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TP48200T-D20A1 & D20A2 & D14A1 & D14A2 V300R001 User Manual Issue 01 Date 2012-06-01 HUAWEI TECHNOLOGIES CO., LTD.
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Page 1: User Manual Plantas Huawei

TP48200T-D20A1 & D20A2 & D14A1 & D14A2 V300R001

User Manual

Issue 01

Date 2012-06-01

HUAWEI TECHNOLOGIES CO., LTD.

Page 2: User Manual Plantas Huawei

Issue 01 (2012-06-01) Huawei Proprietary and Confidential

Copyright © Huawei Technologies Co., Ltd

i

Copyright © Huawei Technologies Co., Ltd. 2012. 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]

Page 3: User Manual Plantas Huawei

TP48200T-D20A1 & D20A2 & D14A1 & D14A2

User Manual About This Document

Issue 01 (2012-06-01) Huawei Proprietary and Confidential

Copyright © Huawei Technologies Co., Ltd

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About This Document

Purpose

This document describes the TP48200T-D20A1 & D20A2 & D14A1 & D14A2 in terms of its

features, structure, components, installation, commissioning, and maintenance.

Intended Audience

This document is intended for:

Sales engineers

Technical support personnel

Maintenance personnel

Symbol Conventions

The symbols that may be found in this document are defined as follows.

Symbol Description

Alerts you to a high risk hazard that could, if not avoided,

result in serious injury or death.

Alerts you to a medium or low risk hazard that could, if not

avoided, result in moderate or minor injury.

Alerts you to a potentially hazardous situation that could, if not

avoided, result in equipment damage, data loss, performance

deterioration, or unanticipated results.

Provides a tip that may help you solve a problem or save time.

Provides additional information to emphasize or supplement

important points in the main text.

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TP48200T-D20A1 & D20A2 & D14A1 & D14A2

User Manual About This Document

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Copyright © Huawei Technologies Co., Ltd

iii

Change History

Changes between document issues are cumulative. The latest document issue contains all the

changes made in earlier issues.

Issue 01 (2012-06-01)

This issue is the first official release.

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User Manual Contents

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Contents

About This Document .................................................................................................................... ii

1 Overview ......................................................................................................................................... 1

1.1 Designation Explanation .................................................................................................................................. 1

1.2 Typical Networking .......................................................................................................................................... 1

1.3 Configuration ................................................................................................................................................... 2

1.4 Features ............................................................................................................................................................ 8

2 Component Description ............................................................................................................... 9

2.1 Cabinet ............................................................................................................................................................. 9

2.2 Temperature Control Unit .............................................................................................................................. 11

2.2.1 Direct-Cooling Unit .............................................................................................................................. 11

2.2.2 TEC ....................................................................................................................................................... 15

2.3 Rectifier .......................................................................................................................................................... 21

2.3.1 Appearance ............................................................................................................................................ 21

2.3.2 Panel...................................................................................................................................................... 22

2.4 Monitoring Unit ............................................................................................................................................. 23

2.4.1 Appearance ............................................................................................................................................ 23

2.4.2 Main Control Module............................................................................................................................ 24

2.4.3 Basic I/O module .................................................................................................................................. 26

2.4.4 GPRS Module ....................................................................................................................................... 29

2.4.5 GPRS antenna ....................................................................................................................................... 32

2.5 PDU ................................................................................................................................................................ 32

2.5.1 AC PDU ................................................................................................................................................ 33

2.5.2 DC PDU ................................................................................................................................................ 33

2.6 Intelligent Power Meter .................................................................................................................................. 35

2.6.1 Appearance ............................................................................................................................................ 35

2.6.2 Pins........................................................................................................................................................ 36

2.6.3 Specification ......................................................................................................................................... 37

2.7 Bluetooth electric door lock ........................................................................................................................... 37

2.7.1 Appearance ............................................................................................................................................ 38

2.7.2 Pins........................................................................................................................................................ 38

2.8 Bluetooth controller ....................................................................................................................................... 39

2.8.1 Appearance ............................................................................................................................................ 39

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2.8.2 Pins........................................................................................................................................................ 39

2.8.3 Specification ......................................................................................................................................... 40

2.9 Storage Battery ............................................................................................................................................... 40

3 Safety Precautions ....................................................................................................................... 41

3.1 Overview ........................................................................................................................................................ 41

3.2 Local Safety Regulations ............................................................................................................................... 41

3.3 Grounding Requirements ............................................................................................................................... 41

3.4 Human Safety ................................................................................................................................................. 42

3.5 Equipment Safety ........................................................................................................................................... 42

3.6 Electrical Safety ............................................................................................................................................. 42

4 Installation and Commissioning.............................................................................................. 45

5 Maintenance ................................................................................................................................. 46

5.1 Routine Maintenance...................................................................................................................................... 46

5.2 Troubleshooting .............................................................................................................................................. 49

5.3 Component Replacment ................................................................................................................................. 56

6 Monitoring Function .................................................................................................................. 74

6.1 LCD User Interface ........................................................................................................................................ 74

6.2 Web User Interface ......................................................................................................................................... 78

A Technical Specifications ........................................................................................................... 90

B LCD Menu ................................................................................................................................... 94

C Acronyms and Abbreviations ................................................................................................ 102

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User Manual 1 Overview

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1 Overview

1.1 Designation Explanation

The TP48200T-D20A1 & D20A2 is an integrated outdoor backup alternating current-to-direct

current (AC-to-DC) power system that employs -48 V, 50 A rectifiers and outputs a maximum

of 200A current.

The TP48200T-D14A1 & D14A2 is an integrated outdoor backup alternating current-to-direct

current (AC-to-DC) power system that employs -48 V, 50 A rectifiers and outputs a maximum

of 100A current.

