Security Level:
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Huawei NodeB Hardware & Dimension www.huawei.com
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Huawei Confidential
Contents
Huawei NodeB Hardware & Dimension
Huawei NodeB family overview
R4 platform hardware introduction
R4 platform hardware configuration rule
New HW in R3 platform in RAN10.0
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The Uni BTS Never stop to focus on
High quality and stability Reduce CAPEX& OPEX Fast deployment Smooth evolution Improve power efficiency Integrated architecture
Convergent architecture W/G/L/C/WiMAX Co-platform Stackable Design Open architecture Zero footprint RRU3801C
High-performance
RRU
HSDPA Digital Multi-Carrier PA indoor BBU BBU3806
R4 BTS3812 E BTS3812
R3
o de B Ev o N i e w Hua R2
R1
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lution
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outdoor
Huawei NodeB Family R3 design Distributed
Macro NodeB
Mini NodeB
NodeB
Indoor distributed NodeB RHUB
BBU BTS3812E BTS3812AE
DBS3800 BBU3806/C+RRU3801C
BTS3801C BTS3803C
iDBS3800 BBU3806+RHUB380 8+pRRU3801
R4 design Macro NodeB
Distributed NodeB
Micro NodeB
Indoor distributed NodeB RHUB
BBU BTS3900 BTS3900A
DBS3900 BBU3900+RRU3804/ RRU3801E
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BTS3900C
iDBS3900 BBU3900+RHUB380 8+pRRU3801 Page 4
Advanced Architecture: Same modules for all NodeB portfolio
Main Module RRU/RFU 60W/80W Output Power
Distributed Node B DBS3900
1
Indoor macro Node B BTS3900
2
BBU
Outdoor macro Node B BTS3900A
3
19 inch Support 24 cells
Convergence Distributed Node and traditional Node B, Only 3 module for all Node B More flexible for deployment
Optimized Logistics costs
Minimized spare part stock
Lower Maintenance costs
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Contents
Huawei NodeB Hardware & Dimension
Huawei NodeB family overview
R4 platform hardware introduction
R4 platform hardware configuration rule
New HW in R3 platform in RAN10.0
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Units and auxiliary devices of the 3900 series Node Bs
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BBU3900 specification Mechanical Dimensions Weight
442 mm x 86 mm x 310 mm (W x H x D) 7kg (typical configuration) 11 kg (full configuration)
Power supply
-48V DC Range from: –38.4 V DC to –57 V DC
19inch
310mm Max power consumption
Typical: 100W Maximum: 250W
2U
Temperature range Configuration
-20 to +55°C Maximum: 6 sectors×4 carriers, 3 sectors×8 carriers
BBU3900
Capacity (1 BBU)
1536 UL / 1536 DL CE
2-way receive diversity 4-way receive diversity
Standard
Transmit diversity
STTD or TSTD supported
Max distance RRU/BBU
Up to 40km, 4-level RRU cascading to 100km
IP environmental ratings
IP20
Interface with RRU
Optional
6 CPRI 2.0 optical or electrical 1.25Gbit/s 2.5Gbit/s
Transmission interfaces
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max 32 E1 or 4 FE+8 E1
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DBS3900-RRU Specification
RRU3804/RRU3801E
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Frequency band
2100 MHz: DL:1920–1980 UL: 2110–2170 1900 MHz: DL:1850–1910 UL: 1930–1990 850 MHz: DL: 824–849 UL: 869–894 AWS: DL:1710-1755 UL: 2110-2155
Output power
RRU3804: 4 carriers per RRU, 60 W antenna output power RRU3801E: 2 carriers per RRU, 40W antenna output power
Receiver sensitivity
-129.3dBm (2-way Rx diversity) 2100M
Power supply
-48 V DC Voltage range: –38.4 V DC to –57 V DC
CPRI interface
2 CPRI interfaces(1.25Gbps, CPRI V2.0)
Weight (kg)
15kg without cover
Dimensions (H x W x D)
480mm*270mm*140mm without cover
