apm30h&tmc11h&ibbs200d&ibbs200t (ver.c) product description(v300r001c01_04)(pdf)-en
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.C)
V300R001C01
Product Description
Issue 04
Date 2011-07-08
HUAWEI TECHNOLOGIES CO., LTD.
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About This Document
Purpose
This document describes the configurations, functions, and specifications of the boards andmodules in APM30H Ver.C, TMC11H Ver.C, IBBS200D Ver.C, and IBBS200T Ver.C. It also
describes the classification of cables, specifications of connectors, and installation positions of
cables.
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
The following table lists the product version related to this document.
Product Name Product Version
APM30H Ver.C (referred to as APM30H in
this document)
V300R001C01
TMC11H Ver.C (referred to as TMC11H in
this document)
IBBS200D Ver.C (referred to as IBBS200D inthis document)
IBBS200T Ver.C (referred to as IBBS200T in
this document)
Intended Audience
l Base station installation engineers
l System engineers
APM30H&TMC11H&IBBS200D&IBBS200T (Ver.C)
Product Description About This Document
Issue 04 (2011-07-08) Huawei Proprietary and Confidential
Copyright © Huawei Technologies Co., Ltd.
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l Site maintenance engineers
Organization1 Changes in the APM30H&TMC11H&IBBS200D&IBBS200T (Ver.C) Product
Description
This chapter describes changes in the APM30H&TMC11H&IBBS200D&IBBS200T (Ver.C)
Product Description.
2 APM30H Product Description
This chapter describes the exterior, functions, specifications, usage scenarios, structure,
components, and cables of the APM30H.
3 TMC11H Product Description
This chapter describes the exterior, functions, specifications, usage scenarios, structure,
components, and cables of the TMC11H.
4 IBBS200D Product Description
This chapter describes the exterior, functions, specifications, structure, components, and cables
of the IBBS200D.
5 IBBS200T Product Description
This chapter describes the exterior, functions, specifications, structure, components, and cables
of the IBBS200T.
Conventions
Symbol Conventions
The symbols that may be found in this document are defined as follows.
Symbol Description
Indicates a hazard with a high level of risk, which if not
avoided, will result in death or serious injury.
Indicates a hazard with a medium or low level of risk, whichif not avoided, could result in minor or moderate injury.
Indicates a potentially hazardous situation, which if not
avoided, could result in equipment damage, data loss,
performance degradation, or unexpected results.
Indicates a tip that may help you solve a problem or save
time.
Provides additional information to emphasize or supplement
important points of the main text.
About This Document
APM30H&TMC11H&IBBS200D&IBBS200T (Ver.C)
Product Description
iv Huawei Proprietary and Confidential
Copyright © Huawei Technologies Co., Ltd.
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General Conventions
The general conventions that may be found in this document are defined as follows.
Convention Description
Times New Roman Normal paragraphs are in Times New Roman.
Boldface Names of files, directories, folders, and users are in
boldface. For example, log in as user root.
Italic Book titles are in italics.
Courier New Examples of information displayed on the screen are in
Courier New.
Command Conventions
The command conventions that may be found in this document are defined as follows.
Convention Description
Boldface The keywords of a command line are in boldface.
Italic Command arguments are in italics.
[ ] Items (keywords or arguments) in brackets [ ] are optional.
{ x | y | ... } Optional items are grouped in braces and separated by
vertical bars. One item is selected.
[ x | y | ... ] Optional items are grouped in brackets and separated by
vertical bars. One item is selected or no item is selected.
{ x | y | ... }* Optional items are grouped in braces and separated by
vertical bars. A minimum of one item or a maximum of all
items can be selected.
[ x | y | ... ]* Optional items are grouped in brackets and separated by
vertical bars. Several items or no item can be selected.
GUI Conventions
The GUI conventions that may be found in this document are defined as follows.
Convention Description
Boldface Buttons, menus, parameters, tabs, window, and dialog titles
are in boldface. For example, click OK .
> Multi-level menus are in boldface and separated by the ">"
signs. For example, choose File > Create > Folder.
APM30H&TMC11H&IBBS200D&IBBS200T (Ver.C)
Product Description About This Document
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Copyright © Huawei Technologies Co., Ltd.
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Keyboard Operations
The keyboard operations that may be found in this document are defined as follows.
Format Description
Key Press the key. For example, press Enter and press Tab.
Key 1+Key 2 Press the keys concurrently. For example, pressing Ctrl+Alt
+A means the three keys should be pressed concurrently.
Key 1, Key 2 Press the keys in turn. For example, pressing Alt, A means
the two keys should be pressed in turn.
Mouse Operations
The mouse operations that may be found in this document are defined as follows.
Action Description
Click Select and release the primary mouse button without moving
the pointer.
Double-click Press the primary mouse button twice continuously and
quickly without moving the pointer.
Drag Press and hold the primary mouse button and move the
pointer to a certain position.
