APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D)
Product Description Issue
03
Date
2013-01-15
HUAWEI TECHNOLOGIES CO., LTD.
Copyright © Huawei Technologies Co., Ltd. 2013. 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.
Trademarks and Permissions and other Huawei trademarks are trademarks of Huawei Technologies Co., Ltd. All other trademarks and trade names mentioned in this document are the property of their respective holders.
Notice The purchased products, services and features are stipulated by the contract made between Huawei and the customer. All or part of the products, services and features described in this document may not be within the purchase scope or the usage scope. Unless otherwise specified in the contract, all statements, information, and recommendations in this document are provided "AS IS" without warranties, guarantees or representations of any kind, either express or implied. The information in this document is subject to change without notice. Every effort has been made in the preparation of this document to ensure accuracy of the contents, but all statements, information, and recommendations in this document do not constitute a warranty of any kind, express or implied.
Huawei Technologies Co., Ltd. Address:
Huawei Industrial Base Bantian, Longgang Shenzhen 518129 People's Republic of China
Website:
http://www.huawei.com
Email:
[email protected]
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
About This Document
About This Document Overview This document presents the exteriors and describes the functions, technical specifications, application scenarios, structure, components, and cable connections of the APM30H (Ver.D), TMC11H (Ver.D), IBBS200D (Ver.D), and IBBS200T (Ver.D). It also describes the configurations, functions, and specifications of the modules and boards, and details such as cable types, cable connections, and connector specifications. l
APM30H is short for advanced power module with heat exchanger.
l
TMC11H is short for transmission cabinet of 11 U high with heat exchanger.
l
IBBS200D is short for integrated battery backup system with direct cooling.
l
IBBS200T is short for integrated battery backup system with thermal electric cooling.
Product Version Product Name
Product Version
APM30H Ver.D (APM30H for short)
V300R003C00
TMC11H Ver.D (TMC11H for short) IBBS200D Ver.D (IBBS200D for short) IBBS200T Ver.D (IBBS200T for short)
Intended Audience l
Base station installation personnel
l
System engineers
l
Site maintenance personnel
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
Contents
Contents About This Document.....................................................................................................................ii 1 Changes in APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description ..............................................................................................................................................................1 2 APM30H Cabinet...........................................................................................................................3 2.1 Cabinet Exterior..................................................................................................................................................4 2.2 Cabinet Engineering Specifications....................................................................................................................4 2.3 Engineering Specifications of Customer Equipment in APM or TMC Series Cabinets....................................8 2.4 Cabinet Application Scenarios.........................................................................................................................11 2.5 Cabinet Interior.................................................................................................................................................13 2.6 Components in an APM30H.............................................................................................................................15 2.6.1 EPU05A...................................................................................................................................................15 2.6.2 Junction Box............................................................................................................................................33 2.6.3 FAN 02D.................................................................................................................................................35 2.6.4 ELU.........................................................................................................................................................36 2.6.5 Door Status Sensor..................................................................................................................................41 2.6.6 Filler Module...........................................................................................................................................44 2.6.7 AC Heater................................................................................................................................................45 2.6.8 SOU.........................................................................................................................................................45 2.7 APM30H Cables...............................................................................................................................................47 2.7.1 Cable List.................................................................................................................................................47 2.7.2 Cable Connections...................................................................................................................................49 2.7.3 PGND Cable............................................................................................................................................52 2.7.4 Equipotential Cable.................................................................................................................................58 2.7.5 Power Cables...........................................................................................................................................63 2.7.6 Signal Cables...........................................................................................................................................75
3 TMC11H Cabinet.........................................................................................................................83 3.1 Cabinet Exterior................................................................................................................................................84 3.2 Cabinet Engineering Specifications..................................................................................................................84 3.3 Cabinet Application Scenarios.........................................................................................................................88 3.4 Cabinet Interior.................................................................................................................................................89 3.5 TMC11H Components.....................................................................................................................................92 3.5.1 DCDU-12B..............................................................................................................................................92 Issue 03 (2013-01-15)
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3.5.2 DCDU-12C..............................................................................................................................................98 3.5.3 FAN 02D...............................................................................................................................................102 3.5.4 Filler Module.........................................................................................................................................102 3.5.5 Junction Box..........................................................................................................................................103 3.5.6 ELU.......................................................................................................................................................105 3.5.7 Door Status Sensor................................................................................................................................111 3.5.8 AC Heater..............................................................................................................................................114 3.5.9 SOU.......................................................................................................................................................115 3.6 TMC11H Cables.............................................................................................................................................116 3.6.1 Cable List...............................................................................................................................................116 3.6.2 Cable Connections.................................................................................................................................119 3.6.3 PGND Cable..........................................................................................................................................120 3.6.4 Equipotential Cable...............................................................................................................................126 3.6.5 Power Cables.........................................................................................................................................131 3.6.6 Signal Cables.........................................................................................................................................144
4 IBBS200D Cabinet.....................................................................................................................151 4.1 Cabinet Exterior..............................................................................................................................................152 4.2 Cabinet Engineering Specifications................................................................................................................152 4.3 Cabinet Interior...............................................................................................................................................154 4.4 IBBS200D Components.................................................................................................................................155 4.4.1 Fan Mounting Frame.............................................................................................................................155 4.4.2 CMUEA.................................................................................................................................................159 4.4.3 Power Distribution Box.........................................................................................................................162 4.4.4 Storage Battery......................................................................................................................................164 4.4.5 ELU.......................................................................................................................................................165 4.4.6 Heating Film..........................................................................................................................................171 4.4.7 Door Status Sensor................................................................................................................................172 4.4.8 Temperature Sensor...............................................................................................................................175 4.5 IBBS200D Cables...........................................................................................................................................180 4.5.1 Cable List...............................................................................................................................................180 4.5.2 Cable Connections.................................................................................................................................182 4.5.3 PGND Cable..........................................................................................................................................184 4.5.4 Equipotential Cable...............................................................................................................................190 4.5.5 Power Cables.........................................................................................................................................195 4.5.6 Signal Cables.........................................................................................................................................202
5 IBBS200T Cabinet......................................................................................................................208 5.1 Cabinet Exterior..............................................................................................................................................209 5.2 Cabinet Engineering Specifications................................................................................................................209 5.3 Cabinet Interior...............................................................................................................................................211 5.4 IBBS200T Components..................................................................................................................................213 5.4.1 TEC........................................................................................................................................................213 5.4.2 CMUEA.................................................................................................................................................214 Issue 03 (2013-01-15)
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5.4.3 Power Distribution Box.........................................................................................................................218 5.4.4 Storage Battery......................................................................................................................................220 5.4.5 ELU.......................................................................................................................................................221 5.4.6 Door Status Sensor................................................................................................................................227 5.4.7 Temperature Sensor...............................................................................................................................230 5.5 IBBS200T Cables...........................................................................................................................................235 5.5.1 Cable List...............................................................................................................................................235 5.5.2 Cable Connections.................................................................................................................................237 5.5.3 PGND Cable..........................................................................................................................................239 5.5.4 Equipotential Cable...............................................................................................................................244 5.5.5 Power Cables.........................................................................................................................................249 5.5.6 Signal Cables.........................................................................................................................................255
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
1 Changes in APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
1
Changes in
APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description This chapter describes the changes in the APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description.
03 (2013-01-15) This is the third commercial release. Compared with 02 (2012-12-30), no information is added. Compared with 02 (2012-12-30), this issue incorporates the following changes. Topic
Change Description
l EPU05A-02 or EPU05A-04 Power Cable
Changed the input power cable for the APM30H to the EPU05A-02 or EPU05A-04 power cable and the EPU05A-03 or EPU05A-05 power cable.
l Power Cable for the EPU05A-03 or EPU05A-05 l 3.5.1 DCDU-12B l 3.5.2 DCDU-12C l 2.6.1 EPU05A l 2.6.3 FAN 02D l PMU 11A
Changed the input power cable for the TMC11H to the DCDU-12B power cable and the DCDU-12C power cable. Specified the models of the EPU, fan assembly, PMU, and PSU.Specified the models of the EPU, fan assembly, PMU, and PSU.
l PSU (R4850G2)
Compared with 02 (2012-12-30), no information is deleted.
02 (2012-12-30) This is the second commercial release. Issue 03 (2013-01-15)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
1 Changes in APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
Compared with 01 (2012-11-10), no information is added. Compared with 01 (2012-11-10), this issue incorporates the following changes. Topic
Change Description
Power Cables for a Fan Assembly
Added the description of the cables complying with British Standards (BS).
Input Power Cable for a TMC11H Power Cables for the Fan in an IBBS200D TEC Power Cables Power Cables in a Battery Cabinet DCDU-12B Input Power Cable Technical Specifications of an APM30H
Modified the input protection.
Compared with 01 (2012-11-10), no information is deleted.
01 (2012-11-10) This is the first commercial release. Compared with draft A (2012-09-15), no information is added or deleted. Compared with draft A (2012-09-15), some descriptions are optimized, and changed the APM30H (Ver.D2) and TMC11H (Ver.D2) cabinets to APM30H (Ver.D) and TMC11H (Ver.D), respectively. Compared with draft A (2012-09-15), all information about the APM30H (Ver.D1) and TMC11H (Ver.D1) is deleted from this issue.
Draft A (2012-09-15) This is a draft.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
2
APM30H Cabinet
About This Chapter This chapter describes the APM30H cabinet exterior, engineering specifications, application scenarios, as well as boards, modules, and cables in the APM30H cabinet. 2.1 Cabinet Exterior The advanced power module with heat exchanger (APM30H) is used for Huawei wireless products outdoors. It is small and easy to transport. 2.2 Cabinet Engineering Specifications This section describes the engineering specifications of the APM30H, including the power specifications, equipment specifications, surge protection specifications, and environment specifications. 2.3 Engineering Specifications of Customer Equipment in APM or TMC Series Cabinets The customer equipment to be installed in APM or TMC series cabinets must meet the requirements for engineering specifications. 2.4 Cabinet Application Scenarios The APM30H can apply to a distributed base station or a separated macro base station. 2.5 Cabinet Interior The APM30H supplies DC power to the distributed or separated macro base station in outdoor scenarios. It provides space for both the BBU and transmission equipment. If an AC heater or an SOU is not configured in the APM30H and one BBU is installed, 5 U space is provided for the customer equipment. 2.6 Components in an APM30H This section describes the mandatory and optional components in an APM30H. 2.7 APM30H Cables The APM30H cables consist of the power cables, equipotential cables, PGND cables, and signal cables.
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2.1 Cabinet Exterior The advanced power module with heat exchanger (APM30H) is used for Huawei wireless products outdoors. It is small and easy to transport. The following figure shows the exterior of the APM30H. Figure 2-1 Exterior of the APM30H
2.2 Cabinet Engineering Specifications This section describes the engineering specifications of the APM30H, including the power specifications, equipment specifications, surge protection specifications, and environment specifications.
Power Specifications The APM30H supports the input power of 220 V AC single-phase, 220/380 V AC three-phase, 110 V AC dual-live-wire, 120 V AC dual-live-wire, and the output power of -48 V DC. When AC power is used, the base station converts AC power into -48 V DC power. The following table lists the AC input voltage range supported by the APM30H.
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Table 2-1 AC input specifications Power Supply
Rated Voltage
Operating Voltage
Rated Input Current
Input Voltage Frequency
Input Protection
220 V AC single-phase
200 V AC to 240 V AC
176 V AC to 290 V AC
80 A
45 Hz to 65 Hz
220/380 V AC threephase
200/346 V AC to 240/415 V AC
176/304 V AC to 290/500 V AC
32 A
110 V AC dual-livewire
100/200 V AC to 120/240 V AC
90/180 V AC to 135/270 V AC
80 A
120 V AC dual-livewire
120/208 V AC to 127/220 V AC
105/176 V AC to 150/260 V AC
80 A
l Overvolt age protectio n: The system generates an alarm when the input voltage exceeds the AC overvolta ge alarm threshold (301 V by default). l Undervol tage protectio n: The system generates an alarm when the input voltage is lower than the AC undervolt age alarm threshold (74 V by default).
Heat consumption in the APM30H: ≤ 1500 W (heat dissipation capability at the ambient temperature of 50oC or 122oF) (including the BBU, power system, and transmission equipment)
Equipment Specifications The following table lists the equipment specifications of the APM30H.
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Table 2-2 Equipment specifications Item
Specifications
Remarks
Dimensions (H x W x D)
Cabinet (without the base): 700 mm x 600 mm x 480 mm (27.56 in. x 23.62 in. x 18.90 in.)
-
Base: 200 mm x 600 mm x 434 mm (7.87 in. x 23.62 in. x 17.09 in.) Space for the customer equipment (H x W x D)
Configured with one BBU: 5 U x 19 in. x 380 mm
Cabinet weight
≤ 68 kg (149.94 lb)
The depth includes 280 mm (11.02 in.) away from the rear of the subrack mounting ears and 100 mm (3.94 in.) away from the front.
Configured with two BBUs: 3U x 19 in. x 380 mm Total weight of the equipment l Including the cabinet frame, inner air circulation fan, outer air circulation fan, core of the heat exchanger, EPU subrack, and cables l Excluding the BBU, customer transmission equipment, PMU, and PSUs ≤ 87 kg (191.84 lb)
Weight with full configuration l Including the total weight of the equipment, one PMU, five PSUs, and one BBU l Excluding the customer transmission equipment
Cabling and maintenance space at the front
70 mm (2.76 in.)
-
Surge Protection Specifications The following table lists the surge protection specifications of the APM30H. Table 2-3 Surge protection specifications Item
Specifications
Surge protection for AC input ports
In differential mode: l Rated through-current capacity (8/20 us): 30 kA l Maximum through-current capacity (8/20 us): 60 kA
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Item
2 APM30H Cabinet
Specifications In common mode: l Rated through-current capacity (8/20 us): 30 kA l Maximum through-current capacity (8/20 us): 60 kA
Surge protection for DC output ports
l In differential mode (8/20 us): 10 kA l In common mode (8/20 us): 20 kA The DC output corresponds to the secondary load. NOTE The surge protection capacity of the shield layer in an RRU power cable is 40 kA.
Surge protection for signal ports
E1/T1 port: l In differential mode (8/20 us): 3 kA l In common mode (8/20 us): 5 kA FE port: l In differential mode (8/20 us): 3 kA l In common mode (8/20 us): 5 kA
Environment Specifications The APM30H can be used outdoors. The following table lists the environment specifications of the APM30H. Table 2-4 Environment specifications Item
Specifications
Remarks
Operating temperatur e
-40oC to +50oC (-40oF to +122oF)
A heater is required when the temperature is lower than -20oC (-4oF). A sun shield is required when the temperature is higher than 50oC (122oF). NOTE The temperature at which the heater is required is specified as the local average lowest temperature of each day in the coldest month of the year.
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Relative humidity
5% RH to 100% RH
-
Altitude
-60 m to +4000 m (-196.85 ft to +13123.2 ft)
From the altitude of 1800 m (5905.44 ft), the maximum operating temperature drops by 1oC (33.8oF) each time the altitude increases by 220 m (721.78 ft).
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Item
Specifications
Remarks
Wind speed
≤ 67 m/s
-
Storage temperatur e
-40oC to +70oC (-40oF to +158oF)
-
Dustproof and waterproof
IP55
-
Noise
When the heat consumption of the cabinet is equal to or less than 700 W, the noise is equal to or less than 61 dBA at the temperature of 25oC (77oF) and equal to or less than 67 dBA at the temperature of 45oC (113oF).
Meeting the ETS 300 753 4.1E standard (rural area)
When the heat consumption of the cabinet is equal to 1050 W or between 700 W and 1050 W, the noise is equal to or less than 66 dBA at the temperature of 25oC (77oF) and equal to or less than 76 dBA at the temperature of 45oC (113oF).
Meeting the ETS 300 753 4.1E standard (urban area)
2.3 Engineering Specifications of Customer Equipment in APM or TMC Series Cabinets The customer equipment to be installed in APM or TMC series cabinets must meet the requirements for engineering specifications. The customer equipment to be installed in the APM30H (Ver.B), APM30H (Ver.C), APM30H (Ver.D), TMC11H (Ver.B), TMC11H (Ver.C), or TMC11H (Ver.D) must meet the following requirements: l
Dimension requirements The dimension requirements are shown in Figure 2-2. – The width is 19 inch. – The depth of the customer equipment which uses natural ventilation or supports heat dissipation from left to right is less than or equal to 280 mm (11.02 in.). The depth of the customer equipment which supports heat dissipation from front to rear is less than 250 mm (9.84 in.). – The cabling space in front of the front panel is less than or equal to 100 mm (3.94 in.).
l
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Heat dissipation requirements
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– If the customer equipment has built-in fans, the fans must dissipate heat out from left to right or from front to rear. – If the customer equipment does not have built-in fans but uses natural ventilation, a minimum of 1 U space must be reserved above and below the customer equipment to ensure heat dissipation. l
Temperature requirements The following table lists the temperature requirements. Table 2-5 Temperature requirements for the customer equipment Highest Environmental Temperature
Lowest Operating Temperature for the Customer Equipment
Highest Operating Temperature for the Customer Equipment
Equal to or lower than 40° C (104°F)
Equal to or lower than -10° Equal to or higher than 55° C (14°F) C (131°F)
Higher than 40°C (104°F)
Equal to or lower than -10° Equal to or higher than 60° C (14°F) C (140°F)
Figure 2-2 Dimension requirements and heat dissipation requirements
(1) Equipment using natural ventilation
(2) Equipment dissipating heat out (3) Equipment dissipating heat out from left to right from front to rear
The customer equipment to be installed in the APM30, APM30H (Ver.A), TMC, or TMC11H (Ver.A) must meet the following requirements: l
Dimension requirements The dimension requirements are shown in Figure 2-3.
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– The width is 19 inch. – The depth of the customer equipment which uses natural ventilation or supports heat dissipation from left to right is less than or equal to 310 mm (12.20 in.). The depth of the customer equipment which supports heat dissipation from front to rear is less than 280 mm (11.02 in.). – The cabling space in front of the front panel is less than or equal to 70 mm (2.76 in.). l
Heat dissipation requirements – If the customer equipment has built-in fans, the fans must dissipate heat out from left to right or from front to rear. – If the customer equipment does not have built-in fans but uses natural ventilation, a minimum of 1 U space must be reserved above and below the customer equipment to ensure heat dissipation.
l
Temperature requirements The following table lists the temperature requirements. Table 2-6 Temperature requirements for the customer equipment Highest Environmental Temperature
Lowest Operating Temperature for the Customer Equipment
Highest Operating Temperature for the Customer Equipment
Equal to or lower than 40° C (104°F)
Equal to or lower than -10° Equal to or higher than 55° C (14°F) C (131°F)
Higher than 40°C (104°F)
Equal to or lower than -10° Equal to or higher than 60° C (14°F) C (140°F)
Figure 2-3 Dimension requirements and heat dissipation requirements
(1) Equipment using natural ventilation
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(2) Equipment dissipating heat out (3) Equipment dissipating heat out from left to right from front to rear
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2.4 Cabinet Application Scenarios The APM30H can apply to a distributed base station or a separated macro base station.
Distributed Base Stations Configured with an APM30H NOTE
Distributed or separated base stations configured with an IBBS200D and with an IBBS200T are the same in scenarios configured with an APM30H. This section uses the IBBS200D as an example.
The following figure shows the distributed base station where an APM30H is stacked on a battery cabinet. Figure 2-4 Distributed base station where an APM30H is stacked on a battery cabinet
In a distributed base station, an APM30H is configured as follows:
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
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l
The APM30H provides 5 U space for transmission equipment and uses an embedded power system to feed -48 V DC power into the distributed base station, transmission equipment, and storage battery groups in the battery cabinet.
l
When the mains power supply is unavailable, storage battery groups feed -48 V DC power into the distributed base station and transmission equipment.
Separated Macro Base Stations Configured with an APM30H The following figure shows the separated macro base station configured with an APM30H. Figure 2-5 Separated macro base station configured with an APM30H
In a separated macro base station, an APM30H is configured as follows: l
The APM30H provides 5 U space for transmission equipment and uses an embedded power system to feed -48 V DC power into the BBU, RFUs, transmission equipment, and storage battery groups in the battery cabinet.
l
When the mains power supply is unavailable, storage battery groups feed -48 V DC power into the BBU, RFUs, and transmission equipment.
l
The APM30H reports alarms from the fans of the RFC, door status sensor, DCDU, and battery cabinet.
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2.5 Cabinet Interior The APM30H supplies DC power to the distributed or separated macro base station in outdoor scenarios. It provides space for both the BBU and transmission equipment. If an AC heater or an SOU is not configured in the APM30H and one BBU is installed, 5 U space is provided for the customer equipment. The following figure shows the interior of the APM30H. The following figure uses an APM30H in the separated macro base station as an example. For more details about the interior of the APM30H in a distributed base station, see DBS3900 Hardware Description. Figure 2-6 Interior of the APM30H
The following table describes the components in the APM30H.
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Table 2-7 Components in the APM30H N o.
Compone nt
Op tio nal or Ma nd ato ry
Ma xim um Qu anti ty in a Sin gle Cab inet
Remarks
1
Outer air circulation assembly
Ma nda tor y
1
The assembly is installed on the front door, providing inner and outer air circulation and dissipating heat from the cabinet.
2
Junction box
Ma nda tor y
1
The junction box converts one AC input to four AC outputs and is used in the scenario where a service outlet unit (SOU) and multiple heating films or heaters are configured.
3
FAN 02D
Ma nda tor y
1
The fan assembly is configured with fans and central monitoring unit type EA (CMUEA), dissipating heat from the cabinet.
4
SLPU
Ma nda tor y
1
l To provide protection for trunk signals, a signal lightning protection unit (SLPU) is mandatory and installed in the top 1 U space of the cabinet. It is configured with the universal E1/T1 lightning protection unit (UELP) or universal FE lightning protection unit (UFLP). l To provide protection for monitoring signals, an SLPU is optional and installed in the 1 U space below the BBU. It is configured with two universal signal lightning protection unit 2 (USLP2) boards.
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5
Door status sensor
Ma nda tor y
1
The door status sensor monitors the status (open or closed) of the cabinet door.
6
ELU
Ma nda tor y
1
The electronic label unit (ELU) reports the cabinet type automatically to facilitate troubleshooting.
7
EPU05A
Ma nda tor y
1
The EPU converts AC input power to DC output power and distributes the DC power to all the components in the cabinet. The EPU consists of the EPU subrack, PMU, and PSUs.
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N o.
Compone nt
Op tio nal or Ma nd ato ry
Ma xim um Qu anti ty in a Sin gle Cab inet
Remarks
8
BBU3900
Opt ion al
2
A maximum of two BBU3900s can be configured in an APM30H. l The BBU3900 provides physical ports for communication between the BBU3900 and the BSC or RNC, and enables interaction between the base station and the BSC or RNC. l The BBU3900 provides CPRI ports for communication between the BBU and RF modules. l The BBU3900 processes uplink and downlink data.
9
EMUA
Opt ion al
1
The environment monitoring unit type A (EMUA) monitors environment of the equipment.
10
Filler module
Ma nda tor y
3
A filler module is a 1 U high plastic component, which prevents the heat reflux in the empty space below the BBU.
11
AC heater
Opt ion al
1
The AC heater ensures that components in the cabinet work within the acceptable temperature range when the surrounding temperature is low. It can be installed in the 1 U space at the bottom of the cabinet. If both an AC heater and an SOU are configured, the heater is installed in the 1 U space above the SOU.
12
SOU
Opt ion al
1
The service outlet unit (SOU) transfers AC power supply to the customer equipment. It can be installed in the 1 U space at the bottom of the cabinet.
2.6 Components in an APM30H This section describes the mandatory and optional components in an APM30H.
2.6.1 EPU05A An EPU05A converts AC power into DC power and distributes power.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
Components of an EPU05A-02 or EPU05A-04 An EPU05A-02 or EPU05A-04 consists of an EPU05A-02 or EPU05A-04 subrack, a PMU 11A, and PSUs (R4850G2). The following figure shows the components of an EPU05A-02 or EPU05A-04. Figure 2-7 Components of an EPU05A-02 or EPU05A-04
(1) PMU 11A
(2) PSU (R4850G2)
(3) Filler panel
(4) EPU05A-02 or EPU05A-04 Subrack
The following table describes the components of an EPU05A-02 or EPU05A-04. Table 2-8 Components of an EPU05A-02 or EPU05A-04 Module
Description
PMU 11A
It is installed in slot 0.
PSU (R4850G2)
A minimum of two PSUs must be configured. The PSUs must be installed in adjacent slots in the sequence of slot 1 to slot 5.
Filler panel
A filler panel must be installed in a slot not configured with a PSU (R4850G2).
EPU05A-02 or EPU05A-04 subrack
Figure 2-7 shows how slots are numbered in an EPU05A-02 or EPU05A-04 subrack.
Components of an EPU05A-03 or EPU05A-05 An EPU05A-03 or EPU05A-05 consists of an EPU05A-03 or EPU05A-05 subrack, a PMU 11A, and PSUs (R4850G2). Issue 03 (2013-01-15)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
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The following figure shows the components of the EPU05A-03 or EPU05A-05. Figure 2-8 Components of the EPU05A-03 or EPU05A-05
(1) PMU 11A
(2) PSU (R4850G2)
(3) Filler panel
(4) EPU05A-03 or EPU05A-05 Subrack
The following table describes the components of the EPU05A-03 or EPU05A-05. Table 2-9 Components of the EPU05A-03 or EPU05A-05 Module
Description
PMU 11A
It is installed in slot 0.
PSU (R4850G2)
A minimum of two PSUs must be configured. The PSUs must be installed in adjacent slots sequentially from slot 1 to slot 5.
Filler panel
A maximum of five PSUs can be configured in the APM30H (Ver.D). Filler panels must be installed in vacant slots.
EPU05A-03 or EPU05A-05 subrack
Figure 2-8 shows how slots are numbered in the EPU05A-03 or EPU05A-05 subrack.
EPU05A-02 or EPU05A-04 Subrack An EPU05A-02 or EPU05A-04 subrack houses the PMU 11A and PSUs (R4850G2). It also distributes AC input power and DC output power. An EPU05A-02 or EPU05A-04 applies to a separated macro base station. Issue 03 (2013-01-15)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
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Application of an EPU05A-02 or EPU05A-04 Subrack The following table describes the application of an EPU05A-02 or EPU05A-04 subrack. Table 2-10 Application of an EPU05A-02 or EPU05A-04 subrack Type
Description
Application
EPU05A -02
It is a 5 U subrack and houses a maximum of five PSUs (R4850G2) and one PMU. It distributes large- and smallcapacity DC power.
Separated macro base station with external 220 V AC input
EPU05A -04
It is a 5 U subrack and houses a maximum of five PSUs (R4850G2) and one PMU. It distributes large- and smallcapacity DC power.
Separated macro base station with external 110 V AC input
Exterior Figure 2-9 and Figure 2-10 show the exteriors of EPU05A-02 and EPU05A-04 subracks, respectively.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
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Figure 2-9 Exterior of an EPU05A-02 subrack
(1) AC surge protector
(2) PSU1/4 circuit breaker, (3) AC OUTPUT circuit PSU2/5 circuit breaker, and breaker PSU3 circuit breaker
(4) BAT circuit breaker
(5) Circuit breaker for RFC1
(6) Circuit breaker for RFC2
(7) Output port for the storage battery
(8) RFC1 output port
(9) RFC2 output port
(10) LOAD0 to LOAD8 output ports
(11) Spare fuse box
(12) Short-circuiting bar(1)
(13) AC INPUT
(14) AC OUTPUT
-
-
NOTE
When a short-circuiting bar is installed on the AC INPUT wiring terminal to connect the L1, L2, and L3 terminals, the EPU subrack supplies 220 V AC single-phase power. When the short-circuiting bar is not installed on the AC INPUT wiring terminal, the EPU subrack supplies 220 V AC three-phase power.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
Figure 2-10 Exterior of an EPU05A-04 subrack
(1) AC surge protector
(2) PSU circuit breaker
(3) AC OUTPUT1/AC OUTPUT2 circuit breaker
(5) Circuit breaker for RFC1
(6) Circuit breaker for RFC2
(7) Output port for the storage (8) RFC1 output port battery
(9) RFC2 output port
(10) LOAD0 to LOAD8 (11) Spare fuse box output ports
(12) AC INPUT
(13) AC OUTPUT
-
-
-
(4) BAT circuit breaker
Function An EPU05A-02 or EPU05A-04 subrack distributes AC and DC power. l
An EPU05A-02 or EPU05A-04 subrack performs the following AC power distribution functions: – Provides two AC outputs. One is used for the service outlet unit (SOU). The other one is connected to the AC junction box on the left of the cabinet, and divided into four AC power outputs, which are then provided for the heater or heating film. – Reports AC input surge protection alarms.
l
An EPU05A-02 or EPU05A-04 subrack provides 12 DC outputs for a separated macro base station.