Operation temperature
–40°C to +45°C (with solar radiation of 1,120 W/m2) –40°C to +50°C (without solar radiation)
Future proofness
Hardware ready for 64QAM, MIMO, LTE
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DBS3900-SRXU Specification
Frequency band
2100 MHz: DL:1920–1980 UL: 2110–2170
Dimensions (H x W x D)
480mm*270mm*60mm 480mm*270mm*210mm (Installed with RRU)
weight
6kg
Power supply
By RRU3804
Power consumption
30W(maximum)
CPRI interface
2 CPRI interfaces(1.25Gbps, CPRI V2.0)
Operation temperature
–40°C to +45°C (with solar radiation of 1,120 W/m2) –40°C to +50°C (without solar radiation)
The RRU3804 can support 4-way RX diversity by adding an SRXU externally
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WRFU specification
WRFU
Frequency band
2100 MHz: DL:1920–1980 UL: 2110–2170
Output power
type1: 4 carriers per WRFU, 80 W antenna output power type2: 2 carriers per WRFU, 40W antenna output power
Receiver sensitivity
-129.3dBm (2-way Rx diversity)
Power supply
-48 V DC Voltage range: –38.4 V DC to –57 V DC
Main TX/RX port
1 7/16 DIN
RX diversity port
1 7/16 DIN
CPRI interface
2 CPRI interfaces(1.25Gbps, CPRI V2.0)
Future proofness
Hardware ready for 64QAM, MIMO, LTE
Maximum 80W shared by 4 carriers
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APM30 and APM100 specification APM30
APM100
Dimensions (W x H x D)
600 mm × 700 mm × 480 mm
600 mm x 1130 mm x 600 mm
Weight
< 65 kg
≤ 88 kg
Working temperature
–40°C to 45°C (with1120 W/m2 solar radiation)
North model: – 40°C to 45°C South model: –5°C to 45°C
APM30 Input voltage
176 V AC to 290 V AC 220 V AC single-phase 110 V AC dual-wire
DC outputs
10 A x 5: 5 50 A x 1: 1 5 A x 2: 2
16 A x 4: 4 32 A x 2: 2
Output voltage
–58 V DC to –44 V DC
Space for user equipment
7U Without user equipment 5U with 2U BBU3900 5U with 12Ah or 24Ah battery 2U with 36Ah battery
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4U with 100Ah battery
Indoor cabinet
Dimensions (H x W x D)
900 mm x 600 mm x 450 mm
Empty Cabinet Weight
< 70 kg
Working temperature
–20°C to +50°C
Input voltage
–48 V DC, Voltage range: –38.4 V DC to –57 V DC +24 V DC, Voltage range: +21.6 V DC to +29 V DC 220 V AC single-phase and threephases power cable
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Maximum configuration of RFU module
6
Maximum configuration of BBU3900 module
1
Protection level
IP20
Space for user equipment
2U
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Outdoor RFU cabinet Dimensions (W x H x D)
600 mm × 700 mm × 480 mm
Empty Cabinet Weight
< 55 kg
Working temperature
–40°C to 45°C (with1120 W/m2 solar radiation) -48V
Input voltage
3 RFU cabinet
Maximum configuration of RFU module
3 RFU cabinet: 3 6 RFU cabinet: 6
Protection level
IP55
Built batteries for 3RFU cabinet
50Ah and 100Ah optional
BTS3900A 6 RFU cabinet
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RFU cabinet + APM30 = BTS3900A
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BTS3900 specification
Two cabinet can be stacked with one footprint
Frequency band
2100 MHz: DL:1920–1980 UL: 2110–2170
Output power
type1: 4 carriers per WRFU, 80 W antenna output power type2: 2 carriers per WRFU, 40W antenna output power
Power supply
–48 V DC, Voltage range: –38.4 V DC to –57 V DC +24 V DC, Voltage range: +21.6 V DC to +29 V DC 220 V AC single-phase and three-phases power cable
Receiver sensitivity
-129.3dBm (2-way Rx diversity) 2100M
Capacity
24 cells; Maximum configuration: 6 sectors x 4 carriers, 3 sectors x 8 carriers UL: 1,536 CEs DL: 1,536 CEs
Transmission interface
A maximum of 32 E1/T1 ports, 2 FE electrical ports, 2 FE optical ports
Dimensions (H x W x D)