1.2 Typical Networking

The TP48200T-D20A1 & D20A2 & D14A1 & D14A2, AC power supply, automatic transfer

switch (ATS), alternating current distribution box (ACDB), storage batteries, and related

devices constitute a site power solution. Figure 1-1 shows the positioning of the

TP48200T-D20A1 & D20A2 & D14A1 & D14A2 in the typical site power solution.

Figure 1-1 TP48200T-D20A1 & D20A2 & D14A1 & D14A2 in the typical site power solution

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1.3 Configuration

The TP48200T-D20A1 & D20A2 & D14A1 & D14A2 is a cabinet that houses the fans,

rectifiers, monitoring unit, sensors, power distribution unit (PDU), intelligent power meter

and Bluetooth electric door lock.

Table 1-1 Configuration

Item Composition AC input mode

TP48200T-D20A1 Cabinet (13U space for customer

equipments and two-layer rack for

storage batteries)

R4850G1 (2 to 4 PCS)

ECC500

PDU

Intelligent power meter

Bluetooth electric door lock

Battery temperature sensor

Temperature sensor in

direct-cooling unit

Temperature and humidity sensor

Door status sensor

Water sensor (optional)

Smoke sensor (optional)

220V three-phase

five-line (L1, L2,

L3, N, PE)

110V three-phase

five-line (L1, L2,

L3, N, PE)

220V

single-phase

three-line (L, N,

PE)

TP48200T-D20A2 Cabinet (13U space for customer

equipments and two-layer rack for

storage batteries)

R4850G1 (2 to 4 PCS)

ECC500

PDU

Intelligent power meter

Bluetooth electric door lock

Battery temperature sensor

Temperature sensor in

direct-cooling unit

Temperature and humidity sensor

Door status sensor

Water sensor (optional)

Smoke sensor (optional)

110V

dual-live-wire

(L1, L2, N, PE)

110V

dual-live-wire

(L1, L2, PE)

220V

single-phase

three-line (L, N,

PE)

TP48200T-D14A1 Cabinet (5U space for customer

equipments and one-layer rack for

storage batteries)

R4850G1 (2 PCS)

ECC500

220V three-phase

five-line (L1, L2,

L3, N, PE)

110V three-phase

five-line (L1, L2,

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Item Composition AC input mode

PDU

Intelligent power meter

Bluetooth electric door lock

Battery temperature sensor

Temperature sensor in

direct-cooling unit

Temperature and humidity sensor

Door status sensor

Water sensor (optional)

Smoke sensor (optional)

L3, N, PE)

220V

single-phase

three-line (L, N,

PE)

TP48200T-D14A2 Cabinet (5U space for customer

equipments and one-layer rack for

storage batteries)

R4850G1 (2 PCS)

ECC500

PDU

Bluetooth electric door lock

Battery temperature sensor

Temperature sensor in

direct-cooling unit

Temperature and humidity sensor

Door status sensor

Water sensor (optional)

Smoke sensor (optional)

110V

dual-live-wire

(L1, L2, N, PE)

110V

dual-live-wire

(L1, L2, PE)

220V

single-phase

three-line (L, N,

PE)

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Figure 1-2 TP48200T-D20A1 interior

(1) Alternating current power

distribution unit(AC PDU)

(2) Door status sensor (3) Direct current power distribution

unit(DC PDU)

(4) Intelligent power meter (5) Space for rectifiers (6) Space for customer equipments

(7) Central monitoring unit type A

(CMUA) for thermoelectric cooler

(TEC)

(8) TEC (9) Base

(10) GPRS antenna (11) Fan assembly (12) CMUA for fan assembly

(13) Monitoring unit (ECC500) (14) Temperature and

humidity sensor

(15) Air filter

(16) Bluetooth Electric door lock (17) Space for Bluetooth

controller

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Figure 1-3 TP48200T- D20A2 interior

(1) Alternating current power

distribution unit(AC PDU)

(2) Door status sensor (3) Direct current power distribution

unit(DC PDU)

(4) Intelligent power meter (5) Space for rectifiers (6) Space for customer equipments

(7) Central monitoring unit type A

(CMUA) for thermoelectric cooler

(TEC)

(8) TEC (9) Base

(10) GPRS antenna (11) Fan assembly (12) CMUA for fan assembly

(13) Monitoring unit (ECC500) (14) Temperature and

humidity sensor

(15) Air filter

(16) Bluetooth Electric door lock (17) Space for Bluetooth

controller

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Figure 1-4 TP48200T- D14A1 interior

(1) Alternating current power

distribution unit(AC PDU)

(2) Door status sensor (3) Direct current power distribution

unit(DC PDU)

(4) Intelligent power meter (5) Space for rectifiers (6) Space for customer equipments

(7) Central monitoring unit type A

(CMUA) for thermoelectric cooler

(TEC)

(8) TEC (9) Base

(10) GPRS antenna (11) Fan assembly (12) CMUA for fan assembly

(13) Air filter (14) Monitoring unit

(ECC500)

(15) Temperature and humidity sensor

(16) Bluetooth Electric door lock (17) Space for Bluetooth

controller

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Figure 1-5 TP48200T- D14A2 interior

(1) Alternating current power

distribution unit(AC PDU)

(2) Door status sensor (3) Direct current power distribution

unit(DC PDU)

(4) Intelligent power meter (5) Space for rectifiers (6) Space for customer equipments

(7) Central monitoring unit type A

(CMUA) for thermoelectric cooler

(TEC)

(8) TEC (9) Base

(10) GPRS antenna (11) Fan assembly (12) CMUA for fan assembly

(13) Air filter (14) Monitoring unit

(ECC500)

(15) Temperature and humidity sensor

(16) Bluetooth Electric door lock (17) Space for Bluetooth

controller

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1.4 Features

The TP48200T-D20A1 & D20A2 supplies stable power to -48 V DC equipment and provides

a maximum current of 200 A.