Port The following figure shows the power input and output ports on an EPU05A-02 or EPU05A-04 subrack. Table 2-11 and Table 2-12 list the ports in detail.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
Figure 2-11 Power input and output ports on an EPU05A-02 or EPU05A-04 subrack
Table 2-11 AC input and output ports on an EPU05A-02 or EPU05A-04 subrack AC Input/Output Terminal
Wiring Terminal
Connector
AC INPUT
L1, L2, L3, N
OT terminal (M6)
AC OUTPUT
L1, N1, L2, N2
Table 2-12 DC input and output ports and terminals on an EPU05A-02 or EPU05A-04 subrack
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DC output ports
DC Power Supply Unit
Protector
Protector Specification
Connector
LOAD0 and LOAD1
BBU
Fuse(3)
2x30 A
EPC4 or EPC6
LOAD2
FAN
LOAD3
TM_0(1)
LOAD4
TM_1
LOAD5
TM_2 or EMUA
LOAD6
TM_3 or BBU
LOAD7
TMC
LOAD8
IBBS(2)
1x30 A
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
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DC output ports
DC Power Supply Unit
Protector
Protector Specification
Connector
RFC1
RFC1
Breaker
1x125 A
RFC2
RFC2
OT terminal (M6)
BAT
BAT
1x250 A
OT terminal (M8)
NOTE
(1) TM is the customer transmission equipment. LOAD3, LOAD4, LOAD5, and LOAD6 are DC output terminals for the transmission equipment, supporting four DC outputs. (2) When the IBBS200D is configured, LOAD8 is the DC output port for the IBBS200D fan power cable. When IBBS200T is configured, LOAD8 is the DC output port for the IBBS200T TEC power cable. (3) The spare fuse box contains five 5 A fuses and three 30 A fuses for onsite replacement.
Circuit Breaker There are several circuit breakers on the EPU05A-02 or EPU05A-04 subrack panel to control the DC outputs. The following figure shows the positions of circuit breakers and the following table describes the specifications of circuit breakers. Figure 2-12 Circuit breakers on an EPU05A-02 or EPU05A-04 subrack
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
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Table 2-13 Circuit breakers on an EPU05A-02 or EPU05A-04 subrack Circuit Breaker
Silkscreen on the Panel
Requirement for the Circuit Breaker
PSU circuit breakers (EPU05A-02)
PSU1/4
1x40 A/1 P
PSU2/5
1x40 A/1 P
PSU3
1x25 A/1 P
PSU circuit breakers (EPU05A-04)
PSU
1x100 A/2 P
AC output circuit breaker (EPU05A-02)
AC OUTPUT
1x16 A/2 P
AC output circuit breaker (EPU05A-04)
AC OUTPUT1 and AC OUTPUT2
2x16 A/1 P
Storage battery circuit breaker
BAT
1x125 A/2 P
RFC circuit breaker
RFC 1 and RFC 2
2x125 A/1 P
Technical Specifications The following table describes the technical specifications of an EPU05A-02 or EPU05A-04 subrack. Table 2-14 Technical specifications of an EPU05A-02 or EPU05A-04 subrack Component
Specifications
Output voltage
-44 V DC to -58 V DC
Rated voltage
-53.5 V DC
Output current
0 A to 250 A
EPU05A-03 or EPU05A-05 Subrack An EPU05A-03 or EPU05A-05 subrack houses the PMU 11A and PSUs (R4850G2). It also distributes AC and DC power. The EPU05A-03 and EPU05A-05 subrack applies to a distributed base station.
Applications of an EPU05A-03 or EPU05A-05 Subrack The following table describes the applications of an EPU05A-03 or EPU05A-05 subrack. Issue 03 (2013-01-15)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
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Table 2-15 Applications of the EPU05A-03 or EPU05A-05 subrack Type
Description
Application
EPU05A -03
It is a 5 U subrack and houses a maximum of five PSUs (R4850G2) and one PMU 11A. It distributes large- and small-capacity DC power.
Distributed base station supplied with 220 V AC power
EPU05A -05
It is a 5 U subrack and houses a maximum of five PSUs (R4850G2) and one PMU 11A. It distributes large- and small-capacity DC power.
Distributed base station supplied with 110 V AC power
Exteriors Figure 2-13 and Figure 2-14 show the exteriors of the EPU05A-03 and EPU05A-05 subracks, respectively. Figure 2-13 Exterior of the EPU05A-03 subrack
(1) AC surge protector
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(2) PSU1/4 circuit (3) AC OUTPUT circuit breaker, PSU2/5 circuit breaker breaker, and PSU3 circuit breaker
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(4) BAT circuit breaker
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
(5) Circuit breaker for RFC (6) Output terminal for 1 storage batteries
(7) Output terminal for RFC 1
(8) Output terminals for LOAD 0 to LOAD 8
(9) Output terminals for RRU 0 to RRU 5
(10) Spare fuse box
(11) Short-circuiting bar(1) (12) AC INPUT
(13) AC OUTPUT
-
-
-
NOTE
When a short-circuiting bar is installed on the AC INPUT wiring terminal to connect the L1, L2, and L3 terminals, the EPU subrack supports 220 V AC single-phase power. When no short-circuiting bar is installed on the AC INPUT wiring terminal, the EPU subrack supports 220 V AC three-phase power.
Figure 2-14 Exterior of the EPU05A-05 subrack
(1) AC surge protector
(2) PSU circuit breaker
(3) AC OUTPUT 1 or AC (4) BAT circuit breaker OUTPUT 2 circuit breaker
(5) Circuit breaker for RFC (6) Output terminal for 1 storage batteries
(7) Output terminal for RFC 1
(8) LOAD 0 to LOAD 8 output terminals
(9) Output terminals for RRU 0 to RRU 5
(11) AC INPUT
(12) AC OUTPUT
(10) Spare fuse box
Function An EPU05A-03 or EPU05A-05 distributes AC and DC power. l
An EPU05A-03 or EPU05A-05 subrack performs the following AC power distribution functions: – Provides two AC outputs. One is used for the service outlet unit (SOU). The other one is connected to the junction box on the left side of the cabinet interior, and divided into four AC power outputs, which are then provided to the heater or heating film. – Reports AC input surge protection alarms.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
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2 APM30H Cabinet
An EPU05A-03 or EPU05A-05 subrack provides 17 DC outputs for a distributed base station.
Terminals The following figure shows the power input and output terminals on the EPU05A-03 or EPU05A-05 subrack, as shown in Table 2-16, Table 2-17. Figure 2-15 Power input and output terminals on the EPU05A-03 or EPU05A-05 subrack
Table 2-16 AC input and output terminals on the EPU05A-03 or EPU05A-05 subrack AC Input/Output Terminal
Wiring Terminal
Connector
AC INPUT
L1, L2, L3, N
OT terminal (M6)
AC OUTPUT
L1, N1, L2, N2
Table 2-17 DC input and output terminals on the EPU05A-03 or EPU05A-05 subrack
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DC Output Terminal
DC Power Supply Unit
Protector
Protector Specification
Connector
LOAD 0 and LOAD 1
BBU
Fuse(3)
2x30 A
EPC 4 or EPC 6
LOAD 2
FAN
1x30 A
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
DC Output Terminal
DC Power Supply Unit
LOAD 3
TM_0(1)
LOAD 4
TM_1
LOAD 5
TM_2 or EMUA
LOAD 6
TM_3 or BBU
LOAD 7
TMC
LOAD 8
IBBS(2)
RRU 0 to RRU 5
RRU
RFC 1
RFC
BAT
BAT
2 APM30H Cabinet
Protector
Protector Specification
Connector
EPC 5 Breaker
1x125 A
OT terminal (M6)
1x250 A
OT terminal (M8)
NOTE
(1) TM is the customer transmission equipment. LOAD3, LOAD4, LOAD5, and LOAD6 are DC output terminals for the transmission equipment, supporting four DC outputs. (2) When the IBBS200D is configured, LOAD8 is the DC output terminal connecting to the IBBS200D fan power cable. When IBBS200T is configured, LOAD8 is the DC output terminal connecting to the IBBS200T TEC power cable. (3) The spare fuse box can provide five 5 A fuses and three 30 A fuses, which can be used to replace broken ones onsite.
Circuit Breakers There are several circuit breakers on the EPU05A-03 or EPU05A-05 subrack panel to control the DC outputs. The following figure shows the positions of the circuit breakers and the following table describes the specifications of the circuit breakers.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
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Figure 2-16 Circuit breakers on the EPU05A-03 or EPU05A-05 subrack
Table 2-18 Specifications of the circuit breakers on the EPU05A-03 or EPU05A-05 subrack
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Circuit Breaker
Silkscreen
Requirement for the Circuit Breaker
PSU circuit breakers (EPU05A-03)
PSU1/4
1x40 A/1 P
PSU2/5
1x40 A/1 P
PSU3
1x25 A/1 P
PSU circuit breaker (EPU05A-05)
PSU
1x100 A/2 P
AC output circuit breaker (EPU05A-03)
AC OUTPUT
1x16 A/2 P
AC output circuit breakers (EPU05A-05)
AC OUTPUT1 and AC OUTPUT2
2x16 A/1 P
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
Circuit Breaker
Silkscreen
Requirement for the Circuit Breaker
Circuit breaker for storage batteries
BAT
1x125 A/2 P
RFC circuit breaker
RFC1
1x125 A/1 P
Technical Specifications The following table describes the technical specifications of the EPU05A-03 or EPU05A-05 subrack. Table 2-19 Technical specifications of the EPU05A-03 or EPU05A-05 subrack Component
Specifications
Output voltage
-44 V DC to -58 V DC
Rated voltage
-53.5 V DC
Output current
0 A to 250 A
PMU 11A A power monitoring unit 11A (PMU 11A) manages the power system and battery, monitors power distribution, and reports alarms.
Exterior The following figure shows the exterior of a PMU 11A. Figure 2-17 Exterior of a PMU 11A
Function A PMU 11A performs the following functions: Issue 03 (2013-01-15)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
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l
Communicates with the upper-level device through an RS485 port.
l
Manages the power system and the charge and discharge of storage batteries.
l
Monitors the door status and the temperature of storage batteries.
l
Monitors power distribution and reports alarms.
l
Communicates with the battery cabinet through an RS485 port.
Port The following figure shows the ports on a PMU 11A. Figure 2-18 Ports on a PMU 11A
The following table describes the ports on a PMU 11A. Table 2-20 Ports on a PMU 11A No.
Silkscreen
Connector
Description
1
GATE
2-pin connector
Connects to a door status sensor.
2
TEM_BAT
2-pin connector
Connects to a battery temperature sensor.
3
COM_IN
RJ45 connector
Connects to the BBU or communicates with the upper-level monitoring board.
4
COM_OUT
RJ45 connector
Communicates with the lower-level monitoring board.
5
COM_485
RJ45 connector
Connects to the monitoring board in the battery cabinet, and receives monitoring signals from the battery cabinet.
Indicator The following table describes the indicators on a PMU 11A.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
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Table 2-21 Indicators on a PMU 11A Silksc reen
Meanin g
Color
State
Description
RUN
Running indicator
Green
Steady on
The module is performing startup, selfcheck, loading, and activation.
Blinking (on for 1s and off for 1s)
The PMU 11A is functional and communicating with the main control board in the BBU properly. (This status does not necessarily mean that the PMU 11A has been configured.)
Blinking (on for 0.125s and off for 0.125s)
The PMU 11A is functional but unable to communicate properly.
Steady off
The module is faulty or there is no DC power supply.
Steady on
Alarms are generated, and the module must be replaced.
Steady off
No alarm is generated.
Blinking (on for 1s and off for 1s)
An alarm is generated and you need to locate the fault before determining whether to replace the module.
ALM
Alarm indicator
Red
DIP Switch There is a DIP switch on the left panel of the PMU 11A. The DIP switch has eight bits, where the four least significant bits 1, 2, 3, and 4 define the monitoring address of the PMU 11A, and the four most significant bits 5, 6, 7, and 8 are not defined but reserved for future use. ON is indicated by 1, and OFF is indicated by 0. The monitoring address of the PMU 11A is set to 3 by default before delivery, as shown in the following figure. Figure 2-19 DIP switch on the left panel of the PMU 11A
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
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NOTE
At a site configured with two or more APM30Hs, if two PMU units are connected to one RS485 bus for the BBU, the monitoring address of the other PMU is set to 4. That is, the lower four bits of the DIP switch are set to 0010.
PSU (R4850G2) A power supply unit (PSU) (R4850G2) converts 110 V AC or 220 V AC power into -48 V DC.
Exterior The following figure shows the exterior of a PSU (R4850G2). Figure 2-20 Exterior of a PSU (R4850G2)
Function A PSU (R4850G2) performs the following functions: l
Converts 110 V AC or 220 V AC power into -48 V DC and adjusts the output voltage.
l
Provides protection against overcurrent, overvoltage, and overtemperature for its DC outputs.
l
Dissipates heat using its built-in fans.
Indicator The following figure shows the indicators on a PSU (R4850G2). Figure 2-21 Indicators on a PSU (R4850G2)
The following table describes the indicators on a PSU (R4850G2). Issue 03 (2013-01-15)
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Table 2-22 Indicators on a PSU (R4850G2) Silkscree n
Color
State
Description
(1) Power indicator
Green
Steady on
The board is functional.
Blinking (on for 0.125s and off for 0.125s)
The PSU is loading software online.
Steady off
The mains supply or the module is faulty.
Steady off
Yes
Steady on
An alarm triggered by an external factor is generated.
Blinking (on for 1s and off for 1s)
The communication between the module and the PMU is interrupted.
Steady off
Yes
Steady on
The module is faulty or is shut down in an emergency. Locate the fault and replace the module.
(2) Protection indicator
(3) Fault indicator
Yello w
Red
2.6.2 Junction Box The junction box is configured in the BTS3900AL, APM30H, TMC11H, IBBS700D, or IBBS700T cabinet. When a heater or a heating film is configured, the junction box feeds power to the heater or the heating film.
Exterior A junction box is installed on the left inner side of the APM30H, TMC11H, IBBS700D, or IBBS700T. In the BTS3900AL, the junction box is installed on the right inner side of the cabinet. The following figure shows the position and exterior of the junction box in the APM30H.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
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Figure 2-22 Exterior of the junction box
Functions The junction box used in the BTS3900AL, APM30H, TMC11H, IBBS700D and IBBS700T performs the following functions: l
The PDU05A-01 feeds power to the junction box in the BTS3900AL. The power is divided into four AC power outputs, which are then provided for the heater in the cabinet.
l
The EPU subrack feeds power into the junction box in the APM30H. The power is divided into four AC power outputs, which are then provided for the heater in the cabinet or heating film in the IBBS200D.
l
The junction box in the APM30H feeds power into the junction box in the TMC11H. The power is divided into four AC power outputs, which are then provided for the heater or service outlet unit (SOU) in the cabinet.
l
The junction box in the primary cabinet (BTS3900A, BTS3900AL, or TP48600A-H17B1) feeds power into the junction box in the IBBS700D or IBBS700T. The power is divided into four AC power outputs, which are then provided for the heater in the cabinet.
Interior The following figure shows the interior of an AC junction box.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
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Figure 2-23 Interior of an AC junction box
(1) Four AC output L wiring terminals
(2) Four AC output N wiring terminals
(3) Four AC output PE wiring terminals
(4) Cable holes
(5) AC input N wiring terminal
(6) AC input L wiring terminal
2.6.3 FAN 02D A FAN 02C dissipates heat and detects temperature for an APM30H (Ver.D) or TMC11H (Ver.D).
Exterior A FAN 02D consists of the fan subrack, fans, and CMUEA. The following figure shows the exterior of a FAN 02D. Figure 2-24 Exterior of a FAN 02D
(1) Fan subrack
(2) Fans
(3) CMUEA
For details about the ports and indicators on the CMUEA, see CMUEA. Issue 03 (2013-01-15)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
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2.6.4 ELU An electronic label unit (ELU) reports the cabinet type automatically to facilitate troubleshooting.
Exterior The following figure shows the exterior of an ELU. Figure 2-25 Exterior of an ELU
(1) Shell
(2) RJ45 port
NOTE
The ELU in a BTS3900 or BTS3900L has no shell.
The board collecting information from the ELU varies according to the cabinet, as listed in the following table. Table 2-23 Monitoring boards to which an ELU reports information
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Base Station Type
Cabinet
Board Collecting Information from the ELU
BTS3900 (Ver.B) and BTS3900L (Ver.B)
BTS3900 (Ver.B) and BTS3900L (Ver.B)
FMUC
BTS3900 (Ver.C) and BTS3900L (Ver.C)
BTS3900 (Ver.C) and BTS3900L (Ver.C)
FMUE
BTS3900 (Ver.D) and BTS3900L (Ver.D)
BTS3900 (Ver.D) and BTS3900L (Ver.D)
FMUEA
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
Base Station Type
Cabinet
Board Collecting Information from the ELU
BTS3900A (Ver.B)
APM30H (Ver.B), TMC11H (Ver.B), RFC (Ver.B), IBBS200D (Ver.B), and IBBS200T (Ver.B)
CMUA
BTS3900A (Ver.C)
APM30H (Ver.C), TMC11H (Ver.C), RFC (Ver.C), IBBS200D (Ver.C), and IBBS200T (Ver.C)
CMUE
BTS3900A (Ver.D)
APM30H (Ver.D), TMC11H(Ver.D), RFC (Ver.D), IBBS200D(Ver.D), IBBS200T (Ver.D), and IBBS700D
CMUEA
IBBS700T
CMUF
BTS3900C (Ver.C)
OMB (Ver.C)
HEUB
BTS3900AL (Ver.A)
BTS3900AL (Ver.A), IBBS700D, IBBS700T
CCU
Installation Position Positions of ELUs vary in different cabinets. The following figure shows their positions. Figure 2-26 Position of the ELU in a BTS3900 cabinet
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
Figure 2-27 Position of the ELU in a BTS3900L cabinet
Figure 2-28 Position of the ELU in an APM30H or IBBS200D cabinet
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
NOTE
An ELU is located on the right inner wall of the APM30H, TMC11H, or RFC, or on the left inner wall of the IBBS200D or IBBS200T. The preceding figure shows an APM30H and an IBBS200D as an example.
Figure 2-29 Position of the ELU in an OMB
Figure 2-30 Position of the ELU in a BTS3900AL cabinet
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
Figure 2-31 Position of the ELU in a IBBS700D cabinet
NOTE
In the IBBS700D, when the cabinet is configured with a CCU, the ELU is above the CCU. When the cabinet is not configured with a CCU, the ELU is on the right of the CMUEA.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
Figure 2-32 Position of the ELU in a IBBS700T cabinet
NOTE
In the IBBS700T, when the cabinet is configured with a CCU, the ELU is above the CCU. When the cabinet is not configured with a CCU, the ELU is on the left of the CMUF.
2.6.5 Door Status Sensor A door status sensor reports the status (open or closed) of a door. It is installed in any of the following cabinets: BTS3900AL, OMB, OMB (Ver.C), APM30H, RFC, TMC11H, IBBS200D, IBBS200T, IBBS700D, and IBBS700T.
Exterior A door status sensor consists of a magnet and a switch. The following figures show the exteriors of them.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
Figure 2-33 Exterior of the magnet of a door status sensor
(1) Magnetic shell
(2) Magnet
The following figure shows the exterior of the switch of a door status sensor. Figure 2-34 Exterior of the switch of a door status sensor
Installation Position Positions of door status sensors vary in different cabinets. The following figure shows their positions.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
NOTE
l A door status sensor is installed at the same position in the BTS3900AL (Ver.A), IBBS700D, and IBBS700T. Figure 2-35 uses the BTS3900AL (Ver.A) as an example. l A door status sensor is installed at the same position in the OMB and OMB (Ver.C). Figure 2-36 uses the OMB (Ver.C) as an example. l A door status sensor is installed at the same position in the following cabinets: APM30H (Ver.B), APM30H (Ver.C), APM30H (Ver.D), RFC (Ver.B), RFC (Ver.C), RFC (Ver.D), TMC11H (Ver.B), TMC11H (Ver.C), TMC11H (Ver.D), IBBS200D (Ver.B), IBBS200D (Ver.C), IBBS200D (Ver.D), IBBS200T (Ver.B), IBBS200T (Ver.C), and IBBS200T (Ver.D). Figure 2-37 uses the APM30H (Ver.D) as an example.
Figure 2-35 Position of a door status sensor in the BTS3900AL (Ver.A)
Figure 2-36 Position of a door status sensor in the OMB (Ver.C)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
Figure 2-37 Position of a door status sensor in the APM30H (Ver.D)
2.6.6 Filler Module A filler module is a standard plastic component, which prevents heat reflux in the empty space below the BBU and improves the heat dissipation in the cabinet. Filler modules are installed in the customer space of an APM30H or TMC11H.
Exterior A filler module is 1 U high. The following figure shows the exterior of a filler module. Figure 2-38 Exterior of a filler module
Function A filler module is installed in the customer space below the BBU to prevent heat reflux in the empty space below the BBU. NOTE
In an APM30H or TMC11H, the filler module is configured in the customer space by default. Before installing other modules, first remove the filler module. For details about removing a filler module, see chapter "Installing Optional Modules and Cables" in the "Installation Guide".
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
2.6.7 AC Heater An AC heater is optionally installed in the customer space in an APM30H or TMC11H. It ensures that the customer equipment in a cabinet works within the acceptable temperature range.
Exterior The following figure shows the exterior of an AC heater. Figure 2-39 Exterior of an AC heater
Technical Specifications The following table lists the technical specifications of an AC heater. Table 2-24 Technical specifications of an AC heater Counter
Specification
Temperature range in the cabinet when the AC heater starts working
< 1oC (±6oC)
Temperature range in the cabinet when the AC heater stops working
> 15oC (±3oC)
Rated heating power
330 W
2.6.8 SOU A service outlet unit (SOU) transfers AC power to the customer equipment. An SOU is optionally installed in the customer space in an APM30H or TMC11H.
Exterior An SOU is 1 U high. The following figure shows the exterior of an SOU.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
Figure 2-40 Exterior of an SOU
(1) Input power port
(2) Breaker
(3) Socket (European standard)
An SOU applies to the four types of sockets meeting the following standards: North American standard, European standard, Universal standard, and British standard. The following figure shows the exteriors of the four types of sockets. Figure 2-41 Exteriors of different types of sockets
Technical Specifications The following table lists the technical specifications of an SOU. Table 2-25 Technical specifications of an SOU
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Counter
Specification
Dimensions (H x W x D)
482.6 mm x 91 mm x 55 mm (7.87 in. x 23.62 in. x 17.09 in.)
Weight
1.5 kg (3.31 lb)
Input voltage range
200 V AC to 240 V AC
Maximum input current
10 A
Output voltage range
200 V AC to 240 V AC
Maximum output current
10 A
Frequency band
50 Hz or 60 Hz
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
Counter
Specification
Operating temperature
-40oC to +55oC
Altitude
≤ 4,000m NOTE Above the altitude of 3000 m (9842.52 ft), the maximum operating temperature drops by 1oC (33.8oF) as the altitude increases by 100 m (328.08 ft).
Protection class
IP20
2.7 APM30H Cables The APM30H cables consist of the power cables, equipotential cables, PGND cables, and signal cables.
2.7.1 Cable List APM30H cables mainly consist of the PGND cables, equipotential cables, power cables, and signal cables.
Power Cables, PGND Cables, and Equipotential Cables The following table lists the power cables, PGND cables, and equipotential cables. Table 2-26 Power cables, PGND cables, and equipotential cables
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Classif ication
Cable
Cables to be installe d onsite
BTS3900A
One End
The Other End
Connector
Installation Position
Connector
Installation Position
OT terminal
L and N terminals on the AC INPUT terminal block on the EPU
Depending on external power equipment
External power equipment
2.7.3 PGND Cable
OT terminal
Ground bar in the APM30H
OT terminal
Ground busbar outside the cabinet
2.7.4 Equipotential Cable
OT terminal
Ground bar in the APM30H
OT terminal
Ground bar in the lower cabinet
DBS3900
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
Classif ication
Cables installe d before deliver y
Cable
2 APM30H Cabinet
One End
The Other End
Connector
Installation Position
Connector
Installation Position
DCDU-12B Power Cable
OT terminal
RFC1 output port on the EPU in the APM30H
OT terminal
RTN(+) and NEG(-) terminals on the INPUT terminal block on the DCDU-12B
FAN 02D Power Cable
EPC4 or EPC6 connector
LOAD5 port on the EPU in the APM30H
3V3 connector
PWR port on the fan assembly in the APM30H
Power Cable for an AC Heater (in the APM30H)
OT terminal
L0 and N0 terminals on the AC junction box in the APM30H and the cabinet ground bar
C13 connector
Input power port on the AC heater
SOU Power Cable
OT terminal
M4 ground screw, L2 terminal, and N2 terminal on the AC OUTPUT terminal block on the EPU
C13 connector
INPUT port on the SOU
Power Cable for an AC Junction Box (in the APM30H)
OT terminal
M4 ground screw, L1 terminal, and N1 terminal on the AC OUTPUT terminal block on the EPU
OT terminal
L and N terminals on the AC junction box in the APM30H and the cabinet ground bar
NOTE
The connection of power cables for optional components depends on the delivery mode. Table 2-26 describes the power cables in a macro base station.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
Signal Cables The following table describes the signal cables. Table 2-27 Signal cables Classi ficati on
Cable
Cables to be install ed onsite Cables install ed before deliver y
One End
The Other End
Connecto r
Installation Position
Connect or
Installation Position
-
-
-
-
-
PMU 11ACMUEA Monitoring Signal Cable
RJ45 connector
COM_IN port on the PMU
RJ45 connector
COM_OUT port on the CMUEA on the fan assembly in the APM30H
ELU Signal Cable
RJ45 connector
ELU
RJ45 connector
ELU port on the CMUEA
Monitoring Signal Cable for the Door Status Sensor
2-pin connector
GATE port on the PMU
Bare wire
Door status sensor
Monitoring Signal Transfer Cable for the Fan in the Front Door
Interconne ction terminal
Transfer terminal on the front door of the APM30H
4-pin connector
FAN_EXT port on the CMUEA
2.7.2 Cable Connections This section describes the principles for connecting power cables and signal cables in the APM30H.
Power Cable Connections This section describes the power cable connections in the APM30H.
Cable Connections in a Distributed Base Station The following figure shows the APM30H power cable connections in a distributed base station. Issue 03 (2013-01-15)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
Figure 2-42 Power cable connections in a distributed base station
(1) Power Cable for an AC Junction Box
(2) FAN 02D Power Cable (3) Storage Battery Power Cable
(4) DCDU-12B Power Cable
(5) SOU Power Cable
(6) Power Cable for an AC Heater
Cable Connections in a Separated Macro Base Station The following figure shows the APM30H power cable connections in a separated macro base station.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
Figure 2-43 Power cable connections in a separated macro base station
(1) Power Cable for an AC Junction (2) FAN 02D Power Cable Box
(3) Storage Battery Power Cable
(4) Power Cable for the DC Junction (5) Power Cable for the DC Junction (6) SOU Power Cable Box in an RFC Box in an RFC (7) Power Cable for an AC Heater
-
-
Monitoring Signal Cable Connections This section provides reference for onsite installation of monitoring signal cables. The following figure shows the monitoring signal cable connections in the APM30H.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
Figure 2-44 Monitoring signal cable connections in the APM30H
(1) Monitoring signal cable for the fans on the front door
(2) Monitoring signal transfer cable for the fans on the front door
(3) PMU-CMUEA monitoring signal cable
(4) Monitoring signal cable for the door status sensor in the APM30H
(5) ELU signal cable
-
2.7.3 PGND Cable PGND cables ensure that cabinets and internal components are properly grounded and that base stations run properly. PGND cables include classified into PGND cables for cabinets and PGND cables for components.
Exterior The following figure shows the exterior of a PGND cable.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
Figure 2-45 Exterior of a PGND cable
(1) One-hole OT terminal
(2) Two-hole OT terminal
NOTE
In most cases, the PGND cable is a yellow and green colored cable. When 110 V dual-live-wire power is supplied for BTS3900A (Ver.C) and BTS3900A (Ver.D) cabinets, the PGND cables are green.
Description The cross-sectional areas and maximum lengths of PGND cables vary according to the types of cabinets. Table 2-28 and Table 2-29 describe PGND cables. Table 2-28 PGND cables for cabinets
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Base Station Type
Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
BTS3900 (Ver.B) and BTS3900L (Ver.B)
BTS3900 (Ver.B) 15 m (49.21 and BTS3900L ft) (Ver.B)
25 mm2 (0.039 in.2)
BTS3900 (Ver.C) and BTS3900L (Ver.C)
BTS3900 (Ver.C) and BTS3900L (Ver.C)
One-hole OT terminal (M8)
The exterior is shown by illustration 1 in the preceding figure.
BTS3900 (Ver.D) and BTS3900L (Ver.D)
BTS3900 (Ver.D) and BTS3900L (Ver.D)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
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2 APM30H Cabinet
Base Station Type
Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
BTS3900A (Ver.B)
RFC (Ver.B)
8 m (26.25 ft)
16 mm2 (0.025 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
BTS3900A (Ver.C)
RFC (Ver.C)
8 m (26.25 ft)
25 mm2 (0.039 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
BTS3900A (Ver.D)
RFC (Ver.D)
8 m (26.25 ft)
16 mm2 (0.025 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
BTS3900A (Ver.D)
IBBS700D and IBBS700T
5 m (16.4 ft)
35 mm2 (0.054 in.2)
The cable has a onehole OT terminal (M6) on the cabinet side and a one-hole OT terminal (M8) on the ground bar side.