900 mm x 600 mm x 450 mm
Power consumption
Configuration 3x1 3x2 3x3 3x4
Typical 520W 610W 810W 1020W
Note for power consumption: typical 50%load, max 100%load
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Maximum 620W 830W 1070W 1330W
BTS3900A specification Frequency band
2100 MHz: DL:1920–1980 UL: 2110–2170
Output power
type1: 4 carriers per WRFU, 80 W antenna output power type2: 2 carriers per WRFU, 40W antenna output power
Receiver sensitivity
-129.3dBm (2-way Rx diversity) 2100M
Power supply
220 V AC single-phase and three-phases power cable 110 V AC dual-live-wire power cable
Capacity
24 cells; Maximum configuration: 6 sectors x 4 carriers, 3 sectors x 8 carriers UL: 1,536 CEs DL: 1,536 CEs
Transmission interface
A maximum of 32 E1/T1 ports, 2 FE electrical ports, 2 FE optical ports
Dimensions (H x W x D)
700 mm x 600 mm x 480 mm
APM30
RFU cabinet
Power consumption (AC)
Estimate of typical Power Backup time with Typical power consumption and new battery
Configuration
Typical 50% load
Maximum 100% load
50 Ah
100 Ah
3x1
630 W
740 W
3.8 hours
8.8 hours
3x2
730 W
970 W
3.2 hours
7.5 hours
3x3
950 W
1300 W
2.3 hours
5.2hours
3x4
1220 W
1580 W
1.6 hours
3.8 hours
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DBS3900 specification
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Frequency band
2100 MHz: DL:1920–1980 UL: 2110–2170 1900 MHz: DL:1850–1910 UL: 1930–1990 850 MHz: DL: 824–849 UL: 869–894 AWS: DL:1710-1755 UL: 2110-2155
Output power
One RRU module supports 4 carriers, 60 W output power.
Power supply
-48 V DC Voltage range: –38.4 V DC to –57 V DC 220 V AC single-phase power cable 110 V AC dual-live-wire power cable
Capacity
24 cells; Maximum configuration: 6 sectors x 4 carriers, 3 sectors x 8 carriers UL: 1,536 CEs DL: 1,536 CEs
Transmission interface
A maximum of 48 E1/T1 ports, 2 electrical FE ports, 2 optical FE ports
Dimensions (H x W x D)
BBU3900: 442 mm x 86 mm x 310 mm (W x H x D) RRU3804: 480 mm x 270 mm x 140 mm (W x H x D) (without cover) RRU3801E: 480 mm x 270 mm x 140 mm (W x H x D) (without cover)
Power consumption
Configuration 3x1 3x2 3x3
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Typical 400W 550W 710W
Page 17
Maximum 500W 740W 970W
BTS3900C specification
AC input
DC input HUAWEI TECHNOLOGIES CO., LTD.
Frequency band
2100 MHz: DL:1920–1980 UL: 2110–2170 1900 MHz: DL:1850–1910 UL: 1930–1990 850 MHz: DL: 824–849 UL: 869–894 AWS: DL:1710-1755 UL: 2110-2155
Output power
One RRU module supports 3 carriers, 60 W output power.
Receiver sensitivity
-129.3dBm (2-way Rx diversity) 2100M
Power supply
-48 V DC Voltage range: –38.4 V DC to –57 V DC 220 V AC single-phase power cable 110 V AC dual-live-wire power cable
Capacity
3 cells, Maximum configuration: 1x3 UL: 384 CEs DL: 384 CEs
Transmission interface
A maximum of 8 E1/T1 ports, 2 FE electrical ports, 2 FE optical ports
Weight (kg)
35
Dimensions (H x W x D)
600 mm x 400 mm x 390 mm 600 mm x 240 mm x 390 mm (used as outdoor BBU)
Power consumption
Configuration 1x1 1x2 1x3
Operation temperature
–40°C to +45°C (with solar radiation of 1,120 W/m2) –40°C to +50°C (without solar radiation)
Protection level
IP55
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Typical 230W 280W 330W
Maximum 260W 350W 420W
Page 18
Contents
Huawei NodeB Hardware & Dimension
Huawei NodeB family overview
R4 platform hardware introduction
R4 platform hardware configuration rule
New HW in R3 platform in RAN10.0
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3900 Overview : Architecture RNC
RNC
IP mobile backhaul
ATM mobile backhaul
Capacity of One BBU Iub Interface
RRU/
RRU/
RRU/
RFU
RFU
RFU