The TP48200T-D14A1 & D14A2 supplies stable power to -48 V DC equipment and provides

a maximum current of 100 A.

Easy Installation

The modules of monitoring unit (ECC500) and rectifiers are hot-swappable. This facilitates

the system installation, saves maintenance time, and reduces the operational expenditure

(OPEX).

High Efficiency

The TP48200T-D20A1 & D20A2 & D14A1 & D14A2 uses rectifiers with a 96% efficiency

record.

Low Imbalance Degree of Current Equalization

The imbalance degree of current equalization for rectifiers is less than 5%.

Remote Monitoring

OPEX is reduced when the TP48200T-D20A1 & D20A2 & D14A1 & D14A2 performs

comprehensive power management and battery management functions by connecting to the

element management system (EMS).

Wide Range of AC Input Voltage

The AC input voltage of the TP48200T-D20A1 & D20A2 & D14A1 & D14A2 ranges from

85 V AC to 300 V AC phase voltage.

Safety and Regulatory Design

The TP48200T-D20A1 & D20A2 & D14A1 & D14A2 complies with Conformite Europeenne

(CE) standards, the power distribution components comply with CE standards, and the

rectifier complies with underwriters laboratory (UL), CE, and Technical Watch-Over

Association (TUV) standards.

High Protection Level

The cabinet protection level is IP55.

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2 Component Description

2.1 Cabinet

Dimensions (H x W x D) of the TP48200T-D20A1 & D20A2 cabinet (excluding the base) are

2060 mm x 700 mm x 700 mm (81.1 in. x 27.56 in. x 27.56 in.). Dimensions (H x W x D) of

the base are 180 mm x 700 mm x 700 mm (7.09 in. x 27.56 in. x 27.56 in.).

Figure 2-1 shows the TP48200T-D20A1 & D20A2 cabinet.

Figure 2-1 TP48200T-D20A1 & D20A2 cabinet

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Dimensions (H x W x D) of the TP48200T-D14A1 & D14A2 cabinet (excluding the base) are

1400 mm x 700 mm x 700 mm (55.1 in. x 27.56 in. x 27.56 in.). Dimensions (H x W x D) of

the base are 180 mm x 700 mm x 700 mm (7.09 in. x 27.56 in. x 27.56 in.).

Figure 2-2 shows the TP48200T-D14A1 & D14A2 cabinet.

Figure 2-2 TP48200T-D14A1 & D14A2 cabinet

Table 2-1 TP48200T-D20A1 & D20A2 & D14A1 & D14A2 cabinet height distribution

Item TP48200T-D20A1 & D20A2 TP48200T-D14A1 & D14A2

Customer

equipment

13 U (557.85 mm [21.96 in.]) (not

included the space for storage

batteries)

5 U (222.25 mm [8.75 in.]) (not

included the space for storage

batteries)

Storage

batteries

16U (755.6 mm [29.75 in.]) for two

layers

8 U (355.6 mm [14.00 in.]) for one

layer

Embedded

power

system

AC PDU: 3 U (133.35 mm [5.25

in.])

DC PDU: 4U (177.8 mm [7.0

in.])

AC PDU: 3 U (133.35 mm [5.25

in.])

DC PDU: 4U (177.8 mm [7.0

in.])

Monitoring

unit

(ECC500

1U (44.45mm [1.75in.]) 1U (44.45mm [1.75in.])

Recitifers 2U (88.9mm[3.50in.]) 2U (88.9mm[3.50in.])

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2.2 Temperature Control Unit

2.2.1 Direct-Cooling Unit

The direct-cooling unit extends the area for exchanging air inside and outside the cabinet,

speeds up air circulation, and reduces the operating temperature in the cabinet.

The fan assembly houses two centrifugal fans. The fans direct air into the cabinet through the

lower part of the door and out of the cabinet through the top cover of the cabinet.

Appearance

Figure 2-3 shows the fan assembly. Figure 2-4 shows a centrifugal fan.

Figure 2-3 Fan assembly

Figure 2-4 Centrifugal fan

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Specifications

Table 2-2 Technical specifications of fan assembly

Item Specifications

Rated voltage –48 V DC

Rated power 2 x 34 W

Air flows

Figure 2-5 The direct-cooling unit air flows

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CMUA for fan assembly

Figure 2-6 Ports of the CMUA

(1) PWR (2) SMOKE (3) IN0, IN1, IN2 (4) GATE

(5) ELU (6) ALM & RUN

Indicators

(7) COM_IN (8) COM_OUT

(9) TEM.FAN (10)TEC (11) FAN_INT (12) FAN_EXT

Table 2-3 Ports of the CMUA

Silkscreen

Function

PWR Power input port.

SMOKE Reserved.

IN0, IN1, IN2 Reserved.

GATE Reserved.

ELU Reserved.

ALM & RUN

Indicators

Indicate CMUA status.

COM_IN Connects to the monitoring unit.

COM_OUT Reserved.

TEM.FAN Connects to the temperature sensor.

TEC Reserved.

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Silkscreen

Function

FAN_INT Connects to the fan on the left in the fan assembly.

FAN_EXT Connects to the fan on the right in the fan assembly.

Table 2-4 Indicator description

Silk Screen

Color Status Meaning

RUN Green Blinks at 0.5 Hz. The board functions normally and communicates

properly with upper-level equipment.

Blinks at 4 Hz.

The board functions normally, but fails to

communicate with the upper-level equipment. If the

board does not communicate with the upper-level

equipment within one minute, the communication

fails.

ON/OFF

The board is not performing self-test after being

powered on.

ALM Red Steady off No alarm is generated.

Steady on An alarm is generated, and the board must be

replaced.

Blinks at 0.5 Hz.

An alarm is generated. It may be caused by a fault

on the board or in a port. Therefore, the board must

be replaced as required.