The exterior is shown by illustration 1 in the preceding figure.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
Base Station Type
Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
BTS3900AL (Ver.A)
BTS3900AL (Ver.A)
8 m (26.25 ft)
35 mm2 (0.054 in.2)
Select one of the followin g specificat ions based on the onsite situation:
The exterior is shown by illustration 2 or 3 in the preceding figure.
l The cable has a twohole OT termi nal (M6) at each end, and the distan ce betwe en the two holes of each twohole OT termi nal is 15.8 mm (0.62 in.). l The cable has a twohole OT termi
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
Base Station Type
Cabinet
2 APM30H Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
nal (M6) on the cabin et side and a onehole OT termi nal (M6) on the groun d bar side. The distan ce betwe en the two holes of the twohole OT termi nal is 15.8 mm (0.62 in.). IBBS700D and IBBS700T
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5 m (16.4 ft)
35 mm2 (0.054 in.2)
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The cable has a onehole OT terminal (M6) on the cabinet side and a one-hole OT terminal (M8) on the ground bar side.
The exterior is shown by illustration 1 in the preceding figure.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
Base Station Type
Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
BTS3900C (Ver.C)
OMB (Ver.C)
15 m (49.21 ft)
16 mm2 (0.025 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
DBS3900
APM30H (Ver.B) series cabinets
8 m (26.25 ft)
16 mm2 (0.025 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
APM30H (Ver.C) series cabinets
8 m (26.25 ft)
25 mm2 (0.039 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
APM30H (Ver.D) series cabinets
8 m (26.25 ft)
16 mm2 (0.025 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
Table 2-29 PGND cables for components
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Base Station Type
Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
BTS3900 (Ver.B) and BTS3900L (Ver.B)
BTS3900 (Ver.B) and BTS3900L (Ver.B)
15 m (49.21 ft)
6 mm2 (0.009 in.2)
BTS3900 (Ver.C) and BTS3900L (Ver.C)
BTS3900 (Ver.C) and BTS3900L (Ver.C)
One-hole OT terminal (M4)
BTS3900 (Ver.D) and BTS3900L (Ver.D)
BTS3900 (Ver.D) and BTS3900L (Ver.D)
The exterior is shown by illustratio n 1 in the preceding figure.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
Base Station Type
Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
BTS3900A (Ver.B)
APM30H (Ver.B)
15 m (49.21 ft)
6 mm2 (0.009 in.2)
One-hole OT terminal (M4)
The exterior is shown by illustratio n 1 in the preceding figure.
IBBS200D (Ver.B) IBBS200T (Ver.B)
BTS3900C (Ver.C)
OMB (Ver.C)
15 m (49.21 ft)
6 mm2 (0.009 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustratio n 1 in the preceding figure.
BTS3900AL (Ver.A)
BTS3900AL
15 m (49.21 ft)
6 mm2 (0.009 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustratio n 1 in the preceding figure.
2.7.4 Equipotential Cable An equipotential cable connects the PGND terminals of two cabinets. It ensures equipotential bonding between cabinets and safe operation of base stations.
Exterior The following figure shows the exterior of an equipotential cable.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
Figure 2-46 Exterior of an equipotential cable
(1) One-hole OT terminal
(2) Two-hole OT terminal
NOTE
In most cases, the equipotential cable is a green and yellow cable. When 110 V dual-live-wire power is supplied for the cabinets used by the BTS3900A (Ver.C) or BTS3900A (Ver.D), the equipotential cable is green.
Description The following table describes equipotential cables. Table 2-30 Equipotential cables Base Station Type
Cross-Sectional Area
Connect or
Exterior
BTS3900 (Ver.B)
16 mm2 (0.025 in.2)
One-hole OT terminal (M6) at each end
The exterior is shown by illustration 1 in the preceding figure.
16 mm2 (0.025 in.2)
One-hole OT terminal (M6) at each end
The exterior is shown by illustration 2 in the preceding figure.
BTS3900 (Ver.C) BTS3900 (Ver.D) BTS3900A (Ver.B)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
Base Station Type
Cross-Sectional Area
Connect or
Exterior
BTS3900A (Ver.C)
The cross-sectional areas of cables vary according to the way that cabinets are combined.
One-hole OT terminal (M6) at each end
The exterior is shown by illustration 1 in the preceding figure.
One-hole OT terminal (M6) at each end
The exterior is shown by illustration 1 in the preceding figure.
l 16 mm2 (0.025 in.2) for stacked cabinets l 25 mm2 (0.039 in.2) for side-by-side cabinets BTS3900A (Ver.D)
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16 mm2 (0.025 in.2)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
2 APM30H Cabinet
Base Station Type
Cross-Sectional Area
Connect or
Exterior
BTS3900AL (Ver.A)
The cross-sectional areas of cables vary according to the way that cabinets are combined.
l When a BTS39 00AL AC cabinet is combi ned with a BTS39 00AL DC cabinet or an IBBS7 00D/ IBBS7 00T, each end of the cable has a twohole OT termin al (M6), and the distanc e betwee n the two holes of each twohole termin al is 15.8 mm (0.62 in.).
The exterior is shown by illustration 2 or 3 in the preceding figure.
l When a BTS3900AL AC cabinet is combined with a BTS3900AL DC cabinet or an IBBS700D/ IBBS700T, the crosssectional area of the cable is 35 mm2 (0.054 in.2) l When a BTS3900AL AC cabinet is combined with a TMC11H (Ver.C), the cross-sectional area of the cable is 25 mm2 (0.039in. 2).
l When a
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
Base Station Type
Cross-Sectional Area
2 APM30H Cabinet
Connect or
Exterior
BTS39 00AL AC cabinet is combi ned with a TMC1 1H (Ver.C ), the cable has a twohole OT termin al (M6) on the BTS39 00AL AC cabinet side and a onehole OT termin al (M6) on the TMC1 1H (Ver.C ) side. The distanc e betwee n the two holes of each twohole
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
Base Station Type
Cross-Sectional Area
2 APM30H Cabinet
Connect or
Exterior
termin al is 15.8 mm (0.62 in.).
2.7.5 Power Cables This section describes the exteriors, functions, and pin assignments of the power cables in the APM30H.
EPU05A-02 or EPU05A-04 Power Cable An EPU05A-02 or EPU05A-04 power cable feeds external AC power into the power system of an APM30H (Ver.D). An APM30H can be supplied with 220 V AC single-phase, 220 V AC three-phase, and 110 V or 120 V AC dual-live-wire power.
Exterior The number of core wires contained in an EPU05A-02 or EPU05A-04 power cable depends on the power system where the EPU05A-02 or EPU05A-04 is used. The following figure shows the exteriors of EPU05A-02 or EPU05A-04 power cables in the 220 V AC single-phase scenario. Figure 2-47 Exteriors of EPU05A-02 or EPU05A-04 power cables in the 220 V AC singlephase scenario
(1) OT terminal
Description The following table describes EPU05A-02 or EPU05A-04 power cables.
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Table 2-31 EPU05A-02 or EPU05A-04 power cables Cable
Wire
Color
Cross-Sectional Area
220 V AC three-phase power cable
L1
Brown
6 mm2 (0.009 in.2)
L2
Black
L3
Gray
N
Blue
220 V AC singlephase power cable
L
Brown
N
Blue
110 V AC dual-livewire
L1
Black
L2
Red
N
White
25 mm2 (0.039 in.2)
25 mm2 (0.039 in.2)
NOTE
The colors and structures of cables vary according to countries and regions. If cables are purchased locally, the cables must comply with local rules and regulations.
Power Cable for the EPU05A-03 or EPU05A-05 The power cable for the EPU05A-03 or EPU05A-05 feeds the external AC power into the power system in the APM30H. The APM30H supports the power supplies of 220 V AC single-phase, 220 V AC three-phase, and 110 V AC or 120 V AC dual-live-wire.
Exterior The number of core wires contained in the power cable for the EPU05A-03 or EPU05A-05 varies according to the power systems. The following figure shows the exterior of the power cable for the EPU05A-03 or EPU05A-05 used in 220 V AC single-phase scenario. Figure 2-48 Exterior of the power cable for the EPU05A-03 or EPU05A-05 (in 220 V AC singlephase scenario)
(1) OT terminal (M6)
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Description The following table lists the power cables for the EPU05A-03 or EPU05A-05. Table 2-32 Power cables for the EPU05A-03 or EPU05A-05 Cable
Wire
Color
Cross-Sectional Area
220 V AC threephase power cable
L1 wire
Brown
6 mm2 (0.009 in.2)
L2 wire
Black
L3 wire
Gray
N wire
Blue
220 V AC singlephase power cable
L wire
Brown
N wire
Blue
110 V AC or 120 V AC dual-live-wire
L1 wire
Black
L2 wire
Red
N wire
White
25 mm2 (0.039 in.2)
25 mm2 (0.039 in.2)
NOTE
The colors and structures of cables delivered by Huawei vary according to countries and areas. If cables are purchased locally, the cables must comply with local rules and regulations.
DCDU-12B Power Cable A DCDU-12B power cable feeds DC power into a DCDU-12B.
Exterior The types of DCDU-12B power cables vary according to power supply scenarios. The following figure shows the exteriors of DCDU-12B power cables.
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Figure 2-49 Exteriors of DCDU-12B power cables
(1) OT terminal (M6)
Description The following table describes DCDU-12B power cables.
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Table 2-33 DCDU-12B power cables Base Station Type
Applicatio n Scenario
Power Equipme nt
Cross-Sectional Area
Maxi mum Leng th
Exterior
Functi on
BTS3900 (Ver.D)
In DC scenarios, a DCDU-12B is installed in a BTS3900 (Ver.D) cabinet.
External power equipment
10 m (32.8 1 ft)
The exterior is shown by illustratio n 1 in the preceding figure.
In DC scenarios, a DCDU-12B is installed in a BTS3900L (Ver.D) cabinet.
External power equipment
l One group of cables with a crosssectional area of 35 mm2 (0.054 in.2) is required when one 160 A upper-level circuit breaker is used. l Two groups of cables with a crosssectional area of 16 mm2 (0.025 in.2) are required when two 80 A upper-level circuit breakers are used.
When the base station is configu red with RFUs and RRUs, a DCDU -12B power cable feeds DC power into the DCDU -12B, and then the DCDU -12B supplie s the power to the RRUs.
BTS3900 L (Ver.D)
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In most regions, the RTN (+) wire is black and the NEG (-) wire is blue. In UK, the RTN(+) wire is blue and the NEG (-) wire is gray. The exterior is shown by illustratio n 1 in the preceding figure. In most regions, the RTN (+) wire is black and the NEG (-) wire is blue. In UK, the RTN(+) wire is blue and the NEG (-) wire is gray.
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Base Station Type
Applicatio n Scenario
Power Equipme nt
Cross-Sectional Area
Maxi mum Leng th
Exterior
BTS3900 A (Ver.D)
A DCDU-12B is installed in an RFC (Ver.D).
l Extern al power equip ment in DC scenari os
l One group of cables with a crosssectional area of 25 mm2 (0.039 in.2) in DC scenarios
1.5 m (4.92 ft)
The exterior is shown by illustratio n 2 in the preceding figure.
l EPU05 A-02 or EPU05 A-04 in an APM3 0H in AC scenari os
DBS3900
In DC scenarios, a second DCDU-12B is installed in a TMC11H (Ver.D) configured for the DBS3900.
External power equipment
l Two groups of cables with a crosssectional area of 16 mm2 (0.025 in.2) are required when two 80 A upper-level circuit breakers are used.
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In most regions, the RTN (+) wire is black and the NEG (-) wire is blue. In UK, the RTN(+) wire is blue and the NEG (-) wire is gray.
l One group of cables with a crosssectional area of 35 mm2 (0.054 in.2) or two groups of cables with a crosssectional area of 16 mm2 (0.025 in.2) in AC scenarios
l One group of cables with a crosssectional area of 35 mm2 (0.054 in.2) is required when one 160 A upper-level circuit breaker is used.
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Functi on
15 m (49.2 1 ft)
The exterior is shown by illustratio n 1 in the preceding figure. In most regions, the RTN (+) wire is black and the NEG (-) wire is blue. In UK, the RTN(+) wire is blue and the NEG (-) wire is gray.
When the base station is configu red with RFUs and RRUs, a DCDU -12B power cable feeds DC power into the DCDU -12B, and then
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Base Station Type
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2 APM30H Cabinet
Applicatio n Scenario
Power Equipme nt
Cross-Sectional Area
Maxi mum Leng th
Exterior
Functi on
In AC scenarios where the DBS3900 uses the APM30H (Ver.D) and is configured with 7 to 12 RRUs, the DCDU-12B is installed in the APM30H (Ver.D).
EPU05A03 or EPU05A05 in the APM30H
One group of cables with a cross-sectional area of 25 mm2 (0.039 in.2)
1.5 m (4.92 ft)
The exterior is shown by illustratio n 2 in the preceding figure.
the DCDU -12B supplie s the power to RFUs, RRUs, and transmi ssion equipm ent.
DBS3900 where the BBU is installed on a wall, 19inch rack, or IMB03.
External power equipment
In most regions, the RTN (+) wire is black and the NEG (-) wire is blue. In UK, the RTN(+) wire is blue and the NEG (-) wire is gray.
One group of cables with a crosssectional area of 25 mm2 (0.039 in. 2)
One group of cables with a cross-sectional area of 16 mm2 (0.023 in.2)
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15 m (49.2 1 ft)
The exterior is shown by illustratio n 1 in the preceding figure. In most regions, the RTN (+) wire is black and the NEG (-) wire is blue. In UK, the RTN(+) wire is blue and the NEG (-) wire is gray.
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SOU Power Cable The power cable for a service outlet unit (SOU) feeds AC power into the SOU from the AC OUTPUT port on the EPU or EPS.
Exterior The following figure shows the exterior of an SOU power cable. Figure 2-50 Exterior of an SOU power cable
(1) C13 connector
(2) OT terminal (M4)
Description The following table describes an SOU power cable. Table 2-34 SOU power cable Wire
Color
Silkscreen
Cross-Sectional Area
W1
Brown
L
2.5 mm2 (0.004 in.2)
W2
Green and yellow
PE
W3
Blue
N
NOTE
The colors and structures of cables delivered by Huawei vary according to countries and regions. If cables are purchased locally, the cables must comply with local rules and regulations.
Power Cable for an AC Heater The power cable for an AC heater feeds power into an AC junction box from the AC OUTPUT port on an EPU or EPS. Then the AC junction box distributes power to the AC heater. If an AC Issue 03 (2013-01-15)
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heater is configured in the -48 V DC input scenario, one more AC power input must be added for the heater. In this case, the maximum length of the power cable for the AC heater is 15 m (49.21 ft).
Exterior The following figure shows the exterior of a power cable for an AC heater. Figure 2-51 Exterior of a power cable for an AC heater
(1) C13 connector
(2) OT terminal (M4)
Description The following table describes the power cable for an AC heater. Table 2-35 Power cable for an AC heater Wire
Color
Silkscreen
Cross-Sectional Area
W1
Brown
L
W2
Green and yellow
PE
1.5 mm2 (0.002 in.2)
W3
Blue
N
NOTE
The colors and structures of cables delivered by Huawei vary according to countries and regions. If cables are purchased locally, the cables must comply with local rules and regulations.
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FAN 02D Power Cable A FAN 02D power cable feeds -48 V DC power into the FAN 02D in an APM30H or TMC11H (Ver.D).
Exterior Figure 2-52 and Figure 2-53 show the exterior of a FAN 02D power cable. Figure 2-52 Exterior of a FAN 02D power cable in most regions
(1) 3V3 connector
(2) EPC4 or EPC6 connector
Figure 2-53 Exterior of a FAN 02D power cable in UK
(1) 3V3 connector
(2) EPC4 or EPC6 connector
Description The following table describes a FAN 02D power cable. Table 2-36 FAN 02D power cable
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Cable
Wire
Wire Color in Most Regions
Wire Color in Other Regions (UK)
FAN 02D power cable
RTN(+)
Black
Blue
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Cable
2 APM30H Cabinet
Wire
Wire Color in Most Regions
Wire Color in Other Regions (UK)
NEG(-)
Black
Gray
Power Cable for an AC Junction Box A power cable for the AC junction box feeds AC power from the power devise into the AC junction box. The power is divided into four AC outputs, which are then provided to other components, such as the heater or heating film.
Exterior The following figure shows the exterior of a power cable for an AC junction box. Figure 2-54 Power cable for an AC junction box
(1) OT terminal
(2) Cord end terminal
NOTE
The colors and structures of cables delivered by Huawei vary according to countries and regions. If cables are purchased locally, the cables must comply with local rules and regulations.
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Description The following table describes a power cable for an AC junction box. Table 2-37 Power cable for an AC junction box Base Stati on Type
Cabinet
Power Equipme nt
Wire
Color
CrossSectional Area
Exterior
BTS3 900A
APM30H
EPU or EPS subrack
L
Brown
N
Blue
1.5 mm2 (0.002 in.2)
EPU or EPS subrack, and transfered by AC junction box in APM30H
L
Brown
The exterior is shown by illustration 1 in the preceding figure.
N
Blue
IBBS700 D/ IBBS700 T
EPU subrack, and transfered by AC junction box in APM30H
L
Brown
N
Blue
BTS3900 AL AC
PDU05A-0 1
L
Brown
N
Blue
BTS3900 AL DC
PDU05A-0 1, and transfered by AC junction box in BTS3900A L AC
L
Brown
N
Blue
IBBS700 D/ IBBS700 T
PDU05A-0 1, and transfered by AC junction box in
L
Brown
TMC11H
BTS3 900A L
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1.5 mm2 (0.002 in.2)
1.5 mm2 (0.002 in.2)
2.5 mm2 (0.004 in.2)
The exterior is shown by illustration 2 in the preceding figure.
2.5 mm2 (0.004 in.2)
The exterior is shown by illustration 3 in the preceding figure.
2.5 mm2 (0.004 in.2)
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Base Stati on Type
Cabinet
2 APM30H Cabinet
Power Equipme nt
Wire
Color
BTS3900A L AC
N
Blue
CrossSectional Area
Exterior
2.7.6 Signal Cables This section describes the exteriors, functions, and pin assignments of the signal cables in the APM30H.
ELU Signal Cable An electronic label unit (ELU) signal cable transmits the cabinet type to a monitoring board in the cabinet.
Exterior The following figure shows the exterior of an ELU signal cable. Figure 2-55 Exterior of an ELU signal cable
(1) RJ45 connector
Description The following table describes an ELU signal cable. Table 2-38 ELU signal cable
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X1 End
X2 End
Color
Wire Type
X1.1
X2.1
White
Twisted pair
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X1 End
X2 End
Color
X1.2
X2.2
Orange
X1.3
X2.3
White
X1.6
X2.6
Green
X1.5
X2.5
White
X1.4
X2.4
Blue
X1.7
X2.7
White
X1.8
X2.8
Brown
Wire Type
Twisted pair
Twisted pair
Twisted pair
Monitoring Signal Cable for the Door Status Sensor A monitoring signal cable for the door status sensor is used to inform the monitoring board of the door status that is obtained from the door status sensor. Cabinets configured with door status sensors are as follows: APM30H, TMC11H, RFC, IBBS200D, IBBS200T, BTS3900AL, OMB, IBBS700D and IBBS700T.
Exterior Monitoring signal cables for door status sensors are classified into three types according to the cabinets being monitored. Figure 2-56, Figure 2-57, and Figure 2-58 show their exteriors. Figure 2-56 Exterior of a monitoring signal cable for the door status sensor (1)
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Figure 2-57 Exterior of a monitoring signal cable for the door status sensor (2)
NOTE
l Cable 1 has a 2-pin straight socket at one end, which is connected to the HPMI. Cable 1 has a bare wire and a cord end terminal at the other end, which are connected to a door status sensor and a cable terminal block, respectively. l Cable 2 has a bare wire at one end, which is connected to a door status sensor. Cable 2 has a cord end terminal at the other end, which is connected to a cable terminal block. l Cable 3 has a cord end terminal at each end. The two cord end terminals are connected to the two ports on one side of the cable terminal block.
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Figure 2-58 Exterior of a monitoring signal cable for the door status sensor (3)
NOTE
l Cable 1 has a 2-pin straight socket at one end, which is connected to the GATE port on the PMU. Cable 1 has a bare wire and a cord end terminal at the other end, which are connected to a door status sensor and a cable terminal block, respectively. l Cable 2 has a bare wire at one end, which is connected to a door status sensor. Cable 2 has a cord end terminal at the other end, which is connected to a cable terminal block. l Cable 3 has a cord end terminal at each end. The two cord end terminals are connected to the two ports on one side of the cable terminal block.
Description Monitoring signal cables for door status sensors are classified into different types according to the monitoring boards to which the door status is reported. The following table lists the monitoring signal cables for door status sensors.
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Table 2-39 Types of monitoring signal cables for door status sensors Base Station Type
Cabinet
Monitoring Board to Which the Door Status Is Reported
Exterior
BTS3900A (Ver.B)
l RFC (Ver.B)
CMUA
The exterior is shown in Figure 2-56.
l TMC11H (Ver.B) l IBBS200D (Ver.B) or IBBS200T (Ver.B) l RFC (Ver.C)
BTS3900A (Ver.C)
CMUE
l TMC11H (Ver.C) l IBBS200D (Ver.C) or IBBS200T (Ver.C) l RFC (Ver.D)
BTS3900A (Ver.D)
CMUEA
l TMC11H (Ver.D) l IBBS200D (Ver.D) or IBBS200T (Ver.D) l IBBS700D
DBS3900
IBBS700T
CMUF
l TMC11H (Ver.B)
CMUA
l IBBS200D (Ver.B) or IBBS200T (Ver.B) l TMC11H (Ver.C)
CMUE
l IBBS200D (Ver.C) or IBBS200T (Ver.C) l TMC11H (Ver.D)
CMUEA
l IBBS200D (Ver.D) or IBBS200T (Ver.D) l BTS3900C
OMB
HEUA
OMB (Ver.C)
HEUB
l DBS3900 l BTS3900C (Ver.C) l DBS3900 (Ver.C)
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Base Station Type
Cabinet
Monitoring Board to Which the Door Status Is Reported
BTS3900AL (Ver.A)
l BTS3900AL (Ver.A)
CCU
Exterior
l IBBS700D l IBBS700T l BTS3900A (Ver.B)
APM30H (Ver.B)
HPMI
APM30H (Ver.C)
HPMI
APM30H (Ver.D)
PMU
The exterior is shown in Figure 2-57.
l DBS3900 l BTS3900A (Ver.C) l DBS3900 l BTS3900A (Ver.D)
The exterior is shown in Figure 2-58.
l DBS3900
Monitoring Signal Transfer Cable for the Fan in the Front Door A monitoring signal transfer cable for the fan in the front door feeds power into the fan in the front door of the APM30H or TMC11H. It also transmits fan monitoring signals to a monitoring board in the cabinet.
Cable Type The following table lists the types of monitoring boards to which the monitoring signals are reported. Monitoring signal cables vary according to the boards. Table 2-40 Cable type
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Cable
Cabinet
Monitoring Board to Which the Monitoring Signals Are Reported
Exterior
Monitoring signal transfer cable for the fan in the front door
APM30H (Ver.B) or TMC11H (Ver.B)
CMUA
APM30H (Ver.C) or TMC11H (Ver.C)
CMUE
The exterior is shown by illustration 1 in the following figure.
APM30H (Ver.D) or TMC11H (Ver.D)
CMUEA
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The exterior is shown by illustration 2 in the following figure.
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Exterior The following figure shows the exteriors of monitoring signal transfer cables for fans in the front doors. Figure 2-59 Exteriors of monitoring signal transfer cables for fans in the front doors
(1) 4-pin connector
(2) Interconnection terminal
Description The following table describes a monitoring signal transfer cable for the fan in the front door. Table 2-41 Monitoring signal transfer cable for the fan in the front door Wire
X1 End
X2 End
Color
W1
X1.1
X2.1
Black
W2
X1.2
X2.2
Black
W3
X1.3
X2.3
Black
W4
X1.4
X2.4
Black
PMU 11A-CMUEA Monitoring Signal Cable The PMU 11A-CMUEA monitoring signal cable connects the PMU and the CMUEA in the FAN 02D. It transmits the RS485 signals collected by the PMU to the BBU through the CMUEA. This monitoring signal cable is 1.1 m (3.61 ft) long.
Exterior The following figure shows the exterior of a PMU 11A-CMUEA monitoring signal cable. Issue 03 (2013-01-15)
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Figure 2-60 Exterior of a PMU 11A-CMUEA monitoring signal cable
(1) RJ45 connector
Description The following table describes a PMU 11A-CMUEA monitoring signal cable. Table 2-42 PMU 11A-CMUEA monitoring signal cable
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X1 End
X2 End
Wire Type
X1.1
X2.1
Twisted pair
X1.2
X2.2
X1.3
X2.3
X1.6
X2.6
X1.4
X2.4
X1.5
X2.5
X1.7
X2.7
X1.8
X2.8
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Twisted pair
Twisted pair
Twisted pair
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3
TMC11H Cabinet
About This Chapter This chapter describes the TMC11H cabinet exterior, engineering specifications, application scenarios, as well as boards, modules, and cables in the TMC11H cabinet. 3.1 Cabinet Exterior The transmission cabinet of 11 U high with heat exchanger (TMC11H) is used for Huawei wireless products outdoors. It supplies DC power to the distributed or separated macro base station in outdoor scenarios. 3.2 Cabinet Engineering Specifications This section describes the engineering specifications of the TMC11H, including the electrical specifications, equipment specifications, surge protection specifications, and environment specifications. 3.3 Cabinet Application Scenarios The TMC11H can apply to a distributed base station or a separated macro base station. 3.4 Cabinet Interior This section describes the components and boards in the TMC11H. If a filler module or an AC heater is not configured, 11 U space is provided for customer equipment. 3.5 TMC11H Components This section describes the mandatory and optional components in a TMC11H. 3.6 TMC11H Cables The TMC11H cables consist of the power cables, equipotential cables, PGND cables, and signal cables.
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3.1 Cabinet Exterior The transmission cabinet of 11 U high with heat exchanger (TMC11H) is used for Huawei wireless products outdoors. It supplies DC power to the distributed or separated macro base station in outdoor scenarios. The exterior of the TMC11H is the same as that of the APM30H, but their inner modules are different. The following figure shows the exterior of the TMC11H. Figure 3-1 Exterior of the TMC11H
3.2 Cabinet Engineering Specifications This section describes the engineering specifications of the TMC11H, including the electrical specifications, equipment specifications, surge protection specifications, and environment specifications.
Electrical Specifications The following table lists the electrical specifications of the TMC11H. Table 3-1 Electrical specifications Parameter Characteristi cs of DC input
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Specifications Input voltage range
-38.4 V DC to -57 V DC
Typical input voltage
-48 V DC
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Parameter
3 TMC11H Cabinet
Specifications Maximum input current
The maximum input current depends on the application scenario. l In a distributed base station: 160 A l In a separated macro base station: 30 A (When the TMC11H is configured together with the APM30H, the APM30H supplies power to the TMC11H.)
Characteristi cs of DC output
Input mode
-48 V DC power input, supporting the one-hole M6 OT terminal
DC distribution
Ten -48 V DC outputs: LOAD0 to LOAD9, used to supply power to the customer equipment
Typical output voltage
-48 V DC
Protection
Providing overcurrent protection and short-circuit protection for the DC power
Heat consumption of the cabinet
≤ 1500 W (heat dissipation capability at the ambient temperature of 50oC or 122oF)
Equipment Specifications The following table lists the equipment specifications of the TMC11H. Table 3-2 Equipment specifications Parameter
Specifications
Remarks
Dimensions (H x W x D)
Cabinet (without the base): 700 mm x 600 mm x 480 mm (27.56 in. x 23.62 in. x 18.90 in.)
The TMC11H and APM30H have the same exterior and base.
Base: 200 mm x 600 mm x 434 mm (7.87 in. x 23.62 in. x 17.09 in.)
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Space for the customer equipment (H x W x D)
11 U x 19 in. x 380 mm
The depth includes 100 mm (3.94 in.) in front of the columns and 280 mm (11.02 in.) between the columns and the rear of the cabinet.
Cabling and maintenance space at the front
70 mm (2.76 in.)
-
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Parameter
Specifications
Remarks
Cabinet weight
≤ 47 kg (103.64 lb)
Total weight of the equipment l Including the cabinet frame, outer air circulation assembly (heat dissipation core and outer air circulation fan), inner air circulation fan assembly, DCDU, and cables l Excluding the customer transmission equipment
It can be installed on the ground, pole, or wall. It can also be installed on an RFC, IBBS200D, or IBBS200T in stack mode.
Method of installation
In stack mode, the TMC11H must be installed on the top of the RFC, IBBS200D, or IBBS200T.