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sion
CPRI
Exten
W B B P
pacit y
W B B P
UL:1536 DL:1536
E1
32
FE Electrical
2
FE optical
2
Capacity of One RRU/RFU Sector
1
Carrier
4
RF C a
SPM SPM BB unit W B B P
CE
Interface of One BBU
BB C apac ity Exten sion
UTRP
W B B P
24
Conn e
ctivity Exten sion
TR Unit
BBU3900
Cell
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System Architecture of BBU 2U Height 8 slots
WMPT: UTRP:
WCDMA Main Processing & Transmission unit
Universal Transmission Processing Unit
WBBP: WCDMA baseband processing and interfacing board
8 card slots, flexible replace and easy evolution
High integrated and capacity, 2U size support 24 cells, UL/DL 1536CE
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WMPT Configuration Rule F A N
•
WBBP WBBP WBBP WBBP
UTRP UTRP WMPT WMPT
WMPT:
Transport interface: 4 E1, 1FE electrical interface, 1FE optical interface
Clock function: Provides primary reference clock signals for the entire Node B
Signaling processing for the whole Node B
O&M: Supporting O&M
The maximum configuration of WMPT is 2, the minimum is 1
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PWR PWR
WBBP Configuration Rule UL R99/HSUPA CEs
F A
HS-DPCCH
UL
N Common channel
UTRP UTRP WMPT WMPT
PWR PWR
Reserved CEs and cost free for common channels
DL R99 CEs
HS_DSCH
WBBP WBBP WBBP WBBP
90Codes
Dedicated processing resource for HSDPA, no CE consumption for HSDPA
DL Common channel
Board Type
Cell
Uplink R99 /HSUPA CE
Downlink R99 CE
HSDPA Capacity
HSDPA throughput
HSUPA throughput
WBBPa
3 cells
128
256
45 HS-PDSCH codes
15Mbps
6Mbps
WBBPb1
3 cells
64
64
45 HS-PDSCH codes
15Mbps
6Mbps
WBBPb2
3 cells
128
128
45 HS-PDSCH codes
15Mbps
6Mbps
WBBPb3
6 cells
256
256
90 HS-PDSCH codes
30Mbps
12Mbps
WBBPb4
6 cells
384
384
90 HS-PDSCH codes
30Mbps
12Mbps
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UTRP Configuration Rule F
WBBP WBBP WBBP WBBP
A N 8*E1 UTRP
UTRP
WBBP
UTRP
WBBP
8*E1
8*E1
8*E1
8*E1
2*FE+4*E1
8*E1
WBBP
UTRP
UTRP
UTRP
UTRP
WMPT
PWR
8*E1 8*E1
2*FE+4*E1
8*E1
UTRP
WMPT
3×8 + 4×2 =32E1
UTRP
PWR
2*FE+4*E1
WMPT 2*FE+4*E1
UTRP UTRP WMPT WMPT
WMPT
8×6+4×2=56E1
•
It is an optional board to be configured
•
One UTRP provides 8E1/T1, other type is to be planned
•
The maximum configuration of UTRP is 6, the minimum is 0
•
Support ATM and IP hub Node B. Maximum 32E1, 16 downstream Node B. Support 5 level network
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RRU Configuration Rule
•
RF signals processing including two RX channels and one TX channel
•
The maximum configuration of RRU is 6, the minimum is 1
•
Capacity:1 Sectors, 4 Carriers, 60W output power
•
license control enable smooth capacity expansion to protect operator’s investment.
•
Carrier license is quoted for additional carrier (2nd, …) within one RRU
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WRFU Specification
WRFU Maximum 80W shared by 4 carriers
Max 80W output power, and 4 carriers 1-carrier configuration: 60 W per carrier
2-carrier configuration: 40 W per carrier 3, 4 carrier configuration: 20 W per carrier
The configuration in one (BTS3900/BTS3900A)cabinet The maximum confiugration is 6, and typical configuration 1 WRFU per sector
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NodeB HW Configuration example NodeB Requirements: S111/20W, 3E1, DL/UL: 32CE/30CE, HSDPA 10 code/16QAM, HSUPA phase1, BBU installed indoors Distributed NodeB requirement.
Unit
Quant ity
Remark
BBU3900 Subrack
1
Basic Module , One Subrack per Node B
1
Main Control and Transport unit, provides 4 E1 and 1 electrical FE and 1
WMPT
optical FE interfaces WBBPb2
1
Baseband Processing b2, HSUPA Phase2, Cell:6, CE UL:128 L:128.
