deployment IDs (DIDs). No Itf_RBS_MRI interface is configured between base stations. A base station deployed with only one mode is called a single-mode base station. A base station deployed with two or more modes is called a multimode base station. Multimode base stations such as separate-MPT and co-MPT multimode base stations are indicated by Multimode Base Station on the U2000. To simplify base station classification, a co-MPT base station deployed with only one mode is also classified as a multimode base station. Each BTS node in a multimode base station has an independent OM channel. The BTS node together with the RAT Service deployed on it are called an NE, which can be independently managed by the LMT, SMT, or U2000.
Operation and Maintenance for Single-Mode Base Stations A single-mode base station serves only one mode, has one OM interface, represents one NE, and is connected to one U2000. The GBTS, NodeB, and eNodeB are displayed on the U2000 based on the NE type. The corresponding NE type is BTS3900 GSM, BTS3900 WCDMA, and BTS3900 LTE, respectively. The NE type of the eGBTS is BTS3900. The eGBTS has the same OM system as a co-MPT multimode base station. Figure 4-1 shows the OM systems of the GBTS, NodeB, and eNodeB.
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Figure 4-1 OM systems of the GBTS, NodeB, and eNodeB
Operation and Maintenance for Co-MPT Multimode Base Stations Multiple modes in a co-MPT multimode base station are deployed on the same main control board. These modes share one OM interface, represent one NE, and are connected to one U2000. A co-MPT multimode base station is displayed as BTS3900 on the U2000. Figure 4-2 shows the OM system of a co-MPT multimode base station. Figure 4-2 OM system of a co-MPT multimode base station
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3900 Series Base Station Technical Description
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Operation and Maintenance for Separate-MPT Multimode Base Stations Multiple modes in a separate-MPT multimode base station are deployed on different main control boards. These modes have different OM interfaces, represent different NEs, and are connected to one U2000 through their own OM channels. NEs in a separate-MPT multimode base station are independently managed on the base station LMT or SMT. On the U2000, NEs in a separate-MPT multimode base station have the same DID. The U2000 provides a unified GUI to manage NEs in a separate-MPT multimode base station. The separate-MPT multimode base station is indicated by MBTS on the U2000. Different modes have different NE types, including BTS3900 GSM, BTS3900 WCDMA, and BTS3900 LTE. Figure 4-3 shows the OM system of a separate-MPT multimode base station. Figure 4-3 OM system of a separate-MPT multimode base station
Management Method of Shared Resources Shared resources are physical and logical resources shared among multiple modes in a separate-MPT multimode base station. For details, see Table 4-2. Resources occupied by only one mode are not shared resources. In a separate-MPT multimode base station where multiple modes share resources, the shared resources must be managed. There are two methods for managing the shared resources: l
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Unilateral management: The shared resources are managed by only one mode and are displayed only on the management interface of this mode. Huawei Proprietary and Confidential Copyright © Huawei Technologies Co., Ltd.
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l
4 Operation and Maintenance
Multilateral management: The shared resources are collectively managed by multiple modes. Operators need to prevent operations that may cause management conflicts.
NOTICE If operations that affect services are performed on the shared resources, services of modes that share these resources will be affected. These operations include parameter adjustments, resets, board additions and removals, power-off, blocking, loopbacks, offline tests, offline performance tests, and software upgrades and rollbacks. Table 4-1 lists the difference between unilateral management and multilateral management. Table 4-1 Difference between unilateral and multilateral management Function
Unilateral Management
Multilateral Management
Configuration Management
Only one mode is configured with resource sharing parameters.
Multiple modes are configured with resource sharing parameters and these parameters must have consistent settings to prevent resource conflicts. The multi-node OMC configuration tool can automatically associate with the shared resources to ensure consistent parameter configuration. For details about parameter configurations for the shared resources, see Multimode Base Station Common Part Parameters (you can obtain this document by choosing 3900 Series Base Station Product Documentation > Operation and Maintenance > Configuration Management). Consistent parameter configuration: Parameters configured for the same object must have the same values for different NEs. Parameters configured for different objects cannot have same values for different NEs.
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Function
Unilateral Management
Multilateral Management
Fault Management
Only one mode reports, locates, and clears alarms related to the shared resources.
Multiple modes report alarms related to the shared resources. On the multinode OMC alarm management tool, the OM personnel can specify a mode to locate and clear the reported alarms while alarms reported by other modes are shielded. When handling a common alarm (excluding an inter-RAT configuration conflict alarm), operators need to handle it only on one mode. After being cleared on one mode, the alarm is also cleared on other modes. For details about the reporting and handling of a common alarm, see Alarm Management in 3900 Series Base Station Alarm Reference (you can obtain this document by choosing 3900 Series Base Station Product Documentation > Operation and Maintenance > Fault Management).
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Performance Management
Only one mode reports performance measurement results of the shared resources.
Multiple modes report performance measurement results of the shared resources.
Software management
Only one mode manages the resource sharing software.
Multiple modes manage the resource sharing software. The OM personnel can grant loading control rights to one mode for software upgrades and rollbacks. Loading control rights can be automatically configured by the multi-node OMC software management tool if the base station uses Huawei standard version mapping. Loading control rights must be manually configured if nonstandard Huawei version mapping is used. In principle, the loading control rights are configured in descending order of version and mode (for example, LTE > UMTS > GSM).
Inventory management
Only one mode reports the inventory information about the shared resources.
Multiple modes report the inventory information about the shared resources. The multi-node OMC software management tool can automatically associate with the inventory information about the shared resources.
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When unilateral management is used, the user can specify a mode to manage the shared resources based on site situations. For example: l
Newly deployed base stations: Different modes of newly deployed base stations are listed in descending order of management priority: GSM > UMTS > LTE. For example, in a newly deployed GU base station, it is recommended that GSM manage the shared resources.
l
Capacity expansion: It is recommended that the existing mode manage the shared resources. For example, during an evolution from GSM to GU, it is recommended that GSM manage the shared resources.
The management method varies according to different types of shared resources. Table 4-2 lists the management method for different types of shared resources. Table 4-2 Method for managing different types of shared resources Shared Resources
Management Method
Site devices
Unilateral management: Site devices are managed by one mode in the BBU to which the site devices are connected.
Cabinets
Unilateral management: If a cabinet is connected to a BBU, the monitoring system of this cabinet is monitored by one mode in this BBU. The monitoring system includes the power monitoring unit (PMU), temperature control unit (TCU), cabinet control unit (CCU), fan monitoring unit (FMU), and environment monitoring unit (EMU). If a cabinet is connected to a BBU through the radio remote units (RRUs), the monitoring system of this cabinet is managed by one mode the RRUs serve. NOTE l When monitoring boards are managed by only one mode, the following functions cannot be used: energy saving, smart TRX, and fan speed controlling by the main control board. l The CCU can be managed by only one mode.
BBU subrack
Multilateral management: The UPEU, UEIU, and FAN are managed collectively by all modes in the BBU. UPEU is short for universal power and environment interface unit. UEIU is short for universal environment interface unit.
Multimode RF modules
Multilateral management: Multimode RF modules are managed by the modes that the multimode RF modules serve. For example, a multimode RF module working in GU mode is managed collectively by GSM and UMTS.
ALD
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Unilateral management: The ALD is managed by one mode whose RF modules are connected to the ALD. ALD is short for antenna line device.
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4 Operation and Maintenance
Shared Resources
Management Method
BBU interconnection module
Unilateral management: BBU interconnection modules are managed by one mode that shares one BBU with this BBU interconnection module.
Transmission
Unilateral management: When multiple modes share the transmission ports and bandwidth, the transmission ports and the board that provides transmission ports are managed by one mode in the BBU.
Clock
Unilateral management: When multiple modes share one external clock source, the clock source is managed by one mode in the BBU.
CPRI links
Unilateral management: When multiple modes share a CPRI link, the CPRI link is managed by the mode whose baseband board provides CPRI ports.
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3900 Series Base Station Technical Description
5 Physical Devices
5
Physical Devices
About This Chapter 3900 series base stations adopt a module design, which consists of three modules: the BBU3900, RF modules and cabinets that work with the BBU3900 and RF modules. The BBU3900 and RF modules can be combined with different types of cabinets to adapt to different application scenarios and meet user's requirements for fast and cost-effective network deployment. 5.1 Cabinets Based on the application scenarios and cabinets installed, 3900 series base stations can be classified into indoor macro base stations (BTS3900 and BTS3900L), outdoor macro base stations (BTS3900A and BTS3900AL), distributed base stations (DBS3900), and mini base stations (BTS3900C). 5.2 BBU The BBU is a baseband processing unit and centrally manages the entire base station. 5.3 RF Module RF modules modulate and demodulate baseband and RF signals, process data, amplify power for signals, and conduct voltage standing wave ratio (VSWR) tests.
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5.1 Cabinets Based on the application scenarios and cabinets installed, 3900 series base stations can be classified into indoor macro base stations (BTS3900 and BTS3900L), outdoor macro base stations (BTS3900A and BTS3900AL), distributed base stations (DBS3900), and mini base stations (BTS3900C). The following figure shows the 3900 series base station product family. Figure 5-1 3900 series base station product family
BTS3900: uses BTS3900 (Ver.B), BTS3900 (Ver.C), or BTS3900 (Ver.D) cabinets. Issue 14 (2016-01-30)
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BTS3900L: uses a BTS3900L (Ver.B), BTS3900L (Ver.C), or BTS3900L (Ver.D) cabinet. BTS3900A: uses BTS3900A (Ver.B), BTS3900 (Ver.C), BTS3900A (Ver.D), or BTS3900A (Ver.E) cabinets. BTS3900AL: uses a BTS3900AL (Ver.A) cabinet. DBS3900: uses APM series cabinets, TMC series cabinets, battery cabinets, OMB, OMB (Ver.C), IMB03, IFS06, or IBC10. APM is short for advanced power module, TMC is short for transmission cabinet, OMB is short for outdoor mini box, IMB is short for indoor mini box, IFS is short for indoor floor installation support, and IBC is short for indoor BBU cabinet. BTS3900C: consists of an RRU subrack and an OMB. For detailed information about each type of cabinet, see 3900 Series Base Station Hardware Description.
5.2 BBU The BBU is a baseband processing unit and centrally manages the entire base station. The BBU provides the following functions: l
Manages the entire base station system in terms of operation, maintenance, signaling processing, and system clock.
l
Processes uplink and downlink data, and provides common public radio interfaces (CPRIs) for the communication between the BBU and RF modules.
l
Provides physical ports for information exchange between the base station and the transport network.
l
Provides an OM channel between the base station and the operation and maintenance center (OMC).
l
Provides ports for receiving and transmitting signals from environment monitoring devices.
BBUs are classified into two types: BBU3900 and BBU3910. With a case structure, BBUs can house different types of boards and modules. For configuration principles and functions of boards and modules in a BBU, see BBU Hardware Description, which also provide information about ports, indicators, and DIP switches on these boards and modules. For technical specifications of a BBU, see 6.1 Technical Specifications of the BBU. A multi-mode base station can be implemented through BBU interconnection. For details about BBU interconnection, see BBU Interconnection Feature Parameter Description. (To obtain this document, choose 3900 Series Base Stations Product Documentation > Descriptions > Function Description).
5.3 RF Module RF modules modulate and demodulate baseband and RF signals, process data, amplify power for signals, and conduct voltage standing wave ratio (VSWR) tests.
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5.3.1 RFU Radio frequency units (RFUs) perform modulation, demodulation, data processing and power amplification of RF and baseband signals, and conduct voltage standing wave ratio (VSWR) detection.
Type The following table lists RFU types. Table 5-1 RFU types
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Module
Applicable Mode
Technical specifications
DRFU
GSM
6.2.1 DRFU Technical Specifications
GRFU
GSM
6.2.2 GRFU Technical Specifications
WRFU
UMTS
6.2.3 WRFU Technical Specifications
WRFUa
UMTS
6.2.4 WRFUa Technical Specifications
WRFUd
UMTS
6.2.5 WRFUd Technical Specifications
WRFUe
UMTS
6.2.6 WRFUe Technical Specifications
CRFUd
LTE
6.2.7 CRFUd Technical Specifications
CRFUe
LTE
6.2.8 CRFUe Technical Specifications
LRFU
LTE
6.2.9 LRFU Technical Specifications
LRFUe
LTE
6.2.10 LRFUe Technical Specifications
MRFU
GSM, UMTS, LTE FDD, GU, and GL
6.2.11 MRFU Technical Specifications
MRFUd
GSM, UMTS, LTE FDD, GU, and GL
6.2.13 MRFUd Technical Specifications
MRFUdw
GSM, LTE FDD, and GL
6.2.13 MRFUd Technical Specifications
MRFUe
GSM, UMTS, LTE FDD, GU, and GL
6.2.14 MRFUe Technical Specifications
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For information about the functions and the logical structure of an RFU, see RFU Hardware Description. This document also provides details about ports and indicators on the RFU.
Cabinets That Can Work with RFUs Restrictions on using RFUs together with cabinets are as follows: l
The WRFUd, WRFUe, CRFUd, CRFUe, LRFUe, MRFUd, and MRFUe must be used together with Ver.C cabinets, Ver.D cabinets, and BTS3900AL (Ver.A) cabinets.
l
For other types of RFUs, there are no restrictions on which types of base stations can be used with.
5.3.2 RRU Remote radio units (RRUs) perform modulation, demodulation, data processing, and power amplification of baseband and radio frequency (RF) signals, and conduct voltage standing wave ratio (VSWR) detection.
Type The following table lists RRU types. Table 5-2 RRU types
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Module
Applicable Mode
Technical specifications
RRU3004
GSM
6.3.1 RRU3004 Technical Specifications
RRU3008
GSM
6.3.2 RRU3008 Technical Specifications
RRU3801E
UMTS
6.3.3 RRU3801E Technical Specifications
RRU3804
UMTS
6.3.4 RRU3804 Technical Specifications
RRU3805
UMTS
6.3.5 RRU3805 Technical Specifications
RRU3806
UMTS
6.3.6 RRU3806 Technical Specifications
RRU3808
UMTS, LTE FDD, and UL
6.3.7 RRU3808 Technical Specifications
RRU3821E
UMTS, LTE FDD, and UL
6.3.8 RRU3821E Technical Specifications
RRU3824
UMTS
6.3.9 RRU3824 Technical Specifications
RRU3826
UMTS
6.3.10 RRU3826 Technical Specifications
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Module
Applicable Mode
Technical specifications
RRU3828
UMTS
6.3.11 RRU3828 Technical Specifications
RRU3829
UMTS
6.3.12 RRU3829 Technical Specifications
RRU3832
UMTS, LTE FDD, and UL
6.3.13 RRU3832 Technical Specifications
RRU3838
UMTS
6.3.14 RRU3838 Technical Specifications
RRU3839
UMTS
6.3.15 RRU3839 Technical Specifications
RRU3201
LTE FDD
6.3.16 RRU3201 Technical Specifications
RRU3203
LTE FDD
6.3.17 RRU3203 Technical Specifications
RRU3220
LTE FDD
6.3.18 RRU3220 Technical Specifications
RRU3220E
LTE FDD
6.3.19 RRU3220E Technical Specifications
RRU3221
LTE FDD
6.3.20 RRU3221 Technical Specifications
RRU3222
LTE FDD
6.3.21 RRU3222 Technical Specifications
RRU3229
LTE FDD
6.3.22 RRU3229 Technical Specifications
RRU3240
LTE FDD
6.3.23 RRU3240 Technical Specifications
RRU3260
LTE FDD
6.3.25 RRU3260 Technical Specifications
RRU3262
LTE FDD
6.3.26 RRU3262 Technical Specifications
RRU3268
LTE FDD
6.3.27 RRU3268 Technical Specifications
RRU3269
LTE FDD
6.3.28 RRU3269 Technical Specifications
RRU3668
LTE FDD
6.3.30 RRU3668 Technical Specifications
RRU3841
LTE FDD
6.3.31 RRU3841 Technical Specifications
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Module
Applicable Mode
Technical specifications
RRU3908
GSM, UMTS, LTE FDD, GU, and GL
6.3.32 RRU3908 Technical Specifications
RRU3926
GSM, UMTS, LTE FDD, GU, and GL
6.3.33 RRU3926 Technical Specifications
RRU3928
GSM, UMTS, LTE FDD, GU, and GL
6.3.34 RRU3928 Technical Specifications
RRU3929
GSM, UMTS, LTE FDD, GU, and GL
6.3.35 RRU3929 Technical Specifications
RRU3936
GSM, UMTS, LTE FDD, GU, and GL
6.3.36 RRU3936 Technical Specifications
RRU3938
GSM, UMTS, LTE FDD, GU, and GL
6.3.37 RRU3938 Technical Specifications
RRU3939
GSM, LTE FDD, and GL
6.3.38 RRU3939 Technical Specifications
RRU3942
GSM, UMTS, LTE FDD, GU, GL, GUL, and UL
6.3.39 RRU3942 Technical Specifications
RRU3952
GSM, UMTS, LTE FDD, GU, GL, and UL
6.3.40 RRU3952 Technical Specifications
RRU3953
GSM, UMTS, LTE FDD, GU, and GL, UL, GUL
6.3.41 RRU3953/RRU3953w Technical Specifications
RRU3953w
GSM, LTE FDD, and GL
6.3.41 RRU3953/RRU3953w Technical Specifications
RRU3959
GSM, UMTS, LTE FDD, GU, and GL
6.3.43 RRU3959/RRU3959w Technical Specifications
RRU3959w
GSM, LTE FDD, and GL
6.3.43 RRU3959/RRU3959w Technical Specifications
RRU3961
GSM, UMTS, LTE FDD, GU, GL, UL, and GUL
6.3.44 RRU3961 Technical Specifications
RRU3952m
GSM, UMTS, LTE FDD, GU, GL, UL, and GUL
6.3.46 RRU3952m Technical Specifications
RRU3168
LTE TDD
6.3.47 RRU3168 Technical Specifications
RRU3232
LTE TDD
6.3.48 RRU3232 Technical Specifications
RRU3251
LTE TDD
6.3.49 RRU3251 Technical Specifications
RRU3252
LTE TDD
6.3.50 RRU3252 Technical Specifications
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Module
Applicable Mode
Technical specifications
RRU3253
LTE TDD
6.3.51 RRU3253 Technical Specifications
RRU3256
LTE TDD
6.3.52 RRU3256 Technical Specifications
RRU3259
LTE TDD
6.3.53 RRU3259 Technical Specifications
For information about the functions and the logical structure of an RRU, see RRU hardware description of the RRU type in question. This document also provides details about ports and indicators on the RRU.
Cabinets That Can Work with RRUs Restrictions on using RRUs together with cabinets are as follows: l
The RRU3229, RRU3841, RRU3929, RRU3829, RRU3942, and RRU3961 must be used with Ver.C and Ver.D cabinets.
l
For other types of RRUs, there are no restrictions on which types of cabinets can be used with.
5.3.3 AAU The AAU incorporates the functions of radio frequency (RF) modules and antenna systems.
Type The following table lists AAU types. Table 5-3 AAU types Module
Applicable Mode
Technical specifications
AAU3940
UMTS, LTE FDD, UL
6.4.5 AAU3940 Technical Specifications
AAU3920
UMTS, LTE FDD, GL, UL, GUL
6.4.4 AAU3920 Technical Specifications
AAU3911
l RU3832: UMTS, LTE FDD, UL
6.4.3 AAU3911 Technical Specifications
l RU3260: LTE FDD l RU3952m: GSM, LTE FDD, GL
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Module
Applicable Mode
Technical specifications
AAU3910
l RU3832: UMTS, LTE FDD, and UL
6.4.2 AAU3910 Technical Specifications
l RU3268: LTE FDD l RU3260: LTE FDD l RU3938: GSM, UMTS, LTE FDD, GU, and GL AAU3902
UMTS, LTE FDD, and GL
6.4.1 AAU3902 Technical Specifications
l
For information about the functions and logical structure of an AAU3940, see AAU3940 Hardware Description. This document also provides details about ports and indicators on the AAU3940.
l
For information about the functions and logical structure of an AAU3920, see AAU3920 Hardware Description. This document also provides details about ports and indicators on the AAU3920.
l
For information about the functions and logical structure of an AAU3911, see AAU3911 Hardware Description. This document also provides details about ports and indicators on the AAU3911.
l
For information about the functions and logical structure of an AAU3910, see AAU3910 Hardware Description. This document also provides details about ports and indicators on the AAU3910.
l
For information about the functions and logical structure of an AAU3902, see AAU3902 Hardware Descripiton. This document also provides details about ports and indicators on the AAU3902.
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6
Product Specifications
About This Chapter Product specifications of the 3900 series base stations include technical specifications of the BBU and radio frequency (RF) modules, and engineering specifications of each type of cabinet. 6.1 Technical Specifications of the BBU This section describes the technical specifications of the BBU, including capacity specifications, baseband specifications, signaling specifications, CPRI specifications, transmission port specifications, and engineering specifications. 6.2 Technical Specifications of RFUs This section describes the technical specifications of radio frequency units (RFUs), including supported modes, frequency bands, RF specifications, surge protection specifications, specifications of CPRI ports, and antenna capabilities. 6.3 Technical Specifications of RRUs This section provides technical specifications of RRUs, including supported modes, frequency bands, RF specifications, engineering specifications, specifications of CPRI ports, and antenna capabilities. 6.4 Technical Specifications of AAUs This section provides technical specifications of AAUs, including supported modes, frequency bands, RF and antenna specifications, engineering specifications, antenna capabilities, specifications of CPRI ports, and electrical specifications. 6.5 Engineering Specifications of Cabinets This section describes engineering specifications of each type of cabinet, including input power specifications, equipment specifications, environment specifications, surge protection specifications, and standards that have been complied with.
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6.1 Technical Specifications of the BBU This section describes the technical specifications of the BBU, including capacity specifications, baseband specifications, signaling specifications, CPRI specifications, transmission port specifications, and engineering specifications.
6.1.1 Capacity Specifications This section describes the capacity specifications of the 3900 series base stations working in different modes. The following tables list the capacity specifications of the 3900 series base stations working in single mode. Table 6-1 Capacity specifications of the 3900 series base stations working in GSM mode Mod e
Board Configuration
GSM
GTMU
Capacity TDM transmission: l When GSM working in non-baseband extension mode: 1 GTMUb/GTMUc + 1 UTRPb4 + 1 UBRIb (optional) l When GSM working in baseband extension mode: 1 GTMUb/GTMUc + 3 UBBPd1/ UBBPd2/UBBPd3/ UBBPd4 or 1 GTMUb/GTMUc + 1 UBBPd1/ UBBPd2/UBBPd3/ UBBPd4 + 1 UBBPd6 IP transmission: 1 GTMUb/GTMUc+1 UBRIb (optional)
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A single site supports a maximum of 32 cells, and each cell supports a maximum of 24 TRXs. l TDM transmission: – When GSM working in nonbaseband extension mode: 126 TRXs – When GSM working in baseband extension mode: 72 TRXs l IP over FE transmission: 60 TRXs l IP over E1 transmission: 48 TRXs
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3900 Series Base Station Technical Description
Mod e
6 Product Specifications
Board Configuration
Capacity
UMPT
1 UMPTb+2 UBRIb boards
A single site supports a maximum of 12 cells, and each cell supports a maximum of 24 TRXs. l IP over FE transmission: 72 TRXs l IP over E1 transmission: 48 TRXs
Table 6-2 Capacity specifications of the 3900 series base stations working in UMTS mode Mode
BBU Type
Capacity
Board Configuration
UMTS
BBU3900
A single site supports a maximum of 24 cells.
1 UMPTb + 6 UBBPd6 boards
l Uplink: 6144 CEs l Downlink: 6144 CEs BBU3910
A single site supports a maximum of 48 cells.
1 UMPTb + 6 UBBPd6 boards
l Uplink: 6144 CEs l Downlink: 6144 CEs
Table 6-3 Capacity specifications of the 3900 series base stations working in LTE FDD mode Mod e
Item
Specifications
LTE FDD
Maximum number of cells per BBU
LMPT
18 cells (2T2R/2T4R/ 4T4R, 20 MHz)
UMPT
36 cells (2T2R/2T4R, 20 MHz) 18 cells (4T4R, 20 MHz)
Maximum throughput per eNodeB FDD
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LMPT
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The UL data rate at the MAC layer is 300 Mbit/s, and the DL data rate at the MAC layer is 450 Mbit/s.
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Item
Specifications
Maximum number of UEs in RRC_CONNECTED mode per eNodeB FDD
UMPT
The UL and DL data rate at the MAC layer is 1500 Mbit/s.
LMPT
l Datacard traffic model: 5400 l Smartphone traffic model: 1200
UMPT
l Datacard traffic model: 10800 l Smartphone traffic model: 2600 (The recommended board configuration is 1 UMPT + 2 UBBPd5/ UBBPd6.)
Maximum number of concurrent Data Radio Bearers (DRBs) per UE
LMPT
16200
UMPT
32400
Table 6-4 Capacity specifications of the 3900 series base stations working in LTE TDD mode Mod e
Item
Specifications
LTE TDD
Maximum number of cells per eNodeB TDD
BBU3900: 24 cells; BBU3910: 36 cells l 4T4R Beamforming: 10 MHz, 15 MHz, or 20 MHz cell bandwidth l DL 2x2 MIMO: 5 MHz, 10 MHz, 15 MHz, or 20 MHz cell bandwidth NOTE "DL mxn MIMO" indicates that an eNodeB TDD uses m TX antenna ports and a UE uses n RX antennas.
Maximum throughput per cell
l Downlink data rate at the MAC layer: 110 Mbit/s (20 MHz bandwidth, SA2 subframe configuration, DL 2x2 MIMO) l Uplink data rate at the MAC layer: 56 Mbit/s (20 MHz bandwidth, SA1 subframe configuration, UL 2x4 MU-MIMO)
Maximum throughput per eNodeB TDD (packet size: 550 bytes)
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Downlink and uplink data rate at the MAC layer: 1500 Mbit/s
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Item
Specifications
Maximum number of UEs in RRC_CONNECTED mode per eNodeB TDD
When the LBBPc and one LMPT are configured
5400
When the LBBPd2/ LBBPd4/UBBPd4/ UBBPd6 and one UMPT are configured
10800
Maximum number of concurrent Data Radio Bearers (DRBs) per UE
8
The following tables list the capacity specifications of the 3900 series base stations working in multimode. NOTE a:
If GSM is configured with 72 carriers (G24/24/24), each carrier can be configured with one Standalone Dedicated Control CHannel (SDCCH) only; if GSM is configured with 24 carriers (G8/8/8), each carirer can be configured three SDCCHs. GA/A/A indicates that the GSM network is configured with three cells and each cell has A TRX B x C indicates that the UMTS network is configured with B cells and each cell has C carrier. D x E MHz indicates that the LTE network is configured with D cells and each cell is configured with E MHz bandwidth. The capacity specifications of a UL dual-mode base station are the same as those in a GUL tripe-mode base station.
Table 6-5 Capacity specifications of the 3900 series base stations working in multimode Mode
Board Configuration
Capacity
GU
BBU3900
1 GTMUb/GTMUc + 1 UMPTb + 5 UBBPd6 boards
GSM G24/24/24 + UMTS 24 cells (1T2R, uplink: 5120 CEs,downlink: 5120 CEs)
1 UMPTb_GU + 5 UBBPd6 boards
GSM G24/24/24a + UMTS 24 cells (1T2R, uplink: 5120 CEs,downlink: 5120 CEs)
1 GTMUb/GTMUc + 1 UMPTb + 5 UBBPd6 boards
GSM G24/24/24 + UMTS 48 cells (1T2R, uplink: 5120 CEs,downlink: 5120 CEs)
1 UMPTb_GU + 5 UBBPd6 boards
GSM G8/8/8 + UMTS 36 cells (1T2R, uplink: 5120 CEs,downlink: 5120 CEs)
BBU3910
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Mode
Board Configuration
Capacity
GL
BBU3900/ BBU3910
1 GTMUb/GTMUc + 1 UMPTb + 5 UBBPd6 boards
GSM G24/24/24 + LTE 30 cells (2T2R. The sum of uplink and downlink data rates for an eNodeB at the MAC layer: 1500 Mbit/s. 10800 UEs in RRC connected mode with 20 MHz bandwidth)
1 UMPTb_GL + 6 UBBPd6 boards
GSM G24/24/24a + LTE 36 cells (2T2R, The sum of uplink and downlink data rates for an eNodeB at the MAC layer: 1500 Mbit/s. 10800 UEs in RRC connected mode with 10/15/20 MHz bandwidth)
1 UMPTb + 3 UBBPd5_U boards + 3 UBBPd5_L boards
GSM G24/24/24a + UMTS 18 cells (1T2R, uplink: 2304 CEs,downlink: 2304 CEs) + LTE 18 cells(3 x (6 x 20 MHz), 2T2R, 10800 UEs in RRC connected mode with 10/15/20 MHz bandwidth)
1 GTMUb/GTMUc + 1 UMPTb_UL boards + 3 UBBPd6_U boards + 2 UBBPd5_L boards
GSM G24/24/24 + UMTS 18 cells (1T2R, uplink: 3072 CEs,downlink: 3072 CEs) + LTE 12 cells(2 x (6 x 20 MHz), 2T2R, 7200 UEs in RRC connected mode with 10/15/20 MHz bandwidth)
1 WMPT + 1 UMPTb_GL + 3 UBBPd5_U boards + 3 UBBPd5_L boards
GSM G24/24/24a + UMTS 18 cells (1T2R, uplink: 2304 CEs,downlink: 2304 CEs) + LTE 18 cells(3 x (6 x 20 MHz), 2T2R, 10800 UEs in RRC connected mode with 10/15/20 MHz bandwidth)
1 UMPTb + 3 UBBPd5_U boards + 3 UBBPd5_L boards
GSM G24/24/24a + UMTS 18 cells (1T2R, uplink: 2304 CEs,downlink: 2304 CEs) + LTE 18 cells(3 x (6 x 20 MHz), 2T2R, 10800 UEs in RRC connected mode with 10/15/20 MHz bandwidth)
GUL
BBU3900
BBU3910
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Mode
Board Configuration
Capacity
1 GTMUb/GTMUc + 1 UMPTb_UL boards + 3 UBBPd6_U boards + 2 UBBPd5_L boards
GSM G24/24/24 + UMTS 36 cells (1T2R, uplink: 3072 CEs,downlink: 3072 CEs) + LTE 12 cells(2 x (6 x 20 MHz), 2T2R, 7200 UEs in RRC connected mode with 10/15/20 MHz bandwidth)
6.1.2 Baseband Specifications This section describes the baseband specifications of a 3900 series base station.
GSM Baseband Specifications The following table lists the number of carriers supported by UBBP boards working in GSM mode. Table 6-6 Carrier specifications Board
Number of 2R Carriers
Number of 4R Carriers
UBBPd1, UBBPd2, UBBPd3, or UBBPd4
24
12
UBBPd5
36
18
UBBPd6
48
24
NodeB Baseband Specifications The WBBP is classified into four types, as listed in Table 6-7. NOTE
The baseband processing board in slot 2 or slot 3 of a BBU3900 could transfer the received CPRI data to other boards.
Table 6-7 Specifications of the WBBP
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Board
Number of Cells
Number of UL CEs
Number of DL CEs
Number of HSDPA Codesa
Number of HSDPA UEs
Number of HSUPA UEs
WBBPa
3
128
256
3x15
96
60
WBBPb1
3
64
64
3x15
64
64
WBBPb2
3
128
128
3x15
128
96
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Board
Number of Cells
Number of UL CEs
Number of DL CEs
Number of HSDPA Codesa
Number of HSDPA UEs
Number of HSUPA UEs
WBBPb3
6
256
256
6x15
144
96
WBBPb4
6
384
384
6x15
144
96
WBBPd1
6
192
192
6x15
128
96
WBBPd2
6
384
384
6x15
144
144
WBBPd3
6
256
256
6x15
144
96
WBBPf1
6
192
256
6x15
144
144
WBBPf2
6
256
384
6x15
192
192
WBBPf3
6
384
512
6x15
256
256
WBBPf4
6
512
768
6x15
384
384
a: The number of HSDPA codes supported by the WBBPd1 is 6x15, in which 6 is the number of cells and 15 is the number of HSDPA codes supported by each cell.
The following table lists the baseband specifications of a UBBP working in UMTS mode. Table 6-8 Baseband specifications Board
Number of Cells
Uplink CE
Downlin k CE
Number of HSDPA Codes
Number of HSDPA UEs
Number of HSUPA UEs
UBBPd1
6
384
512
6x15
288
288
UBBPd2
6
512
768
6x15
384
384
UBBPd3
6
384
512
6x15
288
288
UBBPd4
6
512
768
6x15
384
384
UBBPd5
6
768
768
6x15
512
512
UBBPd6
12
1024
1024
12x15
768
768
eNodeB Baseband Specifications (Number of Cells Supported) The following table lists the number of cells, bandwidth, and antenna configurations supported by a single LBBP in LTE FDD scenarios.
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Table 6-9 Specifications of LBBP boards in LTE FDD scenarios Board
Number of Cells
Cell Bandwidth
Antenna Configuration
LBBPc
3
1.4 MHz, 3 MHz, 5 MHz, 10 MHz, 15 MHz, or 20 MHz
3x20 MHz 1T1R 3x20 MHz 1T2R 3x20 MHz 2T2R
LBBPd1
3
1.4 MHz, 3 MHz, 5 MHz, 10 MHz, 15 MHz, or 20 MHz
3x20 MHz 1T1R 3x20 MHz 1T2R 3x20 MHz 2T2R
LBBPd2
3
1.4 MHz, 3 MHz, 5 MHz, 10 MHz, 15 MHz, or 20 MHz
3x20 MHz 1T1R 3x20 MHz 1T2R 3x20 MHz 2T2R 3x20 MHz 2T4R 3x20 MHz 4T4R
LBBPd3
6
1.4 MHz, 3 MHz, 5 MHz, 10 MHz, 15 MHz, or 20 MHz
6x20 MHz 1T1R 6x20 MHz 1T2R 6x20 MHz 2T2Ra
a: When a CPRI fiber optic cable is between 20 km (12.43 mi) and 40 km (24.85 mi), the LBBPd3 board supports the maximum configuration of 3x20 MHz 2T2R.
NOTE
l 1R and 2R cells can be configured together in any form. In hybrid configuration, the total number of cells cannot exceed the number of 2R cells supported by the eNodeB. l In LTE FDD scenarios, the LBBPc, LBBPd1 or LBBPd3 does not support hybrid configuration of 1R and 4R cells, or 2R and 4R cells. l In LTE FDD scenarios, The LBBPd2 supports hybrid configuration of 1R and 4R cells, or 2R and 4R cells. In this configuration, a maximum of three cells are supported.
The following table lists the number of cells, bandwidth, and antenna configurations supported by a single LBBP in LTE TDD scenarios. Table 6-10 Specifications of LBBP boards in LTE TDD scenarios Board
Number of Cells
Cell Bandwidth
Antenna Configuration
LBBPc
3
5 MHz, 10 MHz, or 20 MHz
1x20 MHz 4T4R 3x10 MHz 2T2R 3x20 MHz 2T2R 3x10 MHz 4T4R
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Board
Number of Cells
Cell Bandwidth
Antenna Configuration
LBBPd2
3
5 MHz, 10 MHz, 15 MHz, or 20 MHz
3x20 MHz 2T2R
10 MHz or 20 MHz
3x20 MHz 8T8R
LBBPd4
3
3x20 MHz 4T4R
The following table lists the number of cells supported by a UBBP working in LTE FDD mode. Table 6-11 Specifications of cells Board
Number of Cells
Cell Bandwidth
Antenna Configuration
UBBPd3
3
1.4 MHz, 3 MHz, 5 MHz, 10 MHz, 15 MHz, or 20 MHz
3x20 MHz 1T1R
1.4 MHz, 3 MHz, 5 MHz, 10 MHz, 15 MHz, or 20 MHz
3x20 MHz 1T1R
UBBPd4
3
3x20 MHz 1T2R 3x20 MHz 2T2R
3x20 MHz 1T2R 3x20 MHz 2T2R 3x20 MHz 2T4R 3x20 MHz 4T4R
UBBPd5
6
1.4 MHz, 3 MHz, 5 MHz, 10 MHz, 15 MHz, or 20 MHz
6x20 MHz 1T1R 6x20 MHz 1T2R 6x20 MHz 2T2R 3x20 MHz 4T4R
UBBPd6
6
1.4 MHz, 3 MHz, 5 MHz, 10 MHz, 15 MHz, or 20 MHz
6x20 MHz 1T1R 6x20 MHz 1T2R 6x20 MHz 2T2R 6x20 MHz 2T4R 6x20 MHz 4T4R
NOTE
l 1R and 2R cells can be configured together in any form. In hybrid configuration, the total number of cells cannot exceed the number of 2R cells supported by the eNodeB. l UBBPd4 does not support hybrid configuration of 1R and 4R cells, or 2R and 4R cells. l From SRAN9.0 (V100R009C00SPC210) onwards, the UBBPd5 supports hybrid configuration of 1R and 4R cells, or 2R and 4R cells. In this configuration, a maximum of three cells are supported. l From SRAN9.0 (V100R009C00SPC210) onwards, the UBBPd6 supports hybrid configuration of 1R and 4R cells, or 2R and 4R cells. In hybrid configuration, the number of 1R/2R/4R cells cannot exceed 3.
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The following table lists the number of cells supported by a UBBP working in LTE TDD mode. Table 6-12 Specifications of cells Board
Number of Cells
Cell Bandwidth
Antenna Configuration
UBBPd4
3
5 MHz, 10 MHz, 15 MHz, or 20 MHz
3x20 MHz 2T2R
5 MHz, 10 MHz, 15 MHz, or 20 MHz
6x20 MHz 2T2R
10 MHz or 20 MHz
3x20 MHz 8T8R
UBBPd6
6
UBBPd9
3
3x20 MHz 4T4R
6x20 MHz 4T4R
eNodeB Baseband Specifications (Maximum Number of UEs in RRC_Connected Mode) The following table lists the maximum number of UEs in RRC_Connected mode supported by an eNodeB FDD cell. Table 6-13 Maximum number of UEs in RRC_Connected mode supported by an eNodeB FDD cell Cell Bandwidth
Maximum Number of UEs in RRC_Connected Mode per Cell
Maximum Number of Uplink Synchronized UEs
1.4 MHz
168
l LBBPc: 56 l LBBPd: 100 l UBBPd: 168
3 MHz
360
l LBBPc: 120 l LBBPd/UBBPd: 360
5 MHz
600
l LBBPc: 200 l LBBPd/UBBPd: 600
10 MHz
1200
l LBBPc: 400 l LBBPd/UBBPd: 1200
15 MHz
1200
l LBBPc: 400 l LBBPd/UBBPd: 1200
20 MHz
1200
l LBBPc: 400 l LBBPd/UBBPd: 1200
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The following table lists the maximum number of UEs in RRC_Connected mode supported by an eNodeB TDD cell. Table 6-14 Maximum number of UEs in RRC_Connected mode supported by an eNodeB TDD cell Cell Bandwidth
Maximum Number of UEs in RRC_Connected Mode per Cell
5 MHz
600
10 MHz
1200
15 MHz
1200
20 MHz
1200
The following table lists the maximum number of UEs in RRC Connected mode supported by the main control board working in LTE FDD mode. Table 6-15 Maximum number of UEs in RRC Connected mode supported by the main control board Board
Datacard Traffic Model
Smartphone Traffic Model
Maximum Number of UEs in RRC Connected Mode
Maximum Number of Uplink Synchronized UEs
Maximum Number of UEs in RRC Connected Mode
Maximum Number of Uplink Synchronized UEs
LMPT
5400
5400
900
900
UMPTa1, UMPTa2, or UMPTa6
10800
10800
1100
1100
UMPTb1 or UMPTb2
10800
10800
1500
1500
The following table lists the maximum number of UEs in RRC Connected mode supported by the LBBP board working in LTE FDD mode.
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Table 6-16 Maximum number of UEs in RRC Connected mode supported by the LBBP board Board
LBBPc
LBBPd1 or LBBPd2
LBBPd3
Cell Bandwidt h
Datacard Traffic Model
Smartphone Traffic Model
Maximum Number of UEs in RRC Connected Mode
Maximum Number of Uplink Synchronize d UEs
Maximum Number of UEs in RRC Connected Mode
Maximum Number of Uplink Synchronize d UEs
1.4 MHz
504
168
300
168
3 MHz
1080
360
300
300
5 MHz, 10 MHz, 15 MHz, or 20 MHz
1800
600
300
300
1.4 MHz
504
300
504
300
3 MHz
1080
1080
600
600
5 MHz
1800
1200(1)
600
600
10 MHz, 15 MHz, or 20 MHz
3600
1200(1)
600
600
1.4 MHz
1008
600
700
600
3 MHz
2160
1200(1)
700
700
5 MHz, 10 MHz, 15 MHz, or 20 MHz
3600
1200(1)
700
700
NOTE (1):
During the configuration of the MaxSyncUserNumPerBbi parameter, the maximum number of uplink synchronized UEs supported by an LBBPd1, LBBPd2, or LBBPd3 board can reach 3600 in the datacard traffic model. However, user experience and system performance will deteriorate.
The following table lists the maximum number of UEs in RRC Connected mode supported by the LBBP board working in LTE TDD mode. Table 6-17 Maximum number of UEs in RRC Connected mode supported by the LBBP board
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Board
Cell Bandwidth
Maximum Number of UEs in RRC Connected Mode
LBBPc
5 MHz or 10 MHz
1800
20 MHz
1800(2R)/1200(4R)
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Board
Cell Bandwidth
Maximum Number of UEs in RRC Connected Mode
LBBPd2
5 MHz
1800
10 MHz, 15 MHz, or 20 MHz
3600
5 MHz
1800
10 MHz, 15 MHz, or 20 MHz
3600
LBBPd4
The following table lists the maximum number of UEs in RRC Connected mode supported by the UBBP board working in LTE FDD mode. Table 6-18 Maximum number of UEs in RRC Connected mode supported by the UBBP board Board
UBBPd3 or UBBPd4
UBBPd5 or UBBPd6
Cell Bandwidth
Datacard Traffic Model
Smartphone Traffic Model
Maximum Number of UEs in RRC Connected Mode
Maximum Number of Uplink Synchroniz ed UEs
Maximum Number of UEs in RRC Connected Mode
Maximum Number of Uplink Synchroniz ed UEs
1.4 MHz
504
504
504
504
3 MHz
1080
1080
1080
1080
5 MHz
1800
1800
1400
1400
10 MHz, 15 MHz, or 20 MHz
3600
3600
1400
1400
1.4 MHz
1008
1008
1008
1008
3 MHz
2160
2160
1800
1800
5 MHz, 10 MHz, 15 MHz, or 20 MHz
3600
3600
1800
1800
The following table lists the maximum number of UEs in RRC Connected mode supported by the UBBP board working in LTE TDD mode.
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Table 6-19 Maximum number of UEs in RRC Connected mode supported by the UBBP board Board
Cell Bandwidth
Maximum Number of UEs in RRC Connected Mode
UBBPd4 or UBBPd6
5 MHz
1800
10 MHz, 15 MHz, or 20 MHz
3600
10 MHz, 15 MHz, or 20 MHz
3600
UBBPd9
The following table lists the maximum number of UEs in RRC Connected mode when an eNodeB FDD uses the typical board combination and the datacard traffic model. Table 6-20 Maximum number of UEs in RRC_Connected mode supported by an eNodeB FDD Board Combination
Maximum Number of UEs in RRC_Connected Mode
Maximum Number of Uplink Synchronized UEs
1 UMPT + 3 LBBPc
5400
1800
1 UMPT + 5 LBBPd3
10800
10800
1 UMPT + 5 UBBPd5
10800
10800
NOTE
Specifications in the preceding table are provided based on the assumption that the cell bandwidth is 20 MHz.
The following table lists the maximum number of UEs in RRC_Connected mode supported by an eNodeB TDD when the typical board combination is used. Table 6-21 Maximum number of UEs in RRC_Connected mode supported by an eNodeB TDD Board Combination
Maximum Number of UEs in RRC_Connected Mode
1 UMPT + 3 LBBPc
5400
1 UMPT + 6 LBBPd2
10800
eNodeB Baseband Specifications (Maximum Number of DRBs Supported) The maximum number of data radio bearers (DRBs) per user is eight. The maximum number of DRBs supported by an LMPT/LBBP/UBBP/UMPT is three times the maximum number of UEs in RRC_Connected mode supported. Issue 14 (2016-01-30)
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The maximum number of DRBs supported by an eNodeB is 32,400.
eNodeB Baseband Specifications (Maximum Throughput) The following table lists the maximum uplink and downlink cell and user throughput supported by an eNodeB FDD. Table 6-22 Maximum uplink and downlink cell and user throughput supported by an eNodeB FDD Item
Cell Bandwidth
Specifications
Maximum throughput per cell
1.4 MHz
l DL cell MAC layer throughput: 8.7 Mbit/s (at 2x2 MIMO, 64QAM) l UL cell MAC layer throughput: 6.4 Mbit/s (at 2x2 MU-MIMO, 16QAM) l UL cell MAC layer throughput: 3.2 Mbit/s (at 1x4 SIMO, 16QAM) l UL cell MAC layer throughput: 6.4 Mbit/s (at 2x4 MU-MIMO, 16QAM)
3 MHz
l DL cell MAC layer throughput: 22 Mbit/s (at 2x2 MIMO, 64QAM) l UL cell MAC layer throughput: 16 Mbit/s (at 2x2 MU-MIMO, 16QAM) l UL cell MAC layer throughput: 8 Mbit/s (at 1x4 SIMO, 16QAM) l UL cell MAC layer throughput: 16 Mbit/s (at 2x4 MU-MIMO, 16QAM)
5 MHz
l DL cell MAC layer throughput: 36 Mbit/s (at 2x2 MIMO, 64QAM) l UL cell MAC layer throughput: 27 Mbit/s (at 2x2 MU-MIMO, 16QAM) l UL cell MAC layer throughput: 13 Mbit/s (at 1x4 SIMO, 16QAM) l UL cell MAC layer throughput: 27 Mbit/s (at 2x4 MU-MIMO, 16QAM)
10 MHz
l DL cell MAC layer throughput: 73 Mbit/s (at 2x2 MIMO, 64QAM) l UL cell MAC layer throughput: 55 Mbit/s (at 2x2 MU-MIMO, 16QAM) l UL cell MAC layer throughput: 27 Mbit/s (at 1x4 SIMO, 16QAM) l UL cell MAC layer throughput: 55 Mbit/s (at 2x4 MU-MIMO, 16QAM)
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Item
Cell Bandwidth
Specifications
15 MHz
l DL cell MAC layer throughput: 110 Mbit/s (at 2x2 MIMO, 64QAM) l UL cell MAC layer throughput: 81 Mbit/s (at 2x2 MU-MIMO, 16QAM) l UL cell MAC layer throughput: 40 Mbit/s (at 1x4 SIMO, 16QAM) l UL cell MAC layer throughput: 81 Mbit/s (at 2x4 MU-MIMO, 16QAM)
20 MHz
l DL cell MAC layer throughput: 150 Mbit/s (at 2x2 MIMO, 64QAM) l UL cell MAC layer throughput: 110 Mbit/s (at 2x2 MU-MIMO, 16QAM) l UL cell MAC layer throughput: 55 Mbit/s (at 1x4 SIMO, 16QAM) l UL cell MAC layer throughput: 110 Mbit/s (at 2x4 MU-MIMO, 16QAM)
Maximum throughput per user
1.4 MHz
l Single user DL MAC layer throughput: 8.7 Mbit/s (at 2x2 MIMO, 64QAM) l Single user UL MAC layer throughput: 3.2 Mbit/s (at 1x2 SIMO/1x4 SIMO, 16QAM)
3 MHz
l Single user DL MAC layer throughput: 22 Mbit/s (at 2x2 MIMO, 64QAM) l Single user UL MAC layer throughput: 8 Mbit/s (at 1x2 SIMO/1x4 SIMO, 16QAM)
5 MHz
l Single user DL MAC layer throughput: 36 Mbit/s (at 2x2 MIMO, 64QAM) l Single user UL MAC layer throughput: 13 Mbit/s (at 1x2 SIMO/1x4 SIMO, 16QAM)
10 MHz
l Single user DL MAC layer throughput: 73 Mbit/s (at 2x2 MIMO, 64QAM) l Single user UL MAC layer throughput: 27 Mbit/s (at 1x2 SIMO/1x4 SIMO, 16QAM)
15 MHz
l Single user DL MAC layer throughput: 110 Mbit/s (at 2x2 MIMO, 64QAM) l Single user UL MAC layer throughput: 40 Mbit/s (at 1x2 SIMO/1x4 SIMO, 16QAM)
20 MHz
l Single user DL MAC layer throughput: 150 Mbit/s (at 2x2 MIMO, 64QAM) l Single user UL MAC layer throughput: 51 Mbit/s (at 1x2 SIMO/1x4 SIMO, 16QAM)
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The following table lists the maximum uplink and downlink cell and user throughput supported by an eNodeB TDD. Table 6-23 Maximum uplink and downlink cell and user throughput supported by an eNodeB TDD Item
Cell Bandw idth
Transmit and Receive Mode
Subframe Ratio
SA1 (2:2) 2T2R SA2 (3:1)
20 MHz
SA1 (2:2)
4T4R Maximu m throughp ut per cell (MAC Layer, DL 64QAM, UL 16QAM, Cat3)
SA2 (3:1)
SA1 (2:2) 2T2R SA2 (3:1)
15 MHz
SA1 (2:2)
4T4R
SA2 (3:1)
10 MHz
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2T2R
SA1 (2:2)
Multi-Antenna Technique
Specifications
2x2 DL (MIMO)
80 Mbit/s
1x2 UL (SIMO)
20 Mbit/s
2x2 DL (MIMO)
110 Mbit/s
1x2 UL (SIMO)
9 Mbit/s
2x2 DL (MIMO)
80 Mbit/s
1x4 UL (SIMO)
20 Mbit/s
2x4 UL (VMIMO)
30 Mbit/s
2x2 DL (MIMO)
110 Mbit/s
1x4 UL (SIMO)
9 Mbit/s
2x4 UL (VMIMO)
14 Mbit/s
2x2 DL (MIMO)
58 Mbit/s
1x2 UL (SIMO)
15 Mbit/s
2x2 DL (MIMO)
80 Mbit/s
1x2 UL (SIMO)
7 Mbit/s
2x2 DL (MIMO)
58 Mbit/s
1x4 UL (SIMO)
15 Mbit/s
2x4 UL (VMIMO)
30 Mbit/s
2x2 DL (MIMO)
80 Mbit/s
1x4 UL (SIMO)
7 Mbit/s
2x4 UL (VMIMO)
15 Mbit/s
2x2 DL (MIMO)
40 Mbit/s
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6 Product Specifications
Cell Bandw idth
Transmit and Receive Mode
Subframe Ratio
SA2 (3:1)
SA1 (2:2)
4T4R
SA2 (3:1)
SA1 (2:2) 2T2R SA2 (3:1)
5 MHz
SA1 (2:2)
4T4R
SA2 (3:1)
Maximu m throughp ut per user (MAC Layer, DL 64QAM, UL
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SA1 (2:2) 2T2R SA2 (3:1)
20MHz
4T4R
SA1 (2:2) SA2 (3:1)
Multi-Antenna Technique
Specifications
1x2 UL (SIMO)
10 Mbit/s
2x2 DL (MIMO)
52 Mbit/s
1x2 UL (SIMO)
5 Mbit/s
2x2 DL (MIMO)
40 Mbit/s
1x4 UL (SIMO)
10 Mbit/s
2x4 UL (VMIMO)
19 Mbit/s
2x2 DL (MIMO)
52 Mbit/s
1x4 UL (SIMO)
5 Mbit/s
2x4 UL (VMIMO)
8 Mbit/s
2x2 DL (MIMO)
18 Mbit/s
1x2 UL (SIMO)
5 Mbit/s
2x2 DL (MIMO)
25 Mbit/s
1x2 UL (SIMO)
2 Mbit/s
2x2 DL (MIMO)
18 Mbit/s
1x4 UL (SIMO)
5 Mbit/s
2x4 UL (VMIMO)
10 Mbit/s
2x2 DL (MIMO)
25 Mbit/s
1x4 UL (SIMO)
2 Mbit/s
2x4 UL (VMIMO)
5 Mbit/s
2x2 DL (MIMO)
60 Mbit/s
1x2 UL (SIMO)
20 Mbit/s
2x2 DL (MIMO)
80 Mbit/s
1x2 UL (SIMO)
10 Mbit/s
2x2 DL (MIMO)
60 Mbit/s
1x4 UL (SIMO)
20 Mbit/s
2x2 DL (MIMO)
80 Mbit/s
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Cell Bandw idth
Transmit and Receive Mode
Subframe Ratio
SA1 (2:2) 2T2R SA2 (3:1) 15MHz SA1 (2:2) 4T4R SA2 (3:1)
SA1 (2:2) 2T2R 16QAM, Cat3)
SA2 (3:1) 10MHz SA1 (2:2) 4T4R SA2 (3:1)
SA1 (2:2) 2T2R SA2 (3:1) 5MHz SA1 (2:2) 4T4R SA2 (3:1)
Multi-Antenna Technique
Specifications
1x4 UL (SIMO)
10 Mbit/s
2x2 DL (MIMO)
58 Mbit/s
1x2 UL (SIMO)
15 Mbit/s
2x2 DL (MIMO)
80 Mbit/s
1x2 UL (SIMO)
7 Mbit/s
2x2 DL (MIMO)
58 Mbit/s
1x4 UL (SIMO)
15 Mbit/s
2x2 DL (MIMO)
80 Mbit/s
1x4 UL (SIMO)
7 Mbit/s
2x2 DL (MIMO)
40 Mbit/s
1x2 UL (SIMO)
10 Mbit/s
2x2 DL (MIMO)
52 Mbit/s
1x2 UL (SIMO)
5 Mbit/s
2x2 DL (MIMO)
40 Mbit/s
1x4 UL (SIMO)
10 Mbit/s
2x2 DL (MIMO)
52 Mbit/s
1x4 UL (SIMO)
5 Mbit/s
2x2 DL (MIMO)
18 Mbit/s
1x2 UL (SIMO)
4 Mbit/s
2x2 DL (MIMO)
25 Mbit/s
1x2 UL (SIMO)
2 Mbit/s
2x2 DL (MIMO)
18 Mbit/s
1x4 UL (SIMO)
4 Mbit/s
2x2 DL (MIMO)
25 Mbit/s
1x4 UL (SIMO)
2 Mbit/s
Baseband Specifications of a Multimode Base Station In co-BBP scenarios, the baseband signals of multiple modes are processed by one baseband processing board. Co-BBP baseband specifications described here refer to the maximum Issue 14 (2016-01-30)
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baseband specifications of a baseband processing board when it processes baseband signals of multiple modes at the same time. For example, baseband specifications of GL co-BBP refer to the maximum baseband specifications of a baseband processing board when it processes GSM and LTE FDD baseband signals at the same time. The following tables provide the baseband specifications in GU, GL, UL, and GUL co-BBP scenarios, respectively. NOTE
In GL, UL, or GUL co-BBP scenarios, the UBBPd board does not support hybrid configuration of 1R and 4R LTE FDD cells, or 2R and 4R LTE FDD cells.
Table 6-24 Baseband specifications of GU co-BBP
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Board Type
GSM TRX
Numbe r of UMTS Cells
Numbe r of UMTS UL CEs
Numbe r of UMTS DL CEs
Numbe r of UMTS HSDPA Codes
Numbe r of UMTS HSDPA UEs
Numbe r of UMTS HSUPA UEs
UBBPd1
12
6
192
256
6x15
144
144
UBBPd2
12
6
256
384
6x15
192
192
UBBPd3
12
6
192
256
6x15
144
144
UBBPd4
12
6
256
384
6x15
192
192
UBBPd5
18
6
384
512
6x15
288
288
UBBPd6
24
6
512
768
6x15
384
384
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Table 6-25 Baseband specifications of GL co-BBP Board Type
GSM TRX
Maximum Number of LTE FDD Cells
Maximum Number of LTE FDD UEs in RRC_Conn ected Mode (Datacard Traffic Model)
Maximum Number of LTE FDD UEs in RRC_Conn ected Mode (Smartpho ne Traffic Model)
LTE FDD Maximum Throughpu t (Mbit/s)
UBBPd3
12
3 (2 R cells, with 1.4/3/5/10 MHz bandwidth)
l 504 with 1.4 MHz bandwidt h
l 504 with 1.4 MHz bandwidt h
l Downlin k: 225
l 1080 with 3 MHz bandwidt h
l 600 with 3/5/10 MHz bandwidt h
l Uplink: 112.5
l 1800 with 5 MHz bandwidt h l 3600 with 10 MHz bandwidt h
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Board Type
GSM TRX
Maximum Number of LTE FDD Cells
Maximum Number of LTE FDD UEs in RRC_Conn ected Mode (Datacard Traffic Model)
Maximum Number of LTE FDD UEs in RRC_Conn ected Mode (Smartpho ne Traffic Model)
LTE FDD Maximum Throughpu t (Mbit/s)
UBBPd4
12
3 (2 R cells, with 1.4/3/5/10 MHz bandwidth)
l 504 with 1.4 MHz bandwidt h
l 504 with 1.4 MHz bandwidt h
l Downlin k: 220
l 1080 with 3 MHz bandwidt h
l 600 with 3/5/10 MHz bandwidt h
l Uplink: 112.5
l 1800 with 5 MHz bandwidt h l 3600 with 10 MHz bandwidt h UBBPd5
18
3 (2 R or 4 R cells, with 1.4/3/5/10/1 5/20 MHz bandwidth)
l 504 with 1.4 MHz bandwidt h
l 504 with 1.4 MHz bandwidt h
l 1080 with 3 MHz bandwidt h
l 800 with 3/5/10/15 /20 MHz bandwidt h
l Downlin k: 600 l Uplink: 225
l 1800 with 5 MHz bandwidt h l 3600 with 10/15/20 MHz bandwidt h
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Board Type
GSM TRX
Maximum Number of LTE FDD Cells
Maximum Number of LTE FDD UEs in RRC_Conn ected Mode (Datacard Traffic Model)
Maximum Number of LTE FDD UEs in RRC_Conn ected Mode (Smartpho ne Traffic Model)
LTE FDD Maximum Throughpu t (Mbit/s)
UBBPd6
24
3 (2 R or 4 R cells, with 1.4/3/5/10/1 5/20 MHz bandwidth)
l 504 with 1.4 MHz bandwidt h
l 504 with 1.4 MHz bandwidt h
l Downlin k: 600
l 1080 with 3 MHz bandwidt h
l 800 with 3/5/10/15 /20 MHz bandwidt h
l Uplink: 225
l 1800 with 5 MHz bandwidt h l 3600 with 10/15/20 MHz bandwidt h
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Table 6-26 Baseband specifications of UL co-BBP
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Boar d Type
Num ber of UM TS Cells
Num ber of UM TS UL CEs
Num ber of UM TS DL CEs
Num ber of UM TS HSD PA Code s
Num ber of UM TS HSD PA UEs
Num ber of UM TS HSU PA UEs
Maxi mum Num ber of LTE FDD Cells
Maxi mum Num ber of LTE FDD UEs in RRC _Con necte d Mod e (Dat acar d Traff ic Mod el)
Maxi mum Num ber of LTE FDD UEs in RRC _Con necte d Mod e (Sma rtph one Traff ic Mod el)
LTE FDD Maxi mum Thro ughp ut (Mbi t/s)
UBB Pd6
6
512
768
6x15
384
384
3 (2 R or 4R cells, with 1.4/3/ 5/10/ 15/20 MHz band width )
l 50 4 wi th 1. 4 M H z ba nd wi dt h
l 50 4 wi th 1. 4 M H z ba nd wi dt h
l D o w nli nk : 60 0
l 10 80 wi th 3 M H z ba nd wi dt h
l 80 0 wi th 3/ 5/ 10 / 15 /2 0 M H
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l U pli nk : 22 5
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Boar d Type
6 Product Specifications
Num ber of UM TS Cells
Num ber of UM TS UL CEs
Num ber of UM TS DL CEs
Num ber of UM TS HSD PA Code s
Num ber of UM TS HSD PA UEs
Num ber of UM TS HSU PA UEs
Maxi mum Num ber of LTE FDD Cells
Maxi mum Num ber of LTE FDD UEs in RRC _Con necte d Mod e (Dat acar d Traff ic Mod el)
Maxi mum Num ber of LTE FDD UEs in RRC _Con necte d Mod e (Sma rtph one Traff ic Mod el)
l 18 00 wi th 5 M H z ba nd wi dt h
z ba nd wi dt h
LTE FDD Maxi mum Thro ughp ut (Mbi t/s)
l 36 00 wi th 10 / 15 /2 0 M H z ba nd wi
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Boar d Type
6 Product Specifications
Num ber of UM TS Cells
Num ber of UM TS UL CEs
Num ber of UM TS DL CEs
Num ber of UM TS HSD PA Code s
Num ber of UM TS HSD PA UEs
Num ber of UM TS HSU PA UEs
Maxi mum Num ber of LTE FDD Cells
Maxi mum Num ber of LTE FDD UEs in RRC _Con necte d Mod e (Dat acar d Traff ic Mod el)
Maxi mum Num ber of LTE FDD UEs in RRC _Con necte d Mod e (Sma rtph one Traff ic Mod el)
LTE FDD Maxi mum Thro ughp ut (Mbi t/s)
dt h
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Table 6-27 Baseband specifications of GUL co-BBP
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Max imu m Nu mbe r of LTE FD D UEs in RR C_C onn ecte d Mo de (Sm artp hon e Traf fic Mo del)
LTE FD D Max imu m Thr oug hpu t (Mb it/s)
Boar d Typ e
GS M TRX
Nu mbe r of UM TS Cell s
Nu mbe r of UM TS UL CEs
Nu mbe r of UM TS DL CEs
Nu mbe r of UM TS HS DP A Cod es
Nu mbe r of UM TS HS DP A UEs
Nu mbe r of UM TS HS UP A UEs
Max imu m Nu mbe r of LTE FD D Cell s
Max imu m Nu mbe r of LTE FD D UEs in RR C_C onn ecte d Mo de (Dat acar d Traf fic Mo del)
UBB Pd6
12
6
256
384
6x15
192
192
3 (2 R or 4R cells, with 1.4/3 / 5/10/ 15/2 0 MHz band widt h)
l 5 l 5 l D 0 o 0 4 w 4 w n w it li it h n h 1. k 1. 4 : 4 M 6 M H 0 H z 0 z b l U b a a p n n li d d n w w k i i : d d 2 t t 2 h h 5 l 1 l 8 0 0 0 8
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Boar d Typ e
6 Product Specifications
GS M TRX
Nu mbe r of UM TS Cell s
Nu mbe r of UM TS UL CEs
Nu mbe r of UM TS DL CEs
Nu mbe r of UM TS HS DP A Cod es
Nu mbe r of UM TS HS DP A UEs
Nu mbe r of UM TS HS UP A UEs
Max imu m Nu mbe r of LTE FD D Cell s
Max imu m Nu mbe r of LTE FD D UEs in RR C_C onn ecte d Mo de (Dat acar d Traf fic Mo del)
Max imu m Nu mbe r of LTE FD D UEs in RR C_C onn ecte d Mo de (Sm artp hon e Traf fic Mo del)
0 w it h 3 M H z b a n d w i d t h
w it h 3 / 5 / 1 0 / 1 5 / 2 0 M H z b a n d w i d
l 1 8 0 0 w it h 5
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LTE FD D Max imu m Thr oug hpu t (Mb it/s)
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Boar d Typ e
6 Product Specifications
GS M TRX
Nu mbe r of UM TS Cell s
Nu mbe r of UM TS UL CEs
Nu mbe r of UM TS DL CEs
Nu mbe r of UM TS HS DP A Cod es
Nu mbe r of UM TS HS DP A UEs
Nu mbe r of UM TS HS UP A UEs
Max imu m Nu mbe r of LTE FD D Cell s
Max imu m Nu mbe r of LTE FD D UEs in RR C_C onn ecte d Mo de (Dat acar d Traf fic Mo del)
Max imu m Nu mbe r of LTE FD D UEs in RR C_C onn ecte d Mo de (Sm artp hon e Traf fic Mo del)
M H z b a n d w i d t h
t h
LTE FD D Max imu m Thr oug hpu t (Mb it/s)
l 3 6 0 0 w it h 1 0 / 1 5 /
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Boar d Typ e
6 Product Specifications
GS M TRX
Nu mbe r of UM TS Cell s
Nu mbe r of UM TS UL CEs
Nu mbe r of UM TS DL CEs
Nu mbe r of UM TS HS DP A Cod es
Nu mbe r of UM TS HS DP A UEs
Nu mbe r of UM TS HS UP A UEs
Max imu m Nu mbe r of LTE FD D Cell s
Max imu m Nu mbe r of LTE FD D UEs in RR C_C onn ecte d Mo de (Dat acar d Traf fic Mo del)
Max imu m Nu mbe r of LTE FD D UEs in RR C_C onn ecte d Mo de (Sm artp hon e Traf fic Mo del)
LTE FD D Max imu m Thr oug hpu t (Mb it/s)
2 0 M H z b a n d w i d t h
6.1.3 Signaling Specifications This section describes the signaling specifications of 3900 series base stations.
NodeB Signaling Specifications The following table provides the signaling specifications of a NodeB when the typical board combination is used. Issue 14 (2016-01-30)
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Table 6-28 NodeB board combination and signaling specifications Main Processing and Transmissi on Unit
Number of WBBPb/ WBBPd Boards
Number of WBBPf Boards
Number of UBBPd1/ UBBPd12/ UBBPd3/ UBBPd4/ UBBPd5 Boards
Number of UBBPd6 Boards
Signaling Specificatio ns (CNBAPS)
WMPT
1
0
0
0
60
2
0
0
0
120
3
0
0
0
180
≥4
0
0
0
200
Any
≥1
0
0
200
0
Any
≥1
0
200
0
Any
0
≥1
200
1
0
0
0
60
2
0
0
0
120
3
0
0
0
180
4
0
0
0
240
5
0
0
0
300
0
1
0
0
200
1
1
0
0
260
≥2
1
0
0
300
Any
≥2
0
0
300
0
0
1
0
200
0
≥1
1
0
300
0
Any
≥2
0
300
0
Any
0
≥1
300
1
0
0
0
400
2
0
0
0
460
3
0
0
0
520
4
0
0
0
580
5
0
0
0
640
6
0
0
0
700
WMPT +UTRP
WMPT +UTRPc
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Main Processing and Transmissi on Unit
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6 Product Specifications
Number of WBBPb/ WBBPd Boards
Number of WBBPf Boards
Number of UBBPd1/ UBBPd12/ UBBPd3/ UBBPd4/ UBBPd5 Boards
Number of UBBPd6 Boards
Signaling Specificatio ns (CNBAPS)
0
1
0
0
500
1
1
0
0
560
2
1
0
0
620
3
1
0
0
680
4
1
0
0
740
5
1
0
0
800
0
2
0
0
700
1
2
0
0
760
2
2
0
0
820
3
2
0
0
880
4
2
0
0
940
0
3
0
0
900
1
3
0
0
960
2
3
0
0
1020
3
3
0
0
1080
0
4
0
0
1100
1
4
0
0
1160
2
4
0
0
1220
0
5
0
0
1300
1
5
0
0
1360
0
6
0
0
1500
0
0
1
0
500
0
1
1
0
700
0
2
1
0
900
0
3
1
0
1100
0
4
1
0
1300
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Main Processing and Transmissi on Unit
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6 Product Specifications
Number of WBBPb/ WBBPd Boards
Number of WBBPf Boards
Number of UBBPd1/ UBBPd12/ UBBPd3/ UBBPd4/ UBBPd5 Boards
Number of UBBPd6 Boards
Signaling Specificatio ns (CNBAPS)
0
5
1
0
1500
0
0
2
0
700
0
1
2
0
900
0
2
2
0
1100
0
3
2
0
1300
0
4
2
0
1500
0
0
3
0
900
0
1
3
0
1100
0
2
3
0
1300
0
3
3
0
1500
0
0
4
0
1100
0
1
4
0
1300
0
2
4
0
1500
0
0
5
0
1300
0
1
5
0
1500
0
0
6
0
1500
0
0
0
1
600
0
1
0
1
800
0
2
0
1
1000
0
3
0
1
1200
0
4
0
1
1400
0
5
0
1
1500
0
0
0
2
900
0
1
0
2
1100
0
2
0
2
1300
0
≥3
0
2
1500
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Main Processing and Transmissi on Unit
UMPTa1/ UMPTa2/ UMPTb1/ UMPTb2
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6 Product Specifications
Number of WBBPb/ WBBPd Boards
Number of WBBPf Boards
Number of UBBPd1/ UBBPd12/ UBBPd3/ UBBPd4/ UBBPd5 Boards
Number of UBBPd6 Boards
Signaling Specificatio ns (CNBAPS)
0
0
0
3
1200
0
1
0
3
1400
0
≥2
0
3
1500
0
Any
0
≥4
1500
1
0
0
0
400
2
0
0
0
460
3
0
0
0
520
4
0
0
0
580
5
0
0
0
640
6
0
0
0
700
0
1
0
0
500
1
1
0
0
560
2
1
0
0
620
3
1
0
0
680
4
1
0
0
740
5
1
0
0
800
0
2
0
0
700
1
2
0
0
760
2
2
0
0
820
3
2
0
0
880
4
2
0
0
940
0
3
0
0
900
1
3
0
0
960
2
3
0
0
1020
3
3
0
0
1080
0
4
0
0
1100
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Main Processing and Transmissi on Unit
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6 Product Specifications
Number of WBBPb/ WBBPd Boards
Number of WBBPf Boards
Number of UBBPd1/ UBBPd12/ UBBPd3/ UBBPd4/ UBBPd5 Boards
Number of UBBPd6 Boards
Signaling Specificatio ns (CNBAPS)
1
4
0
0
1160
2
4
0
0
1220
0
5
0
0
1300
1
5
0
0
1360
0
6
0
0
1500
0
0
1
0
500
0
1
1
0
700
0
2
1
0
900
0
3
1
0
1100
0
4
1
0
1300
0
5
1
0
1500
0
0
2
0
700
0
1
2
0
900
0
2
2
0
1100
0
3
2
0
1300
0
4
2
0
1500
0
0
3
0
900
0
1
3
0
1100
0
2
3
0
1300
0
3
3
0
1500
0
0
4
0
1100
0
1
4
0
1300
0
2
4
0
1500
0
0
5
0
1300
0
1
5
0
1500
0
0
6
0
1500
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Main Processing and Transmissi on Unit
Number of WBBPb/ WBBPd Boards
Number of WBBPf Boards
Number of UBBPd1/ UBBPd12/ UBBPd3/ UBBPd4/ UBBPd5 Boards
Number of UBBPd6 Boards
Signaling Specificatio ns (CNBAPS)
0
0
0
1
600
0
1
0
1
800
0
2
0
1
1000
0
3
0
1
1200
0
4
0
1
1400
0
5
0
1
1500
0
0
0
2
900
0
1
0
2
1100
0
2
0
2
1300
0
≥3
0
2
1500
0
0
0
3
1200
0
1
0
3
1400
0
≥2
0
3
1500
0
Any
0
≥4
1500
Traffic Model On live networks, the service capacity of an eNodeB FDD depends on system processing capacities as well as the traffic model used. This section describes two traffic models: datacard traffic model and smartphone traffic model. l
The datacard traffic model derives from a typical LTE network where data cards make up a large proportion of all admitted terminals. LTE dongle and customer premises equipment (CPE) are examples of such data cards. UEs in this traffic model are characterized by long online duration, low mobility, and many large-packet data services.
l
The smartphone traffic model derives from a typical LTE network where smartphones make up a large proportion of all admitted terminals. UEs in this traffic model are characterized by short online duration, frequent network access and release, high mobility, and many small-packet data services.
The following table describes the control plane (CP) traffic models for the datacard and smartphone traffic models. NOTE (1):
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Traffic models described in the following table are obtained at busy hours. @BH refers to at busy hour.
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Table 6-29 CP traffic models for the datacard and smartphone traffic models
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Traffic Model Item
Numbers for the Smartphone Traffic Model
Numbers for the Datacard Traffic Model
PS Call Attempt Number per User @BH(1) (times)
180
20
Dedicated Bearer Attempt Number per User @BH (times)
5
1
TAU & Attach & Detach per User @BH (times)
30
5
Intra-eNodeB Handover Number per User @BH (times)
10
1
Inter-eNodeB X2 Based Handover Out Attempt Number per User @BH (times)
40
2
Inter-eNodeB X2 Based Handover In Attempt Number per User @BH (times)
40
2
Inter-eNodeB S1 Based Handover Out Attempt Number per User @BH (times)
0
0
Inter-eNodeB S1 Based Handover In Attempt Number per User @BH (times)
0
0
Inter-RAT Handover Attempt Number per User @BH (times)
3
0
Inter-RAT Redirection Attempt Number per User @BH (times)
12
0
CSFB Based Inter-RAT Handover Attempt Number per User @BH (times)
0
0
CSFB Based Inter-RAT Redirection Attempt Number per User @BH (times)
5
0
CA Scell Configuration Update Attempt Number per User @BH (times)
10
0
Syn2Unsyn Attempt Number per User @BH (times)
0
0
Unsyn2Syn Attempt Number per User @BH (times)
0
0
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Traffic Model Item
Numbers for the Smartphone Traffic Model
Numbers for the Datacard Traffic Model
RRC Re-Establish Number per User @BH (times)
2
0
Paging number @BH (times)
1260000
100000
The following table describes the user plane (UP) traffic model for the smartphone traffic model. Table 6-30 UP traffic model for the smartphone traffic model Service Type
PS Call Attempt Ratio (%)
DL Traffic Volume per PS Call (KB)
DL-UL Traffic Volume Ratio
Web browsing & Email
35.00
250
15
Video downloading, uploading & streaming
0.35
20000
50
SNS
15.00
200
4
IM
15.00
5
0.7
Music & APP downloading & Streaming
0.50
5000
30
File sharing & Storage
0.10
400
0.1
Video Call
0.20
3000
1
Heart beat
25.00
0.1
1
Other
8.85
50
1
The following table describes the user plane (UP) traffic model for the datacard traffic model. Table 6-31 UP traffic model for the datacard traffic model
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Service Type
UL Traffic Volume per PS Call (KB)
DL Traffic Volume per PS Call (KB)
FTP
600
6000
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Signaling Specifications of eNodeBs Busy Hour Call Attempts (BHCA) is the number of calls attempted at a busy hour. Signaling procedures required for completing a call may include the following: call setup, call release (including CSFB if it occurs), handover, tracking area update (TAU), DRB setup and release, and transition from the uplink-synchronized state to the uplink-asynchronized state. BHCA indicates the signaling processing capabilities of a system. A busy hour call initiated on different operators' networks involves different types and numbers of signaling procedures and therefore consumes different amount of eNodeB resources. As a result, the BHCA capability varies depending on the traffic model. The BHCA specifications provided by Huawei are based on the smartphone traffic model. The following table lists the signaling specifications of the LMPT/UMPT/LBBP/UBBP boards in LTE FDD mode when the smartphone traffic model is used. Table 6-32 Signaling specifications of the LMPT, UMPT, LBBP, and UBBP boards in LTE FDD mode Board
Signaling Specification (BHCA)
UMPTa1, UMPTa2, or UMPTa6
198000
UMPTb1 or UMPTb2
270000
LMPT
162000
LBBPc
54000
LBBPd1 or LBBPd2
108000
LBBPd3
126000
UBBPd3 or UBBPd4
252000
UBBPd5 or UBBPd6
324000
The following table lists the signaling specifications of the LMPT, UMPT, LBBP, and UBBP boards in LTE TDD mode. Table 6-33 Signaling specifications of the LMPT, UMPT, LBBP, and UBBP boards in LTE TDD mode
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Board
Signaling Specification (BHCA)
UMPTa1/UMPTa2/UMPTa6
140000
UMPTb1/UMPTb2
180000
LMPT
60000
LBBPc
54000
LBBPd2 or LBBPd4
80000
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Board
Signaling Specification (BHCA)
UBBPd4
90000
UBBPd6/UBBPd9
180000
The following table lists the typical board combinations and the corresponding signaling specifications of eNodeB FDD. Table 6-34 Typical board combinations and the corresponding signaling specifications of eNodeB FDD Board Combination
Signaling Specifications (BHCA)
1 LMPT + 1 LBBPc
54000
1 LMPT + 2 LBBPc
108000
1 LMPT + 3 LBBPc
162000
1 UMPTb + 1 LBBPd3
126000
1 UMPT + 2 LBBPd3
198000 (UMPTa) 252000 (UMPTb)
1 UMPT + 3 LBBPd3
198000 (UMPTa) 270000 (UMPTb)
1 UMPTb + 1 UBBPd6
324000
NOTE
The signaling specifications of an eNodeB FDD cannot exceed 480000 BHCA.
The following table lists the typical board combinations and the corresponding signaling specifications of eNodeB TDD. Table 6-35 Typical board combinations and the corresponding signaling specifications of eNodeB TDD Board Combination
Signaling Specifications (BHCA)
1 LMPT + 1 LBBPc
54000
1 LMPT + 2 LBBPc
60000
1 LMPT + 3 LBBPc
60000
1 UMPT + 1 LBBPd
80000
1 UMPT + 2 LBBPd
140000 (UMPTa) 160000 (UMPTb)
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Board Combination
Signaling Specifications (BHCA)
1 UMPT + 3 LBBPd
140000 (UMPTa) 180000 (UMPTb)
1 UMPTb + 1 UBBPd
90000 (UBBPd4) 180000 (UBBPd6/UBBPd9)
NOTE
The signaling specifications of an eNodeB TDD cannot exceed 432000 BHCA.
Signaling Specifications of Co-MPT Multimode Base Stations Table 6-36 lists the signaling specifications of the BBU in co-MPT multimode base stations. NOTE
l
If GSM is configured with 72 carriers (S24/24/24), each carrier can be configured with one Standalone Dedicated Control CHannel (SDCCH) only; if GSM is configured with 24 carriers (S8/8/8), each carirer can be configured three SDCCHs.
l
The following specifications are met only in typical configurations. For example, the number of SCTP links required for GSM is met when the typical configuration is used.
Table 6-36 Signaling specifications of the BBU in co-MPT multimode base stations Mo de
Typical Signaling Specifications
Recommended Board Configuration
GU
GSM 24 TRX + UMTS 1000 CNBAPS
1 UMPTb1 + 5 UBBPd1_U boards
GSM 48 TRX + UMTS 500 CNBAPS
1 UMPTb1 + 2 UBBPd1_U boards + 1 UBRIb
GSM 18 TRX + LTE 140000 BHCA
1 UMPTb1 + 2 LBBPd2 boards
GSM 48 TRX + LTE 70000 BHCA
1 UMPTb1 + 1 LBBPd3 + 1 UBRIb
GSM 48 TRX + LTE 90000 BHCA
1 UMPTb1 + 1 UBBPd3_L + 1 UBRIb
GSM 48 TRX + LTE 180000 BHCA
1 UMPTb1 + 2 UBBPd3_L boards
UMTS 350 CNBAPS + LTE 120000 BHCA
1 UMPTb1 + 1 UBBPd2_U + 2 LBBPd2 boards
UMTS 350 CNBAPS + LTE 90000 BHCA
1 UMPTb1 + 1 UBBPd2_U + 1 UBBPd3_L
UMTS 350 CNBAPS + LTE 180000 BHCA
1 UMPTb1 + 1 UBBPd2_U + 2 UBBPd3_L boards
GL
UL
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Mo de
Typical Signaling Specifications
Recommended Board Configuration
GUL
GSM 18 TRX + UMTS 500 CNBAPS + LTE 70000 BHCA
1 UMPTb1 + 2 UBBPd2_U boards + 1 LBBPd3
GSM 18 TRX + UMTS 500 CNBAPS + LTE 90000 BHCA
1 UMPTb1 + 2 UBBPd2_U boards + 1 UBBPd3_L
GSM 24 TRX + UMTS 800 CNBAPS + LTE 35000 BHCA
1 UMPTb1 + 4 UBBPd1_U boards + 1 LBBPd2
GSM 24 TRX + UMTS 800 CNBAPS + LTE 90000 BHCA
1 UMPTb1 + 4 UBBPd1_U boards + 1 UBBPd3_L
6.1.4 CPRI Specifications This section describes the CPRI specifications of the GTMU, UBRI, WBBP, LBBP, and UBBP.
CPRI specifications of a GTMU The following table lists the specifications of CPRI ports on GTMU boards. Table 6-37 Specifications of CPRI ports on GTMU boards Board
Quantity of CPRI Ports
CPRI Port Rate (Gbit/s)
Topology Type
GTMU
6
1.25
Star, chain, and ring topologies
GTMUb/GTMUc
6
1.25/2.5
Star, chain, and ring topologies
CPRI specifications of a UBRI The following table lists the specifications of the CPRI ports on a UBRI and a UBRIb. Table 6-38 Specifications of the CPRI ports on a UBRI and a UBRIb
Issue 14 (2016-01-30)
Board
Quantity of CPRI Ports
CPRI Port Rate (Gbit/s)
Topology Type
UBRI
6
1.25 or 2.5
Star, chain, and ring topologies
UBRIb
6
1.25, 2.5, 4.9, 6.144, or 9.8
Star, chain, and ring topologies
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CPRI specifications of a WBBP The following table lists the specifications of the CPRI ports on a WBBP. Table 6-39 Specifications of CPRI ports on WBBP boards Board
Quantity of CPRI Ports
CPRI Port Rate (Gbit/s)
Topology Type
WBBPa
3
1.25
Star, chain, and ring topologies
WBBPb1/WBBPb2/ WBBPb3/WBBPb4
3
1.25 or 2.5
Star, chain, and ring topologies
WBBPd
6
1.25 or 2.5
Star, chain, and ring topologies
WBBPf
6
1.25, 2.5, 4.9, or 6.144
Star, chain, and ring topologies
CPRI ports with different rates support different numbers of cells, as listed in the following table. Table 6-40 Mapping between the CPRI port rate and the number of cells CPRI Port Rate (Gbit/s)
Number of 1T2R Cells
Number of 2T2R Cells
1.25
4
4*a
2.5
8
8*a
4.9
16
16*a
6.144
24
24*a
a: The asterisk (*) in the preceding table indicates that the number of 2T2R cells is halved if two TX antennas enabled with the virtual antenna mapping (VAM) function are separately connected to two RF modules carried on different CPRI links.
NOTE
In a GU dual-mode base station where the GTMU is connected to port on the WMPT or UMPT through ports on their panels, part of CPRI bandwidth of UMTS mode is reserved for a TX and an RX channel of GSM mode in case that bandwidth of GSM mode is insufficient. As a result, the number of cells supported by UMTS mode is reduced.
CPRI specifications of an LBBP The following table lists the specifications of CPRI ports on LBBP boards.
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Table 6-41 Specifications of CPRI ports on LBBP boards Board
Quantity of CPRI Ports
CPRI Port Rate (Gbit/s)
Topology Type
LBBPc
6
1.25, 2.5, or 4.9
Star, chain, and ring topologies
LBBPd
6
1.25, 2.5, 4.9, 6.144, or 9.8
Star, chain, and ring topologies
CPRI ports with different data rates support different numbers of cells. Table 6-42 lists the mapping between the CPRI port rate and the number of cells in LTE FDD scenarios. Table 6-43 lists the mapping between the CPRI port rate and the number of cells in LTE TDD scenarios. Table 6-42 Mapping between the CPRI port rate and the number of cells in LTE FDD scenarios CPRI Port Rate (Gbit/s)
Number of 2T4R or 4T4R Cells
Number of 1T2R or 2T2R Cells
1.25
4x4 MIMO cells are not recommended because the transmission bandwidth of the CPRI ports is limited.
l 4 (cell bandwidth ≤ 3 MHz) l 2 (cell bandwidth ≤ 5 MHz) l 1 (cell bandwidth ≤ 10 MHz)
2.5
1 (cell bandwidth ≤ 10 MHz)
l 4 (cell bandwidth ≤ 5 MHz) l 2 (cell bandwidth ≤ 10 MHz) l 1 (cell bandwidth = 15 MHz or 20 MHz)
4.9
6.144
9.8
Issue 14 (2016-01-30)
l 2 (cell bandwidth ≤ 10 MHz)
l 4 (cell bandwidth ≤ 10 MHz)
l 1 (cell bandwidth = 15 MHz or 20 MHz)
l 2 (cell bandwidth = 15 MHz or 20 MHz)
l 2 (cell bandwidth ≤ 10 MHz)
l 4 (cell bandwidth ≤ 10 MHz)
l 1 (cell bandwidth = 15 MHz or 20 MHz)
l 2 (cell bandwidth = 15 MHz or 20 MHz)
l 4 (cell bandwidth ≤ 10 MHz)
l 8 (cell bandwidth ≤ 10 MHz)
l 2 (cell bandwidth = 15 MHz or 20 MHz)
l 4 (cell bandwidth = 15 MHz or 20 MHz)
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Table 6-43 Mapping between the CPRI port rate and the number of cells in LTE TDD scenarios CPRI Port Rate (Gbit/s)
CPRI Compressiona
Number of 8T8R Cells
Number of 4T4R Cells
Number of 2T2R Cells
2.5
Not in use
None
l 2 (cell bandwidth = 5 MHz)
l 4 (cell bandwidth = 5 MHz)
l 1 (cell bandwidth = 10 MHz)
l 2 (cell bandwidth = 10 MHz)
l None (cell bandwidth = 15 MHz or 20 MHz)
l 1 (cell bandwidth = 15 MHz or 20 MHz)
l None (cell bandwidth = 5 MHz)
l None (cell bandwidth = 5 MHz)
l 1 (cell bandwidth = 10 MHz)
l 3 (cell bandwidth = 10 MHz)
l 1 (cell bandwidth = 15 MHz or 20 MHz)
l 2 (cell bandwidth = 15 MHz or 20 MHz)
l None (cell bandwidth = 5 MHz)
l 4 (cell bandwidth = 5 MHz)
l 8 (cell bandwidth = 5 MHz)
l 1 (cell bandwidth = 10 MHz)
l 2 (cell bandwidth = 10 MHz)
l 4 (cell bandwidth = 10 MHz)
l None (cell bandwidth = 15 MHz or 20 MHz)
l 1 (cell bandwidth = 15 MHz or 20 MHz)
l 2 (cell bandwidth = 15 MHz or 20 MHz)
l None (cell bandwidth = 5 MHz)
l None (cell bandwidth = 5 MHz)
l None (cell bandwidth = 5 MHz)
l 1 (cell bandwidth = 10 MHz)
l 3 (cell bandwidth = 10 MHz)
l 6 (cell bandwidth = 10 MHz)
l 1 (cell bandwidth = 15 MHz or 20 MHz)
l 2 (cell bandwidth = 15 MHz or 20 MHz)
l 4 (cell bandwidth = 15 MHz or 20 MHz)
In use
4.9
Not in use
In use
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None
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CPRI Port Rate (Gbit/s)
CPRI Compressiona
Number of 8T8R Cells
Number of 4T4R Cells
Number of 2T2R Cells
9.8
Not in use
l None (cell bandwidth = 5 MHz)
l 8 (cell bandwidth = 5 MHz)
l 16 (cell bandwidth = 5 MHz)
l 2 (cell bandwidth = 10 MHz)
l 4 (cell bandwidth = 10 MHz)
l 8 (cell bandwidth = 10 MHz)
l 1 (cell bandwidth = 15 MHz or 20 MHz)
l 2 (cell bandwidth = 15 MHz or 20 MHz)
l 4 (cell bandwidth = 15 MHz or 20 MHz)
l None (cell bandwidth = 5 MHz)
l None (cell bandwidth = 5 MHz)
l None (cell bandwidth = 5 MHz)
l 2 (cell bandwidth = 10 MHz)
l 4 (cell bandwidth = 10 MHz)
l 8 (cell bandwidth = 10 MHz)
l 1 (cell bandwidth = 15 MHz or 20 MHz)
l 2 (cell bandwidth = 15 MHz or 20 MHz)
l 5 (cell bandwidth = 15 MHz or 20 MHz)
l None (cell bandwidth = 5 MHz)
l None (cell bandwidth = 5 MHz)
l None (cell bandwidth = 5 MHz)
l 3 (cell bandwidth = 10 MHz)
l 6 (cell bandwidth = 10 MHz)
l 12 (cell bandwidth = 10 MHz)
l 2 (cell bandwidth = 15 MHz or 20 MHz)
l 4 (cell bandwidth = 15 MHz or 20 MHz)
l 8 (cell bandwidth = 15 MHz or 20 MHz)
In use without turning on the CPRI extension switch
In use with the CPRI extension switch being turned on
a: l CPRI compression is not supported when the cell bandwidth is 5 MHz. l The LBBPc does not support CPRI compression. l If the CPRI extension switch is turned on, carrier specifications supported by the LBBPd with a CPRI port rate of 9.8 Gbit/s are affected only when CPRI compression is used. For details about the CPRI extension switch, see the CPRIEX parameter in the MOD BBP or LST BBP command. When the CPRI extension switch is turned on, only the CPRI0, CPRI1, and CPRI2 ports on the LBBPd can be used.
NOTE
The preceding table lists the maximum numbers of cells and antennas supported by each CPRI link with a corresponding CPRI port rate. In combined RF module scenarios, the CPRI port rate is determined by the actual numbers of cells and antennas carried by each CPRI link.