Surge Protection Specifications The following table lists the surge protection specifications of the TMC11H. Table 3-3 Surge protection specifications Item
Specifications
Surge protection for DC input ports
l In differential mode (8/20 us): 3 kA
Surge protection for DC output ports
l In differential mode (8/20 us): 10 kA
l In common mode (8/20 us): 5 kA
l In common mode (8/20 us): 20 kA The DC output corresponds to the secondary load. NOTE The surge protection capacity of the shield layer in an RRU power cable is 40 kA.
Environment Specifications The TMC11H can be used outdoors. The following table lists the environment specifications of the TMC11H.
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Table 3-4 Environment specifications Paramete r
Specifications
Remarks
Operating temperatur e
-40oC to +50oC (-40oF to +122oF)
A heater is required when the temperature is lower than -20oC (-4oF). A sun shield is required when the temperature is higher than 50oC (122oF). NOTE The temperature at which the heater is required is specified as the local average lowest temperature of each day in the coldest month of the year.
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Relative humidity
5% RH to 100% RH
-
Altitude
-60 m to +4000 m (-196.85 ft to +13123.2 ft)
From the altitude of 1800 m (5905.44 ft), the maximum operating temperature drops by 1oC (33.8oF) each time the altitude increases by 220 m (721.78 ft).
Wind speed
≤ 67 m/s
-
Storage temperatur e
-40oC to +70oC (-40oF to +158oF)
-
Dustproof and waterproof
IP55
-
Noise
When the heat consumption of the cabinet is equal to or less than 700 W, the noise is equal to or less than 61 dBA at the temperature of 25oC (77oF) and equal to or less than 67 dBA at the temperature of 45oC (113oF).
Meeting the ETS 300 753 4.1E standard (rural area)
When the heat consumption of the cabinet is equal to 1500 W or between 700 W and 1500 W, the noise is equal to or less than 66 dBA at the temperature of 25oC (77oF) and equal to or less than 76 dBA at the temperature of 45oC (113oF).
Meeting the ETS 300 753 4.1E standard (urban area)
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3.3 Cabinet Application Scenarios The TMC11H can apply to a distributed base station or a separated macro base station.
Distributed Base Stations Configured with a TMC11H The following figure shows the distributed base station configured with a TMC11H. Figure 3-2 Distributed base station configured with a TMC11H
In a distributed base station, a TMC11H is configured as follows: l
Supplied with -48 V DC power.
l
Combined with RRUs.
l
Configured with a DCDU-12B, which distributes power into RRUs and the BBU, fan assembly, and transmission equipment in the TMC11H.
Separated Macro Base Stations Configured with a TMC11H The following figure shows the separated macro base station configured with a TMC11H. Issue 03 (2013-01-15)
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Figure 3-3 Separated macro base station configured with a TMC11H
In a separated macro base station, a TMC11H is configured as follows: l
Supplied with -48 V DC power.
l
Stacked on the RFC.
l
External -48 V DC power is supplied to the DC junction box on the left wall of the RFC interior, and then distributed to the DCDUs in the RFC and TMC11H.
3.4 Cabinet Interior This section describes the components and boards in the TMC11H. If a filler module or an AC heater is not configured, 11 U space is provided for customer equipment. The following figure shows the interior of the TMC11H.
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Figure 3-4 Interior of the TMC11H
The following table describes the components in the TMC11H. Table 3-5 Components in the TMC11H N o.
Compon ent
1
Outer air circulatio n assembly
Ma nda tory
1
The assembly is installed on the front door of the cabinet, dissipating heat from the cabinet.
Junction box
Ma nda tory
1
The junction box converts one AC input to four AC outputs and is used in the scenario where a service outlet unit (SOU) and multiple heating films or heaters are configured.
2
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Op tio nal or Ma nd ato ry
Ma xi mu m Qu ant ity in a Sin gle Ca bin et
Remarks
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N o.
Compon ent
Op tio nal or Ma nd ato ry
3
Ma FAN 02D nda tory
Ma xi mu m Qu ant ity in a Sin gle Ca bin et 1
4
The fan assembly is configured with fans and central monitoring unit type EA (CMUEA), dissipating heat from the cabinet. l To provide protection for trunk signals, a signal lightning protection unit (SLPU) is mandatory and installed in the top 1 U space of the cabinet. It is configured with the universal E1/T1 lightning protection unit (UELP) or universal FE lightning protection unit (UFLP).
1
Door status sensor
Ma nda tory
1
The door status sensor monitors the status (open or closed) of the cabinet door.
ELU
Ma nda tory
1
The electronic label unit (ELU) reports the cabinet type automatically to facilitate troubleshooting.
DCDU-1 2B or DCDU-1 2C
Ma nda tory
1
The direct current distribution unit-12B (DCDU-12B) or direct current distribution unit-12C (DCDU-12C) in the TMC11H distributes DC power to all the components in the TMC11H. A DCDU-12B or DCDU-12C is 1 U high. The DCDU varies with the installation scenarios.
6
7
Remarks
Ma nda tory
SLPU
5
3 TMC11H Cabinet
l To provide protection for monitoring signals, an SLPU is optional and installed in the 1 U space below the BBU. It is configured with two universal signal lightning protection unit 2 (USLP2) boards.
8
A maximum of two BBU3900s can be configured in a TMC11H. BBU390 0
Opt ion al
2
l The BBU3900 provides physical ports for communication between the BBU3900 and the BSC or RNC, and enables interaction between the base station and the BSC or RNC. l The BBU3900 provides CPRI ports for communication between the BBU and RF modules. l The BBU3900 processes uplink and downlink data.
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N o.
Compon ent
9
10
Op tio nal or Ma nd ato ry
Ma xi mu m Qu ant ity in a Sin gle Ca bin et
3 TMC11H Cabinet
Remarks
EMUA
Opt ion al
1
The environment monitoring unit type A (EMUA) monitors environment of the equipment.
Filler module
Opt ion al
3
A filler module is a plastic component with a height of 1 U in the cabinet, preventing the heat reflux in the empty space below the BBU.
AC heater
Opt ion al
1
The AC heater ensures that components in the cabinet work within the acceptable temperature range when the surrounding temperature is low. It can be preferentially installed in the 1 U space at the bottom of the cabinet.
11
3.5 TMC11H Components This section describes the mandatory and optional components in a TMC11H.
3.5.1 DCDU-12B A direct current distribution unit-12B (DCDU-12B) is 1 U high and provides -48 V DC power for other components.
Exterior The following figure shows the front and rear of the DCDU-12B.
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Figure 3-5 Front and rear of the DCDU-12B
(1) Equipotential ground points
(2) Ground points
NOTE
A DCDU-12B uses the equipotential connection point and ground point in the following scenarios: l Scenario 1: The DCDU-12B is installed on an open rack. In this scenario, an equipotential cable connects the equipotential ground point near the mounting ear on the DCDU-12B to the ground bar on the open rack. l Scenario 2: The DCDU-12B is installed on a wall as a standalone power distribution device. In this scenario, the ground point at the rear of the DCDU-12B is connected to the ground bar in the equipment room.
Function The DCDU-12B provides ten -48 V DC outputs using the same fuse configurations to meet the power distribution requirements of indoor and outdoor macro base stations, micro base stations, and distributed base stations.
Port The following figure shows the ports on the DCDU-12B panel.
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Figure 3-6 Ports on the DCDU-12B panel
The following table describes the ports on the DCDU-12B panel. Table 3-6 Ports on the DCDU-12B panel N o.
Port
Silkscreen
Matched Terminal and Cable
Description
(1)
DC input terminals
NEG(-)
Two one-hole OT terminals (M6). If one group of power cables are used, the maximum crosssectional area of each power cable is 35 mm2 (0.054 in.2). If two groups of power cables are used, the maximum crosssectional area of each power cable is 25 mm2 (0.039 in.2).
It is a negative power input wiring terminal.
RTN(+)
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It is a positive power input wiring terminal.
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N o.
Port
Silkscreen
Matched Terminal and Cable
Description
(2)
Fuse blocks
LOAD0 to LOAD9
-
The fuse blocks control the LOAD0 to LOAD9 ports, and therefore control the power supplies to the BBU, fan assemblies, and transmission equipment. The indicator on the fuse block indicates the status of the fuse. l When the indicator is steady on, the fuse is faulty and needs to be replaced. l When the indicator is steady off, the fuse is working properly.
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N o.
Port
Silkscreen
Matched Terminal and Cable
Description
(3)
DC output ports
LOAD0 to LOAD9
l Figure 3-7 shows For the specifications of the DC output, see Table 3-7. an EPC5 connector, which applies to any of the LOAD0 to LOAD5 ports. The maximum cross-sectional area of the cable supported is 6 mm2 (0.009 in.2) to 10 mm2 (0.016 in.2). l Figure 3-8 shows an EPC4 or EPC6 connector, which applies to any of the LOAD6 to LOAD9 ports. The maximum cross-sectional area of the cable supported is 3.3 mm2 (0.005 in.2) to 4 mm2 (0.006 in.2). NOTE Figure 3-8 shows an EPC4 or EPC6 connector. An EPC4 connector must be connected to a cable onsite, whereas an EPC6 connector has been connected to a cable before delivery. An EPC5 connector must also be connected to a cable onsite.
NOTE
A fuse block and a DC output port are jointly called a fuse terminal block.
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Figure 3-7 Exterior of an EPC5 connector
Figure 3-8 Exterior of an EPC4 or EPC6 connector
The following table describes the power distribution of the DC output ports on a DCDU-12B. Table 3-7 Power distribution of the DC output ports on a DCDU-12B Base Station Type
Application Scenario
DC Output Port
PowerConsumin g Device
Fuse Specif ication
DBS3900
l DBS3900 configured with a power cabinet TMC11H (Ver.D) l DBS3900 where the BBU is installed on a wall, 19-inch rack, or IMB03
LOAD0 to LOAD5
RRU
10x30 A
LOAD6 and LOAD7
Transmissio n equipment or BBU
LOAD8
Transmissio n equipment
LOAD9
FAN 02D
BTS3900AL (Ver.A) configured with RFUs and RRUs
LOAD0 to LOAD5
RRU 0 to RRU 5
LOAD6 to LOAD9
Reserved
l BTS3900A (Ver.D) configured with an RFC (Ver.D) cabinet and
LOAD0 to LOAD8
RRU 0 to RRU 9
BTS3900AL (Ver.A)
l BTS3900A (Ver.D) l BTS3900 (Ver.D) l BTS3900L (Ver.D)
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10x30 A
10x30 A
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Application Scenario
DC Output Port
PowerConsumin g Device
configured with RFUs and RRUs l BTS3900 (Ver.D) configured with RFUs and RRUs l BTS3900L (Ver.D) configured with RFUs and RRUs
LOAD9
Reserved
Fuse Specif ication
Technical Specifications The following table lists the technical specifications of a DCDU-12B. Table 3-8 Technical specifications of a DCDU-12B Parameter
Specifications
Dimensions (H x W x D)
A DCDU-12B is 1 U high and can be installed in a 19-inch cabinet or rack. Its dimensions are as follows: l 42 mm x 442 mm x 65 mm (1.65 in. x 17.4 in. x 2.56 in.) (without mounting ears) l 42 mm x 482.6 mm x 65 mm (1.65 in. x 19 in. x 2.56 in.) (with mounting ears)
Surge protection specifications
-48 V DC power port, 10 kA (8/20 μs) differential mode -48 V DC power port, 20 kA (8/20 μs) common mode
3.5.2 DCDU-12C A direct current distribution unit-12C (DCDU-12C) is 1 U high and provides -48 V DC power for other components.
Exterior The following figure shows the front and rear of the DCDU-12C.
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Figure 3-9 Front and rear of the DCDU-12C
(1) Equipotential ground points
(2) Ground points
NOTE
The DCDU-12C has no equipotential connection point and ground point.
Function The DCDU-12C provides ten -48 V DC outputs using same fuse configurations to meet the power distribution requirements of distributed and outdoor macro base stations.
Port The following table describes the ports and terminals on a DCDU-12C panel. Figure 3-10 Ports on the DCDU-12C panel
The following table describes the ports on the DCDU-12C panel. Issue 03 (2013-01-15)
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Table 3-9 Ports on the DCDU-12C panel N o.
Port
Silkscreen
Matched Terminal and Cable
Description
(1)
DC input terminals
NEG(-)
Two one-hole OT terminals (M6). The cross-sectional area of the cable is 16 mm2 (0.025 in.2) by default.
It is a negative power input wiring terminal.
-
The fuse blocks control the LOAD0 to LOAD9 ports, and therefore control the power supplies to the BBU, fan assemblies, and transmission equipment.
RTN(+)
(2)
Fuse blocks
LOAD0 to LOAD9
It is a positive power input wiring terminal.
The indicator on the fuse block indicates the status of the fuse. l When the indicator is steady on, the fuse is faulty and needs to be replaced. l When the indicator is steady off, the fuse is working properly. (3)
DC output ports
LOAD0 to LOAD9
Figure 3-11 shows For the specifications of the DC an EPC4 or EPC6 output, see Table 3-10. connector, which applies to any of the LOAD0 to LOAD9 ports. The maximum cross-sectional area of the cable supported is 3.3 mm2 (0.005 in.2) to 4 mm2 (0.006 in.2).
NOTE
A fuse block and a DC output port are jointly called a fuse terminal block.
Figure 3-11 Exterior of an EPC4 or EPC6 connector
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The following table describes the power distribution of the DC output ports on a DCDU-12C. Table 3-10 Power distribution of the DC output ports on a DCDU-12C Base Station Type
Application Scenario
DC Output Port
PowerConsuming Device
Fuse Specif ication
l BTS3900 A (Ver.D) l DBS3900
l BTS3900A (Ver.D) configured with a power cabinet TMC11H (Ver.D) l BTS3900A (Ver.D) configured with a transmission cabinet TMC11H (Ver.D) l DBS3900 configured with an APM30H (Ver.D) and a transmission cabinet TMC11H (Ver.D)
LOAD0 to LOAD5 and LOAD8
Transmission equipment
10x30 A
LOAD6 and LOAD7
Transmission equipment or BBU
LOAD9
FAN 02D
Equipment compartment of the BTS3900AL (Ver.A) cabinet
LOAD0
CCU
LOAD1
Reserved
LOAD2 and LOAD3
Transmission equipment
LOAD4
Battery cabinet
LOAD5 to LOAD8
BBU
LOAD9
Heat exchanger
LOAD0 to LOAD8
RFUs
LOAD9
FAU
BTS3900AL (Ver.A)
RF compartment of the BTS3900AL (Ver.A) cabinet
10x30 A
10x30 A
Technical Specifications The following table lists the technical specifications of a DCDU-12C.
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Table 3-11 Technical specifications of a DCDU-12C Parameter
Specifications
Dimensions (H x W x D)
The DCDU-12C is 1 U (44.45 mm or 1.75 in.) high and can be installed in a 19-inch cabinet or rack. Its dimensions are as follows: l 42 mm x 442 mm x 65 mm (1.65 in. x 17.4 in. x 2.56 in.) (without mounting ears) l 42 mm x 482.6 mm x 65 mm (1.65 in. x 19 in. x 2.56 in.) (with mounting ears) -48 V DC power port, 10 kA (8/20 μs) differential mode
Surge protection specifications
-48 V DC power port, 20 kA (8/20 μs) common mode
3.5.3 FAN 02D A FAN 02C dissipates heat and detects temperature for an APM30H (Ver.D) or TMC11H (Ver.D).
Exterior A FAN 02D consists of the fan subrack, fans, and CMUEA. The following figure shows the exterior of a FAN 02D. Figure 3-12 Exterior of a FAN 02D
(1) Fan subrack
(2) Fans
(3) CMUEA
For details about the ports and indicators on the CMUEA, see CMUEA.
3.5.4 Filler Module A filler module is a standard plastic component, which prevents heat reflux in the empty space below the BBU and improves the heat dissipation in the cabinet. Filler modules are installed in the customer space of an APM30H or TMC11H. Issue 03 (2013-01-15)
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Exterior A filler module is 1 U high. The following figure shows the exterior of a filler module. Figure 3-13 Exterior of a filler module
Function A filler module is installed in the customer space below the BBU to prevent heat reflux in the empty space below the BBU. NOTE
In an APM30H or TMC11H, the filler module is configured in the customer space by default. Before installing other modules, first remove the filler module. For details about removing a filler module, see chapter "Installing Optional Modules and Cables" in the "Installation Guide".
3.5.5 Junction Box The junction box is configured in the BTS3900AL, APM30H, TMC11H, IBBS700D, or IBBS700T cabinet. When a heater or a heating film is configured, the junction box feeds power to the heater or the heating film.
Exterior A junction box is installed on the left inner side of the APM30H, TMC11H, IBBS700D, or IBBS700T. In the BTS3900AL, the junction box is installed on the right inner side of the cabinet. The following figure shows the position and exterior of the junction box in the APM30H.
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Figure 3-14 Exterior of the junction box
Functions The junction box used in the BTS3900AL, APM30H, TMC11H, IBBS700D and IBBS700T performs the following functions: l
The PDU05A-01 feeds power to the junction box in the BTS3900AL. The power is divided into four AC power outputs, which are then provided for the heater in the cabinet.
l
The EPU subrack feeds power into the junction box in the APM30H. The power is divided into four AC power outputs, which are then provided for the heater in the cabinet or heating film in the IBBS200D.
l
The junction box in the APM30H feeds power into the junction box in the TMC11H. The power is divided into four AC power outputs, which are then provided for the heater or service outlet unit (SOU) in the cabinet.
l
The junction box in the primary cabinet (BTS3900A, BTS3900AL, or TP48600A-H17B1) feeds power into the junction box in the IBBS700D or IBBS700T. The power is divided into four AC power outputs, which are then provided for the heater in the cabinet.
Interior The following figure shows the interior of an AC junction box.
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Figure 3-15 Interior of an AC junction box
(1) Four AC output L wiring terminals
(2) Four AC output N wiring terminals
(3) Four AC output PE wiring terminals
(4) Cable holes
(5) AC input N wiring terminal
(6) AC input L wiring terminal
3.5.6 ELU An electronic label unit (ELU) reports the cabinet type automatically to facilitate troubleshooting.
Exterior The following figure shows the exterior of an ELU.
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Figure 3-16 Exterior of an ELU
(1) Shell
(2) RJ45 port
NOTE
The ELU in a BTS3900 or BTS3900L has no shell.
The board collecting information from the ELU varies according to the cabinet, as listed in the following table. Table 3-12 Monitoring boards to which an ELU reports information
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Base Station Type
Cabinet
Board Collecting Information from the ELU
BTS3900 (Ver.B) and BTS3900L (Ver.B)
BTS3900 (Ver.B) and BTS3900L (Ver.B)
FMUC
BTS3900 (Ver.C) and BTS3900L (Ver.C)
BTS3900 (Ver.C) and BTS3900L (Ver.C)
FMUE
BTS3900 (Ver.D) and BTS3900L (Ver.D)
BTS3900 (Ver.D) and BTS3900L (Ver.D)
FMUEA
BTS3900A (Ver.B)
APM30H (Ver.B), TMC11H (Ver.B), RFC (Ver.B), IBBS200D (Ver.B), and IBBS200T (Ver.B)
CMUA
BTS3900A (Ver.C)
APM30H (Ver.C), TMC11H (Ver.C), RFC (Ver.C), IBBS200D (Ver.C), and IBBS200T (Ver.C)
CMUE
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Base Station Type
Cabinet
Board Collecting Information from the ELU
BTS3900A (Ver.D)
APM30H (Ver.D), TMC11H(Ver.D), RFC (Ver.D), IBBS200D(Ver.D), IBBS200T (Ver.D), and IBBS700D
CMUEA
IBBS700T
CMUF
BTS3900C (Ver.C)
OMB (Ver.C)
HEUB
BTS3900AL (Ver.A)
BTS3900AL (Ver.A), IBBS700D, IBBS700T
CCU
Installation Position Positions of ELUs vary in different cabinets. The following figure shows their positions. Figure 3-17 Position of the ELU in a BTS3900 cabinet
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Figure 3-18 Position of the ELU in a BTS3900L cabinet
Figure 3-19 Position of the ELU in an APM30H or IBBS200D cabinet
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NOTE
An ELU is located on the right inner wall of the APM30H, TMC11H, or RFC, or on the left inner wall of the IBBS200D or IBBS200T. The preceding figure shows an APM30H and an IBBS200D as an example.
Figure 3-20 Position of the ELU in an OMB
Figure 3-21 Position of the ELU in a BTS3900AL cabinet
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Figure 3-22 Position of the ELU in a IBBS700D cabinet
NOTE
In the IBBS700D, when the cabinet is configured with a CCU, the ELU is above the CCU. When the cabinet is not configured with a CCU, the ELU is on the right of the CMUEA.
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Figure 3-23 Position of the ELU in a IBBS700T cabinet
NOTE
In the IBBS700T, when the cabinet is configured with a CCU, the ELU is above the CCU. When the cabinet is not configured with a CCU, the ELU is on the left of the CMUF.
3.5.7 Door Status Sensor A door status sensor reports the status (open or closed) of a door. It is installed in any of the following cabinets: BTS3900AL, OMB, OMB (Ver.C), APM30H, RFC, TMC11H, IBBS200D, IBBS200T, IBBS700D, and IBBS700T.
Exterior A door status sensor consists of a magnet and a switch. The following figures show the exteriors of them.
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Figure 3-24 Exterior of the magnet of a door status sensor
(1) Magnetic shell
(2) Magnet
The following figure shows the exterior of the switch of a door status sensor. Figure 3-25 Exterior of the switch of a door status sensor
Installation Position Positions of door status sensors vary in different cabinets. The following figure shows their positions.
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NOTE
l A door status sensor is installed at the same position in the BTS3900AL (Ver.A), IBBS700D, and IBBS700T. Figure 3-26 uses the BTS3900AL (Ver.A) as an example. l A door status sensor is installed at the same position in the OMB and OMB (Ver.C). Figure 3-27 uses the OMB (Ver.C) as an example. l A door status sensor is installed at the same position in the following cabinets: APM30H (Ver.B), APM30H (Ver.C), APM30H (Ver.D), RFC (Ver.B), RFC (Ver.C), RFC (Ver.D), TMC11H (Ver.B), TMC11H (Ver.C), TMC11H (Ver.D), IBBS200D (Ver.B), IBBS200D (Ver.C), IBBS200D (Ver.D), IBBS200T (Ver.B), IBBS200T (Ver.C), and IBBS200T (Ver.D). Figure 3-28 uses the APM30H (Ver.D) as an example.
Figure 3-26 Position of a door status sensor in the BTS3900AL (Ver.A)
Figure 3-27 Position of a door status sensor in the OMB (Ver.C)
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Figure 3-28 Position of a door status sensor in the APM30H (Ver.D)
3.5.8 AC Heater An AC heater is optionally installed in the customer space in an APM30H or TMC11H. It ensures that the customer equipment in a cabinet works within the acceptable temperature range.
Exterior The following figure shows the exterior of an AC heater. Figure 3-29 Exterior of an AC heater
Technical Specifications The following table lists the technical specifications of an AC heater. Table 3-13 Technical specifications of an AC heater
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Counter
Specification
Temperature range in the cabinet when the AC heater starts working
< 1oC (±6oC)
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Counter
Specification
Temperature range in the cabinet when the AC heater stops working
> 15oC (±3oC)
Rated heating power
330 W
3.5.9 SOU A service outlet unit (SOU) transfers AC power to the customer equipment. An SOU is optionally installed in the customer space in an APM30H or TMC11H.
Exterior An SOU is 1 U high. The following figure shows the exterior of an SOU. Figure 3-30 Exterior of an SOU
(1) Input power port
(2) Breaker
(3) Socket (European standard)
An SOU applies to the four types of sockets meeting the following standards: North American standard, European standard, Universal standard, and British standard. The following figure shows the exteriors of the four types of sockets. Figure 3-31 Exteriors of different types of sockets
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Technical Specifications The following table lists the technical specifications of an SOU. Table 3-14 Technical specifications of an SOU Counter
Specification
Dimensions (H x W x D)
482.6 mm x 91 mm x 55 mm (7.87 in. x 23.62 in. x 17.09 in.)
Weight
1.5 kg (3.31 lb)
Input voltage range
200 V AC to 240 V AC
Maximum input current
10 A
Output voltage range
200 V AC to 240 V AC
Maximum output current
10 A
Frequency band
50 Hz or 60 Hz
Operating temperature
-40oC to +55oC
Altitude
≤ 4,000m NOTE Above the altitude of 3000 m (9842.52 ft), the maximum operating temperature drops by 1oC (33.8oF) as the altitude increases by 100 m (328.08 ft).
Protection class
IP20
3.6 TMC11H Cables The TMC11H cables consist of the power cables, equipotential cables, PGND cables, and signal cables.
3.6.1 Cable List TMC11H cables mainly consist of the equipotential cables, power cables, and signal cables.
Equipotential Cables and Power Cables The following table describes the equipotential cables and power cables.
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Table 3-15 Equipotential cables and power cables Classi ficati on
Cable
Cables to be install ed onsite
Cables install ed before deliver y
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One End
The Other End
Connector
Installation Position
Connector
Installation Position
DCDU-12C Power Cable (AC scenario)
EPC4 or EPC6 connector
LOAD7 port on the EPU
OT terminal
RTN(+) and NEG(-) terminals on the INPUT terminal block on the DCDU-12C
Power Cable for an AC Junction Box (in the TMC11H)
OT terminal
L3 and N3 terminals on the AC junction box in the APM30H
OT terminal
L and N terminals on the AC junction box in the TMC11H
Power Cable for an AC Heater (-48 V DC scenario)
C13 connector
Input power port on the AC heater
Depending on external power equipment
External power equipment
2.7.4 Equipotential Cable
OT terminal
Ground bar in the upper cabinet
OT terminal
Ground bar in the lower cabinet
DCDU-12B Power Cable
OT terminal
RTN(+) and NEG(-) terminals on the INPUT terminal block on the DCDU-12B
Depending on external power equipment
External power equipment
FAN 02D Power Cable
EPC4 or EPC6 connector
LOAD9 port on the DCDU-12C
3V3 connector
PWR port on the fan assembly in the TMC11H
Power Cable for an AC Heater
OT terminal
L0 and N0 terminals on the AC junction box in the TMC11H and the cabinet ground bar
C13 connector
Input power port on the AC heater
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Classi ficati on
Cable
3 TMC11H Cabinet
One End
DCDU-12B Power Cable (-48 V DC scenario)
The Other End
Connector
Installation Position
Connector
Installation Position
OT terminal
DC junction box in the RFC
OT terminal
RTN(+) and NEG(-) terminals on the INPUT terminal block on the DCDU-12B
NOTE
The connection of power cables for optional components depends on the delivery mode. Table 3-15 describes the power cables in a macro base station.
Signal Cables The following table describes the signal cables. Table 3-16 Signal cables
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Classi ficati on
Cable
Cables to be install ed onsite Cables install ed before deliver y
One End
The Other End
Connecto r
Installation Position
Connect or
Installation Position
-
-
-
-
-
ELU Signal Cable
RJ45 connector
ELU
RJ45 connector
ELU port on the CMUEA
Monitoring Signal Cable for the Door Status Sensor
Bare wire
GATE port on the CMUEA
Bare wire
Door status sensor
Monitoring Signal Transfer Cable for the Fan in the Front Door
Interconne ction terminal
Interconnection terminal on the front door of the TMC11H
4-pin connector
FAN_EXT port on the CMUEA
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3.6.2 Cable Connections This section describes the principles for connecting power cables and signal cables in the TMC11H.
Power Cable Connections This section describes the power cable connections in the TMC11H. The following figure shows the power cable connections in the TMC11H. Figure 3-32 Power cable connections in the TMC11H
(1) FAN 02D Power Cable (2) Power Cable for an AC Heater (3) DCDU-12B Power Cable or DCDU-12C Power Cable
Monitoring Signal Cable Connections This section provides reference for onsite installation of monitoring signal cables. Figure 3-33 shows the monitoring signal cable connections in the TMC11H.
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Figure 3-33 Monitoring signal cable connections in the TMC11H
(1) Monitoring signal cable for the fans on the front door
(2) Monitoring signal transfer cable for the fans on the front door
(3) ELU signal cable
(4) Monitoring signal cable for the door status sensor
3.6.3 PGND Cable PGND cables ensure that cabinets and internal components are properly grounded and that base stations run properly. PGND cables include classified into PGND cables for cabinets and PGND cables for components.
Exterior The following figure shows the exterior of a PGND cable.
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Figure 3-34 Exterior of a PGND cable
(1) One-hole OT terminal
(2) Two-hole OT terminal
NOTE
In most cases, the PGND cable is a yellow and green colored cable. When 110 V dual-live-wire power is supplied for BTS3900A (Ver.C) and BTS3900A (Ver.D) cabinets, the PGND cables are green.