CMUA Jumper Slot

The CMUA has three jumper slots SW1, SW2, and SW3 for setting its working mode in

different cabinets. Figure 2-7 shows jumper slots on the CMUA.

Figure 2-7 Jumper slots on the CMUA (plan view)

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Figure 2-8 shows settings for jumper slots on the CMUA.

Figure 2-8 Settings for Jumper slots on the CMUA

2.2.2 TEC

A TEC consists of semiconductor refrigeration chips, a cold-end heat sink, a hot-end heat sink,

an internal fan (cold-end fan), an external fan (hot-end fan), and a controller. Figure 2-9

shows the TEC components.

Appearance

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Figure 2-9 TEC components

1. Semiconductor refrigeration chip 2. Cold-end heat sink 3. Hot-end heat sink

4. Internal fan 5. External fan 6. Controller

Specifications

Table 2-5 Technical specifications

Item Specifications

Rated voltage (V DC) –48 V DC

Rated refrigeration capacity

(L32/L32)

190 W

Maximum power input 380 W

Heating capacity 300W

Ambient range –40˚C to +40˚C

Humidity range 5%–100% RH

Storage environment –40˚C to +70˚C

Complies with the ETS 300 019-1-1, CLASS 1.2

requirements.

Altitude ≤ 4700 m

Transportation performance Complies with the ETS 300 019-1-2, CLASS 2.3

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Item Specifications

requirements.

IP protection level IP55 (cabinet), which complies with the International

Electrotechnical Commission (IEC) 60529.

Anti-corrosion performance of the

external air circulation system

Circular salt-fog test: The TEC passes the circular

salt-fog test required by the IEC68-2-52 for 10

circles.

Damp heat test: The TEC passes the damp heat test

required by the IEC 68-2-38 for 10 days.

Mould growth test: The TEC passes the mould

growth test required by the IEC 68-2-10 for 28

days.

Flame spread rating UL94 HF-1 level of sealing materials.

UL94 V0 level of shielding materials and printed

circuit board (PCB).

UL94 V1 level of other materials.

Safety Complies with the IEC 60950-1, EN 60950-1, and

UL 60950-1. (The withstand voltage is greater than

750 V DC.)

The internal fan is configured with a grille

protection cover, which complies with the IP3X

requirement (Your fingers do not contact

dangerous components in any direction.) Warning

signs are attached to the internal fan.

Service life 10 years

Failure rate < 1%

Fan service life (internal fan

L10/25˚C and external fan

L10/40˚C)

≥ 70,000 hours

Mean time between failures

(MTBF)

> 100,000 hours

Dimensions (H x W x D,

including the flange)

200 mm x 180 mm x 400 mm

Weight 6.4kg

Positive polarity protection of DC

power supply

Supported

Operating voltage 36V–60V

Temperature sensor Monitoring range:-20℃–80℃(±2℃)

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Air flows

Figure 2-10 TEC air flows

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CMUA for TEC

Figure 2-11 Ports of the CMUA

(1) PWR (2) SMOKE (3) IN0, IN1, IN2 (4) GATE

(5) ELU (6) ALM & RUN

Indicators

(7) COM_IN (8) COM_OUT

(9) TEM.FAN (10)TEC (11) FAN_INT (12) FAN_EXT

Table 2-6 Ports of the CMUA

Silkscreen

Function

PWR Power input port.

SMOKE Reserved.

IN0, IN1, IN2 Reserved.

GATE Reserved.

ELU Reserved.

ALM & RUN

Indicators

Indicate CMUA status.

COM_IN Connects to the monitoring unit.

COM_OUT Reserved.

TEM.FAN Connects to the temperature sensor.

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Silkscreen

Function

TEC Connects to the TEC.

FAN_INT Connects to the internal fan of the TEC.

FAN_EXT Connects to the external fan of the TEC.

Table 2-7 Indicator description

Silk Screen

Color Status Meaning

RUN Green Blinks at 0.5 Hz. The board functions normally and communicates

properly with upper-level equipment.

Blinks at 4 Hz.

The board functions normally, but fails to

communicate with the upper-level equipment. If the

board does not communicate with the upper-level

equipment within one minute, the communication

fails.

ON/OFF

The board is not performing self-test after being

powered on.

ALM Red Steady off No alarm is generated.

Steady on An alarm is generated, and the board must be

replaced.

Blinks at 0.5 Hz.

An alarm is generated. It may be caused by a fault

on the board or in a port. Therefore, the board must

be replaced as required.

CMUA Jumper Slot

The CMUA has three jumper slots SW1, SW2, and SW3 for setting its working mode in

different cabinets. Figure 2-12shows jumper slots on the CMUA.

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Figure 2-12 Jumper slots on the CMUA (plan view)

Figure 2-13 shows settings for jumper slots on the CMUA.

Figure 2-13 Settings for Jumper slots on the CMUA

2.3 Rectifier

2.3.1 Appearance

The rectifier converts the AC input power into stable -48 V DC power. The TP48200T-D20A1

& D20A2 & D14A1 & D14A2 can be configured with two, three, or four rectifiers.

Figure 2-14 shows the rectifier.

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Figure 2-14 rectifier

2.3.2 Panel

The rectifier panel provides the run indicator, alarm indicator, and fault indicator. Figure 2-15

shows the rectifier panel.

Figure 2-15 rectifier panel

(1) Run indicator (2) Alarm indicator (3) Fault indicator

Table 2-8 Indicator description of rectifier

Indicator Color Status Description Measures

Run

indicator

Green Steady on The rectifier output is

normal.

The rectifier runs

properly, and no

measure is required.

Off The rectifier has no output. Replace the rectifier if

the AC input is normal.

Alarm

indicator

Yellow Off No alarm is generated. No measure is required.