About This Document
APM30H&TMC11H&IBBS200D&IBBS200T (Ver.C)
Product Description
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Contents
About This Document...................................................................................................................iii
1 Changes in the APM30H&TMC11H&IBBS200D&IBBS200T (Ver.C) ProductDescription.....................................................................................................................................1-1
2 APM30H Product Description.................................................................................................2-12.1 Introduction to the APM30H...........................................................................................................................2-2
2.2 Specifications of the APM30H.......................................................................................................................2-5
2.3 Usage Scenarios of the APM30H....................................................................................................................2-9
2.4 Structure of the APM30H.............................................................................................................................2-11
2.5 APM30H Components..................................................................................................................................2-13
2.5.1 Fan Box................................................................................................................................................2-14
2.5.2 EPU......................................................................................................................................................2-24
2.5.3 Outer Air Circulation Cooling Component..........................................................................................2-39
2.5.4 Junction Box.........................................................................................................................................2-402.5.5 ELU......................................................................................................................................................2-42
2.5.6 Door Status Sensor...............................................................................................................................2-42
2.5.7 Filler Panel...........................................................................................................................................2-43
2.5.8 AC Heater (Optional)...........................................................................................................................2-44
2.5.9 SOU (Optional)....................................................................................................................................2-45
2.6 APM30H Cables...........................................................................................................................................2-46
2.6.1 Cables...................................................................................................................................................2-47
2.6.2 PGND Cables.......................................................................................................................................2-49
2.6.3 Equipotential Cable..............................................................................................................................2-50
2.6.4 Power Cables........................................................................................................................................2-50
2.6.5 Signal Cables........................................................................................................................................2-57
3 TMC11H Product Description.................................................................................................3-1
3.1 Introduction to the TMC11H...........................................................................................................................3-2
3.2 Specifications of the TMC11H.......................................................................................................................3-3
3.3 Usage Scenarios of the TMC11H....................................................................................................................3-6
3.4 Structure of the TMC11H...............................................................................................................................3-8
3.5 TMC11H Components..................................................................................................................................3-11
3.5.1 Fan Box................................................................................................................................................3-11
3.5.2 DCDU-11B and DCDU-11C...............................................................................................................3-21
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3.5.3 Outer Air Circulation Cooling Component..........................................................................................3-26
3.5.4 Filler Panel...........................................................................................................................................3-27
3.5.5 Junction Box.........................................................................................................................................3-28
3.5.6 ELU......................................................................................................................................................3-29
3.5.7 Door Status Sensor...............................................................................................................................3-30
3.5.8 AC Heater (Optional)...........................................................................................................................3-31
3.6 TMC11H Cables...........................................................................................................................................3-32
3.6.1 Cables...................................................................................................................................................3-32
3.6.2 Equipotential Cable..............................................................................................................................3-34
3.6.3 Power Cables........................................................................................................................................3-35
3.6.4 Signal Cables........................................................................................................................................3-39
4 IBBS200D Product Description...............................................................................................4-1
4.1 Introduction to the IBBS200D........................................................................................................................4-2
4.2 Specifications of the IBBS200D.....................................................................................................................4-3
4.3 Structure of the IBBS200D.............................................................................................................................4-4
4.4 IBBS200D Components..................................................................................................................................4-6
4.4.1 Fan Installation Module.........................................................................................................................4-7
4.4.2 Power Distribution Box..........................................................................................................................4-8
4.4.3 CMUE..................................................................................................................................................4-10
4.4.4 Storage Battery.....................................................................................................................................4-16
4.4.5 ELU......................................................................................................................................................4-17
4.4.6 Heating Film.........................................................................................................................................4-17
4.4.7 Door Status Sensor...............................................................................................................................4-184.4.8 Temperature Sensor for Storage Batteries............................................................................................4-19
4.5 IBBS200D Ca bles.......................................................................................................................... ...............4-20
4.5.1 Cables...................................................................................................................................................4-21
4.5.2 PGND Cables.......................................................................................................................................4-23
4.5.3 Equipotential Cable..............................................................................................................................4-23
4.5.4 Power Cables........................................................................................................................................4-24
4.5.5 Signal Cables........................................................................................................................................4-29
5 IBBS200T Product Description................................................................................................5-1
5.1 Introduction to the IBBS200T.........................................................................................................................5-25.2 Specifications of the IBBS200T......................................................................................................................5-3
5.3 Structure of the IBBS200T..............................................................................................................................5-5
5.4 IBBS200T Components..................................................................................................................................5-6
5.4.1 TEC........................................................................................................................................................5-7
5.4.2 Power Distribution Box..........................................................................................................................5-9
5.4.3 CMUE..................................................................................................................................................5-11
5.4.4 Storage Battery.....................................................................................................................................5-17
5.4.5 ELU......................................................................................................................................................5-18
5.4.6 Door Status Sensor...............................................................................................................................5-18
5.4.7 Temperature Sensor for Storage Batteries............................................................................................5-19
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5.5 IBBS200T Cables..........................................................................................................................................5-20
5.5.1 Cables...................................................................................................................................................5-21
5.5.2 PGND Cables.......................................................................................................................................5-23
5.5.3 Equipotential Cable..............................................................................................................................5-23
5.5.4 Power Cables........................................................................................................................................5-24
5.5.5 Signal Cables........................................................................................................................................5-28
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Figures
Figure 2-1 APM30H.............................................................................................................................................2-2
Figure 2-2 Scenario where the APM30H is stacked with a battery cabinet and is used for a distributed base station
.............................................................................................................................................................................2-10
Figure 2-3 Scenario where the APM30H is used for an outdoor macro base station........................................2-11
Figure 2-4 Structure of the APM30H.................................................................................................................2-12Figure 2-5 Fan box.............................................................................................................................................2-15
Figure 2-6 Fan....................................................................................................................................................2-15
Figure 2-7 Signal cable delivered with a fan......................................................................................................2-15
Figure 2-8 HPMI................................................................................................................................................2-17