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CPRI specifications of an UBBP The following table lists the specifications of CPRI ports on a UBBP. Table 6-44 Specifications of CPRI ports on a UBBP Board
Quantity of CPRI Ports
CPRI Port Rate (Gbit/s)
Topology Type
UBBPd
6
1.25/2.5/4.9/6.144/9. 8
Star, chain, and ring topologies
The following table lists the mapping between the CPRI port rate and the number of carriers supported by a UBBP working in GSM mode. Table 6-45 Mapping between the CPRI port rate and the number of carriers CPRI Port Rate (Gbit/s)
Number of 1T2R Carriers
Number of 2T2R or 1T4R Carriers
1.25
24
12
2.5
48
24
4.9
48
24
9.8
48
24
The following table shows the mapping between the CPRI port rate and the number of cells supported by a UBBP working in UMTS mode. Table 6-46 Mapping between the CPRI port rate and the number of cells CPRI Port Rate (Gbit/s)
Number of 1T2R Cells
Number of 2T2R Cells
1.25
4
4*a
2.5
8
8*a
4.9
16
16*a
6.144
24
24*a
9.8
32
32*a
a: The asterisk (*) in the preceding table indicates that the number of 2T2R cells is halved if two TX antennas enabled with the virtual antenna mapping (VAM) function are separately connected to two RF modules carried on different CPRI links.
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The following table lists the mapping between the CPRI port rate and the number of cells supported by a UBBP working in LTE FDD mode. Table 6-47 Mapping between the CPRI port rate and the number of cells CPRI Port Rate (Gbit/s)
Number of 2T4R or 4T4R Cells
Number of 1T2R or 2T2R Cells
1.25
4x4 MIMO cells are not recommended because the transmission bandwidth of the CPRI ports is limited.
l 4 (cell bandwidth ≤ 3 MHz) l 2 (cell bandwidth ≤ 5 MHz) l 1 (cell bandwidth ≤ 10 MHz)
2.5
1 (cell bandwidth ≤ 10 MHz)
l 4 (cell bandwidth ≤ 5 MHz) l 2 (cell bandwidth ≤ 10 MHz) l 1 (cell bandwidth = 15 MHz or 20 MHz)
4.9
6.144
9.8
l 2 (cell bandwidth ≤ 10 MHz)
l 4 (cell bandwidth ≤ 10 MHz)
l 1 (cell bandwidth = 15 MHz or 20 MHz)
l 2 (cell bandwidth = 15 MHz or 20 MHz)
l 2 (cell bandwidth ≤ 10 MHz)
l 4 (cell bandwidth ≤ 10 MHz)
l 1 (cell bandwidth = 15 MHz or 20 MHz)
l 2 (cell bandwidth = 15 MHz or 20 MHz)
l 4 (cell bandwidth ≤ 10 MHz)
l 8 (cell bandwidth ≤ 10 MHz)
l 2 (cell bandwidth = 15 MHz or 20 MHz)
l 4 (cell bandwidth = 15 MHz or 20 MHz)
CPRI ports with different data rates support different numbers of cells. The following table list the number of cells supported by CPRI ports with different data rates when UBBP working in LTE TDD scenarios.
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Table 6-48 Mapping between the CPRI port rate and the number of cells CPRI Port Rate (Gbit/s)
CPRI Compressiona
Number of 8T8R Cells
Number of 4T4R Cells
Number of 2T2R Cells
2.5
Not in use
None
l 2 (cell bandwidth = 5 MHz)
l 4 (cell bandwidth = 5 MHz)
l 1 (cell bandwidth = 10 MHz)
l 2 (cell bandwidth = 10 MHz)
l None (cell bandwidth = 15 MHz or 20 MHz)
l 1 (cell bandwidth = 15 MHz or 20 MHz)
l None (cell bandwidth = 5 MHz)
l None (cell bandwidth = 5 MHz)
l 1 (cell bandwidth = 10 MHz)
l 3 (cell bandwidth = 10 MHz)
l 1 (cell bandwidth = 15 MHz or 20 MHz)
l 2 (cell bandwidth = 15 MHz or 20 MHz)
l None (cell bandwidth = 5 MHz)
l 4 (cell bandwidth = 5 MHz)
l 8 (cell bandwidth = 5 MHz)
l 1 (cell bandwidth = 10 MHz)
l 2 (cell bandwidth = 10 MHz)
l 4 (cell bandwidth = 10 MHz)
l None (cell bandwidth = 15 MHz or 20 MHz)
l 1 (cell bandwidth = 15 MHz or 20 MHz)
l 2 (cell bandwidth = 15 MHz or 20 MHz)
l None (cell bandwidth = 5 MHz)
l None (cell bandwidth = 5 MHz)
l None (cell bandwidth = 5 MHz)
l 1 (cell bandwidth = 10 MHz)
l 3 (cell bandwidth = 10 MHz)
l 6 (cell bandwidth = 10 MHz)
l 1 (cell bandwidth = 15 MHz or 20 MHz)
l 2 (cell bandwidth = 15 MHz or 20 MHz)
l 4 (cell bandwidth = 15 MHz or 20 MHz)
In use
4.9
Not in use
In use
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None
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CPRI Port Rate (Gbit/s)
CPRI Compressiona
Number of 8T8R Cells
Number of 4T4R Cells
Number of 2T2R Cells
9.8
Not in use
l None (cell bandwidth = 5 MHz)
l 8 (cell bandwidth = 5 MHz)
l 16 (cell bandwidth = 5 MHz)
l 2 (cell bandwidth = 10 MHz)
l 4 (cell bandwidth = 10 MHz)
l 8 (cell bandwidth = 10 MHz)
l 1 (cell bandwidth = 15 MHz or 20 MHz)
l 2 (cell bandwidth = 15 MHz or 20 MHz)
l 4 (cell bandwidth = 15 MHz or 20 MHz)
l None (cell bandwidth = 5 MHz or 15 MHz)
l None (cell bandwidth = 5 MHz or 15 MHz)
l None (cell bandwidth = 5 MHz or 15 MHz)
l 3 (cell bandwidth = 10 MHz)
l 6 (cell bandwidth = 10 MHz)
l 12 (cell bandwidth = 10 MHz)
l 2 (cell bandwidth = 20 MHz)
l 4 (cell bandwidth = 20 MHz)
l 8 (cell bandwidth = 20 MHz)
In use
6.1.5 Transmission Port This section describes the transmission ports on a BBU. The following table lists transmission ports on a single-mode BBU. Mode
Transmission Port GTMU: 1 E1/T1 port (4 E1s/T1s), 1 FE electrical port, and 1 FE optical port
GSM
UMPT: 1 E1/T1 port (4 E1s/T1s), 1 FE/GE electrical port, and 1 FE/GE optical port UTRPb4: 2 E1/T1 ports (8 E1s/T1s) UTRPc: 4 FE/GE electrical ports and 2 FE/GE optical ports WMPT: 1 E1/T1 port (4 E1s/T1s), 1 FE electrical port, and 1 FE optical port
UMTS
UMPT: 1 E1/T1 port (4 E1s/T1s), 1 FE/GE electrical port, and 1 FE/GE optical port UTRP2: 2 FE/GE optical ports
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Mode
Transmission Port UTRP3: 2 E1/T1 ports (8 E1s/T1s) UTRP4: 2 E1/T1 ports (8 E1s/T1s) UTRP6: 1 STM-1 or OC-3 port UTRP9: 4 FE/GE electrical ports UTRPc: 4 FE/GE electrical ports and 2 FE/GE optical ports UTRPa: 2 E1/T1 ports (8 E1s/T1s) LMPT: 2 FE/GE electrical ports, 2 FE/GE optical ports, or 1 FE/GE optical port + 1 FE/GE electrical port
LTE FDD
UMPT: 1 E1/T1 port (4 E1s/T1s), 1 FE/GE electrical port, and 1 FE/GE optical port UTRPc: 4 FE/GE electrical ports and 2 FE/GE optical ports LMPT: 2 FE/GE electrical ports, 2 FE/GE optical ports, or 1 FE/GE optical port + 1 FE/GE electrical port UMPT: 1 E1/T1 port (4 E1s/T1s), 1 FE/GE electrical port, and 1 FE/GE optical port
LTE TDD
UTRPc: 4 FE/GE electrical ports and 2 FE/GE optical ports
6.1.6 Engineering Specifications This section describes the engineering specifications of the BBU, including the power specifications, size, weight, heat dissipation capability, environmental specifications, and surge protection specifications.
Input Power Specifications The following table lists the input power specifications of the BBU. Table 6-49 Input power specifications of the BBU
Issue 14 (2016-01-30)
Type
Input Power
Voltage Range
BBU3900 (UPEUc)
-48 V DC
-38.4 V DC to -57 V DC
BBU3910 (UPEUd)
-48 V DC
-38.4 V DC to -57 V DC
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Equipment Specifications The BBU3900 and BBU3910 have the same size and weight, as provided in the following table. Table 6-50 Size and weight of the BBU Item
Specifications
Dimensions (H x W x D)
86 mm x 442 mm x 310 mm
Weight
l ≤ 12 kg (full configuration) l ≤ 7 kg (typical configuration)
Heat Dissipation Capability The following table lists the heat dissipation capability of the BBU. Table 6-51 Heat dissipation capability of the BBU Type
Configuration
Specifications
BBU3900
FAN
350 W
FANc
650 W
FANd
650 W
BBU3910
Environment Specifications The BBU3900 and BBU3910 have the same environment specifications, as provided in the following table Table 6-52 Environment specifications of the BBU
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Item
Specifications
Operating temperature
l Long term: -20ºC to +55ºC
Relative humidity
5% RH to 95% RH
Protection level
IP20
Atmospheric Pressure
70 kPa to 106 kPa
Noise Sound Power Level
ETS 300 753 3.1
l Short term: +55ºC to +60ºC
≤7.2bels
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Item
Specifications
Storage Time
It is recommended that the device be installed and used within one year after its delivery because of the failure rate.
Surge Protection Specifications The BBU3900 and BBU3910 have the same surge protection specifications, as provided in Table 6-53. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-53 Surge protection specifications of the ports on the BBU
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Port
Usage Scenario
Surge Protection Mode
Specification
-48 V DC port
Applicable to the scenario where the BBU and devices interconnected through this port are installed indoors
Differential mode
1 kA
Common mode
2 kA
FE/GE port
Applicable to the scenario where the BBU and devices interconnected through this port are installed indoors (surge)
Differential mode
0.5 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Applicable to the scenario where some devices are configured remotely or the scenario where the BBU and
Differential mode
3 kA
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Port
GPS port
RGPS port
E1/T1 port
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Usage Scenario
Surge Protection Mode
Specification
devices interconnected through this port are placed outdoors (surge protector configured)
Common mode
5 kA
Applicable to the scenario where some devices are configured remotely or the scenario where the BBU and devices interconnected through this port are placed outdoors (surge protector configured)
Differential mode
8 kA
Common mode
40 kA
Applicable to the scenario where some devices are configured remotely or the scenario where the BBU and devices interconnected through this port are placed outdoors (surge protection module configured)
Differential mode
3 kA
Common mode
5 kA
Applicable to the scenario where the BBU and devices
Differential mode
250 A
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Port
Dry contact
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Usage Scenario
Surge Protection Mode
Specification
interconnected through this port are installed indoors
Common mode
250 A
Applicable to the scenario where some devices are configured remotely or the scenario where the BBU and devices interconnected through this port are placed outdoors (surge protection board configured)
Differential mode
3 kA
Common mode
5 kA
Applicable to the scenario where the BBU and devices interconnected through this dry contact are installed indoors
Differential mode
250 A
Applicable to the scenario where some devices are configured remotely or the scenario where the BBU and devices interconnected through this port are placed outdoors (surge
Differential mode
3 kA
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Port
RS485 alarm port
6 Product Specifications
Usage Scenario
Surge Protection Mode
Specification
protection board configured)
Common mode
5 kA
Applicable to the scenario where the BBU and devices interconnected through this port are installed indoors
Differential mode
250 A
Common mode
250 A
Applicable to the scenario where some devices are configured remotely or the scenario where the BBU and devices interconnected through this port are placed outdoors (surge protection board configured)
Differential mode
3 kA
Common mode
5 kA
6.2 Technical Specifications of RFUs This section describes the technical specifications of radio frequency units (RFUs), including supported modes, frequency bands, RF specifications, surge protection specifications, specifications of CPRI ports, and antenna capabilities.
6.2.1 DRFU Technical Specifications The Double Radio Frequency Unit (DRFU) is a dual-transceiver radio frequency (RF) module, which supports a maximum of two carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by a DRFU. Issue 14 (2016-01-30)
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Table 6-54 Modes and frequency bands supported by a DRFU Type
Mode
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
DRFU
GSM
900 EGSM
880 to 915
925 to 960
900 PGSM
890 to 915
935 to 960
1800
1710 to 1785
1805 to 1880
RF Specifications Table 6-55 lists RF specifications of a DRFU. NOTE
ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels.
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Table 6-55 RF specifications of a DRFU Type
DRFU
RX and TX Chan nels
Capa city
Receiver Sensitivity (dBm) Receiver Sensitivi ty with One Antenna
Receiver Sensitivi ty with Two Antenna s
Receiver Sensitivi ty with Four Antenna s
2T2R
2 TRXs
-113.0
-115.8
-118.5
Output Power
Power Consum ption
l Output power for the DRFU (GSM (GBTS ), 900 MHz)
See the DRFU sheet in 3900 Series Base Station Power Consumpt ion Specificati ons.
l Outpu t power for the DRFU (GSM (GBT S), 1800 MHz) For typical PA configurat ions, see Typical Power Configura tion for DRFU in 3900 Series Base Station Initial Configura tion Guide.
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NOTE
l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance. l Two DRFU modules are required when four carriers are configured.
Table 6-56 Output power for the DRFU (GSM (GBTS), 900 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
GSM
1
45 (GMSK)/30 (8PSK)
1 (PBT)
71 (GMSK)/41 (8PSK)
2
45 (GMSK)/30 (8PSK)
4
20 (GMSK)/14 (8PSK)
Table 6-57 Output power for the DRFU (GSM (GBTS), 1800 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
GSM
1
40 (GMSK)/26 (8PSK)
1 (PBT)
63 (GMSK)/42 (8PSK)
2
40 (GMSK)/26 (8PSK)
4
18 (GMSK)/12 (8PSK)
Engineering Specifications The following table lists the equipment specifications of a DRFU. Table 6-58 Equipment specifications of a DRFU Type
Dimension (H x W x D)
Weight (kg)
DRFU
9 U x 14 HP x 308.5 mm (with the panel)
≤12
Table 6-59 lists the surge protection specifications of ports on a DRFU. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
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Table 6-59 Surge protection specifications of ports on a DRFU Port
Usage Scenario
Surge Protection Mode
Specifications
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
Port for transmitting and receiving signals
Applicable to all scenarios
Surge current
Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on a DRFU. Table 6-60 Specifications of CPRI ports on a DRFU Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
DRFU
2
1.25
Star or chain
3
Antenna Capability The following table shows antenna capability of a DRFU. Table 6-61 Antenna capability of a DRFU
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Type
TMA Support
RET Antenna Support
DRFU
Not supported
AISG1.1
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NOTE
l
An external bridge tap (BT) is required if a DRFU needs to be configured with a TMA.
l
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.2.2 GRFU Technical Specifications The GSM Radio Frequency Unit (GRFU) is a multi-carrier radio frequency (RF) module, which supports a maximum of six carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by a GRFU. Table 6-62 Modes and frequency bands supported by a GRFU Type
Mode
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
GRFU V1
GSM
1900
1850 to 1890
1930 to 1970
1870 to 1910
1950 to 1990
900 PGSM
890 to 915
935 to 960
900 EGSM
880 to 915
925 to 960
1800
1710 to 1770
1805 to 1865
1725 to 1785
1820 to 1880
900
885 to 910
930 to 955
1800
1710 to 1755
1805 to 1850
GRFU V2
GRFU V2a
GSM
GSM
RF Specifications Table 6-63 lists RF specifications of a GRFU. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W.
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Table 6-63 RF specifications of a GRFU Type
GRFU V1
RX and TX Chann els
Capaci ty
1T2R
6 TRXs
Receiver Sensitivity (dBm) Receiver Sensitivity with One Antenna
Receiver Sensitivity with Two Antennas
-113.0
-115.8
Output Power
Power Consumpti on
The GRFU V1 supports the maximum power configuratio n 1 x 80 W. The typical configuratio ns are as follows:
See the GRFU sheet in 3900 Series Base Station Power Consumptio n Specificatio ns.
l Output power for the GRFU V1 (GSM (GBTS), 1900 MHz) l Output power for the GRFU V1 (GSM (eGBTS) , 1900 MHz) GRFU V2
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l 900 MHz EGSM: -113.3
l 900 MHz EGSM: -116.1
l 900 MHz PGSM/ 1800 MHz: -113.5
l 900 MHz PGSM/ 1800 MHz: -116.3
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The GRFU V2 supports the maximum power configuratio n 1 x 80 W. The typical configuratio ns are as follows:
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Type
GRFU V2a
6 Product Specifications
RX and TX Chann els
Capaci ty
Receiver Sensitivity (dBm) Receiver Sensitivity with One Antenna
Receiver Sensitivity with Two Antennas
-113.5
-116.3
Output Power
Power Consumpti on
l Output power for the GRFU V2/ GRFU V2a (GSM (GBTS), 900 MHz) l Output power for the GRFU V2/ GRFU V2a (GSM (GBTS), 1800 MHz) l Output power for the GRFU V2/ GRFU V2a (GSM (eGBTS) , 900 MHz) l Output power for the GRFU V2/ GRFU V2a (GSM (eGBTS) , 1800 MHz)
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NOTE
l For the GRFU V1 operating in the 1900 MHz frequency band: The maximum output power of the RF module in S1 configuration is 60 W. To achieve the maximum output power, you need to buy a license. l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-64 Output power for the GRFU V1 (GSM (GBTS), 1900 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
60 (GMSK)/40 (8PSK)
60 (GMSK)/40 (8PSK)
2
40 (GMSK)/26 (8PSK)
40 (GMSK)/26 (8PSK)
3
27 (GMSK)/18 (8PSK)
31 (GMSK)/20 (8PSK)
4
20 (GMSK)/13 (8PSK)
27 (GMSK)/18 (8PSK)
5
12 (GMSK)/8 (8PSK)
20 (GMSK)/13 (8PSK)
6
10 (GMSK)/6.6 (8PSK)
16 (GMSK)/10 (8PSK)
Table 6-65 Output power for the GRFU V1 (GSM (eGBTS), 1900 MHz)
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Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (dBm)
Output Power per GSM Carrier With Dynamic Power Sharing (dBm)
GSM
1
47.8 (GMSK)/46.0 (8PSK)
47.8 (GMSK)/46.0 (8PSK)
2
46.0 (GMSK)/44.1 (8PSK)
46.0 (GMSK)/44.1 (8PSK)
3
44.3 (GMSK)/42.6 (8PSK)
44.9 (GMSK)/43.0 (8PSK)
4
43.0 (GMSK)/41.1 (8PSK)
44.3 (GMSK)/42.6 (8PSK)
5
40.8 (GMSK)/39.0 (8PSK)
43.0 (GMSK)/41.1 (8PSK)
6
40.0 (GMSK)/38.2 (8PSK)
42.0 (GMSK)/40.0 (8PSK)
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NOTE
For the GRFU V2/GRFU V2a operating in the 900 MHz frequency band: l
The maximum output power of the RF module in S1 configuration is 60 W. To achieve the maximum output power, you need to buy a license.
l
After design optimization, the 8 phase shift keying (8PSK) and Gaussian minimum shift-frequency keying (GMSK) modulation schemes enable the same output power for each carrier on the the RF module when the S1, S2, or S3 configuration is used.
l
When the S4, S5, or S6 configuration is used, the license controlling the GBFD-118104 Enhanced EDGE Coverage feature must be obtained. Otherwise, the 8PSK and GMSK modulation schemes cannot enable the same output power for each carrier on the RF module.
Table 6-66 Output power for the GRFU V2/GRFU V2a (GSM (GBTS), 900 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
60 (GMSK)/60 (8PSK)
60 (GMSK)/60 (8PSK)
2
40 (GMSK)/40 (8PSK)
40 (GMSK)/40 (8PSK)
3
27 (GMSK)/27 (8PSK)
31 (GMSK)/31 (8PSK)
4
20 (GMSK)/20 (8PSK)
27 (GMSK)/27 (8PSK)
5
16 (GMSK)/16 (8PSK)
20 (GMSK)/20 (8PSK)
6
12 (GMSK)/12 (8PSK)
20 (GMSK)/20 (8PSK)
Table 6-67 Output power for the GRFU V2/GRFU V2a (GSM (eGBTS), 900 MHz)
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Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (dBm)
Output Power per GSM Carrier With Dynamic Power Sharing (dBm)
GSM
1
47.8 (GMSK)/47.8 (8PSK)
47.8 (GMSK)/47.8 (8PSK)
2
46.0 (GMSK)/46.0 (8PSK)
46.0 (GMSK)/46.0 (8PSK)
3
44.3 (GMSK)/44.3 (8PSK)
44.9 (GMSK)/44.9 (8PSK)
4
43.0 (GMSK)/43.0 (8PSK)
44.3 (GMSK)/44.3 (8PSK)
5
42.0 (GMSK)/42.0 (8PSK)
43.0 (GMSK)/43.0 (8PSK)
6
40.8 (GMSK)/40.8 (8PSK)
43.0 (GMSK)/43.0 (8PSK)
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NOTE
For the GRFU V2/GRFU V2a operating in the 1800 MHz frequency band: l
The maximum output power of the RF module in S1 configuration is 60 W. To achieve the maximum output power, you need to buy a license.
l
When the S4, S5, or S6 configuration is used, the license controlling the GBFD-118104 Enhanced EDGE Coverage feature must be obtained. Otherwise, the 8PSK and GMSK modulation schemes cannot enable the same output power for each carrier on the RF module.
Table 6-68 Output power for the GRFU V2/GRFU V2a (GSM (GBTS), 1800 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
60 (GMSK)/40 (8PSK)
60 (GMSK)/40 (8PSK)
2
40 (GMSK)/26 (8PSK)
40 (GMSK)/26 (8PSK)
3
27 (GMSK)/18 (8PSK)
31 (GMSK)/20 (8PSK)
4
20 (GMSK)/20 (8PSK)
27 (GMSK)/27 (8PSK)
5
16 (GMSK)/16 (8PSK)
20 (GMSK)/20 (8PSK)
6
12 (GMSK)/12 (8PSK)
20 (GMSK)/20 (8PSK)
Table 6-69 Output power for the GRFU V2/GRFU V2a (GSM (eGBTS), 1800 MHz)
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Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (dBm)
Output Power per GSM Carrier With Dynamic Power Sharing (dBm)
GSM
1
47.8 (GMSK)/46.0 (8PSK)
47.8 (GMSK)/46.0 (8PSK)
2
46.0 (GMSK)/44.1 (8PSK)
46.0 (GMSK)/44.1 (8PSK)
3
44.3 (GMSK)/42.6 (8PSK)
44.9 (GMSK)/43.0 (8PSK)
4
43.0 (GMSK)/43.0 (8PSK)
44.3 (GMSK)/44.3 (8PSK)
5
42.0 (GMSK)/42.0 (8PSK)
43.0 (GMSK)/43.0 (8PSK)
6
40.8 (GMSK)/40.8 (8PSK)
43.0 (GMSK)/43.0 (8PSK)
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Engineering Specifications The following table lists the equipment specifications of a GRFU. Table 6-70 Equipment specifications of a GRFU Type
Dimension (H x W x D)
Weight (kg)
GRFU V1, GRFU V2, and GRFU V2a
9 U x 14 HP x 308.5 mm (with the panel)
≤12
Table 6-71 lists the surge protection specifications of ports on a GRFU. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-71 Surge protection specifications of ports on a GRFU Port
Usage Scenario
Surge Protection Mode
Specifications
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
RF port
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Applicable to all scenarios
Surge current
Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
Monitoring port
Applicable to all scenarios
Surge current
250 A
Differential mode
250 A
Common mode
250 A
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Specifications of CPRI Ports The following table lists the specifications of CPRI ports on a GRFU. Table 6-72 Specifications of CPRI ports on a GRFU Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
GRFU V1
2
1.25
Star or chain
2
GRFU V2 and GRFU V2a
2
1.25 or 2.5
Star or chain
2
Antenna Capability The following table shows antenna capability of a GRFU. Table 6-73 Antenna capability of a GRFU Type
TMA Support
RET Antenna Support
GRFU V1
Supported
AISG2.0 and AISG1.1
GRFU V2
Supported
AISG2.0 and AISG1.1
GRFU V2a
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.2.3 WRFU Technical Specifications A WRFU working in UMTS mode supports a maximum of four carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by a WRFU. Table 6-74 Modes and frequency bands supported by a WRFU Type
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
Mode
80 W WRFU
2100
1920 to 1980
2110 to 2170
UMTS
850
824 to 835
869 to 880
UMTS
2100
1920 to 1980
2110 to 2170
UMTS
80 W WRFU (Optimized) Issue 14 (2016-01-30)
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Type
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
Mode
40 W WRFU
2100
1920 to 1980
2110 to 2170
UMTS
RF Specifications Table 6-75 lists RF specifications of a WRFU. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The receiver sensitivity on the UMTS 850 MHz frequency band is measured on its frequency sub-bands. l Maximum output power = Maximum output power of the PA - Internal loss. The maximum output power is measured at the antenna port.
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Table 6-75 RF specifications of a WRFU Type
WRFU
RX and TX Channe l
Capacit y
Receiver Sensitivity (dBm) Receiv er Sensiti vity with One Antenn a
Receive r Sensiti vity with Two Antenn as
Receive r Sensiti vity with Four Antenn as
1T2R
l 80 W WRF U: 4 carrie rs
l -125. 8 (210 0 MHz )
l -128. 6 (2100 MHz )
l -131. 3 (2100 MHz )
l -128. 4 (850 MHz )
l -131. 1 (850 MHz )
l 80 W WRF U (Opti mized ): 4 carrie rs
l -125. 6 (850 MHz )
l 40 W WRF U: 2 carrie rs
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Output Power
Power Consu mption
l The 80 W WRF U supp orts the maxi mum powe r confi gurati on 1 x 80 W and unev en powe r confi gurati ons. For typic al confi gurati ons, see the table Outp ut powe r for the WRF U
See the WRFU sheet in 3900 Series Base Station Power Consum ption Specifica tions.
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Type
6 Product Specifications
RX and TX Channe l
Capacit y
Receiver Sensitivity (dBm) Receiv er Sensiti vity with One Antenn a
Receive r Sensiti vity with Two Antenn as
Receive r Sensiti vity with Four Antenn as
Output Power
Power Consu mption
(UM TS, 850 MHz /2100 MHz , 80 W). l The 80 W WRF U (Opti mize d) supp orts the maxi mum powe r confi gurati on 1 x 80 W and unev en powe r confi gurati ons. For typic al confi gurati ons,
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Type
6 Product Specifications
RX and TX Channe l
Capacit y
Receiver Sensitivity (dBm) Receiv er Sensiti vity with One Antenn a
Receive r Sensiti vity with Two Antenn as
Receive r Sensiti vity with Four Antenn as
Output Power
Power Consu mption
see the Outp ut powe r for the WRF U (Opti mize d) (UM TS, 2100 MHz , 80W) table. l The 40 W WRF U supp orts the maxi mum powe r confi gurati on 1 x 40 W. For typic al confi gurati ons,
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Type
6 Product Specifications
RX and TX Channe l
Capacit y
Receiver Sensitivity (dBm) Receiv er Sensiti vity with One Antenn a
Receive r Sensiti vity with Two Antenn as
Receive r Sensiti vity with Four Antenn as
Output Power
Power Consu mption
see the Outp ut powe r for the WRF U (UM TS, 2100 MHz , 40 W) table.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-76 Output power for the WRFU (UMTS, 850 MHz/2100 MHz, 80W)
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
60
2
40
3
20
4
20
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Table 6-77 Output power for the WRFU (Optimized)(UMTS, 2100 MHz, 80W) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
80
2
40
3
26
4
20
Table 6-78 Output power for the WRFU (UMTS, 2100 MHz, 40W) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
40
2
20
Engineering Specifications The following table lists the equipment specifications of a WRFU. Table 6-79 Equipment specifications of a WRFU Type
Dimension (H x W x D)
Weight (kg)
WRFU
9 U x 14 HP x 308.5 mm (with the panel)
11
Table 6-80 lists the surge protection specifications of ports on a WRFU. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-80 Surge protection specifications of ports on a WRFU
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Port
Usage Scenario
Surge Protection Mode
Specifications
Power port
Applicable to all scenarios
Surge
2 kV (1.2/50 µs)
Differential mode
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Port
6 Product Specifications
Usage Scenario
Surge Protection Mode
Surge current
RF port
Applicable to all scenarios
Surge current
Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
Alarm port
Applicable to all scenarios
Surge current
Specifications
Common mode
4 kV (1.2/50 µs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA 250 A
Differential mode
3 kA
Common mode
5 kA
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on a WRFU.
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Table 6-81 Specifications of CPRI ports on a WRFU Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
WRFU
2
WRFU modules of different BOM codes support different CPRI data rates:
Star or chain
2 (serving the same sector)
l WRFU modules of 02316677, 02315804, and 02316072 support only 1.25 Gbit/s. l WRFU modules of other BOM codes support both 1.25 Gbit/s and 2.5 Gbit/s.
Antenna Capability The following table lists the antenna capability of a WRFU. Table 6-82 Antenna capability of a WRFU Type
TMA Support
RET Antenna Support
WRFU
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.2.4 WRFUa Technical Specifications A WCDMA Radio Filter Unit type A (WRFUa) supports a maximum of four carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by a WRFUa. Issue 14 (2016-01-30)
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Table 6-83 Modes and frequency bands supported by a WRFUa Type
Mode
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
WRFUa
UMTS
2100
1920 to 1980
2110 to 2170
RF Specifications Table 6-84 lists RF specifications of a WRFUa. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l Maximum output power = Maximum output power of the PA - Internal loss. The maximum output power is measured at the antenna port.
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Table 6-84 RF specifications of a WRFUa Type
WRFUa
RX and TX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
1T2R
4 carriers
-125.8
-128.6
-131.3
Output Power
Power Consu mption
The WRFUa supports the maximu m power configur ation 1 x 100 W. and uneven power configur ations. For typical configur ations, see the Output power for the WRFUa (UMTS, 2100 MHz, 100W) table.
See the WRFUa sheet in 3900 Series Base Station Power Consum ption Specifica tions.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
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Table 6-85 Output power for the WRFUa (UMTS, 2100 MHz) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
80
2
50
3
33
4
25
Engineering Specifications The following table lists the equipment specifications of a WRFUa. Table 6-86 Equipment specifications of a WRFUa Type
Dimension (H x W x D)
Weight (kg)
WRFUa
9 U x 14 HP x 308.5 mm (with the panel)
11
Table 6-87 lists the surge protection specifications of ports on a WRFUa. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-87 Surge protection specifications of ports on a WRFUa Port
Usage Scenario
Surge Protection Mode
Specifications
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 µs)
Common mode
4 kV (1.2/50 µs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Surge current
RF port
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Applicable to all scenarios
Surge current
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Port
Usage Scenario
Surge Protection Mode
Specifications
Common mode Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
Alarm port
Applicable to all scenarios
Surge current
40 kA 250 A
Differential mode
3 kA
Common mode
5 kA
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on a WRFUa. Table 6-88 Specifications of CPRI ports on a WRFUa Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
WRFUa
2
1.25 or 2.5
Star or chain
2 (serving the same sector)
Antenna Capability The following table lists the antenna capability of a WRFUa. Table 6-89 Antenna capability of a WRFUa Type
TMA Support
RET Antenna Support
WRFUa
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.2.5 WRFUd Technical Specifications A WCDMA Radio Filter Unit type D (WRFUd) supports a maximum of six carriers.
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Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by a WRFUd. Table 6-90 Modes and frequency bands supported by a WRFUd Type
Mode
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
WRFUd
UMTS
2100
1920 to 1980
2110 to 2170
RF Specifications Table 6-91 lists RF specifications of a WRFUd. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l Maximum output power = Maximum output power of the PA - Internal loss. The maximum output power is measured at the antenna port.
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Table 6-91 RF specifications of a WRFUd Type
WRFUd
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
2T2R
l With MIM O: 4 carrie rs
-126.1
-128.9
-131.6
l With out MIM O: 6 carrie rs
Output Power
Power Consu mption
The WRFUd supports the maximu m power configur ation 2 x 60 W, configur ations of singleoutput, MIMO, or the combinat ion of the two, and uneven power configur ations.
See the WRFUd sheet in 3900 Series Base Station Power Consum ption Specifica tions.
l For typic al confi gurati ons in singl eoutpu t or MIM O scena rios, see the
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
table Outp ut powe r for the WRF Ud (UM TS, 2100 MHz ). l For typic al confi gurati ons in hybri d confi gurati on scena rios, see the table Carr ier comb inati ons supp orted by WRF Ud in hybri
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
d confi gurat ions. In this scena rio, one WRF Ud supp orts a maxi mum of six carrie rs. Each trans mit chan nel supp orts a maxi mum of four carrie rs and the maxi mum outpu t powe r of each trans
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
mit chan nel is 60 W. For typical PA configur ations, see Typical Power Configur ation for WRFUd in 3900 Series Base Station Initial Configur ation Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-92 Output power for the WRFUd (UMTS, 2100 MHz)
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
Configured in one PA: 60
2
Configured in one PA: 30
2
Configured in two PAs: 60
3
Configured in one PA: 20
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
4
Configured in one PA: 15
4
Configured in two PAs: 30
6
Configured in two PAs: 20
1 (MIMO)
2 x 40
2 (MIMO)
2 x 30
3 (MIMO)
2 x 20
4 (MIMO)
2 x 15
Table 6-93 Carrier combinations supported by WRFUd in hybrid configurations Number of MIMO Carriers
Number of Single-Output Carriers
1
5
2
4
3
2
Engineering Specifications The following table lists the equipment specifications of a WRFUd. Table 6-94 Equipment specifications of a WRFUd Type
Dimension (H x W x D)
Weight (kg)
WRFUd
9 U x 14 HP x 308.5 mm (with the panel)
12
Table 6-95 lists the surge protection specifications of ports on a WRFUd. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
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Table 6-95 Surge protection specifications of ports on a WRFUd Port
Usage Scenario
Surge Protection Mode
Specifications
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 µs)
Common mode
4 kV (1.2/50 µs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
RF port
Applicable to all scenarios
Surge current
Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
Alarm port
Applicable to all scenarios
Surge current
250 A
Differential mode
3 kA
Common mode
5 kA
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on a WRFUd. Table 6-96 Specifications of CPRI ports on a WRFUd Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
WRFUd
2
1.25 or 2.5
Star
N/A
Antenna Capability The following table lists the antenna capability of a WRFUd.
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Table 6-97 Antenna capability of a WRFUd Type
TMA Support
RET Antenna Support
WRFUd
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.2.6 WRFUe Technical Specifications A WCDMA Radio Filter Unit type E (WRFUe) supports a maximum of six carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by a WRFUe. Table 6-98 Modes and frequency bands supported by a WRFUe Type
Mode
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
WRFUe
UMTS
2100
1920 to 1980
2110 to 2170
RF Specifications Table 6-99 lists RF specifications of a WRFUe. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l Maximum output power = Maximum output power of the PA - Internal loss. The maximum output power is measured at the antenna port.
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Table 6-99 RF specifications of a WRFUe Type
WRFUe
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
2T2R
l With MIM O: 4 carrie rs
-126.1
-128.9
-131.6
l With out MIM O: 6 carrie rs
Output Power
Power Consu mption
The WRFUe supports the maximu m power configur ation 2 x 80 W, configur ations of singleoutput, MIMO, or the combinat ion of the two, and uneven power configur ations.
See the WRFUe sheet in 3900 Series Base Station Power Consum ption Specifica tions.
l For typic al confi gurati ons in singl eoutpu t or MIM O scena rios, see the
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
table Outp ut powe r for the WRF Ue (UM TS, 2100 MHz ). l For typic al confi gurati ons in hybri d confi gurati on scena rios, see the table Carr ier comb inati ons supp orted by WRF Ue in hybri
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
d confi gurat ions. In this scena rio, one WRF Ue supp orts a maxi mum of six carrie rs. Each trans mit chan nel supp orts a maxi mum of four carrie rs and the maxi mum outpu t powe r of each trans
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
mit chan nel is 80 W. For typical PA configur ations, see Typical Power Configur ation for WRFUe in 3900 Series Base Station Initial Configur ation Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-100 Output power for the WRFUe (UMTS, 2100 MHz)
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
Configured in one PA: 80
2
Configured in one PA: 40
2
Configured in two PAs: 80
3
Configured in one PA: 26
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
4
Configured in one PA: 20
4
Configured in two PAs: 40
6
Configured in two PAs: 26
1 (MIMO)
2 x 40
2 (MIMO)
2 x 40
3 (MIMO)
2 x 26
4 (MIMO)
2 x 20
Table 6-101 Carrier combinations supported by WRFUe in hybrid configurations Number of MIMO Carriers
Number of Single-Output Carriers
1
5
2
4
3
2
Engineering Specifications Table 6-102 lists the engineering specifications of a WRFUe. Table 6-102 Equipment specifications of a WRFUe Type
Dimension (H x W x D)
Weight (kg)
WRFUe
9 U x 14 HP x 308.5 mm (with the panel)
12
Table 6-103 lists the surge protection specifications of ports on a WRFUe. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
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Table 6-103 Surge protection specifications of ports on a WRFUe Port
Usage Scenario
Surge Protection Mode
Specifications
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 µs)
Common mode
4 kV (1.2/50 µs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
RF port
Applicable to all scenarios
Surge current
Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
Alarm port
Applicable to all scenarios
Surge current
250 A
Differential mode
3 kA
Common mode
5 kA
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on a WRFUe. Table 6-104 Specifications of CPRI ports on a WRFUe Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
WRFUe
2
1.25 or 2.5
Star
N/A
Antenna Capability The following table lists the antenna capability of a WRFUe.
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Table 6-105 Antenna capability of a WRFUe Type
TMA Support
RET Antenna Support
WRFUe
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.2.7 CRFUd Technical Specifications An CDMA & LTE radio frequency unit type D (CRFUd) works in frequency division duplex (FDD) mode.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an CRFUd. Table 6-106 Modes and frequency bands supported by an CRFUd Type
Mode
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
CRFUd
LTE FDD
AWS (band 4)
1710 to 1755
2110 to 2155
2100
1920 to 1980
2110 to 2170
RF Specifications Table 6-107 lists radio frequency (RF) specifications of an CRFUd. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard.
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Table 6-107 RF specifications of an CRFUd Type
CRF Ud
Trans mit and Recei ve Chan nels
Capacity
2T2R
l AWS: Two carriers. The bandwidth per carrier is 1.4, 3, 5, 10, 15, or 20 MHz; the total bandwidth between the maximum frequency and the minimum frequency of the spectrums for two carriers does not exceed 45 MHz.
Receiver Sensitivity (dBm) 1T1R
1T2R
l AWS: -106.5
l AWS: -109.3
l 2100 MHz: -106.3
l 2100 MHz: -109.1
l 2100 MHz: Two carriers. The bandwidth per carrier is 5, 10, 15, or 20 MHz; the total bandwidth between the maximum frequency and the minimum frequency of the spectrums for two
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Output Power
Power Consumpt ion
The CRFUd supports the maximum power configurati on 2 x 60 W. The typical configurati ons are as follows:
See the CRFUd sheet in 3900 Series Base Station Power Consumpti on Specificatio ns.
l Output power for the CRFUd (LTE FDD, AWS) l Output power for the CRFUd (LTE FDD, 2100 MHz) For typical PA configurati ons, see Typical Power Configurati on for CRFUd in 3900 Series Base Station Initial
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Type
6 Product Specifications
Trans mit and Recei ve Chan nels
Capacity
Receiver Sensitivity (dBm) 1T1R
Output Power
1T2R
carriers does not exceed 60 MHz.
Power Consumpt ion
Configurati on Guide .
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-108 Output power for the CRFUd (LTE FDD, AWS) Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 40
1.4, 3, 5
1 (MIMO)
2 x 60
10, 15, 20
2 (MIMO)
2 x 30
5, 10, 15, 20
2 (MIMO)
l carrier 1: 2 x 20
l carrier 1: 5,10
l carrier 2: 2 x 40
l carrier 2: 10,20
l carrier 1: 2 x 15
l carrier 1: 5
l carrier 2: 2 x 45
l carrier 2: 15
l carrier 1: 2 x 12
l carrier 1: 5
l carrier 2: 2 x 48
l carrier 2: 20
l carrier 1: 2 x 24
l carrier 1: 10
l carrier 2: 2 x 36
l carrier 2: 15
l carrier 1: 2 x 26
l carrier 1: 15
l carrier 2: 2 x 34
l carrier 2: 20
2 (MIMO)
2 (MIMO)
2 (MIMO)
2 (MIMO)
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Table 6-109 Output power for the CRFUd (LTE FDD, 2100 MHz) Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 10
5,10,15,20
1 (MIMO)
2 x 20
5,10,15,20
1 (MIMO)
2 x 40
10,15,20
1 (MIMO)
2 x 60
15,20
2 (MIMO)
l carrier1: 2 x 20
l carrier1: 10
l carrier2: 2 x 10
l carrier2: 5
l carrier1: 2 x 20
l carrier1: 10
l carrier2: 2 x 20
l carrier2: 10
l carrier1: 2 x 20
l carrier1: 10
l carrier2: 2 x 30
l carrier2: 15
l carrier1: 2 x 20
l carrier1: 10
l carrier2: 2 x 40
l carrier2: 20
2 (MIMO)
2 (MIMO)
2 (MIMO)
Engineering Specifications The following table describes the equipment specifications of the CRFUd. Table 6-110 Equipment specifications of an CRFUd Type
Dimensions (H x W x D)
Weight (kg)
CRFUd
9 U x 14 HP x 308.5 mm (with the panel)
12
Table 6-111 lists the surge protection specifications of ports on an CRFUd. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
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Table 6-111 Surge protection specifications of ports on an CRFUd Port
Usage Scenario
Surge Protection Mode
Specification
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
RF port
Applicable to all scenarios
Surge current
Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
Monitoring port
Applicable to all scenarios
Surge current
250 A
Differential mode
3 kA
Common mode
5 kA
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an CRFUd. Table 6-112 Specifications of CPRI ports on an CRFUd Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
CRFUd
2
1.25, 2.5, or 4.9
Star
N/A
Antenna Capability The following table provides antenna capability of an CRFUd.
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Table 6-113 Antenna capability of an CRFUd Type
TMA Support
Supported RET Antennas
CRFUd
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.2.8 CRFUe Technical Specifications An CDMA & LTE radio frequency unit type E (CRFUe) works in frequency division duplex (FDD) mode.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an CRFUe. Table 6-114 Modes and frequency bands supported by an CRFUe Type
Mode
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
CRFUe
LTE FDD
2100
1920 to 1980
2110 to 2170
RF Specifications Table 6-115 lists radio frequency (RF) specifications of an CRFUe. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard.
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Table 6-115 RF specifications of an CRFUe Type
CRF Ue
Trans mit and Recei ve Chan nels
Capacity
2T2R
Two carriers. The bandwidth per carrier is 5, 10, 15, or 20 MHz; the total bandwidth between the maximum frequency and the minimum frequency of the spectrums for two carriers does not exceed 60 MHz.
Receiver Sensitivity (dBm) 1T1R
1T2R
-106.3
-109.1
Output Power
Power Consumpt ion
The CRFUe supports the maximum power configurati on 2 x 80 W. For typical configurati ons, see the Output power for the CRFUe (LTE FDD, 2100 MHz) table.
See the CRFUe sheet in 3900 Series Base Station Power Consumpti on Specificatio ns.
For typical PA configurati ons, see Typical Power Configurati on for CRFUe in 3900 Series Base Station Initial Configurati on Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
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Table 6-116 Output power for the CRFUe (LTE FDD, 2100 MHz) Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 10
5,10,15,20
1 (MIMO)
2 x 20
5,10,15,20
1 (MIMO)
2 x 40
10,15,20
1 (MIMO)
2 x 60
15,20
1 (MIMO)
2 x 80
15,20
2 (MIMO)
l carrier1: 2 x 20
l carrier1: 10
l carrier2: 2 x 10
l carrier2: 5
l carrier1: 2 x 20
l carrier1: 10
l carrier2: 2 x 20
l carrier2: 10
l carrier1: 2 x 20
l carrier1: 10
l carrier2: 2 x 30
l carrier2: 15
l carrier1: 2 x 20
l carrier1: 10
l carrier2: 2 x 40
l carrier2: 20
l carrier1: 2 x 40
l carrier1: 20
l carrier2: 2 x 40
l carrier2: 20
2 (MIMO)
2 (MIMO)
2 (MIMO)
2 (MIMO)
Engineering Specifications The following table describes the equipment specifications of the CRFUe. Table 6-117 Equipment specifications of an CRFUe Type
Dimensions (H x W x D)
Weight (kg)
CRFUe
9 U x 14 HP x 308.5 mm (with the panel)
12
Table 6-118 lists the surge protection specifications of ports on an CRFUe. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
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Table 6-118 Surge protection specifications of ports on an CRFUe Port
Usage Scenario
Surge Protection Mode
Specification
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
RF port
Applicable to all scenarios
Surge current
Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
Monitoring port
Applicable to all scenarios
Surge current
250 A
Differential mode
3 kA
Common mode
5 kA
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an CRFUe. Table 6-119 Specifications of CPRI ports on an CRFUe Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
CRFUe
2
1.25, 2.5, or 4.9
Star
N/A
Antenna Capability The following table provides antenna capability of an CRFUe.
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Table 6-120 Antenna capability of an CRFUe Type
TMA Support
Supported RET Antennas
CRFUe
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.2.9 LRFU Technical Specifications An LTE radio frequency unit (LRFU) works in frequency division duplex (FDD) mode.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an LRFU. Table 6-121 Modes and frequency bands supported by an LRFU Type
Mode
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
LRFU
LTE FDD
2600 (band 7)
Band C: 2500 to 2520
Band C: 2620 to 2640
Band D: 2510 to 2560
Band D: 2630 to 2680
Band E: 2550 to 2570
Band E: 2670 to 2690
RF Specifications Table 6-122 lists radio frequency (RF) specifications of an LRFU. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard.
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Table 6-122 RF specifications of an LRFU Typ e
LRF U
Trans mit and Receiv e Chann els
Capacity
2T2R
One carrier with a bandwidth of 5, 10, 15, or 20 MHz.
Receiver Sensitivity (dBm) 1T1R
1T2R
-105.8
-108.6
Output Power
Power Consumpti on
The LRFU supports the maximum power configuration 2 x 40 W.
See the LRFU sheet in 3900 Series Base Station Power Consumption Specification s.
For typical configuration s, see the Output power for the LRFU (LTE FDD, 2600 MHz) table. For typical PA configuration s, see Typical Power Configuratio n for LRFU in 3900 Series Base Station Initial Configuratio n Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-123 Output power for the LRFU (LTE FDD, 2600 MHz)
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Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 40
1.4, 3, 5, 10, 15, 20
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Engineering Specifications The following table describes the equipment specifications of the LRFU. Table 6-124 Equipment specifications of an LRFU Type
Dimensions (H x W x D)
Weight (kg)
LRFU
9 U x 14 HP x 308.5 mm (with the panel)
12
Table 6-125 lists the surge protection specifications of ports on an LRFU. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-125 Surge protection specifications of ports on an LRFU Port
Usage Scenario
Surge Protection Mode
Specification
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Surge current
RF port
Monitoring port
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an LRFU. Issue 14 (2016-01-30)
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Table 6-126 Specifications of CPRI ports on an LRFU Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
LRFU
2
1.25 or 2.5
Star
N/A
Antenna Capability The following table provides antenna capability of an LRFU. Table 6-127 Antenna capability of an LRFU Type
TMA Support
Supported RET Antennas
LRFU
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.2.10 LRFUe Technical Specifications An LTE radio frequency unit type E (LRFUe) works in frequency division duplex (FDD) mode.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an LRFUe. Table 6-128 Modes and frequency bands supported by an LRFUe Type
Mode
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
LRFUe
LTE FDD
DD 800 (band 20)
832 to 862
791 to 821
700 (band 28)
Band A: 703 to 743
Band A: 758 to 798
Band B: 718 to 748
Band B: 773 to 803
RF Specifications Table 6-129 lists radio frequency (RF) specifications of an LRFUe. Issue 14 (2016-01-30)
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NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard.
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Table 6-129 RF specifications of an LRFUe Type
LRF Ue
Tra nsm it and Rec eive Cha nnel s
Capacity
2T2 R
Two carriers. The bandwidth per carrier is 5, 10, 15, or 20 MHz. l DD 800MHz: The total bandwidth between the maximum frequency and the minimum frequency of the spectrums for two carriers does not exceed 20 MHz.
Receiver Sensitivity (dBm) Receiver Sensitivit y with One Antenna
Receiver Sensitivit y with Two Antennas
l DD 800MH z: -106.3
l DD 800MH z: -109.1
l 700MH z: -106.5
l 700MH z: -109.3
l 700MHz: The total bandwidth between the maximum frequency and the minimum frequency of the spectrums for two carriers does not exceed 25 MHz.
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Output Power
Power Consumpt ion
l DD 800MH z: The LRFUe supports the maximu m power configur ation 2 x 60 W. For typical configur ations, see the Output power for the LRFUe (LTE FDD, DD 800MH z) table.
See the LRFUe sheet in 3900 Series Base Station Power Consumpti on Specificatio ns.
l 700MH z: The LRFUe supports the maximu m power configur ation 2 x 80 W. For typical configur
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6 Product Specifications
Tra nsm it and Rec eive Cha nnel s
Capacity
Receiver Sensitivity (dBm) Receiver Sensitivit y with One Antenna
Output Power
Receiver Sensitivit y with Two Antennas
Power Consumpt ion
ations, see the Output power for the LRFUe (LTE FDD, 700MH z) table. For typical PA configurati ons, see Typical Power Configurati on for LRFUe in 3900 Series Base Station Initial Configurati on Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-130 Output power for the LRFUe (LTE FDD, DD 800 MHz)
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Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 20
5
1 (MIMO)
2 x 40
10
1 (MIMO)
2 x 60
15, 20
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Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
2 (MIMO)
2 x 30
10
Table 6-131 Output power for the LRFUe (LTE FDD, 700 MHz) Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1(MIMO)
2 x 80
10, 15, 20
1(MIMO)
2 x 60
10, 15, 20
1(MIMO)
2 x 40
5, 10, 15, 20
2(MIMO)
l carrier1: 2 x 30
5, 10
l carrier2: 2 x 30 2(MIMO)
2(MIMO)
2(MIMO)
2(MIMO)
2(MIMO)
l carrier1: 2 x 20
l carrier1: 5
l carrier2: 2 x 40
l carrier2: 10
l carrier1: 2 x 15
l carrier1: 5
l carrier2: 2 x 45
l carrier2: 15
l carrier1: 2 x 12
l carrier1: 5
l carrier2: 2 x 48
l carrier2: 20
l carrier1: 2 x 24
l carrier1: 10
l carrier2: 2 x 36
l carrier2: 15
l carrier1: 2 x 20
5, 10
l carrier2: 2 x 20 2(MIMO)
2(MIMO)
2(MIMO)
2(MIMO)
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l carrier1: 2 x 13
l carrier1: 5
l carrier2: 2 x 27
l carrier2: 10
l carrier1: 2 x 10
l carrier1: 5
l carrier2: 2 x 30
l carrier2: 15
l carrier1: 2 x 8
l carrier1: 5
l carrier2: 2 x 32
l carrier2: 20
l carrier1: 2 x 16
l carrier1: 10
l carrier2: 2 x 24
l carrier2: 15
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Engineering Specifications The following table describes the equipment specifications of the LRFUe. Table 6-132 Equipment specifications of an LRFUe Type
Dimensions (H x W x D)
Weight (kg)
LRFUe
9 U x 14 HP x 308.5 mm (with the panel)
12
Table 6-133 lists the surge protection specifications of ports on an LRFUe. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-133 Surge protection specifications of ports on an LRFUe Port
Usage Scenario
Surge Protection Mode
Specification
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Surge current
RF port
Monitoring port
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an LRFUe. Issue 14 (2016-01-30)
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Table 6-134 Specifications of CPRI ports on an LRFUe Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
LRFUe
2
1.25, 2.5, or 4.9
Star
N/A
Antenna Capability The following table provides antenna capability of an LRFUe. Table 6-135 Antenna capability of an LRFUe Type
TMA Support
Supported RET Antennas
LRFUe
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.2.11 MRFU Technical Specifications Multi-Mode Radio Frequency Units (MRFUs) are classified into MRFU V1, MRFU V2, and MRFU V2a modules. Using the software-defined radio (SDR) technology, MRFUs can work in different modes with different configurations.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an MRFU. Table 6-136 Modes and frequency bands supported by an MRFU Type
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
Mode
MRFU V1
900 PGSM
890 to 915
935 to 960
GSM, UMTS, and GU
1800
1710 to 1755
1805 to 1850
1740 to 1785
1835 to 1880
GSM, LTE FDD, and GL
1850 to 1890
1930 to 1970
1870 to 1910
1950 to 1990
824 to 846.5
869 to 891.5
1900
MRFU V2
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850
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Type
MRFU V2a
MRFU V6
6 Product Specifications
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
Mode
900 PGSM
890 to 915
935 to 960
900 EGSM
880 to 915
925 to 960
GSM, UMTS, LTE FDD, GU, and GL
1800
1710 to 1770
1805 to 1865
1725 to 1785
1820 to 1880
1710 to 1785
1805 to 1880
900
885 to 910
930 to 955
GSM, UMTS, LTE FDD, GU, and GL
1800
1710 to 1755
1805 to 1850
GSM, LTE FDD, and GL
1800
1710 to 1785
1805 to 1880
GSM, LTE (FDD), GL
900 PGSM
890 to 915
935 to 960
900 EGSM
880 to 915
925 to 960
GSM, UMTS, LTE FDD, GU, and GL
GSM, LTE FDD, and GL
RF Specifications Table 6-137 lists radio frequency (RF) specifications of an MRFU. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l EF MSR indicates that E and F data is carried on the same transmit channel of an RF module. l The GSM receiver sensitivity is measured, as recommended in 3GPP TS 51.021, over the central band at the antenna connector on condition that the channel rate reaches 13 kbit/s and the bit error rate (BER) does not exceed 2%. The central band is the 80% of the full band. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l The MRFU that works in GSM mode and operates in the 900 or 1800 MHz frequency band complies with the EN 301 502 V9.2.1 standard. The MRFU that works in GSM mode and operates in the 850 or 1900 MHz frequency band complies with the 3GPP TS 45.005 V10.2.0 and 3GPP TS 51.021 V10.2.0 standards. l The MRFU that works in UMTS, LTE FDD, or multiple service ring (MSR) mode and operates in the 900 or 1800 MHz frequency band complies with the ETSI EN 301 908 V5.2.1 and 3GPP TS 37.104 standards. The MRFU that works in UMTS, LTE FDD, or MSR mode and operates in the 850 or 1900 MHz frequency band complies with the 3GPP TS 37.104 V10.4.0 and TS 37.141 V10.4.0 standards.
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Table 6-137 RF specifications of an MRFU Ty pe
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensiti vity with Two Antenn as
Receiver Sensitivi ty with Four Antenna s
MR FU V1
1T 2R
GSM: 6 TRXs
GSM: -113.0
GSM: -115.8
UMTS: 4 carriers
UMTS: -125.5
UMTS: -128.3
GSM: -118.5 (theoretica l value)
LTE FDD: 1 carrier with a bandwidt h of 3, 5, or 10 MHz
LTE FDD: -106.3
LTE FDD: -109.1
UMTS: -131.0 LTE FDD: -111.8
Output Power
Power Consumpti on
The MRFU V1 supports the maximum power configuration 1 x 80 W. The typical configurations are as follows:
See the MRFU sheet in 3900 Series Base Station Power Consumptio n Specificatio ns.
l Output power for the MRFU V1 (GSM, 900 MHz/ 1800 MHz/ 1900 MHz) l Output power for the MRFU V1 (UMTS, 900 MHz/ 1900 MHz) l Output power for the MRFU V1 (LTE FDD, 1800 MHz) l Output power for the MRFU V1 (GU
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Ty pe
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Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensiti vity with Two Antenn as
Receiver Sensitivi ty with Four Antenna s
Output Power
Power Consumpti on
MSR, 900 MHz) l Output power for the MRFU V1 (GL MSR, 1800 MHz) MR FU V2
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1T 2R
GSM: 6 TRXs UMTS: 4 carriers LTE FDD: l 900 MHz: 1 carrie r with a band width of 1.4, 3, 5, 10, 15, or 20 MHz l 1800 MHz: 1 carrie r with
GSM:
GSM:
l 850 MHz : -113. 0
l 850 MHz : -115. 8
l 900 MHz PGS M: -113. 5
l 900 MHz PGS M: -116. 3
l 900 MHz EGS M: -113. 3
l 900 MHz EGS M: -116. 1
l 1800 MHz : -113. 8
l 1800 MHz : -116. 6
UMTS:
UMTS:
GSM: l 850 MHz: -118.5 (theore tical value) l 900 MHz PGSM : -119 (theore tical value) l 900 MHz EGSM : -118.8 (theore tical value) l 1800 MHz: -119.3
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The MRFU V2/MRFU V2a supports the maximum power configuration 1 x 80 W. The typical configurations are as follows: l Output power for the MRFU V2/MRFU V2a (GSM, 850 MHz/900 MHz/1800 MHz) l Output power for the MRFU V2/MRFU V2a (UMTS,
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MR FU V2 a
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6 Product Specifications
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
a band width of 5, 10, 15, or 20 MHz
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensiti vity with Two Antenn as
Receiver Sensitivi ty with Four Antenna s
l 850 MHz : -125. 0 l 900 MHz PGS M: -125. 5 l 900 MHz EGS M: -125. 3 LTE FDD: l 900 MHz PGS M: -106. 3 l 900 MHz EGS M: -106. 1 l 1800 MHz
l 850 MHz : -127. 8 l 900 MHz PGS M: -128. 3 l 900 MHz EGS M: -128. 1 LTE FDD: l 900 MHz PGS M: -109. 1 l 900 MHz EGS M: -108. 9 l 1800 MHz
(theore tical value) UMTS: l 850 MHz: -130.5 l 900 MHz PGSM : -131.0 l 900 MHz EGSM : -130.8 LTE FDD: l 900 MHz PGSM : -111.8 l 900 MHz EGSM : -111.6
Output Power
Power Consumpti on
850 MHz/900 MHz) l Output power for the MRFU V2/MRFU V2a (LTE FDD, 900 MHz/1800 MHz) l Output power for the MRFU V2/MRFU V2a (GU MSR, 850 MHz/900 MHz) l Output power for the MRFU V2/MRFU V2a (GL MSR, 900 MHz/1800 MHz)
l 1800 MHz: -112.1
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Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensiti vity with Two Antenn as
: -106. 6
: -109. 4
Receiver Sensitivi ty with Four Antenna s
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Power Consumpti on
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Ty pe
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensiti vity with Two Antenn as
Receiver Sensitivi ty with Four Antenna s
MR FU V6
1T 2R
GSM: 6 TRXs
GSM:
GSM:
GSM:
l 900 MHz PGS M: -113. 3
l 900 MHz PGS M: -116. 1
l 900 MHz EGS M: -113. 3
l 900 MHz EGS M: -116. 1
l 900 MHz PGSM : -118.8 (theore tical value)
l 1800 MHz : -113. 8
l 1800 MHz : -116. 6
UMTS:
UMTS:
l 900 MHz PGS M: -125. 3
l 900 MHz PGS M: -128. 1
l 900 MHz EGS M: -125. 3
l 900 MHz EGS M: -128. 1
LTE FDD:
LTE FDD:
UMTS: 4 carriers LTE FDD: 1 carrier with a bandwidt h of 1.4, 3, 5, 10, 15 or 20 MHz
Issue 14 (2016-01-30)
l 900 MHz EGSM : -118.8 (theore tical value) l 1800 MHz: -119.3 (theore tical value) UMTS: l 900 MHz PGSM : -130.8 l 900 MHz EGSM
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Output Power
Power Consumpti on
The MRFU V6 supports the maximum power configuration 1 x 80 W. The typical configurations are as follows: l Output power for the MRFU V6 (GSM, 900 MHz/ 1800 MHz) l Output power for the MRFU V6 (UMTS, 900 MHz) l Output power for the MRFU V6 (UMTS, 900 MHz, two combined) l Output power for the MRFU V6 (LTE
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Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensiti vity with Two Antenn as
Receiver Sensitivi ty with Four Antenna s
l 900 MHz PGS M: -106. 3
l 900 MHz PGS M: -109. 1
: -130.8
l 900 MHz EGS M: -106. 3
l 900 MHz EGS M: -109. 1
l 1800 MHz : -106. 5
l 1800 MHz : -109. 3
LTE FDD: l 900 MHz PGSM : -111.8 l 900 MHz EGSM : -111.8 l 1800 MHz: -112.0
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Output Power
Power Consumpti on
FDD, 900 MHz/1800 MHz) l Output power for the MRFU V6 (GU MSR, 900 MHz) l Output power for the MRFU V6 (GL MSR, 900 MHz/ 1800MHz)
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NOTE
l If the power sharing feature is activated, assume that UEs in a cell are randomly located. l If the RF module is placed at an altitude of 3500 to 4500 meters, its power reduces by 1 dB. If the RF module is placed at an altitude of 4500 to 6000 meters, its power reduces by 2 dB. l Station spacing, frequency multiplexing factor, power control algorithm, and traffic model all affect the gains of dynamic power sharing. In most cases, network plans are designed on the basis of power specifications of dynamic power sharing. l Before activating the dynamic power sharing feature, enable the DTX and power control functions. In GBSS8.1, the dynamic power sharing feature is mutually exclusive with the GBFD-113201 Concentric Cell, GBFD-114501 Co-BCCH Cell, GBFD-118001 BCCH Dense Frequency Multiplexing, and GBFD-117501 Enhanced Measurement Report (EMR) features. In GBSS9.0 and later versions, the dynamic power sharing feature can be used together with these features. However, the dynamic power sharing feature currently cannot be used together with the GBFD-117002 IBCA (Interference Based Channel Allocation), GBFD-117001 Flex MAIO, GBFD-118701 RAN Sharing, and GBFD-114001 Extended Cell features in GBSS8.1, GBSS9.0, and later versions. l For the MRFU working in GSM mode: The maximum output power of the RF module in S1 configuration is 60 W. To achieve the maximum output power, you need to buy a license. l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-138 Output power for the MRFU V1 (GSM, 900 MHz/1800 MHz/1900 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
60
60
2
40
40
3
27
31
4
20
27
5
12
20
6
10
16
NOTE
(a) indicates that only hardware is available for the configuration.
Table 6-139 Output power for the MRFU V1 (UMTS, 900 MHz/1900 MHz)
Issue 14 (2016-01-30)
Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
60
2
40
3(a)
27(a)
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
4(a)
20(a)
Table 6-140 Output power for the MRFU V1 (LTE FDD, 1800 MHz) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1
60
3, 5, 10
Table 6-141 Output power for the MRFU V1 (GU MSR, 900 MHz) Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
1
40
40
1
2
40
20
2
1
20
40
2
2
20
20
3
1
20
10
3
1
16
20
3
2
16
10
3
2
10
20
4
1
12
20
4
2
10
10
5
1
10
10
Table 6-142 Output power for the MRFU V1 (GL MSR, 1800 MHz)
Issue 14 (2016-01-30)
Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
GSM + LTE FDD
1
1
40
40
3, 5, 10
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Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
2
1
20
40
3, 5, 10
3
1
20
10
3, 5, 10
3
1
16
20
3, 5, 10
4
1
15
10
3, 5, 10
4
1
12
20
3, 5, 10
5
1
10
20
3, 5, 10
Table 6-143 Output power for the MRFU V2/MRFU V2a (GSM, 850 MHz/900 MHz/1800 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
60
60
2
40
40
3
27
31
4
20
27
5
16
20
6
12
20
NOTE
l
(a) indicates that only hardware is available for the configuration.
l
Two MRFU V2 or MRFU V2a modules are required to support UMTS MIMO.
Table 6-144 Output power for the MRFU V2/MRFU V2a (UMTS, 850 MHz/900 MHz)
Issue 14 (2016-01-30)
Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
60
2
40
3(a)
27(a)
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
4(a)
20(a)
1 (MIMO)
2 x 60
2 (MIMO)
2 x 40
3 (MIMO)(a)
2 x 27(a)
4 (MIMO)(a)
2 x 20(a)
Table 6-145 Output power for the MRFU V2/MRFU V2a (LTE FDD, 900 MHz/1800 MHz) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1
60
l 900 MHz: 1.4, 3, 5, 10, 15, 20 l 1800 MHz: 5, 10, 15, 20
Table 6-146 Output power for the MRFU V2/MRFU V2a (GU MSR, 850 MHz/900 MHz)
Issue 14 (2016-01-30)
Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
1
40
40
2
1
20
40
2
1
30
20
3
1
20
20
4
1
12
20
5
1
10
20
1
2
40
20
2
2
20
20
3
2
16
10
3
2
10
20
4
2
10
10
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Table 6-147 Output power for the MRFU V2/MRFU V2a (GL MSR, 900 MHz/1800 MHz) Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
GSM + LTE FDD
1
1
40
30
l 900 MHz: 1.4, 3, 5, 10, 15 l 1800 MHz: 5, 10, 15
1
1
30
40
l 900 MHz: 1.4, 3, 5, 10, 15 l 1800 MHz: 5, 10, 15
2
1
27
20
l 900 MHz: 1.4, 3, 5, 10, 15 l 1800 MHz: 5, 10, 15
2
1
20
40
l 900 MHz: 1.4, 3, 5, 10, 15 l 1800 MHz: 5, 10, 15
3
1
20
20
l 900 MHz: 1.4, 3, 5, 10, 15 l 1800 MHz: 5, 10, 15
4
1
12
20
l 900 MHz: 1.4, 3, 5, 10 l 1800 MHz: 5, 10
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Mode
6 Product Specifications
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
4
1
15
10
l 900 MHz: 1.4, 3, 5, 10 l 1800 MHz: 5, 10
5
1
10
l 900 MHz: 1.4, 3, 5, 10
20
l 1800 MHz: 5, 10
Table 6-148 Output power for the MRFU V6 (GSM, 900 MHz/1800 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
60
60
2
40
40
3
27
31
4
20
27
5
16
20
6
12
20
Table 6-149 Output power for the MRFU V6 (UMTS, 900 MHz)
Issue 14 (2016-01-30)
Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
60
2
40
3
26
4
20
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Table 6-150 Output power for the MRFU V6 (UMTS, 900 MHz, two combined) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1(MIMO)
2x60
2(MIMO)
2x40
3(MIMO)
2x26
4(MIMO)
2x20
Table 6-151 Output power for the MRFU V6 (LTE FDD, 900 MHz/1800 MHz) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE(FDD)
1
60
5, 10, 15, 20
Table 6-152 Output power for the MRFU V6 (GU MSR, 900 MHz)
Issue 14 (2016-01-30)
Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
1
40
40
1
2
40
20
2
1
20
40
2
1
30
20
2
2
20
20
3
1
20
20
3
2
16
10
3
2
10
20
4
1
12
20
4
2
10
10
5
1
10
20
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Table 6-153 Output power for the MRFU V6 (GL MSR, 900 MHz/1800 MHz) Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
GSM + LTE(FDD)
1
1
40
30
1.4, 3, 5, 10, 15
1
1
30
40
1.4, 3, 5, 10, 15
2
1
27
20
1.4, 3, 5, 10, 15
2
1
20
30
1.4, 3, 5, 10, 15
3
1
20
20
1.4, 3, 5, 10, 15
4
1
12
20
10
5
1
10
20
10
Engineering Specifications The following table lists the equipment specifications of an MRFU. Table 6-154 Equipment specifications of an MRFU Type
Dimension (H x W x D)
Weight (kg)
MRFU V1, MRFU V2, MRFU V2a and MRFU V6
9 U x 14 HP x 308.5 mm (with the panel)
12
Table 6-155 lists the surge protection specifications of ports on an MRFU. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
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Table 6-155 Surge protection specifications of ports on an MRFU Port
Usage Scenario
Surge Protection Mode
Specification
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
RF port
Applicable to all scenarios
Surge current
Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
Alarm port
Applicable to all scenarios
Surge current
250 A
Differential mode
3 kA
Common mode
5 kA
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an MRFU. Table 6-156 Specifications of CPRI ports on an MRFU Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
MRFU V1
2
1.25
CPRI MUX:
MRFU V2 and MRFU V2a
2
1.25 or 2.5
Star, chain, or dual-star
MRFU V6
2
l GU: 6 l GL: 4
1.25, 2.5, or 4.9
Star or dual-star
Antenna Capability The following table provides the antenna capability of an MRFU. Issue 14 (2016-01-30)
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Table 6-157 Antenna capability of an MRFU Type
TMA Support
Supported RET Antennas
MRFU V1
Supported
AISG2.0 and AISG1.1
MRFU V2 and MRFU V2a
Supported
AISG2.0 and AISG1.1
MRFU V6
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.2.12 MRFUc Technical Specifications Using the software-defined radio (SDR) technology, MRFUcs (Multi-Mode Radio Frequency Units Type C) can work in different modes with different configurations.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an MRFUc. Table 6-158 Modes and frequency bands supported by an MRFUc Type
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
Mode
MRFUc
2100
1920 to 1980
2110 to 2170
UMTS, LTE FDD, and UL
RF Specifications Table 6-159 lists radio frequency (RF) specifications of an MRFUc. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l EF MSR indicates that E and F data is carried on the same transmit channel of an RF module. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l The MRFUc, which works in UMTS, LTE FDD, or multiple service ring (MSR) mode and operates in the 2100 MHz frequency band, complies with the ETSI EN 301 908 V5.2.1 and 3GPP TS 37.104 standards.
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Table 6-159 RF specifications of an MRFUc Ty pe
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensiti vity with Two Antenn as
Receiver Sensitivi ty with Four Antenna s
MR FU c
2T 2R
UMTS:
UMTS: -126.1
UMTS: -128.9
UMTS: -131.6
LTE FDD: -106.8
LTE FDD: -109.6
LTE FDD: -112.3
l Witho ut MIM O: 6 carrie rs l With MIM O: 4 carrie rs 4 LTE FDD carriers. The bandwidt h per carrier is 5, 10, 15, or 20 MHz.
Output Power
Power Consumpti on
The MRFUc supports the maximum power configuration 2 x 60 W. The typical configurations are as follows:
See the MRFUc sheet in 3900 Series Base Station Power Consumptio n Specificatio ns.
l Output power for the MRFUc (UMTS, 2100 MHz) l Output power for the MRFUc (LTE FDD, 2100 MHz) l Output power for the MRFUc (UL MSR, 2100 MHz) For typical PA configurations, see Typical Power Configuration for MRFUc in
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Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensiti vity with Two Antenn as
Receiver Sensitivi ty with Four Antenna s
Output Power
Power Consumpti on
3900 Series Base Station Initial Configuration Guide.
NOTE
l If the power sharing feature is activated, assume that UEs in a cell are randomly located. l If the RF module is placed at an altitude of 3500 to 4500 meters, its power reduces by 1 dB. If the RF module is placed at an altitude of 4500 to 6000 meters, its power reduces by 2 dB. l Station spacing, frequency multiplexing factor, power control algorithm, and traffic model all affect the gains of dynamic power sharing. In most cases, network plans are designed on the basis of power specifications of dynamic power sharing. l Before activating the dynamic power sharing feature, enable the DTX and power control functions. In GBSS8.1, the dynamic power sharing feature is mutually exclusive with the GBFD-113201 Concentric Cell, GBFD-114501 Co-BCCH Cell, GBFD-118001 BCCH Dense Frequency Multiplexing, and GBFD-117501 Enhanced Measurement Report (EMR) features. In GBSS9.0 and later versions, the dynamic power sharing feature can be used together with these features. However, the dynamic power sharing feature currently cannot be used together with the GBFD-117002 IBCA (Interference Based Channel Allocation), GBFD-117001 Flex MAIO, GBFD-118701 RAN Sharing, and GBFD-114001 Extended Cell features in GBSS8.1, GBSS9.0, and later versions. l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-160 Output power for the MRFUc (UMTS, 2100 MHz)
Issue 14 (2016-01-30)
Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
60
2
60
3
30
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Mode
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Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
4
30
5
20
6
20
1 (MIMO)
2x40
2 (MIMO)
2x30
3 (MIMO)
2x20
4 (MIMO)
2x15
2+1 (MIMO)
l Non-MIMO carrier: 30 l MIMO carrier: 2x30 l Non-MIMO carrier: 20
2+2 (MIMO)
l MIMO carrier: 2x20 l Non-MIMO carrier: 15
2+3 (MIMO)
l MIMO carrier: 2x15 l Non-MIMO carrier: 20
4+1 (MIMO)
l MIMO carrier: 2x20 l Non-MIMO carrier: 15
4+2 (MIMO)
l MIMO carrier: 2x15 l Non-MIMO carrier: 15
6+1 (MIMO)
l MIMO carrier: 2x15
Table 6-161 Output power of the MRFUc (LTE FDD, 2100 MHz)
Issue 14 (2016-01-30)
Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD (MHz)
LTE FDD
1 (MIMO)
2x60
5, 10, 15, 20
2 (MIMO)
2x30
5, 10, 15, 20
3 (MIMO)
2x20
5, 10, 15, 20
4 (MIMO)
2x15
5, 10, 15
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Table 6-162 Output power for the MRFUc (UL MSR, 2100 MHz) Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD (MHz)
UMTS + LTE FDD
1
1 (MIMO)
30
2x30
5, 10, 15, 20
2
1 (MIMO)
30
2x30
5, 10, 15, 20
3
1 (MIMO)
20
2x20
5, 10, 15, 20
4
1 (MIMO)
20
2x20
5, 10, 15, 20
1 (MIMO)
1 (MIMO)
2x30
2x30
5, 10, 15, 20
2 (MIMO)
1 (MIMO)
2x20
2x20
5, 10, 15, 20
3 (MIMO)
1 (MIMO)
2x15
2x15
5, 10, 15, 20
4 (MIMO)
1 (MIMO)
2x10
2x20
5, 10, 15, 20
6
1 (MIMO)
15
2x15
5, 10, 15, 20
2
2 (MIMO)
20
2x20
5, 10, 15, 20
4
2 (MIMO)
15
2x15
5, 10, 15, 20
6
2 (MIMO)
10
2x15
5, 10, 15
2
3 (MIMO)
15
2x15
5, 10, 15
Engineering Specifications The following table lists the equipment specifications of an MRFUc. Table 6-163 Equipment specifications of an MRFUc Type
Dimension (H x W x D)
Weight (kg)
MRFUc
9 U x 14 HP x 308.5 mm (with the panel)
12
Table 6-164 lists the surge protection specifications of ports on an MRFUc. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
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Table 6-164 Surge protection specifications of ports on an MRFUc Port
Usage Scenario
Surge Protection Mode
Specification
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
RF port
Applicable to all scenarios
Surge current
Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
Alarm port
Applicable to all scenarios
Surge current
250 A
Differential mode
3 kA
Common mode
5 kA
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an MRFUc. Table 6-165 Specifications of CPRI ports on an MRFUc Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
MRFUc
2
1.25/2.5/4.9
Star and dualstar
UL CPRI MUX: 4 levels
Antenna Capability The following table provides the antenna capability of an MRFUc.
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Table 6-166 Antenna capability of an MRFUc Type
TMA Support
Supported RET Antennas
MRFUc
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.2.13 MRFUd Technical Specifications Using the software-defined radio (SDR) technology, Multi-Mode Radio Frequency Unit Type D (MRFUd) modules can work in different modes with different configurations.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an MRFUd/MRFUd V6/MRFUdw V6. Table 6-167 Modes and frequency bands supported by an MRFUd/MRFUd V6/MRFUdw V6 Type
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
Mode
MRFUd
900 PGSM
890 to 915
935 to 960
900 EGSM
880 to 915
925 to 960
GSM, UMTS, LTE FDD, GU, GL, and UL
1800
1710 to 1785
1805 to 1880
GSM, UMTS, LTE FDD, GU, and GL
2100
1920 to 1980
2110 to 2170
UMTS, LTE FDD, and UL
MRFUd V6
1800
1710 to 1785
1805 to 1880
GSM, LTE FDD, and GL
MRFUdw V6
1800
1710 to 1785
1805 to 1880
GSM, LTE FDD, and GL
NOTE
On the 900 MHz frequency band, only the hardware of the MRFUd supports the LTE mode.
RF Specifications Table 6-168 lists radio frequency (RF) specifications of an MRFUd/MRFUd V6/MRFUdw V6. Issue 14 (2016-01-30)
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NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l EF MSR indicates that E and F data is carried on the same transmit channel of an RF module. l EF non-MSR indicates that E data is carried on one transmit channel of an RF module while F data is carried on the other transmit channel of the RF module. l The GSM receiver sensitivity is measured, as recommended in 3GPP TS 51.021, over the central band at the antenna connector on condition that the channel rate reaches 13 kbit/s and the bit error rate (BER) does not exceed 2%. The central band is the 80% of the full band. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l The MRFUd that works in GSM mode and operates in the 900 or 1800 MHz frequency band complies with the EN 301 502 V9.2.1 standard . l The MRFUd that works in UMTS, LTE FDD, or multiple service ring (MSR) mode and operates in the 900 or 1800 MHz frequency band complies with the ETSI EN 301 908 V5.2.1 and 3GPP TS 37.104 standards.
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Table 6-168 RF specifications of an MRFUd/MRFUd V6/MRFUdw V6 Ty pe
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitivi ty with Four Antenna s
MR FU d
2T 2R
GSM: 8 TRXs
GSM:
GSM:
GSM:
l 900 MHz: -113. 7
l 900 MHz: -116.5
l 900 MHz: -119.2 (theor etical value)
UMTS: l Witho ut MIM O: 6 carrie rs
l 1800 MHz: -114. 0
l With MIM O: 4 carrie rs
UMTS:
LTE FDD: 2 carriers. The bandwidt h per carrier is 1.4, 3, 5, 10, 15, or 20 MHz.
l 1800 MHz: -126. 1
l 900 MHz: -125. 8
l 2100 MHz: -126. 1 LTE FDD: l 900 MHz: -106. 3 l 1800 MHz: -106. 6
Issue 14 (2016-01-30)
l 1800 MHz: -116.8 UMTS: l 900 MHz: -128.6 l 1800 MHz: -128.9
l 1800 MHz: -119.5 (theor etical value) UMTS:
l 2100 MHz: -128.9
l 900 MHz: -131.3
LTE FDD:
l 1800 MHz: -131.6
l 900 MHz: -109.1 l 1800 MHz: -109.4 l 2100 MHz: -109.4
l 2100 MHz: -131.6 LTE FDD: l 900 MHz: -111.8 l 1800 MHz: -112.1
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Output Power
Power Consumpti on
The MRFUd supports the maximum power configuration 2 x 80 W. The typical configurations are as follows:
See the MRFUd sheet in 3900 Series Base Station Power Consumptio n Specificatio ns.
l Output power for the MRFUd (GSM, 900 MHz/1800 MHz) l Output power for the MRFUd (UMTS, 900 MHz/ 1800 MHz/2100 MHz) l Output power for the MRFUd (LTE FDD, 900 MHz)
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Ty pe
6 Product Specifications
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
l 2100 MHz: -106. 6
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitivi ty with Four Antenna s
l 2100 MHz: -112.1
Output Power
Power Consumpti on
l Output power for the MRFUd (LTE FDD, 2100 MHz) l Output power for the MRFUd (GU nonMSR, 900 MHz/1800 MHz) l Output power for the MRFUd (GU MSR, 900 MHz/ 1800 MHz) l Output power for the MRFUd (GL MSR, 900 MHz/ 1800 MHz) l Output power for the
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Ty pe
6 Product Specifications
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitivi ty with Four Antenna s
Output Power
Power Consumpti on
MRFUd (UL MSR, 900 MHz/ 2100 MHz) For typical PA configurations , see Typical Power Configuration for MRFUd in 3900 Series Base Station Initial Configuration Guide. MR FU d V6
Issue 14 (2016-01-30)
2T 2R
GSM: 8 TRXs
GSM: -114.0
GSM: -116.8
LTE FDD: 2 carriers. The bandwidt h per carrier is 1.4, 3, 5, 10, 15, or 20 MHz.
LTE FDD: -106.9
LTE FDD: -109.7
GSM: -119.5 (theoretic al value) LTE FDD: -112.4
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The MRFUd V6/MRFUdw V6 supports the maximum power configuration 2 x 80 W. The typical configurations are as follows: l Output power for the MRFUd V6 (GSM, 1800 MHz)
See the MRFUd V6 sheet in 3900 Series Base Station Power Consumptio n Specificatio ns.
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6 Product Specifications
Ty pe
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitivi ty with Four Antenna s
MR FU dw V6
2T 2R
GSM: 8 TRXs
GSM: -113.7
GSM: -116.5
LTE FDD: 2 carriers. The bandwidt h per carrier is 1.4, 3, 5, 10, 15, or 20 MHz.
LTE FDD: -106.6
LTE FDD: -109.4
GSM: -119.2 (theoretic al value) LTE FDD: -112.1
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Output Power
Power Consumpti on
l Output power for the MRFUdw V6 (GSM, 1800 MHz) l Output power for the MRFUd V6/ MRFUdw V6 (LTE FDD, 1800 MHz) l Output power for the MRFUd V6/ MRFUdw V6 (GL MSR, 1800 MHz) For typical PA configurations , see Typical Power Configuration for MRFUd V6/MRFUdw V6 in 3900 Series Base
See the MRFUdw V6 sheet in 3900 Series Base Station Power Consumptio n Specificatio ns.
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Ty pe
6 Product Specifications
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receiver Sensitivi ty with Four Antenna s
Receiver Sensitiv ity with Two Antenna s
Output Power
Power Consumpti on
Station Initial Configuration Guide.
NOTE
l If the power sharing feature is activated, assume that UEs in a cell are randomly located. l If the RF module is placed at an altitude of 3500 to 4500 meters, its power reduces by 1 dB. If the RF module is placed at an altitude of 4500 to 6000 meters, its power reduces by 2 dB. l Station spacing, frequency multiplexing factor, power control algorithm, and traffic model all affect the gains of dynamic power sharing. In most cases, network plans are designed on the basis of power specifications of dynamic power sharing. l Before activating the dynamic power sharing feature, enable the DTX and power control functions. In GBSS8.1, the dynamic power sharing feature is mutually exclusive with the GBFD-113201 Concentric Cell, GBFD-114501 Co-BCCH Cell, GBFD-118001 BCCH Dense Frequency Multiplexing, and GBFD-117501 Enhanced Measurement Report (EMR) features. In GBSS9.0 and later versions, the dynamic power sharing feature can be used together with these features. However, the dynamic power sharing feature currently cannot be used together with the GBFD-117002 IBCA (Interference Based Channel Allocation), GBFD-117001 Flex MAIO, GBFD-118701 RAN Sharing, and GBFD-114001 Extended Cell features in GBSS8.1, GBSS9.0, and later versions. l For the MRFUd working in GSM mode: when the S1 or S2 configuration is applied, the maximum output power of each carrier on the MRFUd is 80 W. If the output power of 60 W or 80 W is required, the related license must be obtained. l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-169 Output power for the MRFUd (GSM, 900 MHz/1800 MHz)
Issue 14 (2016-01-30)
Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
80
80
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Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
2
80
80
3
40
40
4
40
40
5
27
30
6
27
30
7
20
27
8
20
27
Table 6-170 Output power for the MRFUd (UMTS, 900 MHz/1800 MHz/2100 MHz) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
80
2
80
3
40
4
40
5
25
6
25
1 (MIMO)
2 x 40
2 (MIMO)
2 x 40
3 (MIMO)
2 x 25
4 (MIMO)
2 x 20
NOTE
(a) indicates that the configuration is supported from SRAN8.0 and supported only at the 1800 MHz frequency band.
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Table 6-171 Output power for the MRFUd (LTE FDD, 900 MHz/1800 MHz) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)(a)
2 x 80(a)
5, 10, 15, 2(a)
1 (MIMO)
2 x 60
5, 10, 15, 20
1 (MIMO)
2 x 40
1.4, 3, 5, 10, 15, 20
2 (MIMO)
2 x 40
1.4, 3, 5, 10, 15, 20
Table 6-172 Output power for the MRFUd (LTE FDD, 2100 MHz) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 60
5, 10, 15, 20
2 (MIMO)
2 x 40
1.4, 3, 5, 10, 15, 20
Table 6-173 Output power for the MRFUd (GU non-MSR, 900 MHz/1800 MHz)
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
1
80
80
2
1
40
80
3
1
27
80
4
1
20
80
5
1
16
80
6
1
12
80
1
2
80
40
2
2
40
40
3
2
27
40
4
2
20
40
5
2
16
40
6
2
12
40
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
1
3
80
25
2
3
40
25
3
3
27
25
4
3
20
25
5
3
16
25
1
4
80
20
2
4
40
20
3
4
27
20
4
4
20
20
NOTE
l
(b) indicates that the configuration is supported from SRAN7.0 and supported only at the 900 MHz frequency band.
l
(c) indicates that the configuration is supported from SRAN8.0.
Table 6-174 Output power for the MRFUd (GU MSR, 900 MHz/1800 MHz)
Issue 14 (2016-01-30)
Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1(b)
1(b)
30(b)
50(b)
2(b)
1(b)
30(b)
50(b)
2
1
40
40
3
1
40
40
4
1
27
40
5
1
27
20
5
1
25
30
5
1
20
40
6
1
20
40
7
1
20
20
7
1
16
30
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Mode
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Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
1(b)
2(b)
30(b)
50(b)
1
2
40
40
2(b)
2(b)
30(b)
50(b)
2
2
40
40
3
2
30
20
3
2
25
30
3
2
20
40
4
2
30
20
4
2
25
30
4
2
20
40
5
2
20
20
5(c)
2(c)
20(c)
30(c)
6
2
20
20
1
1 (MIMO)
40
2 x 40
1(b)
1 (MIMO)(b)
30(b)
2 x 50(b)
2
1 (MIMO)
40
2 x 40
2(b)
1 (MIMO)(b)
30(b)
2 x 50(b)
3
1 (MIMO)
20
2 x 40
3
1 (MIMO)
25
2 x 30
4
1 (MIMO)
20
2 x 40
4
1 (MIMO)
25
2 x 30
4
1 (MIMO)
30
2 x 20
1
2 (MIMO)
20
2 x 30
1
2 (MIMO)
40
2 x 20
2
2 (MIMO)
20
2 x 30
2
2 (MIMO)
40
2 x 20
3
2 (MIMO)
15
2 x 20
4
2 (MIMO)
15
2 x 20
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NOTE
l (d) indicates that the configuration is supported from SRAN7.0 and supported only at the 1800 MHz frequency band. l (e) indicates that the configuration applies to SRAN8.0 and later versions, and the configuration is supported only when the base stations works at a temperature 5°C lower than the standard temperature. l (f) indicates that the configuration is supported in SRAN9.0 and supported only at the 1800 MHz frequency band.
Table 6-175 Output power for the MRFUd (GL MSR, 900 MHz/1800 MHz)
Issue 14 (2016-01-30)
Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidt h of LTE FDD Carrier (MHz)
GSM + LTE FDD
1
1 (MIMO)
40
2 x 40
1.4, 3, 5, 10, 15, 20
1(d)
1 (MIMO) (d)
30(d)
2 x 50(d)
1.4, 3, 5, 10, 15, 20(d)
2
1 (MIMO)
40
2 x 40
1.4, 3, 5, 10, 15, 20
2(d)
1 (MIMO) (d)
30(d)
2 x 50(d)
1.4, 3, 5, 10, 15, 20(d)
3
1 (MIMO)
30
2 x 20
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
25
2 x 30
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
20
2 x 40
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
20
2 x 40
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
25
2 x 30
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
30
2 x 20
1.4, 3, 5, 10, 15, 20
5
1 (MIMO)
16
2 x 30
1.4, 3, 5, 10, 15, 20
5
1 (MIMO)
20
2 x 20
1.4, 3, 5, 10, 15, 20
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Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidt h of LTE FDD Carrier (MHz)
6
1 (MIMO)
15
2 x 20
1.4, 3, 5, 10, 15, 20
6(d)
1 (MIMO) (d)
16(d)
2 x 30(d)
1.4, 3, 5, 10, 15, 20(d)
2(e)
2 (MIMO) (e)
20(e)
l Carrier 1: 2 x 20(e) l Carrier 2: 2 x 40(e)
4(f)
2 (MIMO)(f)
20(f)
l Carrier 1: 2 x 20(f) l Carrier 2: 2 x 10(f)
l Carrier 1: 10(e) l Carrier 2: 20(e)
l Carrier 1: 10(f) l Carrier 2: 5(f)
NOTE
(g) indicates that the configuration is supported only at the 900 MHz frequency band.