Steady on The rectifier generates a

prewarning for power

limiting due to

overtemperature.

Check that the air vent is

not blocked and the

ambient temperature is

within a normal range.

The rectifier generates an

alarm for shutdown due to

ambient overtemperature or

undertemperature protection.

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Indicator Color Status Description Measures

The rectifier generates an

alarm due to AC input

overvoltage or undervoltage

protection.

Check that the electrical

grid voltage is within a

normal range.

The rectifier is hibernated. No measure is required.

Fault

indicator

Red Off The rectifier is not faulty. No measure is required.

Steady on The rectifier is locked due to

output overvoltage.

Pull out the rectifier and

reinsert it after 1 minute.

There is no output

because the rectifier is faulty.

Replace the rectifier.

Blinking

at 4 Hz

The rectifier is loading an

application program.

The rectifier

automatically recovers

after loading, and no

measure is required.

2.4 Monitoring Unit

2.4.1 Appearance

The monitoring unit (model: ECC500) consists of a main control module, a basic input/output

(I/O) module, a GPRS module and three reserved slots. The main control module and Basic

I/O module are mandatory, and other modules are optional. All modules in the ECC500 are

hot-swappable.

Figure 2-16 ECC500 architecture

(1) Main control module (2) Filler panel (3) GPRS module

(4) Basic I/O module

Table 2-9 ECC component functions

Component Silkscreen Configuration Function

Main control

module

SMU03A Mandatory Provides an LCD to query and set

local parameters.

Monitors and manages input

energy.

Provides an operating status

indicator.

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Component Silkscreen Configuration Function

Provides TCP/IP and RS485 ports

for northbound communication.

TCP/IP stands for transmission

control protocol/Internet protocol.

Provides RS485 ports for

southbound communication.

Intelligently manages storage

batteries.

Generates alarms.

Manages intelligent southbound

components.

Manages assets.

Basic IO

module

MUS01A Mandatory Monitors southbound components

over serial ports.

Receives alarms generated by dry

contacts and sensors for detecting

battery temperatures, water, smoke,

and ambient temperature and

humidity.

Provides RS485 ports for

southbound communication.

GPRS

module

MUC01A

Optional Enables the ECC500 to

communicate with the NetEco in

out-of-band (by GPRS) mode.

Provides six digital parameter input

ports and two dry contact outputs.

2.4.2 Main Control Module

Figure 2-17 shows the front panel of the main control module.

Figure 2-17 Front panel of the main control module

(1) Indicators (2) LCD (3) Buttons

(4) Fast Ethernet (FE) port (5) RS485/RS232 port (6) COM1 port

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(7) COM2 port (8) Universal Serial Bus (USB) port

Indicators

Table 2-10 Indicator description

Silk Screen

Color Status Description

Run

indicator

Green Off The main control module is faulty or has no DC

input.

Blinking (on

for 1s and then

off for 1s)

The main control module runs properly and

communicates with the NetEco.

Blinking (on

for 0.125s and

then off for

0.125s)

The main control module runs properly but does

not communicate with the NetEco properly.

Alarm

indicator

Red Off No critical or major alarm is generated.

Steady on A critical or major alarm is generated.

LCD

You can view information and set parameters on the LCD. You can set and query parameters

using the four buttons on the front panel. Table 2-11 describes the button functions.

Buttons

Table 2-11 Button description

Button Definition Description

▲ or ▼ Up or down Allows you to view menu items and set the value of a menu

item.

Cancel Returns to the previous menu without saving the settings of the

current menu item.

Enter Enters the main menu from the standby screen, enters a

submenu from the main menu, or saves menu settings.

Note:

After a menu is displayed, the standby screen is displayed if no button is pressed for 5 minutes.

After a menu is displayed, the LCD screen becomes dark if no button is pressed for 5 minutes.

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Ports

Table 2-12 Port description

Silk Screen Description

FE Northbound port, connecting to the network or NetEco

RS485/RS232 Reserved

COM1 Reserved

COM2 Reserved

USB Reserved

Figure 2-18 FE pin definition

Table 2-13 FE pin definition

Pin Signal Description

1 TX+ FE transmit

2 TX-

3 RX+ FE receive

6 RX-

2.4.3 Basic I/O module

Figure 2-19 shows the front panel of the Basic I/O module.

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Figure 2-19 Front panel of the Basic I/O module

(1)ELU (2)SMOKE (3)DI_1 (4)DI_2 (5)DI_3

(6)AI_1 (7)AI_2 (8)TEM_HUM (9)WATER (10)CAN

(11)12V/1A (12)COM1 (13)GATE (14)COM2 (15)COM3

(16)DC input

terminals

(17)Indicators

Indicators

Table 2-14 shows the indicator description of the Basic I/O module.

Table 2-14 Indicator description

Silk Screen

Color Meaning Status Description

PWR Green Power

indicator

Steady on The power supply is normal.

Off The input/output (I/O) module is

faulty or has no DC input.

RUN Green Run indicator Blinking

(on for 1s

and then off

for 1s)

Communication is normal between

the I/O module and the main control

module.

Blinking

(on for

0.125s and

then off for

0.125s)

Communication fails between the I/O

module and the main control module.

ALM Red Alarm

indicator

Off Reserved.

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Ports

Table 2-15 Port description

Silk Screen Description Remarks

ELU I2C&1-WIRE Connects to an electronic label board.

DI_1 Direct-cooling unit alarm

or TEC alarm

Default setting:

If the dry contact is open, an alarm is

generated.

If the dry contact is close, no alarm is

generated.

DI_2 TEC alarm

DI_3 Direct-cooling unit alarm

AI_1 4-20mA analog input Connects to a battery temperature sensor.

AI_2

TEM_HUM Ambient temperature and

humidity

Connects to a humidity and temperature

sensor.