Figure 2-9 Ports on the panel of the HPMI........................................................................................................2-17
Figure 2-10 CMUE.............................................................................................................................................2-20
Figure 2-11 Ports and indicators on a CMUE....................................................................................................2-20
Figure 2-12 Position of the DIP switch on the CMUE.......................................................................................2-23
Figure 2-13 DIP switch settings of the CMUE in different cabinets.................................................................2-23
Figure 2-14 EPU.................................................................................................................................................2-25
Figure 2-15 EPU03A-03....................................................................................................................................2-27
Figure 2-16 EPU03A-05....................................................................................................................................2-28
Figure 2-17 EPU03A-02....................................................................................................................................2-29
Figure 2-18 EPU03A-04....................................................................................................................................2-30
Figure 2-19 PMU................................................................................................................................................2-33
Figure 2-20 Ports, indicators, and switch on the front panel of the PMU..........................................................2-34
Figure 2-21 R ear panel of the PMU...................................................................................................................2-34
Figure 2-22 DIP switch on the right of the PMU...............................................................................................2-36
Figure 2-23 PSU.................................................................................................................................................2-37
Figure 2-24 PSU (AC/DC) panel.......................................................................................................................2-38
Figure 2-25 Outer air circulation cooling component........................................................................................2-40
Figure 2-26 Junction box....................................................................................................................................2-41
Figure 2-27 Structure of the junction box..........................................................................................................2-41
Figure 2-28 ELU................................................................................................................................................2-42
Figure 2-29 Magnet part of the door status sensor.............................................................................................2-43
Figure 2-30 Switch part of the door status sensor..............................................................................................2-43
Figure 2-31 filler panel.......................................................................................................................................2-44
Figure 2-32 AC heater........................................................................................................................................2-44
Figure 2-33 SOU................................................................................................................................................2-46
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Figure 3-27 Equipotential cable.........................................................................................................................3-34
Figure 3-28 Power cable connections in the TMC11H......................................................................................3-35
Figure 3-29 Input power cable for the TMC11H (1)..........................................................................................3-36
Figure 3-30 Input power cable for the TMC11H (2)..........................................................................................3-37
Figure 3-31 Power cable for the fan box in the TMC11H.................................................................................3-37
Figure 3-32 Power cable for the AC heater........................................................................................................3-38
Figure 3-33 Signal cable connections in the TMC11H......................................................................................3-39
Figure 3-34 Signal cable for the ELU................................................................................................................3-40
Figure 3-35 Monitoring signal cable for the door status sensor.........................................................................3-40
Figure 3-36 Monitoring signal cable for the fan on the front door....................................................................3-41
Figure 4-1 IBBS200D..........................................................................................................................................4-2
Figure 4-2 Structure of the IBBS200D.................................................................................................................4-5
Figure 4-3 Fan installation module......................................................................................................................4-7
Figure 4-4 PDB....................................................................................................................................................4-8
Figure 4-5 External structure of a PDB..............................................................................................................4-10
Figure 4-6 CMUE...............................................................................................................................................4-12
Figure 4-7 Ports and indicators on a CMUE......................................................................................................4-12
Figure 4-8 Position of the DIP switch on the CMUE.........................................................................................4-14
Figure 4-9 DIP switch settings of the CMUE in different cabinets...................................................................4-15
Figure 4-10 Exterior of the 12 V 92 Ah storage battery.....................................................................................4-16
Figure 4-11 ELU................................................................................................................................................4-17
Figure 4-12 Heating film....................................................................................................................................4-18
Figure 4-13 Magnet part of the door status sensor.............................................................................................4-19Figure 4-14 Switch part of the door status sensor..............................................................................................4-19
Figure 4-15 Position for installing a temperature sensor for storage batteries in the IBBS200D......................4-20
Figure 4-16 Position for installing a temperature sensor for storage batteries in the IBBS200T......................4-20
Figure 4-17 PGND cable....................................................................................................................................4-23
Figure 4-18 Equipotential cable.........................................................................................................................4-24
Figure 4-19 Power cable connections in the IBBS200D....................................................................................4-25
Figure 4-20 Input power cables for storage batteries.........................................................................................4-26
Figure 4-21 Power cables between the battery group and the copper bar in the junction box...........................4-26
Figure 4-22 Copper bar for inter-battery series connection...............................................................................4-26
Figure 4-23 Input power cables for the fan in the IBBS200D...........................................................................4-27
Figure 4-24 Power transfer cables for the fan in the IBBS200D.......................................................................4-28
Figure 4-25 Power cable for the heating film.....................................................................................................4-28
Figure 4-26 Signal cable connections in the IBBS200D....................................................................................4-29
Figure 4-27 Signal cable for the ELU................................................................................................................4-30
Figure 4-28 Monitoring signal cable for the door status sensor.........................................................................4-30
Figure 4-29 Monitoring signal cable for the storage battery cabinet.................................................................4-31
Figure 5-1 IBBS200T...........................................................................................................................................5-2
Figure 5-2 Structure of the IBBS200T.................................................................................................................5-5
Figure 5-3 TEC.....................................................................................................................................................5-8
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Figure 5-4 PDB....................................................................................................................................................5-9
Figure 5-5 External structure of a PDB..............................................................................................................5-10
Figure 5-6 CMUE...............................................................................................................................................5-12
Figure 5-7 Ports and indicators on a CMUE......................................................................................................5-13
Figure 5-8 Position of the DIP switch on the CMUE.........................................................................................5-15
Figure 5-9 DIP switch settings of the CMUE in different cabinets................................................................... 5-15
Figure 5-10 Exterior of the 12 V 92 Ah storage battery.....................................................................................5-17
Figure 5-11 ELU................................................................................................................................................ 5-18
Figure 5-12 Magnet part of the door status sensor.............................................................................................5-19
Figure 5-13 Switch part of the door status sensor..............................................................................................5-19
Figure 5-14 Position for installing a temperature sensor for storage batteries in the IBBS200D......................5-20
Figure 5-15 Position for installing a temperature sensor for storage batteries in the IBBS200T...................... 5-20
Figure 5-16 PGND cable....................................................................................................................................5-23
Figure 5-17 Equipotential cable.........................................................................................................................5-23
Figure 5-18 Power cable connections in the IBBS200T....................................................................................5-25
Figure 5-19 Input power cables for storage batteries.........................................................................................5-26
Figure 5-20 Power cables between the battery group and the copper bar in the junction box...........................5-26
Figure 5-21 Copper bar for inter-battery series connection............................................................................... 5-26
Figure 5-22 Input power cable for the TEC....................................................................................................... 5-27
Figure 5-23 Power transfer cable for the TEC................................................................................................... 5-28
Figure 5-24 Signal cable connections in the IBBS200T....................................................................................5-29
Figure 5-25 Signal cable for the ELU................................................................................................................5-29
Figure 5-26 Monitoring signal cable for the door status sensor.........................................................................5-30Figure 5-27 Monitoring signal cable for the storage battery cabinet................................................................. 5-31
Figures
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Tables
Table 2-1 Functions of the APM30H...................................................................................................................2-2
Table 2-2 DC power distribution functions of the APM30H...............................................................................2-3