Description The cross-sectional areas and maximum lengths of PGND cables vary according to the types of cabinets. Table 3-17 and Table 3-18 describe PGND cables. Table 3-17 PGND cables for cabinets
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Base Station Type
Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
BTS3900 (Ver.B) and BTS3900L (Ver.B)
BTS3900 (Ver.B) 15 m (49.21 and BTS3900L ft) (Ver.B)
25 mm2 (0.039 in.2)
BTS3900 (Ver.C) and BTS3900L (Ver.C)
BTS3900 (Ver.C) and BTS3900L (Ver.C)
One-hole OT terminal (M8)
The exterior is shown by illustration 1 in the preceding figure.
BTS3900 (Ver.D) and BTS3900L (Ver.D)
BTS3900 (Ver.D) and BTS3900L (Ver.D)
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Base Station Type
Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
BTS3900A (Ver.B)
RFC (Ver.B)
8 m (26.25 ft)
16 mm2 (0.025 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
BTS3900A (Ver.C)
RFC (Ver.C)
8 m (26.25 ft)
25 mm2 (0.039 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
BTS3900A (Ver.D)
RFC (Ver.D)
8 m (26.25 ft)
16 mm2 (0.025 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
BTS3900A (Ver.D)
IBBS700D and IBBS700T
5 m (16.4 ft)
35 mm2 (0.054 in.2)
The cable has a onehole OT terminal (M6) on the cabinet side and a one-hole OT terminal (M8) on the ground bar side.
The exterior is shown by illustration 1 in the preceding figure.
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Base Station Type
Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
BTS3900AL (Ver.A)
BTS3900AL (Ver.A)
8 m (26.25 ft)
35 mm2 (0.054 in.2)
Select one of the followin g specificat ions based on the onsite situation:
The exterior is shown by illustration 2 or 3 in the preceding figure.
l The cable has a twohole OT termi nal (M6) at each end, and the distan ce betwe en the two holes of each twohole OT termi nal is 15.8 mm (0.62 in.). l The cable has a twohole OT termi
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
Base Station Type
Cabinet
3 TMC11H Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
nal (M6) on the cabin et side and a onehole OT termi nal (M6) on the groun d bar side. The distan ce betwe en the two holes of the twohole OT termi nal is 15.8 mm (0.62 in.). IBBS700D and IBBS700T
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5 m (16.4 ft)
35 mm2 (0.054 in.2)
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The cable has a onehole OT terminal (M6) on the cabinet side and a one-hole OT terminal (M8) on the ground bar side.
The exterior is shown by illustration 1 in the preceding figure.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
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Base Station Type
Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
BTS3900C (Ver.C)
OMB (Ver.C)
15 m (49.21 ft)
16 mm2 (0.025 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
DBS3900
APM30H (Ver.B) series cabinets
8 m (26.25 ft)
16 mm2 (0.025 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
APM30H (Ver.C) series cabinets
8 m (26.25 ft)
25 mm2 (0.039 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
APM30H (Ver.D) series cabinets
8 m (26.25 ft)
16 mm2 (0.025 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
Table 3-18 PGND cables for components
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Base Station Type
Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
BTS3900 (Ver.B) and BTS3900L (Ver.B)
BTS3900 (Ver.B) and BTS3900L (Ver.B)
15 m (49.21 ft)
6 mm2 (0.009 in.2)
BTS3900 (Ver.C) and BTS3900L (Ver.C)
BTS3900 (Ver.C) and BTS3900L (Ver.C)
One-hole OT terminal (M4)
BTS3900 (Ver.D) and BTS3900L (Ver.D)
BTS3900 (Ver.D) and BTS3900L (Ver.D)
The exterior is shown by illustratio n 1 in the preceding figure.
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Base Station Type
Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
BTS3900A (Ver.B)
APM30H (Ver.B)
15 m (49.21 ft)
6 mm2 (0.009 in.2)
One-hole OT terminal (M4)
The exterior is shown by illustratio n 1 in the preceding figure.
IBBS200D (Ver.B) IBBS200T (Ver.B)
BTS3900C (Ver.C)
OMB (Ver.C)
15 m (49.21 ft)
6 mm2 (0.009 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustratio n 1 in the preceding figure.
BTS3900AL (Ver.A)
BTS3900AL
15 m (49.21 ft)
6 mm2 (0.009 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustratio n 1 in the preceding figure.
3.6.4 Equipotential Cable An equipotential cable connects the PGND terminals of two cabinets. It ensures equipotential bonding between cabinets and safe operation of base stations.
Exterior The following figure shows the exterior of an equipotential cable.
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Figure 3-35 Exterior of an equipotential cable
(1) One-hole OT terminal
(2) Two-hole OT terminal
NOTE
In most cases, the equipotential cable is a green and yellow cable. When 110 V dual-live-wire power is supplied for the cabinets used by the BTS3900A (Ver.C) or BTS3900A (Ver.D), the equipotential cable is green.
Description The following table describes equipotential cables. Table 3-19 Equipotential cables Base Station Type
Cross-Sectional Area
Connect or
Exterior
BTS3900 (Ver.B)
16 mm2 (0.025 in.2)
One-hole OT terminal (M6) at each end
The exterior is shown by illustration 1 in the preceding figure.
16 mm2 (0.025 in.2)
One-hole OT terminal (M6) at each end
The exterior is shown by illustration 2 in the preceding figure.
BTS3900 (Ver.C) BTS3900 (Ver.D) BTS3900A (Ver.B)
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Base Station Type
Cross-Sectional Area
Connect or
Exterior
BTS3900A (Ver.C)
The cross-sectional areas of cables vary according to the way that cabinets are combined.
One-hole OT terminal (M6) at each end
The exterior is shown by illustration 1 in the preceding figure.
One-hole OT terminal (M6) at each end
The exterior is shown by illustration 1 in the preceding figure.
l 16 mm2 (0.025 in.2) for stacked cabinets l 25 mm2 (0.039 in.2) for side-by-side cabinets BTS3900A (Ver.D)
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16 mm2 (0.025 in.2)
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Base Station Type
Cross-Sectional Area
Connect or
Exterior
BTS3900AL (Ver.A)
The cross-sectional areas of cables vary according to the way that cabinets are combined.
l When a BTS39 00AL AC cabinet is combi ned with a BTS39 00AL DC cabinet or an IBBS7 00D/ IBBS7 00T, each end of the cable has a twohole OT termin al (M6), and the distanc e betwee n the two holes of each twohole termin al is 15.8 mm (0.62 in.).
The exterior is shown by illustration 2 or 3 in the preceding figure.
l When a BTS3900AL AC cabinet is combined with a BTS3900AL DC cabinet or an IBBS700D/ IBBS700T, the crosssectional area of the cable is 35 mm2 (0.054 in.2) l When a BTS3900AL AC cabinet is combined with a TMC11H (Ver.C), the cross-sectional area of the cable is 25 mm2 (0.039in. 2).
l When a
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
Base Station Type
Cross-Sectional Area
3 TMC11H Cabinet
Connect or
Exterior
BTS39 00AL AC cabinet is combi ned with a TMC1 1H (Ver.C ), the cable has a twohole OT termin al (M6) on the BTS39 00AL AC cabinet side and a onehole OT termin al (M6) on the TMC1 1H (Ver.C ) side. The distanc e betwee n the two holes of each twohole
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
Base Station Type
Cross-Sectional Area
3 TMC11H Cabinet
Connect or
Exterior
termin al is 15.8 mm (0.62 in.).
3.6.5 Power Cables This section describes the exteriors, functions, and pin assignments of the power cables in the TMC11H.
DCDU-12B Power Cable A DCDU-12B power cable feeds DC power into a DCDU-12B.
Exterior The types of DCDU-12B power cables vary according to power supply scenarios. The following figure shows the exteriors of DCDU-12B power cables. Figure 3-36 Exteriors of DCDU-12B power cables
(1) OT terminal (M6)
Description The following table describes DCDU-12B power cables. Issue 03 (2013-01-15)
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Table 3-20 DCDU-12B power cables Base Station Type
Applicatio n Scenario
Power Equipme nt
Cross-Sectional Area
Maxi mum Leng th
Exterior
Functi on
BTS3900 (Ver.D)
In DC scenarios, a DCDU-12B is installed in a BTS3900 (Ver.D) cabinet.
External power equipment
10 m (32.8 1 ft)
The exterior is shown by illustratio n 1 in the preceding figure.
In DC scenarios, a DCDU-12B is installed in a BTS3900L (Ver.D) cabinet.
External power equipment
l One group of cables with a crosssectional area of 35 mm2 (0.054 in.2) is required when one 160 A upper-level circuit breaker is used. l Two groups of cables with a crosssectional area of 16 mm2 (0.025 in.2) are required when two 80 A upper-level circuit breakers are used.
When the base station is configu red with RFUs and RRUs, a DCDU -12B power cable feeds DC power into the DCDU -12B, and then the DCDU -12B supplie s the power to the RRUs.
BTS3900 L (Ver.D)
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In most regions, the RTN (+) wire is black and the NEG (-) wire is blue. In UK, the RTN(+) wire is blue and the NEG (-) wire is gray. The exterior is shown by illustratio n 1 in the preceding figure. In most regions, the RTN (+) wire is black and the NEG (-) wire is blue. In UK, the RTN(+) wire is blue and the NEG (-) wire is gray.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
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Base Station Type
Applicatio n Scenario
Power Equipme nt
Cross-Sectional Area
Maxi mum Leng th
Exterior
BTS3900 A (Ver.D)
A DCDU-12B is installed in an RFC (Ver.D).
l Extern al power equip ment in DC scenari os
l One group of cables with a crosssectional area of 25 mm2 (0.039 in.2) in DC scenarios
1.5 m (4.92 ft)
The exterior is shown by illustratio n 2 in the preceding figure.
l EPU05 A-02 or EPU05 A-04 in an APM3 0H in AC scenari os
DBS3900
In DC scenarios, a second DCDU-12B is installed in a TMC11H (Ver.D) configured for the DBS3900.
External power equipment
l Two groups of cables with a crosssectional area of 16 mm2 (0.025 in.2) are required when two 80 A upper-level circuit breakers are used.
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In most regions, the RTN (+) wire is black and the NEG (-) wire is blue. In UK, the RTN(+) wire is blue and the NEG (-) wire is gray.
l One group of cables with a crosssectional area of 35 mm2 (0.054 in.2) or two groups of cables with a crosssectional area of 16 mm2 (0.025 in.2) in AC scenarios
l One group of cables with a crosssectional area of 35 mm2 (0.054 in.2) is required when one 160 A upper-level circuit breaker is used.
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Functi on
15 m (49.2 1 ft)
The exterior is shown by illustratio n 1 in the preceding figure. In most regions, the RTN (+) wire is black and the NEG (-) wire is blue. In UK, the RTN(+) wire is blue and the NEG (-) wire is gray.
When the base station is configu red with RFUs and RRUs, a DCDU -12B power cable feeds DC power into the DCDU -12B, and then
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
Base Station Type
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Applicatio n Scenario
Power Equipme nt
Cross-Sectional Area
Maxi mum Leng th
Exterior
Functi on
In AC scenarios where the DBS3900 uses the APM30H (Ver.D) and is configured with 7 to 12 RRUs, the DCDU-12B is installed in the APM30H (Ver.D).
EPU05A03 or EPU05A05 in the APM30H
One group of cables with a cross-sectional area of 25 mm2 (0.039 in.2)
1.5 m (4.92 ft)
The exterior is shown by illustratio n 2 in the preceding figure.
the DCDU -12B supplie s the power to RFUs, RRUs, and transmi ssion equipm ent.
DBS3900 where the BBU is installed on a wall, 19inch rack, or IMB03.
External power equipment
In most regions, the RTN (+) wire is black and the NEG (-) wire is blue. In UK, the RTN(+) wire is blue and the NEG (-) wire is gray.
One group of cables with a crosssectional area of 25 mm2 (0.039 in. 2)
One group of cables with a cross-sectional area of 16 mm2 (0.023 in.2)
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15 m (49.2 1 ft)
The exterior is shown by illustratio n 1 in the preceding figure. In most regions, the RTN (+) wire is black and the NEG (-) wire is blue. In UK, the RTN(+) wire is blue and the NEG (-) wire is gray.
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DCDU-12C Power Cable A DCDU-12C power cable feeds DC power into a DCDU-12C.
Exterior The types of DCDU-12C power cables vary according to power supply scenarios. The following figure shows the exteriors of DCDU-12C power cables. Figure 3-37 Exteriors of DCDU-12C power cables
(1) EPC4 or EPC6 connector
(2) OT terminal (M6)
NOTE
In most regions, the RTN(+) wire is black and the NEG(-) wire is blue. In UK, the RTN(+) wire is blue and the NEG(-) wire is gray.
Description The following table describes DCDU-12C power cables.
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Table 3-21 DCDU-12C power cables
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Base Station Type
Applicati on Scenario
Power Equipme nt
CrossSectional Area
Maxi mu m Leng th
Exterior
Functio n
BTS3900 A (Ver.D)
In AC scenarios, a DCDU-12 C is installed in a TMC11H (Ver.D), which serves as a transmissi on cabinet.
EPU05A02 or EPU05A04 in the APM30H
One group of cables with a cross-sectional area of 4 mm2 (0.006 in.2)
-
The exterior is shown by illustration 1 in the preceding figure.
A DCDU-1 2C power cable feeds DC power into a DCDU-1 2C. A DCDU-1 2C distribute s power to each compone nt in the cabinet.
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Applicati on Scenario
Power Equipme nt
CrossSectional Area
Maxi mu m Leng th
Exterior
In DC scenarios, a DCDU-12 C is installed in a TMC11H (Ver.D), which serves as a transmissi on cabinet or the power cabinet.
l DC junctio n box in the RFC when the TMC1 1H serves as the power cabinet
l One group of cables with a crosssectional area of 25 mm2 (0.039 in.2) when the TMC11H serves as the power cabinet
15 m (59.2 1 ft) when the TMC 11H serve s as a trans missi on cabin et
l The exterior is shown by illustrati on 3 in the precedi ng figure when the TMC11 H serves as the power cabinet.
l Extern al power equipm ent when the TMC1 1H serves as a transmi ssion cabinet
l One group of power cables with a crosssectional area of 4 mm2 (0.006 in.2) when the TMC11H serves as a transmission cabinet
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Functio n
l The exterior is shown by illustrati on 2 in the precedi ng figure when the TMC11 H serves as a transmis sion cabinet.
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Base Station Type
Applicati on Scenario
Power Equipme nt
CrossSectional Area
Maxi mu m Leng th
Exterior
DBS3900
In AC scenarios, a DCDU-12 C is installed in a TMC11H (Ver.D), which serves as a transmissi on cabinet.
EPU05A03 or EPU05A05 in the APM30H
One group of cables with a cross-sectional area of 25 mm2 (0.039 in.2)
-
The exterior is shown by illustration 1 in the preceding figure.
In DC scenarios, a DCDU-12 C is installed in a TMC11H (Ver.D), which serves as a transmissi on cabinet.
External power equipment
One group of cables with a cross-sectional area of 4 mm2 (0.006 in.2)
10 m (32.8 1 ft)
The exterior is shown by illustration 2 in the preceding figure.
A DCDU-12 C is installed in a BTS3900 AL (Ver.A).
l PDU03 D-01 in the BTS39 00AL (Ver.A ) in DC scenari os
One group of cables with a cross-sectional area of 16 mm2 (0.025 in2)
-
The exterior is shown by illustration 3 in the preceding figure.
BTS3900 AL (Ver.A)
Functio n
l ETP48 400 in the BTS39 00AL (Ver.A ) in AC scenari os
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SOU Power Cable The power cable for a service outlet unit (SOU) feeds AC power into the SOU from the AC OUTPUT port on the EPU or EPS.
Exterior The following figure shows the exterior of an SOU power cable. Figure 3-38 Exterior of an SOU power cable
(1) C13 connector
(2) OT terminal (M4)
Description The following table describes an SOU power cable. Table 3-22 SOU power cable Wire
Color
Silkscreen
Cross-Sectional Area
W1
Brown
L
2.5 mm2 (0.004 in.2)
W2
Green and yellow
PE
W3
Blue
N
NOTE
The colors and structures of cables delivered by Huawei vary according to countries and regions. If cables are purchased locally, the cables must comply with local rules and regulations.
Power Cable for an AC Heater The power cable for an AC heater feeds power into an AC junction box from the AC OUTPUT port on an EPU or EPS. Then the AC junction box distributes power to the AC heater. If an AC Issue 03 (2013-01-15)
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heater is configured in the -48 V DC input scenario, one more AC power input must be added for the heater. In this case, the maximum length of the power cable for the AC heater is 15 m (49.21 ft).
Exterior The following figure shows the exterior of a power cable for an AC heater. Figure 3-39 Exterior of a power cable for an AC heater
(1) C13 connector
(2) OT terminal (M4)
Description The following table describes the power cable for an AC heater. Table 3-23 Power cable for an AC heater Wire
Color
Silkscreen
Cross-Sectional Area
W1
Brown
L
W2
Green and yellow
PE
1.5 mm2 (0.002 in.2)
W3
Blue
N
NOTE
The colors and structures of cables delivered by Huawei vary according to countries and regions. If cables are purchased locally, the cables must comply with local rules and regulations.
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FAN 02D Power Cable A FAN 02D power cable feeds -48 V DC power into the FAN 02D in an APM30H or TMC11H (Ver.D).
Exterior Figure 3-40 and Figure 3-41 show the exterior of a FAN 02D power cable. Figure 3-40 Exterior of a FAN 02D power cable in most regions
(1) 3V3 connector
(2) EPC4 or EPC6 connector
Figure 3-41 Exterior of a FAN 02D power cable in UK
(1) 3V3 connector
(2) EPC4 or EPC6 connector
Description The following table describes a FAN 02D power cable. Table 3-24 FAN 02D power cable
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Cable
Wire
Wire Color in Most Regions
Wire Color in Other Regions (UK)
FAN 02D power cable
RTN(+)
Black
Blue
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Cable
3 TMC11H Cabinet
Wire
Wire Color in Most Regions
Wire Color in Other Regions (UK)
NEG(-)
Black
Gray
Power Cable for an AC Junction Box A power cable for the AC junction box feeds AC power from the power devise into the AC junction box. The power is divided into four AC outputs, which are then provided to other components, such as the heater or heating film.
Exterior The following figure shows the exterior of a power cable for an AC junction box. Figure 3-42 Power cable for an AC junction box
(1) OT terminal
(2) Cord end terminal
NOTE
The colors and structures of cables delivered by Huawei vary according to countries and regions. If cables are purchased locally, the cables must comply with local rules and regulations.
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Description The following table describes a power cable for an AC junction box. Table 3-25 Power cable for an AC junction box Base Stati on Type
Cabinet
Power Equipme nt
Wire
Color
CrossSectional Area
Exterior
BTS3 900A
APM30H
EPU or EPS subrack
L
Brown
N
Blue
1.5 mm2 (0.002 in.2)
EPU or EPS subrack, and transfered by AC junction box in APM30H
L
Brown
The exterior is shown by illustration 1 in the preceding figure.
N
Blue
IBBS700 D/ IBBS700 T
EPU subrack, and transfered by AC junction box in APM30H
L
Brown
N
Blue
BTS3900 AL AC
PDU05A-0 1
L
Brown
N
Blue
BTS3900 AL DC
PDU05A-0 1, and transfered by AC junction box in BTS3900A L AC
L
Brown
N
Blue
IBBS700 D/ IBBS700 T
PDU05A-0 1, and transfered by AC junction box in
L
Brown
TMC11H
BTS3 900A L
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1.5 mm2 (0.002 in.2)
1.5 mm2 (0.002 in.2)
2.5 mm2 (0.004 in.2)
The exterior is shown by illustration 2 in the preceding figure.
2.5 mm2 (0.004 in.2)
The exterior is shown by illustration 3 in the preceding figure.
2.5 mm2 (0.004 in.2)
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Power Equipme nt
Wire
Color
BTS3900A L AC
N
Blue
CrossSectional Area
Exterior
3.6.6 Signal Cables This section describes the exteriors, functions, and pin assignments of the signal cables in the TMC11H.
ELU Signal Cable An electronic label unit (ELU) signal cable transmits the cabinet type to a monitoring board in the cabinet.
Exterior The following figure shows the exterior of an ELU signal cable. Figure 3-43 Exterior of an ELU signal cable
(1) RJ45 connector
Description The following table describes an ELU signal cable. Table 3-26 ELU signal cable
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X1 End
X2 End
Color
Wire Type
X1.1
X2.1
White
Twisted pair
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X1 End
X2 End
Color
X1.2
X2.2
Orange
X1.3
X2.3
White
X1.6
X2.6
Green
X1.5
X2.5
White
X1.4
X2.4
Blue
X1.7
X2.7
White
X1.8
X2.8
Brown
Wire Type
Twisted pair
Twisted pair
Twisted pair
Monitoring Signal Cable for the Door Status Sensor A monitoring signal cable for the door status sensor is used to inform the monitoring board of the door status that is obtained from the door status sensor. Cabinets configured with door status sensors are as follows: APM30H, TMC11H, RFC, IBBS200D, IBBS200T, BTS3900AL, OMB, IBBS700D and IBBS700T.
Exterior Monitoring signal cables for door status sensors are classified into three types according to the cabinets being monitored. Figure 3-44, Figure 3-45, and Figure 3-46 show their exteriors. Figure 3-44 Exterior of a monitoring signal cable for the door status sensor (1)
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Figure 3-45 Exterior of a monitoring signal cable for the door status sensor (2)
NOTE
l Cable 1 has a 2-pin straight socket at one end, which is connected to the HPMI. Cable 1 has a bare wire and a cord end terminal at the other end, which are connected to a door status sensor and a cable terminal block, respectively. l Cable 2 has a bare wire at one end, which is connected to a door status sensor. Cable 2 has a cord end terminal at the other end, which is connected to a cable terminal block. l Cable 3 has a cord end terminal at each end. The two cord end terminals are connected to the two ports on one side of the cable terminal block.
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Figure 3-46 Exterior of a monitoring signal cable for the door status sensor (3)
NOTE
l Cable 1 has a 2-pin straight socket at one end, which is connected to the GATE port on the PMU. Cable 1 has a bare wire and a cord end terminal at the other end, which are connected to a door status sensor and a cable terminal block, respectively. l Cable 2 has a bare wire at one end, which is connected to a door status sensor. Cable 2 has a cord end terminal at the other end, which is connected to a cable terminal block. l Cable 3 has a cord end terminal at each end. The two cord end terminals are connected to the two ports on one side of the cable terminal block.
Description Monitoring signal cables for door status sensors are classified into different types according to the monitoring boards to which the door status is reported. The following table lists the monitoring signal cables for door status sensors.
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Table 3-27 Types of monitoring signal cables for door status sensors Base Station Type
Cabinet
Monitoring Board to Which the Door Status Is Reported
Exterior
BTS3900A (Ver.B)
l RFC (Ver.B)
CMUA
The exterior is shown in Figure 3-44.
l TMC11H (Ver.B) l IBBS200D (Ver.B) or IBBS200T (Ver.B) l RFC (Ver.C)
BTS3900A (Ver.C)
CMUE
l TMC11H (Ver.C) l IBBS200D (Ver.C) or IBBS200T (Ver.C) l RFC (Ver.D)
BTS3900A (Ver.D)
CMUEA
l TMC11H (Ver.D) l IBBS200D (Ver.D) or IBBS200T (Ver.D) l IBBS700D
DBS3900
IBBS700T
CMUF
l TMC11H (Ver.B)
CMUA
l IBBS200D (Ver.B) or IBBS200T (Ver.B) l TMC11H (Ver.C)
CMUE
l IBBS200D (Ver.C) or IBBS200T (Ver.C) l TMC11H (Ver.D)
CMUEA
l IBBS200D (Ver.D) or IBBS200T (Ver.D) l BTS3900C
OMB
HEUA
OMB (Ver.C)
HEUB
l DBS3900 l BTS3900C (Ver.C) l DBS3900 (Ver.C)
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Base Station Type
Cabinet
Monitoring Board to Which the Door Status Is Reported
BTS3900AL (Ver.A)
l BTS3900AL (Ver.A)
CCU
Exterior
l IBBS700D l IBBS700T l BTS3900A (Ver.B)
APM30H (Ver.B)
HPMI
APM30H (Ver.C)
HPMI
APM30H (Ver.D)
PMU
The exterior is shown in Figure 3-45.
l DBS3900 l BTS3900A (Ver.C) l DBS3900 l BTS3900A (Ver.D)
The exterior is shown in Figure 3-46.
l DBS3900
Monitoring Signal Transfer Cable for the Fan in the Front Door A monitoring signal transfer cable for the fan in the front door feeds power into the fan in the front door of the APM30H or TMC11H. It also transmits fan monitoring signals to a monitoring board in the cabinet.
Cable Type The following table lists the types of monitoring boards to which the monitoring signals are reported. Monitoring signal cables vary according to the boards. Table 3-28 Cable type
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Cable
Cabinet
Monitoring Board to Which the Monitoring Signals Are Reported
Exterior
Monitoring signal transfer cable for the fan in the front door
APM30H (Ver.B) or TMC11H (Ver.B)
CMUA
APM30H (Ver.C) or TMC11H (Ver.C)
CMUE
The exterior is shown by illustration 1 in the following figure.
APM30H (Ver.D) or TMC11H (Ver.D)
CMUEA
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The exterior is shown by illustration 2 in the following figure.
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Exterior The following figure shows the exteriors of monitoring signal transfer cables for fans in the front doors. Figure 3-47 Exteriors of monitoring signal transfer cables for fans in the front doors
(1) 4-pin connector
(2) Interconnection terminal
Description The following table describes a monitoring signal transfer cable for the fan in the front door. Table 3-29 Monitoring signal transfer cable for the fan in the front door
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Wire
X1 End
X2 End
Color
W1
X1.1
X2.1
Black
W2
X1.2
X2.2
Black
W3
X1.3
X2.3
Black
W4
X1.4
X2.4
Black
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4
IBBS200D Cabinet
About This Chapter This chapter describes the IBBS200D cabinet exterior, engineering specifications, application scenarios, as well as boards, modules, and cables in the IBBS200D cabinet. 4.1 Cabinet Exterior The integrated battery backup system with direct cooling (IBBS200D) uses fans to dissipate heat from the cabinet and can provide backup power to the APM30H. 4.2 Cabinet Engineering Specifications This section describes the engineering specifications of the IBBS200D, including the electrical specifications, equipment specifications, and environment specifications. 4.3 Cabinet Interior This section describes the components and boards in the IBBS200D. The power distribution equipment is installed on the upper right wall of the cabinet interior, and the monitoring equipment is installed inside the cabinet door. 4.4 IBBS200D Components This section describes the mandatory and optional components in an IBBS200D. 4.5 IBBS200D Cables The IBBS200D cables consist of the power cables, equipotential cables, PGND cables, and signal cables.
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4.1 Cabinet Exterior The integrated battery backup system with direct cooling (IBBS200D) uses fans to dissipate heat from the cabinet and can provide backup power to the APM30H. The following figure shows the exterior of the IBBS200D. Figure 4-1 Exterior of the IBBS200D
4.2 Cabinet Engineering Specifications This section describes the engineering specifications of the IBBS200D, including the electrical specifications, equipment specifications, and environment specifications.
Electrical Specifications The following table lists the electrical specifications of the IBBS200D. Table 4-1 Electrical specifications
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Item
Specifications
Input voltage range
-38.4 V DC to -57 V DC
Maximum capacity of the storage batteries
48 V, 184 Ah
Heat dissipation in the cabinet
The difference between the temperature in the battery cabinet and the ambient temperature must be less than 5oC (41oF).
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Equipment Specifications The following table lists the equipment specifications of the IBBS200D. Table 4-2 Equipment specifications Item
Specifications
Remarks
Dimensions (H x W x D)
Cabinet (without the base): 700 mm x 600 mm x 480 mm (27.56 in. x 23.62 in. x 18.90 in.)
-
Base: 200 mm x 600 mm x 434 mm (7.87 in. x 23.62 in. x 17.09 in.) Cabinet weight
≤ 40 kg (88.2 lb)
The cabinet is configured only with monitoring boards, power distribution box, and cables.
Weight of storage batteries
12 V 92 Ah storage battery: 33.5 kg (73.87 lb)
The total capacity can expand to 48 V 184 Ah (two 48 V 92 Ah battery packs).
NOTE Storage batteries from different manufacturers have different specifications. The specifications listed above are for the commonly used storage batteries.
Method of installation
It can be installed on the ground. It can be also installed on the TMC11H or APM30H in stack mode.
In stack mode, the IBBS200D must be installed under the TMC11H or APM30H.
Environment Specifications The IBBS200D can be used outdoors. The following table lists the environment specifications of the IBBS200D. Table 4-3 Environment specifications
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Item
Specifications
Remarks
Operating temperatur e
-40oC to +40oC (-40oF +104oF)
Heating films must be used in cold areas.
Relative humidity
5% RH to 100% RH
-
Altitude
-60 m to +4000 m (-196.85 ft to +13123.2 ft)
From the altitude of 1800 m (5905.44 ft), the maximum operating temperature drops by 1oC (33.8oF) each time the altitude increases by 220 m (721.78 ft).