WATER Water intrusion Connects to a water sensor.

SMOKE Smoke generation Connects to a smoke sensor.

CAN Southbound CAN port Connects to a southbound component.

12V Power output ports 10.5–13.5 V

COM1 Two-wire RS485 port Connects to the intelligent power meter.

GATE Gate dry contact input Default setting:

If the dry contact is closed, no alarm is

generated.

If the dry contact is open, an alarm is

generated.

COM2 Southbound RS485 port Reserved.

COM3 Southbound RS485 port Reserved.

DC input

terminals

RTN+ port: positive DC

input terminal

–48 V DC input port

NEG–: negative DC input

terminal

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Pin definition

Figure 2-20 Pin definition

Table 2-16 Pin definition

Silk Screen Pin Pin definition

WATER 1 12V

2 WATER

3 GND

4 -

TEMHUM 1 12V

2 ENV_TEMP

3 12V

4 ENV_HUM

2.4.4 GPRS Module

Figure 2-21 shows the front panel of the GPRS module.

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Figure 2-21 Front panel of the GPRS module

(1) DO_1 (2) DO_2 (3) DI_1 (4) DI_2

(5) DI_3 (6) DI_4 (7) DI_5 (8) DI_6

(9) ANT (10) Indicators (11) SIM card

Frequency Band

Upstream (module to BTS) : 824-849MHz/880 -915 MHz/1710 -1785 MHz/1850 -1910 MHz

Downstream (BTS to module) : 869 -894 MHz/925-960 MHz/1805 -1880 MHz/1930 -1990

MHz

Indicators

The Table 2-17 describes the indicators.

Table 2-17 Indicator description

Silk Screen Color Status Description

PWR1 Yellow Steady on The power supply is normal.

Off The power supple is faulty or has no DC

input.

PWR2 Yellow Steady on The GPRS module is normal.

Off The GPRS module is faulty or has no

DC input.

GPRS Green Off The GPRS module is not powered on.

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Silk Screen Color Status Description

Steady on A call is being set up over GPRS.

Blinking (on for 0.1s

and then off for

0.025s)

Data is being transmitted over GPRS.

Blinking (on for 0.1s

and then off for 2.9s)

The ECC500 is registered with the

network, but no data is being

transmitted.

Blinking (on for 0.1s

and then off for 0.9s)

The ECC500 is searching for a network

because of the absence of a subscriber

identity module (SIM) card.

Ports

Table 2-18 describes the ports of the GPRS module.

Table 2-18 Port description

Silk Screen Function Remarks

DO_1 Dry contact output Reserved.

DO_2

DI_1 Dry contact input Default(If the dry contact is closed, an alarm is

generated.

If the dry contact is open, no alarm is generated.),

can be modified.

Definitions of DI_1 to DI_6 vary based on

solution. You can query their definitions on the

LCD, as shown in Figure 2-22.

DI_2

DI_3

DI_4

DI_5

DI_6

Figure 2-22 Default setting of DI of GPRS module

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2.4.5 GPRS antenna

Figure 2-23 GPRS antenna

(1) GPRS antenna (2) GPRS module

2.5 PDU

PDUs are classified into the DC PDU and AC PDU. The DC PDU distributes DC power to

the TP48200T-D20A1 & D20A2 & D14A1 & D14A2, while the AC PDU distributes AC

power.

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2.5.1 AC PDU

Figure 2-24 AC PDU of TP48200T-D20A1 & D14A1

Figure 2-25 AC PDU of TP48200T-D20A2 & D14A2

Table 2-19 Circuit breaker distribution

Item TP48200T-D20A1 & D14A1 TP48200T-D20A2 & D14A2

AC input 1 x 63A/3P MCB 1 x 100A/2P MCB

AC output 3 x 10A MCB

1 x 10 A maintenance socket

1 x 10A RCD

3 x 10A MCB

1 x 10 A maintenance socket

1 x 10A RCD

If TP48200T-D20A1 & D20A2 is configured with four rectifiers, the recommended

AC output current summation should be less than 14A.

2.5.2 DC PDU

Figure 2-26 shows the DC PDU.

NOTE

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Figure 2-26 DC PDU

Figure 2-27 TP48200T-D20A1 & D20A2 battery branch

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Figure 2-28 TP48200T-D14A1 & D14A2 battery branch

Table 2-20 Circuit breaker distribution

Item Specification

Battery low voltage

disconnection(BLVD)

10 x 10 A MCB

Load low voltage

disconnection(LLVD)

2 x 100A MCB

1 x 80A MCB

2 x 50A MCB

3 x 25A MCB

2 x 10A MCB

Battery branch TP48200T-D20A1 & D20A2:

2 x 125 A MCB

TP48200T-D14A1 & D14A2:

1 x 125 A MCB

2.6 Intelligent Power Meter

2.6.1 Appearance

Figure 2-29 Appearance of intelligent power meter

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2.6.2 Pins

Figure 2-30 Pins of intelligent power meter

Table 2-21 Pins of the intelligent power meter

Pin Definition

1、2 Working Power

3、4 RS485

5 A phase voltage

6 B phase voltage

7 C phase voltage

8 Zero-voltage line

10 The current transformer interface

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2.6.3 Specification

Table 2-22 Specifications of the intelligent power meter

Category Item Specifications

Voltage Measurement range

Line voltage: 30V-600V

Phase voltage: 20V-400V

Overload capacity 800V

Current Measurement range 200Ma-100A

Overload capacity 200A

Power Single phase power 0-48000 W/var/VA

Total power 0-96000 W/var/VA

Measurement range 45 Hz -60Hz

Power factor Measurement range -1 to 1

Accuracy Current 0.5%(10-100A)

Voltage Phase voltage: 0.5% (20-400V)

Line voltage:1.0%

Power 1.0% ( U*I)

Power factor 1.0%

Frequency 45Hz-60Hz ± 0.1Hz

Energy 1.0% (0.5C-1-0.5L)

2.7 Bluetooth electric door lock

The Bluetooth electric door lock can be connected to the Bluetooth controller.