Table 2-3 Electrical specifications of the APM30H.............................................................................................2-5
Table 2-4 Engineering specifications of the APM30H........................................................................................2-7
Table 2-5 Sur ge protection specifications of the APM30H.................................................................................2-8
Table 2-6 Environmental specifications of the APM30H....................................................................................2-9
Table 2-7 Pin assignment...................................................................................................................................2-16
Table 2-8 Technical specifications of the fan.....................................................................................................2-16
Table 2-9 Specifications of the ports on the panel of the HPMI........................................................................2-17
Table 2-10 Functions of the CMUE...................................................................................................................2-19
Table 2-11 Functions of the ports and indicators on a CMUE...........................................................................2-21
Table 2-12 Indicators on a CMUE.....................................................................................................................2-22
Table 2-13 Specifications of the CMUE............................................................................................................2-23
Table 2-14 Types and usage scenarios of the EPU............................................................................................2-26Table 2-15 DC power distribution functions of the EPU in the APM30H used for a distributed base station
.............................................................................................................................................................................2-31
Table 2-16 DC power distribution functions of the EPU in the APM30H used for an outdoor macro base station
.............................................................................................................................................................................2-31
Table 2-17 Specifications of the EPU................................................................................................................2-32
Table 2-18 Ports and switch on the PMU...........................................................................................................2-35
Table 2-19 Indicators on the PMU.....................................................................................................................2-35
Table 2-20 Indicators on a PSU (AC/DC) panel................................................................................................2-38
Table 2-21 Specifications of the heat exchanger core........................................................................................2-40
Table 2-22 Technical specifications of the SOU................................................................................................2-45Table 2-23 Power cables, PGND cables, and equipotential cable......................................................................2-47
Table 2-24 Signal cables.....................................................................................................................................2-48
Table 2-25 PGND cables....................................................................................................................................2-49
Table 2-26 Specifications of the equipotential cable..........................................................................................2-50
Table 2-27 Specifications of an AC input power cable......................................................................................2-53
Table 2-28 Pin assignment for the wires of the power cable for the SOU.........................................................2-54
Table 2-29 Pin assignment for the wires of the power cable for the AC heater.................................................2-55
Table 2-30 Specifications of the power cable for the fan box in the APM30H.................................................2-56
Table 2-31 Pin assignment for the wires of the input power cable for the junction box....................................2-57
Table 2-32 Pin assignment for the wires of the signal cable for the ELU..........................................................2-59
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Table 2-33 Pin assignment for the wires of the monitoring signal cable for the fan on the front door..............2-61
Table 2-34 Pin assignment for the wires of the environment monitoring signal cable......................................2-62
Table 2-35 Pin assignment for the wires of the monitoring signal transfer cable..............................................2-64
Table 3-1 Functions of the TMC11H...................................................................................................................3-2
Table 3-2 Electrical specifications of the TMC11H.............................................................................................3-3
Table 3-3 Engineering specifications of the TMC11H........................................................................................3-4
Table 3-4 Sur ge protection specifications of the TMC11H.................................................................................3-4
Table 3-5 Environmental specifications of the TMC11H....................................................................................3-5
Table 3-6 Pin assignment................................................................................................................................... 3-13
Table 3-7 Technical specifications of the fan.....................................................................................................3-13
Table 3-8 Specifications of the ports on the panel of the HPMI........................................................................3-14
Table 3-9 Functions of the CMUE.....................................................................................................................3-16
Table 3-10 Functions of the ports and indicators on a CMUE...........................................................................3-18
Table 3-11 Indicators on a CMUE..................................................................................................................... 3-19
Table 3-12 Specifications of the CMUE............................................................................................................ 3-20
Table 3-13 DC power distribution functions of the DCDU-11B/DCDU-11C...................................................3-23
Table 3-14 Specifications of the ports on the panel of the DCDU-11B/DCDU-11C........................................ 3-24
Table 3-15 Specifications of the heat exchanger core........................................................................................3-27
Table 3-16 Power cables and equipotential cables.............................................................................................3-32
Table 3-17 Signal cables.....................................................................................................................................3-33
Table 3-18 Specifications of the equipotential cable..........................................................................................3-35
Table 3-19 Specifications of the input power cable for the TMC11H (1)..........................................................3-36
Table 3-20 Specifications of the input power cable for the TMC11H (2)..........................................................3-37Table 3-21 Specifications of the power cable for the fan box in the TMC11H................................................. 3-38
Table 3-22 Pin assignment for the wires of the power cable for the AC heater.................................................3-38
Table 3-23 Pin assignment for the wires of the signal cable for the ELU..........................................................3-40
Table 3-24 Pin assignment for the wires of the monitoring signal cable for the fan on the front door..............3-41
Table 4-1 Functions of the IBBS200D.................................................................................................................4-2
Table 4-2 Electrical specifications of the IBBS200D..........................................................................................4-3
Table 4-3 Engineering specifications of the IBBS200D......................................................................................4-3
Table 4-4 Environmental specifications of the IBBS200D..................................................................................4-4
Table 4-5 Por ts on the PDB..................................................................................................................................4-8
Table 4-6 Functions of the CMUE.....................................................................................................................4-10
Table 4-7 Functions of the ports and indicators on a CMUE.............................................................................4-12
Table 4-8 Indicators on a CMUE....................................................................................................................... 4-14
Table 4-9 Specifications of the CMUE.............................................................................................................. 4-15
Table 4-10 Technical specifications of the 12 V 92 Ah storage battery............................................................ 4-17
Table 4-11 Power cables, PGND cables, and equipotential cable......................................................................4-21
Table 4-12 Signal cables.....................................................................................................................................4-22
Table 4-13 PGND cables....................................................................................................................................4-23
Table 4-14 Specifications of the equipotential cable..........................................................................................4-24
Table 4-15 Specifications of the input power cable for the fan in the IBBS200D.............................................4-27
Tables
APM30H&TMC11H&IBBS200D&IBBS200T (Ver.C)
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Table 4-16 Specifications of the power transfer cable for the fan in the IBBS200D.........................................4-28
Table 4-17 Pin assignment for the wires of the signal cable for the ELU..........................................................4-30
Table 4-18 Pin assignment for the wires of the monitoring signal cable for the storage battery cabinet...........4-31
Table 5-1 Functions of the IBBS200T.................................................................................................................5-2
Table 5-2 Electrical specifications of the IBBS200T...........................................................................................5-3
Table 5-3 Engineering specifications of the IBBS200T.......................................................................................5-3
Table 5-4 Environmental specifications of the IBBS200T..................................................................................5-4
Table 5-5 Ports on the PDB..................................................................................................................................5-9
Table 5-6 Functions of the CMUE.....................................................................................................................5-11
Table 5-7 Functions of the ports and indicators on a CMUE.............................................................................5-13
Table 5-8 Indicators on a CMUE.......................................................................................................................5-14
Table 5-9 Specifications of the CMUE..............................................................................................................5-16
Table 5-10 Technical specifications of the 12 V 92 Ah storage battery............................................................5-17
Table 5-11 Power cables, PGND cables, and equipotential cable......................................................................5-21
Table 5-12 Signal cables.....................................................................................................................................5-22
Table 5-13 PGND cables....................................................................................................................................5-23
Table 5-14 Specifications of the equipotential cable..........................................................................................5-24
Table 5-15 Specifications of the input power cable for the TEC.......................................................................5-27
Table 5-16 Specifications of the power transfer cable for the TEC...................................................................5-28
Table 5-17 Pin assignment for the wires of the signal cable for the ELU..........................................................5-30
Table 5-18 Pin assignment for the wires of the monitoring signal cable for the storage battery cabinet...........5-31
APM30H&TMC11H&IBBS200D&IBBS200T (Ver.C)
Product Description Tables
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1 Changes in theAPM30H&TMC11H&IBBS200D&IBBS200T
(Ver.C) Product Description
This chapter describes changes in the APM30H&TMC11H&IBBS200D&IBBS200T (Ver.C)
Product Description.