Table 6-176 Output power for the MRFUd (UL MSR, 900 MHz/2100 MHz)
Issue 14 (2016-01-30)
Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidt h of LTE FDD Carrier (MHz)
UMTS + LTE FDD
1
1 (MIMO)
40
2 x 40
5, 10
2
1 (MIMO)
40
2 x 40
5, 10
3
1 (MIMO)
20
2 x 40
5, 10
3(g)
1 (MIMO) (g)
30(g)
2 x 20(g)
5, 10(g)
4
1 (MIMO)
20
2 x 40
5, 10
4(g)
1 (MIMO) (g)
30(g)
2 x 20(g)
5, 10(g)
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Table 6-177 Output power for the MRFUd V6 (GSM, 1800 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
80
80
2
80
80
3
40
40
4
40
40
5
27
30
6
27
30
7
20
27
8
20
27
Table 6-178 Output power for the MRFUdw V6 (GSM, 1800 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
60
60
2
60
60
3
30
30
4
30
30
5
20
25
6
20
25
7
15
20
8
15
20
Table 6-179 Output power for the MRFUd V6/MRFUdw V6 (LTE FDD, 1800 MHz)
Issue 14 (2016-01-30)
Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2x80
5, 10, 15, 20
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Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
1 (MIMO)
2x40
1.4, 3
2 (MIMO)
2x40
1.4, 3, 5, 10, 15, 20
Table 6-180 Output power for the MRFUd V6/MRFUdw V6 (GL MSR, 1800 MHz)
Issue 14 (2016-01-30)
Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidt h of LTE FDD Carrier (MHz)
GSM + LTE FDD
1
1 (MIMO)
40
2x40
1.4, 3, 5, 10, 15, 20
1
1 (MIMO)
30
2x50
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
40
2x40
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
30
2x50
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
30
2x20
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
25
2x30
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
20
2x40
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
20
2x40
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
25
2x30
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
30
2x20
1.4, 3, 5, 10, 15, 20
5
1 (MIMO)
16
2x30
1.4, 3, 5, 10, 15, 20
5
1 (MIMO)
20
2x20
1.4, 3, 5, 10, 15, 20
6
1 (MIMO)
20
2x20
1.4, 3, 5, 10, 15, 20
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Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidt h of LTE FDD Carrier (MHz)
6
1 (MIMO)
16
2x30
1.4, 3, 5, 10, 15, 20
Engineering Specifications The following table lists the equipment specifications of an MRFUd/MRFUd V6/MRFUdw V6. Table 6-181 Equipment specifications of an MRFUd/MRFUd V6/MRFUdw V6 Type
Dimension (H x W x D)
Weight (kg)
MRFUd
9 U x 14 HP x 308.5 mm (with the panel)
12
Table 6-182 lists the surge protection specifications of ports on an MRFUd/MRFUd V6/ MRFUdw V6. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-182 Surge protection specifications of ports on an MRFUd/MRFUd V6/MRFUdw V6 Port
Usage Scenario
Surge Protection Mode
Specification
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Surge current
RF port
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Applicable to all scenarios
Surge current
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Usage Scenario
Surge Protection Mode
Specification
Common mode Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
Alarm port
Applicable to all scenarios
Surge current
40 kA 250 A
Differential mode
3 kA
Common mode
5 kA
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an MRFUd/MRFUd V6/ MRFUdw V6. Table 6-183 Specifications of CPRI ports on an MRFUd/MRFUd V6/MRFUdw V6 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
MRFUd
2
1.25, 2.5, or 4.9
Star, chain, or dual-star
CPRI MUX: l GU: 6 l GL: 4 l UL: 4
MRFUd V6/ MRFUdw V6
2
1.25, 2.5, or 4.9
Star, chain, or dual-star
GL CPRI MUX: 4
Antenna Capability The following table provides the antenna capability of an MRFUd/MRFUd V6/MRFUdw V6. Table 6-184 Antenna capability of an MRFUd/MRFUd V6/MRFUdw V6 Type
TMA Support
Supported RET Antennas
MRFUd/MRFUd V6/ MRFUdw V6
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
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6.2.14 MRFUe Technical Specifications Using the software-defined radio (SDR) technology, Multi-Mode Radio Frequency Unit Type E (MRFUe) modules can work in different modes with different configurations.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an MRFUe. Table 6-185 Modes and frequency bands supported by an MRFUe Type
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
Mode
MRFUe
900 EGSM
880 to 915
925 to 960
1800
1710 to 1785
1805 to 1880
GSM, UMTS, LTE FDD, GU, and GL
RF Specifications Table 6-186 lists radio frequency (RF) specifications of an MRFUe. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l EF MSR indicates that E and F data is carried on the same transmit channel of an RF module. l The GSM receiver sensitivity is measured, as recommended in 3GPP TS 51.021, over the central band at the antenna connector on condition that the channel rate reaches 13 kbit/s and the bit error rate (BER) does not exceed 2%. The central band is the 80% of the full band. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l The MRFUe that works in GSM mode and operates in the 900 or 1800 MHz frequency band complies with the EN 301 502 V9.2.1 standard. l The MRFUe that works in UMTS, LTE FDD, or multiple service ring (MSR) mode and operates in the 900 or 1800 MHz frequency band complies with the ETSI EN 301 908 V5.2.1 and 3GPP TS 37.104 standards.
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Table 6-186 RF specifications of an MRFUe Ty pe
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitivi ty with Two Antenna s
Receiver Sensitivi ty with Four Antenna s
MR FU e
1T 2R
GSM: 8 TRXs
GSM:
GSM:
GSM:
l 900 MHz: -113.7
l 900 MHz: -116.5
l 1800 MHz: -114.0
l 1800 MHz: -116.8
l 900 MHz: -119.2 (theore tical value)
UMTS:
UMTS:
l 900 MHz: -125. 8
l 900 MHz: -128.6
UMTS: 4 carriers LTE FDD: 2 carriers. The bandwidt h per carrier is 1.4, 3, 5, 10, 15, or 20 MHz.
l 1800 MHz: -126. 1
LTE FDD:
LTE FDD:
l 900 MHz: -109.1
l 900 MHz: -106. 3
l 1800 MHz: -109.4
l 1800 MHz: -106. 6
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l 1800 MHz: -128.9
l 1800 MHz: -119.5 (theore tical value) UMTS: l 900 MHz: -131.3 l 1800 MHz: -131.6 LTE FDD: l 900 MHz: -111.8 l 1800 MHz: -112.1
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Output Power
Power Consump tion
The MRFUe supports the maximum power configuration 1 x 125 W. The typical configuration s are as follows:
See the MRFUe sheet in 3900 Series Base Station Power Consumpti on Specificati ons.
l Output power for the MRFUe (GSM, 900 MHz/ 1800 MHz) l Output power for the MRFUe (UMTS, 900 MHz/ 1800 MHz) l Output power for the MRFUe (LTE FDD, 900 MHz/
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Ty pe
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Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitivi ty with Two Antenna s
Receiver Sensitivi ty with Four Antenna s
Output Power
Power Consump tion
1800 MHz) l Output power for the MRFUe (GU MSR, 1800 MHz) l Output power for the MRFUe (GL MSR, 1800 MHz)
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NOTE
l If the power sharing feature is activated, assume that UEs in a cell are randomly located. l If the RF module is placed at an altitude of 3500 to 4500 meters, its power reduces by 1 dB. If the RF module is placed at an altitude of 4500 to 6000 meters, its power reduces by 2 dB. l Station spacing, frequency multiplexing factor, power control algorithm, and traffic model all affect the gains of dynamic power sharing. In most cases, network plans are designed on the basis of power specifications of dynamic power sharing. l Before activating the dynamic power sharing feature, enable the DTX and power control functions. In GBSS8.1, the dynamic power sharing feature is mutually exclusive with the GBFD-113201 Concentric Cell, GBFD-114501 Co-BCCH Cell, GBFD-118001 BCCH Dense Frequency Multiplexing, and GBFD-117501 Enhanced Measurement Report (EMR) features. In GBSS9.0 and later versions, the dynamic power sharing feature can be used together with these features. However, the dynamic power sharing feature currently cannot be used together with the GBFD-117002 IBCA (Interference Based Channel Allocation), GBFD-117001 Flex MAIO, GBFD-118701 RAN Sharing, and GBFD-114001 Extended Cell features in GBSS8.1, GBSS9.0, and later versions. l For the MRFUe working in GSM mode: when the S1 configuration is applied, the maximum output power of each carrier on the MRFUe is 125 W; when the S2 configuration is applied, the maximum output power of each carrier on the MRFUe is 60 W. If the output power of 60 W, 80 W, or 125 W is required, the related license must be obtained. l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-187 Output power for the MRFUe (GSM, 900 MHz/1800 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
80 (SRAN6.0)
80
1
125 (SRAN7.0, 900 MHz)
125
2
60
60
3
40
50
4
30
40
5
25
30
6
20
30
7
15
20
8
10
16
Table 6-188 Output power for the MRFUe (UMTS, 900 MHz/1800 MHz)
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
80
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
2
60
3
40
4
30
Table 6-189 Output power for the MRFUe (LTE FDD, 900 MHz/1800 MHz) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1
60
5, 10, 15, 20
1
40
1.4, 3, 5, 10, 15, 20
2
60
5, 10, 15, 20
2
40
1.4, 3, 5, 10, 15, 20
NOTE
(a) indicates that the configuration is supported from SRAN8.0.
Table 6-190 Output power for the MRFUe (GU MSR, 900 MHz/1800 MHz)
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
2
1
40
40
3
1
25
30
4
1
24
20
4
1
20
30
5
1
18
20
5
1
16
30
6
1
13
20
6(a)
1(a)
15(a)
20(a)
7
1
10
20
1
2
40
40
2
2
20
30
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
3
2
20
20
3
2
15
30
4
2
18
20
5
2
12
20
5(a)
2(a)
15(a)
20(a)
NOTE
In SRAN6.0, when an MRFUe works in GL mode and is configured with two LTE FDD carriers, each carrier can use 1.4 MHz, 3 MHz, 5 MHz, or 10 MHz bandwidth. In SRAN7.0, when an MRFUe works in GL mode and is configured with two LTE FDD carriers, only one carrier can use 15 MHz or larger bandwidth.
Table 6-191 Output power for the MRFUe (GL MSR, 900 MHz/1800 MHz)
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Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
GSM + LTE FDD
1
1
60
60
5, 10, 15, 20
1
1
60
40
1.4, 3, 5, 10, 15, 20
2
1
40
40
1.4, 3, 5, 10, 15, 20
3
1
25
30
1.4, 3, 5, 10, 15, 20
3
1
20
40
1.4, 3, 5, 10, 15, 20
4
1
24
20
1.4, 3, 5, 10, 15, 20
4
1
20
30
1.4, 3, 5, 10, 15, 20
5
1
20
20
1.4, 3, 5, 10, 15, 20
5
1
16
30
1.4, 3, 5, 10, 15, 20
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Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
6
1
13
20
1.4, 3, 5, 10, 15, 20
7
1
10
20
1.4, 3, 5, 10, 15, 20
3
2
20
20
1.4, 3, 5, 10, 15, 20
4
2
18
20
1.4, 3, 5, 10, 15, 20
5
2
12
20
1.4, 3, 5, 10, 15, 20
Engineering Specifications The following table lists the equipment specifications of an MRFUe. Table 6-192 Equipment specifications of an MRFUe Type
Dimension (H x W x D)
Weight (kg)
MRFUe
9 U x 14 HP x 308.5 mm (with the panel)
12
Table 6-193 lists the surge protection specifications of ports on an MRFUe. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-193 Surge protection specifications of ports on an MRFUe
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Port
Usage Scenario
Surge Protection Mode
Specification
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
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Port
RF port
6 Product Specifications
Usage Scenario
Surge Protection Mode
Specification
Surge current
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Applicable to all scenarios
Surge current
Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
Alarm port
Applicable to all scenarios
Surge current
250 A
Differential mode
3 kA
Common mode
5 kA
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an MRFUe. Table 6-194 Specifications of CPRI ports on an MRFUe Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
MRFUe
2
1.25, 2.5, or 4.9
Star, chain, or dual-star
CPRI MUX: l GU: 6 l GL: 4
Antenna Capability The following table provides the antenna capability of an MRFUe. Table 6-195 Antenna capability of an MRFUe
Issue 14 (2016-01-30)
Type
TMA Support
Supported RET Antennas
MRFUe
Supported
AISG2.0 and AISG1.1
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NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3 Technical Specifications of RRUs This section provides technical specifications of RRUs, including supported modes, frequency bands, RF specifications, engineering specifications, specifications of CPRI ports, and antenna capabilities.
6.3.1 RRU3004 Technical Specifications The RRU3004 is a double-transceiver Remote Radio Unit, which supports a maximum of two carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3004. Table 6-196 Modes and frequency bands supported by an RRU3004 Type
Mode
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
RRU3004
GSM
900 EGSM
880 to 915
925 to 960
900 PGSM
890 to 915
935 to 960
1800
1710 to 1785
1805 to 1880
RF Specifications Table 6-197 lists RF specifications of an RRU3004. NOTE
ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels.
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Table 6-197 RF specifications of an RRU3004 Type
RRU30 04
RX and TX Chann els
Capaci ty
2T2R
2 TRXs
Receiver Sensitivity (dBm) Receiver Sensitivity with One Antenna
Receiver Sensitivity with Two Antennas
-113.0
-115.8
Output Power
Power Consum ption
l 900 MHz: The RRU3004 supports the maximum power configuratio n 2 x 30 W.
See the RRU300 4 sheet in 3900 Series Base Station Power Consump tion Specifica tions.
l 1800 MHz: The RRU3004 supports the maximum power configuratio n 2 x 20 W. The typical configurations are as follows: l Output power for the RRU3004 (GSM (GBTS), 900 MHz) l Output power for the RRU3004 (GSM (GBTS), 1800 MHz) For typical PA configurations, see Typical Power Configuration for RRU3004 in 3900 Series Base Station Initial Issue 14 (2016-01-30)
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Type
6 Product Specifications
RX and TX Chann els
Capaci ty
Receiver Sensitivity (dBm) Receiver Sensitivity with One Antenna
Output Power
Receiver Sensitivity with Two Antennas
Power Consum ption
Configuration Guide.
NOTE
l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance. l Two RRU3004 modules are required when three or four carriers are configured.
Table 6-198 Output power for the RRU3004 (GSM (GBTS), 900 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
GSM
1
30 (GMSK)/20 (8PSK)
1 (PBT)
40 (GMSK)/26 (8PSK)
2
30 (GMSK)/20 (8PSK)
3
15 (GMSK)/10 (8PSK)
4
15 (GMSK)/10 (8PSK)
Table 6-199 Output power for the RRU3004 (GSM (GBTS), 1800 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
GSM
1
20 (GMSK)/13 (8PSK)
1 (PBT)
30 (GMSK)/20 (8PSK)
2
20 (GMSK)/13 (8PSK)
3
10 (GMSK)/6.6 (8PSK)
4
10 (GMSK)/6.6 (8PSK)
Engineering Specifications The following table lists equipment specifications of an RRU3004. Issue 14 (2016-01-30)
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Table 6-200 Equipment specifications of an RRU3004 Type
Input Power Specifications
Dimensions (H x W x D)
Weight (kg)
RRU3004
-48 V DC, voltage range: -57 V DC to -36 V DC
l 485 mm x 380 mm x 130 mm (with the housing)
l 17 (with the housing) l 15 (without the housing)
l 480 mm x 356 mm x 100 mm (without the housing)
The following table lists environmental specifications of an RRU3004. Table 6-201 Environmental specifications of an RRU3004 Type
Operating Temperatu re
Relative Humidity
Absolute Humidity
Atmospher ic Pressure
Storage Time
RRU3004
l Without solar radiation: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommende d that the device be installed and used within one year after its delivery because of the failure rate.
l With solar radiation: -40°C to +45°C
The following table lists compliance standards of an RRU3004. Table 6-202 Compliance standards of an RRU3004 Type
Operating Environment
Anti-Seismic Performance
Protection Rating
RRU3004
l 3GPP TS 45.005
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations" Issue 14 (2016-01-30)
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Table 6-203 lists the surge protection specifications of ports on an RRU3004. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-203 Surge protection specifications of ports on an RRU3004 Port
Usage Scenario
Surge Protection Mode
Specifications
DC power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
5 kA
Common mode
5 kA
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
40 kA
Common mode
40 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
AC power supply port
Applicable to scenarios where GRFUs are installed indoors
Applicable to scenarios where GRFUs are installed outdoors
RF port
Issue 14 (2016-01-30)
Applicable to all scenarios
Surge
Surge current
Surge
Surge current
Surge current
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Port
Usage Scenario
Surge Protection Mode
Specifications
Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
250 A
RET port
Applicable to all scenarios
Surge current
Dry contact or RS485 alarm port
Applicable to all scenarios
Surge current
Port on a local power monitoring device and an alarm port
Applicable to the scenario where batteries under monitoring and RRUs are installed back to back or the scenario where the distance between them is within 1 m.
Surge
Differential mode
3 kA
Common mode
5 kA
Differential mode
250 A
Common mode
250 A 250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3004. Table 6-204 Specifications of CPRI ports on an RRU3004
Issue 14 (2016-01-30)
Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3004
2
1.25
Star, chain, or ring
6
40
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Antenna Capability The following table lists antenna capability of an RRU3004. Table 6-205 Antenna capability of an RRU3004 Type
TMA Support
RET Antenna Support
RRU3004
Not supported
AISG1.1
NOTE
l
An external bridge tap (BT) is required if an RRU3004 needs to be configured with a towermounted amplifier (TMA).
l
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.2 RRU3008 Technical Specifications The RRU3008 is a multi-carrier Remote Radio Unit (RRU) applicable to the GSM network, which supports a maximum of eight carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3008. Table 6-206 Modes and frequency bands supported by an RRU3008 Type
Mode
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
RRU3008 V1
GSM
850
824 to 849
869 to 894
900 EGSM
880 to 915
925 to 960
880 to 905
925 to 950
900 PGSM
890 to 915
935 to 960
900 CMCC
885 to 910
930 to 955
1800
1710 to 1755
1805 to 1850
1740 to 1785
1835 to 1880
1850 to 1890
1930 to 1970
1870 to 1910
1950 to 1990
900 EGSM
880 to 915
925 to 960
900 PGSM
890 to 915
935 to 960
900 CMCC
885 to 910
930 to 955
1900
RRU3008 V2
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GSM
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RF Specifications Table 6-207 lists RF specifications of an RRU3008. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W.
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Table 6-207 RF specifications of an RRU3008 Type
RRU30 08 V1
RX and TX Chann els
Capaci ty
2T2R
8 TRXs
Receiver Sensitivity (dBm) Receiver Sensitivity with One Antenna
Receiver Sensitivity with Two Antennas
-113.0
-115.8
Output Power
Power Consum ption
The RRU3008 V1 supports the maximum power configuration 2 x 40 W. The typical configurations are as follows:
See the RRU300 8 sheet in 3900 Series Base Station Power Consump tion Specifica tions.
l Output power for the RRU3008 V1 (GSM (GBTS), 900 MHz/850 MHz/1800 MHz/1900 MHz) l Output power for the RRU3008 V1 (GSM (eGBTS), 900 MHz/850 MHz/1800 MHz/1900 MHz) For typical PA configurations, see Typical Power Configuration for RRU3008 V1 in 3900 Series Base Station Initial Configuration Guide.
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Type
RRU30 08 V2
6 Product Specifications
RX and TX Chann els
Capaci ty
2T2R
8 TRXs
Receiver Sensitivity (dBm) Receiver Sensitivity with One Antenna
Receiver Sensitivity with Two Antennas
l 900 MHz EGSM: -113.3
l 900 MHz EGSM: -116.1
l 900 MHz PGSM/9 00 MHz CMCC: -113.5
l 900 MHz PGSM/9 00 MHz CMCC: -116.3
Output Power
Power Consum ption
The RRU3008 V2 supports the maximum power configuration 2 x 40 W. The typical configurations are as follows: l Output power for the RRU3008 V2 (GSM (GBTS), 900 MHz) l Output power for the RRU3008 V2 (GSM (eGBTS), 900 MHz) For typical PA configurations, see Typical Power Configuration for RRU3008 V2 in 3900 Series Base Station Initial Configuration Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
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Table 6-208 Output power for the RRU3008 V1 (GSM (GBTS), 900 MHz/850 MHz/1800 MHz/1900 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
40 (GMSK)/26 (8PSK)
40 (GMSK)/26 (8PSK)
2
40 (GMSK)/26 (8PSK)
40 (GMSK)/26 (8PSK)
3
20 (GMSK)/13 (8PSK)
20 (GMSK)/13 (8PSK)
4
15 (GMSK)/10 (8PSK)
20 (GMSK)/13 (8PSK)
5
12 (GMSK)/8 (8PSK)
12 (GMSK)/8 (8PSK)
6
10 (GMSK)/6.6 (8PSK)
12 (GMSK)/8 (8PSK)
7
7 (GMSK)/4.6 (8PSK)
8 (GMSK)/5.3 (8PSK)
8
5.5 (GMSK)/3.6 (8PSK)
7 (GMSK)/4.6 (8PSK)
Table 6-209 Output power for the RRU3008 V1 (GSM (eGBTS), 900 MHz/850 MHz/1800 MHz/1900 MHz)
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Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (dBm)
Output Power per GSM Carrier With Dynamic Power Sharing (dBm)
GSM
1
46.0 (GMSK)/44.1 (8PSK)
46.0 (GMSK)/44.1 (8PSK)
2
46.0 (GMSK)/44.1 (8PSK)
46.0 (GMSK)/44.1 (8PSK)
3
43.0 (GMSK)/41.1 (8PSK)
43.0 (GMSK)/41.1 (8PSK)
4
41.8 (GMSK)/40.0 (8PSK)
43.0 (GMSK)/41.1 (8PSK)
5
40.8 (GMSK)/39.0 (8PSK)
40.8 (GMSK)/39.0 (8PSK)
6
40.0 (GMSK)/38.2 (8PSK)
40.8 (GMSK)/39.0 (8PSK)
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Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (dBm)
Output Power per GSM Carrier With Dynamic Power Sharing (dBm)
7
38.5 (GMSK)/36.6 (8PSK)
39.0 (GMSK)/37.2 (8PSK)
8
37.4 (GMSK)/35.6 (8PSK)
38.5 (GMSK)/36.6 (8PSK)
NOTE
RRU3008 V2 (GSM, 900MHz): l
After design optimization, the 8 phase shift keying (8PSK) and Gaussian minimum shift-frequency keying (GMSK) modulation schemes enable the same output power for each carrier on the RRU3008 V2 when any of the S1 through S6 configurations is used.
l
When the S7 or S8 configurations is used, the license controlling the GBFD-118104 Enhanced EDGE Coverage feature must be obtained. Otherwise, the 8PSK and GMSK modulation schemes cannot enable the same output power for each carrier on the RRU3008 V2.
l
RF standard: EN 301 502 V9.2.1.
Table 6-210 Output power for the RRU3008 V2 (GSM (GBTS), 900 MHz)
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Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
40 (GMSK)/40 (8PSK)
40 (GMSK)/40 (8PSK)
2
40 (GMSK)/40 (8PSK)
40 (GMSK)/40 (8PSK)
3
20 (GMSK)/20 (8PSK)
20 (GMSK)/20 (8PSK)
4
20 (GMSK)/20 (8PSK)
20 (GMSK)/20 (8PSK)
5
13 (GMSK)/13 (8PSK)
15 (GMSK)/15 (8PSK)
6
13 (GMSK)/13 (8PSK)
15 (GMSK)/15 (8PSK)
7
10 (GMSK)/10 (8PSK)
13 (GMSK)/13 (8PSK)
8
10 (GMSK)/10 (8PSK)
13 (GMSK)/13 (8PSK)
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Table 6-211 Output power for the RRU3008 V2 (GSM (eGBTS), 900 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (dBm)
Output Power per GSM Carrier With Dynamic Power Sharing (dBm)
GSM
1
46.0 (GMSK)/46.0 (8PSK)
46.0 (GMSK)/46.0 (8PSK)
2
46.0 (GMSK)/46.0 (8PSK)
46.0 (GMSK)/46.0 (8PSK)
3
43.0 (GMSK)/43.0 (8PSK)
43.0 (GMSK)/43.0 (8PSK)
4
43.0 (GMSK)/43.0 (8PSK)
43.0 (GMSK)/43.0 (8PSK)
5
41.1 (GMSK)/41.1 (8PSK)
41.8 (GMSK)/41.8 (8PSK)
6
41.1 (GMSK)/41.1 (8PSK)
41.8 (GMSK)/41.8 (8PSK)
7
40.0 (GMSK)/40.0 (8PSK)
41.1 (GMSK)/41.1 (8PSK)
8
40.0 (GMSK)/40.0 (8PSK)
41.1 (GMSK)/41.1 (8PSK)
Engineering Specifications Table 6-212 lists equipment specifications of an RRU3008. Table 6-212 Equipment specifications Type
Input Power Specifications
Dimensions (H x W x D)
Weight (kg)
RRU3008
-48 V DC, voltage range: -57 V DC to -36 V DC
l 485 mm x 380 mm x 170 mm (with the housing)
l 25 (with the housing) l 23 (without the housing)
l 480 mm x 356 mm x 140 mm (without the housing)
The following table lists environmental specifications of an RRU3008.
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Table 6-213 Environmental specifications of an RRU3008 Type
Operating Temperatu re
Relative Humidity
Absolute Humidity
Atmospher ic Pressure
Storage Time
RRU3008 V1
l Without solar radiation: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommende d that the device be installed and used within one year after its delivery because of the failure rate.
l With solar radiation: -40°C to +45°C RRU3008 V2
l Without solar radiation: -40°C to +55°C l With solar radiation: -40°C to +50°C
The following table lists compliance standards of an RRU3008. Table 6-214 Compliance standards of an RRU3008 Type
Operating Environment
Anti-Seismic Performance
Protection Rating
RRU3008
l 3GPP TS 45.005
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-215 and Table 6-216 list the surge protection specifications of ports on an RRU3008. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
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Table 6-215 Surge protection specifications of ports on an RRU3008 V1 Port
Usage Scenario
Surge Protection Mode
Specifications
DC power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
5 kA
Common mode
5 kA
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
40 kA
Common mode
40 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
AC power supply port
Surge
Surge current
Applicable to the scenario where RRU3008 V2 modules are configured remotely or placed outdoors
Surge
Applicable to all scenarios
Surge current
Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
RET port
Applicable to all scenarios
Surge current
RF port
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Applicable to scenarios where GRFUs are installed indoors
Surge current
250 A
Differential mode
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3 kA
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Port
6 Product Specifications
Usage Scenario
Surge Protection Mode
Dry contact or RS485 alarm port
Applicable to all scenarios
Surge current
Port on a local power monitoring device and an alarm port
Applicable to the scenario where batteries under monitoring and RRUs are installed back to back or the scenario where the distance between them is within 1 m.
Surge
Specifications
Common mode
5 kA
Differential mode
250 A
Common mode
250 A 250 A
Table 6-216 Surge protection specifications of ports on an RRU3008 V2 Port
Usage Scenario
Surge Protection Mode
Specifications
DC power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Surge current
AC power supply port
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Applicable to scenarios where GRFUs are
Surge
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Port
6 Product Specifications
Usage Scenario
Surge Protection Mode
Specifications
installed indoors
Surge current
Differential mode
5 kA
Common mode
5 kA
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
40 kA
Common mode
40 kA
Differential mode
8 kA
Common mode
40 kA
Applicable to scenarios where GRFUs are installed outdoors
RF port
Surge current
Applicable to all scenarios
Surge current
Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
RET port
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Dry contact or RS485 alarm port
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Surge
250 A
Differential mode
3 kA
Common mode
5 kA
Differential mode
3 kA
Common mode
5 kA
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Port
Usage Scenario
Surge Protection Mode
Specifications
Port on a local power monitoring device and an alarm port
Applicable to the scenario where batteries under monitoring and RRUs are installed back to back or the scenario where the distance between them is within 1 m.
Surge
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3008. Table 6-217 Specifications of CPRI ports on an RRU3008 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3008 V1
2
l 850 MHz/ 1900 MHz: 1.25
Star, chain, or ring
6
40
l 900 MHz: 1.25 l 1800 MHz: 1.25 or 2.5 RRU3008 V2
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2
1.25 or 2.5
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Antenna Capability The following table lists antenna capability of an RRU3008. Table 6-218 Antenna capability of an RRU3008 Type
TMA Support
RET Antenna Support
RRU3008 V1
Supported
AISG2.0 and AISG1.1
RRU3008 V2
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.3 RRU3801E Technical Specifications An RRU3801E, which is a remote radio unit for UMTS, supports a maximum of two carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3801E. Table 6-219 Modes and frequency bands supported by an RRU3801E Type
Mode
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
RRU3801E (DC)
UMTS
2100
1920 to 1980
2110 to 2170
1900
1850 to 1910
1930 to 1990
850
824 to 835
869 to 880
2100
1920 to 1980
2110 to 2170
RRU3801E (AC)
RF Specifications Table 6-220 lists radio frequency (RF) specifications of an RRU3801E.
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NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The receiver sensitivity on the UMTS 850 MHz frequency band is measured on its frequency subbands. l Maximum output power = Maximum output power of the PA - Internal loss. The maximum output power is measured at the antenna port.
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Table 6-220 RRU3801E RF specifications Type
RRU380 1E
RX and TX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensiti vity with Two Antenn as
Receive r Sensiti vity with Four Antenn as
1T2R
2 carriers
l 2100 MHz: -125. 8
l 2100 MHz: --128 .6
l 2100 MHz: -131. 3
l 1900 MHz: -125. 3
l 1900 MHz: -128. 1
l 1900 MHz: -130. 8
l 850 MHz: -125. 6
l 850 MHz: -128. 4
l 850 MHz: -131. 1
Output Power
Power Consu mption
The RRU380 1E supports the maximu m power configur ation 1 x 40 W. For typical configur ations, see the Output power for the RRU380 1E (UMTS, 850 MHz/ 1900 MHz/ 2100 MHz) table.
See the RRU380 1E sheet in 3900 Series Base Station Power Consum ption Specifica tions.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
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Table 6-221 Output power for the RRU3801E (UMTS, 850 MHz/1900 MHz/2100 MHz) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
40
2
20
Engineering Specifications The following table lists the equipment specifications of an RRU3801E. Table 6-222 Equipment specifications of an RRU3801E Type
Input Power
Dimensions (H x W x D)
Weight
RRU3801E (DC)
-48 V DC; voltage range: -57 V DC to -36 V DC
l 480 mm x 270 mm x 140 mm (without the housing)
l 15 kg (without the housing) l 17 kg (with the housing)
l 485 mm x 285 mm x 170 mm (with the housing) RRU3801E (AC)
l 200 V AC to 240 V AC singlephase; voltage range: 176 V AC to 290 V AC l 100/200 V AC to 120/240 V AC dual-phase; voltage range: 90/180 V AC to 135/270 V AC
l 480 mm x 270 mm x 220 mm (without the housing)
l 20.5 kg (without the housing) l 22.5 kg (with the housing)
l 485 mm x 285 mm x 250 mm (with the housing)
The following table lists the environmental specifications of an RRU3801E.
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Table 6-223 Environmental specifications of an RRU3801E Type
Operating Temperatu re
Relative Humidity
Absolute Humidity
Atmospher ic Pressure
Storage Time
RRU3801E
l With 1120 W/m2 solar radiation: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommende d that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiation: -40°C to +55°C
The following table lists the compliance standards for an RRU3801E. Table 6-224 Compliance standards of an RRU3801E Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3801E (DC)
l 3GPP TS 25.141
NEBS GR63 zone4
IP65
RRU3801E (AC)
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
IP55
Table 6-225 lists the surge protection specifications of ports on an RRU3801E. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
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Table 6-225 Surge protection specifications of ports on an RRU3801E Port
Usage Scenario
Surge Protection Mode
Specifications
DC power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 µs)
Common mode
4 kV (1.2/50 µs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
2 kV (1.2/50 µs)
Common mode
4 kV (1.2/50 µs)
Differential mode
5 kA
Common mode
5 kA
Differential mode
2 kV (1.2/50 µs)
Common mode
4 kV (1.2/50 µs)
Differential mode
40 kA
Common mode
40 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
AC power supply port
Indoor applications
Surge
Surge current
Outdoor applications
Surge
Surge current
RF port
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Applicable to all scenarios
Surge current
Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
RET port
Applicable to all scenarios
Surge current
250 A
Differential mode
3 kA
Common mode
5 kA
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Port
Usage Scenario
Surge Protection Mode
Specifications
Dry contact or RS485 alarm port
Applicable to all scenarios
Surge current
Differential mode
3 kA
Common mode
5 kA
Local power monitoring and alarm port
Monitored power and RRUs are installed in back-toback mode or within 1 m.
Surge
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3801E. Table 6-226 Specifications of CPRI ports on an RRU3801E Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3801E
2
1.25 or 2.5
Star, chain, or ring
l When the rate at the CPRI port is 1.25 Gbit/s: 4
40
l When the rate at the CPRI port is 2.5 Gbit/s: 8
Antenna Capability The following table lists the antenna capability of an RRU3801E.
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Table 6-227 Antenna capability of an RRU3801E Type
TMA Support
RET Antenna Support
RRU3801E
Supported
AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.4 RRU3804 Technical Specifications The RRU3804 is a type of radio remote unit. An RRU3804 working in UMTS mode supports a maximum of four UMTS carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3804. Table 6-228 Modes and frequency bands supported by an RRU3804 Type
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
Mode
RRU3804 (DC)
2100
1920 to 1980
2110 to 2170
UMTS
1900
1850 to 1910
1930 to 1990
UMTS
AWS
1710 to 1755
2110 to 2155
UMTS
850
824 to 849
869 to 894
UMTS
835 to 849
880 to 894
UMTS
2100
1920 to 1980
2110 to 2170
UMTS
850
824 to 849
869 to 894
RRU3804 (AC)
RF Specifications Table 6-229 lists radio frequency (RF) specifications of an RRU3804.
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NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The receiver sensitivity on the UMTS 850 MHz frequency band is measured on its frequency subbands. l Maximum output power = Maximum output power of the PA - Internal loss. The maximum output power is measured at the antenna port.
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Table 6-229 RRU3804 RF specifications Type
RRU380 4
RX and TX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensiti vity with Four Antenn as
1T2R
l RRU 3804 (DC): 4 carrie rs
l 2100 MHz or AWS : -125. 8
l 2100 MHz or AWS : -128. 6
l 2100 MHz or AWS : -131. 3
l 1900 MHz : -125. 3
l 1900 MHz: -128. 1
l 1900 MHz: -130. 8
l 850 MHz: -128. 4
l 850 MHz: -131. 1
l RRU 3804 (AC): 4 carrie rs
l 850 MHz : -125. 6
Output Power
Power Consu mption
The RRU380 4 supports the maximu m power configur ation 1 x 60 W. For typical configur ations, see the table Output power for the RRU380 4 (UMTS, 850 MHz/A WS/ 1900 MHz/ 2100 MHz).
See the RRU380 4 sheet in 3900 Series Base Station Power Consum ption Specifica tions.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
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Table 6-230 Output power for the RRU3804 (UMTS, 850 MHz/AWS/1900 MHz/2100 MHz) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
60
2
30
3
20
4
15
Engineering Specifications The following table lists the equipment specifications of an RRU3804. Table 6-231 Equipment specifications of an RRU3804 Type
Input Power
Dimensions (H x W x D)
Weight
RRU3804 (DC)
-48 V DC; voltage range: -57 V DC to -36 V DC
l 480 mm x 270 mm x 140 mm (without the housing)
l 15 kg (without the housing) l 17 kg (with the housing)
l 485 mm x 285 mm x 170 mm (with the housing) RRU3804 (AC)
l 200 V AC to 240 V AC singlephase; voltage range: 176 V AC to 290 V AC l 100/200 V AC to 120/240 V AC dual-phase; voltage range: 90/180 V AC to 135/270 V AC
l 480 mm x 270 mm x 220 mm (without the housing)
l 20.5 kg (without the housing) l 22.5 kg (with the housing)
l 485 mm x 285 mm x 250 mm (with the housing)
The following table lists the environmental specifications of an RRU3804.
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Table 6-232 Environmental specifications of an RRU3804 Type
Operating Temperatu re
Relative Humidity
Absolute Humidity
Atmospher ic Pressure
Storage Time
RRU3804 (DC)
l With 1120 W/m2 solar radiation: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommende d that the device be installed and used within one year after its delivery because of the failure rate.
RRU3804 (AC)
l Without solar radiation: -40°C to +55°C
The following table lists the compliance standards for an RRU3804. Table 6-233 Compliance standards for an RRU3804 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3804 (DC)
l 3GPP TS 25.141
NEBS GR63 zone4
IP65
RRU3804 (AC)
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
IP55
Table 6-234 lists the surge protection specifications of ports on an RRU3804. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
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Table 6-234 Surge protection specifications of ports on an RRU3804 Port
Usage Scenario
Surge Protection Mode
Specifications
DC power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 µs)
Common mode
4 kV (1.2/50 µs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
2 kV (1.2/50 µs)
Common mode
4 kV (1.2/50 µs)
Differential mode
5 kA
Common mode
5 kA
Differential mode
2 kV (1.2/50 µs)
Common mode
4 kV (1.2/50 µs)
Differential mode
40 kA
Common mode
40 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
AC power supply port
Indoor applications
Surge
Surge current
Outdoor applications
Surge
Surge current
RF port
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Applicable to all scenarios
Surge current
Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
RET port
Applicable to all scenarios
Surge current
250 A
Differential mode
3 kA
Common mode
5 kA
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Port
Usage Scenario
Surge Protection Mode
Specifications
Dry contact or RS485 alarm port
Applicable to all scenarios
Surge current
Differential mode
3 kA
Common mode
5 kA
Local power monitoring and alarm port
Monitored power and RRUs are installed in back-toback mode or within 1 m.
Surge
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3804.
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Table 6-235 Specifications of CPRI ports on an RRU3804 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3804
2
RRU3804 modules of different BOM codes support different CPRI data rates:
Star, chain, or ring
l When the rate at the CPRI port is 1.25 Gbit/s: 4
40
l RRU380 4 modules of 0231592 7, 0231611 6, 0231597 0, 0231546 7, 0231620 3, and 0231686 3 support only 1.25 Gbit/s.
l When the rate at the CPRI port is 2.5 Gbit/s: 8
l RRU380 4 modules of other BOM codes support both 1.25 Gbit/s and 2.5 Gbit/s.
Antenna Capability The following table lists the antenna capability of an RRU3804.
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Table 6-236 Antenna capability of an RRU3804 Type
TMA Support
RET Antenna Support
RRU3804
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.5 RRU3805 Technical Specifications The RRU3805 is a type of radio remote unit. An RRU3805 working in UMTS mode supports a maximum of three UMTS carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3805. Table 6-237 Modes and frequency bands supported by an RRU3805 Type
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
Mode
RRU3805
1800
1749.9 to 1764.9
1844.9 to 1859.9
UMTS
1900
1850 to 1890
1930 to 1970
UMTS
1870 to 1910
1950 to 1990
835 to 849
880 to 894
850
UMTS
RF Specifications Table 6-238 lists radio frequency (RF) specifications of an RRU3805. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l Maximum output power = Maximum output power of the PA - Internal loss. The maximum output power is measured at the antenna port.
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Table 6-238 RF Specifications Type
RRU380 5
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensiti vity with Four Antenn as
2T2R
l 1800 MHz: 3 carrie rs
l 1800 MHz : -125. 3
l 1800 MHz: -128. 1
l 1800 MHz: -130. 8
l 1900 MHz: 2 carrie rs
l 850 MHz / 1900 MHz : -125. 2
l 850 MHz/ 1900 MHz: -128. 0
l 850 MHz/ 1900 MHz: -130. 7
l 850 MHz: 2 carrie rs
Output Power
Power Consum ption
The RRU380 5 supports configur ations of singleoutput, multiple -input multiple -output (MIMO) , or the combina tion of the two.
See the RRU380 5 sheet in 3900 Series Base Station Power Consump tion Specifica tions.
l 1800 MHz : supp orts the maxi mum powe r confi gurat ion is 2x 60 W. For typic al confi gurat ions, see
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensiti vity with Four Antenn as
Output Power
Power Consum ption
the table Outp ut powe r for the RRU 3805 (UM TS, 1800 MHz ). l 1900 MHz /850 MHz : supp orts the maxi mum powe r confi gurat ion 2 x 30 W. For typic al confi gurat ions, see the table Outp
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensiti vity with Four Antenn as
Output Power
Power Consum ption
ut powe r for the RRU 3805 (UM TS, 850 MHz /1900 MHz ). For typical PA configur ations, see Typical Power Configur ation for RRU380 5 in 3900 Series Base Station Initial Configur ation Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
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Table 6-239 Output power for the RRU3805 (UMTS, 1800 MHz) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
Configured in one PA: 60
2
Configured in one PA: 30
2
Configured in two PAs: 60
3
Configured in one PA: 20
3
Configured in two PAs: 30 + 60
1 (MIMO)
2 x 60
2 (MIMO)
2 x 30
3 (MIMO)
2 x 20
Table 6-240 Output power for the RRU3805 (UMTS, 850 MHz/1900 MHz) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
Configured in one PA: 40
2
Configured in two PAs: 30
1 (MIMO)
2 x 30
2 (MIMO)
2 x 15
Engineering Specifications The following table lists the equipment specifications of an RRU3805.
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Table 6-241 Equipment specifications of an RRU3805 Type
Input Power
Dimensions (H x W x D)
Weight
RRU3805
l 1800 MHz: -48 V DC; voltage range: -57 V DC to -36 V DC
l 485 mm x 356 mm x 140 mm (without the housing)
l 22 kg (without the housing)
l 1900 MHz or 850 MHz: -48 V DC; voltage range: -57 V DC to -38.4 V DC
l 485 mm x 380 mm x 170 mm (with the housing)
l 24 kg (with the housing)
The following table lists the environmental specifications of an RRU3805. Table 6-242 Environmental specifications of an RRU3805 Type
Operating Temperatu re
Relative Humidity
Absolute Humidity
Atmospher ic Pressure
Storage Time
RRU3805
l With 1120 W/m2 solar radiation: -40°C to +45°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommende d that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiation: -40°C to +50°C
The following table lists the compliance standards for an RRU3805.
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Table 6-243 Compliance standards for an RRU3805 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3805
l 3GPP TS 25.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Surge Protection Specifications Table 6-244 lists the surge protection specifications of ports on an RRU3805. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-244 Surge protection specifications of ports on an RRU3805 Port
Usage Scenario
Surge Protection Mode
Specifications
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 µs)
Common mode
4 kV (1.2/50 µs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
RF port
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Applicable to all scenarios
Surge current
Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
RET port
Applicable to all scenarios
Surge current
250 A
Differential mode
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3 kA
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Port
6 Product Specifications
Usage Scenario
Surge Protection Mode
Dry contact or RS485 alarm port
Applicable to all scenarios
Surge current
Local power monitoring and alarm port
Monitored power and RRUs are installed in back-toback mode or within 1 m.
Surge
Specifications
Common mode
5 kA
Differential mode
3 kA
Common mode
5 kA 250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3805. Table 6-245 Specifications of CPRI ports on an RRU3805 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3805
2
l 850/1900 MHz: 1.25
Star, chain, or ring
l When the rate at the CPRI port is 1.25 Gbit/s: 4
40
l 1800 MHz: 1.25/2.5
l When the rate at the CPRI port is 2.5 Gbit/s: 8
Antenna Capability The following table lists the antenna capability of an RRU3805.
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Table 6-246 Antenna capability of an RRU3805 Type
TMA Support
RET Antenna Support
RRU3805
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.6 RRU3806 Technical Specifications An RRU3806, which is a remote radio unit for UMTS, supports a maximum of four carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3806. Table 6-247 Modes and frequency bands supported by an RRU3806 Type
Mode
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
RRU3806
UMTS
2100
1920 to 1980
2110 to 2170
RF Specifications Table 6-248 lists radio frequency (RF) specifications of an RRU3806. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l Maximum output power = Maximum output power of the PA - Internal loss. The maximum output power is measured at the antenna port.
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Table 6-248 RRU3806 RF specifications Type
RRU380 6
RX and TX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensiti vity with Four Antenn as
1T2R
4 carriers
-125.8
-128.6
-131.3
Output Power
Power Consu mption
The RRU380 6 supports the maximu m power configur ation 1 x 80 W. For typical configur ations, see the Output power for the RRU380 6 (UMTS, 2100 MHz) table.
See the RRU380 6 sheet in 3900 Series Base Station Power Consum ption Specifica tions.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-249 Output power for the RRU3806 (UMTS, 2100 MHz)
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
80
2
40
3
26
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
4
20
Engineering Specifications The following table lists the equipment specifications of an RRU3806. Table 6-250 Equipment specifications of an RRU3806 Type
Input Power
Dimensions (H x W x D)
Weight
RRU3806 (DC)
-48 V DC; voltage range: -57 V DC to -36 V DC
l 480 mm x 270 mm x 140 mm (without the housing)
l 15 kg (without the housing) l 17 kg (with the housing)
l 485 mm x 285 mm x 170 mm (with the housing) RRU3806 (AC)
l 200 V AC to 240 V AC singlephase; voltage range: 176 V AC to 290 V AC l 100/200 V AC to 120/240 V AC dual-phase; voltage range: 90/180 V AC to 135/270 V AC
l 480 mm x 270 mm x 220 mm (without the housing)
l 20.5 kg (without the housing) l 22.5 kg (with the housing)
l 485 mm x 285 mm x 250 mm (with the housing)
The following table lists the environmental specifications of an RRU3806. Table 6-251 Environmental specifications of an RRU3806
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Type
Operating Temperatu re
Relative Humidity
Absolute Humidity
Atmospher ic Pressure
Storage Time
RRU3806 (DC)
l With 1120 W/m2 solar radiation:
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommende d that the device be installed and
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Type
Operating Temperatu re
RRU3806 (AC)
-40°C to +50°C l Without solar radiation: -40°C to +55°C
Relative Humidity
Absolute Humidity
Atmospher ic Pressure
Storage Time used within one year after its delivery because of the failure rate.
The following table lists the compliance standards for an RRU3806. Table 6-252 Compliance standards for an RRU3806 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3806 (DC)
l 3GPP TS 25.141
NEBS GR63 zone4
IP65
RRU3806 (AC)
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
IP55
Table 6-253 lists the surge protection specifications of ports on an RRU3806. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-253 Surge protection specifications of ports on an RRU3806 Port
Usage Scenario
Surge Protection Mode
Specifications
DC power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 µs)
Common mode
4 kV (1.2/50 µs)
Differential mode
10 kA
Surge current
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Port
AC power supply port
6 Product Specifications
Usage Scenario
Indoor applications
Surge Protection Mode
Surge
Surge current
Outdoor applications
Surge
Surge current
RF port
Applicable to all scenarios
Surge current
Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
RET port
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Dry contact or RS485 alarm port
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Specifications
Common mode
20 kA
Differential mode
2 kV (1.2/50 µs)
Common mode
4 kV (1.2/50 µs)
Differential mode
5 kA
Common mode
5 kA
Differential mode
2 kV (1.2/50 µs)
Common mode
4 kV (1.2/50 µs)
Differential mode
40 kA
Common mode
40 kA
Differential mode
8 kA
Common mode
40 kA 250 A
Differential mode
3 kA
Common mode
5 kA
Differential mode
3 kA
Common mode
5 kA
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Port
Usage Scenario
Surge Protection Mode
Specifications
Local power monitoring and alarm port
Monitored power and RRUs are installed in back-toback mode or within 1 m.
Surge
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3806. Table 6-254 Specifications of CPRI ports on an RRU3806 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3806
2
1.25 or 2.5
Star, chain, or ring
l When the rate at the CPRI port is 1.25 Gbit/s: 4
40
l When the rate at the CPRI port is 2.5 Gbit/s: 8
Antenna Capability The following table lists the antenna capability of an RRU3806. Table 6-255 Antenna capability of an RRU3806
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Type
TMA Support
RET Antenna Support
RRU3806
Supported
AISG2.0 and AISG1.1
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NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.7 RRU3808 Technical Specifications The RRU3808 is a type of radio remote unit. An RRU3808 working in UMTS mode supports a maximum of four UMTS carriers. If it works in LTE FDD mode, it supports only one LTE FDD carrier.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3808. Table 6-256 Modes and frequency bands supported by an RRU3808 Type
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
Mode
RRU3808
2100
1920 to 1980
2110 to 2170
UMTS
AWS
1710 to 1755
2110 to 2155
UMTS, LTE FDD, and UL
RF Specifications Table 6-257 lists radio frequency (RF) specifications of an RRU3808. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l Maximum output power = Maximum output power of the PA - Internal loss. The maximum output power is measured at the antenna port.
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Table 6-257 RF Specifications Type
RRU380 8
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
2T2R
UMTS: 4 carriers
UMTS: -125.8
UMTS: -128.6
UMTS: -131.3
LTE FDD: -106.5
LTE FDD: -109.3
LTE FDD: -112.0
LTE FDD: Two carriers. l One carrie r with a band width of 5, 10, or 15 MHz. l Two carrie rs: the band width per carrie r is 5 or 10 MHz.
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Output Power
Power Consu mption
The maximu m power configur ation is 2 x 40 W.
See the RRU380 8 sheet in 3900 Series Base Station Power Consum ption Specifica tions.
l UMT S: supp orts confi gurati ons of singl eoutpu t, multi pleinput multi pleoutpu t (MI MO), or the comb inatio n of the two, and unev en powe r confi
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
gurati ons. –F or ty pi ca l co nf ig ur ati on s in si ng le ou tp ut or M I M O sc en ar io s, se e th e ta bl e O
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
ut p ut p o w er fo r th e R R U 38 08 ( U M T S, A W S/ 21 00 M H z). –F or ty pi ca l co nf ig ur ati on
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
s in hy br id co nf ig ur ati on sc en ar io s, se e th e ta bl e C ar ri er co m bi n at io ns su p p or te d b
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
y R R U 38 08 ( U M T S) in h y br id co nf ig ur at io ns . In th is sc en ar io, on e R R U 38 08 su pp or
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3900 Series Base Station Technical Description
Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
ts a m ax i m u m of fo ur ca rri er s. E ac h tr an s m it ch an ne l su pp or ts a m ax i m u m of fo ur
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
ca rri er s an d th e m ax i m u m ou tp ut po w er of ea ch tr an s m it ch an ne l is 40 W . l LTE FDD: For typic al
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
confi gurati ons, see the table Table 6-260 . l UL: For typic al confi gurati ons, see the table Outp ut powe r for the RRU 3808 (UL, AWS ). For typical PA configur ations, see Typical Power Configur ation for RRU380 8 in
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
3900 Series Base Station Initial Configur ation Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-258 Output power for the RRU3808 (UMTS, AWS/2100 MHz)
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
Configured in one PA: 40
2
Configured in one PA: 20
2
Configured in two PAs: 40
3
Configured in one PA: 13
4
Configured in one PA: 10
4
Configured in two PAs: 20
1 (MIMO)
2 x 40
2 (MIMO)
2 x 20
3 (MIMO)
2 x 13
4 (MIMO)
2 x 10
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Table 6-259 Carrier combinations supported by RRU3808 (UMTS) in hybrid configurations Number of MIMO Carriers
Number of Single-Output Carriers
1
3
2
3
3
1
Table 6-260 Output power for the RRU3808 (LTE FDD, AWS) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 40
5, 10, 15, 20
2 (MIMO)
l Carrier1: 2 x 13
l Carrier1: 5
l Carrier2: 2 x 27
l Carrier2: 10
2 x 20
5
2 (MIMO)
Table 6-261 Output power for the RRU3808 (UL, AWS) Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
UMTS + LTE FDD
1 (MIMO)
1 (MIMO)
2 x 20
2 x 20
5, 10, 15, 20
1
1 (MIMO)
20
2 x 20
5, 10, 15, 20
2
1 (MIMO)
Configured in two PAs: 20
2 x 20
5, 10, 15, 20
3
1 (MIMO)
Configured in two PAs: 10
2 x 20
5, 10
4
1 (MIMO)
Configured in two PAs: 10
2 x 20
5, 10
Equipment Specifications Table 6-262 lists the equipment specifications of an RRU3808.
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Table 6-262 Equipment specifications of an RRU3808 Type
Input Power
Dimensions (H x W x D)
Weight
RRU3808
-48 V DC; voltage range: -57 V DC to -36 V DC
l 480 mm x 270 mm x 140 mm (without the housing)
l 17 kg (without the housing) l 19 kg (with the housing)
l 485 mm x 285 mm x 170 mm (with the housing)
The following table lists the environmental specifications of an RRU3808. Table 6-263 Environmental specifications of an RRU3808 Type
Operating Temperatu re
Relative Humidity
Absolute Humidity
Atmospher ic Pressure
Storage Time
RRU3808
l Without solar radiation: -40°C to +55°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommende d that the device be installed and used within one year after its delivery because of the failure rate.
l With solar radiatio: -40°C to +50°C
The following table lists the compliance standards for an RRU3808.
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Table 6-264 Compliance standards for an RRU3808 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3808
l 3GPP TS 25.141
NEBS GR63 zone4
IP65
l 3GPP TS 36.141 l 3GPP TS 37.141 l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-265 lists the surge protection specifications of ports on an RRU3808. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-265 Surge protection specifications of ports on an RRU3808 Port
Usage Scenario
Surge Protection Mode
Specifications
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 µs)
Common mode
4 kV (1.2/50 µs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Surge current
RF port
RET port
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Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
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Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3808.
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Table 6-266 Specifications of CPRI ports on an RRU3808 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3808
2
1.25 or 2.5
Star, chain, ring, or dualstar
UMTS:
UMTS: 40
l When the rate at the CPRI port is 1.25 Gbit/s: 4
LTE FDD/UL:
l When the rate at the CPRI port is 2.5 Gbit/s: 8 LTE FDD: l When the rate at the CPRI port is 1.25 Gbit/s: Cascadin g is not supporte d. l When the rate at the CPRI port is 2.5 Gbit/s: – Three levels are suppo rted if the cell band width is less than or equal
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The maximum distances of the RRUs from the BBU vary with the types of BBP in LTE mode as follows: l When the LBBPc, LBBPd1, or UBBPd3 is configure d: 20 l When the LBBPd2 or UBBPd4 is configure d: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configure d: – Cell quanti ty ≤ 3: 40
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
to 5 MHz. – Two levels are suppo rted if the cell band width is 10 MHz.
Maximum Distance from the BBU (km) – Cell quanti ty ≥ 4: 20
– Casca ding is not recom mend ed if the cell band width is greate r than or equal to 15 MHz. UL: l CPRI MUX: 4
Antenna Capability The following table lists the antenna capability of an RRU3808. Table 6-267 Antenna capability of an RRU3808
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Type
TMA Support
RET Antenna Support
RRU3808
Supported
AISG2.0 and AISG1.1
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NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.8 RRU3821E Technical Specifications The RRU3821E is a multi-mode radio remote unit. Adopting the software-defined radio (SDR) technology, RRU3821E modules can work in different modes with different configurations.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3821E. Table 6-268 Modes and frequency bands supported by an RRU3821E Type
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
Mode
RRU3821 E
1800
1744.9 to 1764.9
1839.9 to 1859.9
UMTS, LTE FDD, or UL
RF Specifications Table 6-269 lists radio frequency (RF) specifications of an RRU3821E. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l RRU3821E modules that work in UMTS, LTE FDD or MSR mode and operate in the 1800 MHz frequency band comply with the 3GPP TS 37.104 V10.4.0 & TS 37.141 V10.4.0 protocols. l EF MSR indicates that E and F data is carried on the same transmit channel of an RF module.
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Table 6-269 RF specifications of an RRU3821E Ty pe
RR U38 21E
Tr an sm it an d Re cei ve Ch an ne l
Capacity
2T 2R
Receiver Sensitivity (dBm) Receiver Sensitivi ty with One Antenna
Receiver Sensitivi ty with Two Antenna s
UMTS: 2 carriers
UMTS: -119.0
UMTS: -121.8
LTE FDD: 1 carrier with a bandwidth of 5, 10, 15, or 20 MHz
LTE FDD: -100.0
LTE FDD: -102.8
Output Power
Power Consumption
Full configuration: 2 x 5 W. The typical configurations are as follows:
l When the output power is 2 x 1 W, the power consumption of an RRU3821E is as follows:
l Output power for the RRU3821E (UMTS, 1800 MHz, 2x0.25 W) l Output power for the RRU3821E (UMTS, 1800 MHz, 2x1 W) l Output power for the RRU3821E (UMTS, 1800 MHz, 2x5 W)
– DC: 75 W – AC: 80 W l When the output power is 2 x 5 W, the power consumption of an RRU3821E in AC scenarios is 120 W.
l Output power for the RRU3821E (LTE FDD, 1800 MHz, 2x0.25 W) l Output power for the RRU3821E (LTE FDD, 1800 MHz, 2x1 W) l Output power for the Issue 14 (2016-01-30)
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Ty pe
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Tr an sm it an d Re cei ve Ch an ne l
Capacity
Receiver Sensitivity (dBm) Receiver Sensitivi ty with One Antenna
Output Power
Power Consumption
Receiver Sensitivi ty with Two Antenna s
RRU3821E (LTE FDD, 1800 MHz, 2x5 W) l Output power for the RRU3821E (UL MSR, 1800 MHz, 2x1 W) l Output power for the RRU3821E (UL MSR, 1800 MHz, 2x5 W) For typical PA configurations, see Typical Power Configuration for RRU3821E in 3900 Series Base Station Initial Configuration Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
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Table 6-270 Output power for the RRU3821E (UMTS, 1800 MHz, 2 x 0.25 W) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
0.25
Table 6-271 Output power for the RRU3821E (UMTS, 1800 MHz, 2 x 1 W) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
1
2
0.5
Table 6-272 Output power for the RRU3821E (UMTS, 1800 MHz, 2 x 5 W) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
5
2
2.5
Table 6-273 Output power for the RRU3821E (LTE FDD, 1800 MHz, 2 x 0.25 W) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1
0.25
5, 10, 15, 20
1 (MIMO)
2 x 0.25
5, 10, 15, 20
Table 6-274 Output power for the RRU3821E (LTE FDD, 1800 MHz, 2 x 1 W)
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Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1
1
5, 10, 15, 20
1 (MIMO)
2x1
5, 10, 15, 20
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Table 6-275 Output power for the RRU3821E (LTE FDD, 1800 MHz, 2 x 5 W) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1
5
5, 10, 15, 20
1 (MIMO)
2x5
5, 10, 15, 20
Table 6-276 Output power for the RRU3821E (UL MSR, 1800 MHz, 2 x 1 W) Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
UMTS + LTE FDD
1
1
0.25
5, 10, 15
2
1
0.25
5,10
1
1 (MIMO)
0.5
5, 10, 15
2
1 (MIMO)
0.5
5,10
Table 6-277 Output power for the RRU3821E (UL MSR, 1800 MHz, 2 x 5 W) Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
UMTS + LTE FDD
1
1
1.25
3.75
5, 10, 15
2
1
1.25
2.5
5, 10, 15
1
1 (MIMO)
2.5
2 x 2.5
5, 10, 15
2
1 (MIMO)
2.5
2 x 2.5
5, 10, 15
Engineering Specifications The following table lists the equipment specifications of an RRU3821E.
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Table 6-278 Equipment specifications of an RRU3821E Type
Input Power
Dimensions (H x W x D)
Weight (kg)
RRU3821 E
l -48 V DC; voltage range: -57 V DC to -36 V DC
300 mm x 240 mm x 110 mm (with the housing)
10 (with the housing)
l 100 V AC to -240 V AC, voltage range: 100 V AC to -240 V AC
The following table lists the environmental specifications of an RRU3821E. Table 6-279 Environmental specifications of an RRU3821E Type
Operating Temperatur e
Relative Humidity
Absolute Humidity
Atmospheri c Pressure
Storage Time
RRU 3821 E
l Without solar radiation: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommended that the device be installed and used within one year after its delivery because of the failure rate.
l With solar radiation: -40°C to +55°C
The following table lists the compliance standards for an RRU3821E. Table 6-280 Compliance standards for an RRU3821E Type
Operating Environment
Anti-Seismic Performance
Protection Level
RRU3821 E
l 3GPP TS 25.141
NEBS GR63 zone4
l IP65 (outdoor)
l 3GPP TS 36.141
l IP30 (indoor)
l 3GPP TS 37.141 l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
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Table 6-281 lists the surge protection specifications of ports on an RRU3821E. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-281 Surge protection specifications of ports on an RRU3821E Port
Surge Protection Mode
Surge Protection Specifications
Power supply port
Surge current
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
RF port
Surge current
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3821E.
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Table 6-282 Specifications of CPRI ports on an RRU3821E Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3821E
2
1.25, 2.5, or 4.9
Star, chain, ring, or dualstar
UMTS:
UMTS: 40
l When the rate at the CPRI port is 1.25 Gbit/s: 4
LTE FDD/UL:
l When the rate at the CPRI port is 2.5 Gbit/s: 8 LTE FDD (When the CPRI data rate is 4.9 Gbit/s): l Uncompr essed CPRI – 2T2R: cell band width ≤ 10 MHz, four levels ; cell band width ≥ 15 MHz, two levels – 1T2R: cell band width ≥ 10 MHz, four levels Issue 14 (2016-01-30)
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The maximum distances of the RRUs from the BBU vary with the types of BBP in LTE mode as follows: l When the LBBPc, LBBPd1, or UBBPd3 is configure d: 20 l When the LBBPd2 or UBBPd4 is configure d: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configure d: – Cell quanti ty ≤ 3: 40
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Type
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
l Compres sed CPRI – 2T2R: cell band width ≥ 15 MHz, four levels UL: l CPRI MUX: 8
– Cell quanti ty ≥ 4: 20 NOTE The RRU3821E supports a maximum distance of 20 km from the BBU in signal combination scenarios.
Antenna Capability The following table lists the antenna capability of an RRU3821E. Table 6-283 Antenna capability of an RRU3821E Type
TMA Support
Supported RET Antennas
RRU3821E
Not supported
Not supported
6.3.9 RRU3824 Technical Specifications The RRU3824 is a type of radio remote unit. An RRU3824 working in UMTS mode supports a maximum of four UMTS carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3824. Table 6-284 Modes and frequency bands supported by an RRU3824
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Type
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
Mode
RRU3824
2100
1920 to 1980
2110 to 2170
UMTS
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RF Specifications Table 6-285 lists radio frequency (RF) specifications of an RRU3824. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l Maximum output power = Maximum output power of the PA - Internal loss. The maximum output power is measured at the antenna port.
Table 6-285 RRU3824 RF specifications Type
RRU382 4
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RX and TX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensiti vity with Four Antenn as
1T2R
four carriers
-125.8
-128.6
-131.3
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Output Power
Power Consu mption
The RRU382 4 supports the maximu m power configur ation 1 x 60 W. For typical configur ations, see the table Output power for the RRU382 4 (UMTS, 2100 MHz).
See the RRU382 4 sheet in 3900 Series Base Station Power Consum ption Specifica tions.
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NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-286 Output power for the RRU3824 (UMTS, 2100 MHz) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
60
2
30
3
20
4
15
Engineering Specifications The Table 6-287 lists the equipment specifications of an RRU3824. NOTE
RRU3824 does not have the housing by default.
Table 6-287 Equipment specifications of an RRU3824 Type
Input Power
Dimensions (H x W x D)
Weight
RRU3824
-48 V DC; voltage range: -57 V DC to -36 V DC
400 mm x 300 mm x 100 mm (without the housing)
14 kg (without the housing)
NOTE The RRU3824 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
The following table lists the environmental specifications of an RRU3824.
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Table 6-288 Environmental specifications of an RRU3824 Type
Operating Temperatu re
Relative Humidity
Absolute Humidity
Atmospher ic Pressure
Storage Time
RRU3824
l With 1120 W/m2 solar radiation: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommende d that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiatio: -40°C to +55°C NOTE According to the installation scenario, traffic load, and carrier configuratio n, the output power of some RRUs may temporarily decrease when they work in the highest 10°C temperature range.
The following table lists the compliance standards for an RRU3824. Table 6-289 Compliance standards for an RRU3824 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3824
l 3GPP TS 25.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
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Table 6-290 lists the surge protection specifications of ports on an RRU3824. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-290 Surge protection specifications of ports on an RRU3824 Port
Usage Scenario
Surge Protection Mode
Specifications
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 µs)
Common mode
4 kV (1.2/50 µs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
RF port
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Applicable to all scenarios
Surge current
Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
RET port
Applicable to all scenarios
Surge current
Dry contact or RS485 alarm port
Applicable to all scenarios
Surge current
Local power monitoring and alarm port
Monitored power and RRUs are installed in back-toback mode or within 1 m.
Surge
250 A
Differential mode
3 kA
Common mode
5 kA
Differential mode
3 kA
Common mode
5 kA
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250 A
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Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3824. Table 6-291 Specifications of CPRI ports on an RRU3824 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3824
2
1.25 or 2.5
Star, chain, or ring
l When the rate at the CPRI port is 1.25 Gbit/s: 4
40
l When the rate at the CPRI port is 2.5 Gbit/s: 8
Antenna Capability The following table lists the antenna capability of an RRU3824. Table 6-292 Antenna capability of an RRU3824 Type
TMA Support
RET Antenna Support
RRU3824
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.10 RRU3826 Technical Specifications The RRU3826 is a type of radio remote unit. An RRU3826 working in UMTS mode supports a maximum of four UMTS carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3826.
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Table 6-293 Modes and frequency bands supported by an RRU3826 Type
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
Mode
RRU3826
2100
1920 to 1980
2110 to 2170
UMTS
RF Specifications Table 6-294 lists radio frequency (RF) specifications of an RRU3826. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l Maximum output power = Maximum output power of the PA - Internal loss. The maximum output power is measured at the antenna port.
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Table 6-294 RRU3826 RF specifications Type
RRU382 6
RX and TX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensiti vity with Four Antenn as
1T2R
four carriers
-125.8
-128.6
-131.3
Output Power
Power Consu mption
The RRU382 6 supports the maximu m power configur ation 1 x 80 W. For typical configur ations, see the table Output power for the RRU382 6 (UMTS, 2100 MHz).
See the RRU382 6 sheet in 3900 Series Base Station Power Consum ption Specifica tions.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-295 Output power for the RRU3826 (UMTS, 2100 MHz)
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
80
2
40
3
26
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
4
20
Engineering Specifications The Table 6-296 lists the equipment specifications of an RRU3826. NOTE
RRU3826 does not have the housing by default.
Table 6-296 Equipment specifications of an RRU3826 Type
Input Power
Dimensions (H x W x D)
Weight
RRU3826
-48 V DC; voltage range: -57 V DC to -36 V DC
400 mm x 300 mm x 100 mm (without the housing)
14 kg (without the housing)
NOTE The RRU3826 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
The following table lists the environmental specifications of an RRU3826.
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Table 6-297 Environmental specifications of an RRU3826 Type
Operating Temperatu re
Relative Humidity
Absolute Humidity
Atmospher ic Pressure
Storage Time
RRU3826
l With 1120 W/m2 solar radiation: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommende d that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiation: -40°C to +55°C NOTE According to the installation scenario, traffic load, and carrier configuratio n, the output power of some RRUs may temporarily decrease when they work in the highest 10°C temperature range.
The following table lists the compliance standards for an RRU3826. Table 6-298 Compliance standards for an RRU3826 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3826
l 3GPP TS 25.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
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Table 6-299 lists the surge protection specifications of ports on an RRU3826. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-299 Surge protection specifications of ports on an RRU3826 Port
Usage Scenario
Surge Protection Mode
Specifications
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 µs)
Common mode
4 kV (1.2/50 µs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
RF port
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Applicable to all scenarios
Surge current
Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
RET port
Applicable to all scenarios
Surge current
Dry contact or RS485 alarm port
Applicable to all scenarios
Surge current
Local power monitoring and alarm port
Monitored power and RRUs are installed in back-toback mode or within 1 m.
Surge
250 A
Differential mode
3 kA
Common mode
5 kA
Differential mode
3 kA
Common mode
5 kA
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250 A
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Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3826. Table 6-300 Specifications of CPRI ports on an RRU3826 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3826
2
1.25 or 2.5
Star, chain, or ring
l When the rate at the CPRI port is 1.25 Gbit/s: 4
40
l When the rate at the CPRI port is 2.5 Gbit/s: 8
Antenna Capability The following table lists the antenna capability of an RRU3826. Table 6-301 Antenna capability of an RRU3826 Type
TMA Support
RET Antenna Support
RRU3826
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.11 RRU3828 Technical Specifications The RRU3828 is a type of radio remote unit. An RRU3828 working in UMTS mode supports a maximum of six UMTS carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3828.
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Table 6-302 Modes and frequency bands supported by an RRU3828 Type
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
Mode
RRU3828
2100
1920 to 1980
2110 to 2170
UMTS
RF Specifications Table 6-303 lists radio frequency (RF) specifications of an RRU3828. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l Maximum output power = Maximum output power of the PA - Internal loss. The maximum output power is measured at the antenna port.
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Table 6-303 RF Specifications Type
RRU382 8
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
2T2R
l With MIM O: 4 carrie rs
-126.1
-128.9
-131.6
l With out MIM O: 6 carrie rs
Output Power
Power Consu mption
The RRU382 8 supports the maximu m power configur ation 2 x 40 W.
See the RRU382 8 sheet in 3900 Series Base Station Power Consum ption Specifica tions.
Configur ations of singleoutput, MIMO, or the combinat ion of the two, and uneven power configur ations. l For typic al confi gurati ons in singl eoutpu t or MIM O scena rios,
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
see the table Outp ut powe r for the RRU 3828 (UM TS, 2100 MHz ). l For typic al confi gurati ons in hybri d confi gurati on scena rios, see the table Carr ier comb inati ons supp orted by RRU
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
3828 in hybri d confi gurat ions. In this scena rio, one RRU 3828 supp orts a maxi mum of six carrie rs. Each trans mit chan nel supp orts a maxi mum of four carrie rs and the maxi mum outpu t powe
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
r of each trans mit chan nel is 40 W. For typical PA configur ations, see Typical Power Configur ation for RRU382 8 in 3900 Series Base Station Initial Configur ation Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-304 Output power for the RRU3828 (UMTS, 2100 MHz)
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
Configured in one PA: 40
2
Configured in one PA: 20
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
2
Configured in two PAs: 40
3
Configured in one PA: 13
4
Configured in one PA: 10
4
Configured in two PAs: 20
6
Configured in two PAs: 13
1 (MIMO)
2 x 40
2 (MIMO)
2 x 20
3 (MIMO)
2 x 13
4 (MIMO)
2 x 10
Table 6-305 Carrier combinations supported by RRU3828 in hybrid configurations Number of MIMO Carriers
Number of Single-Output Carriers
1
5
2
4
3
2
Engineering Specifications The following table lists the equipment specifications of an RRU3828.
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Table 6-306 Equipment specifications of an RRU3828 Type
Input Power
Dimensions (H x W x D)
Weight
RRU3828
-48 V DC; voltage range: -57 V DC to -36 V DC
l 400 mm x 220 mm x 140 mm (without the housing)
l 14 kg (without the housing)
NOTE The RRU3828 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
l 15 kg (with the housing)
l 400 mm x 240 mm x 160 mm (with the housing)
The following table lists the environmental specifications of an RRU3828. Table 6-307 Environmental specifications of an RRU3828 Type
Operating Temperatu re
Relative Humidity
Absolute Humidity
Atmospher ic Pressure
Storage Time
RRU3828
l Without solar radiation: -40°C to +55°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommende d that the device be installed and used within one year after its delivery because of the failure rate.
l With solar radiation: -40°C to +50°C
The following table lists the compliance standards for an RRU3828.
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Table 6-308 Compliance standards for an RRU3828 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3828
l 3GPP TS 25.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-309 lists the surge protection specifications of ports on an RRU3828. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-309 Surge protection specifications of ports on an RRU3828 Port
Usage Scenario
Surge Protection Mode
Specifications
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 µs)
Common mode
4 kV (1.2/50 µs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Differential mode
3 kA
Common mode
5 kA
Surge current
RF port
RET port
Dry contact or RS485 alarm port
Issue 14 (2016-01-30)
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
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Port
Usage Scenario
Surge Protection Mode
Specifications
Local power monitoring and alarm port
Monitored power and RRUs are installed in back-toback mode or within 1 m.
Surge
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3828. Table 6-310 Specifications of CPRI ports on an RRU3828 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3828
2
1.25 or 2.5
Star, chain, or ring
l When the rate at the CPRI port is 1.25 Gbit/s: 4
40
l When the rate at the CPRI port is 2.5 Gbit/s: 8
Antenna Capability The following table lists the antenna capability of an RRU3828. Table 6-311 Antenna capability of an RRU3828
Issue 14 (2016-01-30)
Type
TMA Support
RET Antenna Support
RRU3828
Supported
AISG2.0 and AISG1.1
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NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.12 RRU3829 Technical Specifications The RRU3829 is a type of radio remote unit. An RRU3829 working in UMTS mode supports a maximum of six UMTS carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3829. Table 6-312 Modes and frequency bands supported by an RRU3829 Type
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
Mode
RRU3829
2100
1920 to 1980
2110 to 2170
UMTS
RF Specifications Table 6-313 lists radio frequency (RF) specifications of an RRU3829. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001.
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Table 6-313 RF Specifications Type
RRU382 9
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
2T2R
l With MIM O: 4 carrie rs
-126.1
-128.9
-131.6
l With out MIM O: 6 carrie rs
Output Power
Power Consu mption
The RRU382 9 supports the maximu m power configur ation 2 x 60 W.
See the RRU382 9 sheet in 3900 Series Base Station Power Consum ption Specifica tions.
Configur ations of singleoutput, MIMO, or the combinat ion of the two, and uneven power configur ations. l For typic al confi gurati ons in singl eoutpu t or MIM O scena rios,
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
see the table Outp ut powe r for the RRU 3829 (UM TS, 2100 MHz ). l For typic al confi gurati ons in hybri d confi gurati on scena rios, see the table Carr ier comb inati ons supp orted by RRU
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3900 Series Base Station Technical Description
Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
3829 in hybri d confi gurat ions. In this scena rio, one RRU 3829 supp orts a maxi mum of six carrie rs. Each trans mit chan nel supp orts a maxi mum of four carrie rs and the maxi mum outpu t powe
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
r of each trans mit chan nel is 60 W. For typical PA configur ations, see Typical Power Configur ation for RRU382 9 in 3900 Series Base Station Initial Configur ation Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-314 Output power for the RRU3829 (UMTS, 2100 MHz)
Issue 14 (2016-01-30)
Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
Configured in one PA: 60
2
Configured in one PA: 30
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
2
Configured in two PAs: 60
3
Configured in one PA: 20
4
Configured in one PA: 15
4
Configured in two PAs: 30
6
Configured in two PAs: 20
1 (MIMO)
2 x 40
2 (MIMO)
2 x 30
3 (MIMO)
2 x 20
4 (MIMO)
2 x 15
Table 6-315 Carrier combinations supported by RRU3829 in hybrid configurations Number of MIMO Carriers
Number of Single-Output Carriers
1
5
2
4
3
2
Equipment Specifications The following table lists the equipment specifications of an RRU3829.
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Table 6-316 Equipment specifications of an RRU3829 Type
Input Power
Dimensions (H x W x D)
Weight
RRU3829
-48 V DC; voltage range: -57 V DC to -36 V DC
l 480 mm x 270 mm x 140 mm (without the housing)
l 20 kg (without the housing)
NOTE The RRU3829 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
l 22 kg (with the housing)
l 485 mm x 300 mm x 170 mm (with the housing)
The following table lists the environmental specifications of an RRU3829. Table 6-317 Environmental specifications of an RRU3829 Type
Operating Temperatu re
Relative Humidity
Absolute Humidity
Atmospher ic Pressure
Storage Time
RRU3829
l Without solar radiation: -40°C to +55°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommende d that the device be installed and used within one year after its delivery because of the failure rate.
l With solar radiation: -40°C to +50°C
The following table lists the compliance standards for an RRU3829.
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Table 6-318 Compliance standards for an RRU3829 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3829
l 3GPP TS 25.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-319 lists the surge protection specifications of ports on an RRU3829. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-319 Surge protection specifications of ports on an RRU3829 Port
Usage Scenario
Surge Protection Mode
Specifications
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 µs)
Common mode
4 kV (1.2/50 µs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
RF port
Issue 14 (2016-01-30)
Applicable to all scenarios
Surge current
Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
RET port
Applicable to all scenarios
Surge current
250 A
Differential mode
3 kA
Common mode
5 kA
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Port
Usage Scenario
Surge Protection Mode
Specifications
Dry contact or RS485 alarm port
Applicable to all scenarios
Surge current
Differential mode
3 kA
Common mode
5 kA
Local power monitoring and alarm port
Monitored power and RRUs are installed in back-toback mode or within 1 m.
Surge
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3829. Table 6-320 Specifications of CPRI ports on an RRU3829 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3829
2
1.25 or 2.5
Star, chain, or ring
l When the rate at the CPRI port is 1.25 Gbit/s: 4
40
l When the rate at the CPRI port is 2.5 Gbit/s: 8
Antenna Capability The following table lists the antenna capability of an RRU3829.
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Table 6-321 Antenna capability of an RRU3829 Type
TMA Support
RET Antenna Support
RRU3829
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.13 RRU3832 Technical Specifications The RRU3832 is a type of radio remote unit. An RRU3832 working in UMTS mode supports a maximum of six UMTS carriers. If it works in LTE FDD mode, it supports two LTE FDD carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3832. Table 6-322 Modes and frequency bands supported by an RRU3832 Type
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
Mode
RRU3832
2100
1920 to 1980
2110 to 2170
UMTS
AWS
1710 to 1755
2110 to 2155
UMTS, LTE FDD, and UL
RF Specifications Table 6-323 lists radio frequency (RF) specifications of an RRU3832. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l Maximum output power = Maximum output power of the PA - Internal loss. The maximum output power is measured at the antenna port.
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Table 6-323 RF Specifications Type
RRU383 2
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
2T4R
UMTS:
UMTS: -126.1
UMTS: -128.9
UMTS: -131.6
LTE FDD: -106.5
LTE FDD: -109.3
LTE FDD: -112.0
l With MIM O: 4 carrie rs l With out MIM O: 6 carrie rs LTE FDD: 2 carriers. The bandwid th per carrier is 5, 10, 15, or 20 MHz. The total bandwid th between the maximu m frequenc y and the minimu m frequenc y of two carriers cannot exceed 60 MHz.
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Output Power
Power Consu mption
The maximu m power configur ation is 2 x 60 W.
See the RRU383 2 sheet in 3900 Series Base Station Power Consum ption Specifica tions.
l UMT S: supp orts confi gurati ons of singl eoutpu t, MIM O, or the comb inatio n of the two, and unev en powe r confi gurati ons. –F or ty pi ca
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
l co nf ig ur ati on s in si ng le ou tp ut or M I M O sc en ar io s, se e th e ta bl e O ut p ut p o w er
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
fo r th e R R U 38 32 ( U M T S, A W S/ 21 00 M H z). –F or ty pi ca l co nf ig ur ati on s in hy br id co nf
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
ig ur ati on sc en ar io s, se e th e ta bl e C ar ri er co m bi n at io ns su p p or te d b y R R U 38 32 in
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
h y br id co nf ig ur at io ns . In th is sc en ar io, on e R R U 38 32 su pp or ts a m ax i m u m of si x ca
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
rri er s. E ac h tr an s m it ch an ne l su pp or ts a m ax i m u m of fo ur ca rri er s an d th e m ax i m
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
u m ou tp ut po w er of ea ch tr an s m it ch an ne l is 60 W . l LTE FDD: For typic al confi gurati ons, see the table Outp ut powe r for the RRU
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
3832 (LTE FDD, AWS ). l UL: For typic al confi gurati ons, see the table Outp ut powe r for the RRU 3832 (UL, AWS ). For typical PA configur ations, see Typical Power Configur ation for RRU383 2 in 3900 Series Base Station
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
Initial Configur ation Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-324 Output power for the RRU3832 (UMTS, AWS/2100 MHz) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
Configured in one PA: 60
2
Configured in one PA: 30
2
Configured in two PAs: 60
3
Configured in one PA: 20
4
Configured in one PA: 15
4
Configured in two PAs: 30
6
Configured in two PAs: 20
1 (MIMO)
2 x 40
2 (MIMO)
2 x 30
3 (MIMO)
2 x 20
4 (MIMO)
2 x 15
Table 6-325 Carrier combinations supported by RRU3832 in hybrid configurations
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Number of MIMO Carriers
Number of Single-Output Carriers
1
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Number of MIMO Carriers
Number of Single-Output Carriers
2
4
3
2
Table 6-326 Output power for the RRU3832 (LTE FDD, AWS) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 20
5
1 (MIMO)
2 x 40
10
1 (MIMO)
2 x 60
5, 10, 15, 20
2 (MIMO)
2 x 20
5
2 (MIMO)
2 x 30
5, 10
2 (MIMO)
l Carrier1: 2 x 20
l Carrier1: 5
l Carrier2: 2 x 40
l Carrier2: 10
l Carrier1: 2 x 15
l Carrier1: 5
l Carrier2: 2 x 45
l Carrier2: 15
2 (MIMO)
Table 6-327 Output power for the RRU3832 (UL, AWS)
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Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
UMTS + LTE FDD
1 (MIMO)
1 (MIMO)
2 x 20
2 x 40
5, 10, 15, 20
1 (MIMO)
1 (MIMO)
2 x 30
2 x 30
5, 10, 15, 20
1 (MIMO)
1 (MIMO)
2 x 40
2 x 20
5, 10, 15, 20
1
1 (MIMO)
Configured in one PA: 20
2 x 40
5, 10, 15, 20
1
1 (MIMO)
Configured in one PA: 30
2 x 30
5, 10, 15, 20
1
1 (MIMO)
Configured in one PA: 40
2 x 20
5, 10, 15, 20
2
1 (MIMO)
Configured in two PAs: 20
2 x 40
5, 10, 15, 20
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Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
2
1 (MIMO)
Configured in two PAs: 30
2 x 30
5, 10, 15, 20
2
1 (MIMO)
Configured in two PAs: 40
2 x 20
5, 10, 15, 20
3
1 (MIMO)
Configured in two PAs: 20
2 x 20
5, 10, 15, 20
4
1 (MIMO)
Configured in two PAs: 20
2 x 20
5, 10, 15, 20
1+1 (MIMO)
1 (MIMO)
Configured in two PAs: 20
2 x 20
5, 10, 15, 20
Equipment Specifications Table 6-328 lists the equipment specifications of an RRU3832. NOTE
RRU3832 does not have the housing by default.
Table 6-328 Equipment specifications of an RRU3832 Type
Input Power
Dimensions (H x W x D)
Weight
RRU3832
-48 V DC; voltage range: -57 V DC to -36 V DC
400 mm x 300 mm x 100 mm (without the housing)
15 kg (without the housing)
NOTE The RRU3832 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
The following table lists the environmental specifications of an RRU3832.
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Table 6-329 Environmental specifications of an RRU3832 Type
Operating Temperatu re
Relative Humidity
Absolute Humidity
Atmospher ic Pressure
Storage Time
RRU3832
l Without solar radiation: -40°C to +55°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommende d that the device be installed and used within one year after its delivery because of the failure rate.
l With solar radiation: -40°C to +50°C NOTE According to the installation scenario, traffic load, and carrier configuratio n, the output power of some RRUs may temporarily decrease when they work in the highest 10°C temperature range.
The following table lists the compliance standards for an RRU3832. Table 6-330 Compliance standards for an RRU3832 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3832
l 3GPP TS 25.141
NEBS GR63 zone4
IP65
l 3GPP TS 36.141 l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
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Table 6-331 lists the surge protection specifications of ports on an RRU3832. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-331 Surge protection specifications of ports on an RRU3832 Port
Usage Scenario
Surge Protection Mode
Specifications
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 µs)
Common mode
4 kV (1.2/50 µs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Differential mode
3 kA
Common mode
5 kA
Surge current
RF port
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Dry contact or RS485 alarm port
Applicable to all scenarios
Surge current
Local power monitoring and alarm port
Monitored power and RRUs are installed in back-toback mode or within 1 m.
Surge
RET port
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3832. Issue 14 (2016-01-30)
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Table 6-332 Specifications of CPRI ports on an RRU3832 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3832
2
1.25, 2.5, or 4.9
Star, chain, ring, or dualstar
UMTS:
UMTS: 40
l When the rate at the CPRI port is 1.25 Gbit/s: 4
LTE FDD/UL:
l When the rate at the CPRI port is 2.5 Gbit/s or 4.9 Gbit/s: 8 LTE FDD: l When the rate at the CPRI port is 1.25 Gbit/s: Cascadin g is not supporte d. l When the rate at the CPRI port is 2.5 Gbit/s: – Two levels are suppo rted if the cell band width is less than
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The maximum distances of the RRUs from the BBU vary with the types of BBP in LTE mode as follows: l When the LBBPc, LBBPd1, or UBBPd3 is configure d: 20 l When the LBBPd2 or UBBPd4 is configure d: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configure d: – Cell quanti ty ≤ 3: 40
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Type
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
or equal to 5 MHz.
Maximum Distance from the BBU (km) – Cell quanti ty ≥ 4: 20
– Casca ding is not recom mend ed if the cell band width is greate r than or equal to 10 MHz. l When the rate at the CPRI port is 4.9 Gbit/s: – Two levels are suppo rted if the cell band width is less than or equal to 10 MHz. – Casca ding is not
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Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
recom mend ed if the cell band width is greate r than or equal to 15 MHz. UL: l CPRI MUX: 4
Antenna Capability The following table lists the antenna capability of an RRU3832. Table 6-333 Antenna capability of an RRU3832 Type
TMA Support
RET Antenna Support
RRU3832
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.14 RRU3838 Technical Specifications The RRU3838 is a type of radio remote unit. An RRU3838 supports a maximum of six UMTS carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3838.
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Table 6-334 Modes and frequency bands supported by an RRU3838 Type
Mode
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
RRU3838
UMTS
2100
1920 to 1980
2110 to 2170
RF Specifications Table 6-335 lists radio frequency (RF) specifications of an RRU3838. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The UMTS receiver sensitivity, as recommended in 3GPP TS 25.104, is measured at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l Maximum output power = Maximum output power of the PA - Internal loss. The maximum output power is measured at the antenna port.
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Table 6-335 RF Specifications Type
RRU383 8
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
2T2R
l With MIM O: 4 carrie rs
-126.1
-128.9
-131.6
l With out MIM O: 6 carrie rs
Output Power
Power Consu mption
The RRU383 8 supports the maximu m power configur ation 2 x 40 W, configur ations of singleoutput, MIMO, or the combinat ion of the two, and uneven power configur ations.
See the RRU383 8 sheet in 3900 Series Base Station Power Consum ption Specifica tions.
l For typic al confi gurati ons in single outpu t or MIM O scena rios, see the
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
table Outp ut powe r for the RRU 3838 (UM TS, 2100 MHz ). l For typic al confi gurati ons in hybri d confi gurati on scena rios, see the table Carri er comb inati ons supp orted by RRU 3838 in hybri
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
d confi gurat ions. In this scena rio, one RRU 3838 suppo rts a maxi mum of six carrie rs. Each trans mit chann el suppo rts a maxi mum of four carrie rs and the maxi mum outpu t powe r of each trans mit
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
chann el is 40 W. For typical PA configur ations, see Typical Power Configur ation for RRU383 8 in 3900 Series Base Station Initial Configur ation Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-336 Output power for the RRU3838 (UMTS, 2100 MHz)
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
Configured in one PA: 40
2
Configured in one PA: 20
2
Configured in two PAs: 40
3
Configured in one PA: 13
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
4
Configured in one PA: 10
4
Configured in two PAs: 20
1 (MIMO)
2 x 40
2 (MIMO)
2 x 20
3 (MIMO)
2 x 13
4 (MIMO)
2 x 10
Table 6-337 Carrier combinations supported by RRU3838 in hybrid configurations Number of MIMO Carriers
Number of Single-Output Carriers
1
5
2
4
3
2
Equipment Specifications Table 6-338 lists the equipment specifications of an RRU3838. NOTE
RRU3838 does not have the housing by default.
Table 6-338 Equipment specifications of an RRU3838 Type
Input Power
Dimensions (H x W x D)
Weight
RRU3838
-48 V DC; voltage range: -57 V DC to -36 V DC
400 mm x 300 mm x 100 mm (without the housing)
14 kg (without the housing)
NOTE The RRU3838 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
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The following table lists the environmental specifications of an RRU3838. Table 6-339 Environmental specifications of an RRU3838 Type
Operating Temperatu re
Relative Humidity
Absolute Humidity
Atmospher ic Pressure
Storage Time
RRU3838
l Without solar radiation: -40°C to +55°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommende d that the device be installed and used within one year after its delivery because of the failure rate.
l With solar radiation: -40°C to +50°C NOTE According to the installation scenario, traffic load, and carrier configuratio n, the output power of some RRUs may temporarily decrease when they work in the highest 10°C temperature range.
The following table lists the compliance standards for an RRU3838. Table 6-340 Compliance standards for an RRU3838 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3838
l 3GPP TS 25.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
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Table 6-341 lists the surge protection specifications of ports on an RRU3838. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-341 Surge protection specifications of ports on an RRU3838 Port
Usage Scenario
Surge Protection Mode
Specifications
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 µs)
Common mode
4 kV (1.2/50 µs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Differential mode
3 kA
Common mode
5 kA
Surge current
RF port
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Dry contact or RS485 alarm port
Applicable to all scenarios
Surge current
Local power monitoring and alarm port
Monitored power and RRUs are installed in back-toback mode or within 1 m.
Surge
RET port
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3838. Issue 14 (2016-01-30)
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Table 6-342 Specifications of CPRI ports on an RRU3838 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3838
2
1.25 or 2.5
Star, chain or ring
l When the rate at the CPRI port is 1.25 Gbit/s: 4
40
l When the rate at the CPRI port is 2.5 Gbit/s: 8
Antenna Capability The following table lists the antenna capability of an RRU3838. Table 6-343 Antenna capability of an RRU3838 Type
TMA Support
RET Antenna Support
RRU3838
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.15 RRU3839 Technical Specifications An RRU3839, which is a remote radio unit for UMTS, supports a maximum of six carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3839. Table 6-344 Modes and frequency bands supported by an RRU3839
Issue 14 (2016-01-30)
Type
Mode
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
RRU3839
UMTS
2100
1920 to 1980
2110 to 2170
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RF Specifications Table 6-345 lists radio frequency (RF) specifications of an RRU3839. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The UMTS receiver sensitivity, as recommended in 3GPP TS 25.104, is measured at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001.