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2.7.1 Appearance

Figure 2-31 Appearance of Bluetooth electric door lock

2.7.2 Pins

Figure 2-32 RJ45 female connector

Table 2-23 Pins definition of the Bluetooth electric door lock

Pin Definition

3 +12V 6 Signal 8 GND

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2.8 Bluetooth controller

2.8.1 Appearance

Figure 2-33 Bluetooth controller

2.8.2 Pins

Figure 2-34 Pins of the Bluetooth controller

Table 2-24 Pins definition of the Bluetooth controller

Pin Definition

1 AC power input

2 AC power input

3 connect to Pin4

4 connect to Pin3

5 -12V

6 +12V

7 control the Bluetooth lock(+)

8 control the Bluetooth lock(-)

9 -

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Table 2-25 Connection between the Bluetooth controller and the Bluetooth electric door lock

Pins of the Bluetooth controller

Pins of the Bluetooth electric door lock

Definition

7 3 +12V 7 6 Signal 8 8 GND

2.8.3 Specification

Table 2-26 Bluetooth controller specifications

Item Specifications

Rated current 4A

Rated voltage 125V

Operating Limit voltage 200V AC

Withstanding voltage 1 minute 1500V AC

Insulation resistance at 500V DC 1500MΩ

Contact resistance at 1A DC 3 MΩ

Solder inter diameter 1.2mm

Dimensions 193x110x90 mm

Operating Temperature -45ºC a 85ºC

2.9 Storage Battery

Storage batteries store electrical energy and power loads when the D.G. and mains supply no

power or insufficient power.

The TP48200A-D20A1 & D20A2 can be configured with two groups (8 pieces, 12V/100 Ah

batteries for power monobloc) backup. The TP48200A-D14A1 & D14A2 can be configured

with one group (4 pieces, 12V/100 Ah monobloc) batteries for power backup.

The maximum dimensions for each storage battery are 295 mm x 125 mm x 560 mm.

Storage batteries are prepared by customer.

NOTE

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3 Safety Precautions

3.1 Overview

To minimize the risk of personal injury and damage to equipment, read and follow all the

precautions in this document before performing any installation or maintenance. The "NOTE",

"CAUTION", and "WARNING" marks in other documents do not represent all the safety

instructions. They are only supplements to the safety instructions. Only trained and qualified

personnel are allowed to install, operate, and maintain Huawei equipment, and they must

understand basic safety precautions to avoid hazards.

To ensure safety of humans and the equipment, pay attention to the safety symbols on the

equipment and all the safety instructions in this document. Huawei will not be liable for any

consequence caused by the violation of the safety operation regulations and design,

production, and usage standards.

The safety precautions described in this section are also applicable to other Huawei equipment.

3.2 Local Safety Regulations

When operating Huawei equipment, you must follow the local laws and regulations. The

safety instructions in this document are only supplements to the local laws and regulations.

3.3 Grounding Requirements

Equipment to be grounded must meet the following requirements:

When installing the device, always make the ground connection first and disconnect it at

the end.

Do not damage the ground conductor or operate the device in the absence of a properly

installed ground conductor. Conduct the electrical inspection carefully.

CAUTION

NOTE

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The device (or system) must be connected permanently to the protection ground before

an operation. Before operating the device, check the electrical connection of the device

to ensure that it is securely grounded.

3.4 Human Safety Do not operate the device or cables during lightning strikes.

To avoid electric shock, do not connect safety extra-low voltage (SELV) circuits to

telecommunication network voltage (TNV) circuits.

Before operating the device, wear electrostatic discharge (ESD) clothes, ESD gloves, and

an ESD wrist strap.

Do not wear jewelry or watches when you operate the device.

In the case of fire, immediately leave the building or the equipment room, and turn on

the fire alarm bell or make an emergency call. Do not enter a building that is on fire.

The temperature of some equipment parts may be rather high. Do not touch the surface

of such equipment parts to avoid getting burn.

3.5 Equipment Safety The device must be fixed securely on the floor or to other immovable objects such as

walls and mounting racks before operation.

Do not block the ventilation while the device is operating.

Tighten the thumbscrews by using a tool after initial installation and subsequent access

to the panel.

After the installation, remove packing materials from the equipment area.

3.6 Electrical Safety

High Voltage

The high voltage power supply provides power for the device operation. Direct or indirect

contact (through damp objects) with high voltage and AC mains supply may result in fatal

danger.

Non-standard and incorrect high voltage operations may result in fire and electric shock.

The personnel who install the AC facility must be qualified to perform high voltage and

AC operations.

You must abide by the local rules and regulations when bridging and wiring AC cables.

During the installation of the AC power supply facility, follow the local safety

regulations.

DANGER

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Dedicated tools must be used during high voltage and AC operations. Avoid using

ordinary tools.

When the operation is performed in a damp environment, ensure that the device is dry.

When water is found in the rack or the rack is damp, switch off the power supply

immediately.

High Electrical Leakage Ground the device before powering it on. Otherwise, personal injury or device damage

may be caused by high leakage current.

If a "high electrical leakage" tag is present on the power terminal of the device, you must

ground the device before powering it on.

Power Cable Do not install or remove power cables when the device is on. Transient contact between

the core of the power cable and the conductor may generate electric arcs or sparks, which

may cause fire or hurt human eyes.

Before installing or removing the power cable, turn off the power switch.

Before connecting a power cable, check that the label on the power cable is correct.

Power Output

All output circuits are evaluated as SELV circuits.