04 (2011-07-08)
This is the fourth commercial release.
Compared with issue 03 (2011-06-10), no information is added.
Compared with issue 03 (2011-06-10), this issue incorporates the following changes:
Topic Change Description
2.4 Structure of the APM30H Changed the maximum quantity of filler panels
configured in the APM30H to 3.
4.3 Structure of the IBBS200D Added the description of the heating film.
Compared with issue 03 (2011-06-10), no information is deleted.
03 (2011-06-10)
This is the third commercial release.
Compared with issue 02 (2011-05-30), no information is added.
Compared with issue 02 (2011-05-30), this issue incorporates the following changes:
Topic Change Description
3.5.2 DCDU-11B and
DCDU-11C
Modified the components controlled by the DC output
terminals.
APM30H&TMC11H&IBBS200D&IBBS200T (Ver.C)
Product Description
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APM30H&TMC11H&IBBS200D&IBBS200T (Ver.C)
Product Description
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Compared with issue 02 (2011-05-30), no information is deleted.
02 (2011-05-30)
This is the second commercial release.
Compared with issue 01 (2011-04-30), no information is added.
Compared with issue 01 (2011-04-30), this issue incorporates the following changes:
Topic Change Description
EPU Added the description about short-circuiting bars.
2.6.2 PGND Cables Deleted the description about the PGND cable for the
modules.
2.6.3 Equipotential Cable Modified the cable specifications.
3.2 Specifications of the
TMC11H
Modified the maximum input current in the electrical
specifications of the TMC11H.
Compared with issue 01 (2011-04-30), no information is deleted.
01 (2011-04-30)
This is the first commercial release.
1 Changes in the
APM30H&TMC11H&IBBS200D&IBBS200T (Ver.C)
Product Description
APM30H&TMC11H&IBBS200D&IBBS200T (Ver.C)
Product Description
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2 APM30H Product DescriptionAbout This Chapter
This chapter describes the exterior, functions, specifications, usage scenarios, structure,
components, and cables of the APM30H.
2.1 Introduction to the APM30H
The APM30H, a power cabinet used for Huawei radio communication products outdoors,
provides direct current (DC) power supply for distributed base stations and outdoor macro base
stations used outdoors. It can house a BBU and transmission devices and features small footprint
and ease-of-transportation.
2.2 Specifications of the APM30H
The specifications of an APM30H consist of electrical specifications, engineering specifications,
surge protection specifications, and environmental specifications.
2.3 Usage Scenarios of the APM30H
The APM30H can be used for a distributed or outdoor macro base station.
2.4 Structure of the APM30H
The APM30H has a modular design with high integrity. This improves the operability and
maintainability of the APM30H.
2.5 APM30H Components
APM30H components include the fan box, embedded power subrack unit (EPU), outer air
circulation cooling component, junction box, electronic labeling unit (ELU), door status sensor,
filler panel, AC heater (optional), and service outlet unit (SOU, optional).
2.6 APM30H Cables
This section describes the PGND cables, equipotential cables, power cables, and signal cables
in the APM30H.
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2.1 Introduction to the APM30H
The APM30H, a power cabinet used for Huawei radio communication products outdoors, provides direct current (DC) power supply for distributed base stations and outdoor macro base
stations used outdoors. It can house a BBU and transmission devices and features small footprint
and ease-of-transportation.
Exterior of the APM30H
The dimensions (H x W x D) of an APM30H without a base are 700 mm x 600 mm x 480 mm
(27.56 in. x 23.62 in. x 18.90 in.).
Figure 2-1 shows an APM30H.
Figure 2-1 APM30H
Functions of the APM30H
Table 2-1 describes the functions of the APM30H.
Table 2-1 Functions of the APM30H
Item Description
Installation space for
customer equipment
The dimensions (H x W x D) are 7 U x 19 in. x 380 mm.
The dimensions are the space for installing customer equipment
after a 5 U AC/DC power subrack is installed.
Battery cabinet
connection
The APM30H can be connected to a single battery cabinet to support
a maximum of one 48 V 184 Ah battery group or to two stacked
battery cabinets to support a maximum of one 48 V 368 Ah battery
group.
Power supply unit
(PSU) built in the
APM30H
l It converts input AC mains power into –48 V DC power.
l It is hot-swappable.
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Item Description
Power monitoring unit
(PMU) built in the
APM30H
l It manages PSUs and charges/discharges storage batteries.
l It provides RS485 communication and dry contact alarm ports
for remote monitoring.l It provides battery low-voltage disconnection (BLVD) and load
low-voltage disconnection (LLVD) functions.
l It is hot-swappable.
Power input detection When an AC/DC embedded power supply system is configured, the
APM30H supports 220 V AC single-phase, 220 V AC three-phase,
and 110/120 V AC dual-live-line power.
AC power distribution After going through the embedded power subrack unit (EPU), an
AC power input is divided into two AC power outputs:
l One output provides AC power for the service outlet unit (SOU).
l One is connected to the 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.
DC power distribution For details, see Table 2-2.