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Item
Specifications
Remarks
Wind speed
≤ 67 m/s
-
Storage temperatur e
-40oC to +70oC (-40oF to +158oF)
-
Dustproof and waterproof
IP34
-
Noise
-
Meeting the ETS 300 753 4.1E standard (rural area)
4.3 Cabinet Interior This section describes the components and boards in the IBBS200D. The power distribution equipment is installed on the upper right wall of the cabinet interior, and the monitoring equipment is installed inside the cabinet door. The following figure shows the interior of the IBBS200D. Figure 4-2 Interior of the IBBS200D
The following table describes the components in the IBBS200D.\
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Table 4-4 Components in the IBBS200D No .
Component
Option al or Manda tory
Max imu m Qua ntit y in a Sin gle Cab inet
Remarks
1
Fan mounting frame
Mandat ory
1
The fan mounting frame is installed on the front door of the cabinet, and configured with a fan.
2
CMUEA
Mandat ory
1
The central monitoring unit type EA (CMUEA) controls temperature, detects Boolean alarm, and identifies the ELU.
3
ELU
Mandat ory
1
The electronic label unit (ELU) reports the cabinet type automatically to facilitate troubleshooting.
4
Storage battery
Mandat ory
8
The storage batteries provide long-duration backup power for base stations.
5
Power distribution box
Mandat ory
1
The power distribution box is installed on the upper right wall of the cabinet interior. It transfers and distributes input power to the TEC or fan and storage batteries.
6
Door status sensor
Mandat ory
1
The door status sensor monitors the status (open or closed) of the cabinet door.
7
Heating film
Optiona l
2
The IBBS200D must be configured with a heating film in cold areas. The heating film is not required in general areas.
8
Junction terminal for the input power cable of the heating film
Mandat ory
1
The junction terminal provides the input power port for the heating film.
4.4 IBBS200D Components This section describes the mandatory and optional components in an IBBS200D.
4.4.1 Fan Mounting Frame In an IBBS200D, the fan mounting frame is configured with a fan and is installed on the front door of the cabinet. The fan promotes the inner and outer air circulation of the cabinet to ensure Issue 03 (2013-01-15)
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that the cabinet work within an acceptable temperature range. This allows the batteries to work properly.
Exterior The following figure shows the exterior of the fan mounting frame in an IBBS200D (Ver.B). Figure 4-3 Exterior of the fan mounting frame in an IBBS200D (Ver.B)
(1) Fan
(2) CMUA
The following figure shows the exterior of the fan mounting frame in an IBBS200D (Ver.C).
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Figure 4-4 Exterior of the fan mounting frame in an IBBS200D (Ver.C)
(1) Fan
(2) CMUE
The following figure shows the exterior of the fan mounting frame in an IBBS200D (Ver.D). Figure 4-5 Exterior of the fan mounting frame in an IBBS200D (Ver.D)
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Functions A fan mounting frame performs the following functions: l
The fan promotes the inner and outer air circulation of the cabinet to ensure that the cabinet work within an acceptable temperature range. This allows the batteries to work properly.
l
The monitoring board installed in the fan mounting frame collects the alarm signals from the door status sensor, battery temperature sensor, fans, and smoke sensor in the cabinet, and it reports these alarm signals to the PMU through an RS485 signal cable.
The types of monitoring boards installed in the fan mounting frames vary with the versions of cabinets. The following table lists the types of monitoring boards. Table 4-5 Types of monitoring boards installed in the fan mounting frames Cabinet
Monitoring Board
IBBS200D (Ver.B)
CMUA
IBBS200D (Ver.C)
CMUE
IBBS200D (Ver.D)
CMUEA
Signal Cable Delivered with a Fan Exterior IBBS200D (Ver.B), IBBS200D (Ver.C), and IBBS200D (Ver.D) have signal cables delivered along with them. The following figure shows the exterior of such a signal cable. Figure 4-6 Exterior of a signal cable delivered with a fan
NOTE
The signal cable delivered with a fan feeds power into the fan and transmits signals to a monitoring board.
Description The following table describes a signal cable delivered with the fan. Table 4-6 Description
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Wire
A End
Color
Description
W1
A.1
Red
Connects to the positive pole of the power supply.
W2
A.2
Yello w
Imports PWM speed-adjusting signals.
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Wire
A End
Color
Description
W3
A.3
Blue
Exports alarm or speed signals.
W4
A.4
Black
Connects to the negative pole of the power supply.
NOTE
The color of the signal cable delivered with a fan depends on the manufacturer.
4.4.2 CMUEA The central monitoring unit type EA (CMUEA) monitors the fans, Heater Assembly Unit, and cabinet temperature. A CMUEA can be used in the AMP30H, RFC, TMC11H, IBBS200D, IBBS200T, or IBBS700D cabinet.
Exterior The following figure shows the exterior of a CMUEA. Figure 4-7 Exterior of a CMUEA
Ports The following figure shows the ports on a CMUEA. Figure 4-8 Ports on a CMUEA
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The following table lists information about ports on a CMUEA. Table 4-7 Ports on a CMUEA No .
Silkscreen on the Panel
Description
(1)
TEMP2
Reserved port, connected to the temperature sensor.
(2)
WATER
Connected to the water sensor.
(3)
IFAN4
(4)
IFAN3
Connected to the inner air circulation to receive alarms related to the inner air circulation.
(5)
IFAN2
(6)
IFAN1
(7)
TEC
Connected to the TEC cooler to receive alarms related to the TEC cooler.
(8)
TEMP1
l In an RFC, this port is connected to the temperature sensor at the air intake vent of the cabinet to receive temperature alarms about the RFC. l In an IBBS200D, IBBS200T, IBBS700D, or IBBS700T, this port is connected to the battery temperature sensor to receive alarm signals about the battery temperature.
(9)
COM_OUT
It is an RS485 signal port, which communicates with lower-level cascading ports and reports monitoring information. l In the APM30H, this port is connected to the PMU. l In an RFC, TMC11H, IBBS200D, IBBS200T, IBBS700D, or IBBS700T, this port is connected to a lower-level CMUEA.
(10 )
COM_IN
RS485 signal port for communicating with upper-level cascading ports and reporting monitoring information. l In the APM30H, this port is connected to the BBU. l In the RFC or TMC11H, this port is connected to the BBU or an upper-level CMUEA. l In an IBBS200D, IBBS200T, IBBS700D, or IBBS700T, this port is connected to the PMU or an upper-level CMUEA.
(11 )
ELU
Port for connecting the ELU to report the cabinet type.
(12 )
GATE
Boolean signal port, which is connected to the door status sensor.
(13 )
IN0, IN1, and IN2
Boolean signal port. l In the APM30H, RFC, TMC11H, IBBS200D, or IBBS200T, these ports are reserved. l In the IBBS700D or IBBS700T, IN0 is connected to the heater, and IN1 and IN2 are reserved.
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No .
Silkscreen on the Panel
Description
(14 )
SMOKE
Boolean signal port.
4 IBBS200D Cabinet
l In the APM30H, RFC, TMC11H, IBBS200D, or IBBS200T, this port is connected to the smoke sensor. l In the IBBS700D or IBBS700T, this port is not involved.
(15 )
EFAN1
(16 )
EFAN2
(17 )
PWR
Connected to the outer air circulation fan to receive its alarm signals.
Power input port providing DC power input for the board.
Indicators The two indicators on the CMUEA panel indicate the status of the CMUEA. The following table describes their meanings. Table 4-8 Indicators on the CMUEA panel Silkscr een
Color
State
Meaning
RUN
Green
Blinking (on for 1s and off for 1s)
The board is functional and communicating with the BBU properly.
Blinking (on for 0.125s and off for 0.125s)
The board is functional but fails to communicate with the BBU or the board is not registered.
Steady on
The board is in the power-on self-check status.
Steady off
There is no power supply, or the board is faulty.
Steady off
No alarm is reported.
Steady on
An alarm is generated, and the board must be replaced.
Blinking (on for 1s and off for 1s)
An alarm is generated, and the alarm may be caused by an associated board or port fault. Therefore, you need to locate the fault before determining whether to replace the board.
ALM
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Red
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4 IBBS200D Cabinet
DIP Switch On the CMUEA, there is a DIP switch J18, which is used to set the working mode of the CMUEA according to the cabinet type. Figure 4-9 shows the position of the DIP switch on the CMUEA. Figure 4-9 Position of DIP switch on a CMUEA
In different types of cabinets, DIP switches on the CMUEA are set in different ways, as shown in Figure 4-10. NOTE
The white boxes indicate the positions of all bits in the DIP switch.
Figure 4-10 DIP switch setting on the CMUEA in different cabinets
4.4.3 Power Distribution Box The power distribution box is installed on the upper right inner wall of the cabinet, which controls the two storage battery groups separately and the DC power supply to the fan or TEC. Issue 03 (2013-01-15)
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Exterior The following figure shows the exterior of a power distribution box. Figure 4-11 Exterior of a power distribution box
Port The following table describes the ports on a power distribution box. Table 4-9 Ports on the power distribution box
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No.
Silkscreen
Meaning
Description
(1)
BAT
Input power cable port for storage batteries
It supports a one-hole OT terminal (M8) installed on a cable with a cross-sectional area of 35 mm2 (0.054 in.2).
(2)
BAT_SW0
Circuit breaker for the upper storage batteries
It controls the power supply to upper storage batteries in the cabinet. The circuit breaker requires 250 A current.
(3)
FAN/ TEC_OUTPU T
Power output port for a fan or TEC
It supports EPC4 connectors and requires 30 A current.
(4)
BAT_SW1
Circuit breaker for the lower storage batteries
It controls the power supply to lower storage batteries in the cabinet. The circuit breaker requires 250 A current.
(5)
BAT
Input power cable port for storage batteries
It supports a one-hole OT terminal (M8) installed on a cable with a cross-sectional area of 35 mm2 (0.054 in.2).
(6)
FAN/ TEC_INPUT
Power input port for a fan or TEC
It supports EPC4 connectors and requires 30 A current.
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4 IBBS200D Cabinet
Wire The following figure shows the input and output power cables for a power distribution box. Figure 4-12 Cables for a power distribution box
(1) RTN(+) cable for upper storage (2) Power transfer cable for a TEC or (3) NEG(-) wire for lower storage batteries fan assembly batteries (4) NEG(-) wire for upper storage batteries
(5) RTN(+) wire for lower storage batteries
-
4.4.4 Storage Battery Storage batteries is the store power equipment. NOTE
Storage batteries from different manufacturers differ in exteriors and technical specifications. In this section, a 12 V 92 Ah storage battery is described as an example.
Exterior The following figure shows the exterior of a 12 V 92 Ah storage battery.
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4 IBBS200D Cabinet
Figure 4-13 Exterior of a 12 V 92 Ah storage battery
Configuration The IBBS200T and IBBS200D support two types of storage battery groups: 48 V 92 Ah and 48 V 184 Ah. l
Two 48 V 92 Ah storage battery groups are connected in parallel and serve as a 48 V 184 Ah storage battery group.
l
Each group consists of four storage batteries.
Technical Specifications The following table describes the technical specifications of a 12 V 92 Ah storage battery. Table 4-10 Technical specifications of a 12 V 92 Ah storage battery Storage Battery Type
Dimensions (H x W x D)
Weight
12 V, 92 Ah
105 mm x 287 mm x 390 mm (11.30 in. x 4.13 in. x 15.35 in.)
33.5 kg (73.85 lb)
108 mm x 287 mm x 393 mm (11.30 in. x 4.25 in. x 15.47 in.)
35 kg (77.16 lb)
4.4.5 ELU An electronic label unit (ELU) reports the cabinet type automatically to facilitate troubleshooting.
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4 IBBS200D Cabinet
Exterior The following figure shows the exterior of an ELU. Figure 4-14 Exterior of an ELU
(1) Shell
(2) RJ45 port
NOTE
The ELU in a BTS3900 or BTS3900L has no shell.
The board collecting information from the ELU varies according to the cabinet, as listed in the following table. Table 4-11 Monitoring boards to which an ELU reports information
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Base Station Type
Cabinet
Board Collecting Information from the ELU
BTS3900 (Ver.B) and BTS3900L (Ver.B)
BTS3900 (Ver.B) and BTS3900L (Ver.B)
FMUC
BTS3900 (Ver.C) and BTS3900L (Ver.C)
BTS3900 (Ver.C) and BTS3900L (Ver.C)
FMUE
BTS3900 (Ver.D) and BTS3900L (Ver.D)
BTS3900 (Ver.D) and BTS3900L (Ver.D)
FMUEA
BTS3900A (Ver.B)
APM30H (Ver.B), TMC11H (Ver.B), RFC (Ver.B), IBBS200D (Ver.B), and IBBS200T (Ver.B)
CMUA
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4 IBBS200D Cabinet
Base Station Type
Cabinet
Board Collecting Information from the ELU
BTS3900A (Ver.C)
APM30H (Ver.C), TMC11H (Ver.C), RFC (Ver.C), IBBS200D (Ver.C), and IBBS200T (Ver.C)
CMUE
BTS3900A (Ver.D)
APM30H (Ver.D), TMC11H(Ver.D), RFC (Ver.D), IBBS200D(Ver.D), IBBS200T (Ver.D), and IBBS700D
CMUEA
IBBS700T
CMUF
BTS3900C (Ver.C)
OMB (Ver.C)
HEUB
BTS3900AL (Ver.A)
BTS3900AL (Ver.A), IBBS700D, IBBS700T
CCU
Installation Position Positions of ELUs vary in different cabinets. The following figure shows their positions. Figure 4-15 Position of the ELU in a BTS3900 cabinet
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
4 IBBS200D Cabinet
Figure 4-16 Position of the ELU in a BTS3900L cabinet
Figure 4-17 Position of the ELU in an APM30H or IBBS200D cabinet
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
4 IBBS200D Cabinet
NOTE
An ELU is located on the right inner wall of the APM30H, TMC11H, or RFC, or on the left inner wall of the IBBS200D or IBBS200T. The preceding figure shows an APM30H and an IBBS200D as an example.
Figure 4-18 Position of the ELU in an OMB
Figure 4-19 Position of the ELU in a BTS3900AL cabinet
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
4 IBBS200D Cabinet
Figure 4-20 Position of the ELU in a IBBS700D cabinet
NOTE
In the IBBS700D, when the cabinet is configured with a CCU, the ELU is above the CCU. When the cabinet is not configured with a CCU, the ELU is on the right of the CMUEA.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
4 IBBS200D Cabinet
Figure 4-21 Position of the ELU in a IBBS700T cabinet
NOTE
In the IBBS700T, when the cabinet is configured with a CCU, the ELU is above the CCU. When the cabinet is not configured with a CCU, the ELU is on the left of the CMUF.
4.4.6 Heating Film The heating film functions in the low-temperature environment to provide the suitable storage and operating temperature for the storage batteries. When the operating temperature is lower than the temperature specification of the storage batteries, the battery capacity declines. Therefore, the heating film is installed to ensure that the storage batteries work in a proper temperature range. The heating film is optional. NOTE
An IBBS200D has two heating films, which are installed on the upper and lower pallets, respectively.
Exterior The following figure shows the exterior of a heating film.
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Figure 4-22 Exterior of a heating film
Technical Specifications The technical specifications of a heating film are as follows: Table 4-12 Technical specifications of a heating film Counter
Specification
Temperature range in the cabinet when the heating film starts working
< 1oC (±6oC) or 33.8oF (±42.8oF)
Temperature range in the cabinet when the heating film stops working
> 15oC (±3oC) or 59 oF (±37.4oF)
Rated heating power
100 W
Rated operating voltage
220 V AC
4.4.7 Door Status Sensor A door status sensor reports the status (open or closed) of a door. It is installed in any of the following cabinets: BTS3900AL, OMB, OMB (Ver.C), APM30H, RFC, TMC11H, IBBS200D, IBBS200T, IBBS700D, and IBBS700T.
Exterior A door status sensor consists of a magnet and a switch. The following figures show the exteriors of them.
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Figure 4-23 Exterior of the magnet of a door status sensor
(1) Magnetic shell
(2) Magnet
The following figure shows the exterior of the switch of a door status sensor. Figure 4-24 Exterior of the switch of a door status sensor
Installation Position Positions of door status sensors vary in different cabinets. The following figure shows their positions.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
4 IBBS200D Cabinet
NOTE
l A door status sensor is installed at the same position in the BTS3900AL (Ver.A), IBBS700D, and IBBS700T. Figure 4-25 uses the BTS3900AL (Ver.A) as an example. l A door status sensor is installed at the same position in the OMB and OMB (Ver.C). Figure 4-26 uses the OMB (Ver.C) as an example. l A door status sensor is installed at the same position in the following cabinets: APM30H (Ver.B), APM30H (Ver.C), APM30H (Ver.D), RFC (Ver.B), RFC (Ver.C), RFC (Ver.D), TMC11H (Ver.B), TMC11H (Ver.C), TMC11H (Ver.D), IBBS200D (Ver.B), IBBS200D (Ver.C), IBBS200D (Ver.D), IBBS200T (Ver.B), IBBS200T (Ver.C), and IBBS200T (Ver.D). Figure 4-27 uses the APM30H (Ver.D) as an example.
Figure 4-25 Position of a door status sensor in the BTS3900AL (Ver.A)
Figure 4-26 Position of a door status sensor in the OMB (Ver.C)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
4 IBBS200D Cabinet
Figure 4-27 Position of a door status sensor in the APM30H (Ver.D)
4.4.8 Temperature Sensor The temperature sensor monitors the temperature in the cabinet. It is installed in the following cabinets: BTS3900AL, RFC, IBBS200T, IBBS200D, OMB, IBBS700T, and IBBS700D.
Exterior The following figure shows the exterior of a temperature sensor. Figure 4-28 Exterior of a temperature sensor
(1) Temperature sensor
(2) 4-pin connector
Installation Position Positions of temperature sensors vary in different cabinets. The following figure shows their positions.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
4 IBBS200D Cabinet
NOTE
l A temperature sensor is installed at the same position in the RFC (Ver.B), RFC (Ver.C), and RFC (Ver.D). Figure 4-30 uses the RFC (Ver.D) as an example. l A temperature sensor is installed at the same position in the IBBS200T (Ver.B), IBBS200T (Ver.C), and IBBS200T (Ver.D). Figure 4-31 uses the IBBS200T (Ver.D) as an example. l A temperature sensor is installed at the same position in the IBBS200D (Ver.B), IBBS200D (Ver.C), and IBBS200D (Ver.D). Figure 4-32 uses the IBBS200D (Ver.D) as an example. l A temperature sensor is installed at the same position in the OMB (Ver.C), and OMB. Figure 4-33 uses the OMB (Ver.C) as an example.
Figure 4-29 Position of the temperature sensor in a BTS3900AL (Ver.A) cabinet
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
4 IBBS200D Cabinet
Figure 4-30 Position of the temperature sensor in an RFC (Ver.D)
Figure 4-31 Position of the temperature sensor in an IBBS200T (Ver.D)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
4 IBBS200D Cabinet
Figure 4-32 Position of the temperature sensor in an IBBS200D (Ver.D)
Figure 4-33 Position of the temperature sensor in an OMB (Ver.C)
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4 IBBS200D Cabinet
Figure 4-34 Position of the temperature sensor in an IBBS700D
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
4 IBBS200D Cabinet
Figure 4-35 Position of the temperature sensor in an IBBS700T
Technical Specifications The following table lists the technical specifications of a temperature sensor. Table 4-13 Technical specifications of a temperature sensor Counter
Specification
Operating voltage
3.0 V DC to 5.5 V DC
Temperature measurement range
-55°C to +125°C (-131 °F to +257 °F)
Temperature measurement error
±2°C (±35.6°F)
4.5 IBBS200D Cables The IBBS200D cables consist of the power cables, equipotential cables, PGND cables, and signal cables.
4.5.1 Cable List IBBS200D cables consist of the PGND cables, equipotential cables, power cables, and signal cables. Issue 03 (2013-01-15)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
4 IBBS200D Cabinet
Power Cables, PGND Cables, and Equipotential Cables The following table lists the power cables, PGND cables, and equipotential cables. Table 4-14 Power cables, PGND cables, and equipotential cables
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Classi ficati on
Cable
Cables to be install ed onsite
One End
The Other End
Connector
Installation Position
Connector
Installation Position
Power Cable for a Power Distribution Box
OT terminal
RTN(+) and NEG(-) terminals on the BAT terminal block on the EPU
OT terminal
RTN(+) and NEG(-) terminals on the BAT terminal block on the power distribution box in the IBBS200D
Storage Battery Power Cable
OT terminal
Copper bar on the power distribution box
OT terminal
Storage battery
Power Cable for the Fan in an IBBS200D
EPC4 or EPC6 connector
LOAD8 port on the EPU
EPC4 or EPC6 connector
FAN/ TEC_INPUT port on the power distribution box in the IBBS200D
Power Cable for the Heating Film
OT terminal
L1 and N1 or L2 and N2 terminals on the AC junction box in the APM30H
OT terminal
L and N terminals on the junction terminal for the input power cable for the heating film in the IBBS200D
2.7.3 PGND Cable
OT terminal
Ground bar in the cabinet
OT terminal
Ground busbar outside the cabinet
2.7.4 Equipotential Cable
OT terminal
Ground bar in the upper cabinet
OT terminal
Ground bar in the lower cabinet
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
Classi ficati on
Cable
Cables install ed before deliver y
-
4 IBBS200D Cabinet
One End
The Other End
Connector
Installation Position
Connector
Installation Position
-
-
-
-
Signal Cables The following table describes the signal cables. Table 4-15 Signal cables Classi ficati on
Cable
Cables to be install ed onsite Cables install ed before deliver y
One End
The Other End
Connecto r
Installation Position
Connect or
Installation Position
Monitoring Signal Cable for the Battery Cabinet
RJ45 connector
COM_IN port on the CMUEA in the IBBS200D or IBBS200T
RJ45 connector
COM_485 port on the PMU
ELU Signal Cable
RJ45 connector
ELU
RJ45 connector
ELU port on the CMUEA
Monitoring Signal Cable for the Door Status Sensor
Bare wire
GATE port on the CMUEA
Bare wire
Door status sensor
4.5.2 Cable Connections This section describes the principles for connecting power cables and signal cables in the IBBS200D.
Power Cable Connections This section describes the power cable connections in the IBBS200D. The following figure shows the power cable connections in the IBBS200D. Issue 03 (2013-01-15)
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4 IBBS200D Cabinet
Figure 4-36 Power cable connections in the IBBS200D
(1) Cable between the battery pack (2) Power Cable for the Fan in an and the short-circuiting copper bar IBBS200D
(3) Storage Battery Power Cable
(4) Cable between the battery pack (5) Power Cable for the Heating Film (6) Power Transfer Cable for the Fan and the short-circuiting copper bar in the IBBS200D
Monitoring Signal Cable Connections This section provides reference for onsite installation of monitoring signal cables. Figure 4-37 shows the monitoring signal cable connections in the IBBS200D.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
4 IBBS200D Cabinet
Figure 4-37 Monitoring signal cable connections in the IBBS200D
(1) Monitoring signal cable for the door status sensor
(2) ELU signal cable (3) Monitoring signal cable for the battery cabinet
4.5.3 PGND Cable PGND cables ensure that cabinets and internal components are properly grounded and that base stations run properly. PGND cables include classified into PGND cables for cabinets and PGND cables for components.
Exterior The following figure shows the exterior of a PGND cable.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
4 IBBS200D Cabinet
Figure 4-38 Exterior of a PGND cable
(1) One-hole OT terminal
(2) Two-hole OT terminal
NOTE
In most cases, the PGND cable is a yellow and green colored cable. When 110 V dual-live-wire power is supplied for BTS3900A (Ver.C) and BTS3900A (Ver.D) cabinets, the PGND cables are green.
Description The cross-sectional areas and maximum lengths of PGND cables vary according to the types of cabinets. Table 4-16 and Table 4-17 describe PGND cables. Table 4-16 PGND cables for cabinets
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Base Station Type
Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
BTS3900 (Ver.B) and BTS3900L (Ver.B)
BTS3900 (Ver.B) 15 m (49.21 and BTS3900L ft) (Ver.B)
25 mm2 (0.039 in.2)
BTS3900 (Ver.C) and BTS3900L (Ver.C)
BTS3900 (Ver.C) and BTS3900L (Ver.C)
One-hole OT terminal (M8)
The exterior is shown by illustration 1 in the preceding figure.
BTS3900 (Ver.D) and BTS3900L (Ver.D)
BTS3900 (Ver.D) and BTS3900L (Ver.D)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
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4 IBBS200D Cabinet
Base Station Type
Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
BTS3900A (Ver.B)
RFC (Ver.B)
8 m (26.25 ft)
16 mm2 (0.025 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
BTS3900A (Ver.C)
RFC (Ver.C)
8 m (26.25 ft)
25 mm2 (0.039 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
BTS3900A (Ver.D)
RFC (Ver.D)
8 m (26.25 ft)
16 mm2 (0.025 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
BTS3900A (Ver.D)
IBBS700D and IBBS700T
5 m (16.4 ft)
35 mm2 (0.054 in.2)
The cable has a onehole OT terminal (M6) on the cabinet side and a one-hole OT terminal (M8) on the ground bar side.
The exterior is shown by illustration 1 in the preceding figure.
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4 IBBS200D Cabinet
Base Station Type
Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
BTS3900AL (Ver.A)
BTS3900AL (Ver.A)
8 m (26.25 ft)
35 mm2 (0.054 in.2)
Select one of the followin g specificat ions based on the onsite situation:
The exterior is shown by illustration 2 or 3 in the preceding figure.
l The cable has a twohole OT termi nal (M6) at each end, and the distan ce betwe en the two holes of each twohole OT termi nal is 15.8 mm (0.62 in.). l The cable has a twohole OT termi
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
Base Station Type
Cabinet
4 IBBS200D Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
nal (M6) on the cabin et side and a onehole OT termi nal (M6) on the groun d bar side. The distan ce betwe en the two holes of the twohole OT termi nal is 15.8 mm (0.62 in.). IBBS700D and IBBS700T
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5 m (16.4 ft)
35 mm2 (0.054 in.2)
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The cable has a onehole OT terminal (M6) on the cabinet side and a one-hole OT terminal (M8) on the ground bar side.
The exterior is shown by illustration 1 in the preceding figure.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
4 IBBS200D Cabinet
Base Station Type
Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
BTS3900C (Ver.C)
OMB (Ver.C)
15 m (49.21 ft)
16 mm2 (0.025 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
DBS3900
APM30H (Ver.B) series cabinets
8 m (26.25 ft)
16 mm2 (0.025 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
APM30H (Ver.C) series cabinets
8 m (26.25 ft)
25 mm2 (0.039 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
APM30H (Ver.D) series cabinets
8 m (26.25 ft)
16 mm2 (0.025 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
Table 4-17 PGND cables for components
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Base Station Type
Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
BTS3900 (Ver.B) and BTS3900L (Ver.B)
BTS3900 (Ver.B) and BTS3900L (Ver.B)
15 m (49.21 ft)
6 mm2 (0.009 in.2)
BTS3900 (Ver.C) and BTS3900L (Ver.C)
BTS3900 (Ver.C) and BTS3900L (Ver.C)
One-hole OT terminal (M4)
BTS3900 (Ver.D) and BTS3900L (Ver.D)
BTS3900 (Ver.D) and BTS3900L (Ver.D)
The exterior is shown by illustratio n 1 in the preceding figure.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
4 IBBS200D Cabinet
Base Station Type
Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
BTS3900A (Ver.B)
APM30H (Ver.B)
15 m (49.21 ft)
6 mm2 (0.009 in.2)
One-hole OT terminal (M4)
The exterior is shown by illustratio n 1 in the preceding figure.
IBBS200D (Ver.B) IBBS200T (Ver.B)
BTS3900C (Ver.C)
OMB (Ver.C)
15 m (49.21 ft)
6 mm2 (0.009 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustratio n 1 in the preceding figure.
BTS3900AL (Ver.A)
BTS3900AL
15 m (49.21 ft)
6 mm2 (0.009 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustratio n 1 in the preceding figure.
4.5.4 Equipotential Cable An equipotential cable connects the PGND terminals of two cabinets. It ensures equipotential bonding between cabinets and safe operation of base stations.
Exterior The following figure shows the exterior of an equipotential cable.
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4 IBBS200D Cabinet
Figure 4-39 Exterior of an equipotential cable
(1) One-hole OT terminal
(2) Two-hole OT terminal
NOTE
In most cases, the equipotential cable is a green and yellow cable. When 110 V dual-live-wire power is supplied for the cabinets used by the BTS3900A (Ver.C) or BTS3900A (Ver.D), the equipotential cable is green.
Description The following table describes equipotential cables. Table 4-18 Equipotential cables Base Station Type
Cross-Sectional Area
Connect or
Exterior
BTS3900 (Ver.B)
16 mm2 (0.025 in.2)
One-hole OT terminal (M6) at each end
The exterior is shown by illustration 1 in the preceding figure.
16 mm2 (0.025 in.2)
One-hole OT terminal (M6) at each end
The exterior is shown by illustration 2 in the preceding figure.
BTS3900 (Ver.C) BTS3900 (Ver.D) BTS3900A (Ver.B)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
4 IBBS200D Cabinet
Base Station Type
Cross-Sectional Area
Connect or
Exterior
BTS3900A (Ver.C)
The cross-sectional areas of cables vary according to the way that cabinets are combined.