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Table 6-345 RF Specifications Type
RRU383 9
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
2T2R
l With MIM O: 4 carrie rs
-126.1
-128.9
-131.6
l With out MIM O: 6 carrie rs
Output Power
Power Consu mption
The RRU383 9 supports the maximu m power configur ation 2 x 60 W, configur ations of singleoutput, MIMO, or the combinat ion of the two, and uneven power configur ations.
See the RRU383 9 sheet in 3900 Series Base Station Power Consum ption Specifica tions.
l For typic al confi gurati ons in singl eoutpu t or MIM O scena rios, see
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
the table Outp ut powe r for the RRU 3839 (UM TS, 2100 MHz ). l For typic al confi gurati ons in hybri d confi gurati on scena rios, see the table Carr ier comb inati ons supp orted by RRU 3839
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3900 Series Base Station Technical Description
Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
in hybri d confi gurat ions. In this scena rio, one RRU 3839 supp orts a maxi mum of six carrie rs. Each trans mit chan nel supp orts a maxi mum of four carrie rs and the maxi mum outpu t powe r of
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Type
6 Product Specifications
TX and RX Channe l
Capacit y
Receiver Sensitivity (dBm) Receive r Sensiti vity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consu mption
each trans mit chan nel is 40 W. For typical PA configur ations, see Typical Power Configur ation for RRU383 9 in 3900 Series Base Station Initial Configur ation Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-346 Output power for the RRU3839 (UMTS, 2100 MHz)
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
Configured in one PA: 60
2
Configured in one PA: 30
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
2
Configured in two PAs: 60
3
Configured in one PA: 20
4
Configured in one PA: 15
4
Configured in two PAs: 30
1 (MIMO)
2 x 40
2 (MIMO)
2 x 30
3 (MIMO)
2 x 20
4 (MIMO)
2 x 15
Table 6-347 Carrier combinations supported by RRU3839 in hybrid configurations Number of MIMO Carriers
Number of Single-Output Carriers
1
5
2
4
3
2
Equipment Specifications The following table lists the equipment specifications of an RRU3839. Table 6-348 Equipment specifications of an RRU3839 Type
Input Power
Dimensions (H x W x D)
Weight
RRU3839
-48 V DC; voltage range: -57 V DC to -36 V DC
400 mm x 300 mm x 100 mm (without the housing)
14 kg (without the housing)
NOTE The RRU3839 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
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The following table lists the environmental specifications of an RRU3839. Table 6-349 Environmental specifications of an RRU3839 Type
Operating Temperatu re
Relative Humidity
Absolute Humidity
Atmospher ic Pressure
Storage Time
RRU3839
l Without solar radiation: -40°C to +55°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommende d that the device be installed and used within one year after its delivery because of the failure rate.
l With solar radiation: -40°C to +50°C NOTE According to the installation scenario, traffic load, and carrier configuratio n, the output power of some RRUs may temporarily decrease when they work in the highest 10°C temperature range.
The following table lists the compliance standards for an RRU3839. Table 6-350 Compliance standards for an RRU3839 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3839
l 3GPP TS 25.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
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Table 6-351 lists the surge protection specifications of ports on an RRU3839. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-351 Surge protection specifications of ports on an RRU3839 Port
Usage Scenario
Surge Protection Mode
Specifications
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 µs)
Common mode
4 kV (1.2/50 µs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
RF port
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Applicable to all scenarios
Surge current
Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
RET port
Applicable to all scenarios
Surge current
Dry contact or RS485 alarm port
Applicable to all scenarios
Surge current
Local power monitoring and alarm port
Monitored power and RRUs are installed in back-toback mode or within 1 m.
Surge
250 A
Differential mode
3 kA
Common mode
5 kA
Differential mode
3 kA
Common mode
5 kA
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Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3839. Table 6-352 Specifications of CPRI ports on an RRU3839 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3839
2
1.25, 2.5, or 4.9
Star, chain, or ring
l When the rate at the CPRI port is 1.25 Gbit/s: 4
40
l When the rate at the CPRI port is 2.5 Gbit/s or 4.9 Gbit/s: 8
Antenna Capability The following table lists the antenna capability of an RRU3839. Table 6-353 Antenna capability of an RRU3839 Type
TMA Support
RET Antenna Support
RRU3839
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.16 RRU3201 Technical Specifications An RRU3201, which is a remote radio unit for LTE FDD, supports two carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3201.
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Table 6-354 Modes and frequency bands supported by an RRU3201 Type
Mode
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
RRU3201
LTE FDD
700 (band 13)
777 to 787
746 to 756
2600 (band 7)
Band C: 2500 to 2520
Band C: 2620 to 2640
Band D: 2510 to 2560
Band D: 2630 to 2680
Band E: 2550 to 2570
Band E: 2670 to 2690
RF Specifications Table 6-355 lists radio frequency (RF) specifications of an RRU3201. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard.
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Table 6-355 RF specifications of an RRU3201 Type
RRU3 201
TX and RX Chan nel
Capacity
2T2R
l 700 MHz: One carrier with a bandwidth of 5 or 10 MHz.
Receiver Sensitivity (dBm) Receiver Sensitivi ty with One Antenna
Receiver Sensitivi ty with Two Antenna s
-105.8
-108.6
l 2600 MHz: Two carriers. The bandwidth per carrier is 15 MHz or the continuous bandwidth of the two carriers is 10 MHz+10 MHz, or the bandwidth of one carrier is 20 MHz and the bandwidth of the other carrier is 10 MHz.
Output Power
Power Consum ption
The maximum power configurat ion is 2 x 40 W. The typical configurat ions are as follows:
See the RRU3201 sheet in 3900 Series Base Station Power Consumpt ion Specificati ons.
l Outpu t power for the RRU3 201 (LTE FDD, 700 MHz MHz) l Outpu t power for the RRU3 201 (LTE FDD, 2600 MHz) For typical PA configurat ions, see Typical Power Configurat ion for RRU3201 in 3900
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Type
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TX and RX Chan nel
Capacity
Receiver Sensitivity (dBm) Receiver Sensitivi ty with One Antenna
Output Power
Receiver Sensitivi ty with Two Antenna s
Power Consum ption
Series Base Station Initial Configurat ion Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-356 Output power for the RRU3201 (LTE FDD, 700 MHz) Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 40
1.4, 3, 5, 10
Table 6-357 Output power for the RRU3201 (LTE FDD, 2600 MHz) Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 40
5, 10, 15, 20
2 (MIMO)
2 x 20
10,15
2 (MIMO)
l carrier1: 2 x 13
l carrier1: 10
l carrier2: 2 x 27
l carrier2: 20
Engineering Specifications The following table lists the equipment specifications of an RRU3201.
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Table 6-358 Equipment specifications of an RRU3201 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3201
-48 V DC; voltage range: -57 V DC to -36 V DC
l 480 mm x 270 mm x 140 mm (18 L, without the housing)
l ≤ 17.5 (without the housing)
l 485 mm x 285 mm x 170 mm (23.5 L, with the housing)
l ≤ 19 (with the housing)
The following table lists the environmental specifications of an RRU3201. Table 6-359 Environmental specifications of an RRU3201 Type
Operatin g Temperat ure
Relative Humidity
Absolute Humidity
Atmospher ic Pressure
Storage Time
RRU32 01
l With solar radiatio n of 1120 W/m2: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommende d that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiatio n: -40°C to +55°C
The following table lists the compliance standards for an RRU3201.
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Table 6-360 Compliance standards for an RRU3201 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3201
l 3GPP TS 36.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-361 lists the surge protection specifications of ports on an RRU3201. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-361 Surge protection specifications of ports on an RRU3201 Port
Usage Scenario
Surge Protection Mode
Specification
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Surge current
RF port
RET port
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3201. Issue 14 (2016-01-30)
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Table 6-362 Specifications of CPRI ports on an RRU3201 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3201
2
1.25 or 2.5
Star, chain, or ring
l When the rate at the CPRI port is 1.25 Gbit/s: Cascadin g is not supporte d.
l When the LBBPc, LBBPd1, or UBBPd3 is configure d: 20
l When the rate at the CPRI port is 2.5 Gbit/s: – Three levels are suppo rted if the cell band width is less than or equal to 5 MHz. – Two levels are suppo rted if the cell band width is 10 MHz.
l When the LBBPd2 or UBBPd4 is configure d: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configure d: – Cell quanti ty ≤ 3: 40 – Cell quanti ty ≥ 4: 20
– Casca ding
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Type
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
is not recom mend ed if the cell band width is greate r than or equal to 15 MHz.
Antenna Capability The following table lists the antenna capability of an RRU3201. Table 6-363 Antenna capability of an RRU3201 Type
TMA Support
Supported RET Antennas
RRU3201
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.17 RRU3203 Technical Specifications An RRU3203, which is a remote radio unit for LTE FDD, supports two carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3203.
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Table 6-364 Modes and frequency bands supported by an RRU3203 Type
Mode
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
RRU3203
LTE FDD
700 (band 12)
698 to 716
728 to 746
RF Specifications Table 6-365 lists radio frequency (RF) specifications of an RRU3203. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard.
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Table 6-365 RF specifications of an RRU3203 Type
RRU3 203
Trans mit and Recei ve Chan nels
Capacity
2T2R
Two carriers with a bandwidth of 1.4, 3, 5, 10, 15, or 20 MHz
Receiver Sensitivity (dBm) Receiver Sensitivi ty with One Antenna
Receiver Sensitivi ty with Two Antenna s
-105.8
-108.6
Output Power
Power Consum ption
The RRU3203 supports the maximum power configurat ion 2 x 40 W.
See the RRU3203 sheet in 3900 Series Base Station Power Consumpt ion Specificati ons.
For typical configurat ions, see the table Output power for the RRU3203 (LTE FDD, 700 MHz). For typical PA configurat ions, see Typical Power Configurat ion for RRU3203 in 3900 Series Base Station Initial Configurat ion Guide.
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NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-366 Output power for the RRU3203 (LTE(FDD), 700 MHz) Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 40
1.4, 3, 5, 10, 15
2 (MIMO)
2 x 20
5
Engineering Specifications The following table lists the equipment specifications of an RRU3203. Table 6-367 Equipment specifications of an RRU3203 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3203
-48 V DC; voltage range: -57 V DC to -36 V DC
l 480 mm x 356 mm x 140 mm (24 L, without the housing)
l ≤ 21 (without the housing)
l 485 mm x 381 mm x 170 mm (31.4 L, with the housing)
l ≤ 24 (with the housing)
The following table lists the environmental specifications of an RRU3203. Table 6-368 Environmental specifications of an RRU3203 Type
Operating Temperature
Relative Humidity
Absolute Humidity
Atmosphe ric Pressure
Storage Time
RRU32 03
l With solar radiation of 1120 W/m2: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommend ed that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiation: -40°C to +55°C
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The following table lists the compliance standards for an RRU3203. Table 6-369 Compliance standards for an RRU3203 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3203
l 3GPP TS 36.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-370 lists the surge protection specifications of ports on an RRU3203. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-370 Surge protection specifications of ports on an RRU3203 Port
Usage Scenario
Surge Protection Mode
Specification
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Surge current
RF port
RET port
Issue 14 (2016-01-30)
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
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Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3203.
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Table 6-371 Specifications of CPRI ports on an RRU3203 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3203
2
1.25 or 2.5
Star, chain, or ring
l When the rate at the CPRI port is 1.25 Gbit/s: Cascadin g is not supporte d.
l When the LBBPc, LBBPd1, or UBBPd3 is configure d: 20
l When the rate at the CPRI port is 2.5 Gbit/s: – Three levels are suppo rted if the cell band width is less than or equal to 5 MHz. – Two levels are suppo rted if the cell band width is 10 MHz.
l When the LBBPd2 or UBBPd4 is configure d: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configure d: – Cell quanti ty ≤ 3: 40 – Cell quanti ty ≥ 4: 20
– Casca ding
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Type
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
is not recom mend ed if the cell band width is greate r than or equal to 15 MHz.
Antenna Capability The following table lists the antenna capability of an RRU3203. Table 6-372 Antenna capability of an RRU3203 Type
TMA Support
Supported RET Antennas
RRU3203
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.18 RRU3220 Technical Specifications An RRU3220, which is a remote radio unit for LTE FDD, supports two carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3220.
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Table 6-373 Modes and frequency bands supported by an RRU3220 Type
Mode
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
RRU3220
LTE FDD
DD 800 (band 20)
832 to 847
791 to 806
842 to 862
801 to 821
RF Specifications Table 6-374 lists radio frequency (RF) specifications of an RRU3220. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard.
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Table 6-374 RF specifications of an RRU3220 Type
RRU3 220
Trans mit and Recei ve Chan nels
Capacity
2T2R
Two carriers.
Receiver Sensitivity (dBm) Receiver Sensitivi ty with One Antenna
Receiver Sensitivi ty with Two Antenna s
-106.1
-108.9
l One carrier with a bandwidth of 1.4, 3, 5, 10, 15, or 20 MHz. l Two carriers (high 20 MHz): the bandwidth per carrier is 10 MHz.
Output Power
Power Consum ption
The RRU3220 supports the maximum power configurat ion 2 x 40 W. For typical configurat ions, see the Output power for the RRU3220 (LTE FDD, DD 800 MHz) table.
See the RRU3220 sheet in 3900 Series Base Station Power Consumpt ion Specificati ons.
For typical PA configurat ions, see Typical Power Configurat ion for RRU3220 in 3900 Series Base Station Initial Configurat ion Guide.
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NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-375 Output power for the RRU3220 (LTE FDD, DD 800 MHz) Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 40
1.4, 3, 5, 10, 15, 20
2 (MIMO)
2 x 20
10
Engineering Specifications The following table lists the equipment specifications of an RRU3220. Table 6-376 Equipment specifications of an RRU3220 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3220
-48 V DC; voltage range: -57 V DC to -36 V DC
l 400 mm x 220 mm x 140 mm (12 L, without the housing)
l ≤ 13.5 (without the housing)
l 400 mm x 240 mm x 160 mm (15 L, with the housing)
l ≤ 15 (with the housing)
The following table lists the environmental specifications of an RRU3220. Table 6-377 Environmental specifications of an RRU3220 Type
Operating Temperature
Relative Humidity
Absolute Humidity
Atmosph eric Pressure
Storage Time
RRU32 20
l With solar radiation of 1120 W/m2: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommen ded that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiation: -40°C to +55°C
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The following table lists the compliance standards for an RRU3220. Table 6-378 Compliance standards for an RRU3220 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3220
l 3GPP TS 36.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-379 lists the surge protection specifications of ports on an RRU3220. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-379 Surge protection specifications of ports on an RRU3220 Port
Usage Scenario
Surge Protection Mode
Specification
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Surge current
RF port
RET port
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Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
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Port
Usage Scenario
Surge Protection Mode
Specification
Alarm port
Applicable to all scenarios
Surge current
Differential mode
3 kA
Common mode
5 kA
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3220.
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Table 6-380 Specifications of CPRI ports on an RRU3220 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3220
2
1.25 or 2.5
Star, chain, or ring
l When the rate at the CPRI port is 1.25 Gbit/s: Cascadin g is not supporte d.
l When the LBBPc, LBBPd1, or UBBPd3 is configure d: 20
l When the rate at the CPRI port is 2.5 Gbit/s: – Three levels are suppo rted if the cell band width is less than or equal to 5 MHz. – Two levels are suppo rted if the cell band width is 10 MHz.
l When the LBBPd2 or UBBPd4 is configure d: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configure d: – Cell quanti ty ≤ 3: 40 – Cell quanti ty ≥ 4: 20
– Casca ding
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Type
6 Product Specifications
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
is not recom mend ed if the cell band width is greate r than or equal to 15 MHz.
Antenna Capability The following table lists the antenna capability of an RRU3220. Table 6-381 Antenna capability of an RRU3220 Type
TMA Support
Supported RET Antennas
RRU3220
Not supported
AISG2.0 and AISG1.1
NOTE
l When an RRU3220 uses a tower mounted amplifier (TMA), a bias tee (BT) is required. l For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.19 RRU3220E Technical Specifications The RRU3220E is a type of low-power RRU. It applies to continuous coverage solutions for micro base stations in high traffic hotspots. The RRU3220E features characteristics such as easy site acquisition and easy deployment. In addition, multiple RRU3220Es can be combined to form a multimode RRU.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3220E.
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Table 6-382 Modes and frequency bands supported by an RRU3220E Type
Mode
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
RRU3220 E
LTE FDD
1800 (band 3)
1710 to 1770
1805 to 1865
RF Specifications Table 6-383 lists radio frequency (RF) specifications of an RRU3220E. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard.
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Table 6-383 RF specifications of an RRU3220E Type
RRU3 220E
Trans mit and Recei ve Chan nels
Capacity
2T2R
Each RRU3220E supports one carrier with a bandwidth of 5, 10, 15, or 20 MHz.
Receiver Sensitivity (dBm) Receiver Sensitivi ty with One Antenna
Receiver Sensitivi ty with Two Antenna s
-103.0
-105.8
Output Power
Power Consum ption
The RRU3220 E supports the maximum power configurat ion 2 x 5 W. For typical configurat ions, see the Output power for the RRU3220 E (LTE FDD, 1800 MHz) table.
When the output power is 2 x 5 W, the power consumpti on of an RRU3220 E is as follows: l Typical Power Consu mption : 70 W l Maxim um Power Consu mption : 90 W
For typical PA configurat ions, see Typical Power Configurat ion for RRU3220 E in 3900 Series Base Station Initial Configura tion Guide.
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NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-384 Output power for the RRU3220E (LTE FDD, 1800 MHz) Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2x5
5, 10, 15, 20
Engineering Specifications The following table lists the equipment specifications of an RRU3220E. Table 6-385 Equipment specifications of an RRU3220E Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3220 E
l 220 V AC singlephase; voltage range: 176 V AC to 290 V AC
290 mm x 210 mm x 60 mm (3.6 L, without antennas)
4.5 kg (without antennas)
l 110 V AC dualphase; voltage range: 90/180 V AC to 135/270 V AC
The following table lists the environmental specifications of an RRU3220E.
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Table 6-386 Environmental specifications of an RRU3220E Type
Operating Temperature
Relative Humidity
Absolute Humidity
Atmosph eric Pressure
Storage Time
RRU322 0E
l With solar radiation: – 40°C to +45°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommen ded that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiation: – 40°C to +50°C
The following table lists the compliance standards for an RRU3220E. Table 6-387 Compliance standards for an RRU3220E Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3220
l 3GPP TS 36.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-388 lists the surge protection specifications of ports on an RRU3220E. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-388 Surge protection specifications of ports on an RRU3220E
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Port
Usage Scenario
Surge Protection Mode
Specification
Power supply port
Applicable to all scenarios
Surge
6 kV (1.2/50 μs)
Differential mode
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Port
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Usage Scenario
Surge Protection Mode
Surge current
RF port
Applicable to all scenarios
Surge current
Specification
Common mode
6 kV (1.2/50 μs)
Differential mode
20 kA
Common mode
20 kA
Differential mode
5 kA
Common mode
20 kA
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3220E.
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Table 6-389 Specifications of CPRI ports on an RRU3220E Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3220E
2
2.5 or 4.9
Star or chain
l When the rate at the CPRI port is 2.5 Gbit/s:
l When the LBBPc, LBBPd1, or UBBPd3 is configure d: 20
– Four levels are suppo rted if the cell band width is less than or equal to 5 MHz. – Two levels are suppo rted if the cell band width is 10 MHz. – Casca ding is not suppo rted if the cell band width is greate r than
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l When the LBBPd2 or UBBPd4 is configure d: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configure d: – Cell quanti ty ≤ 3: 40 – Cell quanti ty ≥ 4: 20
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Type
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
or equal to 15 MHz. l When the data rate at the CPRI port is 4.9 Gbit/s: – Four levels are suppo rted. – Six levels are suppo rted if the cell band width is less than or equal to 10 MHz.
Antenna Capability The following table lists the antenna capability of an RRU3220E. Table 6-390 Antenna capability of an RRU3220E
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Type
TMA Support
Supported RET Antennas
RRU3220E
Not supported
Not supported
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6.3.20 RRU3221 Technical Specifications An RRU3221, which is a remote radio unit for LTE FDD, supports a maximum of two carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3221. Table 6-391 Modes and frequency bands supported by an RRU3221 Type
Mode
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
RRU3221
LTE FDD
2600 (band 7)
2500 to 2570
2620 to 2690
RF Specifications Table 6-392 lists radio frequency (RF) specifications of an RRU3221. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard.
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Table 6-392 RF specifications of an RRU3221 Type
RRU3 221
Trans mit and Recei ve Chan nels
Capacity
2T2R
Two carriers. The bandwidth per carrier is 5, 10, 15, or 20 MHz; the total bandwidth between the maximum frequency and the minimum frequency of the spectrums for two carriers does not exceed 40 MHz.
Receiver Sensitivity (dBm) Receiver Sensitivi ty with One Antenna
Receiver Sensitivi ty with Two Antenna s
-106.0
-108.8
Output Power
Power Consum ption
The RRU3221 supports the maximum power configurat ion 2 x 40 W. For typical configurat ions, see the Output power for the RRU3221 (LTE FDD, 2600 MHz) table.
See the RRU3221 sheet in 3900 Series Base Station Power Consumpt ion Specificati ons.
For typical PA configurat ions, see Typical Power Configurat ion for RRU3221 in 3900 Series Base Station Initial Configurat ion Guide.
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NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-393 Output power for the RRU3221 (LTE FDD, 2600 MHz) Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 40
5, 10, 15, 20
2 (MIMO)
2 x 20
5, 10, 15, 20
Engineering Specifications The following table lists the equipment specifications of an RRU3221. Table 6-394 Equipment specifications of an RRU3221 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3221
-48 V DC; voltage range: -57 V DC to -36 V DC
l 480 mm x 270 mm x 140 mm (18 L, without the housing)
l ≤ 20 (without the housing)
NOTE The RRU3221 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
l 485 mm x 300 mm x 170 mm (25 L, with the housing)
l ≤ 22 (with the housing)
The following table lists the environmental specifications of an RRU3221.
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Table 6-395 Environmental specifications of an RRU3221 Type
Operating Temperature
Relative Humidity
Absolute Humidity
Atmosph eric Pressure
Storage Time
RRU32 21
l With solar radiation of 1120 W/m2: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommen ded that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiation: -40°C to +55°C
The following table lists the compliance standards for an RRU3221. Table 6-396 Compliance standards for an RRU3221 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3221
l 3GPP TS 36.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-397 lists the surge protection specifications of ports on an RRU3221. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-397 Surge protection specifications of ports on an RRU3221
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Port
Usage Scenario
Surge Protection Mode
Specification
Power supply port
Applicable to all scenarios
Surge
2 kV (1.2/50 μs)
Differential mode
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Port
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Usage Scenario
Surge Protection Mode
Surge current
RF port
RET port
Alarm port
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Specification
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Differential mode
3 kA
Common mode
5 kA
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3221.
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Table 6-398 Specifications of CPRI ports on an RRU3221 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3221
2
1.25, 2.5, or 4.9
Star, chain, or ring
l When the rate at the CPRI port is 1.25 Gbit/s: Cascadin g is not supporte d.
l When the LBBPc, LBBPd1, or UBBPd3 is configure d: 20
l When the rate at the CPRI port is 2.5 Gbit/s: – Three levels are suppo rted if the cell band width is less than or equal to 5 MHz. – Two levels are suppo rted if the cell band width is 10 MHz.
l When the LBBPd2 or UBBPd4 is configure d: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configure d: – Cell quanti ty ≤ 3: 40 – Cell quanti ty ≥ 4: 20
– Casca ding
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Type
6 Product Specifications
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
is not recom mend ed if the cell band width is greate r than or equal to 15 MHz. l When the rate at the CPRI port is 4.9 Gbit/s: – Four levels are suppo rted if the cell band width is less than or equal to 10 MHz. – Two levels are suppo rted if the cell band width is
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Type
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
greate r than or equal to 15 MHz.
Antenna Capability The following table lists the antenna capability of an RRU3221. Table 6-399 Antenna capability of an RRU3221 Type
TMA Support
Supported RET Antennas
RRU3221
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.21 RRU3222 Technical Specifications An RRU3222, which is a remote radio unit for LTE FDD, supports two carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3222. Table 6-400 Modes and frequency bands supported by an RRU3222 Type
Mode
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
RRU3222
LTE FDD
DD 800 (band 20)
832 to 862
791 to 821
RF Specifications Table 6-401 lists radio frequency (RF) specifications of an RRU3222. Issue 14 (2016-01-30)
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NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard.
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Table 6-401 RF specifications of an RRU3222 Type
RRU3 222
Trans mit and Recei ve Chan nels
Capacity
2T2R
Two carriers.
Receiver Sensitivity (dBm) Receiver Sensitivi ty with One Antenna
Receiver Sensitivi ty with Two Antenna s
-106.4
-109.2
l One carrier with a bandwidth of 5, 10, 15, or 20 MHz. l Two carriers: the continuous bandwidth of the two carriers is 10 MHz+10 MHz.
Output Power
Power Consum ption
The RRU3222 supports the maximum power configurat ion 2 x 40 W. For typical configurat ions, see the Output power for the RRU3222 (LTE FDD, DD 800 MHz) table.
See the RRU3222 sheet in 3900 Series Base Station Power Consumpt ion Specificati ons.
For typical PA configurat ions, see Typical Power Configurat ion for RRU3222 in 3900 Series Base Station Initial Configurat ion Guide.
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NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-402 Output power for the RRU3222 (LTE FDD, DD 800 MHz) Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 40
1.4, 3, 5, 10, 15, 20
2 (MIMO)
2 x 20
10
Engineering Specifications The following table lists the equipment specifications of an RRU3222. Table 6-403 Equipment specifications of an RRU3222 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3222
-48 V DC; voltage range: -57 V DC to -36 V DC
l 480 mm x 270 mm x 140 mm (18 L, without the housing)
l ≤ 17.5 (without the housing)
l 485 mm x 300 mm x 170 mm (25 L, with the housing)
l ≤ 20 (with the housing)
The following table lists the environmental specifications of an RRU3222. Table 6-404 Environmental specifications of an RRU3222 Type
Operating Temperature
Relative Humidity
Absolute Humidity
Atmosph eric Pressure
Storage Time
RRU322 2
l With solar radiation of 1120 W/m2: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommen ded that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiation: -40°C to +55°C
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The following table lists the compliance standards for an RRU3222. Table 6-405 Compliance standards for an RRU3222 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3222
l 3GPP TS 36.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-406 lists the surge protection specifications of ports on an RRU3222. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-406 Surge protection specifications of ports on an RRU3222 Port
Usage Scenario
Surge Protection Mode
Specification
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Differential mode
3 kA
Surge current
RF port
RET port
Alarm port
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Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
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Port
6 Product Specifications
Usage Scenario
Surge Protection Mode Common mode
Specification 5 kA
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3222.
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Table 6-407 Specifications of CPRI ports on an RRU3222 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3222
2
1.25 or 2.5
Star, chain, or ring
l When the rate at the CPRI port is 1.25 Gbit/s: Cascadin g is not supporte d.
l When the LBBPc, LBBPd1, or UBBPd3 is configure d: 20
l When the rate at the CPRI port is 2.5 Gbit/s: – Three levels are suppo rted if the cell band width is less than or equal to 5 MHz. – Two levels are suppo rted if the cell band width is 10 MHz.
l When the LBBPd2 or UBBPd4 is configure d: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configure d: – Cell quanti ty ≤ 3: 40 – Cell quanti ty ≥ 4: 20
– Casca ding
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Type
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
is not recom mend ed if the cell band width is greate r than or equal to 15 MHz.
Antenna Capability The following table lists the antenna capability of an RRU3222. Table 6-408 Antenna capability of an RRU3222 Type
TMA Support
Supported RET Antennas
RRU3222
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.22 RRU3229 Technical Specifications An RRU3229, which is a remote radio unit for LTE FDD, supports a maximum of two carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3229.
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Table 6-409 Modes and frequency bands supported by an RRU3229 Type
Mode
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
RRU3229
LTE FDD
2600 (band 7)
2500 to 2570
2620 to 2690
RF Specifications Table 6-410 lists radio frequency (RF) specifications of an RRU3229. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard.
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Table 6-410 RF specifications of an RRU3229 Type
RRU3 229
Trans mit and Recei ve Chan nels
Capacity
2T2R
Two carriers. The bandwidth per carrier is 5, 10, 15, or 20 MHz; the total bandwidth between the maximum frequency and the minimum frequency of the spectrums for two carriers does not exceed 40 MHz.
Receiver Sensitivity (dBm) Receiver Sensitivi ty with One Antenna
Receiver Sensitivi ty with Two Antenna s
-106.0
-108.8
Output Power
Power Consum ption
The RRU3229 supports the maximum power configurati on 2 x 60 W. For typical configurati ons, see the Output power for the RRU3229 (LTE FDD, 2600 MHz) table.
See the RRU3229 sheet in 3900 Series Base Station Power Consumpt ion Specificati ons.
For typical PA configurati ons, see Typical Power Configurat ion for RRU3229 in 3900 Series Base Station Initial Configurat ion Guide.
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NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-411 Output power for the RRU3229 (LTE FDD , 2600 MHz) Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 60
10, 15, 20
2 (MIMO)
2 x 30
5, 10, 15, 20
Engineering Specifications The following table lists the equipment specifications of an RRU3229. Table 6-412 Equipment specifications of an RRU3229 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3229
-48 V DC; voltage range: -57 V DC to -36 V DC
l 480 mm x 270 mm x 140 mm (18 L, without the housing)
l ≤ 20 (without the housing)
NOTE The RRU3229 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
l 485 mm x 300 mm x 170 mm (25 L, with the housing)
l ≤ 22 (with the housing)
The following table lists the environmental specifications of an RRU3229.
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Table 6-413 Environmental specifications of an RRU3229 Type
Operating Temperature
Relative Humidity
Absolute Humidity
Atmosph eric Pressure
Storage Time
RRU32 29
l With solar radiation of 1120 W/m2: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommen ded that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiation: -40°C to +55°C
The following table lists the compliance standards for an RRU3229. Table 6-414 Compliance standards for an RRU3229 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3229
l 3GPP TS 36.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-415 lists the surge protection specifications of ports on an RRU3229. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
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Table 6-415 Surge protection specifications of ports on an RRU3229 Port
Usage Scenario
Surge Protection Mode
Specification
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Differential mode
3 kA
Common mode
5 kA
Surge current
RF port
RET port
Alarm port
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3229.
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Table 6-416 Specifications of CPRI ports on an RRU3229 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3229
2
1.25, 2.5, or 4.9
Star, chain, or ring
l When the rate at the CPRI port is 1.25 Gbit/s: Cascadin g is not supporte d.
l When the LBBPc, LBBPd1, or UBBPd3 is configure d: 20
l When the rate at the CPRI port is 2.5 Gbit/s: – Three levels are suppo rted if the cell band width is less than or equal to 5 MHz. – Two levels are suppo rted if the cell band width is 10 MHz.
l When the LBBPd2 or UBBPd4 is configure d: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configure d: – Cell quanti ty ≤ 3: 40 – Cell quanti ty ≥ 4: 20
– Casca ding
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
is not recom mend ed if the cell band width is greate r than or equal to 15 MHz. l When the rate at the CPRI port is 4.9 Gbit/s: – Four levels are suppo rted if the cell band width is less than or equal to 10 MHz. – Two levels are suppo rted if the cell band width is
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
greate r than or equal to 15 MHz.
Antenna Capability The following table lists the antenna capability of an RRU3229. Table 6-417 Antenna capability of an RRU3229 Type
TMA Support
Supported RET Antennas
RRU3229
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.23 RRU3240 Technical Specifications An RRU3240, which is a remote radio unit for LTE FDD, supports a maximum of two carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3240. Table 6-418 Modes and frequency bands supported by an RRU3240 Type
Mode
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
RRU3240
LTE FDD
2600 (band 7)
2500 to 2570
2620 to 2690
RF Specifications Table 6-419 lists radio frequency (RF) specifications of an RRU3240. Issue 14 (2016-01-30)
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NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard.
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Table 6-419 RF specifications of an RRU3240 Type
RRU3 240
Trans mit and Recei ve Chan nels
Capacity
2T4R
Two carriers. The bandwidth per carrier is 5, 10, 15, or 20 MHz; the total bandwidth between the maximum frequency and the minimum frequency of the spectrums for two carriers does not exceed 40 MHz.
Receiver Sensitivity (dBm) Receiver Sensitivi ty with One Antenna
Receiver Sensitivi ty with Two Antenna s
-106.0
-108.8
Output Power
Power Consum ption
The RRU3240 supports the maximum power configurat ion 2 x 40 W. For typical configurat ions, see the Output power for the RRU3240 (LTE FDD, 2600MHz ) table.
See the RRU3240 sheet in 3900 Series Base Station Power Consumpt ion Specificati ons.
For typical PA configurat ions, see Typical Power Configurat ion for RRU3240 in 3900 Series Base Station Initial Configurat ion Guide.
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NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-420 Output power for the RRU3240 (LTE FDD, 2600 MHz) Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 40
5, 10, 15, 20
2 (MIMO)
2 x 20
5, 10, 15, 20
Engineering Specifications The following table lists the equipment specifications of an RRU3240. Table 6-421 Equipment specifications of an RRU3240 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3240
-48 V DC; voltage range: -57 V DC to -36 V DC
l 480 mm x 270 mm x 140 mm (18 L, without the housing)
l ≤ 20 (without the housing)
NOTE The RRU3240 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
l 485 mm x 300 mm x 170 mm (25 L, with the housing)
l ≤ 22 (with the housing)
The following table lists the environmental specifications of an RRU3240.
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Table 6-422 Environmental specifications of an RRU3240 Type
Operating Temperature
Relative Humidity
Absolute Humidity
Atmosph eric Pressure
Storage Time
RRU32 40
l With solar radiation of 1120 W/m2: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommen ded that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiation: -40°C to +55°C
The following table lists the compliance standards for an RRU3240. Table 6-423 Compliance standards for an RRU3240 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3240
l 3GPP TS 36.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-424 lists the surge protection specifications of ports on an RRU3240. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
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Table 6-424 Surge protection specifications of ports on an RRU3240 Port
Usage Scenario
Surge Protection Mode
Specification
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Differential mode
250 A
Common mode
250 A
Surge current
RF port
RET port
Alarm port
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3240.
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Table 6-425 Specifications of CPRI ports on an RRU3240 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3240
2
1.25, 2.5, or 4.9
Star, chain, or ring
l When the rate at the CPRI port is 1.25 Gbit/s: Cascadin g is not supporte d.
l When the LBBPc, LBBPd1, or UBBPd3 is configure d: 20
l When the rate at the CPRI port is 2.5 Gbit/s: – Two levels are suppo rted if the cell band width is less than or equal to 5 MHz. – Casca ding is not recom mend ed if the cell band width is greate r than
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l When the LBBPd2 or UBBPd4 is configure d: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configure d: – Cell quanti ty ≤ 3: 40 – Cell quanti ty ≥ 4: 20
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
or equal to 10 MHz. l When the rate at the CPRI port is 4.9 Gbit/s: – Two levels are suppo rted if the cell band width is less than or equal to 10 MHz. – Casca ding is not recom mend ed if the cell band width is greate r than or equal to 15 MHz.
Antenna Capability The following table lists the antenna capability of an RRU3240. Issue 14 (2016-01-30)
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Table 6-426 Antenna capability of an RRU3240 Type
TMA Support
Supported RET Antennas
RRU3240
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.24 RRU3249 Technical Specifications An RRU3249, which is a remote radio unit for LTE FDD, supports a maximum of two carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3249. Table 6-427 Modes and frequency bands supported by an RRU3249 Type
Mode
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
RRU3249
LTE FDD
700 (band 12)
699 to 716
729 to 746
RF Specifications Table 6-428 lists radio frequency (RF) specifications of an RRU3249. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard.
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Table 6-428 RF specifications of an RRU3249 Type
RRU3 249
Trans mit and Recei ve Chan nels
Capacity
2T2R
Two carriers. The bandwidth per carrier is 5, 10, 15, or 20 MHz.
Receiver Sensitivity (dBm) Receiver Sensitivi ty with One Antenna
Receiver Sensitivit y with Two Antennas
-105.8
-108.6
Output Power
Power Consum ption
The RRU3249 supports the maximum power configurat ion 2 x 60 W. For typical configurat ions, see the Output power for the RRU3249 (LTE FDD, 2600MHz ) table.
See the RRU3249 sheet in 3900 Series Base Station Power Consumpt ion Specificati ons.
For typical PA configurat ions, see Typical Power Configurat ion for RRU3249 in 3900 Series Base Station Initial Configurat ion Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
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Table 6-429 Output power for the RRU3249 (LTE FDD, 700 MHz) Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2x40
5
1 (MIMO)
2x60
10, 15
2 (MIMO)
l carrier 1: 2x30
l carrier 1: 5
l carrier 2: 2x30
l carrier 2: 5
l carrier 1: 20
l carrier 1: 5
l carrier 2: 40
l carrier 2: 10
2 (MIMO)
Engineering Specifications The following table lists the equipment specifications of an RRU3249. Table 6-430 Equipment specifications of an RRU3249 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3249
-48 V DC; voltage range: -57 V DC to -36 V DC
400 mm x 300 mm x 150 mm (18 L, without the housing)
≤ 20 (without the housing)
NOTE The RRU3249 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
The following table lists the environmental specifications of an RRU3249.
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Table 6-431 Environmental specifications of an RRU3249 Type
Operating Temperature
Relative Humidity
Absolute Humidity
Atmosph eric Pressure
Storage Time
RRU32 49
l With solar radiation of 1120 W/m2: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommen ded that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiation: -40°C to +55°C
The following table lists the compliance standards for an RRU3249. Table 6-432 Compliance standards for an RRU3249 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3249
l 3GPP TS 36.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-433 lists the surge protection specifications of ports on an RRU3249. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
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Table 6-433 Surge protection specifications of ports on an RRU3249 Port
Usage Scenario
Surge Protection Mode
Specification
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Differential mode
250 A
Common mode
250 A
Surge current
RF port
RET port
Alarm port
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3249.
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Table 6-434 Specifications of CPRI ports on an RRU3249 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3249
2
1.25, 2.5, 4.9, or 9.8
Star, chain, or load sharing
l When the rate at the CPRI port is 1.25 Gbit/s: Cascadin g is not supporte d.
l When the LBBPc, LBBPd1, or UBBPd3 is configure d: 20
l When the rate at the CPRI port is 2.5 Gbit/s: – Four levels are suppo rted if the cell band width is less than or equal to 5 MHz. – Two levels are suppo rted if the cell band width is 10 MHz.
l When the LBBPd2 or UBBPd4 is configure d: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configure d: – Cell quanti ty ≤ 3: 40 – Cell quanti ty ≥ 4: 20
– Casca ding
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
is not suppo rted if the cell band width is greate r than or equal to 15 MHz. l When the rate at the CPRI port is 4.9 Gbit/s: – Four levels are suppo rted if the cell band width is less than or equal to 10 MHz. – Two levels are suppo rted if the cell band width is greate
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Type
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
r than or equal to 15 MHz. l When the rate at the CPRI port is 9.8 Gbit/s: Four levels are supporte d.
Antenna Capability The following table lists the antenna capability of an RRU3249. Table 6-435 Antenna capability of an RRU3249 Type
TMA Support
Supported RET Antennas
RRU3249
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.25 RRU3260 Technical Specifications An RRU3260, which is a remote radio unit for LTE FDD, supports two carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3260.
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Table 6-436 Modes and frequency bands supported by an RRU3260 Type
Mode
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
RRU3260
LTE FDD
2600 (band 7)
2500 to 2570
2620 to 2690
RF Specifications Table 6-437 lists radio frequency (RF) specifications of an RRU3260. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard.
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Table 6-437 RF specifications of an RRU3260 Type
RRU3 260
Trans mit and Recei ve Chan nels
Capacity
2T4R
Two carriers. The bandwidth per carrier is 5, 10, 15, or 20 MHz; the total bandwidth between the maximum frequency and the minimum frequency of the spectrums for two carriers does not exceed 50 MHz.
Receiver Sensitivity (dBm) Receiver Sensitivit y with One Antenna
Receiver Sensitivit y with Two Antennas
-106.5
-109.3
Output Power
Power Consump tion
The RRU3260 supports the maximum power configurati on 2 x 40 W. For typical configurati ons, see the Output power for the RRU3260 (LTE FDD, 2600 MHz) table.
See the RRU3260 sheet in 3900 Series Base Station Power Consumpti on Specificati ons.
For typical PA configurati ons, see Typical Power Configurati on for RRU3260 in 3900 Series Base Station Initial Configurati on Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
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Table 6-438 Output power for the RRU3260 (LTE FDD, 2600 MHz) Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 40
5,10,15,20
2 (MIMO)
2 x 20
5,10,15,20
2 (MIMO)
l carrier 1: 2 x 13
l carrier 1: 5,10
l carrier 2: 2 x 27
l carrier 2: 10,20
l carrier 1: 2 x 10
l carrier 1: 5
l carrier 2: 2 x 30
l carrier 2: 15
l carrier 1: 2 x 8
l carrier 1: 5
l carrier 2: 2 x 32
l carrier 2: 20
l carrier 1: 2 x 16
l carrier 1: 10
l carrier 2: 2 x 24
l carrier 2: 15
l carrier 1: 2 x 17
l carrier 1: 15
l carrier 2: 2 x 23
l carrier 2: 20
2 (MIMO)
2 (MIMO)
2 (MIMO)
2 (MIMO)
Engineering Specifications The following table lists the equipment specifications of an RRU3260. Table 6-439 Equipment specifications of an RRU3260 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3260
-48 V DC; voltage range: -57 V DC to -36 V DC
400 mm x 300 mm x 100 mm (12 L, without the housing)
≤ 15 (without the housing)
NOTE The RRU3260 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
The following table lists the environmental specifications of an RRU3260.
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Table 6-440 Environmental specifications of an RRU3260 Type
Operating Temperature
Relative Humidity
Absolute Humidity
Atmosph eric Pressure
Storage Time
RRU32 60
l With solar radiation of 1120 W/m2: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommen ded that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiation: -40°C to +55°C NOTE According to the installation scenario, traffic load, and carrier configuration, the output power of some RRUs may temporarily decrease when they work in the highest 10°C temperature range.
The following table lists the compliance standards for an RRU3260. Table 6-441 Compliance standards for an RRU3260 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3260
l 3GPP TS 36.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-442 lists the surge protection specifications of ports on an RRU3260. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
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Table 6-442 Surge protection specifications of ports on an RRU3260 Port
Usage Scenario
Surge Protection Mode
Specification
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Differential mode
3 kA
Common mode
5 kA
Surge current
RF port
RET port
Alarm port
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3260.
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Table 6-443 Specifications of CPRI ports on an RRU3260 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3260
2
1.25, 2.5, or 4.9
Star, chain, or ring
l When the rate at the CPRI port is 1.25 Gbit/s: Cascadin g is not supporte d.
l When the LBBPc, LBBPd1, or UBBPd3 is configure d: 20
l When the rate at the CPRI port is 2.5 Gbit/s: – Two levels are suppo rted if the cell band width is less than or equal to 5 MHz. – Casca ding is not recom mend ed if the cell band width is greate r than
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l When the LBBPd2 or UBBPd4 is configure d: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configure d: – Cell quanti ty ≤ 3: 40 – Cell quanti ty ≥ 4: 20
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Type
6 Product Specifications
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
or equal to 10 MHz. l When the rate at the CPRI port is 4.9 Gbit/s: – Two levels are suppo rted if the cell band width is less than or equal to 10 MHz. – Casca ding is not recom mend ed if the cell band width is greate r than or equal to 15 MHz.
Antenna Capability The following table lists the antenna capability of an RRU3260. Issue 14 (2016-01-30)
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Table 6-444 Antenna capability of an RRU3260 Type
TMA Support
Supported RET Antennas
RRU3260
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.26 RRU3262 Technical Specifications An RRU3262, which is a remote radio unit for LTE FDD, supports three carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3262. Table 6-445 Modes and frequency bands supported by an RRU3262 Type
Mode
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
RRU3262
LTE FDD
2600 (band 7)
2500 to 2570
2620 to 2690
RF Specifications Table 6-446 lists radio frequency (RF) specifications of an RRU3262. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard.
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Table 6-446 RF specifications of an RRU3262 Type
RRU3 262
Trans mit and Recei ve Chan nels
Capacity
2T4R
Three carriers. The bandwidth per carrier is 5, 10, 15, or 20 MHz.
Receiver Sensitivity (dBm) 1-Way receiver sensitivit y
2-Way receiver sensitivit y
-106.5
-109.3
Output Power
Power Consum ption
The RRU3262 supports the maximum power configurat ion 2 x 60 W. For typical configurat ions, see the Output power for the RRU3262 (LTE FDD, 2600 MHz) table.
See the RRU3262 sheet in 3900 Series Base Station Power Consumpt ion Specificati ons.
For typical PA configurat ions, see Typical Power Configurat ion for RRU3262 in 3900 Series Base Station Initial Configura tion Guide.
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NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-447 Output power for the RRU3262 (LTE FDD, 2600 MHz) Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE(FDD)
1(MIMO)
2 x 40
5
1(MIMO)
2 x 60
10, 15, 20
2(MIMO)
l carrier 1: 2 x 30
5, 10, 15, 20
l carrier 2: 2 x 30 2(MIMO)
2(MIMO)
2(MIMO)
2(MIMO)
2(MIMO)
3(MIMO)
l carrier 1: 2 x 20
l carrier 1: 5, 10
l carrier 2: 2 x 40
l carrier 2: 10, 20
l carrier 1: 2 x 15
l carrier 1: 5
l carrier 2: 2 x 45
l carrier 2: 15
l carrier 1: 2 x 12
l carrier 1: 5
l carrier 2: 2 x 48
l carrier 2: 20
l carrier 1: 2 x 24
l carrier 1: 10
l carrier 2: 2 x 36
l carrier 2: 15
l carrier 1: 2 x 26
l carrier 1: 15
l carrier 2: 2 x 34
l carrier 2: 20
l carrier 1: 2 x 20
5, 10, 15, 20
l carrier 2: 2 x 20 l carrier 3: 2 x 20 3(MIMO)
3(MIMO)
3(MIMO)
3(MIMO)
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l carrier 1: 2 x 15
l carrier 1: 5, 10
l carrier 2: 2 x 15
l carrier 2: 5, 10
l carrier 3: 2 x 30
l carrier 3: 10, 20
l carrier 1: 2 x 12
l carrier 1: 5
l carrier 2: 2 x 12
l carrier 2: 5
l carrier 3: 2 x 36
l carrier 3: 15
l carrier 1: 2 x 10
l carrier 1: 5
l carrier 2: 2 x 10
l carrier 2: 5
l carrier 3: 2 x 40
l carrier 3: 20
l carrier 1: 2 x 12
l carrier 1: 5
l carrier 2: 2 x 24
l carrier 2: 10
l carrier 3: 2 x 24
l carrier 3: 10
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Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
3(MIMO)
l carrier 1: 2 x 10
l carrier 1: 5
l carrier 2: 2 x 20
l carrier 2: 10
l carrier 3: 2 x 30
l carrier 3: 15
l carrier 1: 2 x 9
l carrier 1: 5
l carrier 2: 2 x 17
l carrier 2: 10
l carrier 3: 2 x 34
l carrier 3: 20
l carrier 1: 2 x 9
l carrier 1: 5
l carrier 2: 2 x 26
l carrier 2: 15
l carrier 3: 2 x 26
l carrier 3: 15
l carrier 1: 2 x 8
l carrier 1: 5
l carrier 2: 2 x 23
l carrier 2: 15
l carrier 3: 2 x 30
l carrier 3: 20
l carrier 1: 2 x 7
l carrier 1: 5
l carrier 2: 2 x 27
l carrier 2: 20
l carrier 3: 2 x 27
l carrier 3: 20
l carrier 1: 2 x 17
l carrier 1: 10
l carrier 2: 2 x 17
l carrier 2: 10
l carrier 3: 2 x 26
l carrier 3: 15
l carrier 1: 2 x 15
l carrier 1: 10
l carrier 2: 2 x 23
l carrier 2: 15
l carrier 3: 2 x 23
l carrier 3: 15
l carrier 1: 2 x 13
l carrier 1: 10
l carrier 2: 2 x 20
l carrier 2: 15
l carrier 3: 2 x 27
l carrier 3: 20
l carrier 1: 2 x 12
l carrier 1: 10
l carrier 2: 2 x 24
l carrier 2: 20
l carrier 3: 2 x 24
l carrier 3: 20
l carrier 1: 2 x 18
l carrier 1: 15
l carrier 2: 2 x 18
l carrier 2: 15
l carrier 3: 2 x 24
l carrier 3: 20
l carrier 1: 2 x 16
l carrier 1: 15
l carrier 2: 2 x 22
l carrier 2: 20
l carrier 3: 2 x 22
l carrier 3: 20
3(MIMO)
3(MIMO)
3(MIMO)
3(MIMO)
3(MIMO)
3(MIMO)
3(MIMO)
3(MIMO)
3(MIMO)
3(MIMO)
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Engineering Specifications The following table lists the equipment specifications of an RRU3262. Table 6-448 Equipment specifications of an RRU3262 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3262
-48 V DC; voltage range: -57 V DC to -36 V DC
400 mm x 300 mm x 100 mm (12 L, without the housing)
≤ 15 (without the housing)
NOTE The RRU3262 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
The following table lists the environmental specifications of an RRU3262. Table 6-449 Environmental specifications of an RRU3262 Type
Operating Temperature
Relative Humidity
Absolute Humidity
Atmosph eric Pressure
Storage Time
RRU32 62
l With solar radiation of 1120 W/m2: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommen ded that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiation: -40°C to +55°C NOTE According to the installation scenario, traffic load, and carrier configuration, the output power of RRU3262 may temporarily decrease when they work in the highest 10°C temperature range.
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The following table lists the compliance standards for an RRU3262. Table 6-450 Compliance standards for an RRU3262 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3262
l 3GPP TS 36.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-451 lists the surge protection specifications of ports on an RRU3262. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-451 Surge protection specifications of ports on an RRU3262 Port
Usage Scenario
Surge Protection Mode
Specification
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Surge current
RF port
RET port
Issue 14 (2016-01-30)
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
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Port
Usage Scenario
Surge Protection Mode
Specification
Alarm port
Applicable to all scenarios
Surge current
Differential mode
3 kA
Common mode
5 kA
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3262.
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Table 6-452 Specifications of CPRI ports on an RRU3262 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3262
2
1.25, 2.5, 4.9, or 9.8
Star, chain, or ring
l When the rate at the CPRI port is 1.25 Gbit/s: Cascadin g is not supporte d.
l When the LBBPc, LBBPd1, or UBBPd3 is configure d: 20
l When the rate at the CPRI port is 2.5 Gbit/s: – Two levels are suppo rted if the cell band width is less than or equal to 5 MHz. – Casca ding is not recom mend ed if the cell band width is greate r than
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l When the LBBPd2 or UBBPd4 is configure d: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configure d: – Cell quanti ty ≤ 3: 40 – Cell quanti ty ≥ 4: 20
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Type
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
or equal to 10 MHz. l When the rate at the CPRI port is 4.9 Gbit/s: – Two levels are suppo rted if the cell band width is less than or equal to 10 MHz. – Casca ding is not recom mend ed if the cell band width is greate r than or equal to 15 MHz. l When the rate at the CPRI port is
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Type
6 Product Specifications
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
9.8 Gbit/s: Four levels are supporte d.
Antenna Capability The following table lists the antenna capability of an RRU3262. Table 6-453 Antenna capability of an RRU3262 Type
TMA Support
Supported RET Antennas
RRU3262
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.27 RRU3268 Technical Specifications An RRU3268, which is a remote radio unit for LTE FDD, supports two carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3268. Table 6-454 Modes and frequency bands supported by an RRU3268 Type
Mode
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
RRU3268
LTE FDD
2600 (band 7)
2500 to 2570
2620 to 2690
700 (band 28)
Band A: 703 to 743
Band A: 758 to 798
Band B: 718 to 748
Band B: 773 to 803
832 to 862
791 to 821
800
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RF Specifications Table 6-455 lists radio frequency (RF) specifications of an RRU3268. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard.
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Table 6-455 RF specifications of an RRU3268 Type
RRU3 268
Trans mit and Recei ve Chan nels
Capacity
2T2R
Two carriers. The bandwidth per carrier is 5, 10, 15, or 20 MHz. l In band 7 of the 2600 MHz frequency band, the total bandwidth between the maximum frequency and the minimum frequency of two carriers on the RRU3268 cannot exceed 50 MHz.
Receiver Sensitivity (dBm) Receiver Sensitivi ty with One Antenna
Receiver Sensitivi ty with Two Antenna s
l 2600 MHz: -106.5
l 2600 MHz: -109.3
l 700 MHz: -106.0
l 700 MHz: -108.8
l 800M Hz: -106.4
l 800M Hz: -109.2
l In band 28 of the 700 MHz frequency band, the total bandwidth between the maximum frequency and the minimum frequency of two carriers on the RRU3268 cannot exceed 25 MHz. l In the 800 MHz frequency band, the total bandwidth between the maximum frequency and
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Output Power
Power Consum ption
The RRU3268 supports the maximum power configurat ion 2 x 40 W. For typical configurat ions, see the Output power for the RRU3268 (LTE FDD, 700 MHz/800 MHz/ 2600 MHz) table.
See the RRU3268 sheet in 3900 Series Base Station Power Consumpt ion Specificati ons.
For typical PA configurat ions, see Typical Power Configurat ion for RRU3268 in 3900 Series Base Station Initial Configurat ion Guide.
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Type
6 Product Specifications
Trans mit and Recei ve Chan nels
Capacity
Receiver Sensitivity (dBm) Receiver Sensitivi ty with One Antenna
Output Power
Receiver Sensitivi ty with Two Antenna s
Power Consum ption
the minimum frequency of two carriers on the RRU3268 cannot exceed 20 MHz.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-456 Output power for the RRU3268 (LTE FDD, 700 MHz/800 MHz/2600 MHz) Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2x40
5,10,15,20
2 (MIMO)
2x20
5,10,15,20
2 (MIMO)
l carrier 1: 2 x 13
l carrier 1: 5,10
l carrier 2: 2 x 27
l carrier 2: 10,20
l carrier 1: 2 x 10
l carrier 1: 5
l carrier 2: 2 x 30
l carrier 2: 15
l carrier 1: 2 x 8
l carrier 1: 5
l carrier 2: 2 x 32
l carrier 2: 20
l carrier 1: 2 x 16
l carrier 1: 10
l carrier 2: 2 x 24
l carrier 2: 15
l carrier 1: 2 x 17
l carrier 1: 15
l carrier 2: 2 x 23
l carrier 2: 20
2 (MIMO)
2 (MIMO)
2 (MIMO)
2 (MIMO)
Engineering Specifications The following table lists the equipment specifications of an RRU3268. Issue 14 (2016-01-30)
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Table 6-457 Equipment specifications of an RRU3268 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3268
-48 V DC; voltage range: -57 V DC to -36 V DC
400 mm x 300 mm x 100 mm (12 L, without the housing)
≤ 14 (without the housing)
NOTE The RRU3268 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
The following table lists the environmental specifications of an RRU3268. Table 6-458 Environmental specifications of an RRU3268 Type
Operating Temperature
Relative Humidity
Absolute Humidity
Atmosph eric Pressure
Storage Time
RRU32 68
l With solar radiation of 1120 W/m2: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommen ded that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiation: -40°C to +55°C NOTE According to the installation scenario, traffic load, and carrier configuration, the output power of some RRUs may temporarily decrease when they work in the highest 10°C temperature range.
The following table lists the compliance standards for an RRU3268. Issue 14 (2016-01-30)
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Table 6-459 Compliance standards for an RRU3268 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3268
l 3GPP TS 36.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-460 lists the surge protection specifications of ports on an RRU3268. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-460 Surge protection specifications of ports on an RRU3268 Port
Usage Scenario
Surge Protection Mode
Specification
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Differential mode
3 kA
Common mode
5 kA
Surge current
RF port
RET port
Alarm port
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Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
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Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3268.
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Table 6-461 Specifications of CPRI ports on an RRU3268 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3268
2
1.25, 2.5, or 4.9
Star, chain, or ring
l When the rate at the CPRI port is 1.25 Gbit/s: Cascadin g is not supporte d.
l When the LBBPc, LBBPd1, or UBBPd3 is configure d: 20
l When the rate at the CPRI port is 2.5 Gbit/s: – Three levels are suppo rted if the cell band width is less than or equal to 5 MHz. – Two levels are suppo rted if the cell band width is 10 MHz.
l When the LBBPd2 or UBBPd4 is configure d: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configure d: – Cell quanti ty ≤ 3: 40 – Cell quanti ty ≥ 4: 20
– Casca ding
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Type
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
is not recom mend ed if the cell band width is greate r than or equal to 15 MHz. l When the rate at the CPRI port is 4.9 Gbit/s: – Four levels are suppo rted if the cell band width is less than or equal to 10 MHz. – Two levels are suppo rted if the cell band width is
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Type
6 Product Specifications
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
greate r than or equal to 15 MHz.
Antenna Capability The following table lists the antenna capability of an RRU3268. Table 6-462 Antenna capability of an RRU3268 Type
TMA Support
Supported RET Antennas
RRU3268
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.28 RRU3269 Technical Specifications An RRU3269, which is a remote radio unit for LTE FDD, supports two bands and a maximum of two carriers.
Supported RATs and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3269. Table 6-463 Modes and frequency bands supported by an RRU3269
Issue 14 (2016-01-30)
Type
Mode
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
RRU3269
LTE FDD
700 (band 12 & band 13)
Band 12: 699 to 715
Band 12: 729 to 745
Band 13: 777 to 787
Band 13: 746 to 756
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RF Specifications Table 6-464 lists the radio frequency (RF) specifications of an RRU3269. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard.
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Table 6-464 RF specifications of an RRU3269 Type
RRU3 269
Trans mit and Recei ve Chan nels
Capacity
2T2R
Two carriers.
Receiver Sensitivity (dBm) Receiver Sensitivi ty with One Antenna
Receiver Sensitivi ty with Two Antenna s
l 700 MHz (band 12): -105.8
l 700 MHz (band 12): -108.6
l 700 MHz (band 13): -106.2
l 700 MHz (band 13): -109.0
Output Power
Power Consum ption
A maximum of 2 x 60 W. For typical configurat ions, see Output Power for the RRU3269 (LTE FDD, 700 MHz (Band 12 & Band 13)).
For details, see the RRU3269 sheet in 3900 Series Base Station Power Consumpt ion Specificati ons.
For details about typical PA configurat ions, see Typical Power Configura tion for RRU3269 in 3900 Series Base Station Initial Configura tion Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
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Table 6-465 Output power for the RRU3269 (LTE FDD, 700 MHz (Band 12& Band 13)) Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO): Band 12
2 x 30
5, 10
1 (MIMO): Band 13
2 x 30
5
2 (MIMO): Band 12
l carrier1: 2 x 30
5
l carrier2: 2 x 30 2 (MIMO): Band 12& Band 13
l carrier1: 2 x 30
5
l carrier2: 2 x 30
Engineering Specifications The following table lists the equipment specifications of an RRU3269. Table 6-466 Equipment specifications of an RRU3269 Type
Input Power
Dimensions (H x W x D)
Weight (kg)
RRU3269
-48 V DC; voltage range: -36 V DC to -57 V DC
400 mm x 300 mm x 150 mm (18 L, without the housing)
≤ 20 kg (without the housing)
NOTE The RRU3269 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
The following table lists the environmental specifications of an RRU3269.
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Table 6-467 Environmental specifications of an RRU3269 Type
Operatin g Temperat ure
Relative Humidity
Absolute Humidity
Atmospher ic Pressure
Storage Time
RRU32 69
l With solar radiatio n of 1120 W/m2: -40ºC to +50ºC
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommende d that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiatio n: -40ºC to +55ºC NOTE According to the installatio n scenario, traffic load, and carrier configurati on, the output power of some RRUs may temporaril y decrease when they work in the highest 10°C temperatur e range.
The following table lists the compliance standards of an RRU3269.
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Table 6-468 Compliance standards of an RRU3269 Type
Operating Environment
Shockproof Protection
Ingress Protection (IP) Rating
RRU3269
l 3GPP TS 36.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-469 lists the surge protection specifications of an RRU3269. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-469 Surge protection specifications of an RRU3269 Port
Applicatio n Scenario
Surge Protection Mode
Surge Protection Specifications
Power supply socket
All scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Differential mode
3 kA
Common mode
5 kA
Surge current
RF port
Issue 14 (2016-01-30)
All scenarios
Remote electrical tilt (RET) antenna port
All scenarios
Alarm port
All scenarios
Surge current
Surge current
Surge current
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CPRI Port Specifications The following table lists the CPRI port specifications of an RRU3269.
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Table 6-470 CPRI port specifications of an RRU3269 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
CPRI Topology
Cascading Capability
Maximum Distance from the BBU (km)
RRU3269
2
1.25, 2.5, 4.9, or 9.8
Star, chain, or load sharing
l When the rate at the CPRI port is 1.25 Gbit/s: Cascadin g is not supporte d.
l When the LBBPc, LBBPd1, or UBBPd3 is configure d: 20
l When the rate at the CPRI port is 2.5 Gbit/s: – Four levels are suppo rted if the cell band width is less than or equal to 5 MHz.
l When the LBBPd2 or UBBPd4 is configure d: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configure d: – Cell quanti ty ≤ 3: 40 – Cell quanti ty ≥ 4: 20
– Two levels are suppo rted if the cell band width is 10 MHz.
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
CPRI Topology
Cascading Capability
Maximum Distance from the BBU (km)
– Casca ding is not suppo rted if the cell band width is greate r than or equal to 15 MHz. l When the rate at the CPRI port is 4.9 Gbit/s: – Four levels are suppo rted if the cell band width is less than or equal to 10 MHz. – Two levels are suppo rted if the cell band
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Type
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
CPRI Topology
Cascading Capability
Maximum Distance from the BBU (km)
width is greate r than or equal to 15 MHz. l When the rate at the CPRI port is 9.8 Gbit/s: Four levels are supporte d.
Antenna Capability The following table lists the antenna capability of an RRU3269. Table 6-471 Antenna capability of an RRU3269 Type
TMA Support
Supported RET Antenna
RRU3269
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.29 RRU3281 Technical Specifications An RRU3281, which is a remote radio unit for LTE FDD, supports two bands and a maximum of three carriers.
Supported RATs and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3281.
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Table 6-472 Modes and frequency bands supported by an RRU3281 Type
Mode
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
RRU3281
LTE FDD
2600 (band 7)
2500 to 2570
2620 to 2690
RF Specifications Table 6-473 lists the radio frequency (RF) specifications of an RRU3281. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard.
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Table 6-473 RF specifications of an RRU3281 Type
RRU3 281
Trans mit and Recei ve Chan nels
Capacity
4T4R
Three carriers.
Receiver Sensitivity (dBm) Receiver Sensitivi ty with One Antenna
Receiver Sensitivi ty with Two Antenna s
-106.3
-109.1
Output Power
Power Consum ption
A maximum of 4 x 40 W. For typical configurat ions, see Output Power for the RRU3281 (LTE FDD, 2600 MHz (Band 7))
For details, see the RRU3281 sheet in 3900 Series Base Station Power Consumpt ion Specificati ons.
For details about typical PA configurat ions, see Typical Power Configura tion for RRU3281 in 3900 Series Base Station Initial Configura tion Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
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Table 6-474 Output power for the RRU3281 (LTE FDD, 2600 MHz) Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
4 x 40
5, 10, 15, 20
1 (MIMO)
4 x 30
5, 10, 15, 20
1 (MIMO)
4 x 20
5, 10, 15, 20
1 (MIMO)
4 x 10
5, 10, 15, 20
2 (MIMO)
4 x 15
5, 10, 15, 20
2 (MIMO)
4 x 20
5, 10, 15, 20
2 (MIMO)
l carrier1: 4 x 30
5, 10, 15, 20
l carrier2: 4 x 10 3 (MIMO)
l carrier1: 4 x 10
5, 10, 15, 20
l carrier2: 4 x 10 l carrier3: 4 x 20 3 (MIMO)
l carrier1: 4 x 10
5, 10, 15, 20
l carrier2: 4 x 15 l carrier3: 4 x 15
Engineering Specifications The following table lists the equipment specifications of an RRU3281. Table 6-475 Equipment specifications of an RRU3281 Type
Input Power
Dimensions (H x W x D)
Weight (kg)
RRU3281
-48 V DC; voltage range: -36 V DC to -57 V DC
400 mm x 300 mm x 150 mm
≤ 21 kg (without the housing)
NOTE The RRU3281 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
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The following table lists the environmental specifications of an RRU3281. Table 6-476 Environmental specifications of an RRU3281 Type
Operatin g Temperat ure
Relative Humidity
Absolute Humidity
Atmospher ic Pressure
Storage Time
RRU32 81
l With solar radiatio n of 1120 W/m2: -40ºC to +50ºC
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommende d that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiatio n: -40ºC to +55ºC NOTE According to the installatio n scenario, traffic load, and carrier configurati on, the output power of some RRUs may temporaril y decrease when they work in the highest 10°C temperatur e range.
The following table lists the compliance standards of an RRU3281.
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Table 6-477 Compliance standards of an RRU3281 Type
Operating Environment
Shockproof Protection
Ingress Protection (IP) Rating
RRU3281
l 3GPP TS 36.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-478 lists the surge protection specifications of an RRU3281. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-478 Surge protection specifications of an RRU3281 Port
Applicatio n Scenario
Surge Protection Mode
Surge Protection Specifications
Power supply socket
All scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Differential mode
3 kA
Common mode
5 kA
Surge current
RF port
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All scenarios
Remote electrical tilt (RET) antenna port
All scenarios
Alarm port
All scenarios
Surge current
Surge current
Surge current
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CPRI Port Specifications The following table lists the CPRI port specifications of an RRU3281.
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Table 6-479 CPRI port specifications of an RRU3281 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
CPRI Topology
Cascading Capability
Maximum Distance from the BBU (km)
RRU3281
2
1.25, 2.5, 4.9, or 9.8
Star, chain, or ring
l When the rate at the CPRI port is 1.25 Gbit/s: Cascadin g is not supporte d.
l When the LBBPc, LBBPd1, or UBBPd3 is configure d: 20
l When the rate at the CPRI port is 2.5 Gbit/s: – Two levels are suppo rted if the cell band width is less than or equal to 5 MHz.
l When the LBBPd2 or UBBPd4 is configure d: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configure d: – Cell quanti ty ≤ 3: 40 – Cell quanti ty ≥ 4: 20
– Casca ding is not recom mend ed if the cell band width is
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Type
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
CPRI Topology
Cascading Capability
Maximum Distance from the BBU (km)
greate r than or equal to 10 MHz. l When the rate at the CPRI port is 4.9 Gbit/s: – Two levels are suppo rted if the cell band width is less than or equal to 10 MHz. – Casca ding is not recom mend ed if the cell band width is greate r than or equal to 15 MHz.
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
CPRI Topology
Cascading Capability
Maximum Distance from the BBU (km)
l When the rate at the CPRI port is 9.8 Gbit/s: – Four levels are suppo rted if the cell band width is less than or equal to 10 MHz. Two levels are suppo rted if the cell band width is greate r than or equal to 15 MHz.
Antenna Capability The following table lists the antenna capability of an RRU3281.
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Table 6-480 Antenna capability of an RRU3281 Type
TMA Support
Supported RET Antenna
RRU3281
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.30 RRU3668 Technical Specifications An RRU3668, which is a remote radio unit for LTE FDD, supports one carrier.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3668. Table 6-481 Modes and frequency bands supported by an RRU3668 Type
Mode
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
RRU3668
LTE FDD
450
452.5 to 457.5
462.5 to 467.5
RF Specifications Table 6-482 lists radio frequency (RF) specifications of an RRU3668. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard.
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Table 6-482 RF specifications of an RRU3668 Type
RRU3 668
Trans mit and Recei ve Chan nels
Capacity
2T2R
One carriers. The bandwidth per carrier is 1.4,3 or 5 MHz.
Receiver Sensitivity (dBm) Receiver Sensitivi ty with One Antenna
Receiver Sensitivi ty with Two Antenna s
-106
-108.8
Output Power
Power Consum ption
For typical configurat ions, see the Output power for the RRU3668 (LTE FDD, 450 MHz) table.
See the RRU3668 sheet in 3900 Series Base Station Power Consumpt ion Specificati ons.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-483 Output power for the RRU3668 (LTE FDD, 450 MHz) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 40
1.4, 3, 5
Engineering Specifications The following table lists the equipment specifications of an RRU3668.
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Table 6-484 Equipment specifications of an RRU3668 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3668
-48 V DC; voltage range: -57 V DC to -36 V DC
400 mm x 300 mm x 150 mm
≤ 25
NOTE The RRU3668 supports AC applications after being configured with an AC/DC power module. For details, see the AC/DC Power Module User Guide.
The following table lists the environmental specifications of an RRU3668. Table 6-485 Environmental specifications of an RRU3668 Type
Operating Temperature
Relative Humidity
Absolute Humidity
Atmospheri c Pressure
RRU3668
l With solar radiation of 1120 W/m2: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
l Without solar radiation: -40°C to +55°C
The following table lists the compliance standards for an RRU3668. Table 6-486 Compliance standards for an RRU3668 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3668
l 3GPP TS 36.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-487 lists the surge protection specifications of ports on an RRU3668. Issue 14 (2016-01-30)
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NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-487 Surge protection specifications of ports on an RRU3668 Port
Usage Scenario
Surge Protection Mode
Specification
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Differential mode
3 kA
Common mode
5 kA
Surge current
RF port
RET port
Alarm port
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3668. Table 6-488 Specifications of CPRI ports on an RRU3668
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Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3668
2
1.25, 2.5 or 4.9
Star, chain, or ring
4
20
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Antenna Capability The following table lists the antenna capability of an RRU3668. Table 6-489 Antenna capability of an RRU3668 Type
TMA Support
Supported RET Antennas
RRU3668
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.31 RRU3841 Technical Specifications An RRU3841, which is a remote radio unit for LTE FDD, supports a maximum of two carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3841. Table 6-490 Modes and frequency bands supported by an RRU3841 Type
Mode
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
RRU384 1
LTE FDD
AWS (band 4)
1710 to 1755
2110 to 2155
RF Specifications Table 6-491 lists radio frequency (RF) specifications of an RRU3841. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard.
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Table 6-491 RF specifications of an RRU3841 Type
RRU3 841
Trans mit and Recei ve Chan nels
Capacity
Receiver Sensitivity (dBm)
4T4R
Two carriers. The bandwidth per carrier is 5, 10, 15, or 20 MHz; the total bandwidth between the maximum frequency and the minimum frequency of the spectrums for two carriers does not exceed 40 MHz.
Receiver Sensitivi ty with One Antenna
Receiver Sensitivi ty with Two Antenna s
-106.3
-109.1
Output Power
Power Consum ption
Output power for the RRU3841 (LTE FDD, AWS)
See the RRU3841 sheet in 3900 Series Base Station Power Consumpt ion Specificati ons.
For typical PA configurat ions, see Typical Power Configurat ion for RRU3841 in 3900 Series Base Station Initial Configurat ion Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-492 Output power for the RRU3841 (LTE FDD, AWS)
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TX and RX Mode
TX RF Port Combination Mode
Maximum Output Power (W)
1T2R
Port A or port B
1 x 60
2T2R
Port A is used with port B
2 x 60. For typical configurations, see the Table 6-493.
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TX and RX Mode
TX RF Port Combination Mode
Maximum Output Power (W)
l Port A is used with port C
2 x 30
l port B is used with port D 2T2R + 2T2R (two sectors)
Port A is used with port C and port B is used with port D
2 x 30 + 2 x 30
2T4R
Port A is used with port B
2 x 60
4T4R
Ports A, B, C, and D are used together
4 x 30. For typical configurations, see the Table 6-494.
Table 6-493 Output power for the RRU3841 (LTE FDD, AWS, 4x30 W) Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
4 x 30
1.4, 3, 5, 10, 15, 20
2 (MIMO)
4 x 15
5, 10, 15, 20
2 (MIMO)
l carrier 1: 4 x 10
l carrier 1: 5, 10
l carrier 1: 4 x 20
l carrier 2: 10, 20
Table 6-494 Output power for the RRU3841 (LTE FDD, AWS, 2x60 W) Working mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 60
1.4, 3, 5, 10, 15, 20
2 (MIMO)
2 x 30
5, 10, 15, 20
2 (MIMO)
l carrier 1: 2 x 20
l carrier 1: 5, 10
l carrier 2: 2 x 40
l carrier 2: 10, 20
Engineering Specifications The following table lists the equipment specifications of an RRU3841.
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Table 6-495 Equipment specifications of an RRU3841 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3841
-48 V DC; voltage range: -57 V DC to -36 V DC
l 480 mm x 356 mm x 140 mm (24 L, without the housing)
l ≤ 24.5 (without the housing)
NOTE The RRU3841 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
l 485 mm x 380 mm x 170 mm (31 L, with the housing)
l ≤ 26 (with the housing)
The following table lists the environmental specifications of an RRU3841. Table 6-496 Environmental specifications of an RRU3841 Type
Operating Temperature
Relative Humidity
Absolute Humidity
Atmosphe ric Pressure
Storage Time
RRU38 41
4T4R
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommend ed that the device be installed and used within one year after its delivery because of the failure rate.
l With solar radiation of 1120 W/m2: -40°C to +45°C l Without solar radiation: -40°C to +50°C Other configurations l With solar radiation of 1120 W/m2: -40°C to +50°C l Without solar radiation: -40°C to +55°C
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The following table lists the compliance standards for an RRU3841. Table 6-497 Compliance standards for an RRU3841 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3841
l 3GPP TS 36.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-498 lists the surge protection specifications of ports on an RRU3841. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-498 Surge protection specifications of ports on an RRU3841 Port
Usage Scenario
Surge Protection Mode
Specification
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Differential mode
3 kA
Surge current
RF port
RET port
Alarm port
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Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
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Port
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Usage Scenario
Surge Protection Mode Common mode
Specification 5 kA
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3841.
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Table 6-499 Specifications of CPRI ports on an RRU3841 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3841
2
1.25, 2.5, or 4.9
Star, chain, or ring
l When the rate at the CPRI port is 1.25 Gbit/s: Cascadin g is not supporte d.
l When the LBBPc, LBBPd1, or UBBPd3 is configure d: 20
l When the rate at the CPRI port is 2.5 Gbit/s: – Two levels are suppo rted if the cell band width is less than or equal to 5 MHz. – Casca ding is not recom mend ed if the cell band width is greate r than
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l When the LBBPd2 or UBBPd4 is configure d: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configure d: – Cell quanti ty ≤ 3: 40 – Cell quanti ty ≥ 4: 20
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Type
6 Product Specifications
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
or equal to 10 MHz. l When the rate at the CPRI port is 4.9 Gbit/s: – Two levels are suppo rted if the cell band width is less than or equal to 10 MHz. – Casca ding is not recom mend ed if the cell band width is greate r than or equal to 15 MHz.
Antenna Capability The following table lists the antenna capability of an RRU3841. Issue 14 (2016-01-30)
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Table 6-500 Antenna capability of an RRU3841 Type
TMA Support
Supported RET Antennas
RRU3841
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.32 RRU3908 Technical Specifications RRU3908 modules are remote radio units and are classified into RRU3908 V1 and RRU3908 V2 modules. With the software-defined radio (SDR) technique, RRU3908 modules can work in different modes with different configurations.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3908. Table 6-501 Modes and frequency bands supported by an RRU3908 Type
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
Mode
RRU3908 V1 (DC/AC)
850
824 to 849
869 to 894
GSM and UMTS
900 PGSM
890 to 915
935 to 960
900 EGSM
880 to 905
925 to 950
GSM, UMTS, and GU
1800
1710 to 1755
1805 to 1850
1740 to 1785
1835 to 1880
1850 to 1890
1930 to 1970
1870 to 1910
1950 to 1990
850
824 to 849
869 to 894
GSM, UMTS, and GU
900 PGSM
890 to 915
935 to 960
900 EGSM
880 to 915
925 to 960
GSM, UMTS, LTE FDD, GU, and GL
900 PGSM
890 to 915
935 to 960
1900
RRU3908 V2 (DC)
RRU3908 V2 (AC)
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GSM, LTE FDD, and GL GSM, UMTS, LTE FDD, and UL
GSM, UMTS, LTE FDD, GU, and GL
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RF Specifications Table 6-502 lists radio frequency (RF) specifications of an RRU3908. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l EF MSR indicates that E and F data is carried on the same transmit channel of an RF module. l EF non-MSR indicates that E data is carried on one transmit channel of an RF module while F data is carried on the other transmit channel of the RF module. l The GSM receiver sensitivity is measured, as recommended in 3GPP TS 51.021, over the central band at the antenna connector on condition that the channel rate reaches 13 kbit/s and the bit error rate (BER) does not exceed 2%. The central band is the 80% of the full band. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l The RRU3908 that works in GSM mode and operates in the 900 or 1800 MHz frequency band complies with the EN 301 502 V9.2.1 standard. The RRU3908 that works in GSM mode and operates in the 850 or 1900 MHz frequency band complies with the 3GPP TS 45.005 V10.2.0 and 3GPP TS 51.021 V10.2.0 standards. l The RRU3908 that works in UMTS, LTE FDD, or multiple service ring (MSR) mode and operates in the 900 or 1800 MHz frequency band complies with the ETSI EN 301 908 V5.2.1 and 3GPP TS 37.104 standards. The RRU3908 that works in UMTS, LTE FDD, or MSR mode and operates in the 850 or 1900 MHz frequency band complies with the 3GPP TS 37.104 V10.4.0 and TS 37.141 V10.4.0 standards.
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Table 6-502 RF specifications of an RRU3908 Ty pe
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
RR U3 908 V1
2T 2R
Receiver Sensitivity (dBm) Receiv er Sensiti vity with One Anten na
Receiv er Sensiti vity with Two Anten nas
Receiver Sensitivi ty with Four Antenna s
GSM: 6 TRXs
GSM: -113.0
GSM: -115.8
UMTS: 4 carriers
UMTS: -125.5
UMTS: -128.3
GSM: -118.5 (theoretic al value)
LTE FDD: 1 carrier with a bandwidt h of 5, 10, 15, or 20 MHz
LTE FDD: -106.3
LTE FDD: -109.1
UMTS: -131.0 LTE FDD: -111.8
Output Power
Power Consumpti on
The RRU3908 V1 supports the maximum power configuration 2 x 40 W. The typical configurations are as follows:
See the RRU3908 sheet in 3900 Series Base Station Power Consumption Specification s.
l Output power for the RRU3908 V1 (GSM, 850 MHz/900 MHz/1800 MHz/1900 MHz) l Output power for the RRU3908 V1 (UMTS, 850 MHz/900 MHz/1900 MHz) l Output power for the RRU3908 V1 (LTE
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Ty pe
6 Product Specifications
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receiv er Sensiti vity with One Anten na
Receiv er Sensiti vity with Two Anten nas
Receiver Sensitivi ty with Four Antenna s
Output Power
Power Consumpti on
FDD, 1800 MHz) l Output power for the RRU3908 V1 (LTE FDD, 1900 MHz) l Output power for the RRU3908 V1 (GU non-MSR, 900 MHz) l Output power for the RRU3908 V1 (GU MSR, 900 MHz) l Output power for the RRU3908 V1 (GL MSR, 1800 MHz) l Output power for the RRU3908 Issue 14 (2016-01-30)
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Ty pe
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Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receiv er Sensiti vity with One Anten na
Receiv er Sensiti vity with Two Anten nas
Receiver Sensitivi ty with Four Antenna s
Output Power
Power Consumpti on
V1 (UL MSR, 1900 MHz) For typical PA configurations, see Typical Power Configuration for RRU3908 V1 in 3900 Series Base Station Initial Configuration Guide.
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Ty pe
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
RR U3 908 V2
2T 2R
GSM: 8 TRXs UMTS: l 850 MHz: 2 carrie rs l 900 MHz: 4 carrie rs LTE FDD: 1 carriers with a bandwidt h of 1.4, 3, 5, 10, 15, or 20 MHz
Receiver Sensitivity (dBm) Receiv er Sensiti vity with One Anten na
Receiv er Sensiti vity with Two Anten nas
Receiver Sensitivi ty with Four Antenna s
GSM:
GSM:
GSM:
l 850/ 900 MH z PGS M: -113 .5
l 850/ 900 MHz PGS M: -116. 3
l 850/90 0 MHz PGSM : -119.0 (theor etical value)
The RRU3908 V2 supports the maximum power configuration 2 x 40 W. The typical configurations are as follows:
l 900 MHz EGSM : -118.8 (theor etical value)
l Output power for the RRU3908 V2 (GSM, 850 MHz/900 MHz)
UMTS:
l Output power for the RRU3908 V2 (UMTS, 850 MHz/900 MHz)
l 900 MH z EGS M: -113 .3 UMTS: l 850/ 900 MH z PGS M: -125 .5 l 900 MH z EGS M: -125 .3 LTE FDD:
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Output Power
l 900 MHz EGS M: -116. 1 UMTS: l 850/ 900 MHz PGS M: -128. 3 l 900 MHz EGS M: -128. 1
l 850/90 0 MHz PGSM : -131.0 l 900 MHz EGSM : -130.8
LTE FDD:
LTE FDD:
l 900 MHz PGS
l 900 MHz PGSM
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Power Consumpti on
l Output power for the RRU3908 V2 (LTE FDD, 900 MHz) l Output power for
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Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receiv er Sensiti vity with One Anten na
Receiv er Sensiti vity with Two Anten nas
Receiver Sensitivi ty with Four Antenna s
l 900 MH z PGS M: -106 .3
M: -109. 1
: -111.8
l 900 MH z EGS M: -106 .1
l 900 MHz EGS M: -108. 9
l 900 MHz EGSM : -111.6
Output Power
Power Consumpti on
the RRU3908 V2 (GU non-MSR, 850 MHz/900 MHz) l Output power for the RRU3908 V2 (GU MSR, 850 MHz/900 MHz) l Output power for the RRU3908 V2 (GL MSR, 900 MHz) For typical PA configurations, see Typical Power Configuration for RRU3908 V2 in 3900 Series Base Station Initial Configuration Guide.
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NOTE
l If the power sharing feature is activated, assume that UEs in a cell are randomly located. l If the RF module is placed at an altitude of 3500 to 4500 meters, its power reduces by 1 dB. If the RF module is placed at an altitude of 4500 to 6000 meters, its power reduces by 2 dB. l Station spacing, frequency multiplexing factor, power control algorithm, and traffic model all affect the gains of dynamic power sharing. In most cases, network plans are designed on the basis of power specifications of dynamic power sharing. l Before activating the dynamic power sharing feature, enable the DTX and power control functions. In GBSS8.1, the dynamic power sharing feature is mutually exclusive with the GBFD-113201 Concentric Cell, GBFD-114501 Co-BCCH Cell, GBFD-118001 BCCH Dense Frequency Multiplexing, and GBFD-117501 Enhanced Measurement Report (EMR) features. In GBSS9.0 and later versions, the dynamic power sharing feature can be used together with these features. However, the dynamic power sharing feature currently cannot be used together with the GBFD-117002 IBCA (Interference Based Channel Allocation), GBFD-117001 Flex MAIO, GBFD-118701 RAN Sharing, and GBFD-114001 Extended Cell features in GBSS8.1, GBSS9.0, and later versions. l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance. l The power capacity of the RRU3908 V2 is 2x60 W. Due to the restricted working temperature, the actual power capacity can only reach 2x40 W.
Table 6-503 Output power for the RRU3908 V1 (GSM, 850 MHz/900 MHz/1800 MHz/1900 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
40
40
2
40
40
3
20
20
4
15
20
5
12
12
6
10
12
NOTE
(a) indicates that only hardware is available for the configuration.
Table 6-504 Output power for the RRU3908 V1 (UMTS, 850 MHz/900 MHz/1900 MHz)
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
40
2
30
3(a)
20(a)
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
4(a)
15(a)
1 (MIMO)
2 x 30
2 (MIMO)
2 x 15
Table 6-505 Output power for the RRU3908 V1 (LTE FDD, 1800 MHz) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 30
5, 10, 15, 20
Table 6-506 Output power for the RRU3908 V1 (LTE FDD, 1900 MHz) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 30
5, 10, 15
Table 6-507 Output power for the RRU3908 V1 (GU non-MSR, 900 MHz)
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
1
40
30
1
1
30
40
1
2
30
20
2
1
20
30
2
1
15
40
2
2
15
20
3
1
10
30
3
2
10
10
4
1
7.5
20
4
2
7.5
10
5
1
6
20
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Table 6-508 Output power for the RRU3908 V1 (GU MSR, 900 MHz) Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
1
20
20
4
1
12
12
4
2
10
10
5
1
10
10
NOTE
In the following table, the LTE FDD bandwidth is 5 or 10 MHz, and the GSM and LTE FDD combined bandwidth is lower than 15 MHz.
Table 6-509 Output power for the RRU3908 V1 (GL MSR, 1800 MHz) Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
GSM + LTE FDD
1
1 (MIMO)
20
2 x 10
5, 10
1
1 (MIMO)
10
2 x 20
5, 10
2
1 (MIMO)
20
2 x 10
5, 10
2
1 (MIMO)
10
2 x 20
5, 10
3
1 (MIMO)
10
2 x 10
5, 10
4
1 (MIMO)
10
2 x 10
5, 10
Table 6-510 Output power for the RRU3908 V1 (UL MSR, 1900 MHz)
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Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
UMTS + LTE FDD
1
1 (MIMO)
20
2x10
5, 10
1
1 (MIMO)
15
2x15
5, 10
1
1 (MIMO)
10
2x20
5, 10
2
1 (MIMO)
20
2x10
5, 10
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Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
2
1 (MIMO)
15
2x15
5, 10
2
1 (MIMO)
10
2x20
5, 10
Table 6-511 Output power for the RRU3908 V2 (GSM, 850 MHz/900 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
40
40
2
40
40
3
20
20
4
20
20
5
13
15
6
13
15
7
10
13
8
10
13
NOTE
(a) indicates that the configuration is supported only at the 900 MHz frequency band.
Table 6-512 Output power for the RRU3908 V2 (UMTS, 850 MHz/900 MHz)
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
60
2
40
3(a)
20(a)
4(a)
20(a)
1 (MIMO)
2 x 40
2 (MIMO)
2 x 20
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
3 (MIMO)(a)
2 x 10(a)
4 (MIMO)(a)
2 x 10(a)
Table 6-513 Output power for the RRU3908 V2 (LTE FDD, 900 MHz) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 40
1.4, 3, 5, 10, 15, 20
Table 6-514 Output power for the RRU3908 V2 (GU non-MSR, 850 MHz/900 MHz) Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
1
40
40
2
1
20
40
3
1
13
40
4
1
10
40
5
1
6
20
1
2
40
20
2
2
20
20
3
2
13
20
4
2
10
20
NOTE
(b) indicates that the configuration is supported from SRAN7.0.
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Table 6-515 Output power for the RRU3908 V2 (GU MSR, 850 MHz/900 MHz) Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
3
1
20
20
4
1
13
20
5
1
10
30
1
1 (MIMO)
20
2 x 20
2
1 (MIMO)
20
2 x 20
3
1 (MIMO)
15
2 x 10
4
1 (MIMO)
15
2 x 10
4(b)
1 (MIMO)(b)
10(b)
2 x 20(b)
Table 6-516 Output power for the RRU3908 V2 (GL MSR, 900 MHz) Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidt h of LTE FDD Carrier (MHz)
GSM + LTE FDD
1
1 (MIMO)
20
2 x 20
1.4, 3, 5, 10, 15
2
1 (MIMO)
20
2 x 20
1.4, 3, 5, 10, 15
3
1 (MIMO)
15
2 x 10
1.4, 3, 5, 10, 15
4
1 (MIMO)
15
2 x 10
1.4, 3, 5, 10
4
1 (MIMO)
12
2 x 15
1.4, 3, 5, 10
Engineering Specifications The following table lists the equipment specifications of an RRU3908.