Surge protection for
power supply and
signal ports
Surge protection circuits are provided for external AC/DC power,
monitoring alarm, and communication ports to protect the APM30H
from electric and lightning-induced surges.
Heat dissipation The APM30H uses the core of the heat exchanger and inner and
outer air circulation fans for heat dissipation and dust prevention.
Grounding The ground cable for the cabinet and ground cables for equipment
are connected to the ground bar of the cabinet.
Automatic reporting of
the cabinet type
The APM30H automatically reports the cabinet type using the
electronic labeling unit (ELU).
Table 2-2 describes the DC power distribution functions of the APM30H.
Table 2-2 DC power distribution functions of the APM30H
UsageScenario
DCOutput
PowerDevice
OutputTerminalLabel
ProtectionComponent
Specification
Quantity
DCOutputTerminal Type
Distrib
uted
base
station
Six
LLVD
output
s
RRU RRU0-
RRU5
Circuit
breaker
25 A 6 Easy
power
receptacl
e (pressfit
type)
connector Nine
BLV
TMC TMC 30 A 1
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UsageScenario
DCOutput
PowerDevice
OutputTerminalLabel
ProtectionComponent
Specification
Quantity
DCOutputTerminal Type
EMUA LOAD4 1
FAN LOAD5 1
Batter
y
power
backu
p
BAT - Circuit
breaker
160 A 1 PP175
connector
(gray)
with a 35
mm2
cable
2.2 Specifications of the APM30H
The specifications of an APM30H consist of electrical specifications, engineering specifications,
surge protection specifications, and environmental specifications.
Electrical Specifications of the APM30H
Table 2-3 describes the electrical specifications of the APM30H.
Table 2-3 Electrical specifications of the APM30H
Item Specification
AC
input
featu
res
Typical
input
voltage
200 V AC to 240 V AC (220 V AC single-phase)
200/346 V AC to 240/415 V AC (220/380 V AC three-phase)
100/200 V AC to 120/240 V AC (110 V AC dual-live-wire)
120/208 V AC to 127/220 V AC (120 V AC dual-live-wire)
Operating
voltagerange
176 V AC to 290 V AC (220 V AC single-phase)
176/304 V AC to 290/500 V AC (220/380 V AC three-phase)
90/180 V AC to 135/270 V AC (110 V AC dual-live-wire)
105/176 V AC to 150/260 V AC (120 V AC dual-live-wire)
Frequenc
y of the
input
voltage
45 Hz to 65 Hz
Rated
input
current
53 A (220 V AC single-phase)
23 A (220/380 V AC three-phase)
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Item Specification
55 A (110 V AC dual-live-wire)
52 A (120 V AC dual-live-wire)
Input
mode
l 220/380 V AC three-phase
l 110 V AC dual-live-wire
l 120 V AC dual-live-wire
l 220 V AC single-phase
AC input
power
It varies depending on AC loads.
l ≤ 9062.5 W when the power supply unit (PSU) is configured
l ≤ 10062.5 W when the PSU, heater, and heating film are configured
l ≤ 10562.5 W when the PSU, heater, heating film, and SOU are
configured
DC
outp
ut
featu
res
Output
voltage
range
–43.2 V DC to –57 V DC
Output
current
0 A to 150 A
Typical
output
voltage
–53.5 V DC
Number of DC
outputs
The number of DC outputs varies depending on usage scenarios.l 16 DC outputs for a distributed base station
l 12 DC outputs for an outdoor macro base station
DC
output
power
≤ 8700 W (the maximum output power of a single module is 2900 W
when no PSU backup is available)
Prote
ction
featu
res
Input
protectio
n
l Overvoltage protection: An alarm is generated when the input voltage
is greater than a specified AC overvoltage alarm threshold (280 V by
default).
l Undervoltage protection: An alarm is generated when the input
voltage is less than a specified AC undervoltage alarm threshold (180
V by default).
Output
protectio
n
l Overvoltage protection: An alarm is generated when the busbar
voltage is greater than a specified DC overvoltage alarm threshold (–
58 V by default).
l Undervoltage protection: An alarm is generated when the busbar
voltage is less than a specified DC undervoltage alarm threshold (–
45 V by default).
l Overcurrent and short circuit protection
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Item Specification
Permissible heat
consumption in
the cabinet
≤ 1050 W
Engineering Specifications of the APM30H
Table 2-4 describes the engineering specifications of the APM30H.
Table 2-4 Engineering specifications of the APM30H
Item Specification Remarks
Weight ≤ 68 kg Total weight of the equipment
l Including the cabinet frame, inner air
circulation fan box, outer air circulation fan
box, core of the heat exchanger, embedded
power subrack unit (EPU), and cables
l Excluding the baseband processing unit
(BBU), customer equipment, power
monitoring unit (PMU), and PSUs
≤ 87 kg Weight of the cabinet in full configuration
l Including the cabinet, one PMU, three
PSUs, and one BBU
l Excluding customer equipment
Cabinet
dimensions (H x
W x D)
700 mm x 600 mm x
480 mm
The base is not included.
Base dimensions
(H x W x D)
200 mm x 600 mm x
434 mm
-
Customer
equipment
dimensions (H x
W x D)
7 U x 19 in. x 380 mm The depth consists of the rear (280 mm) and
front (100 mm) of the installation plane for
subrack mounting ears.
Space for cabling
and maintenance
in front of the
cabinet
70 mm -
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Item Specification Remarks
Installation
option
The APM30H can be
installed on a floor,
wall, or pole. It can also
be stacked with the
radio frequency cabinet
(RFC), IBBS200D, or
IBBS200T.
The APM30H must be placed on the RFC,
IBBS200D, or IBBS200T in stacking mode.
Surge Protection Specifications of the APM30H
Table 2-5 describes the surge protection specifications of the APM30H.
Table 2-5 Surge protection specifications of the APM30H
Item Specification
Surge protection for the AC
input port
Differential mode:
l Rated discharge current In (8/20 µs): 30 kA
l Maximum discharge current Imax (8/20 µs): 60 kA
Common mode:
l Rated discharge current In (8/20 µs): 30 kA
l Maximum discharge current Imax (8/20 µs): 60 kA
Surge protection for the DC
output port
l Differential mode (8/20 µs): 10 kA
l Common mode (8/20 µs): 20 kA
Loads corresponding to the DC output port are minor loads.