RRU
3
S111 configuration, 3 RRU needed
Optical Transceiver Module
6
2 Optical Transceiver Module per RRU
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Contents
Huawei NodeB Hardware & Dimension
Huawei NodeB family overview
R4 platform hardware introduction
R4 platform hardware configuration rule
New HW in R3 platform in RAN10.0
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New HW in R3 platform in RAN10.0 EBBC (Extension
Extension Baseband Card
Baseband Card)
It is a new sub board for BBU3806 to support HSUPA Phase2
for BBU3806 EBBM (Extension
Extension Baseband Module
Baseband Card)
It is a new sub board for BBU3806C to support HSUPA Phase2
for BBU3806C EBBI
Enhanced BaseBand Interface processing Unit Supporting HSUPA p2 for BB expansion and evolution in BTS3812E and BTS3812AE
EULP
Enhanced Uplink Processing Unit Supporting HSUPA p2 for BB expansion and evolution in BTS3812E and BTS3812AE
WRFU 8U
To support expansion and evolution in BTS3812E
SASU(RAN6.1)
Same band Antenna Sharing Unit
SASA(RAN6.1)
If diversity transmit is configured at the GSM BTS, then the SASA900 is required
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EBBC specification The EBBC capacity and function is: 3 RACH R99 (support up to 3*1,i.e. ) Support E-UL (2ms TTI) in 6 cells with BBU3806 Hardware ready for 64QAM and MIMO Support CCPIC in 3 cells Maximum throughput up to 12Mbps for both R99 and HSUPA P2 in UL direction. Maximum throughput up to 30Mbps for both R99 and HSDPA in DL direction. Total maximum throughput for HBBU and EBBC up to 40Mbps for sum of UL and DL HSPA+ : software upgrading
512CE/384CE + 90 code
256CE/192CE + 45 code
HSPA+ hardware ready
Huawei 1U 1Q/2007 For capacity expansion
EBBC 1Q/2008
For HSUPA II /HSPA+
EBBC 1Q/2009
One BBU3806 has 1 extension slot to evolution Support 3*2 in 1U space Support 2BBU interconnection for large capacity 3*4 HUAWEI TECHNOLOGIES CO., LTD.
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EBBM specification The EBBM capacity and function is: 3 RACH R99 (support up to 3*1,i.e. ) Support E-UL (2ms TTI) in 6 cells with BBU3806C Hardware ready for 64QAM and MIMO Support CCPIC in 3 cells Maximum throughput up to 12Mbps for both R99 and HSUPA P2 in UL direction. Maximum throughput up to 30Mbps for both R99 and HSDPA in DL direction. Total maximum throughput for HBBU and EBBC up to 40Mbps for sum of UL and DL
Configuration
Uplink R99 CE
Downlink R99 CE
HSDPA Capacity
HSUPA phase1 CE
HSUPA phase2 CE
1 BBU3806C
192
256
45 HS-PDSCH codes
128
NA
1 BBU with EBBM
384
512
90 HS-PDSCH codes
320
192
BBU3806C interconnection is not supported for it is for micro application HUAWEI TECHNOLOGIES CO., LTD.
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EBBI specification EBBI R99 E-UL 10ms E-UL 2ms R99
UL 384 CE 128CE DL 384 CE 256CE
ULCCH 6CE Common control channel reserved. Free for operator
DLCCH 16CE for PCCPCH,SCCPCH, E-AGCH/E-RGCH/E-HICH
UL384 HS-DPCCH
HSDPA DL 90 HS-PDSCH
24 HS-SCCH
6 RACH R99 (support up to 3*2,i.e. ) Support E-UL (2ms TTI) Hardware ready for 64QAM and MIMO Support CCPIC in 6 cells Maximum throughput up to 12Mbps for both R99 and HSUPA P2 in UL direction. Maximum throughput up to 30Mbps for both R99 and HSDPA in DL direction The maximum configuration of EBBI in BTS3812E/AE is 6
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EULP specification EULP R99 E-UL 10ms E-UL 2ms
HSDPA
UL 384
CE
ULCCH 6CE Common control channel reserved. Free for operator
UL384 HS-DPCCH
6 RACH R99 (support up to 3*2,i.e. ) Support E-UL (2ms TTI) Support CCPIC uplink function in 6 cells Maximum throughput up to 12Mbps for both R99 and HSUPA in UL direction. The maximum configuration of EULP in BTS3812E/AE is 2
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WRFU plugged in BTS3812E
fake AFU
MAFU
fake AFU
MAFU
fake AFU
WRFU
MTRU
WRFU
MAFU
wireholder
MTRU NBBI
WRFU
MTRU
b u s b a r NFAN
WRFU H B B I
Maximum 80W shared by 4 carriers
H B B I
N U L P
N U L P
N U L P
Max 80W output power, and 4 carriers 1-carrier configuration: 60 W per carrier
N U L P
N U L P
N U L P
N D L P
N N D M L P P T
wireholder
2-carrier configuration: 40 W per carrier 3, 4 carrier configuration: 20 W per carrier
RFU: which is compatible with existing Macro NodeB
Typical configuration 1 WRFU per sector
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N M P T
N D T I
N D T I
N D T I
N B B I
N M O N
N C C U
SASU scheme and application
TX path is independent for GSM and UMTS; RX path is shared for both GSM and UMTS; Especially suit for suburban and rural coverage. No impact on frequency plan and reassignment; No additional protection band between GSM and UMTS; The noise figure increased is less than 0.4dB; TMA is not needed when RRU is near the antenna.