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Table 6-517 Equipment specifications of an RRU3908 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3908 V1
l -48 V DC; voltage range: -36 V DC to -57 V DC
l RRU3908 V1 (DC): 485 mm x 380 mm x 170 mm (with the housing)
l RRU3908 V1 (DC): 23 (with the housing)
l 200 V AC to 240 V AC single-phase; voltage range: 176 V AC to 290 V AC l 110 V AC dualphase, voltage range: 90/180 V AC to 135/270 V AC RRU3908 V2
l -48 V DC; voltage range: -36 V DC to -57 V DC l 200 V AC to 240 V AC single-phase; voltage range: 176 V AC to 290 V AC l 110 V AC dualphase, voltage range: 90/180 V AC to 135/270 V AC
l RRU3908 V1 (AC): 485 mm x 380 mm x 250 mm (with the housing)
l RRU3908 V2 (DC): 485 mm x 380 mm x 170 mm (with the housing) l RRU3908 V2 (AC): 485 mm x 380 mm x 250 mm (with the housing)
l RRU3908 V1 (AC): 29 (with the housing)
l RRU3908 V2 (DC): 23 (with the housing) l RRU3908 V2 (AC): 29 (with the housing)
The following table lists the environmental specifications of an RRU3908. Table 6-518 Environmental specifications of an RRU3908 Type
Operating Temperatur e
Relative Humidity
Absolute Humidity
Atmospheri c Pressure
Storage Time
RRU 3908 V1
l Without solar radiation: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommended that the device be installed and used within one year after its delivery because of the failure rate.
l With solar radiation: -40°C to +45°C
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Type
Operating Temperatur e
RRU 3908 V2
l Without solar radiation: -40°C to +55°C
Relative Humidity
Absolute Humidity
Atmospheri c Pressure
Storage Time
l With solar radiation: -40°C to +50°C
The following table lists the compliance standards for an RRU3908. Table 6-519 Compliance standards for an RRU3908 Type
Operating Environment
Anti-Seismic Performance
Protection Rating
RRU3908 V1
l 3GPP TS 45.005
NEBS GR63 zone4
IP65
RRU3908 V2
l 3GPP TS 36.141
l 3GPP TS 25.141 l 3GPP TS 37.141 l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-520 lists the surge protection specifications of ports on an RRU3908. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-520 Surge protection specifications of ports on an RRU3908
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Port
Usage Scenario
Surge Protection Mode
Specification
DC power supply port
Applicable to all scenarios
Surge
2 kV (1.2/50 μs)
Differential mode
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Port
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Usage Scenario
Surge Protection Mode
Surge current
AC power supply port
Applicable to the scenario where RF modules are installed indoors
Applicable to the scenario where RF modules are installed outdoors
RF port
Surge current
Surge
Surge current
Applicable to all scenarios
Surge current
Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
RET port
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Dry contact or RS485 alarm port
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Surge
Specification
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
5 kA
Common mode
5 kA
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
40 kA
Common mode
40 kA
Differential mode
8 kA
Common mode
40 kA 250 A
Differential mode
3 kA
Common mode
5 kA
Differential mode
3 kA
Common mode
5 kA
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Port
Usage Scenario
Surge Protection Mode
Specification
Local power monitoring port or alarm port
Applicable to the scenario where the power supply module and the RRU are installed back to back or the scenario where the distance between them is shorter than 1m
Surge
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3908. Table 6-521 Specifications of CPRI ports on an RRU3908 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3908 V1
2
l 850 MHz/900 MHz/ 1900 MHz: 1.25
Star, chain, or dual-star
CPRI MUX:
l GU (dualstar/ CPRI MUX): 40 l In the GL mode (dualstar/ CPRI MUX), the maximu m distances
l 1800 MHz: 1.25 or 2.5
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l GU: 6 l GL: 4
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Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
RRU3908 V2
2
1.25 or 2.5
Topology
Cascading Levels
Maximum Distance from the BBU (km) of the RRUs from the BBU vary with the types of BBP in LTE mode as follows – When the LBBP c, LBBP d1, or UBB Pd3 is config ured: 20 – When the LBBP d2 or UBB Pd4 is config ured: 40 – When the LBBP d3 , UBB Pd5, or UBB Pd6 is config ured: – Ce ll qu ant
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Type
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km) ity ≤ 3: 40 – Ce ll qu ant ity ≥ 4: 20
Antenna Capability The following table lists the antenna capability of an RRU3908. Table 6-522 Antenna capability of an RRU3908 Type
TMA Support
Supported RET Antennas
RRU3908 V1
Supported
AISG2.0 and AISG1.1
RRU3908 V2
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.33 RRU3926 Technical Specifications RRU3926 modules are remote radio units and can work in different modes with different configurations and the software-defined radio (SDR) technique.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3926.
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Table 6-523 Modes and frequency bands supported by an RRU3926 Type
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
Mode
RRU3926
900 EGSM
880 to 915
925 to 960
900 PGSM
890 to 915
935 to 960
GSM, UMTS, and GU
1800
1710 to 1785
1805 to 1880
GSM, UMTS, LTE FDD, GU, and GL
RF Specifications Table 6-524 lists radio frequency (RF) specifications of an RRU3926. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l EF MSR indicates that E and F data is carried on the same transmit channel of an RF module. l EF non-MSR indicates that E data is carried on one transmit channel of an RF module while F data is carried on the other transmit channel of the RF module. l The GSM receiver sensitivity is measured, as recommended in 3GPP TS 51.021, over the central band at the antenna connector on condition that the channel rate reaches 13 kbit/s and the bit error rate (BER) does not exceed 2%. The central band is the 80% of the full band. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l The RRU3926 that works in GSM mode and operates in the 900 or 1800 MHz frequency band complies with the EN 301 502 V9.2.1 standard . l The RRU3926 that works in UMTS, LTE FDD, or multiple service ring (MSR) mode and operates in the 900 or 1800 MHz frequency band complies with the ETSI EN 301 908 V5.2.1 and 3GPP TS 37.104 standards.
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Table 6-524 RF specifications of an RRU3926 Ty pe
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitivi ty with Two Antenna s
Receive r Sensitiv ity with Four Antenn as
RR U3 926
1T 2R
GSM: 8 TRXs
GSM:
GSM:
GSM:
l 900 MHz: -113. 7
l 900 MHz: -116.5
l 900 MHz: -119.2 (theor etical value)
UMTS: 6 carriers LTE FDD: 2 carriers, the bandwidt h per carrier is 1.4, 3, 5, 10, 15, or 20 MHz
l 1800 MHz: -114. 0 UMTS: l 900 MHz: -125. 8 l 1800 MHz: -126. 1 LTE FDD l 1800 MHz: -106. 6
l 1800 MHz: -116.8 UMTS: l 900 MHz: -128.6 l 1800 MHz: -128.9 LTE FDD l 1800 MHz: -109.4
l 1800 MHz: -119.5 (theor etical value) UMTS: l 900 MHz: -131. 3 l 1800 MHz: -131. 6 LTE FDD l 1800 MHz: -112.1
Output Power
Power Consumptio n
The RRU3926 supports the maximum power configuratio n 1 x 80 W. The typical configuratio ns are as follows:
See the RRU3926 sheet in 3900 Series Base Station Power Consumption Specifications .
l Output power for the RRU392 6 (GSM, 900 MHz/ 1800 MHz) l Output power for the RRU392 6 (UMTS, 900 MHz/ 1800 MHz) l Output power for the
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Ty pe
6 Product Specifications
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitivi ty with Two Antenna s
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consumptio n
RRU392 6 (LTE FDD, 1800 MHz) l Output power for the RRU392 6 (GU MSR, 900 MHz/ 1800 MHz) l Output power for the RRU392 6 (GL MSR, 1800 MHz)
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NOTE
l If the power sharing feature is activated, assume that UEs in a cell are randomly located. l If the RF module is placed at an altitude of 3500 to 4500 meters, its power reduces by 1 dB. If the RF module is placed at an altitude of 4500 to 6000 meters, its power reduces by 2 dB. l Station spacing, frequency multiplexing factor, power control algorithm, and traffic model all affect the gains of dynamic power sharing. In most cases, network plans are designed on the basis of power specifications of dynamic power sharing. l Before activating the dynamic power sharing feature, enable the DTX and power control functions. In GBSS8.1, the dynamic power sharing feature is mutually exclusive with the GBFD-113201 Concentric Cell, GBFD-114501 Co-BCCH Cell, GBFD-118001 BCCH Dense Frequency Multiplexing, and GBFD-117501 Enhanced Measurement Report (EMR) features. In GBSS9.0 and later versions, the dynamic power sharing feature can be used together with these features. However, the dynamic power sharing feature currently cannot be used together with the GBFD-117002 IBCA (Interference Based Channel Allocation), GBFD-117001 Flex MAIO, GBFD-118701 RAN Sharing, and GBFD-114001 Extended Cell features in GBSS8.1, GBSS9.0, and later versions. l For the RRU3926 working in GSM mode: when the S1 configuration is applied, the maximum output power of each carrier on the RRU3926 is 80 W. If the output power of 60 W or 80 W is required, the related license must be obtained. l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-525 Output power for the RRU3926 (GSM, 900 MHz/1800 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
80
80
2
40
40
3
27
31
4
20
27
5
16
20
6
12
20
7
10
16
8
7
12
NOTE
(a) indicates that only hardware is available for the configuration.
Table 6-526 Output power for the RRU3926 (UMTS, 900 MHz/1800 MHz)
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
80
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
2
40
3
25
4
20
5(a)
16(a)
6(a)
12(a)
Table 6-527 Output power for the RRU3926 (LTE FDD, 1800 MHz) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1
60
5, 10, 15, 20
1
40
1.4, 3, 5, 10, 15, 20
2
40
1.4, 3, 5, 10
NOTE
(b) indicates that the configuration is supported from SRAN7.0.
Table 6-528 Output power for the RRU3926 (GU MSR, 900 MHz/1800 MHz)
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
1
40
40
1
2
40
20
2
1
30
20
2
1
20
40
2
2
20
20
3
1
20
20
3
2
16
10
3(b)
2(b)
13(b)
20(b)
4
1
12
20
4
2
12
10
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
5
1
10
20
5
2
10
10
6
1
10
10
6
2
8
10
7
1
8
10
Table 6-529 Output power for the RRU3926 (GL MSR, 1800 MHz) Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
GSM + LTE FDD
1
1
40
40
1.4, 3, 5, 10, 15, 20
2
1
20
40
1.4, 3, 5, 10, 15, 20
2
1
30
20
1.4, 3, 5, 10, 15, 20
3
1
20
20
1.4, 3, 5, 10, 15, 20
4
1
12
20
1.4, 3, 5, 10, 15, 20
5
1
10
20
1.4, 3, 5, 10,15
6
1
10
10
1.4, 3, 5, 10,15
7
1
8
10
1.4, 3, 5, 10,15
Engineering Specifications The following table lists the equipment specifications of an RRU3926.
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Table 6-530 Equipment specifications of an RRU3926 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3926
-48 V DC; voltage range: -36 V DC to -57 V DC
l 400 mm x 240 mm x 160 mm (with the housing)
l 15 (with the housing)
NOTE The RRU3926 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
l 400 mm x 220 mm x 140 mm (without the housing)
l 13.5 (without the housing)
The following table lists the environmental specifications of an RRU3926. Table 6-531 Environmental specifications of an RRU3926 Type
Operating Temperatur e
Relative Humidity
Absolute Humidity
Atmospheri c Pressure
Storage Time
RRU 3926
l Without solar radiation: -40°C to +55°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommended that the device be installed and used within one year after its delivery because of the failure rate.
l With solar radiation: -40°C to +50°C
The following table lists the compliance standards for an RRU3926.
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Table 6-532 Compliance standards for an RRU3926 Type
Operating Environment
Anti-Seismic Performance
Protection Rating
RRU3926
l 3GPP TS 45.005
NEBS GR63 zone4
IP65
l 3GPP TS 25.141 l 3GPP TS 36.141 l 3GPP TS 37.141 l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-533 lists the surge protection specifications of ports on an RRU3926. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-533 Surge protection specifications of ports on an RRU3926 Port
Usage Scenario
Surge Protection Mode
Specification
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
RF port
Interconnect ion port for receiving RF signals
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Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge
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250 A
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Port
Usage Scenario
Surge Protection Mode
Specification
RET port
Applicable to all scenarios
Surge current
Differential mode
3 kA
Common mode
5 kA
Dry contact or RS485 alarm port
Applicable to all scenarios
Surge current
Differential mode
3 kA
Common mode
5 kA
Local power monitoring port or alarm port
Applicable to the scenario where the power supply module and the RRU are installed back to back or the scenario where the distance between them is shorter than 1m
Surge
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3926.
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Table 6-534 Specifications of CPRI ports on an RRU3926 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3926
2
1.25 or 2.5
Star, chain, ring, or dualstar
l Chain: 21
l GU (dualstar/ CPRI MUX): 40
NOTE When the number of RRU cascadin g levels is greater than 6, the data rate of configur ed optical modules must be not lower than 2.5 Gbit/s.
l CPRI MUX: – GU: 6 – GL: 4
l In the GL mode (dualstar/ CPRI MUX), the maximu m distances of the RRUs from the BBU vary with the types of BBP in LTE mode as follows – When the LBBP c, LBBP d1, or UBB Pd3 is config ured: 20 – When the LBBP d2 or UBB Pd4 is config
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Type
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km) ured: 40 – When the LBBP d3 , UBB Pd5, or UBB Pd6 is config ured: – Ce ll qu ant ity ≤ 3: 40 – Ce ll qu ant ity ≥ 4: 20
Antenna Capability The following table lists the antenna capability of an RRU3926. Table 6-535 Antenna capability of an RRU3926 Type
TMA Support
Supported RET Antennas
RRU3926
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
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6.3.34 RRU3928 Technical Specifications RRU3928 modules are remote radio units and can work in different modes with different configurations and the software-defined radio (SDR) technique.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3928. Table 6-536 Modes and frequency bands supported by an RRU3928 Type
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
Mode
RRU3928
900 EGSM
880 to 915
925 to 960
GSM, UMTS, LTE FDD, GU, GL, and UL
1800
1710 to 1785
1805 to 1880
GSM, UMTS, LTE FDD, GU, and GL
NOTE
On the 900 MHz frequency band, only the hardware of the RRU3928 supports the LTE mode.
RF Specifications Table 6-537 lists radio frequency (RF) specifications of an RRU3928. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l EF MSR indicates that E and F data is carried on the same transmit channel of an RF module. l EF non-MSR indicates that E data is carried on one transmit channel of an RF module while F data is carried on the other transmit channel of the RF module. l The GSM receiver sensitivity is measured, as recommended in 3GPP TS 51.021, over the central band at the antenna connector on condition that the channel rate reaches 13 kbit/s and the bit error rate (BER) does not exceed 2%. The central band is the 80% of the full band. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l The RRU3928 that works in GSM mode and operates in the 900 or 1800 MHz frequency band complies with the EN 301 502 V9.2.1 standard. l The RRU3928 that works in UMTS, LTE FDD, or multiple service ring (MSR) mode and operates in the 900 or 1800 MHz frequency band complies with the ETSI EN 301 908 V5.2.1 and 3GPP TS 37.104 standards.
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Table 6-537 RF specifications of an RRU3928 Ty pe
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitivi ty with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
RR U3 928
2T 2R
GSM: 8 TRXs
GSM:
GSM:
GSM:
l 900 MHz: -113. 7
l 900 MHz: -116.5
l 900 MHz: -119.2 (theor etical value)
UMTS: 4 carriers LTE FDD: 2 carriers, the bandwidt h per carrier is 1.4, 3, 5, 10, 15, or 20 MHz
l 1800 MHz: -114. 0 UMTS: l 900 MHz: -125. 8 l 1800 MHz: -126. 1 LTE FDD: l 900 MHz: -106. 3 l 1800 MHz: -106. 6
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l 1800 MHz: -116.8 UMTS: l 900 MHz: -128.6 l 1800 MHz: -128.9
l 1800 MHz: -119.5 (theor etical value) UMTS:
LTE FDD:
l 900 MHz: -131.3
l 900 MHz: -109.1
l 1800 MHz: -131.6
l 1800 MHz: -109.4
LTE FDD: l 900 MHz: -111.8 l 1800 MHz: -112.1
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Output Power
Power Consumpt ion
The RRU3928 supports the maximum power configuration 2 x 40 W. The typical configurations are as follows:
See the RRU3928 sheet in 3900 Series Base Station Power Consumptio n Specificatio ns.
l Output power for the RRU3928 (GSM, 900 MHz/ 1800 MHz) l Output power for the RRU3928 (UMTS, 900 MHz/ 1800 MHz) l Output power for the RRU3928 (LTE FDD, 900 MHz/1800 MHz)
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Ty pe
6 Product Specifications
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitivi ty with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
Output Power
Power Consumpt ion
l Output power for the RRU3928 (GU nonMSR, 900 MHz/1800 MHz) l Output power for the RRU3928 (GU MSR, 900 MHz/1800 MHz) l Output power for the RRU3928 (GL MSR, 900 MHz/ 1800 MHz) l Output power for the RRU3928 (UL MSR, 900 MHz) For typical PA configurations , see Typical Power
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Ty pe
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Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitivi ty with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
Output Power
Power Consumpt ion
Configuration for RRU3928 in 3900 Series Base Station Initial Configuration Guide.
NOTE
l If the power sharing feature is activated, assume that UEs in a cell are randomly located. l If the RF module is placed at an altitude of 3500 to 4500 meters, its power reduces by 1 dB. If the RF module is placed at an altitude of 4500 to 6000 meters, its power reduces by 2 dB. l Station spacing, frequency multiplexing factor, power control algorithm, and traffic model all affect the gains of dynamic power sharing. In most cases, network plans are designed on the basis of power specifications of dynamic power sharing. l Before activating the dynamic power sharing feature, enable the DTX and power control functions. In GBSS8.1, the dynamic power sharing feature is mutually exclusive with the GBFD-113201 Concentric Cell, GBFD-114501 Co-BCCH Cell, GBFD-118001 BCCH Dense Frequency Multiplexing, and GBFD-117501 Enhanced Measurement Report (EMR) features. In GBSS9.0 and later versions, the dynamic power sharing feature can be used together with these features. However, the dynamic power sharing feature currently cannot be used together with the GBFD-117002 IBCA (Interference Based Channel Allocation), GBFD-117001 Flex MAIO, GBFD-118701 RAN Sharing, and GBFD-114001 Extended Cell features in GBSS8.1, GBSS9.0, and later versions. l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-538 Output power for the RRU3928 (GSM, 900 MHz/1800 MHz)
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Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
40
40
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Mode
6 Product Specifications
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
2
40
40
3
20
20
4
20
20
5
13
15
6
13
15
7
10
13
8
10
13
Table 6-539 Output power for the RRU3928 (UMTS, 900 MHz/1800 MHz) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
40
2
40
3
20
4
20
1 (MIMO)
2 x 40
2 (MIMO)
2 x 20
3 (MIMO)
2 x 10
4 (MIMO)
2 x 10
Table 6-540 Output power for the RRU3928 (LTE FDD, 900 MHz/1800 MHz)
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Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 40
1.4, 3, 5, 10, 15, 20
2 (MIMO)
2 x 20
1.4, 3, 5, 10, 15, 20
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Table 6-541 Output power for the RRU3928 (GU non-MSR, 900 MHz/1800 MHz) Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
1
40
40
2
1
20
40
3
1
13
40
4
1
10
40
1
2
40
20
2
2
20
20
3
2
13
20
4
2
10
20
NOTE
(a) indicates that the configuration is supported from SRAN7.0.
Table 6-542 Output power for the RRU3928 (GU MSR, 900 MHz/1800 MHz)
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
3
1
20
20
4
1
13
20
5
1
10
20
6(a)
1(a)
10(a)
20(a)
1
1 (MIMO)
20
2 x 20
2
1 (MIMO)
20
2 x 20
3
1 (MIMO)
10
2 x 20
4
1 (MIMO)
10
2 x 20
1
2 (MIMO)
20
2 x 10
2
2 (MIMO)
20
2 x 10
3
2 (MIMO)
10
2 x 10
4
2 (MIMO)
10
2 x 10
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Table 6-543 Output power for the RRU3928 (GL MSR, 900 MHz/1800 MHz) Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
GSM + LTE FDD
1
1 (MIMO)
20
2 x 20
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
20
2 x 20
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
10
2 x 20
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
15
2 x 10
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
10
2 x 20
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
15
2 x 10
1.4, 3, 5, 10, 15, 20
5
1 (MIMO)
10
2 x 10
1.4, 3, 5, 10, 15, 20
6
1 (MIMO)
10
2 x 10
1.4, 3, 5, 10, 15, 20
Table 6-544 Output power for the RRU3928 (UL MSR, 900 MHz) Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidt h of LTE FDD Carrier (MHz)
UMTS + LTE FDD
1
1 (MIMO)
20
2 x 20
5, 10
2
1 (MIMO)
20
2 x 20
5, 10
3
1 (MIMO)
10
2 x 20
5, 10
4
1 (MIMO)
10
2 x 20
5, 10
Engineering Specifications The following table lists the equipment specifications of an RRU3928.
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Table 6-545 Equipment specifications of an RRU3928 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3928
-48 V DC; voltage range: -36 V DC to -57 V DC
l 400 mm x 240 mm x 160 mm (with the housing)
l 15 (with the housing)
NOTE The RRU3928 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
l 400 mm x 220 mm x 140 mm (without the housing)
l 13.5 (without the housing)
The following table lists environmental specifications of an RRU3928. Table 6-546 Environmental specifications of an RRU3928 Type
Operating Temperatur e
Relative Humidity
Absolute Humidity
Atmospheri c Pressure
Storage Time
RRU 3928
l Without solar radiation: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommended that the device be installed and used within one year after its delivery because of the failure rate.
l With solar radiation: -40°C to +45°C
The following table lists the compliance standards for an RRU3928.
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Table 6-547 Compliance standards for an RRU3928 Type
Operating Environment
Anti-Seismic Performance
Protection Rating
RRU3928
l 3GPP TS 45.005
NEBS GR63 zone4
IP65
l 3GPP TS 25.141 l 3GPP TS 36.141 l 3GPP TS 37.141 l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-548 lists the surge protection specifications of ports on an RRU3928. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-548 Surge protection specifications of ports on an RRU3928 Port
Usage Scenario
Surge Protection Mode
Specification
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
RF port
Interconnect ion port for receiving RF signals
Issue 14 (2016-01-30)
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge
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250 A
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Port
Usage Scenario
Surge Protection Mode
Specification
RET port
Applicable to all scenarios
Surge current
Differential mode
3 kA
Common mode
5 kA
Dry contact or RS485 alarm port
Applicable to all scenarios
Surge current
Differential mode
3 kA
Common mode
5 kA
Local power monitoring port or alarm port
Applicable to the scenario where the power supply module and the RRU are installed back to back or the scenario where the distance between them is shorter than 1m
Surge
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3928.
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Table 6-549 Specifications of CPRI ports on an RRU3928 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3928
2
1.25, 2.5, or 4.9
Star, chain, or dual-star
CPRI MUX:
l GU (dualstar/ CPRI MUX): 40
l GU: 6 l GL: 4 l UL: 4
l In the GL mode (dualstar/ CPRI MUX), the maximu m distances of the RRUs from the BBU vary with the types of BBP in LTE mode as follows – When the LBBP c, LBBP d1, or UBB Pd3 is config ured: 20 – When the LBBP d2 or UBB Pd4 is config
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Type
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km) ured: 40 – When the LBBP d3 , UBB Pd5, or UBB Pd6 is config ured: – Ce ll qu ant ity ≤ 3: 40 – Ce ll qu ant ity ≥ 4: 20
Antenna Capability The following table lists the antenna capability of an RRU3928. Table 6-550 Antenna capability of an RRU3928 Type
TMA Support
Supported RET Antennas
RRU3928
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
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6.3.35 RRU3929 Technical Specifications RRU3929 modules are remote radio units and can work in different modes with different configurations and the software-defined radio (SDR) technique.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3929. Table 6-551 Modes and frequency bands supported by an RRU3929 Type
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
Mode
RRU3929
900 EGSM
880 to 915
925 to 960
900 PGSM
890 to 915
935 to 960
GSM, UMTS, LTE FDD, GU, GL, and UL
1800
1710 to 1785
1805 to 1880
GSM, UMTS, LTE FDD, GU, and GL
NOTE
On the 900 MHz frequency band, only the hardware of the RRU3929 supports the LTE mode.
RF Specifications Table 6-552 lists radio frequency (RF) specifications of an RRU3929. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l EF MSR indicates that E and F data is carried on the same transmit channel of an RF module. l EF non-MSR indicates that E data is carried on one transmit channel of an RF module while F data is carried on the other transmit channel of the RF module. l The GSM receiver sensitivity is measured, as recommended in 3GPP TS 51.021, over the central band at the antenna connector on condition that the channel rate reaches 13 kbit/s and the bit error rate (BER) does not exceed 2%. The central band is the 80% of the full band. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l The RRU3929 that works in GSM mode and operates in the 900 or 1800 MHz frequency band complies with the EN 301 502 V9.2.1 standard. l The RRU3929 that works in UMTS, LTE FDD, or multiple service ring (MSR) mode and operates in the 900 or 1800 MHz frequency band complies with the ETSI EN 301 908 V5.2.1 and 3GPP TS 37.104 standards.
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Table 6-552 RF specifications of an RRU3929 Ty pe
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
RR U3 929
2T 2R
GSM: 8 TRXs
GSM:
GSM:
GSM:
l 900 MHz: -113. 7
l 900 MHz: -116.5
l 900 MHz: -119.2 (theor etical value)
UMTS: l Witho ut MIM O: 6 carrie rs
l 1800 MHz: -114. 0
l With MIM O: 4 carrie rs
UMTS:
LTE FDD: 2 carriers, the bandwidt h per carrier is 1.4, 3, 5, 10, 15, or 20 MHz
l 1800 MHz: -126. 1
l 900 MHz: -125. 8
LTE FDD: l 900 MHz: -106. 3 l 1800 MHz: -106. 6
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l 1800 MHz: -116.8 UMTS: l 900 MHz: -128.6 l 1800 MHz: -128.9
l 1800 MHz: -119.5 (theor etical value) UMTS:
LTE FDD:
l 900 MHz: -131.3
l 900 MHz: -109.1
l 1800 MHz: -131.6
l 1800 MHz: -109.4
LTE FDD: l 900 MHz: -111.8 l 1800 MHz: -112.1
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Output Power
Power Consumpt ion
The RRU3929 supports the maximum power configuration 2 x 60 W. The typical configurations are as follows:
See the RRU3929 sheet in 3900 Series Base Station Power Consumptio n Specificatio ns.
l Output power for the RRU3929 (GSM, 900 MHz/1800 MHz) l Output power for the RRU3929 (UMTS, 900 MHz/ 1800 MHz) l Output power for the RRU3929 (LTE FDD, 900 MHz/1800 MHz)
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Ty pe
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Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
Output Power
Power Consumpt ion
l Output power for the RRU3929 (GU nonMSR, 900 MHz/1800 MHz) l Output power for the RRU3929 (GU MSR, 900 MHz/ 1800 MHz) l Output power for the RRU3929 (GL MSR, 900 MHz/ 1800 MHz) l Output power for the RRU3929 (UL MSR, 900 MHz) For typical PA configurations, see Typical Power
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Ty pe
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Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
Output Power
Power Consumpt ion
Configuration for RRU3929 in 3900 Series Base Station Initial Configuration Guide.
NOTE
l If the power sharing feature is activated, assume that UEs in a cell are randomly located. l If the RF module is placed at an altitude of 3500 to 4500 meters, its power reduces by 1 dB. If the RF module is placed at an altitude of 4500 to 6000 meters, its power reduces by 2 dB. l Station spacing, frequency multiplexing factor, power control algorithm, and traffic model all affect the gains of dynamic power sharing. In most cases, network plans are designed on the basis of power specifications of dynamic power sharing. l Before activating the dynamic power sharing feature, enable the DTX and power control functions. In GBSS8.1, the dynamic power sharing feature is mutually exclusive with the GBFD-113201 Concentric Cell, GBFD-114501 Co-BCCH Cell, GBFD-118001 BCCH Dense Frequency Multiplexing, and GBFD-117501 Enhanced Measurement Report (EMR) features. In GBSS9.0 and later versions, the dynamic power sharing feature can be used together with these features. However, the dynamic power sharing feature currently cannot be used together with the GBFD-117002 IBCA (Interference Based Channel Allocation), GBFD-117001 Flex MAIO, GBFD-118701 RAN Sharing, and GBFD-114001 Extended Cell features in GBSS8.1, GBSS9.0, and later versions. l For the RRU3929 working in GSM mode: when the S1 or S2 configuration is applied, the maximum output power of each carrier on the RRU3929 is 60 W. If the output power of 60 W is required, the related license must be obtained. l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
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Table 6-553 Output power for the RRU3929 (GSM, 900 MHz/1800 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
60
60
2
60
60
3
30
30
4
30
30
5
20
25
6
20
25
7
15
20
8
15
20
Table 6-554 Output power for the RRU3929 (UMTS, 900 MHz/1800 MHz) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
60
2
60
3
30
4
30
5
20
6
20
1 (MIMO)
2 x 40
2 (MIMO)
2 x 30
3 (MIMO)
2 x 20
4 (MIMO)
2 x 15
Table 6-555 Output power for the RRU3929 (LTE FDD, 900 MHz/1800 MHz)
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Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 60
5, 10, 15, 20
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Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
1 (MIMO)
2 x 40
1.4, 3, 5, 10, 15, 20
2 (MIMO)
2 x 30
1.4, 3, 5, 10, 15, 20
2 (MIMO)
l Carrier 1: 2 x 20
1.4, 3, 5, 10, 15, 20
l Carrier 2: 2 x 40
Table 6-556 Output power for the RRU3929 (GU non-MSR, 900 MHz/1800 MHz)
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
1
60
60
1
2
60
30
1
3
60
20
2
1
30
60
2
2
30
30
2
3
30
20
2
4
30
15
3
1
20
60
3
2
20
30
3
3
20
20
3
4
20
15
4
1
15
60
4
2
15
30
4
3
15
20
4
4
15
15
5
1
10
60
5
2
10
30
5
3
10
20
6
1
7
60
6
2
7
30
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Table 6-557 Output power for the RRU3929 (GU MSR, 900 MHz/1800 MHz)
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
2
30
30
1
2
20
40
2
1
40
20
2
1
30
30
2
2
20
40
2
2
30
30
2
2
40
20
3
1
30
30
3
1
20
40
3
2
20
20
3
2
15
30
4
1
20
40
4
2
20
20
4
2
15
30
5
1
20
20
5
1
15
30
5
2
13
20
6
1
15
30
6
2
12
20
7
1
10
20
1
1 (MIMO)
20
2 x 40
1
1 (MIMO)
30
2 x 30
1
1 (MIMO)
40
2 x 20
1
2 (MIMO)
20
2 x 20
2
1 (MIMO)
20
2 x 40
2
1 (MIMO)
30
2 x 30
2
1 (MIMO)
40
2 x 20
2
2 (MIMO)
20
2 x 20
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
2
2 (MIMO)
30
2 x 15
3
1 (MIMO)
20
2 x 20
3
1 (MIMO)
15
2 x 30
3
2 (MIMO)
15
2 x 15
3
2 (MIMO)
20
2 x 10
3
2 (MIMO)
10
2 x 20
4
1 (MIMO)
20
2 x 20
4
1 (MIMO)
15
2 x 30
4
2 (MIMO)
15
2 x 15
4
2 (MIMO)
20
2 x 10
4
2 (MIMO)
10
2 x 20
NOTE
l
(a) indicates that the configuration is supported from SRAN7.0.
l
(b) indicates that the configuration is supported from SRAN7.0 (BTS3900 V100R007C00SPC280) and is only supported at the 1800 MHz frequency band.
l
(c) indicates that the configuration is supported in SRAN9.0 and supported only at the 1800 MHz frequency band.
Table 6-558 Output power for the RRU3929 (GL MSR, 900 MHz/1800 MHz)
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Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
GSM + LTE FDD
1
1 (MIMO)
40
2 x 20
1.4, 3, 5, 10, 15, 20
1
1 (MIMO)
30
2 x 30
1.4, 3, 5, 10, 15, 20
1
1 (MIMO)
20
2 x 40
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
40
2 x 20
1.4, 3, 5, 10, 15, 20
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Mode
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Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
2
1 (MIMO)
30
2 x 30
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
20
2 x 40
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
20
2 x 20
1.4, 3, 5, 10, 15, 20
3(b)
1 (MIMO) (b)
15(b)
2 x 30(b)
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
20
2 x 20
1.4, 3, 5, 10, 15, 20
4(a)
1 (MIMO) (a)
15(a)
2 x 30(a)
1.4, 3, 5, 10, 15, 20
5
1 (MIMO)
12
2 x 20
1.4, 3, 5, 10, 15, 20
5(b)
1 (MIMO) (b)
7.5(b)
2 x 30(b)
1.4, 3, 5, 10, 15, 20
6
1 (MIMO)
12
2 x 20
1.4, 3, 5, 10, 15, 20
6(b)
1 (MIMO) (b)
7.5(b)
2 x 30(b)
1.4, 3, 5, 10, 15, 20
2(c)
2 (MIMO) (c)
20(c)
l Carrier 1: 2 x 20(c)
l Carrier 1: 10(c)
l Carrier 2: 2 x 10(c)
l Carrier 2: 5(c)
Table 6-559 Output power for the RRU3929 (UL MSR, 900 MHz)
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Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidt h of LTE FDD Carrier (MHz)
UMTS + LTE FDD
1
1 (MIMO)
30
2 x 30
5, 10
1
1 (MIMO)
20
2 x 40
5, 10
2
1 (MIMO)
30
2 x 30
5, 10
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Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidt h of LTE FDD Carrier (MHz)
2
1 (MIMO)
20
2 x 40
5, 10
3
1 (MIMO)
20
2 x 20
5, 10
3
1 (MIMO)
15
2 x 30
5, 10
4
1 (MIMO)
20
2 x 20
5, 10
4
1 (MIMO)
15
2 x 30
5, 10
Engineering Specifications The following table lists the equipment specifications of an RRU3929. Table 6-560 Equipment specifications of an RRU3929 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3929
-48 V DC; voltage range: -36 V DC to -57 V DC
l 485 mm x 380 mm x 170 mm (with the housing)
l 25 (with the housing)
NOTE The RRU3929 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
l 485 mm x 356 mm x 140 mm (without the housing)
l 23.5 (without the housing)
The following table lists the environmental specifications of an RRU3929.
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Table 6-561 Environmental specifications of an RRU3929 Type
Operating Temperatur e
Relative Humidity
Absolute Humidity
Atmospheri c Pressure
Storage Time
RRU 3929
l Without solar radiation: -40°C to +55°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommended that the device be installed and used within one year after its delivery because of the failure rate.
l With solar radiation: -40°C to +50°C
The following table lists the compliance standards for an RRU3929. Table 6-562 Compliance standards for an RRU3929 Type
Operating Environment
Anti-Seismic Performance
Protection Rating
RRU3929
l 3GPP TS 45.005
NEBS GR63 zone4
IP65
l 3GPP TS 25.141 l 3GPP TS 36.141 l 3GPP TS 37.141 l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-563 lists the surge protection specifications of ports on an RRU3929. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
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Table 6-563 Surge protection specifications of ports on an RRU3929 Port
Usage Scenario
Surge Protection Mode
Specification
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
RF port
Applicable to all scenarios
Surge current
Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
RET port
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Dry contact or RS485 alarm port
Issue 14 (2016-01-30)
250 A
Differential mode
3 kA
Common mode
5 kA
Differential mode
3 kA
Common mode
5 kA
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Port
Usage Scenario
Surge Protection Mode
Specification
Local power monitoring port or alarm port
Applicable to the scenario where the power supply module and the RRU are installed back to back or the scenario where the distance between them is shorter than 1m
Surge
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3929.
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Table 6-564 Specifications of CPRI ports on an RRU3929 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3929
2
1.25, 2.5, or 4.9
Star, chain, or dual-star
CPRI MUX:
l GU (dualstar/ CPRI MUX): 40
l GU: 6 l GL: 4 l UL: 4
l In the GL mode (dualstar/ CPRI MUX), the maximu m distances of the RRUs from the BBU vary with the types of BBP in LTE mode as follows – When the LBBP c, LBBP d1, or UBB Pd3 is config ured: 20 – When the LBBP d2 or UBB Pd4 is config
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Type
6 Product Specifications
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km) ured: 40 – When the LBBP d3 , UBB Pd5, or UBB Pd6 is config ured: – Ce ll qu ant ity ≤ 3: 40 – Ce ll qu ant ity ≥ 4: 20
Antenna Capability The following table lists the antenna capability of an RRU3929. Table 6-565 Antenna capability of an RRU3929 Type
TMA Support
Supported RET Antennas
RRU3929
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
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6.3.36 RRU3936 Technical Specifications RRU3936 modules are remote radio units and can work in different modes with different configurations and the software-defined radio (SDR) technique.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3936. Table 6-566 Modes and frequency bands supported by an RRU3936 Type
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
Mode
RRU3936
850
824 to 849
869 to 894
GSM, UMTS, and GU
900 EGSM
880 to 915
925 to 960
900 PGSM
890 to 915
935 to 960
GSM, UMTS, and GU
1900
1850 to 1910
1930 to 1990
GSM, UMTS, LTE FDD, GU, GL, and UL
1800
1710 to 1785
1805 to 1880
GSM, UMTS, LTE FDD, GU, and GL
RF Specifications Table 6-567 lists radio frequency (RF) specifications of an RRU3936. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l EF MSR indicates that E and F data is carried on the same transmit channel of an RF module. l EF non-MSR indicates that E data is carried on one transmit channel of an RF module while F data is carried on the other transmit channel of the RF module. l The GSM receiver sensitivity, as recommended in 3GPP TS 51.021, is measured at the antenna connector on condition that the channel rate is 13 kbit/s and the Bit Error Rate (BER) is not higher than 2%. l The UMTS receiver sensitivity, as recommended in 3GPP TS 25.104, is measured at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l The RRU3936 that works in GSM mode and operates in the 900 or 1800 MHz frequency band complies with the EN 301 502 V9.2.1 standard. l The RRU3936 that works in UMTS, LTE FDD, or multiple service ring (MSR) mode and operates in the 900 or 1800 MHz frequency band complies with the ETSI EN 301 908 V5.2.1 and 3GPP TS 37.104 standards.
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Table 6-567 RF specifications of an RRU3936 Ty pe
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
RR U3 936
1T 2R
GSM: 8 TRXs UMTS: 6 carriers LTE FDD: 2 carriers, the bandwidt h per carrier is 1.4, 3, 5, 10, 15, or 20 MHz
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Receiver Sensitivity (dBm) Receiver Sensitivi ty with One Antenna
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitivi ty with Four Antenna s
GSM:
GSM:
GSM:
l 850 MHz: -113.4
l 850 MHz: -116.2
l 900 MHz: -113.7
l 900 MHz: -116.5
l 850 MHz: -118.9 (theor etical value)
l 1800 MHz: -114.0
l 1800 MHz: -116.8
l 1900 MHz: -113.7
l 1900 MHz: -116.5
UMTS:
UMTS:
l 850 MHz: -125.5
l 850 MHz: -128.3
l 900 MHz: -125.8
l 900 MHz: -128.6
l 1800 MHz: -126.1
l 1800 MHz: -128.9
l 1900 MHz: -125.8
l 1900 MHz: -128.6
LTE FDD:
LTE FDD:
l 850 MHz: -131.0
l 1800 MHz: -106.6
l 1800 MHz: -109.4
l 900 MHz: -131.3
l 900 MHz: -119.2 (theor etical value) l 1800 MHz: -119.5 (theor etical value) l 1900 MHz: -119.2 (theor etical value) UMTS:
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Output Power
Power Consump tion
The RRU3936 supports the maximum power configuration 1 x 80 W. The typical configurations are as follows:
See the RRU3936 sheet in 3900 Series Base Station Power Consumpti on Specificati ons.
l Output power for the RRU3936 (GSM, 850 MHz/900 MHz/1800 MHz/1900 MHz) l Output power for the RRU3936 (UMTS, 850 MHz/900 MHz/1800 MHz/1900 MHz) l Output power for the RRU3936 (LTE
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Ty pe
6 Product Specifications
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm)
Output Power
Receiver Sensitivi ty with One Antenna
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitivi ty with Four Antenna s
l 1900 MHz: -106.3
l 1900 MHz: -109.1
l 1800 MHz: -131.6
FDD, 1800 MHz/1900 MHz)
l 1900 MHz: -131.3
l Output power for the RRU3936 (GU MSR, 850 MHz/900 MHz/1800 MHz/1900 MHz)
LTE FDD: l 1800 MHz: -112.1 l 1900 MHz: -111.8
Power Consump tion
l Output power for the RRU3936 (GL MSR, 1800 MHz) l Output power for the RRU3936 (GL MSR, 1900 MHz) l Output power for the RRU3936 (UL MSR, 1900 MHz)
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NOTE
l If the power sharing feature is activated, assume that UEs in a cell are randomly located. l If the RF module is placed at an altitude of 3500 to 4500 meters, its power reduces by 1 dB. If the RF module is placed at an altitude of 4500 to 6000 meters, its power reduces by 2 dB. l Station spacing, frequency multiplexing factor, power control algorithm, and traffic model all affect the gains of dynamic power sharing. In most cases, network plans are designed on the basis of power specifications of dynamic power sharing. l Before activating the dynamic power sharing feature, enable the DTX and power control functions. In GBSS8.1, the dynamic power sharing feature is mutually exclusive with the GBFD-113201 Concentric Cell, GBFD-114501 Co-BCCH Cell, GBFD-118001 BCCH Dense Frequency Multiplexing, and GBFD-117501 Enhanced Measurement Report (EMR) features. In GBSS9.0 and later versions, the dynamic power sharing feature can be used together with these features. However, the dynamic power sharing feature currently cannot be used together with the GBFD-117002 IBCA (Interference Based Channel Allocation), GBFD-117001 Flex MAIO, GBFD-118701 RAN Sharing, and GBFD-114001 Extended Cell features in GBSS8.1, GBSS9.0, and later versions. l For the RRU3936 working in GSM mode: when the S1 configuration is applied, the maximum output power of each carrier on the RRU3936 is 80 W. If the output power of 60 W or 80 W is required, the related license must be obtained. l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-568 Output power for the RRU3936 (GSM, 850 MHz/900 MHz/1800 MHz/1900 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
80
80
2
40
40
3
27
31
4
20
27
5
16
20
6
12
20
7
10
16
8
7
12
NOTE
In the following table, * indicates that the UMTS mode is supported in terms of hardware.
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Table 6-569 Output power for the RRU3936 (UMTS, 850 MHz/900 MHz/1800 MHz/1900 MHz) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
80
2
40
3
25
4
20
5*
16*
6*
12*
Table 6-570 Output power for the RRU3936 (LTE FDD, 1800 MHz/1900 MHz) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1
60
5, 10, 15, 20
1
40
1.4, 3, 5, 10, 15, 20
2
40
1.4, 3, 5, 10
NOTE
In the following table, * indicates that SRAN7.0 or a later version supports the configuration.
Table 6-571 Output power for the RRU3936 (GU MSR, 850 MHz/900 MHz/1800 MHz/1900 MHz)
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
1
40
40
1
2
40
20
2
1
30
20
2
1
20
40
2
2
20
20
3
1
20
20
3
2
16
10
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
3*
2*
13*
20*
4
1
12
20
4
2
12
10
5
1
10
20
5
2
10
10
6
1
10
10
6
2
8
10
7
1
8
10
Table 6-572 Output power for the RRU3936 (GL MSR, 1800 MHz)
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Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
GSM + LTE FDD
1
1
40
40
1.4, 3, 5, 10, 15, 20
2
1
20
40
1.4, 3, 5, 10, 15, 20
2
1
30
20
1.4, 3, 5, 10, 15, 20
3
1
20
20
1.4, 3, 5, 10, 15, 20
4
1
12
20
1.4, 3, 5, 10, 15, 20
5
1
10
20
1.4, 3, 5, 10, 15
6
1
10
10
1.4, 3, 5, 10, 15
7
1
8
10
1.4, 3, 5, 10, 15
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Table 6-573 Output power for the RRU3936 (GL MSR, 1900 MHz) Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
GSM + LTE FDD
1
1
40
40
1.4, 3, 5, 10, 15, 20
2
1
20
40
1.4, 3, 5, 10, 15, 20
2
1
30
20
1.4, 3, 5, 10, 15, 20
3
1
20
20
1.4, 3, 5, 10, 15, 20
4
1
12
20
1.4, 3, 5, 10, 15, 20
5
1
10
20
1.4, 3, 5, 10, 15
6
1
10
10
1.4, 3, 5, 10, 15
7
1
8
10
1.4, 3, 5, 10, 15
1
2
20
30
1.4, 3, 5, 10
1
2
30
20
1.4, 3, 5, 10
2
2
20
20
1.4, 3, 5, 10
2
2
20
l Carrier 1: 15
1.4, 3, 5, 10
l Carrier 2: 25 2
2
20
l Carrier 1: 10
1.4, 3, 5, 10
l Carrier 2: 30
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3
2
13
20
1.4, 3, 5, 10
3
2
17
10
1.4, 3, 5, 10
4
2
12
10
1.4, 3, 5, 10
5
2
10
10
1.4, 3, 5, 10
6
2
8
10
1.4, 3, 5, 10
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Table 6-574 Output power for the RRU3936 (UL MSR, 1900 MHz) Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
UMTS + LTE FDD
1
1
40
40
1.4, 3, 5, 10, 15, 20
2
1
20
40
1.4, 3, 5, 10, 15, 20
2
1
30
20
1.4, 3, 5, 10, 15, 20
3
1
20
20
1.4, 3, 5, 10, 15, 20
1
2
20
30
1.4, 3, 5, 10
1
2
30
l Carrier 1: 20
1.4, 3, 5, 10
l Carrier 2: 40 2
2
20
20
1.4, 3, 5, 10
Engineering Specifications The following table lists the equipment specifications of an RRU3936. Table 6-575 Equipment specifications of an RRU3936 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3936
-48 V DC; voltage range: -36 V DC to -57 V DC
400 mm x 300 mm x 100 mm (without the shell)
14 (without the shell)
NOTE The RRU3936 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
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NOTE RRU3936 does not have the housing by default.
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The following table lists the environmental specifications of an RRU3936. Table 6-576 Environmental specifications of an RRU3936 Type
Operating Temperatur e
Relative Humidity
Absolute Humidity
Atmospheri c Pressure
Storage Time
RRU 3936
l Without solar radiation: -40°C to +55°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommended that the device be installed and used within one year after its delivery because of the failure rate.
l With solar radiation: -40°C to +50°C NOTE According to the installation scenario, traffic load, and carrier configuration, the output power of the RRU3936 may temporarily decrease when they work in the highest 10°C temperature range.
The following table lists the compliance standards for an RRU3936.
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Table 6-577 Compliance standards for an RRU3936 Type
Operating Environment
Anti-Seismic Performance
Protection Rating
RRU3936
l 3GPP TS 45.005
NEBS GR63 zone4
IP65
l 3GPP TS 25.141 l 3GPP TS 36.141 l 3GPP TS 37.141 l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-578 lists the surge protection specifications of ports on an RRU3936. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-578 Surge protection specifications of ports on an RRU3936 Port
Usage Scenario
Surge Protection Mode
Specification
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
RF port
Interconnect ion port for receiving RF signals
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Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge
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250 A
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Port
Usage Scenario
Surge Protection Mode
Specification
RET port
Applicable to all scenarios
Surge current
Differential mode
3 kA
Common mode
5 kA
Dry contact or RS485 alarm port
Applicable to all scenarios
Surge current
Differential mode
3 kA
Common mode
5 kA
Local power monitoring port or alarm port
Applicable to the scenario where the power supply module and the RRU are installed back to back or the scenario where the distance between them is shorter than 1m
Surge
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3936.
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Table 6-579 Specifications of CPRI ports on an RRU3936 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3936
2
1.25 or 2.5
Star, chain, or dual-star
CPRI MUX:
l GU (dualstar/ CPRI MUX): 40
l GU: 6 l GL: 4
l In the GL mode (dualstar/ CPRI MUX), the maximu m distances of the RRUs from the BBU vary with the types of BBP in LTE mode as follows – When the LBBP c, LBBP d1, or UBB Pd3 is config ured: 20 – When the LBBP d2 or UBB Pd4 is config
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Type
6 Product Specifications
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km) ured: 40 – When the LBBP d3 , UBB Pd5, or UBB Pd6 is config ured: – Ce ll qu ant ity ≤ 3: 40 – Ce ll qu ant ity ≥ 4: 20
Antenna Capability The following table lists the antenna capability of an RRU3936. Table 6-580 Antenna capability of an RRU3936 Type
TMA Support
Supported RET Antennas
RRU3936
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
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6.3.37 RRU3938 Technical Specifications RRU3938 modules are remote radio units and can work in different modes with different configurations and the software-defined radio (SDR) technique.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3938. Table 6-581 Modes and frequency bands supported by an RRU3938 Type
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
Mode
RRU3938
900
880 to 915
925 to 960
GSM, UMTS, LTE FDD, GU, GL, and UL
1800
1710 to 1785
1805 to 1880
GSM, UMTS, LTE FDD, GU, and GL
NOTE
On the 900 MHz frequency band, only the hardware of the RRU3938 supports the LTE mode.
RF Specifications Table 6-582 lists radio frequency (RF) specifications of an RRU3938. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l EF MSR indicates that E and F data is carried on the same transmit channel of an RF module. l EF non-MSR indicates that E data is carried on one transmit channel of an RF module while F data is carried on the other transmit channel of the RF module. l The GSM receiver sensitivity, as recommended in 3GPP TS 51.021, is measured at the antenna connector on condition that the channel rate is 13 kbit/s and the Bit Error Rate (BER) is not higher than 2%. l The UMTS receiver sensitivity, as recommended in 3GPP TS 25.104, is measured at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l The RRU3938 that works in GSM mode and operates in the 900 or 1800 MHz frequency band complies with the EN 301 502 V9.2.1 standard. l The RRU3938 that works in UMTS, LTE FDD, or multiple service ring (MSR) mode and operates in the 900 or 1800 MHz frequency band complies with the ETSI EN 301 908 V5.2.1 and 3GPP TS 37.104 standards.
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Table 6-582 RF specifications of an RRU3938 Ty pe
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitivi ty with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
RR U3 938
2T 2R
GSM: 8 TRXs
GSM:
GSM:
GSM:
l 900 MHz: -113. 7
l 900 MHz: -116.5
l 900 MHz: -119.2 (theor etical value)
UMTS: 4 carriers LTE FDD: 2 carriers, the bandwidt h per carrier is 1.4, 3, 5, 10, 15, or 20 MHz
l 1800 MHz: -114. 0 UMTS: l 900 MHz: -125. 8 l 1800 MHz: -126. 1 LTE FDD: l 900 MHz: -106. 3 l 1800 MHz: -106. 6
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l 1800 MHz: -116.8 UMTS: l 900 MHz: -128.6 l 1800 MHz: -128.9
l 1800 MHz: -119.5 (theor etical value) UMTS:
LTE FDD:
l 900 MHz: -131.3
l 900 MHz: -109.1
l 1800 MHz: -131.6
l 1800 MHz: -109.4
LTE FDD: l 900 MHz: -111.8 l 1800 MHz: -112.1
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Output Power
Power Consumpt ion
The RRU3938 supports the maximum power configuration 2 x 40 W. The typical configurations are as follows:
See the RRU3938 sheet in 3900 Series Base Station Power Consumptio n Specificatio ns.
l Output power for the RRU3938 (GSM, 900 MHz/ 1800 MHz) l Output power for the RRU3938 (UMTS, 900 MHz/ 1800 MHz) l Output power for the RRU3938 (LTE FDD, 900 MHz/1800 MHz)
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Ty pe
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Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitivi ty with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
Output Power
Power Consumpt ion
l Output power for the RRU3938 (GU nonMSR, 900 MHz/1800 MHz) l Output power for the RRU3938 (GU MSR, 900 MHz/1800 MHz) l Output power for the RRU3938 (GL MSR, 900 MHz/ 1800 MHz) l Output power for the RRU3938 (UL MSR, 900 MHz) For typical PA configurations , see Typical Power
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Ty pe
6 Product Specifications
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitivi ty with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
Output Power
Power Consumpt ion
Configuration for RRU3938 in 3900 Series Base Station Initial Configuration Guide.
NOTE
l If the power sharing feature is activated, assume that UEs in a cell are randomly located. l If the RF module is placed at an altitude of 3500 to 4500 meters, its power reduces by 1 dB. If the RF module is placed at an altitude of 4500 to 6000 meters, its power reduces by 2 dB. l Station spacing, frequency multiplexing factor, power control algorithm, and traffic model all affect the gains of dynamic power sharing. In most cases, network plans are designed on the basis of power specifications of dynamic power sharing. l Before activating the dynamic power sharing feature, enable the DTX and power control functions. In GBSS8.1, the dynamic power sharing feature is mutually exclusive with the GBFD-113201 Concentric Cell, GBFD-114501 Co-BCCH Cell, GBFD-118001 BCCH Dense Frequency Multiplexing, and GBFD-117501 Enhanced Measurement Report (EMR) features. In GBSS9.0 and later versions, the dynamic power sharing feature can be used together with these features. However, the dynamic power sharing feature currently cannot be used together with the GBFD-117002 IBCA (Interference Based Channel Allocation), GBFD-117001 Flex MAIO, GBFD-118701 RAN Sharing, and GBFD-114001 Extended Cell features in GBSS8.1, GBSS9.0, and later versions. l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-583 Output power for the RRU3938 (GSM, 900 MHz/1800 MHz)
Issue 14 (2016-01-30)
Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
40
40
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Mode
6 Product Specifications
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
2
40
40
3
20
20
4
20
20
5
13
15
6
13
15
7
10
13
8
10
13
Table 6-584 Output power for the RRU3938 (UMTS, 900 MHz/1800 MHz) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
40
2
40
3
20
4
20
1 (MIMO)
2 x 40
2 (MIMO)
2 x 20
3 (MIMO)
2 x 10
4 (MIMO)
2 x 10
Table 6-585 Output power for the RRU3938 (LTE FDD, 900 MHz/1800 MHz)
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Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 40
1.4, 3, 5, 10, 15, 20
2 (MIMO)
2 x 20
1.4, 3, 5, 10, 15, 20
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Table 6-586 Output power for the RRU3938 (GU non-MSR, 900 MHz/1800 MHz) Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
1
40
40
2
1
20
40
3
1
13
40
4
1
10
40
1
2
40
20
2
2
20
20
3
2
13
20
4
2
10
20
Table 6-587 Output power for the RRU3938 (GU MSR, 900 MHz/1800 MHz)
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
3
1
20
20
4
1
13
20
5
1
10
20
6
1
10
20
1
1 (MIMO)
20
2 x 20
2
1 (MIMO)
20
2 x 20
3
1 (MIMO)
10
2 x 20
4
1 (MIMO)
10
2 x 20
1
2 (MIMO)
20
2 x 10
2
2 (MIMO)
20
2 x 10
3
2 (MIMO)
10
2 x 10
4
2 (MIMO)
10
2 x 10
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Table 6-588 Output power for the RRU3938 (GL MSR, 900 MHz/1800 MHz) Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
GSM + LTE FDD
1
1 (MIMO)
20
2 x 20
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
20
2 x 20
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
10
2 x 20
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
15
2 x 10
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
10
2 x 20
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
15
2 x 10
1.4, 3, 5, 10, 15, 20
5
1 (MIMO)
10
2 x 10
1.4, 3, 5, 10, 15, 20
6
1 (MIMO)
10
2 x 10
1.4, 3, 5, 10, 15, 20
Table 6-589 Output power for the RRU3938 (UL MSR, 900 MHz) Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidt h of LTE FDD Carrier (MHz)
UMTS + LTE FDD
1
1 (MIMO)
20
2 x 20
5, 10
2
1 (MIMO)
20
2 x 20
5, 10
3
1 (MIMO)
10
2 x 20
5, 10
4
1 (MIMO)
10
2 x 20
5, 10
Engineering Specifications The following table lists the equipment specifications of an RRU3938.
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Table 6-590 Equipment specifications of an RRU3938 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3938
-48 V DC; voltage range: -36 V DC to -57 V DC
400 mm x 300 mm x 100 mm (without the housing)
14 (without the housing)
NOTE The RRU3938 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
The following table lists environmental specifications of an RRU3938. Table 6-591 Environmental specifications of an RRU3938 Type
Operating Temperatur e
Relative Humidity
Absolute Humidity
Atmospheri c Pressure
Storage Time
RRU 3938
l Without solar radiation: -40°C to +55°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommended that the device be installed and used within one year after its delivery because of the failure rate.
l With solar radiation: -40°C to +50°C NOTE According to the installation scenario, traffic load, and carrier configuration, the output power of the RRU3938 may temporarily decrease when they work in the highest 10°C temperature range.
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The following table lists the compliance standards for an RRU3938. Table 6-592 Compliance standards for an RRU3938 Type
Operating Environment
Anti-Seismic Performance
Protection Rating
RRU3938
l 3GPP TS 45.005
NEBS GR63 zone4
IP65
l 3GPP TS 25.141 l 3GPP TS 36.141 l 3GPP TS 37.141 l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-593 lists the surge protection specifications of ports on an RRU3938. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-593 Surge protection specifications of ports on an RRU3938 Port
Usage Scenario
Surge Protection Mode
Specification
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
RF port
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Applicable to all scenarios
Surge current
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Port
Usage Scenario
Surge Protection Mode
Specification
Interconnect ion port for receiving RF signals
Applicable to all scenarios
Surge
250 A
RETa port
Applicable to all scenarios
Surge current
Dry contact or RS485 alarm port
Applicable to all scenarios
Surge current
Local power monitoring port or alarm port
Applicable to the scenario where the power supply module and the RRU are installed back to back or the scenario where the distance between them is shorter than 1m
Surge
Differential mode
3 kA
Common mode
5 kA
Differential mode
3 kA
Common mode
5 kA 250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3938.
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Table 6-594 Specifications of CPRI ports on an RRU3938 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3938
2
1.25, 2.5, or 4.9
Star, chain, or dual-star
CPRI MUX:
l GU (dualstar/ CPRI MUX): 40
l GU: 6 l GL: 4 l UL: 4
l In the GL mode (dualstar/ CPRI MUX), the maximu m distances of the RRUs from the BBU vary with the types of BBP in LTE mode as follows – When the LBBP c, LBBP d1, or UBB Pd3 is config ured: 20 – When the LBBP d2 or UBB Pd4 is config
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km) ured: 40 – When the LBBP d3 , UBB Pd5, or UBB Pd6 is config ured: – Ce ll qu ant ity ≤ 3: 40 – Ce ll qu ant ity ≥ 4: 20
Antenna Capability The following table lists the antenna capability of an RRU3938. Table 6-595 Antenna capability of an RRU3938 Type
TMA Support
Supported RET Antennas
RRU3938
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
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6.3.38 RRU3939 Technical Specifications RRU3939 modules are remote radio units and can work in different modes with different configurations and the software-defined radio (SDR) technique.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3939. Table 6-596 Modes and frequency bands supported by an RRU3939 Type
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
Mode
RRU3939
1800
1710 to 1785
1805 to 1880
GSM, LTE FDD, and GL
RF Specifications Table 6-597 lists radio frequency (RF) specifications of an RRU3939. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l EF MSR indicates that E and F data is carried on the same transmit channel of an RF module. l The GSM receiver sensitivity, as recommended in 3GPP TS 51.021, is measured at the antenna connector on condition that the channel rate is 13 kbit/s and the Bit Error Rate (BER) is not higher than 2%. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l The RRU3939 that works in GSM mode and operates in the 1800 MHz frequency band complies with the EN 301 502 V9.2.1 standard. l The RRU3939 that works in LTE FDD or multiple service ring (MSR) mode and operates in the 1800 MHz frequency band complies with the ETSI EN 301 908 V5.2.1 and 3GPP TS 37.104 standards.
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Table 6-597 RF specifications of an RRU3939 Ty pe
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
RR U3 939
2T 2R
GSM: 8 TRXs
GSM: -114.0
GSM: -116.8
LTE FDD: 2 carriers, the bandwidt h per carrier is 1.4, 3, 5, 10, 15, or 20 MHz
LTE FDD: -106.6
LTE FDD: -109.4
GSM: -119.5 (theoretic al value) LTE FDD: -112.1
Output Power
Power Consumpt ion
The RRU3939 supports the maximum power configuration 2 x 60 W. The typical configurations are as follows:
See the RRU3939 sheet in 3900 Series Base Station Power Consumptio n Specificatio ns.
l Output power for the RRU3939 (GSM, 1800 MHz) l Output power for the RRU3939 (LTE FDD, 1800 MHz) l Output power for the RRU3939 (GL MSR, 1800 MHz) For typical PA configurations, see Typical
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Ty pe
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Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
Output Power
Power Consumpt ion
Power Configuration for RRU3939 in 3900 Series Base Station Initial Configuration Guide.
NOTE
l If the power sharing feature is activated, assume that UEs in a cell are randomly located. l If the RF module is placed at an altitude of 3500 to 4500 meters, its power reduces by 1 dB. If the RF module is placed at an altitude of 4500 to 6000 meters, its power reduces by 2 dB. l Station spacing, frequency multiplexing factor, power control algorithm, and traffic model all affect the gains of dynamic power sharing. In most cases, network plans are designed on the basis of power specifications of dynamic power sharing. l Before activating the dynamic power sharing feature, enable the DTX and power control functions. In GBSS8.1, the dynamic power sharing feature is mutually exclusive with the GBFD-113201 Concentric Cell, GBFD-114501 Co-BCCH Cell, GBFD-118001 BCCH Dense Frequency Multiplexing, and GBFD-117501 Enhanced Measurement Report (EMR) features. In GBSS9.0 and later versions, the dynamic power sharing feature can be used together with these features. However, the dynamic power sharing feature currently cannot be used together with the GBFD-117002 IBCA (Interference Based Channel Allocation), GBFD-117001 Flex MAIO, GBFD-118701 RAN Sharing, and GBFD-114001 Extended Cell features in GBSS8.1, GBSS9.0, and later versions. l For the RRU3939 working in GSM mode: when the S1 or S2 configuration is applied, the maximum output power of each carrier on the RRU3939 is 60 W. If the output power of 60 W is required, the related license must be obtained. l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
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Table 6-598 Output power for the RRU3939 (GSM, 1800 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
60
60
2
60
60
3
30
30
4
30
30
5
20
25
6
20
25
7
15
20
8
15
20
Table 6-599 Output power for the RRU3939 (LTE FDD, 1800 MHz) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 60
5, 10, 15, 20
1 (MIMO)
2 x 40
1.4, 3, 5, 10, 15, 20
2 (MIMO)
2 x 30
1.4, 3, 5, 10, 15, 20
2 (MIMO)
l Carrier 1: 2 x 20
1.4, 3, 5, 10, 15, 20
l Carrier 2: 2 x 40
Table 6-600 Output power for the RRU3939 (GL MSR, 1800 MHz)
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Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
GSM + LTE FDD
1
1 (MIMO)
40
2 x 20
1.4, 3, 5, 10, 15, 20
1
1 (MIMO)
30
2 x 30
1.4, 3, 5, 10, 15, 20
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Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
1
1 (MIMO)
20
2 x 40
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
40
2 x 20
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
30
2 x 30
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
20
2 x 40
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
20
2 x 20
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
15
2 x 30
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
20
2 x 20
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
15
2 x 30
1.4, 3, 5, 10, 15, 20
5
1 (MIMO)
12
2 x 20
1.4, 3, 5, 10, 15, 20
5
1 (MIMO)
7.5
2 x 30
1.4, 3, 5, 10, 15, 20
6
1 (MIMO)
12
2 x 20
1.4, 3, 5, 10, 15, 20
6
1 (MIMO)
7.5
2 x 30
1.4, 3, 5, 10, 15, 20
Engineering Specifications The following table lists the equipment specifications of an RRU3939.
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Table 6-601 Equipment specifications of an RRU3939 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3939
-48 V DC; voltage range: -36 V DC to -57 V DC
400 mm x 300 mm x 150 mm (without the housing)
20 (without the housing)
NOTE The RRU3939 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
The following table lists the environmental specifications of an RRU3939. Table 6-602 Environmental specifications of an RRU3939 Type
Operating Temperatur e
Relative Humidity
Absolute Humidity
Atmospheri c Pressure
Storage Time
RRU 3939
l Without solar radiation: -40°C to +55°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommended that the device be installed and used within one year after its delivery because of the failure rate.
l With solar radiation: -40°C to +50°C NOTE According to the installation scenario, traffic load, and carrier configuration, the output power of the RRU3939 may temporarily decrease when they work in the highest 10°C temperature range.
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The following table lists the compliance standards for an RRU3939. Table 6-603 Compliance standards for an RRU3939 Type
Operating Environment
Anti-Seismic Performance
Protection Rating
RRU3939
l 3GPP TS 45.005
NEBS GR63 zone4
IP65
l 3GPP TS 36.141 l 3GPP TS 37.141 l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-604 lists the surge protection specifications of ports on an RRU3939. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-604 Surge protection specifications of ports on an RRU3939 Port
Usage Scenario
Surge Protection Mode
Specification
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
RF port
Interconnect ion port for receiving RF signals Issue 14 (2016-01-30)
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge
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250 A
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Port
Usage Scenario
Surge Protection Mode
Specification
RET port
Applicable to all scenarios
Surge current
Differential mode
3 kA
Common mode
5 kA
Dry contact or RS485 alarm port
Applicable to all scenarios
Surge current
Differential mode
3 kA
Common mode
5 kA
Local power monitoring port or alarm port
Applicable to the scenario where the power supply module and the RRU are installed back to back or the scenario where the distance between them is shorter than 1m
Surge
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3939.
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Table 6-605 Specifications of CPRI ports on an RRU3939 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3939
2
1.25, 2.5, or 4.9
Star, chain, or dual-star
GL CPRI MUX: 4
The maximum distances of the RRUs from the BBU vary with the types of BBP in LTE mode as follows: l When the LBBPc, LBBPd1, or UBBPd3 is configure d: 20 l When the LBBPd2 or UBBPd4 is configure d: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configure d: – Cell quanti ty ≤ 3: 40 – Cell quanti ty ≥ 4: 20
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Antenna Capability The following table lists the antenna capability of an RRU3939. Table 6-606 Antenna capability of an RRU3939 Type
TMA Support
Supported RET Antennas
RRU3939
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.39 RRU3942 Technical Specifications RRU3942 modules are remote radio units and can work in different modes with different configurations and the software-defined radio (SDR) technique.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3942. Table 6-607 Modes and frequency bands supported by an RRU3942 Type
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
Mode
RRU3942
1900
1850 to 1910
1930 to 1990
GSM, UMTS, LTE FDD, GU, GL, UL, and GUL
850
824 to 849
869 to 894
GSM, UMTS, LTE FDD, GU, and UL
RF Specifications Table 6-608 lists radio frequency (RF) specifications of an RRU3942.
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NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. C W + D W in the Output Power column indicates that this RF module is configured with 2 transmit channels and the maximum output power of the transmit channel is C W and D W, respectively. l EF MSR indicates that E and F data is carried on the same transmit channel of an RF module. l EF non-MSR indicates that E data is carried on one transmit channel of an RF module while F data is carried on the other transmit channel of the RF module. l The GSM receiver sensitivity is measured, as recommended in 3GPP TS 51.021, over the central band at the antenna connector on condition that the channel rate reaches 13 kbit/s and the bit error rate (BER) does not exceed 2%. The central band is the 80% of the full band. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l The RRU3942 that works in GSM mode and operates in the 850 MHz/1900 MHz frequency band complies with the 3GPP TS 45.005 V10.2.0 and 3GPP TS 51.021 V10.2.0 standards. l The RRU3942 that works in UMTS, LTE FDD, or multiple service ring (MSR) mode and operates in the 850 MHz/1900 MHz frequency band complies with the 3GPP TS 37.104 V10.4.0 and TS 37.141 V10.4.0 standards.
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Table 6-608 RF specifications of an RRU3942 Ty pe
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
RR U3 942
2T 4R
GSM: 8 TRXs UMTS: l Witho ut MIM O: 6 carrie rs
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
GSM:
GSM:
GSM:
l 850 MHz: -113. 4
l 850 MHz: -116.2
l 850 MHz: -118.9 (theor etical value)
l 1900 MHz: -113. 7
l With MIM O: 4 carrie rs
UMTS:
LTE FDD: 2 carriers, the bandwidt h per carrier is 1.4, 3, 5, 10, 15, or 20 MHz
l 1900 MHz: -125. 8
l 850 MHz: -125. 5
LTE FDD: l 850M Hz: -106. 0 l 1900 MHz: -106. 3
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l 1900 MHz: -116.5 UMTS: l 850 MHz: -128.3 l 1900 MHz: -128.6
l 1900 MHz: -119.2 (theor etical value) UMTS:
LTE FDD:
l 850 MHz: -131
l 850M Hz: -108.8
l 1900 MHz: -131.3
l 1900 MHz: -109.1
LTE FDD: l 850M Hz: -111.5 l 1900 MHz: -111.8
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Output Power
Power Consumpt ion
The RRU3942 supports the maximum power configuration 2 x 60 W or 40 W+80 W. The typical configurations are as follows:
See the RRU3942 sheet in 3900 Series Base Station Power Consumptio n Specificatio ns.
l Output power for the RRU3942 (GSM, 850 MHz/ 1900MHz, 2x60 W) l Output power for the RRU3942 (UMTS, 850 MHz/ 1900MHz, 2x60 W) l Output power for the RRU3942 (LTE FDD, 850 MHz, 2x60 W)
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Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
Output Power
Power Consumpt ion
l Output power for the RRU3942 (LTE FDD, 1900 MHz, 2x60 W) l Output power for the RRU3942 (GSM, 850 MHz/1900 MHz, 40 W+80 W) l Output power for the RRU3942 (UMTS, 850 MHz/ 1900 MHz, 40 W+80 W) l Output power for the RRU3942 (GU nonMSR, 850 MHz/1900 MHz, 2x60 W)
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Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
Output Power
Power Consumpt ion
l Output power for the RRU3942 (GU nonMSR, 850 MHz/1900 MHz, 40 W+80 W) l Output power for the RRU3942 (GU MSR, 850 MHz/ 1900 MHz, 2x60 W) l Output power for the RRU3942 (GU MSR, 850 MHz/ 1900 MHz, 40 W+80 W) l Output power for the RRU3942 (GL MSR, 1900 MHz, 2x60 W)
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Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
Output Power
Power Consumpt ion
l Output power for the RRU3942 (GL MSR, 1900 MHz, 40 W+80 W) l Output power for the RRU3942 (UL MSR, 850 MHz, 2x60 W) l Output power for the RRU3942 (UL MSR, 1900 MHz, 2x60 W) l Output power for the RRU3942 (UL MSR, 1900 MHz, 40 W+80 W) l Output power for the RRU3942
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Ty pe
6 Product Specifications
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
Output Power
Power Consumpt ion
(GUL MSR, 1900 MHz, 2x60 W) For typical PA configurations, see Typical Power Configuration for RRU3942 in 3900 Series Base Station Initial Configuration Guide.
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NOTE
l If the power sharing feature is activated, assume that UEs in a cell are randomly located. l If the RF module is placed at an altitude of 3500 to 4500 meters, its power reduces by 1 dB. If the RF module is placed at an altitude of 4500 to 6000 meters, its power reduces by 2 dB. l Station spacing, frequency multiplexing factor, power control algorithm, and traffic model all affect the gains of dynamic power sharing. In most cases, network plans are designed on the basis of power specifications of dynamic power sharing. l Before activating the dynamic power sharing feature, enable the DTX and power control functions. In GBSS8.1, the dynamic power sharing feature is mutually exclusive with the GBFD-113201 Concentric Cell, GBFD-114501 Co-BCCH Cell, GBFD-118001 BCCH Dense Frequency Multiplexing, and GBFD-117501 Enhanced Measurement Report (EMR) features. In GBSS9.0 and later versions, the dynamic power sharing feature can be used together with these features. However, the dynamic power sharing feature currently cannot be used together with the GBFD-117002 IBCA (Interference Based Channel Allocation), GBFD-117001 Flex MAIO, GBFD-118701 RAN Sharing, and GBFD-114001 Extended Cell features in GBSS8.1, GBSS9.0, and later versions. l For the RRU3942 working in GSM mode: when the S1 configuration is applied, the maximum output power of each carrier on the RRU3942 is 80 W; when the S2 configuration is applied, the maximum output power of each carrier on the RRU3942 is 60 W. If the output power of 60 W or 80 W is required, the related license must be obtained. l The RRU3942 supports 2 x 60 W or 40 W + 80 W configuration. The "40 W + 80 W" configuration does not apply to typical scenarios. When this configuration is used, only power of channel B can be 80 W. l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-609 Output power for the RRU3942 (GSM, 850 MHz/1900MHz, 2 x 60 W) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
60
60
2
60
60
3
30
30
4
30
30
5
20
25
6
20
25
7
15
20
8
15
20
Table 6-610 Output power for the RRU3942 (UMTS, 850 MHz/1900MHz, 2 x 60 W)
Issue 14 (2016-01-30)
Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
60
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Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
2
60
3
30
4
30
5
20
6
20
1 (MIMO)
2 x 40
2 (MIMO)
2 x 30
3 (MIMO)
2 x 20
4 (MIMO)
2 x 15
Table 6-611 Output power for the RRU3942 (LTE FDD, 850 MHz, 2 x 60 W) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 60
5, 10
2 (MIMO)
l Carrier 1: 2 x 10
l Carrier 1: 1.4
l Carrier 2: 2 x 50
l Carrier 2: 5, 10
Table 6-612 Output power for the RRU3942 (LTE FDD, 1900 MHz, 2 x 60 W) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 60
5, 10, 15, 20
1 (MIMO)
2 x 40
1.4, 3, 5, 10, 15, 20
2 (MIMO)
2 x 30
1.4, 3, 5, 10, 15, 20
2 (MIMO)
l Carrier 1: 2 x 20
1.4, 3, 5, 10, 15, 20
l Carrier 2: 2 x 40
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Table 6-613 Output power for the RRU3942 (GSM, 850 MHz/1900 MHz, 40 W+80 W) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
80
80
2
40
40
3
40
40
4
27
27
5
20
20
6
20
20
7
16
20
8
13
15
Table 6-614 Output power for the RRU3942 (UMTS, 850 MHz/1900 MHz, 40 W+80 W) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
80
3
40
6
20
NOTE
(a) indicates that the configuration is supported from SRAN8.0 and that the power values used by PA1 and PA2 cannot be interchanged when the configuration is applied.
Table 6-615 Output power for the RRU3942 (GU non-MSR, 850 MHz/1900 MHz, 2 x 60 W)
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
1
60
60
1
2
60
30
1
3
60
20
2
1
30
60
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
2
2
30
30
2
3
30
20
2
4
30
15
3
1
20
60
3
2
20
30
3
3
20
20
3
4
20
15
4
1
15
60
4
2
15
30
4
3
15
20
4
4
15
15
5
1
10
60
5
2
10
30
5
3
10
20
6
1
7
60
6
2
7
30
6(a)
2(a)
10(a)
30(a)
6(a)
3(a)
10(a)
20(a)
Table 6-616 Output power for the RRU3942 (GU non-MSR, 850 MHz/1900 MHz, 40 W+80 W)
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
1
80
40
1
1
40
80
1
2
80
20
1
2
40
40
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Mode
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6 Product Specifications
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
1
3
80
10
1
3
40
25
1
4
80
10
2
1
40
40
2
1
20
80
2
2
40
20
2
2
20
40
2
3
40
10
2
3
20
25
2
4
40
10
2
4
20
20
3
1
27
40
3
1
13
80
3
2
27
20
3
2
13
40
3
3
27
10
3
3
13
25
3
4
27
10
3
4
13
20
4
1
20
40
4
1
10
80
4
2
20
20
4
2
10
40
4
3
20
10
4
3
10
25
4
4
20
10
4
4
10
20
5
1
16
40
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
5
2
16
20
5
3
16
10
6
1
12
40
6
2
12
20
7
1
6
40
Table 6-617 Output power for the RRU3942 (GU MSR, 850 MHz/1900 MHz, 2 x 60 W)
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
2
30
30
1
2
20
40
2
1
40
20
2
1
30
30
2
2
20
40
2
2
30
30
2
2
40
20
3
1
30
30
3
1
20
40
3
2
20
20
3
2
15
30
4
1
20
40
4
2
20
20
4
2
15
30
5
1
20
20
5
1
15
30
5
2
13
20
6
1
15
30
6
2
12
20
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
7
1
10
20
1
1 (MIMO)
20
2 x 40
1
1 (MIMO)
30
2 x 30
1
1 (MIMO)
40
2 x 20
1
2 (MIMO)
20
2 x 20
2
1 (MIMO)
20
2 x 40
2
1 (MIMO)
30
2 x 30
2
1 (MIMO)
40
2 x 20
2
2 (MIMO)
20
2 x 20
2
2 (MIMO)
30
2 x 15
3
1 (MIMO)
20
2 x 20
3
1 (MIMO)
15
2 x 30
3
2 (MIMO)
15
2 x 15
3
2 (MIMO)
20
2 x 10
3
2 (MIMO)
10
2 x 20
4
1 (MIMO)
20
2 x 20
4
1 (MIMO)
15
2 x 30
4
2 (MIMO)
15
2 x 15
4
2 (MIMO)
20
2 x 10
4
2 (MIMO)
10
2 x 20
NOTE
(b) indicates that the configuration is supported only at the 1900 MHz frequency band.
Table 6-618 Output power for the RRU3942 (GU MSR, 850 MHz/1900 MHz, 40 W+80 W)
Issue 14 (2016-01-30)
Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
2
40
40
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Mode
6 Product Specifications
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
1
3
40
20
1
4
40
20
2
1
40
40
2
2
40
20
2(b)
2(b)
20(b)
40(b)
2
3
30
20
3
1
20
40
3
2
20
30
3
2
13
40
5
1
20
20
6
1
10
20
1
1 (MIMO)
40
2 x 40
1
2 (MIMO)
40
2 x 20
2
1 (MIMO)
30
2 x 20
2
2 (MIMO)
20
2 x 20
4
1 (MIMO)
20
2 x 20
4
2 (MIMO)
10
2 x 10
NOTE
(c) indicates that the configuration is not supported in SRAN8.1.
Table 6-619 Output power for the RRU3942 (GL MSR, 1900 MHz, 2 x 60 W)
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Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
GSM + LTE FDD
1
1 (MIMO)
40
2 x 20
1.4, 3, 5, 10, 15, 20
1
1 (MIMO)
30
2 x 30
1.4, 3, 5, 10, 15, 20
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Mode
6 Product Specifications
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
1
1 (MIMO)
20
2 x 40
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
40
2 x 20
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
30
2 x 30
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
20
2 x 40
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
20
2 x 20
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
20
2 x 20
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
15
2 x 30
1.4, 3, 5, 10, 15, 20
5
1 (MIMO)
12
2 x 20
1.4, 3, 5, 10, 15, 20
6
1 (MIMO)
12
2 x 20
1.4, 3, 5, 10, 15, 20
6(c)
1 (MIMO) (c)
15(c)
2 x 10(c)
5, 10, 15, 20(c)
Table 6-620 Output power for the RRU3942 (GL MSR, 1900 MHz, 40 W+80 W)
Issue 14 (2016-01-30)
Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
GSM + LTE FDD
5
1 (MIMO)
12
2 x 20
5, 10, 15, 20
6
1 (MIMO)
15
2 x 10
5, 10, 15, 20
7
1 (MIMO)
12
2 x 10
5, 10, 15, 20
7
1 (MIMO)
10
2 x 20
5, 10, 15, 20
8
1 (MIMO)
10
2 x 10
5, 10, 15, 20
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Table 6-621 Output power for the RRU3942 (UL MSR, 850 MHz, 2 x 60 W) Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidt h of LTE FDD Carrier (MHz)
UMTS + LTE FDD
1
1 (MIMO)
30
2 x 30
5
1
1 (MIMO)
20
2 x 40
10
1
1 (MIMO)
40
2 x 20
1.4
2
1 (MIMO)
30
2 x 30
1.4, 5
2
1 (MIMO)
40
2 x 20
1.4, 5
1 (MIMO)
2 (MIMO)
2 x 20
2 x 20
1.4, 5
1
2 (MIMO)
20
l Carrier 1: 2 x 10
l Carrier 1: 1.4
l Carrier 2: 2 x 30
l Carrier 2: 5
Table 6-622 Output power for the RRU3942 (UL MSR, 1900 MHz, 2 x 60 W)
Issue 14 (2016-01-30)
Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidt h of LTE FDD Carrier (MHz)
UMTS + LTE FDD
2
1 (MIMO)
30
2 x 30
1.4, 3, 5, 10, 15, 20
1 (MIMO)
1 (MIMO)
2 x 30
2 x 30
1.4, 3, 5, 10, 15, 20
1 (MIMO)
1 (MIMO)
2 x 20
2 x 40
1.4, 3, 5, 10, 15, 20
1 (MIMO)
1 (MIMO)
2 x 40
2 x 20
1.4, 3, 5, 10, 15, 20
2 (MIMO)
1 (MIMO)
2 x 20
2 x 20
1.4, 3, 5, 10, 15, 20
1 (MIMO) + 2 (nonMIMO)
1 (MIMO)
2 x 10 (MIMO) + 20 (nonMIMO)
2 x 20
1.4, 3, 5, 10, 15, 20
3 (MIMO)(c)
1 (MIMO) (c)
2 x 15(c)
2 x 15(c)
1.4, 3, 5, 10, 15, 20(c)
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Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidt h of LTE FDD Carrier (MHz)
4 (MIMO)(c)
1 (MIMO) (c)
2 x 10(c)
2 x 20(c)
1.4, 3, 5, 10, 15, 20(c)
Table 6-623 Output power for the RRU3942 (UL MSR, 1900 MHz, 40 W+80 W) Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
UMTS + LTE FDD
1
1 (MIMO)
40
2 x 40
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
20
2 x 20
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
20
2 x 20
1.4, 3, 5, 10, 15, 20
Table 6-624 Output power for the RRU3942 (GUL MSR, 1900 MHz, 2 x 60 W)
Issue 14 (2016-01-30)
Mode
Total Numbe r of GSM Carriers
Total Numbe r of UMTS Carriers
Total Numb er of LTE FDD Carrier s
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwi dth of LTE FDD Carrier (MHz)
GSM + UMTS + LTE FDD
1
1
1 (MIMO )
40
40
2 x 20
5, 10
2
1
1 (MIMO )
20
40
2 x 20
5, 10
3
1
1 (MIMO )
12
40
2 x 20
5, 10
4(a)
1(a)
1 (MIMO )(a)
10(a)
40(a)
2 x 20(a)
5, 10(a)
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Mode
6 Product Specifications
Total Numbe r of GSM Carriers
Total Numbe r of UMTS Carriers
Total Numb er of LTE FDD Carrier s
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwi dth of LTE FDD Carrier (MHz)
1
2
1 (MIMO )
40
20
2 x 20
5, 10
2
2
1 (MIMO )
20
20
2 x 20
5, 10
3
2
1 (MIMO )
12
20
2 x 20
5, 10
4
2
1 (MIMO )
10
20
2 x 20
5, 10
1
1
1 (MIMO )
30
30
2 x 30
5, 10
2
1
1 (MIMO )
15
30
2 x 30
5, 10
1
2
1 (MIMO )
30
15
2 x 30
5, 10
2
2
1 (MIMO )
15
15
2 x 30
5, 10
Engineering Specifications The following table lists the equipment specifications of an RRU3942.
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Table 6-625 Equipment specifications of an RRU3942 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3942
-48 V DC; voltage range: -36 V DC to -57 V DC
l 485 mm x 380 mm x 170 mm (with the housing)
l 25 (with the housing)
NOTE The RRU3942 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
l 485 mm x 356 mm x 140 mm (without the housing)
l 23.5 (without the housing)
The following table lists the environmental specifications of an RRU3942. Table 6-626 Environmental specifications of an RRU3942 Type
Operating Temperatur e
Relative Humidity
Absolute Humidity
Atmospheri c Pressure
Storage Time
RRU 3942
l Without solar radiation: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommended that the device be installed and used within one year after its delivery because of the failure rate.
l With solar radiation: -40°C to +45°C
The following table lists the compliance standards for an RRU3942.
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Table 6-627 Compliance standards for an RRU3942 Type
Operating Environment
Anti-Seismic Performance
Protection Rating
RRU3942
l 3GPP TS 45.005
NEBS GR63 zone4
IP65
l 3GPP TS 25.141 l 3GPP TS 36.141 l 3GPP TS 37.141 l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-628 lists the surge protection specifications of ports on an RRU3942. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-628 Surge protection specifications of ports on an RRU3942 Port
Usage Scenario
Surge Protection Mode
Specification
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
RF port
Interconnect ion port for receiving RF signals
Issue 14 (2016-01-30)
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge
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Port
Usage Scenario
Surge Protection Mode
Specification
RET port
Applicable to all scenarios
Surge current
Differential mode
3 kA
Common mode
5 kA
Dry contact or RS485 alarm port
Applicable to all scenarios
Surge current
Differential mode
3 kA
Common mode
5 kA
Local power monitoring port or alarm port
Applicable to the scenario where the power supply module and the RRU are installed back to back or the scenario where the distance between them is shorter than 1m
Surge
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3942.
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Table 6-629 Specifications of CPRI ports on an RRU3942 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3942
2
1.25, 2.5, or 4.9
Star, chain, or dual-star
CPRI MUX:
l GU (dualstar/ CPRI MUX): 40
l GU: 6 l GL: 4 l UL: 4 l GUL: 4
l In the GL, UL, or GUL mode (dualstar/ CPRI MUX), the maximu m distances of the RRUs from the BBU vary with the types of BBP in LTE mode as follows – When the LBBP c, LBBP d1, or UBB Pd3 is config ured: 20 – When the LBBP d2 or UBB
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Type
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km) Pd4 is config ured: 40 – When the LBBP d3 , UBB Pd5, or UBB Pd6 is config ured: – Ce ll qu ant ity ≤ 3: 40 – Ce ll qu ant ity ≥ 4: 20
Antenna Capability The following table lists the antenna capability of an RRU3942. Table 6-630 Antenna capability of an RRU3942
Issue 14 (2016-01-30)
Type
TMA Support
Supported RET Antennas
RRU3942
Supported
AISG2.0 and AISG1.1
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NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.40 RRU3952 Technical Specifications RRU3952 modules are remote radio units and can work in different modes with different configurations and the software-defined radio (SDR) technique.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3952. Table 6-631 Modes and frequency bands supported by an RRU3952 Type
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
Mode
RRU3952
850
824 to 849
869 to 894
GSM, UMTS, LTE FDD, GU, GL, and UL
RF Specifications Table 6-632 lists radio frequency (RF) specifications of an RRU3952. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. C W + D W in the Output Power column indicates that this RF module is configured with 2 transmit channels and the maximum output power of the transmit channel is C W and D W, respectively. l EF MSR indicates that E and F data is carried on the same transmit channel of an RF module. l EF non-MSR indicates that E data is carried on one transmit channel of an RF module while F data is carried on the other transmit channel of the RF module. l The GSM receiver sensitivity is measured, as recommended in 3GPP TS 51.021, over the central band at the antenna connector on condition that the channel rate reaches 13 kbit/s and the bit error rate (BER) does not exceed 2%. The central band is the 80% of the full band. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l The RRU3942 that works in GSM mode and operates in the 850 MHz frequency band complies with the 3GPP TS 45.005 V10.2.0 and 3GPP TS 51.021 V10.2.0 standards. l The RRU3942 that works in UMTS, LTE FDD, or multiple service ring (MSR) mode and operates in the 850 MHz frequency band complies with the 3GPP TS 37.104 V10.4.0 and TS 37.141 V10.4.0 standards.
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Table 6-632 RF specifications of an RRU3952 Ty pe
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
RR U3 952
2T 4R
GSM: 8 TRXs UMTS: l Witho ut MIM O: 6 carrie rs l With MIM O: 4 carrie rs LTE FDD: 2 carriers, the bandwidt h per carrier is 1.4, 3, 5, 10, 15, or 20 MHz
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
GSM:
GSM:
GSM:
l 850 MHz: -113. 4
l 850 MHz: -116.2
UMTS:
l 850 MHz: -128.3
l 850 MHz: -118.9 (theor etical value)
l 850 MHz: -125. 5 LTE FDD: l 850 MHz: -106. 0
UMTS:
LTE FDD: l 850 MHz: -108.8
UMTS: l 850 MHz: -131.0 LTE FDD: l 850 MHz: -111.5
Output Power
Power Consumpt ion
The RRU3952 supports the maximum power configuration 2 x 60 W or 40 W+80 W. The typical configurations are as follows:
See the RRU3952 sheet in 3900 Series Base Station Power Consumptio n Specificatio ns.
l Output power for the RRU3952 (GSM, 850MHz, 2x60W) l Output power for the RRU3952 (UMTS, 850MHz, 2x60W) l Output power for the RRU3952 (LTE FDD, 850MHz, 2x60W) l Output power for
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Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
Output Power
Power Consumpt ion
the RRU3952 (GU nonMSR, 850MHz, 2x60W) l Output power for the RRU3952 (GU MSR, 850MHz, 2x60W) l Output power for the RRU3952 (GL MSR, 850MHz, 2x60W) l Output power for the RRU3952 (UL MSR, 850MHz, 2x60W) l Output power for the RRU3952 (GSM, 850MHz,
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Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
Output Power
Power Consumpt ion
40W +80W) l Output power for the RRU3952 (UMTS, 850MHz, 40W +80W) l Output power for the RRU3952 (GU nonMSR, 850MHz, 40W +80W) l Output power for the RRU3952 (GU MSR, 850MHz, 40W +80W) l Output power for the RRU3952 (GL MSR, 850MHz,
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Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
Output Power
Power Consumpt ion
40W +80W) For typical PA configurations, see Typical Power Configuration for RRU3952 in 3900 Series Base Station Initial Configuration Guide.
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NOTE
l If the power sharing feature is activated, assume that UEs in a cell are randomly located. l If the RF module is placed at an altitude of 3500 to 4500 meters, its power reduces by 1 dB. If the RF module is placed at an altitude of 4500 to 6000 meters, its power reduces by 2 dB. l Station spacing, frequency multiplexing factor, power control algorithm, and traffic model all affect the gains of dynamic power sharing. In most cases, network plans are designed on the basis of power specifications of dynamic power sharing. l Before activating the dynamic power sharing feature, enable the DTX and power control functions. In GBSS8.1, the dynamic power sharing feature is mutually exclusive with the GBFD-113201 Concentric Cell, GBFD-114501 Co-BCCH Cell, GBFD-118001 BCCH Dense Frequency Multiplexing, and GBFD-117501 Enhanced Measurement Report (EMR) features. In GBSS9.0 and later versions, the dynamic power sharing feature can be used together with these features. However, the dynamic power sharing feature currently cannot be used together with the GBFD-117002 IBCA (Interference Based Channel Allocation), GBFD-117001 Flex MAIO, GBFD-118701 RAN Sharing, and GBFD-114001 Extended Cell features in GBSS8.1, GBSS9.0, and later versions. l For the RRU3952 working in GSM mode: when the S1 configuration is applied, the maximum output power of each carrier on the RRU3952 is 80 W; when the S2 configuration is applied, the maximum output power of each carrier on the RRU3952 is 60 W. If the output power of 60 W or 80 W is required, the related license must be obtained. l The RRU3952 supports 2 x 60 W or 40 W + 80 W configuration. The "40 W + 80 W" configuration does not apply to typical scenarios. When this configuration is used, only power of channel B can be 80 W. l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance. l When two LTE carriers are configured, it is recommended that the power spectrum density (PSD) of the two carriers be set to the same value. Power spectrum density = Carrier output power/Carrier bandwidth (1.4 MHz and 3 MHz bandwidths are considered as 5 MHz bandwidth in this formula.)