NOTEThe surge protection level of the shield layer of an RRU power cable
is 40 kA.
Surge protection for signal
ports
E1/T1 port:
l Differential mode (8/20 µs): 3 kA
l Common mode (8/20 µs): 5 kA
FE port:l Differential mode (8/20 µs): 3 kA
l Common mode (8/20 µs): 5 kA
Environmental Specifications of the APM30H
The APM30H can be used outdoors. Table 2-6 describes the environmental specifications of
the APM30H.
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Table 2-6 Environmental specifications of the APM30H
Item Specification Remarks
Operating
temperatur e
–40°C to +50°C A heater is required when the
operating temperature is below –20°C.A sun shield is required when the
operating temperature is above 50°C.
NOTEThe operating temperature when a heater
is configured is obtained from the average
lowest temperature of all days in the
coldest month of a year.
Relative
humidity
5% RH to 100% RH -
Altitude –60 m to 4000 m Above the altitude of 1800 m, the
maximum operating temperaturedecreases by 1°C each time the altitude
increases by 220 m.
Wind
speed
≤ 67 m/s -
Storage
temperatur
e
–40°C to +70°C -
Dustproof
and
waterproof
class
IP55 -
Noise level ≤ 61 dBA at 25°C or ≤ 67 dBA at
45°C when the total power
consumption is less than or equal to
700 W
Meeting the ETS 300 753 4.1E
standard (rural areas)
≤ 66 dBA at 25°C or ≤ 76 dBA at
45°C when the total power
consumption is greater than 700 W
and less than or equal to 1050 W
Meeting the ETS 300 753 4.1E
standard (urban areas)
2.3 Usage Scenarios of the APM30H
The APM30H can be used for a distributed or outdoor macro base station.
Used for a Distributed Base Station
When the APM30H is used for a distributed base station:
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l The APM30H provides 7 U-high space for installing the BBU and transmission equipment.
The embedded power supply system provides –48 V DC power to the distributed base
station and transmission equipment and charges battery groups in a battery cabinet.
l When no mains are available, the battery groups in a battery cabinet provide –48 V DC
power to the distributed base station and transmission equipment.
Figure 2-2 shows a scenario where the APM30H is stacked with a battery cabinet and is used
for a distributed base station.
Figure 2-2 Scenario where the APM30H is stacked with a battery cabinet and is used for a
distributed base station
NOTE
When the APM30H is used for a distributed base station, the IBBS200D or IBBS200T can be selected.
Figure 2-2 uses the IBBS200D as an example.
Used for an Outdoor Macro Base Station
When the APM30H is used for an outdoor macro base station:
l
The APM30H provides 7 U-high space for installing the baseband processing unit (BBU)and transmission equipment. The embedded power supply system provides –48 V DC
2 APM30H Product Description
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power to the BBU, radio frequency unit (RFU), and transmission equipment and charges
battery groups in a battery cabinet.
l When no mains are available, the battery groups in a battery cabinet provide –48 V DC
power to the BBU, RFU, and transmission equipment.
l The APM30H provides alarm reporting functions for radio frequency cabinet (RFC) fans,door status sensor, direct current distribution unit (DCDU), and battery cabinet.
Figure 2-3 shows a scenario where the APM30H is used for an outdoor macro base station.
Figure 2-3 Scenario where the APM30H is used for an outdoor macro base station
NOTE
When the APM30H is used for an outdoor macro base station, the IBBS200D or IBBS200T can be
configured. Figure 2-3 uses the IBBS200D as an example.
2.4 Structure of the APM30H
The APM30H has a modular design with high integrity. This improves the operability and
maintainability of the APM30H.
Figure 2-4 shows the structure of the APM30H.
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Figure 2-4 Structure of the APM30H
SN
Name OptionalorMa
ndatory
MaximumQuantityConf
igured in aSingleCabinet
Description
(1) Fan box Ma
nda
tor
y
1 The fan box is equipped with fans, a HERT power
monitoring interface unit (HPMI), and a central
monitoring unit type E (CMUE). It is used to dissipate
heat in the cabinet.
(2) Door statussensor Manda
tor
y
1 The door status sensor monitors the opening and closingof the front door of the cabinet.
(3) Electronic
labeling
unit (ELU)
Ma
nda
tor
y
1 The ELU reports the cabinet type automatically to
facilitate fault identification.
(4) Embedded
power
subrack unit
(EPU)
Ma
nda
tor
y
1 The EPU converts AC power into DC power and supplies
power to the devices inside the cabinet. The EPU consists
of the EPU subrack, power monitoring unit (PMU), and
AC/DC power supply unit (PSU).
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SN
Name Optionalor
Mandatory
MaximumQuantity
Configured in aSingleCabinet
Description
(5) Filler panel Ma
nda
tor
y
3 The filler panel is a 1 U-high plastic component that
prevents hot air recirculation in blank space of the BBU
subrack.
(6) AC heater Opt
ion
al
1 The AC heater is an optional component. It ensures that
the customer equipment in the cabinet works in a proper
temperature range when the ambient temperature is low.
It is installed in the 1 U space at the bottom of the cabinet.
If both the AC heater and service outlet unit (SOU) are
configured, the AC heater is installed in the 1 U space
above the SOU.
(7) SOU Opt
ion
al
1 The SOU is an optional component. It transfers AC
power supply to the customer equipment and is installed
in the 1 U space at the bottom of the cabinet.
(8) Outer air circulation
cooling
component
Manda
tor
y
1 It is installed on the front door of the cabinet, dissipatingheat in the cabinet.
(9) Junction
box
Ma
nda
tor
y
1 The junction box distributes one AC input to four
outputs. It is used in scenarios where an SOU and
multiple heating films or heaters are configured.
In the APM30H structure,
l The 7 U space for customer equipment is available when no AC heater or SOU is installed
in the APM30H.
l It take 1 U space for customer equipment when an AC heater or SOU is installed in the
APM30H.
2.5 APM30H Components
APM30H components include the fan box, embedded power subrack unit (EPU), outer air
circulation cooling component, junction box, electronic labeling unit (ELU), door status sensor,
filler panel, AC heater (optional), and service outlet unit (SOU, optional).