One-hole OT terminal (M6) at each end
The exterior is shown by illustration 1 in the preceding figure.
One-hole OT terminal (M6) at each end
The exterior is shown by illustration 1 in the preceding figure.
l 16 mm2 (0.025 in.2) for stacked cabinets l 25 mm2 (0.039 in.2) for side-by-side cabinets BTS3900A (Ver.D)
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16 mm2 (0.025 in.2)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
4 IBBS200D Cabinet
Base Station Type
Cross-Sectional Area
Connect or
Exterior
BTS3900AL (Ver.A)
The cross-sectional areas of cables vary according to the way that cabinets are combined.
l When a BTS39 00AL AC cabinet is combi ned with a BTS39 00AL DC cabinet or an IBBS7 00D/ IBBS7 00T, each end of the cable has a twohole OT termin al (M6), and the distanc e betwee n the two holes of each twohole termin al is 15.8 mm (0.62 in.).
The exterior is shown by illustration 2 or 3 in the preceding figure.
l When a BTS3900AL AC cabinet is combined with a BTS3900AL DC cabinet or an IBBS700D/ IBBS700T, the crosssectional area of the cable is 35 mm2 (0.054 in.2) l When a BTS3900AL AC cabinet is combined with a TMC11H (Ver.C), the cross-sectional area of the cable is 25 mm2 (0.039in. 2).
l When a
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
Base Station Type
Cross-Sectional Area
4 IBBS200D Cabinet
Connect or
Exterior
BTS39 00AL AC cabinet is combi ned with a TMC1 1H (Ver.C ), the cable has a twohole OT termin al (M6) on the BTS39 00AL AC cabinet side and a onehole OT termin al (M6) on the TMC1 1H (Ver.C ) side. The distanc e betwee n the two holes of each twohole
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
Base Station Type
Cross-Sectional Area
4 IBBS200D Cabinet
Connect or
Exterior
termin al is 15.8 mm (0.62 in.).
4.5.5 Power Cables This section describes the exteriors, functions, and pin assignments of the power cables in the IBBS200D.
Storage Battery Power Cable Storage battery power cables connect storage batteries and the power distribution boxes in battery cabinets. The power cables include groups to wiring copper bars and connect the copper bars between storage batteries.
Storage Battery Power Cables Between Battery Groups and Wiring Copper Bars The following figure shows the exteriors of the power cables. Figure 4-40 Exteriors of storage battery power cables between battery groups and wiring copper bars
(1) OT terminal (M8)
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(2) OT terminal (M6)
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The following table describes the storage battery power cables between battery groups and wiring copper bars. Table 4-19 Storage battery power cables between battery groups and wiring copper bars Power Equipment
Wire
Color
Cross-Sectional Area
Exterior
EPU03A-02 or EPU03A-04, EPU05A-02 or EPU05A-04, and ETP48400
RTN (+)
Red
35 mm2 (0.054 in. 2)
NEG (-)
Black
The exterior is shown by illustration 1 in the preceding figure. When the power equipment is EPU05A-02, EPU05A-04, or ETP48400 in UK, the RTN(+) wire is blue and the NEG(-) wire is gray.
EPS01A or EPS01C
RTN (+)
Red
16 mm2 (0.025 in. 2)
NEG (-)
Black
The exterior is shown by illustration 2 in the preceding figure.
Copper Bars Between Storage Batteries Copper bars are delivered with the storage batteries. The following figure shows the exterior of a copper bar. Figure 4-41 Exterior of a copper bar between storage batteries
Power Cable for a Power Distribution Box A power cable for a power distribution box connects the power system to the power distribution box in a battery cabinets, which are IBBS200D, IBBS200T, IBBS700D, and IBBS700T, and provide input power to batteries in these cabinets.
Exterior Power cables for power distribution boxes vary according to the power equipment. The following figure shows the exteriors of the power cables. Issue 03 (2013-01-15)
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Figure 4-42 Exteriors of power cables for power distribution boxes
(1) Power series 120 connector (2) OT terminal (M6) (3) Power series 175 connector (4) OT terminal (M8)
Description The following table describes the power cables for power distribution boxes. Table 4-20 Power cables for power distribution boxes Cabinet
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Power Equipmen t
Wiring Termi nal
Color In Most Regio ns
UK
IBBS200D (Ver.B)/ IBBS200T (Ver.B)
EPS01A, EPS01B, EPS01C, or EPS01D
RTN(+)
Red
-
NEG(-)
Black
-
IBBS200D (Ver.C)/ IBBS200T (Ver.C)
EPU03A-02 , EPU03A-03 ,
RTN(+)
Red
-
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Cross-Sectional Area
Exterior
16 mm2 (0.025 in. 2)
The exterior is shown by illustratio n 1 in the preceding figure.
35 mm2 (0.054 in. 2)
The exterior is shown by illustratio 197
APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
Cabinet
4 IBBS200D Cabinet
Power Equipmen t
Wiring Termi nal
Color In Most Regio ns
UK
EPU03A-04 , or EPU03A-05
NEG(-)
Black
-
IBBS200D (Ver.D)/ IBBS200T (Ver.D)
EPU05A-02 , EPU05A-03 , EPU05A-04 , or EPU05A-05
RTN(+)
Red
Blue
NEG(-)
Black
Gray
IBBS700D/ IBBS700T
ETP48400
RTN(+)
Red
Blue
NEG(-)
Black
Gray
Cross-Sectional Area
Exterior
n 2 in the preceding figure.
35 mm2 (0.054 in. 2), UL3436
The exterior is shown by illustratio n 3 in the preceding figure.
35 mm2 (0.054 in. 2), UL3436
The exterior is shown by illustratio n 3 in the preceding figure.
Power Cable for the Fan in an IBBS200D The power cables feed power into the fans in an IBBS200D. The power cables include input power cables and power transfer cables.
Input Power Cable for the Fan in an IBBS200D Exterior The input power cables vary according to the types of IBBS200Ds where the fan mounting frames are installed. The following figure shows the exteriors of the input power cables.
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Figure 4-43 Exteriors of input power cables for the fan in an IBBS200D
(1) Tool-less female connector (pressfit type)
(2) OT terminal (M4)
(3) EPC4 or EPC6 connector
Description The following table describes the input power cables. Table 4-21 Input power cable for the fan in an IBBS200D Base Station Type
Cabinet
BTS3900 A (Ver.B)
IBBS200D (Ver.B)
BTS3900 A (Ver.C)
BTS3900 A (Ver.D)
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IBBS200D (Ver.C)
IBBS200D (Ver.D)
Wirin g Termi nal
Color Most Region s
UK
RTN (+)
Black
-
NEG(-)
Blue
-
RTN (+)
Black
Blue
NEG(-)
Blue
Gray
RTN (+)
Black
Blue
NEG(-)
Blue
Gray
CrossSectional Area
Exterior
2.5 mm2 (0.004 in.2)
The exterior is shown by illustration 1 in the preceding figure.
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The exterior is shown by illustration 1 in the preceding figure. The exterior is shown by illustration 2 in the preceding figure. 199
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4 IBBS200D Cabinet
Power Transfer Cable for the Fan in an IBBS200D Exterior Power transfer cables vary according to the types of cabinets where the fan mounting frames are installed. The following figures show the exteriors of power transfer cables. Figure 4-44 Exterior of a power transfer cable for the fan in an IBBS200D
(1) 3V3 connector
(2) OT terminal (M6)
(3) OT terminal (M4)
Description The following table describes the power transfer cables. Table 4-22 Power transfer cables for the fans in IBBS200Ds
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Base Station Type
Cabinet
BTS3900 A (Ver.B) BTS3900 A (Ver.C)
IBBS200D (Ver.B) IBBS200D (Ver.C)
Wire
RTN (+)
Color Most Regio ns
UK
Black
Blue
CrossSectional Area
Exterior
l OT terminal (M4), 1.5 mm2 (0.002 in. 2)
The exterior is shown in illustration 1 in the above figure.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
Base Station Type
BTS3900 A (Ver.D)
Cabinet
IBBS200D (Ver.D)
Wire
4 IBBS200D Cabinet
Color
CrossSectional Area
Most Regio ns
UK
NEG (-)
Blue
Gray
l OT terminal (M6), 6 mm2 (0.009 in. 2)
RTN (+)
Black
Blue
2.5 mm2 (0.004 in.2)
NEG (-)
Blue
Gray
Exterior
The exterior is shown in illustration 2 in the above figure.
Power Cable for the Heating Film A power cable for the heating film connects the AC junction box in an APM30H to the AC junction box for the heating film in an IBBS200D. Then the AC junction box distributes power to the heating film.
Exterior The following figure shows the exterior of a power cable for the heating film. Figure 4-45 Exterior of a power cable for the heating film
(1) OT terminal (M4) on the APM30H side
(2) OT terminal (M4) on the IBBS200D side
Description The power cable for the heating film, whose cross-sectional area is 1.5 mm2 (0.002 in.2), is wrapped in a black jacket and has a blue wire and a brown wire. Issue 03 (2013-01-15)
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4 IBBS200D Cabinet
NOTE
The colors and structures of cables delivered by Huawei vary according to countries and regions. If cables are purchased locally, the cables must comply with local rules and regulations.
4.5.6 Signal Cables This section describes the exteriors, functions, pin assignment of all signal cables in the IBBS200D.
ELU Signal Cable An electronic label unit (ELU) signal cable transmits the cabinet type to a monitoring board in the cabinet.
Exterior The following figure shows the exterior of an ELU signal cable. Figure 4-46 Exterior of an ELU signal cable
(1) RJ45 connector
Description The following table describes an ELU signal cable. Table 4-23 ELU signal cable
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X1 End
X2 End
Color
Wire Type
X1.1
X2.1
White
Twisted pair
X1.2
X2.2
Orange
X1.3
X2.3
White
X1.6
X2.6
Green
X1.5
X2.5
White
X1.4
X2.4
Blue
X1.7
X2.7
White
X1.8
X2.8
Brown
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Twisted pair
Twisted pair
Twisted pair
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4 IBBS200D Cabinet
Monitoring Signal Cable for the Door Status Sensor A monitoring signal cable for the door status sensor is used to inform the monitoring board of the door status that is obtained from the door status sensor. Cabinets configured with door status sensors are as follows: APM30H, TMC11H, RFC, IBBS200D, IBBS200T, BTS3900AL, OMB, IBBS700D and IBBS700T.
Exterior Monitoring signal cables for door status sensors are classified into three types according to the cabinets being monitored. Figure 4-47, Figure 4-48, and Figure 4-49 show their exteriors. Figure 4-47 Exterior of a monitoring signal cable for the door status sensor (1)
Figure 4-48 Exterior of a monitoring signal cable for the door status sensor (2)
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NOTE
l Cable 1 has a 2-pin straight socket at one end, which is connected to the HPMI. Cable 1 has a bare wire and a cord end terminal at the other end, which are connected to a door status sensor and a cable terminal block, respectively. l Cable 2 has a bare wire at one end, which is connected to a door status sensor. Cable 2 has a cord end terminal at the other end, which is connected to a cable terminal block. l Cable 3 has a cord end terminal at each end. The two cord end terminals are connected to the two ports on one side of the cable terminal block.
Figure 4-49 Exterior of a monitoring signal cable for the door status sensor (3)
NOTE
l Cable 1 has a 2-pin straight socket at one end, which is connected to the GATE port on the PMU. Cable 1 has a bare wire and a cord end terminal at the other end, which are connected to a door status sensor and a cable terminal block, respectively. l Cable 2 has a bare wire at one end, which is connected to a door status sensor. Cable 2 has a cord end terminal at the other end, which is connected to a cable terminal block. l Cable 3 has a cord end terminal at each end. The two cord end terminals are connected to the two ports on one side of the cable terminal block.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
4 IBBS200D Cabinet
Description Monitoring signal cables for door status sensors are classified into different types according to the monitoring boards to which the door status is reported. The following table lists the monitoring signal cables for door status sensors. Table 4-24 Types of monitoring signal cables for door status sensors Base Station Type
Cabinet
Monitoring Board to Which the Door Status Is Reported
Exterior
BTS3900A (Ver.B)
l RFC (Ver.B)
CMUA
The exterior is shown in Figure 4-47.
l TMC11H (Ver.B) l IBBS200D (Ver.B) or IBBS200T (Ver.B) l RFC (Ver.C)
BTS3900A (Ver.C)
CMUE
l TMC11H (Ver.C) l IBBS200D (Ver.C) or IBBS200T (Ver.C) l RFC (Ver.D)
BTS3900A (Ver.D)
CMUEA
l TMC11H (Ver.D) l IBBS200D (Ver.D) or IBBS200T (Ver.D) l IBBS700D
DBS3900
IBBS700T
CMUF
l TMC11H (Ver.B)
CMUA
l IBBS200D (Ver.B) or IBBS200T (Ver.B) l TMC11H (Ver.C)
CMUE
l IBBS200D (Ver.C) or IBBS200T (Ver.C) l TMC11H (Ver.D)
CMUEA
l IBBS200D (Ver.D) or IBBS200T (Ver.D) l BTS3900C
OMB
HEUA
l DBS3900 Issue 03 (2013-01-15)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
4 IBBS200D Cabinet
Base Station Type
Cabinet
Monitoring Board to Which the Door Status Is Reported
l BTS3900C (Ver.C)
OMB (Ver.C)
HEUB
l BTS3900AL (Ver.A)
CCU
Exterior
l DBS3900 (Ver.C) BTS3900AL (Ver.A)
l IBBS700D l IBBS700T l BTS3900A (Ver.B)
APM30H (Ver.B)
HPMI
APM30H (Ver.C)
HPMI
APM30H (Ver.D)
PMU
The exterior is shown in Figure 4-48.
l DBS3900 l BTS3900A (Ver.C) l DBS3900 l BTS3900A (Ver.D)
The exterior is shown in Figure 4-49.
l DBS3900
Monitoring Signal Cable for the Battery Cabinet A monitoring signal cable for the battery cabinet reports the monitoring signals to the PMU.
Exterior The following figure shows the exterior of a monitoring signal cable for the battery cabinet. Figure 4-50 Exterior of a monitoring signal cable for the battery cabinet
(1) RJ45 connector
Description The following table describes a monitoring signal cable for the battery cabinet. Issue 03 (2013-01-15)
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Table 4-25 Monitoring signal cable for the battery cabinet
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X1 End
X2 End
Color
Wire Type
X1.1
X2.1
White
Twisted pair
X1.2
X2.2
Orange
X1.3
X2.3
White
X1.6
X2.6
Green
X1.5
X2.5
White
X1.4
X2.4
Blue
X1.7
X2.7
White
X1.8
X2.8
Brown
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Twisted pair
Twisted pair
Twisted pair
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5 IBBS200T Cabinet
5
IBBS200T Cabinet
About This Chapter This chapter describes the IBBS200T cabinet exterior, engineering specifications, application scenarios, as well as boards, modules, and cables in the IBBS200T cabinet. 5.1 Cabinet Exterior The IBBS200T is an outdoor battery cabinet with a TEC. The IBBS200T can provide backup power for the APM30H. 5.2 Cabinet Engineering Specifications This section describes the engineering specifications of the IBBS200T, including the electrical specifications, equipment specifications, and environment specifications. 5.3 Cabinet Interior This section describes the components and boards in the IBBS200T. The power distribution equipment is installed on the upper right wall of the cabinet interior, and the monitoring equipment is installed inside the cabinet door. 5.4 IBBS200T Components This section describes the mandatory and optional components in an IBBS200T. 5.5 IBBS200T Cables The IBBS200T cables consist of the power cables, equipotential cables, PGND cables, and signal cables.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
5 IBBS200T Cabinet
5.1 Cabinet Exterior The IBBS200T is an outdoor battery cabinet with a TEC. The IBBS200T can provide backup power for the APM30H. The housing material of the IBBS200T uses aluminum board. The surface is covered with acrylic orange-figured paint to protect the IBBS200T from the damage caused by the solar radiation, corrosion, moist heat, and mold. The following figure shows the exterior of the IBBS200T. Figure 5-1 Exterior of the IBBS200T
5.2 Cabinet Engineering Specifications This section describes the engineering specifications of the IBBS200T, including the electrical specifications, equipment specifications, and environment specifications.
Electrical Specifications The following table lists the electrical specifications of the IBBS200T. Table 5-1 Electrical specifications
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Item
Specifications
Input voltage range
-38.4 V DC to -57 V DC
Maximum capacity of the storage batteries
48 V, 184 Ah
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5 IBBS200T Cabinet
Item
Specifications
Cooling capability
l When the ambient temperature is equal to or less than 45oC (113oF), the temperature at the air return vent for inner circulation of the cabinet is equal to or less than 35oC (95oF). l When the ambient temperature is equal to 50oC (122oF) or between 45oC (113oF) and 50oC (122oF), the temperature at the air return vent for inner circulation of the cabinet is equal to or less than 45oC (113oF).
Equipment Specifications The following table lists the equipment specifications of the IBBS200T. Table 5-2 Equipment specifications Item
Specifications
Remarks
Dimensions (H x W x D)
Cabinet (without the base): 700 mm x 600 mm x 480 mm (27.56 in. x 23.62 in. x 18.90 in.)
-
Base: 200 mm x 600 mm x 434 mm (7.87 in. x 23.62 in. x 17.09 in.) Cabinet weight
≤ 45 kg (99.23 lb)
The cabinet is configured only with monitoring boards, power distribution box, and cables.
Weight of storage batteries
12 V 92 Ah storage battery: 33.5 kg (73.87 lb)
The total capacity can expand to 48 V 184 Ah (two 48 V 92 Ah battery packs).
NOTE Storage batteries from different manufacturers have different specifications. The specifications listed above are for the commonly used storage batteries.
Method of installation
It can be installed on the ground. It can be also installed on the TMC11H or APM30H in stack mode.
In stack mode, the IBBS200T must be installed under the TMC11H or APM30H.
Environment Specifications The IBBS200T can be used outdoors. The following table lists the environment specifications of the IBBS200T.
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Table 5-3 Environment specifications Paramete r
Specifications
Remarks
Operating temperatur e
-20oC to +50oC (-4oF to +122oF)
When the temperature is higher than 50oC (122oF), a sun shield is required.
Relative humidity
5% RH to 100% RH
-
Altitude
-60 m to +4000 m (-196.85 ft to +13123.2 ft)
From the altitude of 1800 m (5905.44 ft), the maximum operating temperature drops by 1oC (33.8oF) each time the altitude increases by 220 m (721.78 ft).
Wind speed
≤ 67 m/s
-
Storage temperatur e
-40oC to +70oC (-40oF to +158oF)
-
Dustproof and waterproof
IP55
-
Noise
-
Meeting the ETS 300 753 4.1E standard (rural area)
5.3 Cabinet Interior This section describes the components and boards in the IBBS200T. The power distribution equipment is installed on the upper right wall of the cabinet interior, and the monitoring equipment is installed inside the cabinet door. To improve the cooling efficiency of the TEC, the coverage of the heat insulation foam must be greater than 75% on the inner side of the IBBS200T. The following figure shows the interior of the IBBS200T.
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5 IBBS200T Cabinet
Figure 5-2 Interior of the IBBS200T
The following table describes the components in the IBBS200D. Table 5-4 Components in the IBBS200T
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N o.
Compone nt
Option al or Manda tory
Max imu m Qua ntit y in a Sin gle Cab inet
Remarks
1
TEC
Mandat ory
1
The TEC ensures the normal operation of the IBBS200T in high-temperature areas and dissipates heat from the storage batteries.
2
CMUEA
Mandat ory
1
The central monitoring unit type EA (CMUEA) controls temperature, detects Boolean alarm, and identifies the ELU.
3
ELU
Mandat ory
1
The electronic label unit (ELU) reports the cabinet type automatically to facilitate troubleshooting.
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N o.
Compone nt
Option al or Manda tory
Max imu m Qua ntit y in a Sin gle Cab inet
Remarks
4
Storage battery
Mandat ory
8
The storage batteries provide long-duration backup power for base stations.
5
Power distributio n box
Mandat ory
1
The power distribution box is installed on the upper right wall of the cabinet interior. It transfers and distributes power to the fan or TEC and storage batteries.
6
Door status sensor
Mandat ory
1
The door status sensor monitors the status (open or closed) of the cabinet door.
NOTE
For the position of the temperature sensor for the storage batteries, see section "Temperature Sensor for the Storage Batteries" in BTS3900A Hardware Description.
5.4 IBBS200T Components This section describes the mandatory and optional components in an IBBS200T.
5.4.1 TEC A TEC dissipates heat for the storage batteries and ensures the normal operation of an IBBS200T in high-temperature areas.
Exterior The following figure shows the exterior of a TEC.
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Figure 5-3 Exterior of a TEC
(1) Outer air circulation fan
(2) Inner air circulation fan
Function A TEC performs the following functions: l
If there is a sun shield, and the ambient temperature is 500oC (122oF) without solar radiation, the TEC ensures that the temperature is equal to or less than 40oC (104oF) in the cabinet when storage batteries are in float charge and equal to or less than 45oC (113oF) when the storage batteries are in boost charge.
l
If there is no sun shield, and the ambient temperature is 50oC (122oF) with solar radiation of 1120 W/m2, the TEC ensures that the temperature in the cabinet is equal to or less than 45oC (113oF) when storage batteries are in float charge and equal to or less than 50oC (122oF) when the storage batteries are in boost charge.
l
If the ambient temperature is 32oC (89.6oF) and there is no temperature difference between the air intake vent at the hot and cold sides of the TEC, the refrigeration power of the TEC is equal to or more than 190 W±10% and the COP is equal to or more than 0.5.
5.4.2 CMUEA The central monitoring unit type EA (CMUEA) monitors the fans, Heater Assembly Unit, and cabinet temperature. A CMUEA can be used in the AMP30H, RFC, TMC11H, IBBS200D, IBBS200T, or IBBS700D cabinet.
Exterior The following figure shows the exterior of a CMUEA. Issue 03 (2013-01-15)
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Figure 5-4 Exterior of a CMUEA
Ports The following figure shows the ports on a CMUEA. Figure 5-5 Ports on a CMUEA
The following table lists information about ports on a CMUEA. Table 5-5 Ports on a CMUEA
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No .
Silkscreen on the Panel
Description
(1)
TEMP2
Reserved port, connected to the temperature sensor.
(2)
WATER
Connected to the water sensor.
(3)
IFAN4
(4)
IFAN3
Connected to the inner air circulation to receive alarms related to the inner air circulation.
(5)
IFAN2
(6)
IFAN1
(7)
TEC
Connected to the TEC cooler to receive alarms related to the TEC cooler.
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No .
Silkscreen on the Panel
Description
(8)
TEMP1
l In an RFC, this port is connected to the temperature sensor at the air intake vent of the cabinet to receive temperature alarms about the RFC. l In an IBBS200D, IBBS200T, IBBS700D, or IBBS700T, this port is connected to the battery temperature sensor to receive alarm signals about the battery temperature.
(9)
COM_OUT
It is an RS485 signal port, which communicates with lower-level cascading ports and reports monitoring information. l In the APM30H, this port is connected to the PMU. l In an RFC, TMC11H, IBBS200D, IBBS200T, IBBS700D, or IBBS700T, this port is connected to a lower-level CMUEA.
(10 )
COM_IN
RS485 signal port for communicating with upper-level cascading ports and reporting monitoring information. l In the APM30H, this port is connected to the BBU. l In the RFC or TMC11H, this port is connected to the BBU or an upper-level CMUEA. l In an IBBS200D, IBBS200T, IBBS700D, or IBBS700T, this port is connected to the PMU or an upper-level CMUEA.
(11 )
ELU
Port for connecting the ELU to report the cabinet type.
(12 )
GATE
Boolean signal port, which is connected to the door status sensor.
(13 )
IN0, IN1, and IN2
Boolean signal port. l In the APM30H, RFC, TMC11H, IBBS200D, or IBBS200T, these ports are reserved. l In the IBBS700D or IBBS700T, IN0 is connected to the heater, and IN1 and IN2 are reserved.
(14 )
SMOKE
Boolean signal port. l In the APM30H, RFC, TMC11H, IBBS200D, or IBBS200T, this port is connected to the smoke sensor. l In the IBBS700D or IBBS700T, this port is not involved.
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(15 )
EFAN1
(16 )
EFAN2
(17 )
PWR
Connected to the outer air circulation fan to receive its alarm signals.
Power input port providing DC power input for the board.
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Indicators The two indicators on the CMUEA panel indicate the status of the CMUEA. The following table describes their meanings. Table 5-6 Indicators on the CMUEA panel Silkscr een
Color
State
Meaning
RUN
Green
Blinking (on for 1s and off for 1s)
The board is functional and communicating with the BBU properly.
Blinking (on for 0.125s and off for 0.125s)
The board is functional but fails to communicate with the BBU or the board is not registered.
Steady on
The board is in the power-on self-check status.
Steady off
There is no power supply, or the board is faulty.
Steady off
No alarm is reported.
Steady on
An alarm is generated, and the board must be replaced.
Blinking (on for 1s and off for 1s)
An alarm is generated, and the alarm may be caused by an associated board or port fault. Therefore, you need to locate the fault before determining whether to replace the board.
ALM
Red
DIP Switch On the CMUEA, there is a DIP switch J18, which is used to set the working mode of the CMUEA according to the cabinet type. Figure 5-6 shows the position of the DIP switch on the CMUEA. Figure 5-6 Position of DIP switch on a CMUEA
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In different types of cabinets, DIP switches on the CMUEA are set in different ways, as shown in Figure 5-7. NOTE
The white boxes indicate the positions of all bits in the DIP switch.
Figure 5-7 DIP switch setting on the CMUEA in different cabinets
5.4.3 Power Distribution Box The power distribution box is installed on the upper right inner wall of the cabinet, which controls the two storage battery groups separately and the DC power supply to the fan or TEC.
Exterior The following figure shows the exterior of a power distribution box. Figure 5-8 Exterior of a power distribution box
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Port The following table describes the ports on a power distribution box. Table 5-7 Ports on the power distribution box No.
Silkscreen
Meaning
Description
(1)
BAT
Input power cable port for storage batteries
It supports a one-hole OT terminal (M8) installed on a cable with a cross-sectional area of 35 mm2 (0.054 in.2).
(2)
BAT_SW0
Circuit breaker for the upper storage batteries
It controls the power supply to upper storage batteries in the cabinet. The circuit breaker requires 250 A current.
(3)
FAN/ TEC_OUTPU T
Power output port for a fan or TEC
It supports EPC4 connectors and requires 30 A current.
(4)
BAT_SW1
Circuit breaker for the lower storage batteries
It controls the power supply to lower storage batteries in the cabinet. The circuit breaker requires 250 A current.
(5)
BAT
Input power cable port for storage batteries
It supports a one-hole OT terminal (M8) installed on a cable with a cross-sectional area of 35 mm2 (0.054 in.2).
(6)
FAN/ TEC_INPUT
Power input port for a fan or TEC
It supports EPC4 connectors and requires 30 A current.
Wire The following figure shows the input and output power cables for a power distribution box.
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Figure 5-9 Cables for a power distribution box
(1) RTN(+) cable for upper storage (2) Power transfer cable for a TEC or (3) NEG(-) wire for lower storage batteries fan assembly batteries (4) NEG(-) wire for upper storage batteries
(5) RTN(+) wire for lower storage batteries
-
5.4.4 Storage Battery Storage batteries is the store power equipment. NOTE
Storage batteries from different manufacturers differ in exteriors and technical specifications. In this section, a 12 V 92 Ah storage battery is described as an example.
Exterior The following figure shows the exterior of a 12 V 92 Ah storage battery.
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Figure 5-10 Exterior of a 12 V 92 Ah storage battery
Configuration The IBBS200T and IBBS200D support two types of storage battery groups: 48 V 92 Ah and 48 V 184 Ah. l
Two 48 V 92 Ah storage battery groups are connected in parallel and serve as a 48 V 184 Ah storage battery group.
l
Each group consists of four storage batteries.
Technical Specifications The following table describes the technical specifications of a 12 V 92 Ah storage battery. Table 5-8 Technical specifications of a 12 V 92 Ah storage battery Storage Battery Type
Dimensions (H x W x D)
Weight
12 V, 92 Ah
105 mm x 287 mm x 390 mm (11.30 in. x 4.13 in. x 15.35 in.)
33.5 kg (73.85 lb)
108 mm x 287 mm x 393 mm (11.30 in. x 4.25 in. x 15.47 in.)
35 kg (77.16 lb)
5.4.5 ELU An electronic label unit (ELU) reports the cabinet type automatically to facilitate troubleshooting.
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Exterior The following figure shows the exterior of an ELU. Figure 5-11 Exterior of an ELU
(1) Shell
(2) RJ45 port
NOTE
The ELU in a BTS3900 or BTS3900L has no shell.