Table 6-633 Output power for the RRU3952 (GSM, 850MHz, 2x60W)
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Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
60
60
2
60
60
3
30
30
4
30
30
5
20
25
6
20
25
7
15
20
8
15
20
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Table 6-634 Output power for the RRU3952 (UMTS, 850MHz, 2x60W) mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
60
2
60
3
30
4
30
5
20
6
20
1 (MIMO)
2x40
2 (MIMO)
2x30
3 (MIMO)
2x20
4 (MIMO)
2x15
Table 6-635 Output power for the RRU3952 (LTE FDD, 850MHz, 2x60W) mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2x60
5, 10, 15, 20
1 (MIMO)
2x40
1.4, 3
2 (MIMO)
2x30
1.4, 3, 5, 10, 15, 20
2 (MIMO)
l Carrier 1: 2x20
1.4, 3, 5, 10, 15, 20
l Carrier 2: 2x40
Table 6-636 Output power for the RRU3952 (GU non-MSR, 850MHz, 2x60W)
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Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
1
60
60
1
2
60
30
1
3
60
20
2
1
30
60
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mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
2
2
30
30
2
3
30
20
2
4
30
15
3
1
20
60
3
2
20
30
3
3
20
20
3
4
20
15
4
1
15
60
4
2
15
30
4
3
15
20
4
4
15
15
5
1
10
60
5
2
10
30
5
3
10
20
6
1
7
60
6
2
7
30
Table 6-637 Output power for the RRU3952 (GU MSR, 850MHz, 2x60W)
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Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
2
30
30
1
2
20
40
2
1
40
20
2
1
30
30
2
2
20
40
2
2
30
30
2
2
40
20
3
1
30
30
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Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
3
1
20
40
3
2
20
20
3
2
15
30
4
1
20
40
4
2
20
20
4
2
15
30
5
1
20
20
5
1
15
30
5
2
13
20
6
1
15
30
6
2
12
20
7
1
10
20
1
1 (MIMO)
20
2x40
1
1 (MIMO)
30
2x30
1
1 (MIMO)
40
2x20
1
2 (MIMO)
20
2x20
2
1 (MIMO)
20
2x40
2
1 (MIMO)
30
2x30
2
1 (MIMO)
40
2x20
2
2 (MIMO)
20
2x20
2
2 (MIMO)
30
2x15
3
1 (MIMO)
20
2x20
3
1 (MIMO)
15
2x30
3
2 (MIMO)
15
2x15
3
2 (MIMO)
20
2x10
3
2 (MIMO)
10
2x20
4
1 (MIMO)
20
2x20
4
1 (MIMO)
15
2x30
4
2 (MIMO)
15
2x15
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mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
4
2 (MIMO)
20
2x10
4
2 (MIMO)
10
2x20
Table 6-638 Output power for the RRU3952 (GL MSR, 850MHz, 2x60W) mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
GSM + LTE FDD
1
1 (MIMO)
40
2x20
1.4, 3, 5, 10, 15, 20
1
1 (MIMO)
30
2x30
1.4, 3, 5, 10, 15, 20
1
1 (MIMO)
20
2x40
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
40
2x20
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
30
2x30
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
20
2x40
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
20
2x20
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
20
2x20
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
15
2x30
1.4, 3, 5, 10, 15, 20
5
1 (MIMO)
12
2x20
1.4, 3, 5, 10, 15, 20
6
1 (MIMO)
12
2x20
1.4, 3, 5, 10, 15, 20
1
2 (MIMO)
20
l Carrier 1: 2x20
1.4, 3, 5, 10
l Carrier 2: 2x20
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Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
1
2 (MIMO)
20
l Carrier 1: 2x10
1.4, 3, 5, 10
l Carrier 2: 2x30 1
2 (MIMO)
30
l Carrier 1: 2x20
1.4, 3, 5, 10
l Carrier 2: 2x10 2
2 (MIMO)
20
l Carrier 1: 2x10
1.4, 3, 5, 10
l Carrier 2: 2x30 2
2 (MIMO)
20
l Carrier 1: 2x20
1.4, 3, 5, 10
l Carrier 2: 2x20 3
2 (MIMO)
10
l Carrier 1: 2x20
1.4, 3, 5, 10
l Carrier 2: 2x20 3
2 (MIMO)
15
l Carrier 1: 2x20
1.4, 3, 5, 10
l Carrier 2: 2x10 4
2 (MIMO)
20
l Carrier 1: 2x10
1.4, 3, 5, 10
l Carrier 2: 2x10 4
2 (MIMO)
10
l Carrier 1: 2x20
1.4, 3, 5, 10
l Carrier 2: 2x20 4
2 (MIMO)
15
l Carrier 1: 2x20
1.4, 3, 5, 10
l Carrier 2: 2x10
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Table 6-639 Output power for the RRU3952 (UL MSR, 850MHz, 2x60W) mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidt h of LTE FDD Carrier (MHz)
UMTS + LTE FDD
1 (MIMO)
1 (MIMO)
2x30
2x30
1.4, 3, 5, 10, 15, 20
1 (MIMO)
1 (MIMO)
2x20
2x40
1.4, 3, 5, 10, 15, 20
1 (MIMO)
1 (MIMO)
2x40
2x20
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
30
2x30
1.4, 3, 5, 10, 15, 20
2 (MIMO)
1 (MIMO)
2x20
2x20
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
20
2x20
1.4, 3, 5, 10, 15, 20
3 (MIMO)
1 (MIMO)
2x15
2x15
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
20
2x20
1.4, 3, 5, 10, 15, 20
4 (MIMO)
1 (MIMO)
2x10
2x20
1.4, 3, 5, 10, 15, 20
2+1 (MIMO)
1 (MIMO)
l NonMIMO carrier: 20
2x20
1.4, 3, 5, 10, 15, 20
l MIMO carrier: 2x10
Table 6-640 Output power for the RRU3952 (GSM, 850MHz, 40W+80W)
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Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
80
80
2
40
40
3
40
40
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mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
4
27
27
5
20
20
6
20
20
7
16
20
8
13
15
Table 6-641 Output power for the RRU3952 (UMTS, 850MHz, 40W+80W) mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
80
3
40
6
20
Table 6-642 Output power for the RRU3952 (GU non-MSR, 850MHz, 40W+80W)
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Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
1
80
40
1
1
40
80
1
2
80
20
1
2
40
40
1
3
80
10
1
3
40
25
1
4
80
10
2
1
40
40
2
1
20
80
2
2
40
20
2
2
20
40
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Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
2
3
40
10
2
3
20
25
2
4
40
10
2
4
20
20
3
1
27
40
3
1
13
80
3
2
27
20
3
2
13
40
3
3
27
10
3
3
13
25
3
4
27
10
3
4
13
20
4
1
20
40
4
1
10
80
4
2
20
20
4
2
10
40
4
3
20
10
4
3
10
25
4
4
20
10
4
4
10
20
5
1
16
40
5
2
16
20
5
3
16
10
6
1
12
40
6
2
12
20
7
1
6
40
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Table 6-643 Output power for the RRU3952 (GU MSR, 850MHz, 40W+80W) mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
2
40
40
1
3
40
20
1
4
40
20
2
1
40
40
2
2
40
20
2
3
30
20
3
1
20
40
3
2
20
30
3
2
13
40
5
1
20
20
6
1
10
20
1
1 (MIMO)
40
2x40
1
2 (MIMO)
40
2x20
2
1 (MIMO)
30
2x20
2
2 (MIMO)
20
2x20
4
1 (MIMO)
20
2x20
4
2 (MIMO)
10
2x10
Table 6-644 Output power for the RRU3952 (GL MSR, 850MHz, 40W+80W)
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Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
GSM + LTE FDD
5
1 (MIMO)
12
2x20
5, 10, 15, 20
6
1 (MIMO)
15
2x10
5, 10, 15, 20
7
1 (MIMO)
12
2x10
5, 10, 15, 20
7
1 (MIMO)
10
2x20
5, 10, 15, 20
8
1 (MIMO)
10
2x10
5, 10, 15, 20
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Engineering Specifications The following table lists the equipment specifications of an RRU3952. Table 6-645 Equipment specifications of an RRU3952 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3952
-48 V DC; voltage range: -36 V DC to -57 V DC
480 mm x 300 mm x 150 mm (without the housing)
20 (without the housing)
NOTE The RRU3952 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
The following table lists the environmental specifications of an RRU3952. Table 6-646 Environmental specifications of an RRU3952 Type
Operating Temperatur e
Relative Humidity
Absolute Humidity
Atmospheri c Pressure
Storage Time
RRU 3952
l Without solar radiation: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommended that the device be installed and used within one year after its delivery because of the failure rate.
l With solar radiation: -40°C to +45°C
The following table lists the compliance standards for an RRU3952.
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Table 6-647 Compliance standards for an RRU3952 Type
Operating Environment
Anti-Seismic Performance
Protection Rating
RRU3942
l 3GPP TS 45.005
NEBS GR63 zone4
IP65
l 3GPP TS 25.141 l 3GPP TS 36.141 l 3GPP TS 37.141 l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-648 lists the surge protection specifications of ports on an RRU3952. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-648 Surge protection specifications of ports on an RRU3952 Port
Usage Scenario
Surge Protection Mode
Specification
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
RF port
Interconnect ion port for receiving RF signals
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Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge
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Port
Usage Scenario
Surge Protection Mode
Specification
RET port
Applicable to all scenarios
Surge current
Differential mode
3 kA
Common mode
5 kA
Dry contact or RS485 alarm port
Applicable to all scenarios
Surge current
Differential mode
3 kA
Common mode
5 kA
Local power monitoring port or alarm port
Applicable to the scenario where the power supply module and the RRU are installed back to back or the scenario where the distance between them is shorter than 1m
Surge
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3952.
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Table 6-649 Specifications of CPRI ports on an RRU3952 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3952
2
1.25, 2.5, 4.9, or 9.8
Star, chain, or dual-star
CPRI MUX:
l GU: 40
l GU: 6
l GL/UL: The maximu m distances of the RRUs from the BBU vary with the types of BBP in LTE mode as follows:
l GL: 4 l UL: 4
– When the LBBP c, LBBP d1, or UBB Pd3 is config ured: 20 – When the LBBP d2 or UBB Pd4 is config ured: 40 – When the LBBP d3 , UBB Pd5, or UBB
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km) Pd6 is config ured: – Ce ll qu ant ity ≤ 3: 40 – Ce ll qu ant ity ≥ 4: 20
Antenna Capability The following table lists the antenna capability of an RRU3952. Table 6-650 Antenna capability of an RRU3952 Type
TMA Support
Supported RET Antennas
RRU3952
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.41 RRU3953/RRU3953w Technical Specifications RRU3953/RRU3953w modules are remote radio units and can work in different modes with different configurations and the software-defined radio (SDR) technique.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3953/ RRU3953w. Issue 14 (2016-01-30)
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Table 6-651 Modes and frequency bands supported by an RRU3953/RRU3953w Type
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
Mode
RRU3953/ RRU3953 w
1800
1710 to 1785
1805 to 1880
GSM, LTE FDD, and GL
RRU3953
1900
1850 to 1910
1930 to 1990
GSM, UMTS, LTE FDD, GU, GL, UL, and GUL
900
880 to 915
925 to 960
GSM, UMTS, LTE FDD, GU, GL, and UL
RF Specifications Table 6-652 lists radio frequency (RF) specifications of an RRU3953/RRU3953w. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l EF MSR indicates that E and F data is carried on the same transmit channel of an RF module. l The GSM receiver sensitivity, as recommended in 3GPP TS 51.021, is measured at the antenna connector on condition that the channel rate is 13 kbit/s and the Bit Error Rate (BER) is not higher than 2%. l The UMTS receiver sensitivity, as recommended in 3GPP TS 25.104, is measured at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l The RRU3953/RRU3953w that works in GSM mode and operates in the 1800 MHz frequency band complies with the EN 301 502 V9.2.1 standard, and operates in the 1900 MHz frequency band complies with the 3GPP TS 45.005 V10.2.0 and 3GPP TS 51.021 V10.2.0 standards.. l The RRU3953/RRU3953w that works in UMTS, LTE FDD or multiple service ring (MSR) mode, and operates in the 1800 MHz frequency band complies with the ETSI EN 301 908 V5.2.1 and 3GPP TS 37.104 standards, and operates in the 1900 MHz frequency band complies with the 3GPP TS 37.104 V10.4.0 and TS 37.141 V10.4.0 standards. l When two LTE carriers are configured, it is recommended that the power spectrum density (PSD) of the two carriers be set to the same value. Power spectrum density = Carrier output power/Carrier bandwidth (1.4 MHz and 3 MHz bandwidths are considered as 5 MHz bandwidth in this formula.)
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Table 6-652 RF specifications of an RRU3953/RRU3953w Ty pe
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
RR U3 953 / RR U3 953 w
2T 4R
GSM: 8 TRXs
GSM:
GSM:
GSM:
l 900 MHz EGS M: -113. 8
l 900 MHz EGS M: -116.6
l 900 MHz EGS M: -119.3 (theor etical value)
UMTS: l NonMIM O: 6 carrie rs l MIM O: 4 carrie rs LTE FDD: l RRU 3953( 900 MHz EGS M): 3 carrie rs, the band width per carrie r is 1.4, 3, 5, 10, 15, or 20 MHz
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l 1800 MHz: -114. 0 l 1900 MHz: -113. 7 UMTS: l 900 MHz EGS M: -125. 9 l 1900 MHz: -125. 8
l 1800 MHz: -116.8 l 1900 MHz: -116.5 UMTS: l 900 MHz EGS M: -128.7 l 1900 MHz: -128.6 LTE FDD:
LTE FDD:
l 900 MHz EGS M: -109.7
l 900 MHz EGS
l 1800 MHz: -109.4
l 1800 MHz: -119.5 (theor etical value) l 1900 MHz: -119.2 (theor etical value) UMTS: l 900 MHz EGS M: -131.4 l 1900 MHz: -131.3 LTE FDD:
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Output Power
Power Consumpt ion
The RRU3953/ RRU3953w supports the maximum power configuration 2 x 80 W. When the RRU3953/ RRU3953w works in GSM mode, it supports the maximum power configuration 2 x 60 W. The typical configurations are as follows:
See the RRU3953 sheet in 3900 Series Base Station Power Consumptio n Specificatio ns.
l Output power of the RRU3953/ RRU3953 w (GSM, 1800/1900 MHz) l Output power of the RRU3953
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Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
l RRU 3953( 1900 MHz) :2 carrie rs, the band width per carrie r is 1.4, 3, 5, 10, 15, or 20 MHz
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
M: -106. 9
l 1900 MHz: -109.1
l 900 MHz EGS M: -122.4
l 1800 MHz: -106. 6 l 1900 MHz: -106. 3
l 1800 MHz: -112.1 l 1900 MHz: -111.8
l RRU 3953 w: 2 carrie rs, the band width per carrie r is 5, 10, 15, or 20 MHz
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Output Power
Power Consumpt ion
(UMTS, 900 MHz) l Output power of the RRU3953 (UMTS, 1900 MHz) l Output power of the RRU3953/ RRU3953 w (LTE FDD, 900 MHz) l Output power of the RRU3953/ RRU3953 w (LTE FDD, 1800/1900 MHz) l ROutput power of the RRU3953 (GU nonMSR, 900/1900 MHz)
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Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
Output Power
Power Consumpt ion
l Output power of the RRU3953 (GU MSR, 900/1900 MHz) l Output power of the RRU3953/ RRU3953 w (GL MSR, 900/1800/1 900 MHz) l Output power of the RRU3953 (UL MSR, 900/1900 MHz) l Output power of the RRU3953 (GUL MSR, 1900 MHz) For typical PA configurations, see Typical
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Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
Output Power
Power Consumpt ion
Power Configuration for RRU3953/ RRU3953w in 3900 Series Base Station Initial Configuration Guide.
NOTE
l If the power sharing feature is activated, assume that UEs in a cell are randomly located. l If the RF module is placed at an altitude of 3500 to 4500 meters, its power reduces by 1 dB. If the RF module is placed at an altitude of 4500 to 6000 meters, its power reduces by 2 dB. l Station spacing, frequency multiplexing factor, power control algorithm, and traffic model all affect the gains of dynamic power sharing. In most cases, network plans are designed on the basis of power specifications of dynamic power sharing. l Before activating the dynamic power sharing feature, enable the DTX and power control functions. In GBSS8.1, the dynamic power sharing feature is mutually exclusive with the GBFD-113201 Concentric Cell, GBFD-114501 Co-BCCH Cell, GBFD-118001 BCCH Dense Frequency Multiplexing, and GBFD-117501 Enhanced Measurement Report (EMR) features. In GBSS9.0 and later versions, the dynamic power sharing feature can be used together with these features. However, the dynamic power sharing feature currently cannot be used together with the GBFD-117002 IBCA (Interference Based Channel Allocation), GBFD-117001 Flex MAIO, GBFD-118701 RAN Sharing, and GBFD-114001 Extended Cell features in GBSS8.1, GBSS9.0, and later versions. l For the RRU3953/RRU3953w working in GSM mode: when the S1 or S2 configuration is applied, the maximum output power of each carrier on the RRU3953/RRU3953w is 60 W. If the output power of 60 W is required, the related license must be obtained. l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance. l For RRU3953w, the scenario where the third-order intermodulated signal falls in the receive frequency range of a configured carrier is not supported.
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NOTE
l The RRU3953 supports a maximum of 2x80 W power configuration, and supports a maximum of 2 x 60 W power configuration working in GSM mode. l (a) indicates that when working in the 1900 MHz frequency band in GSM mode, the RRU3953 also supports the power configuration of 40 W+80 W. l (b) indicates that when only working in the 900 MHz frequency band, the RRU3953 supports the power configuration. l (c) indicates that when only working in the 1900 MHz frequency band, the RRU3953 supports the power configuration. l (d) indicates that when only working in the 1800 MHz/1900 MHz frequency band, the RRU3953 supports the power configuration.
Table 6-653 Output power of the RRU3953/RRU3953w (GSM, 900/1800/1900 MHz)
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Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier (W) When Dynamic Power Sharing Is Used
GSM
1
60
60
2
60
60
3
30
30
4
30
30
5
20
25
6
20
25
7
15
20
8
15
20
1(a)
80(a)
80(a)
2(a)
40(a)
40(a)
3(a)
40(a)
40(a)
4(a)
27(a)
27(a)
5(a)
20(a)
20(a)
6(a)
20(a)
20(a)
7(a)
16(a)
20(a)
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Table 6-654 Output power for the RRU3953 (UMTS, 900 MHz) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
80
2
80
3
40
4
40
5
26
6
26
1(MIMO)
2x60
2(MIMO)
2x40
3(MIMO)
2x26
4(MIMO)
2x20
Table 6-655 Output power for the RRU3953 (LTE FDD, 900 MHz) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
LTE FDD
1 (MIMO)
2x60
1.4, 3, 5, 10, 15, 20
2 (MIMO)
2x40
1.4, 3, 5, 10, 15, 20
3 (MIMO)
2x20
5, 10
Table 6-656 Output power for the RRU3953 (UMTS, 1900 MHz)
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
80
2
80
3
40
4
40
5
25
6
25
1 (MIMO)
2x40
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
2 (MIMO)
2x40
3 (MIMO)
2x20
4 (MIMO)
2x20
NOTE
The RRU3953 supports LTE cells with bandwidth of 1.4/3/5/10/15/20 MHz. The RRU3953w supports LTE cells with bandwidth of 5/10/15/20 MHz.
Table 6-657 Output power for the RRU3953/RRU3953w (LTE FDD, 1800 MHz/1900 MHz) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
LTE FDD
1 (MIMO)
2x60
5, 10, 15, 20
1 (MIMO)
2x40
1.4, 3
2 (MIMO)
2x40
1.4, 3, 5, 10, 15, 20
Table 6-658 Output power for the RRU3953 (GU non-MSR, 900 MHz/1900 MHz) Mode
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Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
1(c)
1(c)
80(c)
80(c)
1(c)
2(c)
80(c)
40(c)
1(c)
3(c)
80(c)
27(c)
1(c)
4(c)
80(c)
20(c)
2
1
40
80
2
2
40
40
2
3
40
27
2
4
40
20
3
1
27
80
3
2
27
40
3
3
27
27
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
3
4
27
20
4
1
20
80
4
2
20
40
4
3
20
27
4
4
20
20
5
1
16
80
5
2
16
40
5
3
16
27
6
1
12
80
6
2
12
40
6(c)
3(c)
10(c)
27(c)
7(c)
1(c)
6(c)
80(c)
Table 6-659 Output power for the RRU3953 (GU MSR, 900 MHz/1900 MHz)
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1(b)
1(b)
30(b)
50(b)
1(b)
2(b)
30(b)
50(b)
1
1
40
40
1
2
40
40
1
3
40
40
1(b)
4(b)
40(b)
20(b)
1(c)
4(c)
40(c)
27(c)
2(b)
1(b)
30(b)
50(b)
2
1
40
40
2(b)
2(b)
30(b)
50(b)
2
2
40
40
2(b)
3(b)
20(b)
40(b)
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Mode
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Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
2
3
40
20
2(b)
4(b)
40(b)
20(b)
3
1
40
40
3
2
20
40
3(b)
2(b)
25(b)
30(b)
3(b)
2(b)
30(b)
20(b)
3(b)
3(b)
25(b)
25(b)
3(b)
3(b)
20(b)
30(b)
3(b)
4(b)
20(b)
20(b)
4
1
20
40
4(b)
1(b)
27(b)
40(b)
4
2
20
40
4(b)
2(b)
25(b)
30(b)
4(b)
2(b)
30(b)
20(b)
4(b)
3(b)
15(b)
20(b)
4(b)
4(b)
15(b)
25(b)
5
1
20
40
5(b)
1(b)
27(b)
27(b)
5
2
20
20
5
2
15
30
5(b)
2(b)
20(b)
30(b)
6
1
20
40
6
2
20
20
6(c)
2(c)
15(c)
30(c)
7(c)
1(c)
15(c)
30(c)
7(b)
1(b)
16(b)
30(b)
7(b)
1(b)
20(b)
20(b)
1(b)
1(MIMO)(b)
30(b)
2x50 (b)
1
1(MIMO)
40
2x40
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
2(b)
1(MIMO)(b)
30(b)
2x50 (b)
2
1(MIMO)
40
2x40
3
1(MIMO)
20
2x40
3(b)
1(MIMO)(b)
25(b)
2x30 (b)
4
1(MIMO)
20
2x40
4(b)
1(MIMO)(b)
25(b)
2x30 (b)
4(b)
1(MIMO)(b)
30(b)
2x20 (b)
1(b)
2(MIMO)(b)
20(b)
2x30 (b)
1
2(MIMO)
40
2x20
2(b)
2(MIMO)(b)
20(b)
2x30 (b)
2
2(MIMO)
40
2x20
3(b)
2(MIMO)(b)
15(b)
2x20 (b)
3
2(MIMO)
20
2x20
4(b)
2(MIMO)(b)
15(b)
2x20 (b)
4(c)
2(MIMO)(c)
20(c)
2x20 (c)
1(b)
3(MIMO)(b)
20(b)
2x20 (b)
2(b)
3(MIMO)(b)
15(b)
2x20 (b)
NOTE
l The RRU3953 supports LTE cells with bandwidth of 1.4/3/5/10/15/20 MHz. The RRU3953w supports LTE cells with bandwidth of 5/10/15/20 MHz.
Table 6-660 Output power for the RRU3953/RRU3953w (GL MSR, 900 MHz/1800 MHz/ 1900 MHz) Mode
Issue 14 (2016-01-30)
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
1
1(MIMO)
40
2x40
1.4, 3, 5, 10, 15, 20
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Mode
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6 Product Specifications
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
1
1(MIMO)
30
2x50
1.4, 3, 5, 10, 15, 20
2(b)
1(MIMO)(b)
40(b)
2x20(b)
1.4, 3, 5, 10, 15, 20 (b)
2
1(MIMO)
40
2x40
1.4, 3, 5, 10, 15, 20
2
1(MIMO)
30
2x50
1.4, 3, 5, 10, 15, 20
3
1(MIMO)
20
2x40
1.4, 3, 5, 10, 15, 20
3
1(MIMO)
25
2x30
1.4, 3, 5, 10, 15, 20
3
1(MIMO)
30
2x20
1.4, 3, 5, 10, 15, 20
4
1(MIMO)
20
2x40
1.4, 3, 5, 10, 15, 20
4
1(MIMO)
25
2x30
1.4, 3, 5, 10, 15, 20
4
1(MIMO)
30
2x20
1.4, 3, 5, 10, 15, 20
5
1(MIMO)
20
2x20
1.4, 3, 5, 10, 15, 20
5
1(MIMO)
16
2x30
1.4, 3, 5, 10, 15, 20
6(b)
1(MIMO)(b)
15(b)
2x20(b)
1.4, 3, 5, 10, 15, 20 (b)
6(b)
1(MIMO)(b)
16(b)
2x30(b)
1.4, 3, 5, 10, 15, 20 (b)
6(c)
1(MIMO)(c)
20(c)
2x20(c)
1.4, 3, 5, 10, 15, 20(c)
7(c)
1(MIMO)(c)
15(c)
2x20(c)
1.4, 3, 5, 10, 15, 20(c)
1
2(MIMO)
20
2x30
1.4, 3, 5, 10, 15, 20
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Mode
6 Product Specifications
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
1(d)
2(MIMO)(d)
20(d)
l Carrier 1: 2x40(d)
1.4, 3, 5, 10, 15, 20(d)
l Carrier 2: 2x20(d) 1(c)
2(MIMO)(c)
30(c)
l Carrier 1: 2x20(c)
1.4, 3, 5, 10, 15, 20(c)
l Carrier 2: 2x30(c) 1(c)
2(MIMO)(c)
40(c)
2x20(c)
1.4, 3, 5, 10, 15, 20(c)
2
2(MIMO)
20
2x30
1.4, 3, 5, 10, 15, 20
2(d)
2(MIMO)(d)
20(d)
l Carrier 1: 2x40(d)
1.4, 3, 5, 10, 15, 20(d)
l Carrier 2: 2x20(d) 2(b)
2(MIMO)(b)
30(b)
2x25(b)
1.4, 3, 5, 10, 15, 20(b)
2(c)
2(MIMO)(c)
30(c)
l Carrier 1: 2x20(c)
1.4, 3, 5, 10, 15, 20(c)
l Carrier 2: 2x30(c) 2(c)
2(MIMO)(c)
40(c)
2x20(c)
1.4, 3, 5, 10, 15, 20(c)
3
2(MIMO)
20
2x20
1.4, 3, 5, 10, 15, 20
3(d)
2(MIMO)(d)
20(d)
l Carrier 1: 2x25(d)
1.4, 3, 5, 10, 15, 20(d)
l Carrier 2: 2x15(d) 4
2(MIMO)
20
2x20
1.4, 3, 5, 10, 15, 20
4(d)
2(MIMO)(d)
20(d)
l Carrier 1: 2x25(d)
1.4, 3, 5, 10, 15, 20(d)
l Carrier 2: 2x15(d)
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Mode
6 Product Specifications
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
4(d)
2(MIMO)(d)
10(d)
l Carrier 1: 2x40(d)
1.4, 3, 5, 10, 15, 20(d)
l Carrier 2: 2x20(d)
Table 6-661 Output power for the RRU3953 (UL MSR, 900 MHz/1900 MHz) Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidt h Supported by LTE FDD (MHz)
UMTS + LTE FDD
1
1 (MIMO)
40
2x40
1.4, 3, 5, 10, 15, 20
1 (MIMO)
1 (MIMO)
2x40
2x40
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
40
2x40
1.4, 3, 5, 10, 15, 20
2 (MIMO)
1 (MIMO)
2x20
2x40
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
20
2x40
1.4, 3, 5, 10, 15, 20
3 (MIMO)
1 (MIMO)
2 x 15
2x30
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
20
2x20
1.4, 3, 5, 10, 15, 20
4 (MIMO)
1 (MIMO)
2 x 15
2x20
1.4, 3, 5, 10, 15, 20
1
2 (MIMO)
40
2x20
1.4, 3, 5, 10, 15, 20
1
2 (MIMO)
20
l Carrier 1: 2x20
1.4, 3, 5, 10, 15, 20
l Carrier 2: 2x40
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Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidt h Supported by LTE FDD (MHz)
1
2 (MIMO)
20
2x30
1.4, 3, 5, 10, 15, 20
2
2 (MIMO)
40
2x20
1.4, 3, 5, 10, 15, 20
2
2 (MIMO)
20
l Carrier 1: 2x20
1.4, 3, 5, 10, 15, 20
l Carrier 2: 2x40 2
2 (MIMO)
20
2x30
1.4, 3, 5, 10, 15, 20
3
2 (MIMO)
20
2x20
1.4, 3, 5, 10, 15, 20
4
2 (MIMO)
20
2x20
1.4, 3, 5, 10, 15, 20
2+1 (MIMO)(c)
1 (MIMO) (c)
l NonMIMO: 20(c)
2x20(c)
1.4, 3, 5, 10, 15, 20(c)
l MIMO: 2x10(c)
Table 6-662 Output power for the RRU3953 (GUL MSR, 1900 MHz)
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Mode
Total Numbe r of GSM Carriers
Total Numbe r of UMTS Carriers
Total Numb er of LTE FDD Carrier s
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwi dth Suppor ted by LTE FDD (MHz)
GSM + UMTS + LTE FDD
1
1
1 (MIMO )
40
40
2x40
1.4, 3, 5, 10, 15, 20
2
1
1 (MIMO )
20
40
2x40
1.4, 3, 5, 10, 15, 20
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Mode
6 Product Specifications
Total Numbe r of GSM Carriers
Total Numbe r of UMTS Carriers
Total Numb er of LTE FDD Carrier s
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwi dth Suppor ted by LTE FDD (MHz)
3
1
1 (MIMO )
20
40
2x20
1.4, 3, 5, 10, 15, 20
4
1
1 (MIMO )
10
40
2x20
1.4, 3, 5, 10, 15, 20
1
2
1 (MIMO )
40
20
2x40
1.4, 3, 5, 10, 15, 20
2
2
1 (MIMO )
20
20
2x40
1.4, 3, 5, 10, 15, 20
3
2
1 (MIMO )
20
20
2x20
1.4, 3, 5, 10, 15, 20
4
2
1 (MIMO )
10
20
2x20
1.4, 3, 5, 10, 15, 20
Engineering Specifications The following table lists the equipment specifications of an RRU3953/RRU3953w.
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Table 6-663 Equipment specifications of an RRU3953/RRU3953w Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3953 / RRU3953 w
-48 V DC; voltage range: -36 V DC to -57 V DC
400 mm x 300 mm x 150 mm (without the housing)
20 (without the housing)
NOTE The RRU3953/ RRU3953w supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
The following table lists the environmental specifications of an RRU3953/RRU3953w.
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Table 6-664 Environmental specifications of an RRU3953/RRU3953w Type
Operating Temperatur e
Relative Humidity
Absolute Humidity
Atmospheri c Pressure
Storage Time
RRU 3953/ RRU 3953 w
l Without solar radiation: -40°C to +55°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommended that the device be installed and used within one year after its delivery because of the failure rate.
l With solar radiation: -40°C to +50°C NOTE According to the installation scenario, traffic load, and carrier configuration, the output power of the RRU3953/ RRU3953w may temporarily decrease when they work in the highest 10°C temperature range.
The following table lists the compliance standards for an RRU3953/RRU3953w.
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Table 6-665 Compliance standards of an RRU3953/RRU3953w Type
Operating Environment
Anti-Seismic Performance
Protection Rating
RRU3953 / RRU3953 w
l 3GPP TS 45.005
NEBS GR63 zone4
IP65
l 3GPP TS 25.141 l 3GPP TS 36.141 l 3GPP TS 37.141 l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-666 lists the surge protection specifications of ports on an RRU3953/RRU3953w. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-666 Surge protection specifications of ports on an RRU3953/RRU3953w Port
Usage Scenario
Surge Protection Mode
Specification
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Surge current
RF port
RET port
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Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
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Port
Usage Scenario
Surge Protection Mode
Specification
Dry contact or RS485 alarm port
Applicable to all scenarios
Surge current
Differential mode
3 kA
Common mode
5 kA
Local power monitoring port or alarm port
Applicable to the scenario where the power supply module and the RRU are installed back to back or the scenario where the distance between them is shorter than 1m
Surge
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3953/RRU3953w.
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Table 6-667 Specifications of CPRI ports on an RRU3953/RRU3953w Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3953/ RRU3953w
2
1.25, 2.5, 4.9, or 9.8
Star, chain, or dual-star
CPRI MUX:
l GU: 40
l GU: 6
l GL/UL/ GUL: The maximu m distances of the RRUs from the BBU vary with the types of BBP in LTE mode as follows:
l GL: 4 l UL: 4 l GUL: 4
– When the LBBP c, LBBP d1, or UBB Pd3 is config ured: 20 – When the LBBP d2 or UBB Pd4 is config ured: 40 – When the LBBP d3 , UBB Pd5, or
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Type
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Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km) UBB Pd6 is config ured: – Ce ll qu ant ity ≤ 3: 40 – Ce ll qu ant ity ≥ 4: 20
Antenna Capability The following table lists the antenna capability of an RRU3953/RRU3953w. Table 6-668 Antenna capability of an RRU3953/RRU3953w Type
TMA Support
Supported RET Antennas
RRU3953/RRU3953w
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.42 RRU3958 Technical Specifications RRU3958 modules are remote radio units and can work in different modes with different configurations and the software-defined radio (SDR) technique.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3958. Issue 14 (2016-01-30)
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Table 6-669 Modes and frequency bands supported by an RRU3958 Type
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
Mode
RRU3958
2100
1920 to 1980
2110 to 2170
UMTS, LTE FDD, and UL
RF Specifications Table 6-670 lists radio frequency (RF) specifications of an RRU3958. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l EF MSR indicates that E and F data is carried on the same transmit channel of an RF module. l EF non-MSR indicates that E data is carried on one transmit channel of an RF module while F data is carried on the other transmit channel of the RF module. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l When two LTE carriers are configured, it is recommended that the power spectrum density (PSD) of the two carriers be set to the same value. Power spectrum density = Carrier output power/Carrier bandwidth (1.4 MHz and 3 MHz bandwidths are considered as 5 MHz bandwidth in this formula.)
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Table 6-670 RF specifications of an RRU3958 Ty pe
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
RR U3 958
2T 2R
UMTS: l 6 carrie rs witho ut MIM O
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
UMTS: -126.1
UMTS: -128.9
LTE FDD: -106.9
LTE FDD: -109.7
GSM: -131.6 (theoretic al value) UMTS: -112.4
l 4 carrie rs with MIM O LTE FDD: 2 carriers, bandwidt h per carrier is 5, 10, 15, or 20 MHz
Output Power
Power Consumpt ion
The RRU3958 supports the maximum power configuration 2 x 40 W. The typical configurations are as follows:
See the RRU3958 sheet in 3900 Series Base Station Power Consumptio n Specificatio ns.
l Output power for the RRU3958 (UMTS, 2100 MHz) l Output power for the RRU3958 (LTE FDD, 2100 MHz) l Output power for the RRU3958 (UL MSR, 2100 MHz) For typical PA configurations, see Typical
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Ty pe
6 Product Specifications
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
Output Power
Power Consumpt ion
Power Configuration for RRU3958 in 3900 Series Base Station Initial Configuration Guide.
NOTE
l If the power sharing feature is activated, assume that UEs in a cell are randomly located. l If the RF module is placed at an altitude of 3500 to 4500 meters, its power reduces by 1 dB. If the RF module is placed at an altitude of 4500 to 6000 meters, its power reduces by 2 dB. l Station spacing, frequency multiplexing factor, power control algorithm, and traffic model all affect the gains of dynamic power sharing. In most cases, network plans are designed on the basis of power specifications of dynamic power sharing. l Before activating the dynamic power sharing feature, enable the DTX and power control functions. In GBSS8.1, the dynamic power sharing feature is mutually exclusive with the GBFD-113201 Concentric Cell, GBFD-114501 Co-BCCH Cell, GBFD-118001 BCCH Dense Frequency Multiplexing, and GBFD-117501 Enhanced Measurement Report (EMR) features. In GBSS9.0 and later versions, the dynamic power sharing feature can be used together with these features. However, the dynamic power sharing feature currently cannot be used together with the GBFD-117002 IBCA (Interference Based Channel Allocation), GBFD-117001 Flex MAIO, GBFD-118701 RAN Sharing, and GBFD-114001 Extended Cell features in GBSS8.1, GBSS9.0, and later versions. l For the RRU3958 working in GSM mode: when the S1 or S2 configuration is applied, the maximum output power of each carrier on the RRU3958 is 60 W. If the output power of 60 W is required, the related license must be obtained. l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance. l For RRU3958, the scenario where the third-order intermodulated signal falls in the receive frequency range of a configured carrier is not supported.
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Table 6-671 Output power for the RRU3959 (GSM, 900 MHz/1800 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
60
60
2
60
60
3
30
30
4
30
30
5
20
25
6
20
25
7
15
20
8
15
20
Table 6-672 Output power for the RRU3959 (UMTS, 900 MHz) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
60
2
60
3
30
4
30
5
20
6
20
1 (MIMO)
2 x 40
2 (MIMO)
2 x 30
3 (MIMO)
2 x 20
4 (MIMO)
2 x 15
Table 6-673 Output power for the RRU3959 (GU non-MSR, 900 MHz)
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
1
60
60
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
1
2
60
30
1
3
60
20
2
1
30
60
2
2
30
30
2
3
30
20
2
4
30
15
3
1
20
60
3
2
20
30
3
3
20
20
3
4
20
15
4
1
15
60
4
2
15
30
4
3
15
20
4
4
15
15
5
1
10
60
5
2
10
30
5
3
10
20
6
1
7
60
6
2
7
30
Engineering Specifications The following table lists the equipment specifications of an RRU3958.
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Table 6-674 Equipment specifications of an RRU3958 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3958
-48 V DC; voltage range: -36 V DC to -57 V DC
400 mm x 300 mm x 100 mm (without the housing)
15 (without the housing)
NOTE The RRU3958 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
The following table lists the environmental specifications of an RRU3958. Table 6-675 Environmental specifications of an RRU3958 Type
Operating Temperatur e
Relative Humidity
Absolute Humidity
Atmospheri c Pressure
Storage Time
RRU 3958
l Without solar radiation: -40°C to +55°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommended that the device be installed and used within one year after its delivery because of the failure rate.
l With solar radiation: -40°C to +50°C NOTE According to the installation scenario, traffic load, and carrier configuration, the output power of the RRU3958 may temporarily decrease when they work in the highest 10°C temperature range.
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The following table lists the compliance standards for an RRU3958. Table 6-676 Compliance standards for an RRU3958 Type
Operating Environment
Anti-Seismic Performance
Protection Rating
RRU3958
l 3GPP TS 25.141
NEBS GR63 zone4
IP65
l 3GPP TS 36.141 l 3GPP TS 37.141 l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-677 lists the surge protection specifications of ports on an RRU3958. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-677 Surge protection specifications of ports on an RRU3958 Port
Usage Scenario
Surge Protection Mode
Specification
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Surge current
RF port
RET port
Issue 14 (2016-01-30)
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
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Port
Usage Scenario
Surge Protection Mode
Specification
Dry contact or RS485 alarm port
Applicable to all scenarios
Surge current
Differential mode
3 kA
Common mode
5 kA
Local power monitoring port or alarm port
Applicable to the scenario where the power supply module and the RRU are installed back to back or the scenario where the distance between them is shorter than 1m
Surge
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3958.
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Table 6-678 Specifications of CPRI ports on an RRU3958 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3958
2
1.25, 2.5, 4.9, or 9.8
Star, chain, or dual-star
UL CPRI MUX: 4
UMTS: 40 LTE FDD: l When the LBBPc, LBBPd1, or UBBPd3 is configure d: 20 l When the LBBPd2 or UBBPd4 is configure d: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configure d: – Cell quanti ty ≤ 3: 40 – Cell quanti ty ≥ 4: 20
Antenna Capability The following table lists the antenna capability of an RRU3958.
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Table 6-679 Antenna capability of an RRU3958 Type
TMA Support
Supported RET Antennas
RRU3958
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.43 RRU3959/RRU3959w Technical Specifications RRU3959/RRU3959w modules are remote radio units and can work in different modes with different configurations and the software-defined radio (SDR) technique.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3959/ RRU3959w. Table 6-680 Modes and frequency bands supported by an RRU3959/RRU3959w Type
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
Mode
RRU3959
900 EGSM
880 to 915
925 to 960
900 PGSM
890 to 915
935 to 960
GSM, UMTS, and GU
900
885 to 910
930 to 955
885 to 915
930 to 960
1710 to 1785
1805 to 1880
1710 to 1770
1805 to 1865
1730 to 1780
1825 to 1875
2100
1920 to 1980
2110 to 2170
UMTS, LTE FDD, and UL
1800
1710 to 1785
1805 to 1880
GSM, LTE FDD, and GL
1800
RRU3959 w
GSM, LTE FDD, and GL
RF Specifications Table 6-681 lists radio frequency (RF) specifications of an RRU3959/RRU3959w.
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NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l EF MSR indicates that E and F data is carried on the same transmit channel of an RF module. l EF non-MSR indicates that E data is carried on one transmit channel of an RF module while F data is carried on the other transmit channel of the RF module. l The GSM receiver sensitivity is measured, as recommended in 3GPP TS 51.021, over the central band at the antenna connector on condition that the channel rate reaches 13 kbit/s and the bit error rate (BER) does not exceed 2%. The central band is the 80% of the full band. l The UMTS receiver sensitivity is measured, as recommended in 3GPP TS 25.104, over the full band at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l The RRU3959/RRU3959w that works in GSM mode and operates in the 900 or 1800 MHz frequency band complies with the EN 301 502 V9.2.1 standard. l The RRU3959/RRU3959w that works in UMTS, LTE FDD, or multiple service ring (MSR) mode and operates in the 900 or 1800 MHz frequency band complies with the ETSI EN 301 908 V5.2.1 and 3GPP TS 37.104 standards. l When two LTE carriers are configured, it is recommended that the power spectrum density (PSD) of the two carriers be set to the same value. Power spectrum density = Carrier output power/Carrier bandwidth (1.4 MHz and 3 MHz bandwidths are considered as 5 MHz bandwidth in this formula.)
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Table 6-681 RF specifications of an RRU3959/RRU3959w Ty pe
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
RR U3 959 (90 0 M Hz)
2T 2R
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
GSM: 8 TRXs
GSM: -113.7
GSM: -116.5
UMTS:
UMTS: -125.8
UMTS: -128.6
GSM: -119.2 (theoretic al value)
LTE FDD: -106.3
LTE FDD: -109.1
l Witho ut MIM O: 6 carrie rs
UMTS: -131.3 LTE FDD: – 111.8
l With MIM O: 4 carrie rs LTE FDD: 2 carriers, the bandwidt h per carrier is 1.4, 3, 5, 10, 15, or 20 MHz
Output Power
Power Consumpt ion
The RRU3959 supports the maximum power configuration 2 x 60 W. The typical configurations are as follows:
See the RRU3959 sheet in 3900 Series Base Station Power Consumptio n Specificatio ns.
l Output power for the RRU3959 (GSM, 900 MHz/1800 MHz) l Output power for the RRU3959 (UMTS, 900 MHz) l Output power for the RRU3959 (GU NonMSR, 900 MHz) l Output power for the RRU3959
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Ty pe
6 Product Specifications
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
Output Power
Power Consumpt ion
(GU MSR, 900 MHz) For typical PA configurations, see Typical Power Configuration for RRU3959/ RRU3959w in 3900 Series Base Station Initial Configuration Guide.
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Ty pe
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
RR U3 959 (18 00 M Hz) / RR U3 959 w
2T 2R
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
GSM: 8 TRXs
GSM: -114.0
GSM: -116.8
LTE FDD:
LTE FDD: -106.6
LTE FDD: -109.4
GSM: -119.5 (theoretic al value)
l RRU 3959: 2 carrie rs, the band width per carrie r is 1.4, 3, 5, 10, 15, or 20 MHz
LTE FDD: – 112.1
l RRU 3959 w: 2 carrie rs, the band width per carrie r is 5, 10, 15, or 20 MHz
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Output Power
Power Consumpt ion
The RRU3959 supports the maximum power configuration 2 x 60 W. The typical configurations are as follows: l Output power for the RRU3959 (GSM, 900 MHz/1800 MHz) l Output power for the RRU3959 (LTE FDD, 1800 MHz) l Output power for the RRU3959 (GL MSR, 1800 MHz) l Output power for the RRU3959
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Ty pe
6 Product Specifications
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
Output Power
Power Consumpt ion
w (LTE FDD, 1800 MHz) l Output power for the RRU3959 w (GL MSR, 1800MHz) For typical PA configurations, see Typical Power Configuration for RRU3959/ RRU3959w in 3900 Series Base Station Initial Configuration Guide.
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Ty pe
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
RR U3 959 (21 00 M Hz)
2T 2R
UMTS: l Witho ut MIM O: 6 carrie rs
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
UMTS: -126.1
UMTS: -128.9
UMTS: -131.6
LTE FDD: -106.9
LTE FDD: -109.7
LTE FDD: -112.4
l With MIM O: 4 carrie rs LTE FDD: 4 carriers, the bandwidt h per carrier is 5, 10, 15, or 20MHz
Output Power
Power Consumpt ion
The RRU3959 supports the maximum power configuration 2 x 60 W. The typical configurations are as follows: l Output power for the RRU3959 (UMTS, 2100 MHz) l Output power for the RRU3959 (LTE FDD, 2100 MHz) l Output power for the RRU3959 (UL MSR, 2100 MHz) For typical PA configurations, see Typical Power
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3900 Series Base Station Technical Description
Ty pe
6 Product Specifications
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
Output Power
Power Consumpt ion
Configuration for RRU3959/ RRU3959w in 3900 Series Base Station Initial Configuration Guide.
NOTE
l If the power sharing feature is activated, assume that UEs in a cell are randomly located. l If the RF module is placed at an altitude of 3500 to 4500 meters, its power reduces by 1 dB. If the RF module is placed at an altitude of 4500 to 6000 meters, its power reduces by 2 dB. l Station spacing, frequency multiplexing factor, power control algorithm, and traffic model all affect the gains of dynamic power sharing. In most cases, network plans are designed on the basis of power specifications of dynamic power sharing. l Before activating the dynamic power sharing feature, enable the DTX and power control functions. In GBSS8.1, the dynamic power sharing feature is mutually exclusive with the GBFD-113201 Concentric Cell, GBFD-114501 Co-BCCH Cell, GBFD-118001 BCCH Dense Frequency Multiplexing, and GBFD-117501 Enhanced Measurement Report (EMR) features. In GBSS9.0 and later versions, the dynamic power sharing feature can be used together with these features. However, the dynamic power sharing feature currently cannot be used together with the GBFD-117002 IBCA (Interference Based Channel Allocation), GBFD-117001 Flex MAIO, GBFD-118701 RAN Sharing, and GBFD-114001 Extended Cell features in GBSS8.1, GBSS9.0, and later versions. l For the RRU3959/RRU3959w working in GSM mode: when the S1 or S2 configuration is applied, the maximum output power of each carrier on the RRU3959 is 60 W. If the output power of 60 W is required, the related license must be obtained. l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance. l For RRU3959w, the scenario where the third-order intermodulated signal falls in the receive frequency range of a configured carrier is not supported.
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Table 6-682 Output power for the RRU3959 (GSM, 900 MHz/1800 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
60
60
2
60
60
3
30
30
4
30
30
5
20
25
6
20
25
7
15
20
8
15
20
Table 6-683 Output power for the RRU3959 (UMTS, 900 MHz) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
60
2
60
3
30
4
30
5
20
6
20
1 (MIMO)
2 x 40
2 (MIMO)
2 x 30
3 (MIMO)
2 x 20
4 (MIMO)
2 x 15
Table 6-684 Output power for the RRU3959 (GU non-MSR, 900 MHz)
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
1
60
60
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
1
2
60
30
1
3
60
20
2
1
30
60
2
2
30
30
2
3
30
20
2
4
30
15
3
1
20
60
3
2
20
30
3
3
20
20
3
4
20
15
4
1
15
60
4
2
15
30
4
3
15
20
4
4
15
15
5
1
10
60
5
2
10
30
5
3
10
20
6
1
7
60
6
2
7
30
Table 6-685 Output power for the RRU3959 (GU MSR, 900 MHz)
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
2
30
30
1
2
20
40
2
1
40
20
2
1
30
30
2
2
20
40
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Mode
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6 Product Specifications
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
2
2
30
30
2
2
40
20
3
1
30
30
3
1
20
40
3
2
20
20
3
2
15
30
4
1
20
40
4
2
20
20
4
2
15
30
5
1
20
20
5
1
15
30
5
2
13
20
6
1
15
30
6
2
13
20
7
1
10
20
1
1 (MIMO)
20
2 x 40
1
1 (MIMO)
30
2 x 30
1
1 (MIMO)
40
2 x 20
1
2 (MIMO)
20
2 x 20
2
1 (MIMO)
20
2 x 40
2
1 (MIMO)
30
2 x 30
2
1 (MIMO)
40
2 x 20
2
2 (MIMO)
20
2 x 20
2
2 (MIMO)
30
2 x 15
3
1 (MIMO)
20
2 x 20
3
1 (MIMO)
15
2 x 30
3
2 (MIMO)
15
2 x 15
3
2 (MIMO)
20
2 x 10
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Mode
6 Product Specifications
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
3
2 (MIMO)
10
2 x 20
4
1 (MIMO)
20
2 x 20
4
1 (MIMO)
15
2 x 30
4
2 (MIMO)
15
2 x 15
4
2 (MIMO)
20
2 x 10
4
2 (MIMO)
10
2 x 20
Table 6-686 Output power for the RRU3959 (LTE FDD, 1800 MHz) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 60
5, 10, 15, 20
1 (MIMO)
2 x 40
1.4, 3
2 (MIMO)
2 x 30
1.4, 3, 5, 10, 15, 20
2 (MIMO)
l Carrier 1: 2 x 20
1.4, 3, 5, 10, 15, 20
l Carrier 2: 2 x 40
Table 6-687 Output power for the RRU3959 (GL MSR, 1800 MHz)
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Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
GSM + LTE FDD
1
1 (MIMO)
40
2 x 20
1.4, 3, 5, 10, 15, 20
1
1 (MIMO)
30
2 x 30
1.4, 3, 5, 10, 15, 20
1
1 (MIMO)
20
2 x 40
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
40
2 x 20
1.4, 3, 5, 10, 15, 20
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Mode
6 Product Specifications
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
2
1 (MIMO)
30
2 x 30
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
20
2 x 40
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
20
2 x 20
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
15
2 x 30
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
20
2 x 20
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
15
2 x 30
1.4, 3, 5, 10, 15, 20
5
1 (MIMO)
12
2 x 20
1.4, 3, 5, 10, 15, 20
5
1 (MIMO)
7.5
2 x 30
1.4, 3, 5, 10, 15, 20
6
1 (MIMO)
12
2 x 20
1.4, 3, 5, 10, 15, 20
6
1 (MIMO)
7.5
2 x 30
1.4, 3, 5, 10, 15, 20
1
2 (MIMO)
20
2 x 20
1.4, 3, 5, 10, 15, 20
1
2 (MIMO)
20
l Carrier 1: 2 x 30
1.4, 3, 5, 10, 15, 20
l Carrier 2: 2 x 10 1
2 (MIMO)
30
l Carrier 1: 2 x 20
1.4, 3, 5, 10, 15, 20
l Carrier 2: 2 x 10 2
2 (MIMO)
20
2 x 20
1.4, 3, 5, 10, 15, 20
2
2 (MIMO)
20
l Carrier 1: 2 x 30
1.4, 3, 5, 10, 15, 20
l Carrier 2: 2 x 10 Issue 14 (2016-01-30)
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Mode
6 Product Specifications
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
3
2 (MIMO)
10
2 x 20
1.4, 3, 5, 10, 15, 20
3
2 (MIMO)
15
l Carrier 1: 2 x 20
1.4, 3, 5, 10, 15, 20
l Carrier 2: 2 x 10 4
2 (MIMO)
20
2 x 10
1.4, 3, 5, 10, 15, 20
4
2 (MIMO)
10
2 x 20
1.4, 3, 5, 10, 15, 20
4
2 (MIMO)
15
l Carrier 1: 2 x 20
1.4, 3, 5, 10, 15, 20
l Carrier 2: 2 x 10
Table 6-688 Output power for the RRU3959w (LTE FDD, 1800 MHz) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
2 (MIMO)
l Carrier 1: 2 x 20
l Carrier 1: 5
l Carrier 2: 2 x 40
l Carrier 2: 10
Table 6-689 Output power for the RRU3959w (GL MSR, 1800 MHz)
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Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
GSM + LTE FDD
2
1 (MIMO)
20
2 x 40
10
4
1 (MIMO)
20
2 x 20
5
4
1 (MIMO)
15
2 x 30
10, 15
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Table 6-690 Output power for the RRU3959 (UMTS, 2100 MHz) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
60
2
60
3
30
4
30
5
20
6
20
1 (MIMO)
2x40
2 (MIMO)
2x30
3 (MIMO)
2x20
4 (MIMO)
2x15
2+1 (MIMO)
l Non-MIMO Carrier: 30 l MIMO Carrier: 2x30 l Non-MIMO Carrier: 20
2+2 (MIMO)
l MIMO Carrier: 2x20 l Non-MIMO Carrier: 15
2+3 (MIMO)
l MIMO Carrier: 2x15 l Non-MIMO Carrier: 20
4+1 (MIMO)
l MIMO Carrier: 2x20 l Non-MIMO Carrier: 15
4+2 (MIMO)
l MIMO Carrier: 2x15 l Non-MIMO Carrier: 15
6+1 (MIMO)
l MIMO Carrier: 2x15
Table 6-691 Output power for the RRU3959 (LTE FDD, 2100 MHz)
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Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2x60
5, 10, 15, 20
2 (MIMO)
2x30
5, 10, 15, 20
3 (MIMO)
2x20
5, 10, 15, 20
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Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
4 (MIMO)
2x15
5, 10, 15
Table 6-692 Output power for the RRU3959 (UL MSR, 2100 MHz) Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
UMTS + LTE FDD
1
1 (MIMO)
30
2x30
5, 10, 15, 20
2
1 (MIMO)
30
2x30
5, 10, 15, 20
3
1 (MIMO)
20
2x20
5, 10, 15, 20
4
1 (MIMO)
20
2x20
5, 10, 15, 20
1 (MIMO)
1 (MIMO)
2x30
2x30
5, 10, 15, 20
2 (MIMO)
1 (MIMO)
2x20
2x20
5, 10, 15, 20
3 (MIMO)
1 (MIMO)
2x15
2x15
5, 10, 15, 20
4 (MIMO)
1 (MIMO)
2x10
2x20
5, 10, 15, 20
6
1 (MIMO)
15
2x15
5, 10, 15, 20
2
2 (MIMO)
20
2x20
5, 10, 15, 20
4
2 (MIMO)
15
2x15
5, 10, 15, 20
6
2 (MIMO)
10
2x15
5, 10, 15
2
3 (MIMO)
15
2x15
5, 10, 15
Engineering Specifications The following table lists the equipment specifications of an RRU3959/RRU3959w.
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Table 6-693 Equipment specifications of an RRU3959/RRU3959w Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3959 / RRU3959 w
-48 V DC; voltage range: -36 V DC to -57 V DC
400mm x 300mm x 100mm (without the housing)
l RRU3959 (900 MHz/1800 MHz)/ RRU3959w: 14 (without the housing)
NOTE The RRU3959/ RRU3959w supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
l RRU3959 (2100 MHz): 15 (without the housing)
The following table lists the environmental specifications of an RRU3959/RRU3959w.
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Table 6-694 Environmental specifications of an RRU3959/RRU3959w Type
Operating Temperatur e
Relative Humidity
Absolute Humidity
Atmospheri c Pressure
Storage Time
RRU 3959/ RRU 3959 w
l Without solar radiation: -40°C to +55°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommended that the device be installed and used within one year after its delivery because of the failure rate.
l With solar radiation: -40°C to +50°C NOTE According to the installation scenario, traffic load, and carrier configuration, the output power of the RRU3959/ RRU3959w may temporarily decrease when they work in the highest 10°C temperature range.
The following table lists the compliance standards for an RRU3959/RRU3959w.
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Table 6-695 Compliance standards for an RRU3959/RRU3959w Type
Operating Environment
Anti-Seismic Performance
Protection Rating
RRU3959 / RRU3959 w
l 3GPP TS 45.005
NEBS GR63 zone4
IP65
l 3GPP TS 25.141 l 3GPP TS 36.141 l 3GPP TS 37.141 l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-696 lists the surge protection specifications of ports on an RRU3959/RRU3959w. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-696 Surge protection specifications of ports on an RRU3959/RRU3959w Port
Usage Scenario
Surge Protection Mode
Specification
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Surge current
RF port
RET port
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Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
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Port
Usage Scenario
Surge Protection Mode
Specification
Dry contact or RS485 alarm port
Applicable to all scenarios
Surge current
Differential mode
3 kA
Common mode
5 kA
Local power monitoring port or alarm port
Applicable to the scenario where the power supply module and the RRU are installed back to back or the scenario where the distance between them is shorter than 1m
Surge
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3959/RRU3959w.
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Table 6-697 Specifications of CPRI ports on an RRU3959/RRU3959w Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3959/ RRU3959w
2
1.25, 2.5, 4.9, or 9.8
Star, chain, or dual-star
CPRI MUX:
l GU (dualstar/ CPRI MUX): 40
l GU: 6 l GL: 4 l UL: 4
l In the GL mode (dualstar/ CPRI MUX), the maximu m distances of the RRUs from the BBU vary with the types of BBP in LTE mode as follows – When the LBBP c, LBBP d1, or UBB Pd3 is config ured: 20 – When the LBBP d2 or UBB Pd4 is config
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Type
6 Product Specifications
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km) ured: 40 – When the LBBP d3 , UBB Pd5, or UBB Pd6 is config ured: – Ce ll qu ant ity ≤ 3: 40 – Ce ll qu ant ity ≥ 4: 20
Antenna Capability The following table lists the antenna capability of an RRU3959/RRU3959w. Table 6-698 Antenna capability of an RRU3959/RRU3959w Type
TMA Support
Supported RET Antennas
RRU3959/RRU3959w
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
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6.3.44 RRU3961 Technical Specifications RRU3961 modules are remote radio units and can work in different modes with different configurations and the software-defined radio (SDR) technique.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3961. Table 6-699 Modes and frequency bands supported by an RRU3961 Type
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
Mode
RRU3961
900
880 to 915
925 to 960
GSM, UMTS, and GU
800
832 to 862
791 to 821
LTE FDD
900 + 800
l 900: 880 to 915
l 900: 925 to 960
l 800: 832 to 862
l 800: 791 to 821
GSM (900 MHz) + LTE FDD (800 MHz), UMTS (900 MHz) + LTE FDD (800 MHz), and GU (900 MHz) + LTE FDD (800 MHz)
RF Specifications Table 6-700 lists radio frequency (RF) specifications of an RRU3961.
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6 Product Specifications
NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l EF MSR indicates that E and F data is carried on the same transmit channel of an RF module. l EF non-MSR indicates that E data is carried on one transmit channel of an RF module while F data is carried on the other transmit channel of the RF module. l The GSM receiver sensitivity, as recommended in 3GPP TS 51.021, is measured at the antenna connector on condition that the channel rate is 13 kbit/s and the Bit Error Rate (BER) is not higher than 2%. l The UMTS receiver sensitivity, as recommended in 3GPP TS 25.104, is measured at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l The RRU3961 that works in GSM mode and operates in the 900 MHz frequency band complies with the EN 301 502 V9.2.1 standard. l The RRU3961 that works in UMTS or multiple service ring (MSR) mode and operates in the 900 MHz frequency band complies with the ETSI EN 301 908 V5.2.1 and 3GPP TS 37.104 standards. l The RRU3961 that works in LTE FDD mode and operates in the 800 MHz frequency band complies with the 3GPP TS 36.141 standard.
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Table 6-700 RF specifications of an RRU3961
Issue 14 (2016-01-30)
Ty pe
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
RR U3 961
2T 2R
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receiver Sensitivi ty with Four Antenna s
GSM: 8 TRXs
GSM: -113.7
GSM: -116.5
UMTS: 4 carriers
UMTS: -125.8
UMTS: -128.6
GSM: -119.2 (theoretic al value)
LTE FDD: 2 carriers. When one carrier is configure d, the bandwidt h of this carrier is 10 MHz or 20 MHz. When two carriers are configure d, the bandwidt h per carrier is 10 MHz.
LTE FDD: -106.3
LTE FDD: -109.1
UMTS: -131.3 LTE FDD: -111.8
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Output Power
Power Consumpt ion
The RRU3961 supports the maximum power configuration 2 x 40 W. The typical configurations are as follows:
See the RRU3961 sheet in 3900 Series Base Station Power Consumptio n Specificatio ns.
l Output power for the RRU3961 (GSM, 900 MHz) l Output power for the RRU3961 (UMTS, 900 MHz) l Output power for the RRU3961 (LTE FDD, 800 MHz) l Output power for the RRU3961 (GU non-
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6 Product Specifications
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receiver Sensitivi ty with Four Antenna s
Output Power
Power Consumpt ion
MSR, 900 MHz) l Output power for the RRU3961 (GU MSR, 900 MHz) l Output power for the RRU3961 (GL, GSM 900 MHz +LTE FDD 800 MHz) l Output power for the RRU3961 (UL, UMTS 900 MHz+LTE FDD 800 MHz) l Output power for the RRU3961 (GUL, GU MSR 900 MHz+LTE FDD 800 MHz)
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Ty pe
6 Product Specifications
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receive r Sensitiv ity with Two Antenn as
Receiver Sensitivi ty with Four Antenna s
Output Power
Power Consumpt ion
For typical PA configurations, see Typical Power Configuration for RRU3961 in 3900 Series Base Station Initial Configuration Guide.
NOTE
l If the power sharing feature is activated, assume that UEs in a cell are randomly located. l If the RF module is placed at an altitude of 3500 to 4500 meters, its power reduces by 1 dB. If the RF module is placed at an altitude of 4500 to 6000 meters, its power reduces by 2 dB. l Station spacing, frequency multiplexing factor, power control algorithm, and traffic model all affect the gains of dynamic power sharing. In most cases, network plans are designed on the basis of power specifications of dynamic power sharing. l Before activating the dynamic power sharing feature, enable the DTX and power control functions. In GBSS8.1, the dynamic power sharing feature is mutually exclusive with the GBFD-113201 Concentric Cell, GBFD-114501 Co-BCCH Cell, GBFD-118001 BCCH Dense Frequency Multiplexing, and GBFD-117501 Enhanced Measurement Report (EMR) features. In GBSS9.0 and later versions, the dynamic power sharing feature can be used together with these features. However, the dynamic power sharing feature currently cannot be used together with the GBFD-117002 IBCA (Interference Based Channel Allocation), GBFD-117001 Flex MAIO, GBFD-118701 RAN Sharing, and GBFD-114001 Extended Cell features in GBSS8.1, GBSS9.0, and later versions. l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
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Table 6-701 Output power for the RRU3961 (GSM, 900 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier With Dynamic Power Sharing (W)
GSM
1
40
40
2
40
40
3
20
20
4
20
20
5
13
15
6
13
15
7
10
13
8
10
13
Table 6-702 Output power for the RRU3961 (UMTS, 900 MHz) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
40
2
40
3
20
4
20
1 (MIMO)
2 x 40
2 (MIMO)
2 x 20
3 (MIMO)
2 x 10
4 (MIMO)
2 x 10
Table 6-703 Output power for the RRU3961 (LTE FDD, 800 MHz)
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Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 40
10, 20
2 (MIMO)
2 x 20
10
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Table 6-704 Output power for the RRU3961 (GU non-MSR, 900 MHz) Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
1
1
40
40
2
1
20
40
3
1
13
40
4
1
10
40
1
2
40
20
2
2
20
20
3
2
13
20
4
2
10
20
Table 6-705 Output power for the RRU3961 (GU MSR, 900 MHz)
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Mode
Total Number of GSM Carriers
Total Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
GSM + UMTS
3
1
20
20
4
1
13
20
5
1
10
20
6
1
10
20
1
1 (MIMO)
20
2 x 20
2
1 (MIMO)
20
2 x 20
3
1 (MIMO)
10
2 x 20
4
1 (MIMO)
10
2 x 20
1
2 (MIMO)
20
2 x 10
2
2 (MIMO)
20
2 x 10
3
2 (MIMO)
10
2 x 10
4
2 (MIMO)
10
2 x 10
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Table 6-706 Output power for the RRU3961 (GL, GSM 900 MHz+LTE FDD 800 MHz) Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
GSM + LTE FDD
1
1 (MIMO)
40
2 x 20
10, 20
2
1 (MIMO)
40
2 x 20
10, 20
3
1 (MIMO)
20
2 x 20
10, 20
4
1 (MIMO)
20
2 x 20
10, 20
5
1 (MIMO)
13
2 x 20
10, 20
6
1 (MIMO)
13
2 x 20
10, 20
7
1 (MIMO)
10
2 x 20
10, 20
8
1 (MIMO)
10
2 x 20
10, 20
1
2 (MIMO)
40
2 x 10
10
2
2 (MIMO)
40
2 x 10
10
3
2 (MIMO)
20
2 x 10
10
4
2 (MIMO)
20
2 x 10
10
5
2 (MIMO)
13
2 x 10
10
6
2 (MIMO)
13
2 x 10
10
7
2 (MIMO)
10
2 x 10
10
8
2 (MIMO)
10
2 x 10
10
Table 6-707 Output power for the RRU3961 (UL, UMTS 900 MHz+LTE FDD 800 MHz)
Issue 14 (2016-01-30)
Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
UMTS + LTE FDD
1
1 (MIMO)
40
2 x 20
10, 20
2
1 (MIMO)
40
2 x 20
10, 20
3
1 (MIMO)
20
2 x 20
10, 20
4
1 (MIMO)
20
2 x 20
10, 20
1
2 (MIMO)
40
2 x 10
10
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Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
2
2 (MIMO)
40
2 x 10
10
3
2 (MIMO)
20
2 x 10
10
4
2 (MIMO)
20
2 x 10
10
1 (MIMO)
1 (MIMO)
2 x 40
2 x 20
10, 20
2 (MIMO)
1 (MIMO)
2 x 20
2 x 20
10, 20
3 (MIMO)
1 (MIMO)
2 x 10
2 x 20
10, 20
4 (MIMO)
1 (MIMO)
2 x 10
2 x 20
10, 20
1 (MIMO)
2 (MIMO)
2 x 40
2 x 10
10
2 (MIMO)
2 (MIMO)
2 x 20
2 x 10
10
3 (MIMO)
2 (MIMO)
2 x 10
2 x 10
10
4 (MIMO)
2 (MIMO)
2 x 10
2 x 10
10
Table 6-708 Output power for the RRU3961 (GUL, GU MSR 900 MHz+LTE FDD 800 MHz)
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Mode
Total Numbe r of GSM Carriers
Total Numbe r of UMTS Carriers
Total Numbe r of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwi dth of LTE FDD Carrier (MHz)
GSM + UMTS + LTE FDD
1
1
1 (MIMO)
40
40
2 x 20
10, 20
2
1
1 (MIMO)
20
40
2 x 20
10, 20
3
1
1 (MIMO)
20
20
2 x 20
10, 20
4
1
1 (MIMO)
10
40
2 x 20
10, 20
1
2
1 (MIMO)
40
20
2 x 20
10, 20
2
2
1 (MIMO)
20
20
2 x 20
10, 20
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Mode
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6 Product Specifications
Total Numbe r of GSM Carriers
Total Numbe r of UMTS Carriers
Total Numbe r of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwi dth of LTE FDD Carrier (MHz)
3
2
1 (MIMO)
13
20
2 x 20
10, 20
4
2
1 (MIMO)
10
20
2 x 20
10, 20
1
1
2 (MIMO)
40
40
2 x 10
10
2
1
2 (MIMO)
20
40
2 x 10
10
3
1
2 (MIMO)
20
20
2 x 10
10
4
1
2 (MIMO)
10
40
2 x 10
10
1
2
2 (MIMO)
40
20
2 x 10
10
2
2
2 (MIMO)
20
20
2 x 10
10
3
2
2 (MIMO)
13
20
2 x 10
10
4
2
2 (MIMO)
10
20
2 x 10
10
1
1 (MIMO)
1 (MIMO)
20
2 x 20
2 x 20
10, 20
3
1 (MIMO)
1 (MIMO)
10
2 x 20
2 x 20
10, 20
2
2 (MIMO)
1 (MIMO)
20
2 x 10
2 x 20
10, 20
4
2 (MIMO)
1 (MIMO)
10
2 x 10
2 x 20
10, 20
1
1 (MIMO)
2 (MIMO)
20
2 x 20
2 x 10
10
3
1 (MIMO)
2 (MIMO)
10
2 x 20
2 x 10
10
2
2 (MIMO)
2 (MIMO)
20
2 x 10
2 x 10
10
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Mode
Total Numbe r of GSM Carriers
Total Numbe r of UMTS Carriers
Total Numbe r of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwi dth of LTE FDD Carrier (MHz)
4
2 (MIMO)
2 (MIMO)
10
2 x 10
2 x 10
10
Engineering Specifications The following table lists the equipment specifications of an RRU3961. Table 6-709 Equipment specifications of an RRU3961 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3961
-48 V DC; voltage range: -36 V DC to -57 V DC
l 485 mm x 380 mm x 170 mm (with the housing)
l 25 (with the housing)
l 485 mm x 356 mm x 140 mm (without the housing)
l 23.5 (without the housing)
The following table lists the environmental specifications of an RRU3961. Table 6-710 Environmental specifications of an RRU3961 Type
Operating Temperatur e
Relative Humidity
Absolute Humidity
Atmospheri c Pressure
Storage Time
RRU 3961
Without solar radiation: -40°C to +55°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommended that the device be installed and used within one year after its delivery because of the failure rate.
With solar radiation: -40°C to +45°C
The following table lists the compliance standards for an RRU3961. Issue 14 (2016-01-30)
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Table 6-711 Compliance standards for an RRU3961 Type
Operating Environment
Anti-Seismic Performance
Protection Rating
RRU3961
l 3GPP TS 45.005
NEBS GR63 zone4
IP65
l 3GPP TS 25.141 l 3GPP TS 36.141 l 3GPP TS 37.141 l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-712 lists the surge protection specifications of ports on an RRU3961. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-712 Surge protection specifications of ports on an RRU3961 Port
Usage Scenario
Surge Protection Mode
Specification
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Surge current
RF port
Interconnect ion port for receiving RF signals
Issue 14 (2016-01-30)
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge
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250 A
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Port
Usage Scenario
Surge Protection Mode
Specification
RET port
Applicable to all scenarios
Surge current
Differential mode
3 kA
Common mode
5 kA
Dry contact or RS485 alarm port
Applicable to all scenarios
Surge current
Differential mode
3 kA
Common mode
5 kA
Local power monitoring port or alarm port
Applicable to the scenario where the power supply module and the RRU are installed back to back or the scenario where the distance between them is shorter than 1m
Surge
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3961.
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Table 6-713 Specifications of CPRI ports on an RRU3961 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3961
2
1.25 or 2.5
Star, chain, or dual-star
CPRI MUX:
l GU (dualstar/ CPRI MUX): 40
l GU: 6 l GL: 4 l UL: 4 l GUL: 4
l In the GL, UL, or GUL mode (dualstar/ CPRI MUX), the maximu m distances of the RRUs from the BBU vary with the types of BBP in LTE mode as follows – When the LBBP c, LBBP d1, or UBB Pd3 is config ured: 20 – When the LBBP d2 or UBB
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Type
6 Product Specifications
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km) Pd4 is config ured: 40 – When the LBBP d3 , UBB Pd5, or UBB Pd6 is config ured: – Ce ll qu ant ity ≤ 3: 40 – Ce ll qu ant ity ≥ 4: 20
Antenna Capability The following table lists the antenna capability of an RRU3961. Table 6-714 Antenna capability of an RRU3961
Issue 14 (2016-01-30)
Type
TMA Support
Supported RET Antennas
RRU3961
Supported
AISG2.0
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NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.45 RRU3971 Technical Specifications RRU3971 modules are remote radio units and can work in different modes with different configurations and the software-defined radio (SDR) technique.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3971. Table 6-715 Modes and frequency bands supported by an RRU3971 Type
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
Mode
RRU3971
1800
1710 to 1785
1805 to 1880
LTE FDD and GL
RF Specifications Table 6-716 lists radio frequency (RF) specifications of an RRU3971. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l EF MSR indicates that E and F data is carried on the same transmit channel of an RF module. l EF non-MSR indicates that E data is carried on one transmit channel of an RF module while F data is carried on the other transmit channel of the RF module. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l An RRU3971 that works in LTE FDD or multi-standard radio (MSR) mode and operating in the 1800 MHz frequency band complies with the ETSI EN 301 908 V5.2.1 and 3GPP TS 37.104 standards. l When two LTE carriers are configured, it is recommended that the power spectrum density (PSD) of the two carriers be set to the same value. Power spectrum density = Carrier output power/Carrier bandwidth (1.4 MHz and 3 MHz bandwidths are considered as 5 MHz bandwidth in this formula.)
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Table 6-716 RF specifications of an RRU3971 Ty pe
Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
RR U3 971
4T 4R
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
GSM: 4 carriers
GSM: -113.4
GSM: -116.2
LTE FDD: 2 carriers, bandwidt h per carrier is 5, 10, 15, or 20 MHz
LTE FDD: -106.0
LTE FDD: -108.8
GSM: -118.9 (theoretic al value) LTE FDD: -111.5
Output Power
Power Consumpt ion
The RRU3971 supports the maximum power configuration 4 x 40 W. The typical configurations are as follows:
See the RRU3971 sheet in 3900 Series Base Station Power Consumptio n Specificatio ns.
l Output power for the RRU3971 (LTE FDD, 1800 MHz) l Output power for the RRU3971 (LTE FDD, 1800 MHz) For typical PA configurations, see Typical Power Configuration for RRU3971 in 3900 Series Base Station Initial
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Tr an s mi t an d Re ce iv e C ha nn el s
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitiv ity with Two Antenna s
Receiver Sensitiv ity with Four Antenna s
Output Power
Power Consumpt ion
Configuration Guide.
NOTE
l If the power sharing feature is activated, assume that UEs in a cell are randomly located. l If the RF module is placed at an altitude of 3500 to 4500 meters, its power reduces by 1 dB. If the RF module is placed at an altitude of 4500 to 6000 meters, its power reduces by 2 dB. l Station spacing, frequency multiplexing factor, power control algorithm, and traffic model all affect the gains of dynamic power sharing. In most cases, network plans are designed on the basis of power specifications of dynamic power sharing. l Before activating the dynamic power sharing feature, enable the DTX and power control functions. In GBSS8.1, the dynamic power sharing feature is mutually exclusive with the GBFD-113201 Concentric Cell, GBFD-114501 Co-BCCH Cell, GBFD-118001 BCCH Dense Frequency Multiplexing, and GBFD-117501 Enhanced Measurement Report (EMR) features. In GBSS9.0 and later versions, the dynamic power sharing feature can be used together with these features. However, the dynamic power sharing feature currently cannot be used together with the GBFD-117002 IBCA (Interference Based Channel Allocation), GBFD-117001 Flex MAIO, GBFD-118701 RAN Sharing, and GBFD-114001 Extended Cell features in GBSS8.1, GBSS9.0, and later versions. l For the RRU3971 working in GSM mode: when the S1 or S2 configuration is applied, the maximum output power of each carrier on the RRU3971 is 60 W. If the output power of 60 W is required, the related license must be obtained. l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance. l For RRU3971, the scenario where the third-order intermodulated signal falls in the receive frequency range of a configured carrier is not supported.
Table 6-717 Output power for the RRU3959 (LTE FDD, 1800 MHz)
Issue 14 (2016-01-30)
Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
LTE FDD
1 (MIMO)
2 x 60
5, 10, 15, 20
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Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
1 (MIMO)
2 x 40
1.4, 3
2 (MIMO)
2 x 30
1.4, 3, 5, 10, 15, 20
2 (MIMO)
l Carrier 1: 2 x 20
1.4, 3, 5, 10, 15, 20
l Carrier 2: 2 x 40
Table 6-718 Output power for the RRU3959 (GL MSR, 1800 MHz)
Issue 14 (2016-01-30)
Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
GSM + LTE FDD
1
1 (MIMO)
40
2 x 20
1.4, 3, 5, 10, 15, 20
1
1 (MIMO)
30
2 x 30
1.4, 3, 5, 10, 15, 20
1
1 (MIMO)
20
2 x 40
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
40
2 x 20
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
30
2 x 30
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
20
2 x 40
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
20
2 x 20
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
15
2 x 30
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
20
2 x 20
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
15
2 x 30
1.4, 3, 5, 10, 15, 20
5
1 (MIMO)
12
2 x 20
1.4, 3, 5, 10, 15, 20
5
1 (MIMO)
7.5
2 x 30
1.4, 3, 5, 10, 15, 20
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Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
6
1 (MIMO)
12
2 x 20
1.4, 3, 5, 10, 15, 20
6
1 (MIMO)
7.5
2 x 30
1.4, 3, 5, 10, 15, 20
1
2 (MIMO)
20
2 x 20
1.4, 3, 5, 10, 15, 20
1
2 (MIMO)
20
l Carrier 1: 2 x 30
1.4, 3, 5, 10, 15, 20
l Carrier 2: 2 x 10 1
2 (MIMO)
30
l Carrier 1: 2 x 20
1.4, 3, 5, 10, 15, 20
l Carrier 2: 2 x 10 2
2 (MIMO)
20
2 x 20
1.4, 3, 5, 10, 15, 20
2
2 (MIMO)
20
l Carrier 1: 2 x 30
1.4, 3, 5, 10, 15, 20
l Carrier 2: 2 x 10 3
2 (MIMO)
10
2 x 20
1.4, 3, 5, 10, 15, 20
3
2 (MIMO)
15
l Carrier 1: 2 x 20
1.4, 3, 5, 10, 15, 20
l Carrier 2: 2 x 10 4
2 (MIMO)
20
2 x 10
1.4, 3, 5, 10, 15, 20
4
2 (MIMO)
10
2 x 20
1.4, 3, 5, 10, 15, 20
4
2 (MIMO)
15
l Carrier 1: 2 x 20
1.4, 3, 5, 10, 15, 20
l Carrier 2: 2 x 10
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Engineering Specifications The following table lists the equipment specifications of an RRU3971. Table 6-719 Equipment specifications of an RRU3971 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3971
-48 V DC; voltage range: -36 V DC to -57 V DC
400 mm x 300 mm x 100 mm (without the housing)
15 (without the housing)
NOTE The RRU3971 supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
The following table lists the environmental specifications of an RRU3971.
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Table 6-720 Environmental specifications of an RRU3971 Type
Operating Temperatur e
Relative Humidity
Absolute Humidity
Atmospheri c Pressure
Storage Time
RRU 3971
l Without solar radiation: -40°C to +55°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommended that the device be installed and used within one year after its delivery because of the failure rate.
l With solar radiation: -40°C to +50°C NOTE According to the installation scenario, traffic load, and carrier configuration, the output power of the RRU3971 may temporarily decrease when they work in the highest 10°C temperature range.
The following table lists the compliance standards for an RRU3971. Table 6-721 Compliance standards for an RRU3971 Type
Operating Environment
Anti-Seismic Performance
Protection Rating
RRU3971
l 3GPP TS 45.005
NEBS GR63 zone4
IP65
l 3GPP TS 36.141 l 3GPP TS 37.141 l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
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Table 6-722 lists the surge protection specifications of ports on an RRU3971. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-722 Surge protection specifications of ports on an RRU3971 Port
Usage Scenario
Surge Protection Mode
Specification
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Differential mode
3 kA
Common mode
5 kA
Surge current
RF port
RET port
Dry contact or RS485 alarm port
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Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
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Port
Usage Scenario
Surge Protection Mode
Specification
Local power monitoring port or alarm port
Applicable to the scenario where the power supply module and the RRU are installed back to back or the scenario where the distance between them is shorter than 1m
Surge
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3971.
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Table 6-723 Specifications of CPRI ports on an RRU3971 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3971
2
1.25, 2.5, 4.9, or 9.8
Star, chain, or dual-star
GL CPRI MUX: 4
The maximum distances of the RRUs from the BBU vary with the types of BBP in LTE mode as follows: l When the LBBPc, LBBPd1, or UBBPd3 is configure d: 20 l When the LBBPd2 or UBBPd4 is configure d: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configure d: – Cell quanti ty ≤ 3: 40 – Cell quanti ty ≥ 4: 20
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Antenna Capability The following table lists the antenna capability of an RRU3971. Table 6-724 Antenna capability of an RRU3971 Type
TMA Support
Supported RET Antennas
RRU3971
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.46 RRU3952m Technical Specifications An RRU3952m is a multimode radio remote unit. Adopting the software-defined radio (SDR) technology, RRU3952m modules can work in different modes with different configurations.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3952m. Table 6-725 Modes and frequency bands supported by an RRU3952m Type
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
Mode
RRU3952 m
1800
1710 to 1785
1805 to 1880
GSM, LTE FDD, GL
2100
1920 to 1980
2110 to 2170
UMTS, LTE FDD, UL
NOTE
l The RRU3952m (1800MHz) can work in either 1800 MHz 2T4R or 1800 MHz 2T2R+2100 MHz 2R mode. l The RRU3952m (2100MHz) can work in either 2100 MHz 2T4R or 2100 MHz 2T2R+1800 MHz 2R mode.
RF Specifications Table 6-726 lists the radio frequency (RF) specifications of an RRU3952m.
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NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l EF MSR indicates that E and F data is carried on the same transmit channel of an RF module. l The GSM receiver sensitivity, as recommended in 3GPP TS 51.021, is measured at the antenna connector on condition that the channel rate is 13 kbit/s and the Bit Error Rate (BER) is not higher than 2%. l The UMTS receiver sensitivity, as recommended in 3GPP TS 25.104, is measured at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard.
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Table 6-726 RF specifications of an RRU3952m Ty pe
T X/ R X C ha nn el
Capacit y
RR U3 952 m
2T 4R
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitivi ty with Two Antenna s
Receive r Sensitiv ity with Four Antenn as
GSM: 8 carriers
GSM: -113.9
GSM: -116.7
UMTS:
UMTS: -126.0
UMTS: -128.8
GSM: -119.4 (theoretic al value)
LTE FDD: -106.8
LTE FDD: -109.6
l NonMIM O: 6 carrie rs l MIM O: 4 carrie rs
UMTS: -131.5 LTE FDD: -112.3
LTE FDD: 2 carriers with bandwidt h of 1.4/3/5/1 0/15/20 MHz
Output Power
Power Consump tion
The RRU3952m supports the maximum power configuration 2 x 60 W. The typical power configurations are as follows:
See the RRU3952 m sheet in 3900 Series Base Station Power Consumpti on.
l Output power for the RRU3952 m(1800MH z) (GSM, 1800 MHz) l Output power for the RRU3952 m(1800MH z) (LTE FDD, 1800 MHz) l Output power for the RRU3952 m(1800MH z) (GL MSR, 1800 MHz) l Output power for the RRU3952 m(2100MH z) (UMTS, 2100 MHz)
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Ty pe
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T X/ R X C ha nn el
Capacit y
Receiver Sensitivity (dBm) Receive r Sensitiv ity with One Antenn a
Receiver Sensitivi ty with Two Antenna s
Receive r Sensitiv ity with Four Antenn as
Output Power
Power Consump tion
l Output power for the RRU3952 m(2100MH z) (LTE FDD, 2100 MHz) l Output power for the RRU3952 m(2100MH z) (UL MSR, 2100 MHz) For typical PA configurations, see Typical Power Configuration of the RRU3952m in 3900 Series Base Station Initial Configuration Guide.
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NOTE
l If the power sharing feature is activated, assume that UEs in a cell are randomly located. l If the RF module is placed at an altitude of 3500 to 4500 meters, its power reduces by 1 dB. If the RF module is placed at an altitude of 4500 to 6000 meters, its power reduces by 2 dB. l Station spacing, frequency multiplexing factor, power control algorithm, and traffic model all affect the gains of dynamic power sharing. In most cases, network plans are designed on the basis of power specifications of dynamic power sharing. l Before activating the dynamic power sharing feature, enable the DTX and power control functions. In GBSS8.1, the dynamic power sharing feature is mutually exclusive with the GBFD-113201 Concentric Cell, GBFD-114501 Co-BCCH Cell, GBFD-118001 BCCH Dense Frequency Multiplexing, and GBFD-117501 Enhanced Measurement Report (EMR) features. In GBSS9.0 and later versions, the dynamic power sharing feature can be used together with these features. However, the dynamic power sharing feature currently cannot be used together with the GBFD-117002 IBCA (Interference Based Channel Allocation), GBFD-117001 Flex MAIO, GBFD-118701 RAN Sharing, and GBFD-114001 Extended Cell features in GBSS8.1, GBSS9.0, and later versions. l When the RRU3952m works in GSM mode and the S1 or S2 configuration is used, the maximum output power is 60 W per carrier. The corresponding 60 W power license must be obtained. l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance. l When two LTE carriers are configured, it is recommended that the power spectrum density (PSD) of the two carriers be set to the same value. Power spectrum density = Carrier output power/Carrier bandwidth (1.4 MHz and 3 MHz bandwidths are considered as 5 MHz bandwidth in this formula.)
Table 6-727 Output power for the RRU3952m(1800MHz) (GSM, 1800 MHz) Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier (W) When Dynamic Power Sharing Is Used
GSM
1
60
60
2
60
60
3
30
30
4
30
30
5
20
25
6
20
25
7
15
20
8
15
20
Table 6-728 Output power for the RRU3952m(1800MHz) (LTE FDD, 1800 MHz)
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Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
LTE FDD
1 (MIMO)
2x60
5, 10, 15, 20
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Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
1 (MIMO)
2x40
1.4, 3
2 (MIMO)
2x30
1.4, 3, 5, 10, 15, 20
2 (MIMO)
l Carrier 1: 2x20
1.4, 3, 5, 10, 15, 20
l Carrier 2: 2x40
Table 6-729 Output power for the RRU3952m(1800MHz) (GL MSR, 1800 MHz)
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Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
GSM + LTE FDD
1
1 (MIMO)
40
2x20
1.4, 3, 5, 10, 15, 20
1
1 (MIMO)
30
2x30
1.4, 3, 5, 10, 15, 20
1
1 (MIMO)
20
2x40
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
40
2x20
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
30
2x30
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
20
2x40
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
20
2x20
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
15
2x30
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
20
2x20
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
15
2x30
1.4, 3, 5, 10, 15, 20
5
1 (MIMO)
12
2x20
1.4, 3, 5, 10, 15, 20
6
1 (MIMO)
12
2x20
1.4, 3, 5, 10, 15, 20
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Mode
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Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
6
1 (MIMO)
15
2x15
5, 10, 15, 20
1
2 (MIMO)
40
2x20
1.4, 3, 5, 10, 15, 20
2
2 (MIMO)
40
2x20
1.4, 3, 5, 10, 15, 20
3
2 (MIMO)
20
2x20
1.4, 3, 5, 10, 15, 20
4
2 (MIMO)
20
2x20
1.4, 3, 5, 10, 15, 20
Table 6-730 Output power for the RRU3952m(2100MHz) (UMTS, 2100MHz) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
60
2
60
3
30
4
30
5
20
6
20
1 (MIMO)
2x40
2 (MIMO)
2x30
3 (MIMO)
2x20
4 (MIMO)
2x15
Table 6-731 Output power for the RRU3952m(2100MHz) (LTE FDD, 2100 MHz)
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Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
LTE FDD
1 (MIMO)
2x60
5, 10, 15, 20
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Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
2 (MIMO)
2x30
5, 10, 15, 20
2 (MIMO)
l Carrier 1: 2x20
5, 10, 15, 20
l Carrier 2: 2x40
Table 6-732 Output power for the RRU3952m(2100MHz) (UL MSR, 2100 MHz) Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
UMTS + LTE FDD
1
1 (MIMO)
20
2x40
5, 10, 15, 20
1
1 (MIMO)
40
2x20
5, 10, 15, 20
2
1 (MIMO)
20
2x40
5, 10, 15, 20
2
1 (MIMO)
40
2x20
5, 10, 15, 20
3
1 (MIMO)
20
2x20
5, 10, 15, 20
4
1 (MIMO)
20
2x20
5, 10, 15, 20
1 (MIMO)
1 (MIMO)
2x20
2x40
5, 10, 15, 20
1 (MIMO)
1 (MIMO)
2x40
2x20
5, 10, 15, 20
1
2 (MIMO)
20
2x20
5, 10, 15, 20
2
2 (MIMO)
20
2x20
5, 10, 15, 20
Engineering Specifications The following table lists the engineering specifications of an RRU3952m.