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2.5.1 Fan Box
The fan box consists of the fan subrack, fan, HERT power monitoring interface unit (HPMI),
and central monitoring unit type E (CMUE).
2.5.2 EPU
The embedded power subrack unit (EPU) converts AC power into DC power and supplies power to components in the cabinet.
2.5.3 Outer Air Circulation Cooling Component
The outer air circulation cooling component consists of the heat exchanger core and fan. The
heat exchanger core can speed up inner and outer air circulation to reduce the operating
temperature of the cabinet. It can also prevent dust from entering the cabinet. The fan dissipates
heat in the cabinet.
2.5.4 Junction Box
The junction box divides one AC input into four AC outputs. The AC outputs are used for the
SOU and multiple heating films or heaters.
2.5.5 ELUThe Electronic Label Unit (ELU) automatically reports the information about the cabinet type,
facilitating fast troubleshooting.
2.5.6 Door Status Sensor
The door status sensor monitors the opening and closing of the front door of the cabinet.
2.5.7 Filler Panel
The filler panel is a 1 U-high plastic component, which is made of polycarbonate. It is installed
in the blank space below the baseband unit (BBU) to dissipate heat in the cabinet.
2.5.8 AC Heater (Optional)
The AC heater is an optional component. It ensures that customer equipment in the APM30H
works in a pr oper temperature range when the ambient temperature is low.
2.5.9 SOU (O ptional)
The Service Outlet Unit (SOU) feeds AC power to the customer equipment. The SOU is optional.
2.5.1 Fan Box
The fan box consists of the fan subrack, fan, HERT power monitoring interface unit (HPMI),
and central monitoring unit type E (CMUE).
Figure 2-5 shows a fan box.
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Figure 2-5 Fan box
(1) Fan subrack (2) Fan (3) CMUE (4) HPMI
Fan
Fan is installed in the fan box of a cabinet, dissipating the heat in the cabinet. Signal cable is
delivered with fan.
Exterior
Figure 2-6 shows a fan.
Figure 2-6 Fan
Figure 2-7 shows the signal cable delivered with a fan.
Figure 2-7 Signal cable delivered with a fan
NOTE
The signal cable delivered with a fan feeds power into the fan and monitors the fan.
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Pin Assignment
Table 2-7 describes the pin assignment for the wires of the signal cable delivered with a fan.
Table 2-7 Pin assignment
Wire X1End
Color Description
W1 A.1 Red Connects to the positive pole.
W2 A.2 Yello
w
Receives pulse-width modulation (PWM) speed-adjusting
signals.
W3 A.3 Blue Receives alarm or speed signals.
W4 A.4 Black Connects to the negative pole.
NOTE
The color of the signal cable delivered with a fan varies depending on manufacturers.
Specifications
Table 2-8 lists the technical specifications of a fan.
Table 2-8 Technical specifications of the fan
Item Specification
Dimensions (diameter x
height)
175 mm x 69 mm
Length of the lead 600 mm
Rated voltage –48 V
Operating voltage range –36 V DC to –60 V DC
Rated current 1.3 A
Maximum current 2.1 A
Rated power 62 W
Maximum power 100 W
Rated traffic volume 697 m3/h
Rated speed 4000 r/min
Speed-adjusting mode PWM mode
Operating temperature –25°C to +70°C
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HPMI
The HERT power monitoring interface unit (HPMI) provides input and output ports for alarm
signals.
Exterior
Figure 2-8 shows an HPMI.
Figure 2-8 HPMI
Ports
Figure 2-9 shows the ports on the panel of the HPMI. Table 2-9 lists the specifications of the
ports on the panel of the HPMI.
Figure 2-9 Ports on the panel of the HPMI
Table 2-9 Specifications of the ports on the panel of the HPMI
Silkscreen Port Function Port Relationship with the Related
Cabinet(1) (2)
APM30H TMC11H
PMU_DB50 Connects to the PMU
and reports alarmscollected by the
HPMI to the BBU.
- -
OUT0 and OUT1 Provides one
Boolean output at
each port.
Reserved Reserved
IN0, IN1, and IN2 Provides one
Boolean input at each
port.
Reserved Reserved
FUSE Reserved for fuse
detection
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Silkscreen Port Function Port Relationship with the Related
Cabinet(1) (2)
APM30H TMC11H
GATE Connects to the door
status sensor and
receives door status
alarms.
Mandatory Reserved
IN3, IN4 Provides one
Boolean input at each
port.
Reserved Reserved
TEM_BAT1 Connects to the
temperature sensor
for storage batteries
in IBBS2.1 andIBBS2.2 and
receives battery
temperature alarms.
Optional Reserved
SMOKE Connects to the
smoke sensor and
receives smoke
alarms.
Reserved Reserved
WATER Connects to the water
sensor and receives
water damage
alarms.
Reserved Reserved
TEM_HUM Connects to the
temperature and
humidity sensor and
receives temperature
and humidity alarms.
Reserved Reserved
NOTE
(1) Mandatory monitoring devices and related monitoring signal cables are installed in a cabinet before thecabinet is delivered. Optional devices are configured based on customer requirements, and related cables
must be installed onsite. For details about how to connect the cables, see the , , BTS3900A (Ver.C)
Installation Guide, , and .
(2) For details about the positions of devices monitored by the HPMI, see Structure of the BTS3900A
Cabinets.
CMUE
The central monitoring unit type E (CMUE) monitors the temperature of the fan box, heater,
and cabinet. The CMUE can be used for cabinets such as the AMP30H, RFC, TMC11H,
IBBS200D, and IBBS200T.
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Function
Table 2-10 describes the functions of the CMUE.
Table 2-10 Functions of the CMUEFunction Description
Pulse-width
modulation
(PWM) speed
adjusting
Fan speeds can be adjusted based on temperature or controlled by the
baseband unit (BBU).
Fan speed query Fan speeds can be queried by running a query command.
Full speed rotation
when a fan is faulty
When a fan in the fan subrack is faulty, other fans rotate at a full speed.
Full speed rotationwhen the CPU is
faulty
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Alarm reporting
when the fan box is
faulty
The alarms are as follows:
l Communication failure alarm
top related