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SASU specification
Wall mounting
Mast mounting
Pole mounting
Item
Specification
Frequency
TX: 925 MHz to 960 MHz; RX: 880 MHz to 915 MHz
TX insertion loss
0.4 dB (typical value)
TX return loss
≤ –18 dB
RX return loss
≤ –15 dB (electrify)
Isolation between RXM
> 20 dB
and RXD Uplink gain
0 dB to 12dB; step: 1dB; precision ≤ ±1 dB; band ripple ≤ 1
Uplink noise figure
dB Typical values: 1.8 dB (12 dB gain), 4 dB (0 dB gain)
PIM
150 dBc (3rd PIM: @880 MHz to 915 MHz)
Power handling
52 dBm (average)/57.1 dBm (peak) (65℃, 0.545 atm)
IP-1
–3 dBm
Impedance
50 Ω
AISG OOK
2.176 MHz
Temperature range
-–40℃ to 65℃
Application
Indoor or outdoor (IP66)
Connector
7/16 DIN female
Weight
8.5 kg
Dimensions (width x
386 mm x200 mm x 118.6 mm
height x depth)
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SASA scheme and application
ANT_M
ANT_D
TX filter RX filter L
ASA
SASU
TX path
UMTS_M
ANT_M
RX path
DC path
ANT_D
Bias Tee UMTS_D ANT_M ANT_D
GSM_M
GSM_D
SASA GSM_M
GSM_D
NodeB
GSM TX/RX
GSM TX/RX
UMTS
BTS GSM
When GSM transmit power via two antennas, SASA+SASU application with small insertion loss improve the frequency band efficiency
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SASA specification Return loss
Maximum
880 MHz to 915 MHz
≤ 1.2
All ports
925 MHz to 935 MHz
≤ 1.2
GSM_M, ANT_M
940 MHz to 960 MHz
≤ 1.2
GSM_D, ANT_M
880 MHz to 915 MHz
≤ 0.5 dB
GSM_M -> ANT_M GSM_D->ANT_D
insertion loss
Wall mounting
Mast mounting
925 MHz to 935 MHz
≤ 0.8 dB
GSM_M -> ANT_M
940 MHz to 960 MHz
≤ 0.8 dB
GSM_D -> ANT_M
Power
925 MHz to 951 MHz
≥ 100 W (average value)
*
handling
GSM_M→ANT_M 956.8 MHz to 960 MHz
≥ 100 W (average value)
GSM_D→ANT_M PIM
880 MHz to 915 MHz
≤ –130 dBc (3rd order,
Input 2 tone signals at
2 x 20 W tone)
GSM_M port or GSM_D
≤ –160dBc (≥ 5rd
port
order, 2 x 20 W tone) Isolation
940 MHz to 960 MHz
≥ 25 dB
GSM_M -> ANT_M
880 MHz to 935 MHz
≥ 25 dB
GSM_D -> ANT_M
940 MHz to 960 MHz
≥ 25 dB
GSM_D -> ANT_D
Note: @VSWR=1.5 and the respective test signals for GSM port are GSM dual carriers signal, PAR=3.5dB, (pressure: 0.545 atm, Temperature: 65℃) when test is be done, the below 3.5 (high power experiment requirement) is recommended.
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