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Table 6-733 Equipment specifications of an RRU3952m Type
Input power
Dimensions (H x W x D)
Weight (kg)
RRU3952 m
-48 V DC; voltage range: -36 V DC to -57 V DC
400 mm x 300 mm x 100 mm (without the housing)
15 (without the housing)
NOTE The RRU3952m supports AC power supply when connected to an external AC/DC power module or an OPM15M. For details, see AC/DC Power Module User Guide and OPM15M User Guide.
The following table lists the environmental specifications of an RRU3952m. Table 6-734 Environmental specifications of an RRU3952m Type
Operating Temperatur e
Relative Humidity
Absolute Humidity
Atmospheri c Pressure
Storage Time
RRU 3952 m
l -40°C to +55°C (without solar radiation)
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommended that the device be installed and used within one year after its delivery when the failure rate is considered.
l -40°C to +50°C (with solar radiation) NOTE According to the installation scenario, traffic load, and carrier configuration, the output power of the RRU3952m may temporarily decrease when they work in the highest 10°C temperature range.
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The following table lists the compliance standards for an RRU3952m. Table 6-735 Compliance standards for an RRU3952m Type
Operating Environment
Shockproof Protection
Protection Class
RRU3952 m
l 3GPP TS 45.005
NEBS GR63 zone4
IP65
l 3GPP TS 25.141 l 3GPP TS 36.141 l 3GPP TS 37.141 l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-736 lists the surge protection specifications of ports on an RRU3952m. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-736 Surge protection specifications of ports on an RRU3952m Port
Applicatio n Scenario
Surge Protection Mode
Surge Protection Specifications
Power port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Surge current
RF port
Communica tion port for
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Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
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Applicatio n Scenario
Surge Protection Mode
the RET antenna Dry contact or RS485 alarm port
Applicable to all scenarios
Surge current
Local power monitoring port or alarm port
Applicable to the scenario where batteries under monitoring and RRUs are installed back to back or the scenario where the distance between them is shorter than 1m
Surge
Surge Protection Specifications
Common mode
5 kA
Differential mode
3 kA
Common mode
5 kA 250 A
CPRI Specifications The following table lists the specifications of CPRI ports on an RRU3952m.
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Table 6-737 Specifications of CPRI ports on an RRU3952m Type
Quantity of CPRI Ports
CPRI Port Rate (Gbit/s)
Topology
Cascading Level
Maximum Distance from the BBU (km)
RRU3952m
2
1.25/2.5/4.9/ 9.8
Star, chain, and dual-star
CPRI MUX:
GU: 40
l GU: 6
GL/UL/ GUL:
l GL: 4 l UL: 4 l GUL: 4
The maximum distances of the RRUs from the BBU vary with the types of BBP in LTE mode as follows: l When the LBBPc, LBBPd1, or UBBPd3 is configure d: 20 l When the LBBPd2 or UBBPd4 is configure d: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configure d: – Cell quanti ty ≤ 3: 40
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Type
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Quantity of CPRI Ports
CPRI Port Rate (Gbit/s)
Topology
Cascading Level
Maximum Distance from the BBU (km) – Cell quanti ty ≥ 4: 20
Antenna Capability The following table lists the antenna capability of an RRU3952m. Table 6-738 Antenna capability of an RRU3952m Type
TMA Support
RET Antenna Support
RRU3952m
Supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.47 RRU3168 Technical Specifications An RRU3168, which is a remote radio unit for LTE TDD, supports one carrier.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3168. Table 6-739 Modes and frequency bands supported by an RRU3168 Type
Mode
Frequency Band (MHz)
Frequency Range (MHz)
RRU3168
LTE TDD
1900
1900 to 1920
NOTE
The occupied bandwidth (OBW) of the RRU3168 is 20 MHz.
RF Specifications Table 6-740 lists radio frequency (RF) specifications of an RRU3168. Issue 14 (2016-01-30)
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NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W.
Table 6-740 RF specifications of an RRU3168 Type
Transmit and Receive Channels
Capacity
Output Power
Power Consumption
RRU3168
8T8R
One carrier. The bandwidth per carrier is 20 MHz.
When the uplinkdownlink subframe configuration 3:1 is used, the maximum output power of the RRU3168 is 8 x 10 W. For typical configurations, see the Output power for the RRU3168 (LTE TDD, 1900 MHz) table.
See the RRU3168 sheet in 3900 Series Base Station Power Consumption Specifications.
For typical PA configurations, see Typical Power Configuration for RRU3168 in 3900 Series Base Station Initial Configuration Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-741 Output power for the RRU3168 (LTE TDD, 1900 MHz) Working mode
Total Number of LTE TDD Carriers
Output Power per LTE TDD Carrier (W)
Bandwidth of LTE TDD Carrier (MHz)
LTE TDD 8T8R
1 (MIMO)
8 x 10
20
Engineering Specifications The following table lists the equipment specifications of an RRU3168. Issue 14 (2016-01-30)
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Table 6-742 Equipment specifications of an RRU3168 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3168
-48 V DC; voltage range: -60 V DC to -36 V DC
550 mm x 320 mm x 135 mm (24L, without the housing)
≤ 24 (without the housing)
The following table lists the environmental specifications of an RRU3168. Table 6-743 Environmental specifications of an RRU3168 Type
Operating Temperature
Relative Humidity
Absolute Humidity
Atmosph eric Pressure
Storage Time
RRU31 68
l With solar radiation of 1120 W/m2: -40°C to +45°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommen ded that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiation: -40°C to +50°C
The following table lists the compliance standards for an RRU3168. Table 6-744 Compliance standards for an RRU3168 Type
Operating Environment
Protection Rating
RRU3168
l 3GPP TS 36.141
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-745 lists the surge protection specifications of ports on an RRU3168. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
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Table 6-745 Surge protection specifications of ports on an RRU3168 Port
Usage Scenario
Surge Protection Mode
Specification
Power supply port
Applicable to all scenarios
Surge current
Differential mode
10 kA
Common mode
20 kA
Applicable to all scenarios
Surge current
Differential mode
8 kA
Common mode
40 kA
Applicable to all scenarios
Surge current
Differential mode
3 kA
Common mode
5 kA
Applicable to all scenarios
Surge current
Differential mode
8 kA
Common mode
40 kA
RF port
Alarm port
Calibration port
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3168. Table 6-746 Specifications of CPRI ports on an RRU3168 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3168
2
4.9/9.8
Star, chain, or load sharing
N/A
10
Antenna Capability The following table lists the antenna capability of an RRU3168.
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Table 6-747 Antenna capability of an RRU3168 Type
TMA Support
Supported RET Antennas
RRU3168
Not supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.48 RRU3232 Technical Specifications An RRU3232, which is a remote radio unit for LTE TDD, supports two carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3232. Table 6-748 Modes and frequency bands supported by an RRU3232 Type
Mode
Frequency Band (MHz)
Frequency Range (MHz)
RRU3232
LTE TDD
2600 (Band 38)
2570 to 2620
2600 (Band 41)
2496 to 2690
2300 (Band 40)
2300 to 2400
3500
3400 to 3700
1800
1755 to 1920
RF Specifications Table 6-749 lists radio frequency (RF) specifications of an RRU3232. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W.
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Table 6-749 RF specifications of an RRU3232 Type
Transmit and Receive Channels
Capacity
Output Power
Power Consumption
RRU3232
4T4R
Two carriers. The bandwidth per carrier is 5, 10, 15, or 20 MHz.
l 1800, 2300, or 2600 MHz: The RRU3232 supports the maximum power configuratio n 4 x 20 W. For typical configuratio ns, see the Output power for the RRU3232 (LTE TDD, 1800MHz or 2300 MHz or 2600 MHz) table.
See the RRU3232 sheet in 3900 Series Base Station Power Consumption Specifications.
l 3500 MHz: The RRU3232 supports the maximum power configuratio n 4 x 10 W. For typical configuratio ns, see the Output power for the RRU3232 (LTE TDD, 3500 MHz) table. For typical PA configurations, see Typical Power Configuration for RRU3232 Issue 14 (2016-01-30)
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Type
6 Product Specifications
Transmit and Receive Channels
Capacity
Output Power
Power Consumption
in 3900 Series Base Station Initial Configuration Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-750 Output power for the RRU3232 (LTE TDD, 1800MHz or 2300 MHz or 2600 MHz) Working mode
Total Number of LTE TDD Carriers
Output Power per LTE TDD Carrier (W)
Bandwidth of LTE TDD Carrier (MHz)
LTE TDD
1 (MIMO)
2x20
5,10,15,20
2 (MIMO)
2x20
5,10,15,20
1 (MIMO)
4x20
5,10,15,20
2 (MIMO)
4x10
5,10,15,20
Table 6-751 Output power for the RRU3232 (LTE TDD, 3500 MHz) Working mode
Total Number of LTE TDD Carriers
Output Power per LTE TDD Carrier (W)
Bandwidth of LTE TDD Carrier (MHz)
LTE TDD
1 (MIMO)
2x10
5,10,15,20
2 (MIMO)
2x10
5,10,15,20
1 (MIMO)
4x10
5,10,15,20
2 (MIMO)
4x5
5,10,15,20
Engineering Specifications The following table lists the equipment specifications of an RRU3232.
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Table 6-752 Equipment specifications of an RRU3232 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3232
-48 V DC; voltage range: -60 V DC to -36 V DC
l 480 mm x 270 mm x 140 mm (18 L, without the housing)
l ≤ 19.5 (without the housing)
l 485 mm x 300 mm x 170 mm (24.7 L, with the housing)
l ≤ 21 (with the housing)
The following table lists the environmental specifications of an RRU3232. Table 6-753 Environmental specifications of an RRU3232 Type
Operating Temperature
Relative Humidity
Absolute Humidity
Atmosph eric Pressure
Storage Time
RRU32 32
l With solar radiation of 1120 W/m2: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommen ded that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiation: -40°C to +55°C
The following table lists the compliance standards for an RRU3232. Table 6-754 Compliance standards for an RRU3232 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3232
l 3GPP TS 36.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-755 lists the surge protection specifications of ports on an RRU3232. Issue 14 (2016-01-30)
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NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-755 Surge protection specifications of ports on an RRU3232 Port
Usage Scenario
Surge Protection Mode
Specification
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Differential mode
250 A
Common mode
250 A
Surge current
RF port
RET port
Alarm port
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3232.
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Table 6-756 Specifications of CPRI ports on an RRU3232 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3232
2
2.5 or 4.9
Star, chain, or ring
4
If only one level of RRUs is configured, the maximum distance between an RRU and a BBU is 10 km. If multiple levels of RRUs are configured, the maximum distance between an RRU in the lowest level and a BBU is 20 km.
Antenna Capability The following table lists the antenna capability of an RRU3232. Table 6-757 Antenna capability of an RRU3232 Type
TMA Support
Supported RET Antennas
RRU3232
Not supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.49 RRU3251 Technical Specifications An RRU3251, which is a remote radio unit for LTE TDD, supports three carriers. Issue 14 (2016-01-30)
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Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3251. Table 6-758 Modes and frequency bands supported by an RRU3251 Type
Mode
Frequency Band (MHz)
Frequency Range (MHz)
RRU3251
LTE TDD
2300 (Band 40)
2300 to 2400
RF Specifications Table 6-759 lists radio frequency (RF) specifications of an RRU3251. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W.
Table 6-759 RF specifications of an RRU3251 Type
Transmi t and Receive Channel s
Capacity
Output Power
Power Consumption
RRU3251
2T2R
Three carriers. The bandwidth per carrier is 5, 10, 15, or 20 MHz.
The RRU3251 supports the maximum power configuration 2 x 50 W (-40°C to +45°C) or 2 x 40 W (-40°C to +50°C). For typical configurations, see the Output power for the RRU3251 (LTE TDD, 2300 MHz) table.
See the RRU3251 sheet in 3900 Series Base Station Power Consumption Specifications3900 Series Base Station Power Consumption Specifications.
For typical PA configurations, see Typical Power Configuration for RRU3251 in 3900 Series Base Station Initial Configuration Guide.
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NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-760 Output power for the RRU3251 (LTE TDD, 2300 MHz) Working mode
Total Number of LTE TDD Carriers
Output Power per LTE TDD Carrier (W)
Bandwidth of LTE TDD Carrier (MHz)
LTE TDD
1 (MIMO)
1 x 20
10,15,20
1 (MIMO)
1 x 40
10,15,20
2 (MIMO)
2 x 20
10,15,20
2 (MIMO)
2 x 25
10,15,20
Engineering Specifications The following table lists the equipment specifications of an RRU3251. Table 6-761 Equipment specifications of an RRU3251 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3251
-48 V DC; voltage range: -60 V DC to -34 V DC
l 400 mm x 220 mm x 140 mm (12.32 L, without the housing)
l ≤ 13.5 (without the housing)
l 400 mm x 249 mm x 162 mm (16.15 L, with the housing)
l ≤ 14.5 (with the housing)
The following table lists the environmental specifications of an RRU3251.
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Table 6-762 Environmental specifications of an RRU3251 Type
Operating Temperature
Relative Humidity
Absolute Humidity
Atmosph eric Pressure
Storage Time
RRU32 51
l 2 x 50 W:
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommen ded that the device be installed and used within one year after its delivery because of the failure rate.
– With solar radiation of 1120 W/m2: -40°C to +45°C – Without solar radiation: -40°C to +50°C l 2 x 40 W: – With solar radiation of 1120 W/m2: -40°C to +50°C – Without solar radiation: -40°C to +55°C
The following table lists the compliance standards for an RRU3251. Table 6-763 Compliance standards for an RRU3251 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3251
l 3GPP TS 36.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-764 lists the surge protection specifications of ports on an RRU3251. Issue 14 (2016-01-30)
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NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-764 Surge protection specifications of ports on an RRU3251 Port
Usage Scenario
Surge Protection Mode
Specification
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Differential mode
250 A
Common mode
250 A
Surge current
RF port
RET port
Alarm port
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3251.
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Table 6-765 Specifications of CPRI ports on an RRU3251 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3251
2
2.5 or 4.9
Star, chain, or ring
4
If only one level of RRUs is configured, the maximum distance between an RRU and a BBU is 10 km. If multiple levels of RRUs are configured, the maximum distance between an RRU in the lowest level and a BBU is 20 km.
Antenna Capability The following table lists the antenna capability of an RRU3251. Table 6-766 Antenna capability of an RRU3251 Type
TMA Support
Supported RET Antennas
RRU3251
Not supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.50 RRU3252 Technical Specifications An RRU3252, which is a remote radio unit for LTE TDD, supports two carriers. Issue 14 (2016-01-30)
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Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3252. Table 6-767 Modes and frequency bands supported by an RRU3252 Type
Mode
Frequency Band (MHz)
Frequency Range (MHz)
RRU3252 (DC)
LTE TDD
2300 (Band 40)
2300 to 2400
2500 (Band 41)
2496 to 2690
2600 (Band 38)
2570 to 2620
RRU3252 (AC)
RF Specifications Table 6-768 lists radio frequency (RF) specifications of an RRU3252. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W.
Table 6-768 RF specifications of an RRU3252 Type
Transmit and Receive Channels
Capacity
Output Power
Power Consumption
RRU3252
4T4R
Two carriers. The bandwidth per carrier is 5, 10, 15, or 20 MHz.
The RRU3252 supports the maximum power configuration 4 x 20 W. For typical configurations, see the Output power for the RRU3252 (LTE TDD, 2300 MHz or 2500 MHz) table.
See the RRU3252 sheet in 3900 Series Base Station Power Consumption Specifications.
For typical PA configurations, see Typical Power Configuration for RRU3252 in 3900 Series Base Station Initial Configuration Guide.
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NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-769 Output power for the RRU3252 (LTE TDD, 2300 MHz or 2500 MHz) Working mode
Total Number of LTE TDD Carriers
Output Power per LTE TDD Carrier (W)
Bandwidth of LTE TDD Carrier (MHz)
LTE TDD
1 (MIMO)
2x20
5,10,15,20
2 (MIMO)
2x20
5,10,15,20
1 (MIMO)
4x20
5,10,15,20
2 (MIMO)
4x10
5,10,15,20
Engineering Specifications The following table lists the equipment specifications of an RRU3252. Table 6-770 Equipment specifications of an RRU3252 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3252 (DC)
-48 V DC; voltage range: -60 V DC to -32 V DC
l 480 mm x 270 mm x 140 mm (18L, without the housing)
l ≤ 19.5 (without the housing)
l 485 mm x 300 mm x 170 mm (24.7L, with the housing) RRU3252 (AC)
AC; voltage range: 90 V AC to 290 V AC
480 mm x 270 mm x 140 mm (18L, without the housing)
l ≤ 21 (with the housing)
≤ 19.5 (without the housing)
The following table lists the environmental specifications of an RRU3252.
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Table 6-771 Environmental specifications of an RRU3252 Type
Operating Temperature
Relative Humidity
Absolute Humidity
Atmosph eric Pressure
Storage Time
RRU32 52
l With solar radiation of 1120 W/m2: -40°C to +50°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommen ded that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiation: -40°C to +55°C
The following table lists the compliance standards for an RRU3252. Table 6-772 Compliance standards for an RRU3252 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3252
l 3GPP TS 36.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-773 lists the surge protection specifications of ports on an RRU3252. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-773 Surge protection specifications of ports on an RRU3252
Issue 14 (2016-01-30)
Port
Usage Scenario
Surge Protection Mode
Specification
AC and DC power supply port
Applicable to all scenarios
Surge
2 kV (1.2/50 μs)
Differential mode
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Port
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Usage Scenario
Surge Protection Mode
Surge current
RF port
RET port
Alarm port
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Specification
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Differential mode
250 A
Common mode
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3252.
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Table 6-774 Specifications of CPRI ports on an RRU3252 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3252
2
2.5 or 4.9
Star, chain, or ring
4
If only one level of RRUs is configured, the maximum distance between an RRU and a BBU is 10 km. If multiple levels of RRUs are configured, the maximum distance between an RRU in the lowest level and a BBU is 20 km.
Antenna Capability The following table lists the antenna capability of an RRU3252. Table 6-775 Antenna capability of an RRU3252 Type
TMA Support
Supported RET Antennas
RRU3252
Not supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.51 RRU3253 Technical Specifications An RRU3253, which is a remote radio unit for LTE TDD, supports two carriers. Issue 14 (2016-01-30)
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Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3253. Table 6-776 Modes and frequency bands supported by an RRU3253 Type
Mode
Frequency Band (MHz)
Frequency Range (MHz)
RRU3253
LTE TDD
2600 (Band 38)
2575 to 2615
RF Specifications Table 6-777 lists radio frequency (RF) specifications of an RRU3253. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W.
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Table 6-777 RF specifications of an RRU3253 Type
Transmit and Receive Channels
Capacity
Output Power
Power Consumption
RRU3253
8T8R
Two carriers. The bandwidth per carrier is 10 or 20 MHz.
When the uplinkdownlink subframe configuration 2:2 is used, the maximum output power of the RRU3253 is 8 x 16 W. When the uplinkdownlink subframe configuration 3:1 is used, the maximum output power of the RRU3253 is 8 x 12 W. For typical configurations, see the Output power for the RRU3253 (LTE TDD, 2600 MHz) table.
See the RRU3253 sheet in 3900 Series Base Station Power Consumption Specifications.
For typical PA configurations, see Typical Power Configuration for RRU3253 in 3900 Series Base Station Initial Configuration Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-778 Output power for the RRU3253 (LTE TDD, 2600 MHz) Working mode
Total Number of LTE TDD Carriers
Output Power per LTE TDD Carrier (W)
Bandwidth of LTE TDD Carrier (MHz)
LTE TDD
1 (MIMO)
8x5
10,20
2 (MIMO)
8x5
10,20
Engineering Specifications The following table lists the equipment specifications of an RRU3253. Issue 14 (2016-01-30)
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Table 6-779 Equipment specifications of an RRU3253 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3253
-48 V DC; voltage range: -60 V DC to -32 V DC
550 mm x 320 mm x 135 mm (24L, without the housing)
≤ 24 (without the housing)
The following table lists the environmental specifications of an RRU3253. Table 6-780 Environmental specifications of an RRU3253 Type
Operating Temperature
Relative Humidity
Absolute Humidity
Atmosph eric Pressure
Storage Time
RRU32 53
l With solar radiation of 1120 W/m2: -40°C to +45°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommen ded that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiation: -40°C to +50°C
The following table lists the compliance standards for an RRU3253. Table 6-781 Compliance standards for an RRU3253 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3253
l 3GPP TS 36.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-782 lists the surge protection specifications of ports on an RRU3253.
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NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-782 Surge protection specifications of ports on an RRU3253 Port
Usage Scenario
Surge Protection Mode
Specification
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Differential mode
250 A
Common mode
250 A
Surge current
RF port
RET port
Alarm port
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3253. Table 6-783 Specifications of CPRI ports on an RRU3253
Issue 14 (2016-01-30)
Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3253
2
2.5, 4.9 or 9.8
Star
N/A
10
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Antenna Capability The following table lists the antenna capability of an RRU3253. Table 6-784 Antenna capability of an RRU3253 Type
TMA Support
Supported RET Antennas
RRU3253
Not supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.52 RRU3256 Technical Specifications An RRU3256, which is a remote radio unit for LTE TDD, supports four carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3256. Table 6-785 Modes and frequency bands supported by an RRU3256 Type
Mode
Frequency Band (MHz)
Frequency Range (MHz)
RRU3256
LTE TDD
2300 (Band 40)
2300 to 2400
2500 (Band 41)
2496 to 2690
2600 (Band 38)
2570 to 2620
3500 (Band 42/43)
3400 to 3700
RF Specifications Table 6-786 lists radio frequency (RF) specifications of an RRU3256. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W.
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Table 6-786 RF specifications of an RRU3256 Type
Transmit and Receive Channels
Capacity
Output Power
Power Consumption
RRU3256
4T4R
Four carriers. The bandwidth per carrier is 5, 10, 15, or 20 MHz.
The RRU3256 supports the maximum power configuration 4 x 30 W. The typical configurations are as follows:
See the RRU3256 sheet in 3900 Series Base Station Power Consumption Specifications.
l Output power for the RRU3256 (LTE TDD, 2300 MHz or 2500 MHz) l Output power for the RRU3256 (LTE TDD, 3500 MHz) For typical PA configurations, see Typical Power Configuration for RRU3256 in 3900 Series Base Station Initial Configuration Guide.
NOTE
l The output power of an RRU3256 working at 3500 MHz varies with the factors such as uplink-downlink subframe configuration, filter insertion loss, and carrier configuration (contiguous or non-contiguous carriers). When the frequency spacing between carriers is greater than 80 MHz, the rated output power of RF channels must be decreased. l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-787 Output power for the RRU3256 (LTE TDD, 2300 MHz or 2500 MHz)
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Working mode
Total Number of LTE TDD Carriers
Output Power per LTE TDD Carrier (W)
Bandwidth of LTE TDD Carrier (MHz)
LTE TDD
1 (MIMO)
2 x 30
5,10,15,20
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Working mode
Total Number of LTE TDD Carriers
Output Power per LTE TDD Carrier (W)
Bandwidth of LTE TDD Carrier (MHz)
2 (MIMO)
2 x 15
5,10,15,20
3 (MIMO)
2 x 10
5,10,15,20
4 (MIMO)
2 x 7.5
5,10,15,20
1 (MIMO)
4 x 30
5,10,15,20
2 (MIMO)
4 x 15
5,10,15,20
3 (MIMO)
4 x 10
5,10,15,20
4 (MIMO)
4 x 7.5
5,10,15,20
Table 6-788 Output power for the RRU3256 (LTE TDD, 3500 MHz) Working mode
Total Number of LTE TDD Carriers
Output Power per LTE TDD Carrier (W)
Bandwidth of LTE TDD Carrier (MHz)
LTE TDD
1 (MIMO)
2 x 15
5,10,15,20
2 (MIMO)
2 x 7.5
5,10,15,20
3 (MIMO)
2x5
5,10,15,20
4 (MIMO)
2 x 3.75
5,10,15,20
1 (MIMO)
4 x 15
5,10,15,20
2 (MIMO)
4 x 7.5
5,10,15,20
3 (MIMO)
4x5
5,10,15,20
4 (MIMO)
4 x 3.75
5,10,15,20
Engineering Specifications The following table lists the equipment specifications of an RRU3256.
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Table 6-789 Equipment specifications of an RRU3256 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3256
-48 V DC; voltage range: -60 V DC to -32 V DC
l 485 mm x 300 mm x 170 mm (24.7 L, with the housing)
l ≤ 21 (with the housing)
l 480 mm x 270 mm x 140 mm (18 L, with the housing)
l ≤ 19.5 (without the housing)
The following table lists the environmental specifications of an RRU3256. Table 6-790 Environmental specifications of an RRU3256 Type
Operating Temperature
Relative Humidity
Absolute Humidity
Atmosph eric Pressure
Storage Time
RRU32 56
l With solar radiation of 1120 W/m2: -40°C to +45°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommen ded that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiation: -40°C to +50°C
The following table lists the compliance standards for an RRU3256. Table 6-791 Compliance standards for an RRU3256 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3256
l 3GPP TS 36.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-792 lists the surge protection specifications of ports on an RRU3256. Issue 14 (2016-01-30)
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NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-792 Surge protection specifications of ports on an RRU3256 Port
Usage Scenario
Surge Protection Mode
Specification
Power supply port
Applicable to all scenarios
Surge
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Differential mode
250 A
Common mode
250 A
Surge current
RF port
RET port
Alarm port
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3256.
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Table 6-793 Specifications of CPRI ports on an RRU3256 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3256
2
2.5, 4.9 or 9.8
Star, chain, or ring
4
If only one level of RRUs is configured, the maximum distance between an RRU and a BBU is 10 km. If multiple levels of RRUs are configured, the maximum distance between an RRU in the lowest level and a BBU is 20 km.
Antenna Capability The following table lists the antenna capability of an RRU3256. Table 6-794 Antenna capability of an RRU3256 Type
TMA Support
Supported RET Antennas
RRU3256
Not supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.53 RRU3259 Technical Specifications An RRU3259, which is a remote radio unit for LTE TDD, supports three carriers. Issue 14 (2016-01-30)
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Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3259. Table 6-795 Modes and frequency bands supported by an RRU3259 Type
Mode
Frequency Band (MHz)
Frequency Range (MHz)
RRU3259
LTE TDD
2600
2545 to 2625
NOTE
The occupied bandwidth (OBW) of the RRU3259 is 60 MHz.
RF Specifications Table 6-796 lists radio frequency (RF) specifications of an RRU3259. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W.
Table 6-796 RF specifications of an RRU3259 Type
Transmit and Receive Channels
Capacity
Output Power
Power Consumption
RRU3259
8T8R
Three carriers. The bandwidth per carrier is 10 or 20 MHz.
The RRU3259 supports the maximum power configuration 8 x 12.5 W. For typical configurations, see the Output power for the RRU3259 (LTE TDD, 2600 MHz) table.
See the RRU3259 sheet in 3900 Series Base Station Power Consumption Specifications.
For typical PA configurations, see Typical Power Configuration for RRU3259 in 3900 Series Base Station Initial Configuration Guide.
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NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-797 Output power for the RRU3259 (LTE TDD, 2600 MHz) Working mode
Total Number of LTE TDD Carriers
Output Power per LTE TDD Carrier (W)
Bandwidth of LTE TDD Carrier (MHz)
LTE TDD 8T8R
1 (MIMO)
8x5
10, 20
2 (MIMO)
8x5
10, 20
3 (MIMO)
l Carrier1:8 x 5
10, 20
l Carrier2:8 x 5 l Carrier3:8 x 2.5
Engineering Specifications The following table lists the equipment specifications of an RRU3259. Table 6-798 Equipment specifications of an RRU3259 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3259
-48 V DC; voltage range: -60 V DC to -32 V DC
550 mm x 320 mm x 135 mm (24L, without the housing)
≤ 26 (without the housing)
The following table lists the environmental specifications of an RRU3259.
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Table 6-799 Environmental specifications of an RRU3259 Type
Operating Temperature
Relative Humidity
Absolute Humidity
Atmosph eric Pressure
Storage Time
RRU32 59
l With solar radiation of 1120 W/m2: -40°C to +45°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommen ded that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiation: -40°C to +50°C
The following table lists the compliance standards for an RRU3259. Table 6-800 Compliance standards for an RRU3259 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3259
l 3GPP TS 36.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-801 lists the surge protection specifications of ports on an RRU3259. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-801 Surge protection specifications of ports on an RRU3259
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Port
Usage Scenario
Surge Protection Mode
Specification
Power supply port
Applicable to all scenarios
Surge
2 kV (1.2/50 μs)
Differential mode
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Port
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Usage Scenario
Surge Protection Mode
Surge current
RF port
RET port
Alarm port
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Specification
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Differential mode
250 A
Common mode
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3253. Table 6-802 Specifications of CPRI ports on an RRU3259 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3259
2
4.9 or 9.8
Star
N/A
10
Antenna Capability The following table lists the antenna capability of an RRU3259.
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Table 6-803 Antenna capability of an RRU3259 Type
TMA Support
Supported RET Antennas
RRU3259
Not supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.54 RRU3276 Technical Specifications An RRU3276, which is a remote radio unit for LTE TDD, supports four carriers.
Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3276. Table 6-804 Modes and frequency bands supported by an RRU3276 Type
Mode
Frequency Band (MHz)
Frequency Range (MHz)
RRU3276
LTE TDD
2300 (Band 40)
2300 to 2400
2600 (Band 41)
2496 to 2690
2600 (Band 41)
2520 to 2620
RF Specifications Table 6-805 lists radio frequency (RF) specifications of an RRU3276. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W.
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Table 6-805 RF specifications of an RRU3276 Type
Transmit and Receive Channels
Capacity
Output Power
Power Consumption
RRU3276
4T4R
l 2300 MHz: Four carriers (The bandwidth per carrier is 5, 10, 15, or 20 MHz.)
The RRU3276 supports the maximum power configuration 4 x 40 W. The typical configurations are as follows:
See the RRU3276 sheet in 3900 Series Base Station Power Consumption Specifications.
l 2600 MHz: Four carriers (The bandwidth per carrier is 5, 10, 15, or 20 MHz.)
l Output power for the RRU3276 (LTE TDD, 2300 MHz or 2600 MHz) For typical PA configurations, see Typical Power Configuration for an RRU3276 in 3900 Series Base Station Initial Configuration Guide.
NOTE
l The output power of an RRU3276 working at 3500 MHz varies with the factors such as uplink-downlink subframe configuration, filter insertion loss, and carrier configuration (contiguous or non-contiguous carriers). When the frequency spacing between carriers is greater than 80 MHz, the rated output power of RF channels must be decreased. l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-806 Output power of an RRU3276 (2300 MHz/2600 MHz, LTE TDD)
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Mode
Total Number of LTE TDD Carriers
Output Power per LTE TDD Carrier (W)
Bandwidth Supported by LTE TDD (MHz)
LTE TDD
1 (MIMO)
2x40
5, 10, 15, or 20
2 (MIMO)
2x20
5, 10, 15, or 20
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Mode
Total Number of LTE TDD Carriers
Output Power per LTE TDD Carrier (W)
Bandwidth Supported by LTE TDD (MHz)
3 (MIMO)
l Carrier 1: 2x20
5, 10, 15, or 20
l Carrier 2: 2x10 l Carrier 3: 2x10 4 (MIMO)
2x10
5, 10, 15, or 20
1 (MIMO)
4x40
5, 10, 15, or 20
2 (MIMO)
4x20
5, 10, 15, or 20
3 (MIMO)
l Carrier 1: 4x20
5, 10, 15, or 20
l Carrier 2: 4x10 l Carrier 3: 4x10 4 (MIMO)
4x10
5, 10, 15, or 20
Engineering Specifications The following table lists the equipment specifications of an RRU3276. Table 6-807 Equipment specifications of an RRU3276 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3276
-48 V DC; voltage range: -36 V DC to -57 V DC
480 mm x 300 mm x 150 mm (18 L, without the housing)
≤ 20 (without the housing)
The following table lists the environmental specifications of an RRU3276.
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Table 6-808 Environmental specifications of an RRU3276 Type
Operating Temperature
Relative Humidity
Absolute Humidity
Atmosph eric Pressure
Storage Time
RRU32 76
l With solar radiation of 1120 W/m2: -40°C to +45°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommen ded that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiation: -40°C to +50°C
The following table lists the compliance standards for an RRU3276. Table 6-809 Compliance standards for an RRU3276 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3276
l 3GPP TS 36.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-810 lists the surge protection specifications of ports on an RRU3276. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-810 Surge protection specifications of ports on an RRU3276
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Port
Usage Scenario
Surge Protection Mode
Specification
Power supply port
Applicable to all scenarios
Surge
2 kV (1.2/50 μs)
Differential mode
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Port
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Usage Scenario
Surge Protection Mode
Surge current
RF port
RET port
Alarm port
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Specification
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Differential mode
250 A
Common mode
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3276.
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Table 6-811 Specifications of CPRI ports on an RRU3276 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3276
2
4.9 or 9.8
Star, chain, and ring topologies
4
If only one level of RRUs is configured, the maximum distance between an RRU and a BBU is 10 km. If multiple levels of RRUs are configured, the maximum distance between an RRU in the lowest level and a BBU is 20 km.
Antenna Capability The following table lists the antenna capability of an RRU3276. Table 6-812 Antenna capability of an RRU3276 Type
TMA Support
Supported RET Antennas
RRU3276
Not supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.3.55 RRU3278 Technical Specifications An RRU3278, which is a remote radio unit for LTE TDD, supports four carriers. Issue 14 (2016-01-30)
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Supported Modes and Frequency Bands The following table lists the modes and frequency bands supported by an RRU3278. Table 6-813 Modes and frequency bands supported by an RRU3278 Type
Mode
Frequency Band (MHz)
Frequency Range (MHz)
RRU3278
LTE TDD
3500 (Band 40)
3400 to 3600
RF Specifications Table 6-814 lists radio frequency (RF) specifications of an RRU3278. NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W.
Table 6-814 RF specifications of an RRU3278 Type
Transmit and Receive Channels
Capacity
Output Power
Power Consumption
RRU3278
8T8R
l 3500 MHz: Four carriers (The bandwidth per carrier is 5, 10, 15, or 20 MHz.)
The RRU3278 supports the maximum power configuration 8 x 16 W. The typical configurations are as follows:
See the RRU3278 sheet in 3900 Series Base Station Power Consumption Specifications.
l Output power for the RRU3278 (LTE TDD, 3500 MHz or 2600 MHz) For typical PA configurations, see Typical Power Configuration for an RRU3278 in 3900 Series Base Station Initial Configuration Guide.
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Table 6-815 Output power of an RRU3278 (3500 MHz, LTE TDD) Mode
Total Number of LTE TDD Carriers
Output Power per LTE TDD Carrier (W)
Bandwidth Supported by LTE TDD (MHz)
LTE TDD
1 (MIMO)
4x16
5, 10, 15, or 20
2 (MIMO)
4x8
5, 10, 15, or 20
3 (MIMO)
l Carrier1: 4 x 5
5, 10, 15, or 20
l Carrier2: 4 x 5 l Carrier3: 4 x 6 4 (MIMO)
4x4
5, 10, 15, or 20
1 (MIMO)
8x16
5, 10, 15, or 20
2 (MIMO)
8x8
5, 10, 15, or 20
3 (MIMO)
l Carrier1: 8 x 5
5, 10, 15, or 20
l Carrier2: 8 x 5 l Carrier3: 8 x 6 4 (MIMO)
8x4
5, 10, 15, or 20
Engineering Specifications The following table lists the equipment specifications of an RRU3278. Table 6-816 Equipment specifications of an RRU3278 Type
Input Power
Dimension (H x W x D)
Weight (kg)
RRU3278
-48 V DC; voltage range: -36 V DC to -57 V DC
480 mm x 356 mm x 140 mm (24 L, without the housing)
≤ 25 (without the housing)
The following table lists the environmental specifications of an RRU3278.
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Table 6-817 Environmental specifications of an RRU3278 Type
Operating Temperature
Relative Humidity
Absolute Humidity
Atmosph eric Pressure
Storage Time
RRU32 78
l With solar radiation of 1120 W/m2: -40°C to +45°C
5% RH to 100% RH
1 g/m3 to 30 g/m3
70 kPa to 106 kPa
It is recommen ded that the device be installed and used within one year after its delivery because of the failure rate.
l Without solar radiation: -40°C to +50°C
The following table lists the compliance standards for an RRU3278. Table 6-818 Compliance standards for an RRU3278 Type
Operating Environment
Anti-seismic Performance
Protection Rating
RRU3278
l 3GPP TS 36.141
NEBS GR63 zone4
IP65
l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Table 6-819 lists the surge protection specifications of ports on an RRU3278. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-819 Surge protection specifications of ports on an RRU3278
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Port
Usage Scenario
Surge Protection Mode
Specification
Power supply port
Applicable to all scenarios
Surge
2 kV (1.2/50 μs)
Differential mode
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Port
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Usage Scenario
Surge Protection Mode
Surge current
RF port
RET port
Alarm port
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Applicable to all scenarios
Surge current
Specification
Common mode
4 kV (1.2/50 μs)
Differential mode
10 kA
Common mode
20 kA
Differential mode
8 kA
Common mode
40 kA
Differential mode
3 kA
Common mode
5 kA
Differential mode
250 A
Common mode
250 A
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an RRU3278.
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Table 6-820 Specifications of CPRI ports on an RRU3278 Type
Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
RRU3278
2
4.9 or 9.8
Star and ring topologies
Not supported
If only one level of RRUs is configured, the maximum distance between an RRU and a BBU is 10 km. If multiple levels of RRUs are configured, the maximum distance between an RRU in the lowest level and a BBU is 20 km.
Antenna Capability The following table lists the antenna capability of an RRU3278. Table 6-821 Antenna capability of an RRU3278 Type
TMA Support
Supported RET Antennas
RRU3278
Not supported
AISG2.0 and AISG1.1
NOTE
For RF moudles supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
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6.4 Technical Specifications of AAUs This section provides technical specifications of AAUs, including supported modes, frequency bands, RF and antenna specifications, engineering specifications, antenna capabilities, specifications of CPRI ports, and electrical specifications.
6.4.1 AAU3902 Technical Specifications The AAU3902 is an active antenna unit that integrates the functions of the RF modules and antennas.
Scenario Table 6-822 lists the scenarios supported by an AAU3902. NOTE
In xA+yP in the Scenario column, A stands for active, P stands for passive, x indicates the frequency band of the active unit, and y indicates the frequency band of the passive unit. For example, 2100 A + 1710~2690 P + 790~960 P means that the frequency band of the active unit is 2100 MHz and the frequency band of the passive unit is 1710 MHz to 2690 MHz and 790 MHz to 960 MHz.
Table 6-822 AAU3902 scenario Scenario
Antenna Type
2100 A + 1710~2690 P + 790~960 P
AAU3902 Antenna
(Hereinafter referred to as 2.1 A) 1800 A + 1710~2690 P + 790~960 P (Hereinafter referred to as 1.8 A) 1800 A + 2100 A + 1710~2690 P + 790~960 P (Hereinafter referred to as 1.8 A + 2.1 A)
Antenna Specifications The AAU3902 antenna supports the following frequency bands: 790 MHz to 960 MHz, 1710 MHz to 2690 MHz and 1725 MHz to 2170 MHz. For mechanical downtilt of these antennas, see Table 6-823. For electrical properties of these antennas, see Table 6-824, Table 6-825, and Table 6-826. Table 6-823 AAU3902 antenna mechanical downtilt
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Antenna Frequency Range (MHz)
Mechanical Downtilt (°)
790 to 960
-3 to 3
1710 to 2690
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Antenna Frequency Range (MHz)
Mechanical Downtilt (°)
1725 to 2170
-3 to 3
Table 6-824 AAU3902 antenna electrical properties (790MHz to 960MHz) Specifications
Item Frequency range (MHz)
790 to 960 (only for passive module) 790 to 862
880 to 960
Polarization
+45°, -45°
Electrical downtilt (°)
0 to 10, continuously adjustable
Gain (dBi)
Side lobe suppression for first side lobe above main beam (Typ.) (dB)
0°
5°
10°
0°
5°
10°
0°
5°
10°
15.7
15.9
15.6
16
16.1
15.6
16.1
16.3
15.8
0°
5°
10°
0°
5°
10°
0°
5°
10°
18
18
18
18
18
18
18
18
18
Horizontal 3dB beam width (°)
65
64
62
Vertical 3dB beam width (°)
10.1
9.8
9.3
VSWR
<1.5
Isolation between ports (dB)
≥28
Front to back ratio, copolar (dB)
Typ.27
Cross polar ratio (0°)(dB)
Typ.18
Max. power per input (W)
250 (at 50°C ambient temperature)
Intermodulation IM3 (dBc)
≤-153 (2 x 43 dBm carrier)
Impedance (Ω)
50
Grounding Issue 14 (2016-01-30)
824 to 894
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Table 6-825 AAU3902 antenna electrical properties (1710MHz to 2690MHz) Item
Specifications
Frequency range (MHz)
1710 to 2690 (only for passive module) 1710 to 1990
2500 to 2690
Polarization
+45°, -45°
Electrical downtilt (°)
2 to 10, continuously adjustable
Gain (dBi)
Side lobe suppression for first side lobe above main beam (Typ.) (dB)
2°
6°
10°
2°
6°
10°
2°
6°
10°
17.5
17.3
17
17.8
17.8
17.3
17.8
18.2
17.7
2°
6°
10°
2°
6°
10°
2°
6°
10°
16
16
17
17
17
17
17
18
18
Horizontal 3dB beam width (°)
65
62
60
Vertical 3dB beam width (°)
5.8
5.4
4.3
VSWR
<1.5
Isolation between ports (dB)
≥28
Front to back ratio, copolar (dB)
Typ.28
Cross polar ratio (0°)(dB)
Typ.18
Max. power per input (W)
125 (at 50°C ambient temperature)
Intermodulation IM3 (dBc)
≤-153 (2 x 43 dBm carrier)
Impedance (Ω)
50
Grounding
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1920 to 2170
DC Ground
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NOTE
l In Table 6-826, *: AAU3902 supports the Dividual Tilts by Carrier feature. The tilt difference between carriers operating in the 2100 MHz frequency band and 1800 MHz frequency band ranges from 0 to 5.5 degree. l For details about the Dividual Tilts by Carrier feature, see AAS Feature Parameter Description of the corresponding mode.
Table 6-826 AAU3902 antenna electrical properties (1725MHz to 2170MHz) Specifications
Item Frequency range (MHz)
1725 to 2170 (only for active module) 1920 to 2170
Polarization
+45°, -45°
Electrical downtilt (°)
0 to 12, continuously adjustable
Tilt difference range between carriers *(°)
0 to 5
Gain (dBi)
Side lobe suppression for first side lobe above main beam (Typ.) (dB)
0 to 6
0°
6°
12°
0°
6°
12°
16.6
17.1
16.8
16.5
17
16.5
0°
6°
12°
0°
6°
12°
18
17
16
18
18
17
Horizontal 3dB beam width (°)
60
64
Vertical 3dB beam width (°)
5.7
6.4
VSWR
<1.5
Isolation between ports (dB)
≥28
Front to back ratio, copolar (dB)
Typ.28
Cross polar ratio (dB)
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1725 to 1880
0°
Typ.20
±6 0°
Typ.10
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Item
Specifications
Max. power per slot of active antenna part (W)
2 x 60 (at 50°C ambient temperature)
Intermodulation IM3 (dBc)
≤-153 (2 x 43 dBm carrier)
Impedance (Ω)
50
RF Specifications The RF specifications of an AAU3902 include the following: frequency band, EIRP, capacity, receiver sensitivity, output power, and power consumption. Table 6-827 Frequency band of AAU3902 Scenario
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
2.1 A
2100
1920 to 1980
2110 to 2170
1.8 A
1800
1725 to 1785
1820 to 1880
1.8 A + 2.1 A
1800
1725 to 1785
1820 to 1880
2100
1920 to 1980
2110 to 2170
Table 6-828 AAU3902 EIRP Frequency Band (MHz)
EIRP
1800
2 x 40W + 17dBi = 2 x 63dBm
2100
2 x 40W + 17dBi = 2 x 63dBm
NOTE
In Table 6-829: l
The GSM receiver sensitivity, as recommended in 3GPP TS 51.021, is measured at the antenna connector on condition that the channel rate is 13 kbit/s and the Bit Error Rate (BER) is not higher than 2%.
l
The UMTS receiver sensitivity, as recommended in 3GPP TS 25.104, is measured at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001.
l
The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard.
l
Typical power consumption is measured when the base station load reaches 50% and maximum power consumption is measured when the base station load reaches 100%.
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Table 6-829 Capacity, receiver sensitivity, output power, and power consumption of AAU3902 Scena rio
Capacity
Equivalent Receiver Sensitivity of an Active Unit
Output Power
Power Consumption (W)
2.1 A
UMTS:
UMTS: 125.8 dBm-17 dBi
The typical configurations are as follows:
l Typical power consumption: 260
l Output power for the AAU3902 (UMTS, 2100 MHz, 1T2R, 3 Sectors)
l Maximum power consumption: 360
l 8 carriers (nonMIMO 1T2R) l 4 carriers (MIMO 2T2R or 2T4R)
l Output power for the AAU3902 (UMTS, 2100 MHz, 2T2R/2T4R, 3 Sectors) l Output power for the AAU3902 (UMTS, 2100 MHz, 1T2R, 6 Sectors) l Output power for the AAU3902 (UMTS, 2100 MHz, 2T2R, 6 Sectors)
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Scena rio
Capacity
Equivalent Receiver Sensitivity of an Active Unit
Output Power
Power Consumption (W)
1.8 A
GSM: 6 carriers
l GSM: 114.0 dBm-17 dBi
The typical configurations are as follows:
l Typical power consumption: 275
l Output power for the AAU3902 (LTE FDD, 1800 MHz, 2T2R/2T4R, 3 Sectors)
l Maximum power consumption: 365
LTE FDD: 2 carriers. The bandwidth per carrier is 5, 10, 15, or 20 MHz.
l LTE FDD: -106.6 Bm-17 dBi
l Output power for the AAU3902 (LTE FDD, 1800 MHz, 4T4R, 3 Sectors) l Output power for the AAU3902 (LTE FDD, 1800 MHz, 2T2R, 6 Sectors) l Output power for the AAU3902 (GL, 1800 MHz, GSM 1T2R<E FDD 2T2R/2T4R, 3 Sectors) l Output power for the AAU3902 (GL, 1800 MHz, GSM 1T2R<E FDD 4T4R, 3 Sectors) l Output power for the AAU3902 (GL, 1800 MHz, GSM 1T2R<E FDD 2T2R, 3 Sectors for GSM&6 Sectors for LTE FDD)
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Scena rio
Capacity
Equivalent Receiver Sensitivity of an Active Unit
Output Power
Power Consumption (W)
1.8 A + 2.1 A
GSM: 6 carriers
l GSM: 114.0dBm17dBi
The typical configurations are as follows:
l Typical power consumption: 505
l UMTS: 125.8dBm17dBi
l Output power for the AAU3902 (UMTS, 2100 MHz, 1T2R, 3 Sectors)
l Maximum power consumption: 695
UMTS: l 8 carriers (nonMIMO 1T2R) l 4 carriers (MIMO 2T2R or 2T4R) LTE FDD: 2 carriers. The bandwidth per carrier is 5, 10, 15, or 20 MHz.
l LTE FDD: -106.6dBm17dBi
l Output power for the AAU3902 (UMTS, 2100 MHz, 2T2R/2T4R, 3 Sectors) l Output power for the AAU3902 (UMTS, 2100 MHz, 1T2R, 6 Sectors) l Output power for the AAU3902 (UMTS, 2100 MHz, 2T2R, 6 Sectors) l Output power for the AAU3902 (LTE FDD, 1800 MHz, 2T2R/2T4R, 3 Sectors) l Output power for the AAU3902 (LTE FDD, 1800 MHz, 4T4R, 3 Sectors) l Output power for the AAU3902 (LTE FDD, 1800 MHz, 2T2R, 6 Sectors) l Output power for the AAU3902 (GL, 1800 MHz, GSM 1T2R<E FDD 2T2R/2T4R, 3 Sectors) l Output power for the AAU3902 (GL, 1800 MHz, GSM 1T2R<E FDD 4T4R, 3 Sectors)
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Capacity
Equivalent Receiver Sensitivity of an Active Unit
Output Power
Power Consumption (W)
l Output power for the AAU3902 (GL, 1800 MHz, GSM 1T2R<E FDD 2T2R, 3 Sectors for GSM&6 Sectors for LTE FDD)
NOTE
l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance. l The Virtual Antenna Port Configuration column provides the output power configurations of virtual antenna ports when the Dividual Tilts by Carrier feature is used. l Rxy indicates a virtual antenna port connected to a virtual RET subunit. Where l
x is a decimal digit ranging from 0 to 7. It indicates the number of a port on the vertical plane.
l
y indicates the number of a port on the horizontal plane and can be set to A or B. A indicates the +45° polarized radiator element and B indicates the -45° polarized radiator element.
l If the Vertical Multiple Sectors feature is used, the base station supports a maximum of six sectors. If this feature is not used, the base station supports a maximum of three sectors. l For details about the Vertical Multiple Sectors features, see AAS Feature Parameter Description of the corresponding mode.
Table 6-830 Output power for the AAU3902 (UMTS, 2100 MHz, 1T2R, 3 Sectors) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
Virtual Antenna Port Configuration
UMTS
1
40
R0A: 40 W, R0B: 0 W
2
40
l R0A: 40 W, R0B: 0 W l R1A: 0 W, R1B: 40 W
3
20
l R0A: 20 W, R0B: 0 W l R1A: 0 W, R1B: 20 W l R2A: 20 W, R2B: 0 W
4
20
l R0A: 20 W, R0B: 0 W l R1A: 0 W, R1B: 20 W l R2A: 20 W, R2B: 0 W l R3A: 0 W, R3B: 20 W
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Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
Virtual Antenna Port Configuration
5
13
l R0A: 13 W, R0B: 0 W l R1A: 0 W, R1B: 13 W l R2A: 13 W, R2B: 0 W l R3A: 0 W, R3B: 13 W l R4A: 13 W, R4B: 0 W
6
13
l R0A: 13 W, R0B: 0 W l R1A: 0 W, R1B: 13 W l R2A: 13 W, R2B: 0 W l R3A: 0 W, R3B: 13 W l R4A: 13 W, R4B: 0 W l R5A: 0 W, R5B: 13 W
7
10
l R0A: 10 W, R0B: 0 W l R1A: 0 W, R1B: 10 W l R2A: 10 W, R2B: 0 W l R3A: 0 W, R3B: 10 W l R4A: 10 W, R4B: 0 W l R5A: 0 W, R5B: 10 W l R6A: 10 W, R6B: 0 W
8
10
l R0A: 10 W, R0B: 0 W l R1A: 0 W, R1B: 10 W l R2A: 10 W, R2B: 0 W l R3A: 0 W, R3B: 10 W l R4A: 10 W, R4B: 0 W l R5A: 0 W, R5B: 10 W l R6A: 10 W, R6B: 0 W l R7A: 0 W, R7B: 10 W
Table 6-831 Output power for the AAU3902 (UMTS, 2100 MHz, 2T2R/2T4R, 3 Sectors)
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
Virtual Antenna Port Configuration
UMTS
1
40 + 40
R0A: 40 W, R0B: 40 W
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Mode
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Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
Virtual Antenna Port Configuration
2
20 + 20
l R0A: 20 W, R0B: 20 W l R1A: 20 W, R1B: 20 W
3
13 + 13
l R0A: 13 W, R0B: 13 W l R1A: 13 W, R1B: 13 W l R2A: 13 W, R2B: 13 W
4
10 + 10
l R0A: 10 W, R0B: 10 W l R1A: 10 W, R1B: 10 W l R2A: 10 W, R2B: 10 W l R3A: 10 W, R3B: 10 W
Table 6-832 Output power for the AAU3902 (UMTS, 2100 MHz, 1T2R, 6 Sectors) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
Virtual Antenna Port Configuration
UMTS
1
40
l Sector 1: R0A: 40 W, R0B: 0 W l Sector 2: R1A: 0 W, R1B: 40 W
2
20
l Sector 1: – Carrier 1: R0A: 20 W, R0B: 0 W – Carrier 2: R1A: 0 W, R1B: 20 W l Sector 2: – Carrier 1: R2A: 20 W, R2B: 0 W – Carrier 2: R3A: 0 W, R3B: 20 W
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Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
Virtual Antenna Port Configuration
3
13
l Sector 1: – Carrier 1: R0A: 13 W, R0B: 0 W – Carrier 2: R1A: 0 W, R1B: 13 W – Carrier 3: R2A: 13 W, R2B: 0 W l Sector 2: – Carrier 1: R3A: 0 W, R3B: 13 W – Carrier 2: R4A: 13 W, R4B: 0 W – Carrier 3: R5A: 0 W, R5B: 13 W
4
10
l Sector 1: – Carrier 1: R0A: 10 W, R0B: 0 W – Carrier 2: R1A: 0 W, R1B: 10 W – Carrier 3: R2A: 10 W, R2B: 0 W – Carrier 4: R3A: 0 W, R3B: 10 W l Sector 2: – Carrier 1: R4A: 10 W, R4B: 0 W – Carrier 2: R5A: 0 W, R5B: 10 W – Carrier 3: R6A: 10 W, R6B: 0 W – Carrier 4: R7A: 0 W, R7B: 10 W
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Table 6-833 Output power for the AAU3902 (UMTS, 2100 MHz, 2T2R, 6 Sectors) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
Virtual Antenna Port Configuration
UMTS
1
20 + 20
l Sector 1: R0A: 20 W, R0B: 20 W l Sector 2: R1A: 20 W, R1B: 20 W
2
10 + 10
l Sector 1: – Carrier 1: R0A: 10 W, R0B: 10 W – Carrier 2: R1A: 10 W, R1B: 10 W l Sector 2: – Carrier 1: R2A: 10 W, R2B: 10 W – Carrier 2: R3A: 10 W, R3B: 10 W
3
6.5+6.5
l Sector 1: – Carrier 1: R0A: 6.5 W, R0B: 6.5 W – Carrier 2: R1A: 6.5 W, R1B: 6.5 W – Carrier 3: R2A: 6.5 W, R2B: 6.5 W l Sector 2: – Carrier 1: R3A: 6.5 W, R3B: 6.5 W – Carrier 2: R4A: 6.5 W, R4B: 6.5 W – Carrier 3: R5A: 6.5 W, R5B: 6.5 W
4
5+5
l Sector 1: – Carrier 1: R0A: 5 W, R0B: 5 W – Carrier 2: R1A: 5 W, R1B: 5 W – Carrier 3: R2A: 5 W, R2B: 5 W – Carrier 4: R3A: 5 W, R3B: 5 W l Sector 2: – Carrier 1: R4A: 5 W, R4B: 5 W – Carrier 2: R5A: 5 W, R5B: 5 W – Carrier 3: R6A: 5 W, R6B: 5 W – Carrier 4: R7A: 5 W, R7B: 5 W
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Table 6-834 Output power for the AAU3902 (LTE FDD, 1800 MHz, 2T2R/2T4R, 3 Sectors) Mode
Total Numbe r of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
Virtual Antenna Port Configuration
LTE FDD
1
2 x 40
5, 10, 15, 20
R0A: 40 W, R0B: 40 W
2
2 x 20
5, 10, 15, 20
l R0A: 20 W, R0B: 20 W l R1A: 20 W, R1B: 20 W
Table 6-835 Output power for the AAU3902 (LTE FDD, 1800 MHz, 4T4R, 3 Sectors) Mode
Total Numbe r of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
Virtual Antenna Port Configuration
LTE FDD
1
4 x 20
5, 10, 15, 20
l R0A: 20 W, R0B: 20 W l R1A: 20 W, R1B: 20 W
2
4 x 10
5, 10, 15, 20
l R0A: 10 W, R0B: 10 W l R1A: 10 W, R1B: 10 W l R2A: 10 W, R2B: 10 W l R3A: 10 W, R3B: 10 W
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Table 6-836 Output power for the AAU3902 (LTE FDD, 1800 MHz, 2T2R, 6 Sectors) Mode
Total Numbe r of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth of LTE FDD Carrier (MHz)
Virtual Antenna Port Configuration
LTE FDD
1
2 x 40
5, 10, 15, 20
l Sector 1: R0A: 40 W, R0B: 40 W l Sector 2: R1A: 40 W, R1B: 40 W
2
2 x 20
5, 10, 15, 20
l Sector 1: – Carrier 1: R0A: 20 W, R0B: 20 W – Carrier 2: R1A: 20 W, R1B: 20 W l Sector 2: – Carrier 1: R2A: 20 W, R2B: 20 W – Carrier 2: R3A: 20 W, R3B: 20 W
Table 6-837 Output power for the AAU3902 (GL, 1800 MHz, GSM 1T2R & LTE FDD 2T2R/2T4R, 3 Sectors) Mode
Total Num ber of GSM Carri ers
Outp ut Powe r per GSM Carri er (W)
Total Num ber of LTE FDD Carri ers
Outp ut Powe r per LTE FDD Carri er (W)
Bandwidth of LTE FDD Carrier (MHz)
Virtual Antenna Port Configuration
GL
6
10
1
2 x 10
5, 10, 15, 20
l GSM: R0A: 10 W, 10 W, 10 W; R0B: 10 W, 10 W, 10 W l LTE: R1A: 10 W; R1B: 10 W
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Mode
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Total Num ber of GSM Carri ers
Outp ut Powe r per GSM Carri er (W)
Total Num ber of LTE FDD Carri ers
Outp ut Powe r per LTE FDD Carri er (W)
Bandwidth of LTE FDD Carrier (MHz)
Virtual Antenna Port Configuration
5
10
1
2 x 10
5, 10, 15, 20
l GSM: R0A: 10 W, 10 W, 10 W; R0B: 10 W, 10 W l LTE: R1A: 10 W; R1B: 10 W
4
10
1
2 x 20
5, 10, 15, 20
l GSM: R0A: 10 W, 10 W; R0B: 10 W, 10 W l LTE: R1A: 20 W; R1B: 20 W
3
10
1
2 x 20
5, 10, 15, 20
l GSM: R0A: 10 W, 10 W; R0B: 10 W l LTE: R1A: 20 W; R1B: 20 W
2
20
1
2 x 20
5, 10, 15, 20
l GSM: R0A: 20 W; R0B: 20 W l LTE: R1A: 20 W; R1B: 20 W
1
20
1
2 x 20
5, 10, 15, 20
l GSM: R0A: 20 W l LTE: R1A: 20 W; R1B: 20 W
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Table 6-838 Output power for the AAU3902 (GL, 1800 MHz, GSM 1T2R & LTE FDD 4T4R, 3 Sectors) Mode
Total Num ber of GSM Carri ers
Outp ut Powe r per GSM Carri er (W)
Total Num ber of LTE FDD Carri ers
Outp ut Powe r per LTE FDD Carri er (W)
Bandwidth of LTE FDD Carrier (MHz)
Virtual Antenna Port Configuration
GL
4
10
1
4 x 10
5, 10, 15, 20
l GSM: R0A: 10 W, 10 W; R0B: 10 W, 10 W l LTE: R1A: 10 W, R1B: 10 W; R2A: 10 W, R2B: 10 W
3
10
1
4 x 10
5, 10, 15, 20
l GSM: R0A: 10 W, 10 W; R0B: 10 W l LTE: R1A: 10 W, R1B: 10 W; R2A: 10 W, R2B: 10 W
2
20
1
4 x 10
5, 10, 15, 20
l GSM: R0A: 20 W; R0B: 20 W l LTE: R1A: 10 W, R1B: 10 W; R2A: 10 W, R2B: 10 W
1
20
1
4 x 10
5, 10, 15, 20
l GSM: R0A: 20 W l LTE: R1A: 10 W, R1B: 10 W; R2A: 10 W, R2B: 10 W
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Table 6-839 Output power for the AAU3902 (GL, 1800 MHz, GSM 1T2R & LTE FDD 2T2R, 3 Sectors for GSM & 6 Sectors for LTE FDD) Mode
Total Num ber of GSM Carri ers
Outp ut Powe r per GSM Carri er (W)
Total Num ber of LTE FDD Carri ers
Outp ut Powe r per LTE FDD Carri er (W)
Bandwidth of LTE FDD Carrier (MHz)
Virtual Antenna Port Configuration
GL
4
10
1
2 x 10
5, 10, 15, 20
l GSM: R0A: 10 W, 10 W; R0B: 10 W, 10 W l LTE: – Sector 1: R1A: 10 W, R1B: 10 W – Sector 2: R2A: 10 W, R2B: 10 W
3
10
1
2 x 10
5, 10, 15, 20
l GSM: R0A: 10 W, 10 W; R0B: 10 W l LTE: – Sector 1: R1A: 10 W, R1B: 10 W – Sector 2: R2A: 10 W, R2B: 10 W
2
20
1
2 x 10
5, 10, 15, 20
l GSM: R0A: 20 W; R0B: 20 W l LTE: – Sector 1: R1A: 10 W, R1B: 10 W – Sector 2: R2A: 10 W, R2B: 10 W
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Total Num ber of GSM Carri ers
Outp ut Powe r per GSM Carri er (W)
Total Num ber of LTE FDD Carri ers
Outp ut Powe r per LTE FDD Carri er (W)
Bandwidth of LTE FDD Carrier (MHz)
Virtual Antenna Port Configuration
1
20
1
2 x 10
5, 10, 15, 20
l GSM: R0A: 20 W l LTE: – Sector 1: R1A: 10 W, R1B: 10 W – Sector 2: R2A: 10 W, R2B: 10 W
Engineering Specifications The following table lists the equipment specifications of an AAU3902. Table 6-840 Equipment specifications of an AAU3902 Input Power
Dimensions (H x W x D)
Weight
-48 V DC; voltage range: -57 V DC to -36 V DC
l AAU3902: 2000 mm x 350 mm x 260 mm (without the attachment plate)
l Minimum antenna weight (without modules and the attachment plate): 33.5 kg
l RU44: 416 mm x 310 mm x 132 mm
l When one RU44 is configured (without the handles, decorating plates and mounting kits): 53 kg l When two RU44s are configured (without the handles, decorating plates and mounting kits): 62 kg l RU44: 10.9 kg
The following table lists the environmental specifications of an AAU3902.
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Table 6-841 Environment specifications of an AAU3902 Item
Specifications
Operating temperature
l Without solar radiation: -40ºC to +55ºC l With solar radiation: -40ºC to +50ºC l Front: 980 N (Assume that the wind speed is 150 km/h.)
Wind load
l Side: 650 N (Assume that the wind speed is 150 km/h.) l Rear: 960 N (Assume that the wind speed is 150 km/h.) Max. operational wind speed
150 km/h
Survival wind speed
200 km/h
Relative humidity
5% RH to 100% RH
Absolute humidity
1 g/m3 to 30 g/m3
Operating environment
Comply with the following standards: l 3GPP TS 25.141 l 3GPP TS 36.141 l 3GPP TS 37.141 l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Non-weather protected locations."
Anti-seismic protection
ETS300-2-3 4M5
Storage Time
It is recommended that the device be installed and used within one year after its delivery because of the failure rate.
Table 6-842 lists the surge protection specifications of ports on an AAU3902.
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Table 6-842 Surge protection specifications of ports on an AAU3902 Port
Surge Protection Mode
Specifications
Remarks
DC power port
Surge current
Differenti al mode
10 kA
NOTE
Common mode
20 kA
Antenna port
Surge current
Differenti al mode
2 kA
Common mode
20 kA
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an AAU3902. Table 6-843 Specifications of CPRI ports on an AAU3902 Number of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Levels
Maximum Distance from the BBU (km)
2
1.25, 2.5, 4.9, or 6.144
Star or chain
3
40
Antenna Capability The following table lists the antenna capability of an AAU3902. Table 6-844 Antenna capability of an AAU3902 TMA Support
Supported RET Antennas
Passive antennas connected to a TMA
AISG2.0
NOTE
For AAUs supporting RET antennas, the feeding voltage is 12 V and feeding current is 2.3 A.
6.4.2 AAU3910 Technical Specifications The AAU3910 is an active antenna unit that integrates the functions of RF modules and antennas. Issue 14 (2016-01-30)
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AAU Configuration Configured with different types of AUs and RUs, the AAU3910 can support different configuration scenarios. Table 6-845 provides the configuration scenarios of the AAU3910. NOTE
l In xA+yP in the AAU Configuration column, A indicates active modules and P indicates the passive modules (not installed in the AAU3911 slots). x indicates the frequency band of the active unit, and y indicates the frequency band of the passive unit. For example, 2100 A+700-900 P means that the frequency band of the active module is 2100 MHz and that of the passive unit ranges from 700 MHz to 900 MHz. l In the RU Configuration column, UP indicates that the RU is installed in the upper slot of the AAU and DOWN indicates that the RU is installed in the lower slot of the AAU. l In the AU Specifications column, UP indicates the frequency band supported by the antenna port at the rear of the antenna and DOWN indicates the frequency band supported by the antenna port at the bottom of the antenna.
Table 6-845 AAU3911 configurations AAU Configuration
RU Configuration
AU Specifications
2100 A (2T4R 2x60W) + 1800/2600 P (4 Ports)
RU3832 2100 MHz 2T4R, 2x60 W (UP)
AU10Ia 1920-2170 MHz (UP), 1710-1880 MHz/2500-2690 MHz (DOWN)
2600 A (2T4R 2x40W) + 1800-2100 P (4 Ports)
RU3260 2600 MHz 2T4R, 2x40 W (UP)
2600 A (2T4R 2x40W) + 2100 A (2T4R 2x60W)
RU3260 2600 MHz 2T4R, 2x40 W (UP)
AU10Ic 2500-2690 MHz (UP), 1710-2170 MHz (DOWN)
RU3832 2100 MHz 2T4R, 2x60 W (DOWN) AWS A (2T4R 2x60W) + PCS P (4 Ports)
RU3832 AWS 2T4R, 2x60 W (UP)
AU10Id 1710-1770 MHz/2110-2170 MHz (UP), 1850-1990 MHz (DOWN)
Antenna Specifications Table 6-846 provides the electrical specifications of AU10Ia 1920-2170 MHz (UP), 1710-1880 MHz/2500-2690 MHz (DOWN). Table 6-846 Electrical specifications of AU10Ia 1920-2170 MHz (UP), 1710-1880 MHz/ 2500-2690 MHz (DOWN) Item
Specifications
Frequency range (MHz)
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2 x (1710 to 2690) 1710 to 1880
1920 to 2170
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Item
Specifications
Polarization
+45°, -45°
Electrical downtilt (°) Gain (dBi)
Side lobe suppression for first side lobe above main beam (Typ.)(dB)
0 to 12, continuously adjustable 0°
6°
12°
0°
6°
12°
0°
6°
12°
17.1
17.3
17.0
17.7
17.9
17.5
18.2
18.2
17.8
0°
6°
12°
0°
6°
12°
0°
6°
12°
18
17
16
18
17
16
18
17
16
Horizontal 3dB beam width (°)
66
64
60
Vertical 3dB beam width (°)
6.5
6
4.5
VSWR
<1.5
Isolation between ports (dB)
Intra-system: ≥30 Inter-system: ≥28 (Typ.30)
Front to back ratio, copolar (dB)
Typ.28
Cross polar ratio (dB)
0°
Typ.20
±6 0°
Typ.10
Max. power per input (W)
240 (at 50°C ambient temperature)
Impedance (Ω)
50
Grounding
DC Ground
Table 6-847 provides the electrical specifications of AU10Ic 2500-2690 MHz (UP), 1710-2170 MHz (DOWN). Table 6-847 Electrical specifications of AU10Ic 2500-2690 MHz (UP), 1710-2170 MHz (DOWN) Item Frequency range (MHz)
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Specifications 2 x (1710 to 2690) 1710 to 1880
1850 to 1995
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1920 to 2170
2500 to 2690
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Item
Specifications
Polarization
+45°, -45°
Electrical downtilt (°)
0 to 12, continuously adjustable
Gain (dBi)
Side lobe suppression for first side lobe above main beam (Typ.)(dB)
0°
6°
12°
0°
6°
12°
0°
6°
12°
0°
6°
12°
17. 1
17. 3
17. 0
17. 1
17. 3
17. 0
17. 7
17. 9
17. 5
18. 2
18. 2
17. 8
0°
6°
12°
0°
6°
12°
0°
6°
12°
0°
6°
12°
18
17
16
18
17
16
18
17
16
18
17
16
Horizontal 3dB beam width (°)
66
62
64
60
Vertical 3dB beam width (°)
6.5
6.1
6
4.5
VSWR
<1.5
Isolation between ports (dB)
Intra-system: ≥30 Inter-system: ≥28 (Typ.30)
Front to back ratio, copolar (dB)
Typ.28
Cross polar ratio (dB)
0 °
Typ.20
± 6 0 °
Typ.10
Max. power per input (W)
240 (at 50°C ambient temperature)
Impedance (Ω)
50
Grounding
DC Ground
Table 6-848 provides the electrical specifications of AU10Id 1710-1770 MHz/2110-2170 MHz (UP), 1850-1990 MHz (DOWN). Issue 14 (2016-01-30)
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Table 6-848 Electrical specifications of AU10Id 1710-1770 MHz/2110-2170 MHz (UP), 1850-1990 MHz (DOWN) Item
Specifications
Frequency range (MHz)
2 x (1710 to 2170) AWS
AWS
PCS
1710 to 1770
2110 to 2170
1850 to 1995
Polarization
+45°, -45°
Electrical downtilt (°) Gain (dBi)
Side lobe suppression for first side lobe above main beam (Typ.)(dB)
0 to 12, continuously adjustable 0°
6°
12°
0°
6°
12°
0°
6°
12°
17.1
17.4
17.1
17.8
18.1
17.9
17.4
17.8
17.4
0°
6°
12°
0°
6°
12°
0°
6°
12°
18
17
16
18
17
16
18
17
16
Horizontal 3dB beam width (°)
66
61
62
Vertical 3dB beam width (°)
6.5
5.6
6.1
VSWR
<1.5
Isolation between ports (dB)
Intra-system: ≥30 Inter-system: ≥28 (Typ.30)
Front to back ratio, copolar (dB)
Typ.28
Cross polar ratio (dB)
0°
Typ.20
±6 0°
Typ.10
Max. power per input (W)
240 (at 50°C ambient temperature)
Impedance (Ω)
50
Grounding
DC Ground
RU Specifications The AAU3910 supports RU3832, RU3260. RU specifications include the supported frequency band, RX and TX channels, capacity, and output power. Issue 14 (2016-01-30)
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Table 6-849 Modes and frequency bands supported by RUs RU Type
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
Working Mode
RU3260
2600
2500-2570
2620-2690
LTE FDD
RU3832
2100
1920-1980
2110-2170
UMTS
AWS
1710-1755
2110-2155
UMTS, LTE FDD, UL
NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W.
Table 6-850 RX/TX channel, capacity, and output power of an RU RU Type
TX/RX Channe l
Capacity
Output Power
RU3832
2T4R
UMTS: 6 carriers without MIMO or 4 carriers with MIMO
The RU3832 supports a maximum of 2x60 W. The typical power configurations are as follows:
LTE FDD: 2 carriers with bandwidth of 5/10/15/20 MHz
l RU3832 output power (UMTS, 2100 MHz/AWS) l RU3832 output power (LTE FDD, AWS) l RU3832 output power (UL MSR, AWS) For typical PA configurations, see Typical Power Configuration for AAU3910 in 3900 Series Base Station Initial Configuration Guide.
RU3260
2T4R
LTE FDD: 2 carriers with bandwidth of 5/10/15/20 MHz
The RU3260 supports a maximum of 2x40 W. The typical configurations are as follows: RU3260 (LTE FDD, 2600 MHz) For typical PA configurations, see Typical Power Configuration for AAU3910 in 3900 Series Base Station Initial Configuration Guide.
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NOTE
l If the RF module is placed at an altitude of 3500 to 4500 meters, its power reduces by 1 dB. If the RF module is placed at an altitude of 4500 to 6000 meters, its power reduces by 2 dB. l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-851 Output power for the RU3832 (UMTS, 2100 MHz/AWS) Working Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
60
2
60
3
30
4
30
5
20
6
20
1 (MIMO)
2x40
2 (MIMO)
2x30
3 (MIMO)
2x20
4 (MIMO)
2x15
Table 6-852 Output power for the RU3832 (LTE FDD, AWS) Working Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
LTE FDD
1 (MIMO)
2x20
5
1 (MIMO)
2x40
10
1 (MIMO)
2x60
5, 10, 15, 20
2 (MIMO)
2x20
5
2 (MIMO)
2x30
5, 10
2 (MIMO)
Carrier 1: 2x20
Carrier 1: 5
Carrier 2: 2x40
Carrier 2: 10
Carrier 1: 2x15
Carrier 1: 5
Carrier 2: 2x45
Carrier 2: 15
2 (MIMO)
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Table 6-853 Output power for the RU3832 (UL MSR, AWS) Working Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
UMTS + LTE FDD
1 (MIMO)
1 (MIMO)
2x20
2x40
5, 10, 15, 20
1 (MIMO)
1 (MIMO)
2x30
2x30
5, 10, 15, 20
1 (MIMO)
1 (MIMO)
2x40
2x20
5, 10, 15, 20
1
1 (MIMO)
20
2x40
5, 10, 15, 20
1
1 (MIMO)
30
2x30
5, 10, 15, 20
1
1 (MIMO)
40
2x20
5, 10, 15, 20
2
1 (MIMO)
20
2x40
5, 10, 15, 20
2
1 (MIMO)
30
2x30
5, 10, 15, 20
2
1 (MIMO)
40
2x20
5, 10, 15, 20
3
1 (MIMO)
20
2x20
5, 10, 15, 20
4
1 (MIMO)
20
2x20
5, 10, 15, 20
1+1 (MIMO)
1 (MIMO)
Without MIMO: 20
2x20
5, 10, 15, 20
With MIMO: 2x20
Table 6-854 Output power for the RU3260 (LTE FDD, 2600 MHz) Working Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
LTE FDD
1 (MIMO)
2x40
5, 10, 15, 20
2 (MIMO)
2x20
5, 10, 15, 20
RF Specifications RF specifications of the AAU3910 include the equivalent isotropically radiated power (EIRP), equivalent isotropically receiver sensitivity (EIRS), and maximum power consumption.
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NOTE
l The UMTS receiver sensitivity, as recommended in 3GPP TS 25.104, is measured at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l Maximum Power Consumption is the power consumption when the base station load reaches 100%. It refers to the power consumption of the AAU3911 with no RF module connected.
AAU Configuration
Frequency Band (MHz)
EIRP
EIRS
Maximum Power Consumptio n (W)
2100 A (2T4R 2x60W) + 1800/2600 P (4 Ports)
2100
2 x 60W + 17.5dBi = 2 x 65.3dBm
UMTS: -126.1dBm-17dBi
385
2600 A (2T4R 2x40W) + 1800-2100 P (4 Ports)
2600
2 x 40W + 18dBi = 2 x 64dBm
LTE FDD: -106.5dBm-18dBi
325
2600 A (2T4R 2x40W) + 2100 A (2T4R 2x60W)
2600
2 x 40W + 18dBi = 2 x 64dBm
LTE FDD: -106.5dBm-18dBi
325
2100
2 x 60W + 17.5dBi = 2 x 65.3dBm
UMTS: -126.1dBm-17dBi
385
AWS A (2T4R 2x60W) + PCS P (4 Ports)
AWS
2 x 60W + 17.5dBi = 2 x 65.3dBm
UMTS: -126.1dBm-17.5dBi
385
LTE FDD: -106.5dBm-17.5dBi
Engineering Specifications Table 6-855 and Table 6-856 list the equipment specifications of an AAU3910. Table 6-855 Power and Dimensions of an AAU3910
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Type
Power Supply
Dimensions (H x W x D)
AAU3910
-48 V DC; voltage range: -36 V DC to -57 V DC
1,450mm x 320mm x 230mm
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Table 6-856 Weight of an AAU3910 AAU Configuration
Weight (kg)
2100 A (2T4R 2x60W) + 1800/2600 P (4 Ports)
39.5
2600 A (2T4R 2x40W) + 1800-2100 P (4 Ports)
39.5
2600 A (2T4R 2x40W) + 2100 A (2T4R 2x60W)
53.5
AWS A (2T4R 2x60W) + PCS P (4 Ports)
39.5
The following table lists the environmental specifications of an AAU3910. Table 6-857 Environmental specifications of an AAU3910 Item
Specification
Operating Temperature
l Without solar radiation: -40°C to + 55°C l With solar radiation: -40°C to + 50°C l Front: 660 N (Assume that the wind speed is 150 km/h.)
Wind load
l Side: 420 N (Assume that the wind speed is 150 km/h.) l Rear: 710 N (Assume that the wind speed is 150 km/h.) Max. operational wind speed
150 km/h
Survival wind speed
200 km/h
Relative Humidity
5% RH to 100% RH
Absolute Humidity
1 g/m3 to 30 g/m3
Air Pressure
70 kPa to 106 kPa
Storage Time
It is recommended that the device be installed and used within one year after its delivery because of the failure rate.
The following table lists the compliance standards for an AAU3910.
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Table 6-858 Compliance standards for an AAU3910 Item
Standard
Operating Environment
l 3GPP TS 25.141 l 3GPP TS 36.141 l 3GPP TS 37.141 l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Anti-Seismic Protection
ETSI300019-2-3
Protection Rating
IP55
Surge protection
l IEC 62305-1 Protection against lightning - Part 1: General principles l IEC 62305-3 Protection against lightning - Part 3: Physical damage to structures and life hazard l IEC 62305-4 Protection against lightning - Part 4: Electrical and electronic systems within structures l ITU-T K.35 Bonding configurations and earthing at remote electronic sites l ITU-T K.56 Protection of radio base stations against lightning discharges l ITU-T K.97 Lightning protection of distributed base stations l ETSI EN 300 253 Environmental Engineering(EE): Earthing and bonding configuration inside telecommunications centers
The following table lists the surge protection specifications of ports on an AAU3910. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-859 Surge protection specifications for ports on an AAU3910 Ports
Surge Protection Mode
Surge Protection Specifications
RU power port
Surge current
20 kA
Specifications of CPRI Ports The following table lists the specifications of CPRI ports on an AAU3910.
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Table 6-860 Specifications of CPRI ports on an AAU3910 RU Type
Quant ity of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Level
Maximum Distance from the BBU (km)
RU3832
2
1.25/2.5/4. 9
Star, chain, ring, and dual-star
UMTS:
UMTS: 40 LTE FDD/UL: The maximum distances of the RRUs from the BBU vary with the types of BBP in LTE mode as follows: l When the LBBPc, LBBPd1, or UBBPd3 is configured: 20 l When the LBBPd2 or UBBPd4 is configured: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configured: – Cell quantity ≤ 3: 40 – Cell quantity ≥ 4: 20
l When the CPRI data rate is 1.25 Gbit/s: 4 l When the CPRI data rate is 2.5 Gbit/s or 4.9 Gbit/s: 8 UL CPRI MUX: 4
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RU Type
Quant ity of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Level
RU3260
2
1.25/2.5/4. 9
Star, chain, and ring topologies
LTE FDD:
Maximum Distance from the BBU (km)
l When the rate at the CPRI port is 1.25 Gbit/s: Cascading is not supported. l When the rate at the CPRI port is 2.5 Gbit/s: – Three levels are supported if the cell bandwidth is less than or equal to 5 MHz. – Two levels are supported if the cell bandwidth is 10 MHz. – Cascading is not recommend ed if the cell bandwidth is greater than or equal to 15 MHz. l When the rate at the CPRI port is 4.9 Gbit/s: – Four levels are supported if the cell bandwidth
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RU Type
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Quant ity of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Level
Maximum Distance from the BBU (km)
is less than or equal to 10 MHz. – Two levels are supported if the cell bandwidth is greater than or equal to 15 MHz.
Antenna Capability The following table lists the antenna capability of an AAU3910. Table 6-861 Antenna capability of an AAU3910 Type
TMA Support
RET Antenna Support
AAU3910
Supported by passive antennas
AISG2.0
6.4.3 AAU3911 Technical Specifications The AAU3911 is an active antenna unit that incorporates the functions of RF modules and antennas.
AAU Configuration Configured with different types of AUs and RUs, the AAU3911 can support different configuration scenarios. Table 6-862 provides the configuration scenarios of the AAU3911.
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NOTE
l In xA+yP in the AAU Configuration column, A indicates active modules and P indicates the passive modules (not installed in the AAU3911 slots). x indicates the frequency band of the active unit, and y indicates the frequency band of the passive unit. For example, 2100 A+700-900 P means that the frequency band of the active module is 2100 MHz and that of the passive unit ranges from 700 MHz to 900 MHz. l In the RU Configuration column, UP indicates that the RU is installed in the upper slot of the AAU and DOWN indicates that the RU is installed in the lower slot of the AAU. l In the AU Specifications column, UP indicates the frequency band supported by the antenna port at the rear of the antenna and DOWN indicates the frequency band supported by the antenna port at the bottom of the antenna. l The Combiner Configuration column indicates whether a combiner is configured and, if so, the frequency band specifications of the combiner. For details about a combiner, see AAU3911 Hardware Description. l In scenarios where a combiner is configured, the combiner loss must be considered when a passive module is connected to the combiner. Therefore, the antenna gain of the passive module equals the antenna gain minus 0.5 dB. For example, when the configuration 2100 A (2T4R 2x60 W) + 1800 P (4 Ports) + 700-900 P (2 Ports) is used, the antenna gain of the RF module is calculated as follows when the combiner is connected to an RF module working in the 1800 MHz frequency band: 17 dBi - 0.5 dB = 16.5 dBi.
Table 6-862 AAU3911 configurations
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AAU Configuration
RU Configuration
AU Specifications
Combiner Configuration
2600 A (2T4R 2x40 W) + 1800-2100 P (4 Ports) + 700-900 P (2 Ports)
RU3260 2600 MHz 2T4R, 2x40 W (UP)
None
AWS A (2T4R 2x60 W) + 700-900 P (2 Ports)
RU3832 AWS 2T4R, 2x60 W (DOWN)
AU11Ia 2500-2690 MHz (UP), 1710-2170 MHz/690-960 MHz (DOWN)
2600 A (2T4R 2x40 W) + AWS A (2T4R 2x60 W) + 700-900 P (2 Ports)
RU3260 2600 MHz 2T4R, 2x40 W (UP)
AWS A (2T4R 2x60 W) + PCS P (4 Ports) + 700-900 P (2 Ports)
RU3832 AWS 2T4R, 2x60 W (UP)
AWS/PCS Combiner 4 path (DOWN)
2100 A (2T4R 2x60 W) + 1800 P (4 Ports) + 700-900 P (2 Ports)
RU3832 2100 MHz 2T4R, 2x60 W (UP)
AU11Ib 1710-2690 MHz (UP), 690-960 MHz (DOWN)
1800 A (2T4R 2x60 W) + 2100 P (2 Ports) + 2600 P (4 Ports) + 700-900 P (2 Ports)
RU3952m 1800 MHz 2T4R, 2x60 W (UP)
AU11Ic 1710-2170 MHz (UP), 2500-2690 MHz/690-960 MHz (DOWN)
1710-1880 MHz/ 1920-2170 MHz Combiner 2 path (DOWN)
RU3832 AWS 2T4R, 2x60 W (DOWN)
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1920-2170 MHz/ 1710-1880 MHz Combiner 4 path (DOWN)
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AAU Configuration
RU Configuration
AU Specifications
Combiner Configuration
2100 A (2T4R 2x60 W) + 1800 P (2 Ports) + 2600 P (4 Ports) + 700-900 P (2 Ports)
RU3952m 2100 MHz 2T4R, 2x60 W (UP)
1920-2170 MHz/ 1710-1880 MHz Combiner 2 path (DOWN)
1800 A (2T4R 2x60 W) + 2100 A (2T4R 2x60 W) + 2600 P (4 Ports) + 700-900 P (2 Ports)
RU3952m 1800 MHz 2T2R + 2100 MHz 2R, 2x60W(UP)
None
RU3952m 2100 MHz 2T2R + 1800 MHz 2R, 2x60W(DOWN)
Antenna Specifications Table 6-863 provides the electrical specifications of AU11Ia 2500-2690 MHz (UP) and 1710-2170 MHz/690-960 MHz (DOWN). Table 6-863 Electrical specifications of AU11Ia 2500-2690 MHz (UP) and 1710-2170 MHz/ 690-960 MHz (DOWN) Item
Specifications
Frequency range (MHz)
690-8 20
790-8 62
824-8 94
Polarization
880-9 60
17101880
19202170
25002690
+45°, -45°
Electrical downtilt (°) Gain (dBi)
0 to 10, continuously adjustable 15
Side lobe suppression for first side lobe above main beam (Typ.) (dB)
15.5
15.5
16
17
17
> 17
> 17
Horizontal 3 dB beam width (°)
65
63
Vertical 3 dB beam width (°)
9.5
6.4
VSWR
17.5
< 1.5
Isolation (dB)
Intra-system: ≥ 28 Inter-system: ≥ 28 (Typ.30)
Issue 14 (2016-01-30)
Front-to-rear ratio (dB)
> 25
> 25
Max. Input Power Per Port (W)
120
80
Max. Total Input Power (W)
160
360
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Item
Specifications
Intermodulation IM3 (dBc)
≤ -153 (2x43 dBm carriers)
Impedance (Ω)
50
Grounding
DC grounding
Table 6-864 provides the electrical specifications of AU11Ib 1710-2690 MHz (UP) and 690-960 MHz (DOWN). Table 6-864 Electrical specifications of AU11Ib 1710-2690 MHz (UP) and 690-960 MHz (DOWN) Specifications
Item Frequency range (MHz)
690-8 20
790-8 62
824-8 94
Polarization
880-9 60
17101880
19202170
25002690
+45°, -45°
Electrical downtilt (°) Gain (dBi)
0 to 10, continuously adjustable 15
Side lobe suppression for first side lobe above main beam (Typ.) (dB)
15.5
15.5
16
17
17.5
> 17
> 17
Horizontal 3 dB beam width (°)
65
63
Vertical 3 dB beam width (°)
9.5
6.4
VSWR
18
< 1.5
Isolation (dB)
Intra-system: ≥ 28 Inter-system: ≥ 30
Front-to-rear ratio (dB)
> 25
> 25
Max. Input Power Per Port (W)
120
80
Max. Total Input Power (W)
160
320
Intermodulation IM3 (dBc)
≤ -153 (2x43 dBm carriers)
Impedance (Ω) Grounding
50 DC grounding
Table 6-865 provides the electrical specifications of AU11Ic 1710-2170 MHz (UP) and 2500-2690 MHz/690-960 MHz (DOWN). Issue 14 (2016-01-30)
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Table 6-865 Electrical specifications of the AU11Ic 1710-2170 MHz (UP) and 2500-2690 MHz/690-960 MHz (DOWN) Item
Specifications
Frequency range (MHz)
690-8 20
790-8 62
824-8 94
Polarization
880-9 60
17101880
19202170
25002690
+45°, -45°
Electrical downtilt (°) Gain (dBi)
0 to 10, continuously adjustable 15
Side lobe suppression for first side lobe above main beam (Typ.) (dB)
15.5
15.5
16
17
17
> 17
> 17
Horizontal 3 dB beam width (°)
65
63
Vertical 3 dB beam width (°)
9.5
6.4
VSWR
17.5
< 1.5
Isolation (dB)
Intra-system: ≥ 28 Inter-system: ≥ 28 (Typ.30)
Front-to-rear ratio (dB)
> 25
> 25
Max. Input Power Per Port (W)
120
80
Max. Total Input Power (W)
160
360
Intermodulation IM3 (dBc)
≤ -153 (2x43 dBm carriers)
Impedance (Ω)
50
Grounding
DC grounding
RU Specifications The AAU3911 supports RU3832, RU3260, RU3952m, and RU3832m. RU specifications include the supported frequency band, RX and TX channels, capacity, and output power. Table 6-866 Modes and frequency bands supported by RUs
Issue 14 (2016-01-30)
RU Type
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
Working Mode
RU3832
2100
1920-1980
2110-2170
UMTS
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RU Type
6 Product Specifications
Frequency Band (MHz)
RX Frequency Band (MHz)
TX Frequency Band (MHz)
Working Mode
AWS
1710-1755
2110-2155
UMTS, LTE FDD, UL
RU3260
2600
2500-2570
2620-2690
LTE FDD
RU3952m
1800
1710-1785
1805-1880
GSM, LTE FDD, GL
2100
1920-1980
2110-2170
UMTS, LTE FDD, UL
NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W.
Table 6-867 RX/TX channel, capacity, and output power of an RU RU Type
TX/RX Channe l
Capacity
Output Power
RU3832
2T4R
UMTS: 6 carriers without MIMO or 4 carriers with MIMO
The RU3832 supports a maximum of 2x60 W. The typical power configurations are as follows:
LTE FDD: 2 carriers with bandwidth of 5/10/15/20 MHz
l RU3832 output power (UMTS, 2100 MHz/AWS) l RU3832 output power (LTE FDD, AWS) l RU3832 output power (UL MSR, AWS) For typical PA configurations, see Typical Power Configuration of the AAU3911 in 3900 Series Base Station Initial Configuration Guide.
RU3260
2T4R
LTE FDD: 2 carriers with bandwidth of 5/10/15/20 MHz
The RU3260 supports a maximum of 2x40 W. The typical configurations are as follows: RU3260 (LTE FDD, 2600 MHz) For typical PA configurations, see Typical Power Configuration of the AAU3911 in 3900 Series Base Station Initial Configuration Guide.