The board collecting information from the ELU varies according to the cabinet, as listed in the following table. Table 5-9 Monitoring boards to which an ELU reports information
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Base Station Type
Cabinet
Board Collecting Information from the ELU
BTS3900 (Ver.B) and BTS3900L (Ver.B)
BTS3900 (Ver.B) and BTS3900L (Ver.B)
FMUC
BTS3900 (Ver.C) and BTS3900L (Ver.C)
BTS3900 (Ver.C) and BTS3900L (Ver.C)
FMUE
BTS3900 (Ver.D) and BTS3900L (Ver.D)
BTS3900 (Ver.D) and BTS3900L (Ver.D)
FMUEA
BTS3900A (Ver.B)
APM30H (Ver.B), TMC11H (Ver.B), RFC (Ver.B), IBBS200D (Ver.B), and IBBS200T (Ver.B)
CMUA
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Base Station Type
Cabinet
Board Collecting Information from the ELU
BTS3900A (Ver.C)
APM30H (Ver.C), TMC11H (Ver.C), RFC (Ver.C), IBBS200D (Ver.C), and IBBS200T (Ver.C)
CMUE
BTS3900A (Ver.D)
APM30H (Ver.D), TMC11H(Ver.D), RFC (Ver.D), IBBS200D(Ver.D), IBBS200T (Ver.D), and IBBS700D
CMUEA
IBBS700T
CMUF
BTS3900C (Ver.C)
OMB (Ver.C)
HEUB
BTS3900AL (Ver.A)
BTS3900AL (Ver.A), IBBS700D, IBBS700T
CCU
Installation Position Positions of ELUs vary in different cabinets. The following figure shows their positions. Figure 5-12 Position of the ELU in a BTS3900 cabinet
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Figure 5-13 Position of the ELU in a BTS3900L cabinet
Figure 5-14 Position of the ELU in an APM30H or IBBS200D cabinet
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NOTE
An ELU is located on the right inner wall of the APM30H, TMC11H, or RFC, or on the left inner wall of the IBBS200D or IBBS200T. The preceding figure shows an APM30H and an IBBS200D as an example.
Figure 5-15 Position of the ELU in an OMB
Figure 5-16 Position of the ELU in a BTS3900AL cabinet
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Figure 5-17 Position of the ELU in a IBBS700D cabinet
NOTE
In the IBBS700D, when the cabinet is configured with a CCU, the ELU is above the CCU. When the cabinet is not configured with a CCU, the ELU is on the right of the CMUEA.
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Figure 5-18 Position of the ELU in a IBBS700T cabinet
NOTE
In the IBBS700T, when the cabinet is configured with a CCU, the ELU is above the CCU. When the cabinet is not configured with a CCU, the ELU is on the left of the CMUF.
5.4.6 Door Status Sensor A door status sensor reports the status (open or closed) of a door. It is installed in any of the following cabinets: BTS3900AL, OMB, OMB (Ver.C), APM30H, RFC, TMC11H, IBBS200D, IBBS200T, IBBS700D, and IBBS700T.
Exterior A door status sensor consists of a magnet and a switch. The following figures show the exteriors of them.
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Figure 5-19 Exterior of the magnet of a door status sensor
(1) Magnetic shell
(2) Magnet
The following figure shows the exterior of the switch of a door status sensor. Figure 5-20 Exterior of the switch of a door status sensor
Installation Position Positions of door status sensors vary in different cabinets. The following figure shows their positions.
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NOTE
l A door status sensor is installed at the same position in the BTS3900AL (Ver.A), IBBS700D, and IBBS700T. Figure 5-21 uses the BTS3900AL (Ver.A) as an example. l A door status sensor is installed at the same position in the OMB and OMB (Ver.C). Figure 5-22 uses the OMB (Ver.C) as an example. l A door status sensor is installed at the same position in the following cabinets: APM30H (Ver.B), APM30H (Ver.C), APM30H (Ver.D), RFC (Ver.B), RFC (Ver.C), RFC (Ver.D), TMC11H (Ver.B), TMC11H (Ver.C), TMC11H (Ver.D), IBBS200D (Ver.B), IBBS200D (Ver.C), IBBS200D (Ver.D), IBBS200T (Ver.B), IBBS200T (Ver.C), and IBBS200T (Ver.D). Figure 5-23 uses the APM30H (Ver.D) as an example.
Figure 5-21 Position of a door status sensor in the BTS3900AL (Ver.A)
Figure 5-22 Position of a door status sensor in the OMB (Ver.C)
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Figure 5-23 Position of a door status sensor in the APM30H (Ver.D)
5.4.7 Temperature Sensor The temperature sensor monitors the temperature in the cabinet. It is installed in the following cabinets: BTS3900AL, RFC, IBBS200T, IBBS200D, OMB, IBBS700T, and IBBS700D.
Exterior The following figure shows the exterior of a temperature sensor. Figure 5-24 Exterior of a temperature sensor
(1) Temperature sensor
(2) 4-pin connector
Installation Position Positions of temperature sensors vary in different cabinets. The following figure shows their positions.
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NOTE
l A temperature sensor is installed at the same position in the RFC (Ver.B), RFC (Ver.C), and RFC (Ver.D). Figure 5-26 uses the RFC (Ver.D) as an example. l A temperature sensor is installed at the same position in the IBBS200T (Ver.B), IBBS200T (Ver.C), and IBBS200T (Ver.D). Figure 5-27 uses the IBBS200T (Ver.D) as an example. l A temperature sensor is installed at the same position in the IBBS200D (Ver.B), IBBS200D (Ver.C), and IBBS200D (Ver.D). Figure 5-28 uses the IBBS200D (Ver.D) as an example. l A temperature sensor is installed at the same position in the OMB (Ver.C), and OMB. Figure 5-29 uses the OMB (Ver.C) as an example.
Figure 5-25 Position of the temperature sensor in a BTS3900AL (Ver.A) cabinet
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Figure 5-26 Position of the temperature sensor in an RFC (Ver.D)
Figure 5-27 Position of the temperature sensor in an IBBS200T (Ver.D)
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Figure 5-28 Position of the temperature sensor in an IBBS200D (Ver.D)
Figure 5-29 Position of the temperature sensor in an OMB (Ver.C)
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Figure 5-30 Position of the temperature sensor in an IBBS700D
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Figure 5-31 Position of the temperature sensor in an IBBS700T
Technical Specifications The following table lists the technical specifications of a temperature sensor. Table 5-10 Technical specifications of a temperature sensor Counter
Specification
Operating voltage
3.0 V DC to 5.5 V DC
Temperature measurement range
-55°C to +125°C (-131 °F to +257 °F)
Temperature measurement error
±2°C (±35.6°F)
5.5 IBBS200T Cables The IBBS200T cables consist of the power cables, equipotential cables, PGND cables, and signal cables.
5.5.1 Cable List IBBS200T cables consist of the PGND cables, equipotential cables, power cables, and signal cables. Issue 03 (2013-01-15)
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Power Cables, PGND Cables, and Equipotential Cables Table 5-11 lists the power cables, PGND cables, and equipotential cables. Table 5-11 Power cables, PGND cables, and equipotential cables Classi ficati on
Cable
Cables to be install ed onsite
Cables install ed before deliver y
One End
The Other End
Connector
Installation Position
Connector
Installation Position
Power Cable for a Power Distribution Box
OT terminal
RTN(+) and NEG(-) terminals on the terminal block for storage batteries on the EPU
OT terminal
RTN(+) and NEG(-) terminals on the BAT terminal block on the power distribution box in the IBBS200T
Storage Battery Power Cable
OT terminal
Copper bar on the power distribution box
OT terminal
Storage battery
TEC Power Cable
EPC4 or EPC6 connector
LOAD8 port on the EPU
EPC4 or EPC6 connector
FAN/ TEC_INPUT port on the power distribution box in the IBBS200T
2.7.3 PGND Cable
OT terminal
Ground bar in the cabinet
OT terminal
Ground busbar outside the cabinet
2.7.4 Equipotential Cable
OT terminal
Ground bar in the upper cabinet
OT terminal
Ground bar in the lower cabinet
-
-
-
-
-
NOTE
(1) If there are two IBBS200Ts, connects the power cable for the TEC in the second IBBS200T to the power distribution box in the first IBBS200T.
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Signal Cables Table 5-12 describes signal cables. Table 5-12 Signal cables Classi ficati on
Cable
Cables to be install ed onsite Cables install ed before deliver y
One End
The Other End
Connecto r
Installation Position
Connect or
Installation Position
Monitoring Signal Cable for the Battery Cabinet
RJ45 connector
COM_IN port on the CMUEA in the IBBS200D or IBBS200T
RJ45 connector
COM_485 port on the PMU
ELU Signal Cable
RJ45 connector
ELU
RJ45 connector
ELU port on the CMUEA
Monitoring Signal Cable for the Door Status Sensor
2-pin connector
GATE port on the CMUEA
Bare wire
Door status sensor
5.5.2 Cable Connections This section describes the principles for connecting power cables and signal cables in the IBBS200T.
Power Cable Connections This section describes the power cable connections in the IBBS200T. The following figure shows the power cable connections in the IBBS200T.
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Figure 5-32 Power cable connections in the IBBS200T
(1) Cable between the battery pack and the shortcircuiting copper bar
(2) TEC Power Cable (3) Storage Battery Power Cable
(4) Cable between the battery pack and the shortcircuiting copper bar
(5) TEC Power Cable -
Monitoring Signal Cable Connections This section provides reference for onsite installation of monitoring signal cables. Figure 5-33 shows the monitoring signal cable connections in the IBBS200T. Figure 5-33 Monitoring signal cable connections in the IBBS200T
(1) Monitoring signal cable for the battery (2) ELU signal cable (3) Monitoring signal cable for the door cabinet status sensor
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5.5.3 PGND Cable PGND cables ensure that cabinets and internal components are properly grounded and that base stations run properly. PGND cables include classified into PGND cables for cabinets and PGND cables for components.
Exterior The following figure shows the exterior of a PGND cable. Figure 5-34 Exterior of a PGND cable
(1) One-hole OT terminal
(2) Two-hole OT terminal
NOTE
In most cases, the PGND cable is a yellow and green colored cable. When 110 V dual-live-wire power is supplied for BTS3900A (Ver.C) and BTS3900A (Ver.D) cabinets, the PGND cables are green.
Description The cross-sectional areas and maximum lengths of PGND cables vary according to the types of cabinets. Table 5-13 and Table 5-14 describe PGND cables.
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Table 5-13 PGND cables for cabinets
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Base Station Type
Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
BTS3900 (Ver.B) and BTS3900L (Ver.B)
BTS3900 (Ver.B) 15 m (49.21 and BTS3900L ft) (Ver.B)
25 mm2 (0.039 in.2)
BTS3900 (Ver.C) and BTS3900L (Ver.C)
BTS3900 (Ver.C) and BTS3900L (Ver.C)
One-hole OT terminal (M8)
The exterior is shown by illustration 1 in the preceding figure.
BTS3900 (Ver.D) and BTS3900L (Ver.D)
BTS3900 (Ver.D) and BTS3900L (Ver.D)
BTS3900A (Ver.B)
RFC (Ver.B)
8 m (26.25 ft)
16 mm2 (0.025 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
BTS3900A (Ver.C)
RFC (Ver.C)
8 m (26.25 ft)
25 mm2 (0.039 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
BTS3900A (Ver.D)
RFC (Ver.D)
8 m (26.25 ft)
16 mm2 (0.025 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
BTS3900A (Ver.D)
IBBS700D and IBBS700T
5 m (16.4 ft)
35 mm2 (0.054 in.2)
The cable has a onehole OT terminal (M6) on the cabinet side and a one-hole OT terminal (M8) on the ground bar side.
The exterior is shown by illustration 1 in the preceding figure.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
5 IBBS200T Cabinet
Base Station Type
Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
BTS3900AL (Ver.A)
BTS3900AL (Ver.A)
8 m (26.25 ft)
35 mm2 (0.054 in.2)
Select one of the followin g specificat ions based on the onsite situation:
The exterior is shown by illustration 2 or 3 in the preceding figure.
l The cable has a twohole OT termi nal (M6) at each end, and the distan ce betwe en the two holes of each twohole OT termi nal is 15.8 mm (0.62 in.). l The cable has a twohole OT termi
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
Base Station Type
Cabinet
5 IBBS200T Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
nal (M6) on the cabin et side and a onehole OT termi nal (M6) on the groun d bar side. The distan ce betwe en the two holes of the twohole OT termi nal is 15.8 mm (0.62 in.). IBBS700D and IBBS700T
Issue 03 (2013-01-15)
5 m (16.4 ft)
35 mm2 (0.054 in.2)
Huawei Proprietary and Confidential Copyright © Huawei Technologies Co., Ltd.
The cable has a onehole OT terminal (M6) on the cabinet side and a one-hole OT terminal (M8) on the ground bar side.
The exterior is shown by illustration 1 in the preceding figure.
242
APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
5 IBBS200T Cabinet
Base Station Type
Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
BTS3900C (Ver.C)
OMB (Ver.C)
15 m (49.21 ft)
16 mm2 (0.025 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
DBS3900
APM30H (Ver.B) series cabinets
8 m (26.25 ft)
16 mm2 (0.025 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
APM30H (Ver.C) series cabinets
8 m (26.25 ft)
25 mm2 (0.039 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
APM30H (Ver.D) series cabinets
8 m (26.25 ft)
16 mm2 (0.025 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustration 1 in the preceding figure.
Table 5-14 PGND cables for components
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Base Station Type
Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
BTS3900 (Ver.B) and BTS3900L (Ver.B)
BTS3900 (Ver.B) and BTS3900L (Ver.B)
15 m (49.21 ft)
6 mm2 (0.009 in.2)
BTS3900 (Ver.C) and BTS3900L (Ver.C)
BTS3900 (Ver.C) and BTS3900L (Ver.C)
One-hole OT terminal (M4)
BTS3900 (Ver.D) and BTS3900L (Ver.D)
BTS3900 (Ver.D) and BTS3900L (Ver.D)
The exterior is shown by illustratio n 1 in the preceding figure.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
5 IBBS200T Cabinet
Base Station Type
Cabinet
Maximum Length
CrossSection al Area
Connect or
Exterior
BTS3900A (Ver.B)
APM30H (Ver.B)
15 m (49.21 ft)
6 mm2 (0.009 in.2)
One-hole OT terminal (M4)
The exterior is shown by illustratio n 1 in the preceding figure.
IBBS200D (Ver.B) IBBS200T (Ver.B)
BTS3900C (Ver.C)
OMB (Ver.C)
15 m (49.21 ft)
6 mm2 (0.009 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustratio n 1 in the preceding figure.
BTS3900AL (Ver.A)
BTS3900AL
15 m (49.21 ft)
6 mm2 (0.009 in.2)
One-hole OT terminal (M6)
The exterior is shown by illustratio n 1 in the preceding figure.
5.5.4 Equipotential Cable An equipotential cable connects the PGND terminals of two cabinets. It ensures equipotential bonding between cabinets and safe operation of base stations.
Exterior The following figure shows the exterior of an equipotential cable.
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244
APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
5 IBBS200T Cabinet
Figure 5-35 Exterior of an equipotential cable
(1) One-hole OT terminal
(2) Two-hole OT terminal
NOTE
In most cases, the equipotential cable is a green and yellow cable. When 110 V dual-live-wire power is supplied for the cabinets used by the BTS3900A (Ver.C) or BTS3900A (Ver.D), the equipotential cable is green.
Description The following table describes equipotential cables. Table 5-15 Equipotential cables Base Station Type
Cross-Sectional Area
Connect or
Exterior
BTS3900 (Ver.B)
16 mm2 (0.025 in.2)
One-hole OT terminal (M6) at each end
The exterior is shown by illustration 1 in the preceding figure.
16 mm2 (0.025 in.2)
One-hole OT terminal (M6) at each end
The exterior is shown by illustration 2 in the preceding figure.
BTS3900 (Ver.C) BTS3900 (Ver.D) BTS3900A (Ver.B)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
5 IBBS200T Cabinet
Base Station Type
Cross-Sectional Area
Connect or
Exterior
BTS3900A (Ver.C)
The cross-sectional areas of cables vary according to the way that cabinets are combined.
One-hole OT terminal (M6) at each end
The exterior is shown by illustration 1 in the preceding figure.
One-hole OT terminal (M6) at each end
The exterior is shown by illustration 1 in the preceding figure.
l 16 mm2 (0.025 in.2) for stacked cabinets l 25 mm2 (0.039 in.2) for side-by-side cabinets BTS3900A (Ver.D)
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16 mm2 (0.025 in.2)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
5 IBBS200T Cabinet
Base Station Type
Cross-Sectional Area
Connect or
Exterior
BTS3900AL (Ver.A)
The cross-sectional areas of cables vary according to the way that cabinets are combined.
l When a BTS39 00AL AC cabinet is combi ned with a BTS39 00AL DC cabinet or an IBBS7 00D/ IBBS7 00T, each end of the cable has a twohole OT termin al (M6), and the distanc e betwee n the two holes of each twohole termin al is 15.8 mm (0.62 in.).
The exterior is shown by illustration 2 or 3 in the preceding figure.
l When a BTS3900AL AC cabinet is combined with a BTS3900AL DC cabinet or an IBBS700D/ IBBS700T, the crosssectional area of the cable is 35 mm2 (0.054 in.2) l When a BTS3900AL AC cabinet is combined with a TMC11H (Ver.C), the cross-sectional area of the cable is 25 mm2 (0.039in. 2).
l When a
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
Base Station Type
Cross-Sectional Area
5 IBBS200T Cabinet
Connect or
Exterior
BTS39 00AL AC cabinet is combi ned with a TMC1 1H (Ver.C ), the cable has a twohole OT termin al (M6) on the BTS39 00AL AC cabinet side and a onehole OT termin al (M6) on the TMC1 1H (Ver.C ) side. The distanc e betwee n the two holes of each twohole
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248
APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
Base Station Type
Cross-Sectional Area
5 IBBS200T Cabinet
Connect or
Exterior
termin al is 15.8 mm (0.62 in.).
5.5.5 Power Cables This section describes the exteriors, functions, and pin assignments of the power cables in the IBBS200T.
Storage Battery Power Cable Storage battery power cables connect storage batteries and the power distribution boxes in battery cabinets. The power cables include groups to wiring copper bars and connect the copper bars between storage batteries.
Storage Battery Power Cables Between Battery Groups and Wiring Copper Bars The following figure shows the exteriors of the power cables. Figure 5-36 Exteriors of storage battery power cables between battery groups and wiring copper bars
(1) OT terminal (M8)
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(2) OT terminal (M6)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
5 IBBS200T Cabinet
The following table describes the storage battery power cables between battery groups and wiring copper bars. Table 5-16 Storage battery power cables between battery groups and wiring copper bars Power Equipment
Wire
Color
Cross-Sectional Area
Exterior
EPU03A-02 or EPU03A-04, EPU05A-02 or EPU05A-04, and ETP48400
RTN (+)
Red
35 mm2 (0.054 in. 2)
NEG (-)
Black
The exterior is shown by illustration 1 in the preceding figure. When the power equipment is EPU05A-02, EPU05A-04, or ETP48400 in UK, the RTN(+) wire is blue and the NEG(-) wire is gray.
EPS01A or EPS01C
RTN (+)
Red
16 mm2 (0.025 in. 2)
NEG (-)
Black
The exterior is shown by illustration 2 in the preceding figure.
Copper Bars Between Storage Batteries Copper bars are delivered with the storage batteries. The following figure shows the exterior of a copper bar. Figure 5-37 Exterior of a copper bar between storage batteries
Power Cable for a Power Distribution Box A power cable for a power distribution box connects the power system to the power distribution box in a battery cabinets, which are IBBS200D, IBBS200T, IBBS700D, and IBBS700T, and provide input power to batteries in these cabinets.
Exterior Power cables for power distribution boxes vary according to the power equipment. The following figure shows the exteriors of the power cables. Issue 03 (2013-01-15)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
5 IBBS200T Cabinet
Figure 5-38 Exteriors of power cables for power distribution boxes
(1) Power series 120 connector (2) OT terminal (M6) (3) Power series 175 connector (4) OT terminal (M8)
Description The following table describes the power cables for power distribution boxes. Table 5-17 Power cables for power distribution boxes Cabinet
Issue 03 (2013-01-15)
Power Equipmen t
Wiring Termi nal
Color In Most Regio ns
UK
IBBS200D (Ver.B)/ IBBS200T (Ver.B)
EPS01A, EPS01B, EPS01C, or EPS01D
RTN(+)
Red
-
NEG(-)
Black
-
IBBS200D (Ver.C)/ IBBS200T (Ver.C)
EPU03A-02 , EPU03A-03 ,
RTN(+)
Red
-
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Cross-Sectional Area
Exterior
16 mm2 (0.025 in. 2)
The exterior is shown by illustratio n 1 in the preceding figure.
35 mm2 (0.054 in. 2)
The exterior is shown by illustratio 251
APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
Cabinet
5 IBBS200T Cabinet
Power Equipmen t
Wiring Termi nal
Color In Most Regio ns
UK
EPU03A-04 , or EPU03A-05
NEG(-)
Black
-
IBBS200D (Ver.D)/ IBBS200T (Ver.D)
EPU05A-02 , EPU05A-03 , EPU05A-04 , or EPU05A-05
RTN(+)
Red
Blue
NEG(-)
Black
Gray
IBBS700D/ IBBS700T
ETP48400
RTN(+)
Red
Blue
NEG(-)
Black
Gray
Cross-Sectional Area
Exterior
n 2 in the preceding figure.
35 mm2 (0.054 in. 2), UL3436
The exterior is shown by illustratio n 3 in the preceding figure.
35 mm2 (0.054 in. 2), UL3436
The exterior is shown by illustratio n 3 in the preceding figure.
TEC Power Cable A thermoelectric cooler (TEC) power cable feeds power into a TEC.
TEC Power Cable Exterior The following figure shows two types of TEC power cables classified by the power equipment.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
5 IBBS200T Cabinet
Figure 5-39 Exteriors of TEC power cables
(1) Tool-less female connector (pressfit type)
(2) OT terminal (M4)
(3) EPC4 or EPC6 connector
Description The following table describes TEC power cables. Table 5-18 TEC power cables Power Equipment
Wire
EPS01A or EPS01C and EPU03A-02 or EPU03A-04 EPU05A-02 or EPU05A-04
Color Most Region s
UK
RTN(+)
Black
Blue
NEG(-)
Blue
Gray
RTN(+)
Black
Blue
NEG(-)
Blue
Gray
CrossSectional Area
Exterior
2.5 mm2 (0.004 in.2)
The exterior is shown by illustration 1 in the preceding figure. The exterior is shown by illustration 2 in the preceding figure.
TEC Power Transfer Cable Exterior The following figure shows two types of TEC power transfer cables classified by the power equipment. Issue 03 (2013-01-15)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
5 IBBS200T Cabinet
Figure 5-40 Exteriors of TEC power transfer cables
(1) 3V3 connector
(2) OT terminal (M6)
(3) OT terminal (M4)
Description The following table describes TEC power transfer cables. Table 5-19 TEC power transfer cables
Issue 03 (2013-01-15)
Power Equipment
Wire
EPS 01A or EPS 01C and EPU03A-02 or EPU03A-04
EPU05A-02 or EPU05A-04
Color Most Region s
UK
RTN (+)
Black
Blue
NEG (-)
Blue
Gray
RTN (+)
Black
Blue
NEG (-)
Blue
Gray
CrossSectional Area
Exterior
l OT terminal (M4), 1.5 mm2 (0.002 in.2) l OT terminal (M6), 6 mm2 (0.009 in.2)
The exterior is shown by illustration 1 in the preceding figure.
2.5 mm2 (0.004 in.2)
The exterior is shown by illustration 2 in the preceding figure.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
5 IBBS200T Cabinet
5.5.6 Signal Cables This section describes the exteriors, functions, pin assignment of all signal cables in the IBBS200T.
ELU Signal Cable An electronic label unit (ELU) signal cable transmits the cabinet type to a monitoring board in the cabinet.
Exterior The following figure shows the exterior of an ELU signal cable. Figure 5-41 Exterior of an ELU signal cable
(1) RJ45 connector
Description The following table describes an ELU signal cable. Table 5-20 ELU signal cable
Issue 03 (2013-01-15)
X1 End
X2 End
Color
Wire Type
X1.1
X2.1
White
Twisted pair
X1.2
X2.2
Orange
X1.3
X2.3
White
X1.6
X2.6
Green
X1.5
X2.5
White
X1.4
X2.4
Blue
X1.7
X2.7
White
X1.8
X2.8
Brown
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Twisted pair
Twisted pair
Twisted pair
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
5 IBBS200T Cabinet
Monitoring Signal Cable for the Door Status Sensor A monitoring signal cable for the door status sensor is used to inform the monitoring board of the door status that is obtained from the door status sensor. Cabinets configured with door status sensors are as follows: APM30H, TMC11H, RFC, IBBS200D, IBBS200T, BTS3900AL, OMB, IBBS700D and IBBS700T.
Exterior Monitoring signal cables for door status sensors are classified into three types according to the cabinets being monitored. Figure 5-42, Figure 5-43, and Figure 5-44 show their exteriors. Figure 5-42 Exterior of a monitoring signal cable for the door status sensor (1)
Figure 5-43 Exterior of a monitoring signal cable for the door status sensor (2)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
5 IBBS200T Cabinet
NOTE
l Cable 1 has a 2-pin straight socket at one end, which is connected to the HPMI. Cable 1 has a bare wire and a cord end terminal at the other end, which are connected to a door status sensor and a cable terminal block, respectively. l Cable 2 has a bare wire at one end, which is connected to a door status sensor. Cable 2 has a cord end terminal at the other end, which is connected to a cable terminal block. l Cable 3 has a cord end terminal at each end. The two cord end terminals are connected to the two ports on one side of the cable terminal block.
Figure 5-44 Exterior of a monitoring signal cable for the door status sensor (3)
NOTE
l Cable 1 has a 2-pin straight socket at one end, which is connected to the GATE port on the PMU. Cable 1 has a bare wire and a cord end terminal at the other end, which are connected to a door status sensor and a cable terminal block, respectively. l Cable 2 has a bare wire at one end, which is connected to a door status sensor. Cable 2 has a cord end terminal at the other end, which is connected to a cable terminal block. l Cable 3 has a cord end terminal at each end. The two cord end terminals are connected to the two ports on one side of the cable terminal block.
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
5 IBBS200T Cabinet
Description Monitoring signal cables for door status sensors are classified into different types according to the monitoring boards to which the door status is reported. The following table lists the monitoring signal cables for door status sensors. Table 5-21 Types of monitoring signal cables for door status sensors Base Station Type
Cabinet
Monitoring Board to Which the Door Status Is Reported
Exterior
BTS3900A (Ver.B)
l RFC (Ver.B)
CMUA
The exterior is shown in Figure 5-42.
l TMC11H (Ver.B) l IBBS200D (Ver.B) or IBBS200T (Ver.B) l RFC (Ver.C)
BTS3900A (Ver.C)
CMUE
l TMC11H (Ver.C) l IBBS200D (Ver.C) or IBBS200T (Ver.C) l RFC (Ver.D)
BTS3900A (Ver.D)
CMUEA
l TMC11H (Ver.D) l IBBS200D (Ver.D) or IBBS200T (Ver.D) l IBBS700D
DBS3900
IBBS700T
CMUF
l TMC11H (Ver.B)
CMUA
l IBBS200D (Ver.B) or IBBS200T (Ver.B) l TMC11H (Ver.C)
CMUE
l IBBS200D (Ver.C) or IBBS200T (Ver.C) l TMC11H (Ver.D)
CMUEA
l IBBS200D (Ver.D) or IBBS200T (Ver.D) l BTS3900C
OMB
HEUA
l DBS3900 Issue 03 (2013-01-15)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
5 IBBS200T Cabinet
Base Station Type
Cabinet
Monitoring Board to Which the Door Status Is Reported
l BTS3900C (Ver.C)
OMB (Ver.C)
HEUB
l BTS3900AL (Ver.A)
CCU
Exterior
l DBS3900 (Ver.C) BTS3900AL (Ver.A)
l IBBS700D l IBBS700T l BTS3900A (Ver.B)
APM30H (Ver.B)
HPMI
APM30H (Ver.C)
HPMI
APM30H (Ver.D)
PMU
The exterior is shown in Figure 5-43.
l DBS3900 l BTS3900A (Ver.C) l DBS3900 l BTS3900A (Ver.D)
The exterior is shown in Figure 5-44.
l DBS3900
Monitoring Signal Cable for the Battery Cabinet A monitoring signal cable for the battery cabinet reports the monitoring signals to the PMU.
Exterior The following figure shows the exterior of a monitoring signal cable for the battery cabinet. Figure 5-45 Exterior of a monitoring signal cable for the battery cabinet
(1) RJ45 connector
Description The following table describes a monitoring signal cable for the battery cabinet. Issue 03 (2013-01-15)
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.D) Product Description
5 IBBS200T Cabinet
Table 5-22 Monitoring signal cable for the battery cabinet
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X1 End
X2 End
Color
Wire Type
X1.1
X2.1
White
Twisted pair
X1.2
X2.2
Orange
X1.3
X2.3
White
X1.6
X2.6
Green
X1.5
X2.5
White
X1.4
X2.4
Blue
X1.7
X2.7
White
X1.8
X2.8
Brown
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Twisted pair
Twisted pair
Twisted pair
260