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RU Type
TX/RX Channe l
Capacity
Output Power
RU3952m
2T4R
GSM: 8 TRXs
The RU3952m supports a maximum of 2x60 W. The typical power configurations are as follows:
LTE FDD: 2 carriers with bandwidth of 5/10/15/20 MHz UMTS: 6 carriers without MIMO or 4 carriers with MIMO
l RU3952m output power (GSM, 1800 MHz) l RU3952m output power (LTE FDD, 1800 MHz) l RU3952m output power (GL MSR, 1800 MHz) l RU3952m output power (UMTS, 2100 MHz) l RU3952m output power (LTE FDD, 2100 MHz) l RU3952m output power (UL MSR, 2100 MHz) For typical PA configurations, see Typical Power Configuration of the AAU3911 in 3900 Series Base Station Initial Configuration Guide.
NOTE
l If the RF module is placed at an altitude of 3500 to 4500 meters, its power reduces by 1 dB. If the RF module is placed at an altitude of 4500 to 6000 meters, its power reduces by 2 dB. l The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-868 Output power for the RU3832 (UMTS, 2100 MHz/AWS)
Issue 14 (2016-01-30)
Working Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
60
2
60
3
30
4
30
5
20
6
20
1 (MIMO)
2x40
2 (MIMO)
2x30
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Working Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
3 (MIMO)
2x20
4 (MIMO)
2x15
Table 6-869 Output power for the RU3832 (LTE FDD, AWS) Working Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
LTE FDD
1 (MIMO)
2x20
5
1 (MIMO)
2x40
10
1 (MIMO)
2x60
5, 10, 15, 20
2 (MIMO)
2x20
5
2 (MIMO)
2x30
5, 10
2 (MIMO)
Carrier 1: 2x20
Carrier 1: 5
Carrier 2: 2x40
Carrier 2: 10
Carrier 1: 2x15
Carrier 1: 5
Carrier 2: 2x45
Carrier 2: 15
2 (MIMO)
Table 6-870 Output power for the RU3832 (UL MSR, AWS)
Issue 14 (2016-01-30)
Working Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
UMTS + LTE FDD
1 (MIMO)
1 (MIMO)
2x20
2x40
5, 10, 15, 20
1 (MIMO)
1 (MIMO)
2x30
2x30
5, 10, 15, 20
1 (MIMO)
1 (MIMO)
2x40
2x20
5, 10, 15, 20
1
1 (MIMO)
20
2x40
5, 10, 15, 20
1
1 (MIMO)
30
2x30
5, 10, 15, 20
1
1 (MIMO)
40
2x20
5, 10, 15, 20
2
1 (MIMO)
20
2x40
5, 10, 15, 20
2
1 (MIMO)
30
2x30
5, 10, 15, 20
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Working Mode
6 Product Specifications
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
2
1 (MIMO)
40
2x20
5, 10, 15, 20
3
1 (MIMO)
20
2x20
5, 10, 15, 20
4
1 (MIMO)
20
2x20
5, 10, 15, 20
1+1 (MIMO)
1 (MIMO)
Without MIMO: 20
2x20
5, 10, 15, 20
With MIMO: 2x20
Table 6-871 Output power for the RU3260 (LTE FDD, 2600 MHz) Working Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
LTE FDD
1 (MIMO)
2x40
5, 10, 15, 20
2 (MIMO)
2x20
5, 10, 15, 20
Table 6-872 Output power forthe RU3952m(1800MHz) (GSM, 1800 MHz)
Issue 14 (2016-01-30)
Working Mode
Total Number of GSM Carriers
Output Power per GSM Carrier (W)
Output Power per GSM Carrier (W) When Dynamic Power Sharing Is Used
GSM
1
60
60
2
60
60
3
30
30
4
30
30
5
20
25
6
20
25
7
15
20
8
15
20
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Table 6-873 Output power for the RU3952m(1800MHz) (LTE FDD, 1800 MHz) Working Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
LTE FDD
1 (MIMO)
2x60
5, 10, 15, 20
1 (MIMO)
2x40
1.4, 3
2 (MIMO)
2x30
1.4, 3, 5, 10, 15, 20
2 (MIMO)
l Carrier 1: 2x20
1.4, 3, 5, 10, 15, 20
l Carrier 2: 2x40
Table 6-874 Output power for the RU3952m(1800MHz) (GL MSR, 1800 MHz)
Issue 14 (2016-01-30)
Working Mode
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
GSM + LTE FDD
1
1 (MIMO)
40
2x20
1.4, 3, 5, 10, 15, 20
1
1 (MIMO)
30
2x30
1.4, 3, 5, 10, 15, 20
1
1 (MIMO)
20
2x40
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
40
2x20
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
30
2x30
1.4, 3, 5, 10, 15, 20
2
1 (MIMO)
20
2x40
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
20
2x20
1.4, 3, 5, 10, 15, 20
3
1 (MIMO)
15
2x30
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
20
2x20
1.4, 3, 5, 10, 15, 20
4
1 (MIMO)
15
2x30
1.4, 3, 5, 10, 15, 20
5
1 (MIMO)
12
2x20
1.4, 3, 5, 10, 15, 20
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Working Mode
6 Product Specifications
Total Number of GSM Carriers
Total Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
6
1 (MIMO)
12
2x20
1.4, 3, 5, 10, 15, 20
6
1 (MIMO)
15
2 x 15
5, 10, 15, 20
1
2 (MIMO)
40
2x20
1.4, 3, 5, 10, 15, 20
2
2 (MIMO)
40
2x20
1.4, 3, 5, 10, 15, 20
3
2 (MIMO)
20
2x20
1.4, 3, 5, 10, 15, 20
4
2 (MIMO)
20
2x20
1.4, 3, 5, 10, 15, 20
Table 6-875 Output power for the RU3952m(2100MHz) (UMTS, 2100MHz)
Issue 14 (2016-01-30)
Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
60
2
60
3
30
4
30
5
20
6
20
1 (MIMO)
2x40
2 (MIMO)
2x30
3 (MIMO)
2x20
4 (MIMO)
2x15
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Table 6-876 Output power for the RU3952m(2100MHz) (LTE FDD, 2100 MHz) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
LTE FDD
1 (MIMO)
2x60
5, 10, 15, 20
2 (MIMO)
2x30
5, 10, 15, 20
2 (MIMO)
l Carrier 1: 2x20
5, 10, 15, 20
l Carrier 2: 2x40
Table 6-877 Output power for the RU3952m(2100MHz) (UL MSR, 2100 MHz) Mode
Total Number of UMTS Carriers
Total Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
UMTS + LTE FDD
1
1 (MIMO)
20
2x40
5, 10, 15, 20
1
1 (MIMO)
40
2x20
5, 10, 15, 20
2
1 (MIMO)
20
2x40
5, 10, 15, 20
2
1 (MIMO)
40
2x20
5, 10, 15, 20
3
1 (MIMO)
20
2x20
5, 10, 15, 20
4
1 (MIMO)
20
2x20
5, 10, 15, 20
1 (MIMO)
1 (MIMO)
2x20
2x40
5, 10, 15, 20
1 (MIMO)
1 (MIMO)
2x40
2x20
5, 10, 15, 20
1
2 (MIMO)
20
2x20
5, 10, 15, 20
2
2 (MIMO)
20
2x20
5, 10, 15, 20
RF Specifications RF specifications of the AAU3911 include the equivalent isotropically radiated power (EIRP), equivalent isotropically receiver sensitivity (EIRS), and maximum power consumption.
Issue 14 (2016-01-30)
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NOTE
l The GSM receiver sensitivity is measured, as recommended in 3GPP TS 51.021, over the central band at the antenna connector on condition that the channel rate reaches 13 kbit/s and the bit error rate (BER) does not exceed 2%. The central band is the 80% of the full band. l The UMTS receiver sensitivity, as recommended in 3GPP TS 25.104, is measured at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l Maximum Power Consumption is the power consumption when the base station load reaches 100%. It refers to the power consumption of the AAU3911 with no RF module connected.
AAU Configuration
Frequency Band (MHz)
EIRP
EIRS
Maximum Power Consumptio n (W)
2600 A (2T4R 2x40 W) + 1800-2100 P (4 Ports) + 700-900 P (2 Ports)
2600
2x40 W + 17.5 dBi = 2x63.5 dBm
LTE FDD: -106.5 dBm-17.5 dBi
330
AWS A (2T4R 2x60 W) + 700-900 P (2 Ports)
AWS
2x60 W + 17 dBi = 2x64.8 dBm
UMTS: -126.1 dBm-17 dBi
385
2600 A (2T4R 2x40 W) + AWS A (2T4R 2x60 W) + 700-900 P (2 Ports)
2600
2x40 W + 17.5 dBi = 2x63.5 dBm
LTE FDD: -106.5 dBm-17.5 dBi
330
AWS
2x60 W + 17 dBi = 2x64.8 dBm
UMTS: -126.1 dBm-17 dBi
385
LTE FDD: -106.5 dBm-17 dBi
LTE FDD: -106.5 dBm-17 dBi
Issue 14 (2016-01-30)
AWS A (2T4R 2x60 W) + PCS P (4 Ports) + 700-900 P (2 Ports)
AWS
2100 A (2T4R 2x60 W) + 1800 P (4 Ports) + 700-900 P (2 Ports)
2100
2x60 W + 17 dBi = 2x64.8 dBm
UMTS: -126.1 dBm-16.5 dBi
385
LTE FDD: -106.5 dBm-16.5 dBi 2x60 W + 17 dBi = 2x64.8 dBm
UMTS: -126.1 dBm-17 dBi
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3900 Series Base Station Technical Description
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AAU Configuration
Frequency Band (MHz)
EIRP
EIRS
Maximum Power Consumptio n (W)
1800 A (2T4R 2x60 W) + 2100 P (4 Ports) + 2600 P (4 Ports) + 700-900 P (2 Ports)
1800
2x60 W + 17 dBi = 2x64.8 dBm
GSM: -113.9 dBm-17 dBi
420
2100 A (2T4R 2x60 W) + 1800 P (2 Ports) + 2600 P (4 Ports) + 700-900 P (2 Ports)
2100
1800 A (2T4R 2x60 W) + 2100 A (2T4R 2x60 W) + 2600 P (4 Ports) + 700-900 P (2 Ports)
1800
LTE FDD: -106.8 dBm-17 dBi
2x60 W + 17 dBi = 2x64.8 dBm
UMTS: -126.0 dBm-17 dBi
400
LTE FDD: -106.8 dBm-17 dBi
2x60 W + 17 dBi = 2x64.8 dBm
GSM: -113.9 dBm-17 dBi
420
LTE FDD: -106.8 dBm-17 dBi 2100
2x60 W + 17 dBi = 2x64.8 dBm
UMTS: -126.0 dBm-17 dBi
400
LTE FDD: -106.8 dBm-17 dBi
Engineering Specifications Table 6-878 and Table 6-879 list the equipment specifications of an AAU3911. Table 6-878 Power and Dimensions of an AAU3911 Type
Input Power
Dimensions (H x W x D)
AAU3911
–48 V DC; voltage range: –36 V DC to –57 V DC
2020 mm x 359 mm x 290 mm
Table 6-879 Weight of an AAU3911
Issue 14 (2016-01-30)
AAU Configuration
Weight (kg)
2600 A (2T4R 2x40 W) + 1800-2100 P (4 Ports) + 700-900 P (2 Ports)
49
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AAU Configuration
Weight (kg)
AWS A (2T4R 2x60 W) + 700-900 P (2 Ports)
49
2600 A (2T4R 2x40 W) + AWS A (2T4R 2x60 W) + 700-900 P (2 Ports)
64
AWS A (2T4R 2x60 W) + PCS P (4 Ports) + 700-900 P (2 Ports)
54
2100 A (2T4R 2x60 W) + 1800 P (4 Ports) + 700-900 P (2 Ports)
54
1800 A (2T4R 2x60 W) + 2100 P (4 Ports) + 2600 P (4 Ports) + 700-900 P (2 Ports)
57
2100 A (2T4R 2x60 W) + 1800 P (2 Ports) + 2600 P (4 Ports) + 700-900 P (2 Ports)
57
1800 A (2T4R 2x60 W) + 2100 A (2T4R 2x60 W) + 2600 P (4 Ports) + 700-900 P (2 Ports)
65
The following table lists the environmental specifications of an AAU3911. Table 6-880 Environmental specifications of an AAU3911 Item
Specifications
Operating temperature
l -40°C to +55°C (without solar radiation) l -40°C to +50°C (with solar radiation) l Front: 990 N (Assume that the wind speed is 150 km/h.)
Wind load
l Side: 740 N (Assume that the wind speed is 150 km/h.) l Rear: 965 N (Assume that the wind speed is 150 km/h.)
Issue 14 (2016-01-30)
Max. operational wind speed
150 km/h
Survival wind speed
200 km/h
Relative humidity
5% RH to 100% RH
Absolute humidity
1 g/m3-30 g/m3
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Item
Specifications
Atmospheric pressure
70 kPa to 106 kPa
Storage time
It is recommended that the device be installed and used within one year after its delivery when the failure rate is considered.
The following table lists the compliance standards for an AAU3911. Table 6-881 Compliance standards for an AAU3911 Item
Standard
Operating environment
l 3GPP TS 45.005 l 3GPP TS 25.141 l 3GPP TS 36.141 l 3GPP TS 37.141 l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Shockproof protection
ETSI300019-2-3
Protection class
IP55
Surge protection
l IEC 62305-1 Protection against lightning - Part 1: General principles l IEC 62305-3 Protection against lightning - Part 3: Physical damage to structures and life hazard l IEC 62305-4 Protection against lightning - Part 4: Electrical and electronic systems within structures l ITU-T K.35 Bonding configurations and earthing at remote electronic sites l ITU-T K.56 Protection of radio base stations against lightning discharges l ITU-T K.97 Lightning protection of distributed base stations l ETSI EN 300 253 Environmental Engineering(EE): Earthing and bonding configuration inside telecommunications centers
The following table describes the surge protection specifications for ports on an AAU3911. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
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Table 6-882 Surge protection specifications for ports on an AAU3911 Port
Surge Protection Mode
Surge Protection Specifications
RU power port
Surge current
20 kA
CPRI Specifications The following table lists the specifications of CPRI ports on an AAU3911. Table 6-883 Specifications of CPRI ports on an AAU3911 RU Type
Quant ity of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Level
Maximum Distance from the BBU (km)
RU3832
2
1.25/2.5/4. 9
Star, chain, ring, and dual-star
UMTS:
UMTS/GU: 40 LTE FDD/GL/UL: The maximum distances of the RRUs from the BBU vary with the types of BBP in LTE mode as follows: l When the LBBPc, LBBPd1, or UBBPd3 is configured: 20 l When the LBBPd2 or UBBPd4 is configured: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configured: – Cell quantity ≤ 3: 40
l When the CPRI data rate is 1.25 Gbit/s: 4 l When the CPRI data rate is 2.5 Gbit/s or 4.9 Gbit/s: 8 UL CPRI MUX: 4
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RU Type
Quant ity of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Level
RU3260
2
1.25/2.5/4. 9
Star, chain, and ring topologies
LTE FDD: l When the rate at the CPRI port is 1.25 Gbit/s: Cascading is not supported.
Maximum Distance from the BBU (km) – Cell quantity ≥ 4: 20
l When the rate at the CPRI port is 2.5 Gbit/s: – Three levels are supported if the cell bandwidth is less than or equal to 5 MHz. – Two levels are supported if the cell bandwidth is 10 MHz. – Cascading is not recommend ed if the cell bandwidth is greater than or equal to 15 MHz. l When the rate at the CPRI port is 4.9 Gbit/s: – Four levels are supported if the cell bandwidth
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RU Type
6 Product Specifications
Quant ity of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Level
Maximum Distance from the BBU (km)
is less than or equal to 10 MHz. – Two levels are supported if the cell bandwidth is greater than or equal to 15 MHz. RU3952 m
2
1.25/2.5/4. 9/9.8
Star, chain, and dual-star
GL CPRI MUX: 4
Antenna Capability The following table lists the antenna capability of an AAU3911. Table 6-884 Antenna capability of an AAU3911 Type
TMA Support
RET Antenna Support
AAU3911
Supported by passive antennas
AISG2.0
6.4.4 AAU3920 Technical Specifications The AAU3920 is an active antenna unit that integrates the functions of RF modules and antennas.
Antenna Specifications The AAU3920 has two built-in antennas. Table 6-885 provides the antenna electrical properties of the AAU3920. Table 6-885 Antenna electrical specifications of the AAU3920 Item
Specifications
Frequency range (MHz)
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2 x (1710 to 2690) 1710 to 1880
1920 to 2170
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3900 Series Base Station Technical Description
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Item
Specifications
Polarization
+45°, -45°
Electrical downtilt (°) Gain (dBi)
Side lobe suppression for first side lobe above main beam (Typ.)(dB)
0 to 12, continuously adjustable 0°
6°
12°
0°
6°
12°
0°
6°
12°
17.1
17.3
17
17.7
17.9
17.5
18
18.2
17.8
0°
6°
12°
0°
6°
12°
0°
6°
12°
18
17
16
18
17
16
18
17
16
Horizontal 3 dB beam width (°)
66
64
60
Vertical 3 dB beam width (°)
6.5
6
4.5
Isolation between ports (dB)
Intra-system: ≥30
Front to back ratio (dB)
Typ.28
Cross polarization ratio (dB)
0°: Typ.20
Inter-system: ≥30
±60°: Typ.10
Max. total input power (W)
NA
160 (the ambient temperature is 50°C)
Impedance (Ω)
50
Grounding
DC ground
RF Specifications RF specifications of the AAU3920 include the frequency bands and modes supported by RUs, the equivalent isotropically radiated power (EIRP), capacity, equivalent isotropically receiver sensitivity (EIRS), output power, and maximum power consumption. The following table lists the modes and frequency bands supported by an AAU3920. Table 6-886 Supported Modes and Frequency Bands
Issue 14 (2016-01-30)
Type
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
Mode
AAU3920
1800
1710 to 1785
1805 to 1880
LTE FDD, GL
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Type
6 Product Specifications
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
Mode
2100
1920 to 1980
2110 to 2170
UMTS
Table 6-887 AAU3920 EIRP Type
EIRP
AAU3920
2x80 W + 17.5 dBi = 2x66.5 dBm
NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l The GSM receiver sensitivity, as recommended in 3GPP TS 51.021, is measured at the antenna connector on condition that the channel rate is 13 kbit/s and the Bit Error Rate (BER) is not higher than 2%. l The UMTS receiver sensitivity, as recommended in 3GPP TS 25.104, is measured at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard. l Typical power consumption is measured when the base station load reaches 50% and maximum power consumption is measured when the base station load reaches 100%. The Power Consumption column provides the power consumption of the AAU3920 with no RF module connected.
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Table 6-888 RX/TX channel, capacity, EIRS, output power, and power consumption of the AAU3920 Typ e
TX/ RX Ch ann el
Capacity
EIRS
Output power
Power Consump tion
AAU 3920
2T4 R
GSM: 8 carriers
GSM (1800 MHz): -114.0dBm - 17.3dBi
UMTS:
UMTS (2100MHz): -126.1dBm - 17.9dBi
The AAU3920 supports a maximum of 2x80 W power configuration. The typical configurations are as follows:
Maximum power consumpti on: 600 W
l Without MIMO: 8 carriers l With MIMO: 4 carriers LTE FDD: 2 carriers, with bandwidth of 5/10/15/20 MHz
LTE (1800 MHz): -106.6dBm - 17.3dBi
l Output power for the AAU3920 (UMTS, 2100 MHz) l Output power for the AAU3920 (LTE FDD, 1800 MHz) l Output power for the AAU3920 (GL MSR, 1800 MHz) l Output power for the AAU3920 (UL, UMTS 2100 MHz + LTE FDD 1800 MHz) l Output power for the AAU3920 (GUL, GL MSR 1800 MHz + UMTS 2100 MHz) For typical PA configurations, see Typical Power Configuration for AAU3920 in 3900 Series Base Station
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Typ e
6 Product Specifications
TX/ RX Ch ann el
Capacity
EIRS
Output power
Power Consump tion
Initial Configuration Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-889 Output power for the AAU3920 (UMTS, 2100 MHz) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
60
2
60
3
40
4
40
5
25
6
25
7
20
8
20
1 (MIMO)
2x60
2 (MIMO)
2x40
3 (MIMO)
2x25
4 (MIMO)
2x20
Table 6-890 Output power for the AAU3920 (LTE FDD, 1800 MHz)
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Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
LTE FDD
1 (MIMO)
2x60
5, 10, 15, 20
2 (MIMO)
2x40
5, 10, 15, 20
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Table 6-891 Output power for the AAU3920 (GL MSR, 1800 MHz) Mode
Number of GSM Carriers
Number of LTE FDD Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
GSM+LTE FDD
1
1 (MIMO)
40
2x40
5, 10, 15, 20
2
1 (MIMO)
40
2x40
5, 10, 15, 20
3
1 (MIMO)
20
2x40
5, 10, 15, 20
4
1 (MIMO)
20
2x40
5, 10, 15, 20
5
1 (MIMO)
20
2x20
5, 10, 15, 20
6
1 (MIMO)
20
2x20
5, 10, 15, 20
7
1 (MIMO)
15
2x20
5, 10, 15, 20
8
1 (MIMO)
15
2x20
5, 10, 15, 20
2
2 (MIMO)
20
2x20
5, 10, 15, 20
4
2 (MIMO)
20
2x20
5, 10, 15, 20
Table 6-892 Output power for the AAU3920 (UL, UMTS 2100 MHz + LTE FDD 1800 MHz)
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Mode
Number of UMTS Carriers
Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
UMTS 2100 MHz + LTE FDD 1 1800 MHz
1
1 (MIMO)
40
2x40
5, 10, 15, 20
2
1 (MIMO)
40
2x40
5, 10, 15, 20
3
1 (MIMO)
20
2x40
5, 10, 15, 20
4
1 (MIMO)
20
2x40
5, 10, 15, 20
1
2 (MIMO)
20
2x30
5, 10, 15, 20
2
2 (MIMO)
20
2x30
5, 10, 15, 20
3
2 (MIMO)
20
2x20
5, 10, 15, 20
4
2 (MIMO)
20
2x20
5, 10, 15, 20
1 (MIMO)
1 (MIMO)
2x40
2x40
5, 10, 15, 20
1 (MIMO)
2 (MIMO)
2x40
2x20
5, 10, 15, 20
2 (MIMO)
2 (MIMO)
2x20
2x20
5, 10, 15, 20
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Mode
Number of UMTS Carriers
Number of LTE FDD Carriers
Output Power per UMTS Carrier (W)
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
3 (MIMO)
1 (MIMO)
2x20
2x20
5, 10, 15, 20
Table 6-893 Output power for the AAU3920 (GUL, GL MSR 1800 MHz + UMTS 2100 MHz)
Issue 14 (2016-01-30)
Mode
Numbe r of GSM Carriers
Numb er of LTE FDD Carrier s
Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Output Power per UMTS Carrier (W)
Bandwi dth Suppor ted by LTE FDD (MHz)
GL 1800 MHz + UMTS 2100 MHz
1
1 (MIMO )
1
20
2x20
40
5, 10, 15, 20
2
1 (MIMO )
2
20
2x20
40
5, 10, 15, 20
3
1 (MIMO )
1
20
2x40
20
5, 10, 15, 20
3
1 (MIMO )
2
20
2x20
20
5, 10, 15, 20
3
1 (MIMO )
3
20
2x20
20
5, 10, 15, 20
3
1 (MIMO )
3
20
2x20
20
5, 10, 15, 20
4
1 (MIMO )
2
20
2x20
20
5, 10, 15, 20
6
1 (MIMO )
2
13
2x20
20
5, 10, 15, 20
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Mode
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Numbe r of GSM Carriers
Numb er of LTE FDD Carrier s
Number of UMTS Carriers
Output Power per GSM Carrier (W)
Output Power per LTE FDD Carrier (W)
Output Power per UMTS Carrier (W)
Bandwi dth Suppor ted by LTE FDD (MHz)
4
1 (MIMO )
1 (MIMO)
20
2x20
2x20
5, 10, 15, 20
4
1 (MIMO )
2 (MIMO)
20
2x20
2x10
5, 10, 15, 20
5
1 (MIMO )
1 (MIMO)
13
2x20
2x20
5, 10, 15, 20
6
1 (MIMO )
1 (MIMO)
13
2x20
2x20
5, 10, 15, 20
4
1 (MIMO )
3 (MIMO)
15
2x20
2x10
5, 10, 15, 20
Engineering Specifications The following table lists the equipment specifications of an AAU3920. Table 6-894 Equipment specifications of an AAU3920 Type
Power
Dimensions (H x W x D)
Weight (kg)
AAU3920
-48 V DC; voltage range: -36 V DC to -57 V DC
1450 mm x 320 mm x 188 mm
35
The following table lists the environmental specifications of an AAU3920. Table 6-895 Environmental specifications of an AAU3920
Issue 14 (2016-01-30)
Item
Specifications
Operating temperature
-40°C to +55°C (without solar radiation)
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Item
Specifications
Wind load
l Front: 710 N (Assume that the wind speed is 150 km/h.) l Side: 400 N (Assume that the wind speed is 150 km/h.) l Rear: 830 N (Assume that the wind speed is 150 km/h.)
Max. operational wind speed
150 km/h
Survival wind speed
200 km/h
Relative humidity
5% RH to 100% RH
Absolute humidity
1 g/m3 to 30 g/m3
Atmospheric pressure
70 kPa to 106 kPa
Storage time
It is recommended that the device be installed and used within one year after its delivery due to the failure rate.
The following table lists the compliance standards for an AAU3920. Table 6-896 Compliance standards for an AAU3920 Type
Operating Environment
Operating Environment
l 3GPP TS 45.005 l 3GPP TS 25.141 l 3GPP TS 36.141 l 3GPP TS 37.141 l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
Issue 14 (2016-01-30)
Anti-Seismic Protection
l ETS300-2-3 4M5
Protection Rating
IP55
l YD5083 from the Ministry of Posts and Telecommunications
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Type
Operating Environment
Surge protection
l IEC 62305-1 Protection against lightning -Part 1: General principles l IEC 62305-4 Protection against lightning -Part 4: Electrical and electronic systems within structures l ITU-T K.21 Resistibility of telecommunication equipment installed in customer premises to over-voltages and overcurrents l ITU-T K.44 Resistibility tests for telecommunication equipment exposed to over-voltages and over-currents –Basic Recommendation l ITU-T K.56 Protection of radio base stations against lightning discharges l ETSI EN 300 253 Environmental Engineering(EE); Earthing and bonding configuration inside telecommunications centers
The following table describes the surge protection specifications for ports on an AAU3920. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-897 Surge protection specifications for ports on an AAU3920 Ports
Surge Protection Mode
Surge Protection Specifications
RU power port
Surge current
20 kA
CPRI Specifications The following table lists the specifications of CPRI ports on an AAU3920.
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Table 6-898 Specifications of CPRI ports on an AAU3920 Type
Quant ity of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Level
Maximum Distance from the BBU (km)
AAU392 0
2
1.25/2.5/4. 9/9.8
Star, chain, and dual-star
CPRI MUX:
The maximum distances of the RRUs from the BBU vary with the types of BBP in LTE mode as follows:
l GL: 4 l UL: 4 l GUL: 4
l When the LBBPc, LBBPd1, or UBBPd3 is configured: 20 l When the LBBPd2 or UBBPd4 is configured: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configured: – Cell quantity ≤ 3: 40 – Cell quantity ≥ 4: 20
Antenna Capability The following table lists the antenna capability of an AAU3920. Table 6-899 Antenna capability of an AAU3920
Issue 14 (2016-01-30)
Type
TMA Support
RET Antenna Support
AAU3920
Supported by passive antennas
AISG2.0
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6.4.5 AAU3940 Technical Specifications The AAU3940 is an active antenna unit that integrates the functions of RF modules and antennas.
Antenna Specifications Table 6-900 provides the antenna electrical properties of the AAU3940. Table 6-900 Antenna electrical specifications of the AAU3940 Specifications
Item Frequency range (MHz)
1710 to 1880
1920 to 2170
Polarization
+45°, -45°
Electrical downtilt (°)
-3 to 12, continuously adjustable
Gain (dBi)
14
14.5
Horizontal 3 dB beam width (°)
70
70
Vertical 3 dB beam width (°)
13
12
Front to back ratio (dB)
Typ.25
Grounding
DC ground
RF Specifications RF specifications of the AAU3940 include the frequency bands and modes, capacity, output power, maximum power consumption, equivalent isotropically receiver sensitivity (EIRS), and the equivalent isotropically radiated power (EIRP). The following table lists the modes and frequency bands supported by an AAU3940. Table 6-901 Supported Modes and Frequency Bands
Issue 14 (2016-01-30)
Type
Frequency Band (MHz)
Receive Frequency Band (MHz)
Transmit Frequency Band (MHz)
Mode
AAU3940
1800
1710 to 1785
1805 to 1880
LTE FDD
2100
1920 to 1980
2110 to 2170
UMTS, LTE FDD, UL
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NOTE
l ATBR in the RX and TX Channels column indicates that this RF module has A transmit channels and B receive channels. l C x D W in the Output Power column indicates that this RF module is configured with C transmit channels and the maximum output power of each transmit channel is D W. l Typical power consumption is measured when the base station load reaches 50% and maximum power consumption is measured when the base station load reaches 100%. The Power Consumption column provides the power consumption of the AAU3940 with no RF module connected.
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Table 6-902 RX/TX channel, capacity, output power, and power consumption of the AAU3940 Type
TX/R X Chan nel
Capacity
Output power
Power Consumption
AAU39 40
2T2R
UMTS:
l When the ambient temperature ranges from –40°C to 50°C, the AAU3940 supports a maximum of 2x30 W output power.
l 2x30 W
l Without MIMO: 6 carriers l With MIMO: 4 carriers LTE FDD: 2 carriers, with bandwidth of 5/10/15/20 MHz
l When the ambient temperature ranges from –40°C to 40°C, the AAU3940 supports a maximum of 2x40 W output power. The typical configurations are as follows: l Output power for the AAU3940 (UMTS, 2100 MHz, 2x30W) l Output power for the AAU3940 (LTE FDD, 1800 MHz/2100 MHz, 2x30W) l Output power for the AAU3940 (LTE FDD, 1800 MHz + 2100 MHz, 2x30W)
– Typical Power Consump tion: 210 W – Maximu m power consumpt ion: 300 W l 2x40 W – Typical Power Consump tion: 250 W – Maximu m power consumpt ion: 350 W
l Output power for the AAU3940 (UL, 2100 MHz UMTS + 1800 MHz/2100 MHz LTE FDD, 2x30W) l Output power for the AAU3940 (UL, 1800 MHz LTE FDD + 2100 MHz UL MSR, 2x30W) l Output power for the AAU3940 (UMTS, 2100 MHz, 2x40W) l Output power for the AAU3940 (LTE FDD, 1800 MHz/2100 MHz, 2x40W)
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3900 Series Base Station Technical Description
Type
6 Product Specifications
TX/R X Chan nel
Capacity
Output power
Power Consumption
l Output power for the AAU3940 (LTE FDD, 1800 MHz + 2100 MHz, 2x40W) l Output power for the AAU3940 (UL, 2100 MHz UMTS + 1800 MHz/2100 MHz LTE FDD, 2x40W) l Output power for the AAU3940 (UL, 1800 MHz LTE FDD + 2100 MHz UL MSR, 2x40W) For typical PA configurations, see Typical Power Configuration for AAU3940 in 3900 Series Base Station Initial Configuration Guide.
NOTE
The output power per carrier in the output power table provides the maximum output power possible while ensuring the network performance.
Table 6-903 Output power for the AAU3940 (UMTS, 2100 MHz, 2x30W)
Issue 14 (2016-01-30)
Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
30
2
30
3
15
4
15
5
10
6
10
1 (MIMO)
2x30
2 (MIMO)
2x15
3 (MIMO)
2x10
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
4 (MIMO)
2x7.5
Table 6-904 Output power for the AAU3940 (LTE FDD, 1800 MHz/2100 MHz, 2x30W) Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
LTE FDD
1 (MIMO)
2x30
5, 10, 15, 20
2 (MIMO)
2x15
5, 10, 15, 20
Table 6-905 Output power for the AAU3940 (LTE FDD, 1800 MHz + 2100 MHz, 2x30W) 1800 MHz
Mode
LTE FDD 1800 MHz + LTE FDD 2100 MHz
2100 MHz
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwid th Supporte d by LTE FDD (MHz)
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwid th Supporte d by LTE FDD (MHz)
1 (MIMO)
2x15
5, 10, 15, 20
1 (MIMO)
2x15
5, 10, 15, 20
Table 6-906 Output power for the AAU3940 (UL, 2100 MHz UMTS + 1800 MHz/2100 MHz LTE FDD, 2x30W)
Issue 14 (2016-01-30)
Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
UMTS + LTE FDD
1
15
1 (MIMO)
2x15
5, 10, 15, 20
2
15
1 (MIMO)
2x15
5, 10, 15, 20
3
10
1 (MIMO)
2x10
5, 10, 15, 20
4
10
1 (MIMO)
2x10
5, 10, 15, 20
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Mode
6 Product Specifications
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
1
10
2 (MIMO)
2x10
5, 10, 15, 20
2
10
2 (MIMO)
2x10
5, 10, 15, 20
3
7.5
2 (MIMO)
2x7.5
5, 10, 15, 20
4
7.5
2 (MIMO)
2x7.5
5, 10, 15, 20
1 (MIMO)
2x15
1 (MIMO)
2x15
5, 10, 15, 20
2 (MIMO)
2x10
1 (MIMO)
2x10
5, 10, 15, 20
3 (MIMO)
2x7.5
1 (MIMO)
2x7.5
5, 10, 15, 20
1 (MIMO)
2x10
2 (MIMO)
2x10
5, 10, 15, 20
2 (MIMO)
2x7.5
2 (MIMO)
2x7.5
5, 10, 15, 20
Table 6-907 Output power for the AAU3940 (UL, 1800 MHz LTE FDD + 2100 MHz UL MSR, 2x30W) Mode
LTE FDD 1800 MHz + UMTS 2100 MHz + LTE FDD 2100 MHz
Issue 14 (2016-01-30)
1800 MHz
2100 MHz
Total Numb er of LTE FDD Carrier s
Outpu t Power per LTE FDD Carrier (W)
Bandw idth Suppo rted by LTE FDD (MHz)
Total Numb er of UMTS Carrier s
Output Power per UMTS Carrier (W)
Total Num ber of LTE FDD Carri ers
Outpu t Power per LTE FDD Carrie r (W)
Band width Suppo rted by LTE FDD (MHz)
1 (MIMO )
2x10
5, 10, 15, 20
1
10
1 (MIM O)
2x10
5, 10, 15, 20
1 (MIMO )
2x10
5, 10, 15, 20
2
10
1 (MIM O)
2x10
5, 10, 15, 20
1 (MIMO )
2x7.5
5, 10, 15, 20
3
7.5
1 (MIM O)
2x7.5
5, 10, 15, 20
1 (MIMO )
2x7.5
5, 10, 15, 20
4
7.5
1 (MIM O)
2x7.5
5, 10, 15, 20
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Mode
1800 MHz
2100 MHz
Total Numb er of LTE FDD Carrier s
Outpu t Power per LTE FDD Carrier (W)
Bandw idth Suppo rted by LTE FDD (MHz)
Total Numb er of UMTS Carrier s
Output Power per UMTS Carrier (W)
Total Num ber of LTE FDD Carri ers
Outpu t Power per LTE FDD Carrie r (W)
Band width Suppo rted by LTE FDD (MHz)
1 (MIMO )
2x10
5, 10, 15, 20
1 (MIMO )
2x10
1 (MIM O)
2x10
5, 10, 15, 20
1 (MIMO )
2x7.5
5, 10, 15, 20
2 (MIMO )
2x7.5
1 (MIM O)
2x7.5
5, 10, 15, 20
Table 6-908 Output power for the AAU3940 (UMTS, 2100 MHz, 2x40W) Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
UMTS
1
40
2
40
3
20
4
20
5
13
6
13
1 (MIMO)
2x40
2 (MIMO)
2x20
3 (MIMO)
2x13
4 (MIMO)
2x10
Table 6-909 Output power for the AAU3940 (LTE FDD, 1800 MHz/2100 MHz, 2x40W)
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Mode
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
LTE FDD
1 (MIMO)
2x40
5, 10, 15, 20
2 (MIMO)
2x20
5, 10, 15, 20
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Table 6-910 Output power for the AAU3940 (LTE FDD, 1800 MHz + 2100 MHz, 2x40W) Mode
LTE FDD 1800 MHz + LTE FDD 2100 MHz
1800 MHz
2100 MHz
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwid th Supporte d by LTE FDD (MHz)
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwid th Supporte d by LTE FDD (MHz)
1 (MIMO)
2x20
5, 10, 15, 20
1 (MIMO)
2x20
5, 10, 15, 20
Table 6-911 Output power for the AAU3940 (UL, 2100 MHz UMTS + 1800 MHz/2100 MHz LTE FDD, 2x40W)
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Mode
Total Number of UMTS Carriers
Output Power per UMTS Carrier (W)
Total Number of LTE FDD Carriers
Output Power per LTE FDD Carrier (W)
Bandwidth Supported by LTE FDD (MHz)
UMTS + LTE FDD
1
20
1 (MIMO)
2x20
5, 10, 15, 20
2
20
1 (MIMO)
2x20
5, 10, 15, 20
3
13
1 (MIMO)
2x13
5, 10, 15, 20
4
13
1 (MIMO)
2x13
5, 10, 15, 20
1
13
2 (MIMO)
2x13
5, 10, 15, 20
2
13
2 (MIMO)
2x13
5, 10, 15, 20
3
10
2 (MIMO)
2x10
5, 10, 15, 20
4
10
2 (MIMO)
2x10
5, 10, 15, 20
1 (MIMO)
2x20
1 (MIMO)
2x20
5, 10, 15, 20
2 (MIMO)
2x13
1 (MIMO)
2x13
5, 10, 15, 20
3 (MIMO)
2x10
1 (MIMO)
2x10
5, 10, 15, 20
1 (MIMO)
2x13
2 (MIMO)
2x13
5, 10, 15, 20
2 (MIMO)
2x10
2 (MIMO)
2x10
5, 10, 15, 20
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Table 6-912 Output power for the AAU3940 (UL, 1800 MHz LTE FDD + 2100 MHz UL MSR, 2x40W) Mode
LTE FDD 1800 MHz + UMTS 2100 MHz + LTE FDD 2100 MHz
1800 MHz
2100 MHz
Total Numb er of LTE FDD Carrier s
Outpu t Power per LTE FDD Carrier (W)
Bandw idth Suppo rted by LTE FDD (MHz)
Total Numb er of UMTS Carrier s
Output Power per UMTS Carrier (W)
Total Num ber of LTE FDD Carri ers
Outpu t Power per LTE FDD Carrie r (W)
Band width Suppo rted by LTE FDD (MHz)
1 (MIMO )
2x13
5, 10, 15, 20
1
13
1 (MIM O)
2x13
5, 10, 15, 20
1 (MIMO )
2x13
5, 10, 15, 20
2
13
1 (MIM O)
2x13
5, 10, 15, 20
1 (MIMO )
2x10
5, 10, 15, 20
3
10
1 (MIM O)
2x10
5, 10, 15, 20
1 (MIMO )
2x10
5, 10, 15, 20
4
10
1 (MIM O)
2x10
5, 10, 15, 20
1 (MIMO )
2x13
5, 10, 15, 20
1 (MIMO )
2x13
1 (MIM O)
2x13
5, 10, 15, 20
1 (MIMO )
2x10
5, 10, 15, 20
2 (MIMO )
2x10
1 (MIM O)
2x10
5, 10, 15, 20
NOTE
l The UMTS receiver sensitivity, as recommended in 3GPP TS 25.104, is measured at the antenna connector on condition that the channel rate reaches 12.2 kbit/s and the BER does not exceed 0.001. l The LTE FDD receiver sensitivity is measured, as recommended in 3GPP TS 36.104, under a 5 MHz channel bandwidth based on the FRC A1-3 in Annex A.1 (QPSK, R = 1/3, 25 RBs) standard.
Table 6-913 EIRS and EIRP of the AAU3940
Issue 14 (2016-01-30)
Type
Frequency Band (MHz)
EIRS
EIRP
AAU3940
1800
LTE FDD: -106.1dBm-14dBi
2x30W + 14dBi = 2x58.8dBm
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Frequency Band (MHz)
EIRS
EIRP 2x40W + 14dBi = 2x60.0dBm
2100
l UMTS: -125.7dBm-14.5dBi
2x30W + 14.5dBi = 2x59.3dBm
l LTE FDD: -106.1dBm-14.5dBi
2x40W + 14.5dBi = 2x60.5dBm
Engineering Specifications The following table lists the equipment specifications of an AAU3940. Table 6-914 Equipment specifications of an AAU3940 Type
Power
Dimensions (Diameter x Height)
Weight (kg)
AAU3940
l 220V AC singlephase, voltage range: 176V AC to 290V AC
750mm x 150mm
15
l 110V AC dualphase, voltage range: 90V/180V AC to 135V/270V AC l -48V DC, voltage range: -36V DC to -57V DC
The following table lists the environmental specifications of an AAU3940. Table 6-915 Environmental specifications of an AAU3940 Item
Specifications
Operating temperature
-40°C to +50°C (2x30 W, without solar radiation) -40°C to +40°C (2x40 W, without solar radiation)
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Item
Specifications
Wind load
l Front: 100 N (Assume that the wind speed is 150 km/h.) l Side: 100 N (Assume that the wind speed is 150 km/h.) l Rear: 115 N (Assume that the wind speed is 150 km/h.)
Max. operational wind speed
150 km/h
Survival wind speed
200 km/h
Relative humidity
5% RH to 100% RH
Absolute humidity
1 g/m3 to 30 g/m3
Atmospheric pressure
70 kPa to 106 kPa
Storage time
It is recommended that the device be installed and used within one year after its delivery due to the failure rate.
The following table lists the compliance standards for an AAU3940. Table 6-916 Compliance standards for an AAU3940 Item
Standard
Operating Environment
l 3GPP TS 25.141 l 3GPP TS 36.141 l 3GPP TS 37.141 l ETSI EN 300019-1-4 V2.1.2 (2003-04) Class 4.1: "Nonweatherprotected locations"
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Anti-Seismic Protection
ETSI300019-2-3
Protection Rating
IP55
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Item
Standard
Surge protection
l IEC 62305-1 Protection against lightning - Part 1: General principles l IEC 62305-3 Protection against lightning - Part 3: Physical damage to structures and life hazard l IEC 62305-4 Protection against lightning - Part 4: Electrical and electronic systems within structures l ITU-T K.35 Bonding configurations and earthing at remote electronic sites l ITU-T K.56 Protection of radio base stations against lightning discharges l ITU-T K.97 Lightning protection of distributed base stations l ETSI EN 300 253 Environmental Engineering(EE): Earthing and bonding configuration inside telecommunications centers
The following table describes the surge protection specifications for ports on an AAU3940. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-917 Surge protection specifications for ports on an AAU3940 Ports
Surge Protection Mode
Surge Protection Specifications
AC power port
Surge current
20 kA
CPRI Specifications The following table lists the specifications of CPRI ports on an AAU3940.
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Table 6-918 Specifications of CPRI ports on an AAU3940 Type
Quant ity of CPRI Ports
CPRI Data Rate (Gbit/s)
Topology
Cascading Level
Maximum Distance from the BBU (km)
AAU394 0
2
1.25/2.5/4. 9/9.8
Star, chain, and dual-star
UL CPRI MUX: 4
The maximum distances of the RRUs from the BBU vary with the types of BBP in LTE mode as follows: l When the LBBPc, LBBPd1, or UBBPd3 is configured: 20 l When the LBBPd2 or UBBPd4 is configured: 40 l When the LBBPd3 , UBBPd5, or UBBPd6 is configured: – Cell quantity ≤ 3: 40 – Cell quantity ≥ 4: 20
6.5 Engineering Specifications of Cabinets This section describes engineering specifications of each type of cabinet, including input power specifications, equipment specifications, environment specifications, surge protection specifications, and standards that have been complied with.
6.5.1 BTS3900 Engineering Specifications BTS3900 engineering specifications include input power specifications, equipment specifications, environment specifications, surge protection specifications, and standards that have been complied with. Issue 14 (2016-01-30)
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Input Power Specifications The BTS3900 (Ver.B), BTS3900 (Ver.C), and BTS3900 (Ver.D) cabinets have different power input specifications. Table 6-919, Table 6-920, and Table 6-921 describe the power input specifications for the BTS3900 (Ver.B) cabinet, BTS3900 (Ver.C) cabinet, and BTS3900 (Ver.D) cabinet, respectively. NOTE
For the configurations of upper-level circuit breakers and cross-sectional areas of power cables in a BTS3900 cabinet, see Configurations of Upper-Level Circuit Breakers and Power Cables in a BTS3900 in 3900 Series Base Station Hardware Description.
Table 6-919 Input power supported by the BTS3900 (Ver.B) cabinet Input Power
Voltage Range
-48 V DC
-38.4 V DC to -57 V DC
+24 V DC
+21.6 V DC to +29 V DC
120/208 V AC to 127/220 V AC dual-livewire
105/176 V AC to 150/260 V AC
100/200 V AC to 120/240 V AC dual-livewire
90/180 V AC to 135/270 V AC
200 V AC to 240 V AC single-phase
176 V AC to 290 V AC
200/346 V AC to 240/415 V AC threephase
176/304 V AC to 290/500 V AC
Table 6-920 Input power supported by the BTS3900 (Ver.C) cabinet Input Power
Voltage Range
-48 V DC
-38.4 V DC to -57 V DC
120/208 V AC to 127/220 V AC dual-livewire
105/176 V AC to 150/260 V AC
100/200 V AC to 120/240 V AC dual-livewire
90/180 V AC to 135/270 V AC
200 V AC to 240 V AC single-phase
176 V AC to 290 V AC
200/346 V AC to 240/415 V AC threephase
176/304 V AC to 290/500 V AC
Table 6-921 Input power supported by the BTS3900 (Ver.D) cabinet
Issue 14 (2016-01-30)
Input Power
Voltage Range
-48 V DC
-38.4 V DC to -57 V DC Huawei Proprietary and Confidential Copyright © Huawei Technologies Co., Ltd.
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Input Power
Voltage Range
200 V AC to 240 V AC single-phase
176 V AC to 290 V AC
200/346 V AC to 240/415 V AC threephase
176/304 V AC to 290/500 V AC
Equipment Specifications The following table lists the size and weight of BTS3900 (Ver.B), BTS3900 (Ver.C), and BTS3900 (Ver.D) cabinets. Table 6-922 Equipment specifications of BTS3900 (Ver.B), BTS3900 (Ver.C), and BTS3900 (Ver.D) cabinets Cabinet
Dimensions (H x W x D)
Weight
BTS3900 (Ver.B)/BTS3900 (Ver.C)
900 mm x 600 mm x 450 mm
≤ 135 kg (including 1 BBU and 6 RFUs and excluding the transmission equipment)
BTS3900 (Ver.D) cabinet
l DC: 900 mm x 600 mm x 450 mm
l DC: ≤ 135 kg (including 1 BBU and 6 RFUs and excluding the AC power supply)
l AC: 1250 mm x 600 mm x 450 mm (including the IMS06; base: 40 mm x 600 mm x 420 mm)
l AC: ≤ 180 kg (including 1 BBU, 6 RFUs, and the AC power supply)
Environment Specifications The BTS3900 (Ver.B), BTS3900 (Ver.C), and BTS3900 (Ver.D) cabinets have the same environment specifications, as provided in the following table. Table 6-923 Environment specifications of the BTS3900 (Ver.B), BTS3900 (Ver.C), and BTS3900 (Ver.D) cabinets Item
Specification
Operating temperature
-20°C to +55°C Short term: +50°C to +55°C NOTE Short term indicates that a base station does not work for over 15 days within a year or that a base station does not continuously work for over 72 hours.
Issue 14 (2016-01-30)
Relative humidity
5% RH to 95% RH
Atmospheric pressure
70 kPa to 106 kPa
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Item
Specification
Noise Sound Power Level
ETS300 753 3.1 ≤7.2bels
Storage Time
It is recommended that the device be installed and used within one year after its delivery because of the failure rate.
Biological environment
l The equipment room must be wellsealed and dustproof to prevent the growth of fungus or mildew. l Ensure that animals such as rodents (rats for example), ants, winged insects, or snakes cannot enter the equipment room.
Surge Protection Specifications The BTS3900 (Ver.B), BTS3900 (Ver.C), and BTS3900 (Ver.D) cabinets have the same surge protection specifications, as provided in Table 6-924. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-924 Surge protection specifications of ports on the BTS3900 (Ver.B), BTS3900 (Ver.C), and BTS3900 (Ver.D) cabinets Port
Surge Protection Mode
Specification
DC power supply port
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
Differential mode
5 kA
Common mode
5 kA
AC power supply port
Standards The BTS3900 (Ver.B), BTS3900 (Ver.C), and BTS3900 (Ver.D) cabinets comply with the same standards, as provided in the following table.
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Table 6-925 Standards with which the BTS3900 (Ver.B), BTS3900 (Ver.C), and BTS3900 (Ver.D) cabinets comply Item
Standard
Security standards
l X.509: Supported in GBSS14.0/RAN14.0/eRAN3.0/SRAN7.0 and later versions l RFC 1825: Supported in GBSS14.0/RAN14.0/eRAN3.0/ SRAN7.0 and later versions l RFC 1826: Supported in GBSS14.0/RAN14.0/eRAN3.0/ SRAN7.0 and later versions l RFC 1827: Supported in GBSS14.0/RAN14.0/eRAN3.0/ SRAN7.0 and later versions l RFC 4492: Supported in all versions l RFC 5246: Supported in GBSS15.0/RAN15.0/eRAN6.0/ SRAN8.0 and later versions l Secure Socket Layer (SSL): Supported in all versions
Protection rating
IP20
Operating environment
ETS 300 019-1-3 Class 3.1
Storage
ETSI EN300019-1-1 V2.1.4 (2003-04) class1.2 "Weatherprotected, not temperature-controlled storage locations"
Transportation
ETSI EN300019-1-2 V2.1.4 (2003-04) class 2.3 "Public transportation"
Anti-seismic performance
IEC 60068-2-57: Environmental testing -Part 2-57: Tests -Test Ff: Vibration -Time-history method YD5083: Interim Provisions for Test of Anti-seismic Performances of Telecommunications Equipment (telecom industry standard in People's Republic of China)
Anti-earthquake performance
Issue 14 (2016-01-30)
ETSI EN 300019-1-3: "Earthquake"
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Item
Standard
EMC
NOTE The BTS3900 complies with the following standards. If interference exists because the BTS3900 is installed near antennas or other radio receive devices, you are advised to extend the distance between them or adjust the location and direction of antennas.
The multi-mode base station meets the Electromagnetic Compatibility (EMC) requirements and complies with the following standards: l R&TTE Directive 1999/5/EC l R&TTE Directive 89/336/EEC l ETSI EN 301489-1/8/23 l 3GPP TS 25.113 l ETSI EN 301908-1 l ITU-T SM 329-10 l FCC PART15 The GBTS meets the EMC requirements and complies with the following standards: l R&TTE Directive 1999/5/EC l R&TTE Directive 89/336/EEC l ETSI EN 301489-1/8 l ETSI EN 301908-1 l ITU-T SM 329-10 l FCC PART15 The NodeB has been certified by European standards. The NodeB meets the EMC requirements and complies with the following standards: l CISPR 22 (1997) l EN 55022 (1998) l EN 301 489-23 V1.2.1 (2002-11) l CISPR 24 (1998) l IEC 61000-4-2 l IEC 61000-4-3 l IEC 61000-4-4 l IEC 61000-4-5 l IEC 61000-4-6 l IEC 61000-4-29 l GB 9254-1998 l ETSI 301 489-1 V1.3.1 (2001-09) l FCC Part 15 The eNodeB has been certified by European standards. The eNodeB meets the EMC requirements and complies with the following standards: Issue 14 (2016-01-30)
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Item
Standard l R&TTE Directive 1999/5/EC l R&TTE Directive 89/336/EEC l 3GPP TS 36.113 l ETSI EN 301489-1/23 l ETSI EN 301908-1 V2.2.1 (2003-10) l ITU-R SM.329-10
6.5.2 BTS3900L Engineering Specifications BTS3900L engineering specifications include input power specifications, equipment specifications, environment specifications, surge protection specifications, and standards that have been complied with.
Input Power Specifications The BTS3900L (Ver.B) and BTS3900L (Ver.C) cabinets support the same power input, as provided in Table 6-926. Table 6-927 lists the input power specifications of the BTS3900L (Ver.D) cabinets. NOTE
For the configurations of upper-level circuit breakers and cross-sectional areas of power cables in a BTS3900L cabinet, see Configurations of Upper-Level Circuit Breakers and Power Cables in a BTS3900L in 3900 Series Base Station Hardware Description.
Table 6-926 Input power supported by the BTS3900L (Ver.B), BTS3900L (Ver.C), and BTS3900L (Ver.D) cabinets Input Power
Voltage Range
-48 V DC
-38.4 V DC to -57 V DC
Table 6-927 Input power supported by the BTS3900L (Ver.D) cabinets
Issue 14 (2016-01-30)
Input Power
Voltage Range
-48 V DC
-38.4 V DC to -57 V DC
200 V AC to 240 V AC single-phase
176 V AC to 290 V AC
200/346 V AC to 240/415 V AC threephase
176/304 V AC to 290/500 V AC
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Equipment Specifications The BTS3900L (Ver.B) and BTS3900L (Ver.C) cabinets have the same size and weight. Table 6-928 lists the equipment specifications of BTS3900L (Ver.B) or BTS3900L (Ver.C) cabinets. Table 6-929 lists the equipment specifications of a BTS3900L (Ver.D) cabinet. Table 6-928 Equipment specifications of BTS3900L (Ver.B) or BTS3900L (Ver.C) cabinets Item
Specifications
Dimensions (H x W x D)
1600 mm x 600 mm x 450 mm
Weight
≤ 235 kg (fully configured cabinet delivered with boards and modules: including 2 BBUs and 12 RFUs and excluding the transmission equipment)
Table 6-929 Equipment specifications of a BTS3900L (Ver.D) cabinet Item
Specifications
Dimensions (H x W x D)
l DC: 1600 mm x 600 mm x 450 mm l AC: 1950 mm x 600 mm x 450 mm (with IMS06; Base: 40 mm x 600 mm x 420 mm) l DC: ≤ 235 kg (fully configured cabinet delivered with boards and modules: including 2 BBUs and 12 RFUs and excluding the transmission equipment)
Weight
l AC: ≤ 280 kg (fully configured cabinet delivered with boards and modules: including 2 BBUs, 12 RFUs, and the AC power supply, and excluding the transmission equipment)
Environment Specifications The BTS3900L (Ver.B), BTS3900L (Ver.C), and BTS3900L (Ver.D) cabinets have the same environment specifications, as provided in the following table.
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Table 6-930 Environment specifications of the BTS3900L (Ver.B), BTS3900L (Ver.C), and BTS3900L (Ver.D) cabinets Item
Specification
Operating temperature
-20°C to +55°C Short term: +50°C to +55°C NOTE Short term indicates that a base station does not work for over 15 days within a year or that a base station does not continuously work for over 72 hours.
Relative humidity
5% RH to 95% RH
Atmospheric pressure
70 kPa to 106 kPa
Noise Sound Power Level
ETS300 753 3.1 ≤7.2bels
Storage Time
It is recommended that the device be installed and used within one year after its delivery because of the failure rate.
Biological environment
l The equipment room must be wellsealed and dustproof to prevent the growth of fungus or mildew. l Ensure that animals such as rodents (rats for example), ants, winged insects, or snakes cannot enter the equipment room.
Surge Protection Specifications The BTS3900L (Ver.B), BTS3900L (Ver.C), and BTS3900L (Ver.D) cabinets have the same surge protection specifications, as provided in Table 6-931. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-931 Surge protection specifications of ports on the BTS3900L (Ver.B), BTS3900L (Ver.C), and BTS3900L (Ver.D) cabinets
Issue 14 (2016-01-30)
Port
Surge Protection Mode
Specification
DC power supply port
Differential mode
2 kV (1.2/50 μs)
Common mode
4 kV (1.2/50 μs)
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Standards The BTS3900L (Ver.B), BTS3900L (Ver.C), and BTS3900L (Ver.D) cabinets comply with the same standards, as provided in the following table. Table 6-932 Standards with which the BTS3900L (Ver.B), BTS3900L (Ver.C), and BTS3900L (Ver.D) cabinets comply Item
Standard
Security standards
l X.509: Supported in GBSS14.0/RAN14.0/eRAN3.0/ SRAN7.0 and later versions l RFC 1825: Supported in GBSS14.0/RAN14.0/eRAN3.0/ SRAN7.0 and later versions l RFC 1826: Supported in GBSS14.0/RAN14.0/eRAN3.0/ SRAN7.0 and later versions l RFC 1827: Supported in GBSS14.0/RAN14.0/eRAN3.0/ SRAN7.0 and later versions l RFC 4492: Supported in all versions l RFC 5246: Supported in GBSS15.0/RAN15.0/eRAN6.0/ SRAN8.0 and later versions l Secure Socket Layer (SSL): Supported in all versions
Protection rating
IP20
Operating environment
ETS 300 019-1-3 Class 3.1
Storage
ETSI EN300019-1-1V2.1.4 (2003-04) class1.2 "Weatherprotected, not temperature-controlled storage locations"
Transportation
ETSI EN300019-1-2V2.1.4 (2003-04) class 2.3 "Public transportation"
Anti-seismic performance
IEC 60068-2-57: Environmental testing -Part 2-57: Tests -Test Ff:Vibration -Time-history method YD5083: Interim Provisions for Test of Anti-seismic Performances of Telecommunications Equipment (telecom industry standard in People's Republic of China)
Anti-earthquake performance
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ETSI EN 300019-1-3: "Earthquake"
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Item
Standard
EMC
NOTE The BTS3900L complies with the following standards. If interference exists because the BTS3900L is installed near antennas or other radio receive devices, you are advised to extend the distance between them or adjust the location and direction of antennas.
The multi-mode base station meets the Electromagnetic Compatibility (EMC) requirements and complies with the following standards: l R&TTE Directive 1999/5/EC l R&TTE Directive 89/336/EEC l ETSI EN 301489-1/8/23 l 3GPP TS 25.113 l ETSI EN 301908-1 l ITU-T SM 329-10 l FCC PART15 The GBTS meets the EMC requirements and complies with the following standards: l R&TTE Directive 1999/5/EC l R&TTE Directive 89/336/EEC l ETSI EN 301489-1/8 l ETSI EN 301908-1 l ITU-T SM 329-10 l FCC PART15 The NodeB has been certified by European standards. The NodeB meets the EMC requirements and complies with the following standards: l CISPR 22 (1997) l EN 55022 (1998) l EN 301 489-23 V1.2.1 (2002-11) l CISPR 24 (1998) l IEC 61000-4-2 l IEC 61000-4-3 l IEC 61000-4-4 l IEC 61000-4-5 l IEC 61000-4-6 l IEC 61000-4-29 l GB 9254-1998 l ETSI 301 489-1 V1.3.1 (2001-09) l FCC Part 15 The eNodeB has been certified by European standards. The eNodeB meets the EMC requirements and complies with the following standards: Issue 14 (2016-01-30)
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Item
Standard l R&TTE Directive 1999/5/EC l R&TTE Directive 89/336/EEC l 3GPP TS 36.113 l ETSI EN 301489-1/23 l ETSI EN 301908-1 V2.2.1 (2003-10) l ITU-R SM.329-10
6.5.3 BTS3900A Engineering Specifications BTS3900A engineering specifications include input power specifications, equipment specifications, environment specifications, surge protection specifications, and standards that have been complied with.
Input Power Specifications The BTS3900A (Ver.B), BTS3900A (Ver.C), BTS3900A (Ver.D), and BTS3900A (Ver.E) cabinets support the same power input, as provided in the following table. NOTE
For the configurations of upper-level circuit breakers and cross-sectional areas of power cables in a BTS3900A cabinet, see Configurations of Upper-Level Circuit Breakers and Power Cables in a BTS3900A in 3900 Series Base Station Hardware Description.
Table 6-933 Input power supported by the BTS3900A (Ver.B), BTS3900A (Ver.C), BTS3900A (Ver.D), and BTS3900A (Ver.E) cabinets Input Power
Voltage Range
-48 V DC
-38.4 V DC to -57 V DC
120/208 V AC to 127/220 V AC dual-livewire
105/176 V AC to 150/260 V AC
100/200 V AC to 120/240 V AC dual-livewire
100/200 V AC to 120/240 V AC
200 V AC to 240 V AC single-phase
176 V AC to 290 V AC
200/346 V AC to 240/415 V AC threephase
176/304 V AC to 290/500 V AC
Equipment Specifications The following table lists the equipment specifications of the BTS3900A (Ver.B), BTS3900A (Ver.C), BTS3900A (Ver.D), and BTS3900A (Ver.E) cabinets. Issue 14 (2016-01-30)
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Table 6-934 Equipment specifications of the BTS3900A (Ver.B), BTS3900A (Ver.C), BTS3900A (Ver.D), and BTS3900A (Ver.E) cabinets Item
Cabinet
Specification
Dimension (H x W x D)
BTS3900A (Ver.B)/ BTS3900A (Ver.C)/ BTS3900A (Ver.D)/ BTS3900A (Ver.E)
1400 mm x 600 mm x 480 mm (without base) l APM30H (Ver.B)/APM30H (Ver.C)/ APM30H (Ver.D)/APM30H (Ver.E)/ TMC11H (Ver.B)/TMC11H (Ver.C)/TMC11H (Ver.D)/TMC11H (Ver.E): 700 mm x 600 mm x 480 mm l RFC (Ver.B)/RFC (Ver.C)/RFC (Ver.D)/RFC (Ver.E): 700 mm x 600 mm x 480 mm Base: 200 mm x 600 mm x 480 mm
Weight
BTS3900A (Ver.B)/ BTS3900A (Ver.C)/ BTS3900A (Ver.D)/ BTS3900A (Ver.E)
≤ 194 kg (with boards installed in AC cabinets before delivery) l ≤ 87 kg (with APM30H in full configuration, without transmission devices and storage batteries) l ≤ 107 kg (with RFC in full configuration)
Heat Dissipation Capabilities of the Cabinet
BTS3900A (Ver.B)
700 W at 50°C
BTS3900A (Ver.C)
700 W at 50°C or 1050 W at 50°C
BTS3900A (Ver.D)
700 W at 50°C or 1500 W at 50°C
BTS3900A (Ver.E)
700 W at 50°C or 1800 W at 50°C
Environment Specifications The BTS3900A (Ver.B), BTS3900A (Ver.C), and BTS3900A (Ver.D), and BTS3900A (Ver.E) cabinets have the same environment specifications, as provided in the following table. Table 6-935 Environment specifications of the BTS3900A (Ver.B), BTS3900A (Ver.C), BTS3900A (Ver.D), and BTS3900A (Ver.E) cabinets
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Item
Specification
Operating temperature
-40°C to +50°C (with 1120 W/M2 solar radiation); an AC heater assembly unit (HAU) is required if the operating temperature is below -20°C.
Relative humidity
5% RH to 100% RH
Atmospheric pressure
70 kPa to 106 kPa
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Item
Specification
Noise Sound Power Level
l When the heat consumption of the APM30H is lower than 700 W and the output power of an RF module is lower than or equal to 80 W, the noise sound power level complies with the ETS 300 753 4.1E (Rural) standard. – ≤6.1bels@+25°C – ≤6.7bels@+45°C l When the heat consumption of the APM30H is higher than 700 W or the output power of an RF module is higher than 80 W, the noise sound power level complies with the ETS 300 753 4.1E (Urban) standard. – ≤6.6bels@+25°C – ≤7.6bels@+45°C
Storage Time
It is recommended that the device be installed and used within one year after its delivery because of the failure rate.
Surge Protection Specifications The BTS3900A (Ver.B), BTS3900A (Ver.C), BTS3900A (Ver.D), and BTS3900A (Ver.E) cabinets have the same surge protection specifications, as provided in Table 6-936. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-936 Surge protection specifications of ports on the BTS3900A (Ver.B), BTS3900A (Ver.C), BTS3900A (Ver.D), and BTS3900A (Ver.E) cabinets Port
Usage Scenario
Surge Protection Mode
Specification
-48 V DC output remote port
Applicable to all scenarios
Differential mode
10 kA
Common mode
20 kA
Differential mode
10 kA
-48 V DC input port
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Applicable to the scenario where transmission
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Port
AC power supply port
Usage Scenario
Surge Protection Mode
Specification
cabinets, battery cabinets, or a BTS3900A (DC) is used
Common mode
20 kA
Applicable to the scenario where only RFC cabinets are used
Differential mode
3 kA
Common mode
5 kA
Applicable to the scenario where RF modules are configured remotely or are placed outdoors together with the correspondin g base station
Differential mode
30 kA
Common mode
30 kA
Standards The BTS3900A (Ver.B), BTS3900A (Ver.C), BTS3900A (Ver.D), and BTS3900A (Ver.E) cabinets comply with the same standards, as provided in the following table.
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Table 6-937 Standards with which the BTS3900A (Ver.B), BTS3900A (Ver.C), BTS3900A (Ver.D), and BTS3900A (Ver.E) cabinets comply Item
Standard
Security standards
l X.509: Supported in GBSS14.0/RAN14.0/eRAN3.0/ SRAN7.0 and later versions l RFC 1825: Supported in GBSS14.0/RAN14.0/eRAN3.0/ SRAN7.0 and later versions l RFC 1826: Supported in GBSS14.0/RAN14.0/eRAN3.0/ SRAN7.0 and later versions l RFC 1827: Supported in GBSS14.0/RAN14.0/eRAN3.0/ SRAN7.0 and later versions l RFC 4492: Supported in all versions l RFC 5246: Supported in GBSS15.0/RAN15.0/eRAN6.0/ SRAN8.0 and later versions l Secure Socket Layer (SSL): Supported in all versions
Protection rating
IP55
Operating environment
ETS 300 019-1-4 Class 4.1
Storage
ETSI EN300019-1-1V2.1.4 (2003-04) class1.2 "Weatherprotected, not temperature-controlled storage locations"
Transportation
ETSI EN300019-1-2V2.1.4 (2003-04) class 2.3 "Public transportation"
Anti-seismic performance
IEC 60068-2-57: Environmental testing -Part 2-57: Tests -Test Ff:Vibration -Time-history method YD5083: Interim Provisions for Test of Anti-seismic Performances of Telecommunications Equipment (telecom industry standard in People's Republic of China)
Anti-earthquake performance
Issue 14 (2016-01-30)
ETSI EN 300019-1-4: "Earthquake"
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Item
Standard
EMC
NOTE The BTS3900A complies with the following standards. If interference exists because the BTS3900A is installed near antennas or other radio receive devices, you are advised to extend the distance between them or adjust the location and direction of antennas.
The multi-mode base station meets the Electromagnetic Compatibility (EMC) requirements and complies with the following standards: l R&TTE Directive 1999/5/EC l R&TTE Directive 89/336/EEC l ETSI EN 301489-1/8/23 l 3GPP TS 25.113 l ETSI EN 301908-1 l ITU-T SM 329-10 l FCC PART15 The GBTS meets the EMC requirements and complies with the following standards: l R&TTE Directive 1999/5/EC l R&TTE Directive 89/336/EEC l ETSI EN 301489-1/8 l ETSI EN 301908-1 l ITU-T SM 329-10 l FCC PART15 The NodeB has been certified by European standards. The NodeB meets the EMC requirements and complies with the following standards: l CISPR 22 (1997) l EN 55022 (1998) l EN 301 489-23 V1.2.1 (2002-11) l CISPR 24 (1998) l IEC 61000-4-2 l IEC 61000-4-3 l IEC 61000-4-4 l IEC 61000-4-5 l IEC 61000-4-6 l IEC 61000-4-29 l GB 9254-1998 l ETSI 301 489-1 V1.3.1 (2001-09) l FCC Part 15 The eNodeB has been certified by European standards. The eNodeB meets the EMC requirements and complies with the following standards: Issue 14 (2016-01-30)
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Item
Standard l R&TTE Directive 1999/5/EC l R&TTE Directive 89/336/EEC l 3GPP TS 36.113 l ETSI EN 301489-1/23 l ETSI EN 301908-1 V2.2.1 (2003-10) l ITU-R SM.329-10
6.5.4 BTS3900AL Engineering Specifications BTS3900AL engineering specifications include input power specifications, equipment specifications, environment specifications, surge protection specifications, and standards that have been complied with.
Input Power Specifications The following table lists the input power specifications of a BTS3900AL (Ver.A) cabinet. NOTE
For the configurations of upper-level circuit breakers and cross-sectional areas of power cables in a BTS3900AL cabinet, see Configurations of Upper-Level Circuit Breakers and Power Cables in a BTS3900AL (Ver.A) in 3900 Series Base Station Hardware Description.
Table 6-938 Input power specifications of a BTS3900AL (Ver.A) cabinet Input Power
Voltage Range
200 V AC to 240 V AC single-phase
176 V AC to 290 V AC
200/346 V AC to 240/415 V AC threephase
176/304 V AC to 290/500 V AC
120/208 V AC to 127/220 V AC dual-livewire
105/176 V AC to 150/260 V AC
100/200 V AC to 120/240 V AC dual-livewire
90/180 V AC to 135/270 V AC
-48 V DC
-38.4 V DC to -57 V DC
Equipment Specifications The following table lists the equipment specifications of a BTS3900AL (Ver.A) cabinet.
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Table 6-939 Equipment specifications of a BTS3900AL (Ver.A) cabinet Item
Specification
Dimension (H x W x D)
1925 mm x 770 mm x 750 mm (with the base) Base: 200 mm x 770 mm x 700 mm
Weight
≤ 550 kg (full configuration, with the base and full configuration of storage batteries, and without transmission devices)
Heat Dissipation Capabilities of the Cabinet
2200 W at 50°C
Environment Specifications The following table lists the environment specifications of a BTS3900AL (Ver.A) cabinet. Table 6-940 Environment specifications of a BTS3900AL (Ver.A) cabinet Item
Specification
Operating temperature
l -40°C to +50°C (with 1120 W/M2 solar radiation and without storage batteries); an AC heater assembly unit (HAU) is required if the operating temperature is below -20°C. l -40°C to +40°C (with 1120 W/M2 solar radiation and storage batteries); an AC heater assembly unit (HAU) is required if the operating temperature is below -20°C.
Relative humidity
5% RH to 100% RH
Atmospheric pressure
70 kPa to 106 kPa
Noise Sound Power Level
l When the output power of an RF module is lower than or equal to 80 W, the noise sound power level complies with the ETS 300 753 4.1E (Rural) standard. – ≤6.1bels@+25°C – ≤6.7bels@+45°C l When the output power of an RF module is higher than 80 W, the noise sound power level complies with the ETS 300 753 4.1E (Urban) standard. – ≤6.6bels@+25°C – ≤7.6bels@+45°C
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Item
Specification
Storage Time
It is recommended that the device be installed and used within one year after its delivery because of the failure rate.
Surge Protection Specifications Table 6-941 lists the surge protection specifications of ports on a BTS3900AL (Ver.A) cabinet. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-941 Surge protection specifications of ports on a BTS3900AL (Ver.A) cabinet Port
Surge Protection Mode
Specification
AC input power port
Differential mode
30 kA
Common mode
30 kA
Standards The following table lists the standards with which a BTS3900AL (Ver.A) cabinet complies. Table 6-942 Standards with which a BTS3900AL (Ver.A) cabinet complies Item
Standard
Security standards
l X.509: Supported in GBSS14.0/RAN14.0/eRAN3.0/SRAN7.0 and later versions l RFC 1825: Supported in GBSS14.0/RAN14.0/eRAN3.0/SRAN7.0 and later versions l RFC 1826: Supported in GBSS14.0/RAN14.0/eRAN3.0/SRAN7.0 and later versions l RFC 1827: Supported in GBSS14.0/RAN14.0/eRAN3.0/SRAN7.0 and later versions l RFC 4492: Supported in all versions l RFC 5246: Supported in GBSS15.0/RAN15.0/eRAN6.0/SRAN8.0 and later versions l Secure Socket Layer (SSL): Supported in all versions
Protectio n rating Issue 14 (2016-01-30)
IP55
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6 Product Specifications
Item
Standard
Operating environm ent
ETS 300 019-1-4 Class 4.1
Storage
ETSI EN300019-1-1V2.1.4 (2003-04) class 1.2 "Weatherprotected, not temperature-controlled storage locations"
Transport ation
ETSI EN300019-1-2V2.1.4 (2003-04) class 2.3 "Public transportation"
Antiseismic performa nce
IEC 60068-2-57: Environmental testing -Part 2-57:Tests -Test Ff:Vibration Time-history method
Antiearthquak e performa nce
ETSI EN 300019-1-4: "Earthquake"
YD5083: Interim Provisions for Test of Anti-seismic Performances of Telecommunications Equipment (telecom industry standard in People's Republic of China)
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Item
Standard
EMC
NOTE The BTS3900AL complies with the following standards. If interference exists because the BTS3900AL is installed near antennas or other radio receive devices, you are advised to extend the distance between them or adjust the location and direction of antennas.
The multi-mode base station meets the Electromagnetic Compatibility (EMC) requirements and complies with the following standards: l R&TTE Directive 1999/5/EC l R&TTE Directive 89/336/EEC l ETSI EN 301489-1/8/23 l 3GPP TS 25.113 l ETSI EN 301908-1 l ITU-T SM 329-10 l FCC PART15 The GBTS meets the EMC requirements and complies with the following standards: l R&TTE Directive 1999/5/EC l R&TTE Directive 89/336/EEC l ETSI EN 301489-1/8 l ETSI EN 301908-1 l ITU-T SM 329-10 l FCC PART15 The NodeB has been certified by European standards. The NodeB meets the EMC requirements and complies with the following standards: l CISPR 22 (1997) l EN 55022 (1998) l EN 301 489-23 V1.2.1 (2002-11) l CISPR 24 (1998) l IEC 61000-4-2 l IEC 61000-4-3 l IEC 61000-4-4 l IEC 61000-4-5 l IEC 61000-4-6 l IEC 61000-4-29 l GB 9254-1998 l ETSI 301 489-1 V1.3.1 (2001-09) l FCC Part 15 The eNodeB has been certified by European standards. The eNodeB meets the EMC requirements and complies with the following standards: l R&TTE Directive 1999/5/EC l R&TTE Directive 89/336/EEC l 3GPP TS 36.113 Issue 14 (2016-01-30)
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Item
Standard l ETSI EN 301489-1/23 l ETSI EN 301908-1 V2.2.1 (2003-10) l ITU-R SM.329-10
6.5.5 DBS3900 Engineering Specifications DBS3900 engineering specifications include input power specifications, equipment specifications, environment specifications, surge protection specifications, and standards that have been complied with.
Input Power Specifications The following table lists the input power specifications of a DBS3900. NOTE
l For the configurations of upper-level circuit breakers and power cables in a DBS3900, see Configurations of Upper-Level Circuit Breakers and Power Cables in a DBS3900 Configured with a BBU3900 or BBU3910 in 3900 Series Base Station Hardware Description.
Table 6-943 Input power specifications of a DBS3900 Item
Input Power
Voltage Range
baseband unit (BBU)
-48 V DC
-38.4 V DC to -57 V DC
remote radio unit (RRU)
-48 V DC
-36 V DC to -57 V DC
Equipment Specifications The equipment specifications of a DBS3900 include the following: l
BBU equipment specifications (for details, see6.1 Technical Specifications of the BBU)
l
RRU equipment specifications (for details, see 6.3 Technical Specifications of RRUs)
l
Related cabinet equipment specifications (for details, see 3900 Series Base Station Hardware Description)
Environment Specifications The environment specifications of a DBS3900 include the following: l
BBU environment specifications (for details, see 6.1 Technical Specifications of the BBU)
l
RRU environment specifications (for details, see 6.3 Technical Specifications of RRUs)
Surge Protection Specifications The surge protection specifications of ports on a DBS3900 include the following: Issue 14 (2016-01-30)
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l
Surge protection specifications of ports on the BBU (for details, see 6.1 Technical Specifications of the BBU)
l
Surge protection specifications of ports on a remote radio unit (RRU) (for details, see 6.3 Technical Specifications of RRUs)
Standards The following table lists the standards with which a DBS3900 complies. Table 6-944 Standards with which a DBS3900 complies Item
Standard
Security standard s
l X.509: Supported in GBSS14.0/RAN14.0/eRAN3.0/SRAN7.0 and later versions l RFC 1825: Supported in GBSS14.0/RAN14.0/eRAN3.0/SRAN7.0 and later versions l RFC 1826: Supported in GBSS14.0/RAN14.0/eRAN3.0/SRAN7.0 and later versions l RFC 1827: Supported in GBSS14.0/RAN14.0/eRAN3.0/SRAN7.0 and later versions l RFC 4492: Supported in all versions l RFC 5246: Supported in GBSS15.0/RAN15.0/eRAN6.0/SRAN8.0 and later versions l Secure Socket Layer (SSL): Supported in all versions
Issue 14 (2016-01-30)
Operatin g environ ment
ETS 300 019-1-4 Class 4.1
Storage
ETSI EN300019-1-1V2.1.4 (2003-04) class 1.2 "Weatherprotected, not temperature-controlled storage locations"
Transpor tation
ETSI EN300019-1-2V2.1.4 (2003-04) class 2.3 "Public transportation"
Antiseismic performa nce
IEC 60068-2-57: Environmental testing -Part 2-57:Tests -Test Ff:Vibration Time-history method
Antiearthqua ke performa nce
ETSI EN 300019-1-3: "Earthquake"
YD5083: Interim Provisions for Test of Anti-seismic Performances of Telecommunications Equipment (telecom industry standard in People's Republic of China)
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Item
Standard
EMC
NOTE The DBS3900 complies with the following standards. If interference exists because the DBS3900 is installed near antennas or other radio receive devices, you are advised to extend the distance between them or adjust the location and direction of antennas.
The multi-mode base station meets the Electromagnetic Compatibility (EMC) requirements and complies with the following standards: l R&TTE Directive 1999/5/EC l R&TTE Directive 89/336/EEC l ETSI EN 301489-1/8/23 l 3GPP TS 25.113 l ETSI EN 301908-1 l ITU-T SM 329-10 l FCC PART15 The GBTS meets the EMC requirements and complies with the following standards: l R&TTE Directive 1999/5/EC l R&TTE Directive 89/336/EEC l ETSI EN 301489-1/8 l ETSI EN 301908-1 l ITU-T SM 329-10 l FCC PART15 The NodeB has been certified by European standards. The NodeB meets the EMC requirements and complies with the following standards: l CISPR 22 (1997) l EN 55022 (1998) l EN 301 489-23 V1.2.1 (2002-11) l CISPR 24 (1998) l IEC 61000-4-2 l IEC 61000-4-3 l IEC 61000-4-4 l IEC 61000-4-5 l IEC 61000-4-6 l IEC 61000-4-29 l GB 9254-1998 l ETSI 301 489-1 V1.3.1 (2001-09) l FCC Part 15 The eNodeB has been certified by European standards. The eNodeB meets the EMC requirements and complies with the following standards: l R&TTE Directive 1999/5/EC l R&TTE Directive 89/336/EEC l 3GPP TS 36.113 Issue 14 (2016-01-30)
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Item
Standard l ETSI EN 301489-1/23 l ETSI EN 301908-1 V2.2.1 (2003-10) l ITU-R SM.329-10
6.5.6 BTS3900C Engineering Specifications BTS3900C engineering specifications include input power specifications, equipment specifications, environment specifications, surge protection specifications, and standards that have been complied with.
Input Power Specifications The BTS3900C and BTS3900C (Ver.C) cabinets support the same power input, as provided in the following table. NOTE
For the configurations of upper-level circuit breakers and cross-sectional areas of power cables in a BTS3900C cabinet, see Configurations of Upper-Level Circuit Breakers and Power Cables in a BTS3900C in 3900 Series Base Station Hardware Description.
Table 6-945 Input power specifications of the BTS3900C and BTS3900C (Ver.C) cabinets Input Power
Voltage Range
-48 V DC
-38.4 V DC to -57 V DC
200 V AC to 240 V AC single-phase
176 V AC to 290 V AC
100/200 V AC to 120/240 V AC dual-livewire
90/180 V AC to 135/270 V AC
Equipment Specifications Table 6-946 and Table 6-947 list the equipment specifications of a BTS3900C cabinet and a BTS3900C (Ver.C) cabinet, respectively. Table 6-946 Equipment specifications of a BTS3900C cabinet Item
Specification
Dimension (H x W x D)
600 mm x 400 mm x 390 mm l OMB: 600 mm x 240 mm x 390 mm l RRU subrack: 600mm x 160 mm x 390 mm
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Item
Specification
Weight
l AC cabinet: ≤ 28 kg (excluding the BBU and RRU) l DC cabinet: ≤ 26 kg (excluding the BBU and RRU)
Table 6-947 Equipment specifications of a BTS3900C (Ver.C) cabinet Item
Specification
Dimension (H x W x D)
600 mm x 420 mm x 430 mm l OMB (Ver.C): 600 mm x 240 mm x 430 mm l RRU subrack: 600mm x 180 mm x 430 mm l AC cabinet: ≤ 32 kg (excluding the BBU and RRU)
Weight
l DC cabinet: ≤ 28 kg (excluding the BBU and RRU) Heat Dissipation Capabilities of the Cabinet
650 W at 50°C
Environment Specifications Table 6-948 and Table 6-949 list the environment specifications of a BTS3900C cabinet and a BTS3900C (Ver.C) cabinet, respectively. Table 6-948 Environment specifications of a BTS3900C cabinet Item
Specification
Operating temperature
l With solar radiation: -40°C to +45°C l Without solar radiation: -40°C to +50°C
Relative humidity
5% RH to 100% RH
Atmospheric pressure
70 kPa to 106 kPa
Noise Sound Power Level
ETS300 753 Rural area, Class 4.1E l ≤6.1bels@+25°C l ≤6.7bels@+45°C
Storage Time
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It is recommended that the device be installed and used within one year after its delivery because of the failure rate.
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3900 Series Base Station Technical Description
6 Product Specifications
Table 6-949 Environment specifications of a BTS3900C (Ver.C) cabinet Item
Specification
Operating temperature
-33°C to +50°C
Relative humidity
5% RH to 100% RH
Atmospheric pressure
70 kPa to 106 kPa
Noise Sound Power Level
l When the heat consumption of the BTS3900C (Ver.C) is lower than or equal to 300 W, the noise sound power level complies with the ETS 300 753 4.1E (Rural) standard. – ≤6.1bels@+25°C – ≤6.7bels@+45°C l When the heat consumption of the BTS3900C (Ver.C) is higher than 300 W, the noise sound power level complies with the ETS 300 753 4.1E (Urban) standard. – ≤6.6bels@+25°C – ≤7.6bels@+45°C
Storage Time
It is recommended that the device be installed and used within one year after its delivery because of the failure rate.
Surge Protection Specifications Table 6-950 and Table 6-951 list the surge protection specifications of ports on a BTS3900C cabinet and a BTS3900C (Ver.C) cabinet, respectively. NOTE
l Unless otherwise specified, the surge protection specifications depend on the surge waveform of 8/20 μs. l All the surge current items, unless otherwise specified as Maximum discharge current, refer to Nominal discharge current.
Table 6-950 Surge protection specifications of ports on a BTS3900C cabinet Port
Surge Protection Mode
Specification
DC port
Surge current
Differential mode
10 kA
Common mode
15 kA
Differential mode
40 kA
AC port
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Surge current
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3900 Series Base Station Technical Description
6 Product Specifications
Port
Surge Protection Mode Common mode
Specification 40 kA
Table 6-951 Surge protection specifications of ports on a BTS3900C (Ver.C) cabinet Port
Surge Protection Mode
Specification
DC port
Surge current
Differential mode
10 kA
Common mode
20 kA
Differential mode
40 kA
Common mode
40 kA
AC port
Surge current
Standards The BTS3900C and BTS3900C (Ver.C) cabinets comply with the same standards, as provided in the following table. Table 6-952 Standards with which the BTS3900C and BTS3900C (Ver.C) cabinets comply Item
Standard
Security standards
l X.509: Supported in GBSS14.0/RAN14.0/eRAN3.0/SRAN7.0 and later versions l RFC 1825: Supported in GBSS14.0/RAN14.0/eRAN3.0/SRAN7.0 and later versions l RFC 1826: Supported in GBSS14.0/RAN14.0/eRAN3.0/SRAN7.0 and later versions l RFC 1827: Supported in GBSS14.0/RAN14.0/eRAN3.0/SRAN7.0 and later versions l RFC 4492: Supported in all versions l RFC 5246: Supported in GBSS15.0/RAN15.0/eRAN6.0/SRAN8.0 and later versions l Secure Socket Layer (SSL): Supported in all versions
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Protectio n rating
IP55
Operating environm ent
ETS 300 019-1-4 Class 4.1
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3900 Series Base Station Technical Description
6 Product Specifications
Item
Standard
Storage
ETSI EN300019-1-1V2.1.4 (2003-04) class 1.2 "Weatherprotected, not temperature-controlled storage locations"
Transport ation
ETSI EN300019-1-2V2.1.4 (2003-04) class 2.3 "Public transportation"
Antiseismic performa nce
IEC 60068-2-57: Environmental testing -Part 2-57:Tests -Test Ff:Vibration Time-history method
Antiearthquak e performa nce
ETSI EN 300019-1-4: "Earthquake"
Noise
l ETS 300 753 4.1E (rural area)
YD5083: Interim Provisions for Test of Anti-seismic Performances of Telecommunications Equipment (telecom industry standard in People's Republic of China)
l ETS 300 753 4.1E (urban area)
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3900 Series Base Station Technical Description
6 Product Specifications
Item
Standard
EMC
NOTE The BTS3900C complies with the following standards. If interference exists because the BTS3900C is installed near antennas or other radio receive devices, you are advised to extend the distance between them or adjust the location and direction of antennas.
The multi-mode base station meets the Electromagnetic Compatibility (EMC) requirements and complies with the following standards: l R&TTE Directive 1999/5/EC l R&TTE Directive 89/336/EEC l ETSI EN 301489-1/8/23 l 3GPP TS 25.113 l ETSI EN 301908-1 l ITU-T SM 329-10 l FCC PART15 The NodeB has been certified by European standards. The NodeB meets the EMC requirements and complies with the following standards: l CISPR 22 (1997) l EN 55022 (1998) l EN 301 489-23 V1.2.1 (2002-11) l CISPR 24 (1998) l IEC 61000-4-2 l IEC 61000-4-3 l IEC 61000-4-4 l IEC 61000-4-5 l IEC 61000-4-6 l IEC 61000-4-29 l GB 9254-1998 l ETSI 301 489-1 V1.3.1 (2001-09) l FCC Part 15
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3900 Series Base Station Technical Description
7 Reliability
7
Reliability
3900 series base stations adopt a platform design so that hardware can be shared on this platform. This provides mature communications technologies and stable transmission reliability.
System Reliability 3900 series base stations feature a reliability design with load sharing and redundancy configuration, optimized fault detection and isolation technologies for boards and the system. This greatly enhances system reliability. l
l
Redundancy configuration –
Units such as the power supply unit all support redundancy configuration.
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CPRI ports that connect the BBU and RF modules support the ring topology. When one CPRI link becomes faulty, services are automatically switched over to the other CPRI link.
–
Key files such as software versions and data configuration files all support redundancy backup.
Reliability The system automatically detects and diagnoses faults in the software, hardware, and environment, and reports alarms. Then the system automatically clears the faults using self-healing measures. If the faults cannot be cleared, the faulty units will be automatically isolated.
Hardware Reliability l
Anti-misinsertion of boards When a board is mistakenly inserted into the slot of another board, this board cannot be connected to the backplane, and in this way, the equipment is free from damage.
l
Overtemperature protection When the temperature near the power amplifier (PA) in an RF module is too high, the base station reports an over-temperature alarm and immediately shuts down the PA. This function protects the PA from damage caused by over-temperature.
l
Reliable power supply –
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Wide voltage range and surge protection Huawei Proprietary and Confidential Copyright © Huawei Technologies Co., Ltd.
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3900 Series Base Station Technical Description
l
7 Reliability
–
Power failure protection for programs and data
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Protection of power supply against overvoltage, overcurrent, and reverse connection of positive and negative poles on boards
All-round surge protection design Surge protection is provided for AC and DC power sockets, input and output signal ports (E1/T1 port, FE/GE ports, interconnection ports, and Boolean alarm port), antenna connectors, and GPS ports. GPS is short for Global Positioning System.
Software Reliability l
Redundancy backup The system stores important files or data such as software versions and data configuration files to ensure normal operation of the system when errors occur in these files or data.
l
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Software versions: The system stores software versions. If the current version is abnormal, the system switches over to the backup version, which ensures normal operation of the base station.
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Data configuration files: The system stores data configuration files in different partitions. If the current file is damaged, the base station can continue working properly by loading the backup file.
Error tolerance When software errors occur, the system can still work due to its self-healing and error tolerance capabilities, which are supported by the following functions:
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Scheduled check of key resources: The system checks software resource usage periodically. If resources cannot be released because of software errors, the system can release the occupied resources in time and export logs and alarms.
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Task monitoring: When software is running, monitoring processes check for internal software faults or certain hardware faults. If an error occurs in a task, an alarm is reported and self-healing measures are taken to restore the task.
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Data verification: The system performs scheduled or event-driven data consistency check, restores data selectively or preferably, and generates logs and alarms.
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Watchdog: When a software error occurs, the base station system detects the error using the software and hardware watchdogs and automatically resets.
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