Outputs are energy hazards (>240 VA)

Electrostatic Discharge

The static electricity generated by human bodies may damage the electrostatic-sensitive

components on boards, for example, the large-scale integrated (LSI) circuits.

Human body movement, friction between human bodies and clothes, friction between

shoes and floors, or handling of plastic articles causes static electromagnetic fields on

human bodies. These static electromagnetic fields cannot be eliminated until the static is

discharged.

To prevent electrostatic-sensitive components from being damaged by the static on

human bodies, you must wear a well-grounded ESD wrist strap when touching the

device or handling boards or application-specific integrated circuits (ASICs).

CAUTION

CAUTION

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Figure 3-1 shows how to wear an ESD wrist strap.

Figure 3-1 Wearing an ESD wrist strap

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4 Installation and Commissioning

The detailed installation and commissioning refer to the TP48200T-D20A1 & D20A2 & D14A1 & D14A2 Quick Installation Guide.

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5 Maintenance

5.1 Routine Maintenance

Maintain TP48200T-D20A1 & D20A2 & D14A1 & D14A2 periodically based on site

requirements. The recommended maintenance interval is 6 months. If faults are identified,

clear them immediately.

Table 5-1 Routine maintenance

Maintenance Item

Maintenance Task

Check Item Check Method

Repair When Measures

Output voltage Whether the

output voltage of

the DC PDU is

within the range

of –42 V DC to

–58 V DC.

Measure the

voltage.

The voltage is

beyond the range of

–42 V DC to –58 V

DC.

Switch on

the circuit

breaker on

the DC

PDU, set

the

multimeter

to DC, and

then

measure

the output

voltage of

the DC

PDU.

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Maintenance Item

Maintenance Task

Check Item Check Method

Repair When Measures

Component Whether a

component

burns, smokes,

sparks, or

produces an

unusual odor

Observe and

smell the

component.

A component burns,

smokes, sparks, or

produces an unusual

odor.

If a short

circuit

occurs,

rectify the

fault.

If a cable

diameter

does not

match the

load,

replace it.

If there is

a burnt

componen

t, replace

it.

Fan Whether the fan

is covered by

dust

View the

fan.

Dust accumulates on

the fan.

Clear the dust

on the fan.

Whether the fan

surface is

damaged and

whether the

rotational speed,

noise, and

vibration are in

the normal range

The fan rotates

unstably or

slowly.

The fan is

damaged.

Replace the

fan.

Cabinet surface Whether the

paint and the

electroplated

coating on the

surface of the

cabinet are in

good condition

View the

cabinet

surface.

Surface rust appears

on the cabinet or

paint peels off.

Polish the rust

and repaint

the cabinet.

Door lock Whether surface

rust appears on

the door lock and

rust continues to

spread over the

surface

Observe and

open the

lock.

The door lock is too

rusty.

Replace the

lock.

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Maintenance Item

Maintenance Task

Check Item Check Method

Repair When Measures

Environment

inside the

cabinet

Whether there

are

fingerprints

or any other

stains on the

interior of the

cabinet

Whether there

is

unnecessary

adhesive tape

or cable ties

on the cables

Whether there

is tape, cable

ties,

wastepaper,

or packing

bags in the

cabinet

View the

interior of

the cabinet.

There is foreign

matter, fingerprints,

or stains in the

cabinet.

Clean up

stains,

fingerprints,

and foreign

matter using a

brush or

cotton cloth.

Air filter Whether the air

filter is covered

by dust

View the air

filter.

Overtemperature

alarms are

frequently raised

for the power

system, and the

temperature

inside the cabinet

is much higher

than the ambient

temperature.

Dust

accumulates on

the air filter.

Replace the

air filter.

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5.2 Troubleshooting

Common Faults

Table 5-2 Common faults and troubleshooting methods

Fault Type Fault Analysis Handling Method

AC phase loss AC input cable

fault

Grid fault or

D.G. fault

1. Check whether the DC input cable is

correctly and securely connected. If the

cable is not correctly and securely

connected, reconnect the cable. If the

insulation layer is aged, replace the cable.

2. Check whether the AC input voltage is

excessively low using a multimeter, and

check whether the AC undervoltage

(lower than 180V AC) alarm is

generated. If the AC input voltage is

excessively low and the AC undervoltage

alarm is generated, check whether there

is short-circuit or electric leakage on the

AC input loop. If there is short-circuit or

electric leakage, replace the cable.

3. If the AC input is the mains supply,

contact the mains supplier for

troubleshooting. If the AC input is from

the D.G., check the D.G. by referring to

the Diesel Generator User Manual.

AC power off AC input cable

fault

Grid fault or

D.G. fault

1. Check whether the DC input cable is

correctly and securely connected. If the

cable is not correctly and securely

connected, reconnect the cable.

2. Check whether the AC input switch is

OFF. If the AC input switch is OFF,

check whether faults such as short-circuit

or open circuit exist on the AC input

loop.

3. If the AC input is the mains supply,

contact the mains supplier for

troubleshooting. If the AC input is from

the D.G., check the D.G. by referring to

the Diesel Generator User Manual.

4. If the power-off duration is short, supply

DC power using batteries. If the

power-off duration is long, start other

systems for power supply.

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Fault Type Fault Analysis Handling Method

AC overvoltage

and undervoltage

Improper setting

of monitoring

unit AC

undervoltage or

overvoltage

threshold

Mains supply

grid fault or D.G.

fault

1. Check whether the AC undervoltage or

overvoltage alarm threshold is properly

set. If the threshold is excessively high or

low, lower or raise the threshold

according to the actual conditions.

2. If the AC input is the mains supply,

contact the mains supplier for

troubleshooting. If the AC input is from

the D.G., check the D.G. by referring to

the Diesel Generator User Manual.

DC overvoltage or

DC undervoltage

Improper setting

of monitoring

unit DC

undervoltage or

overvoltage

threshold

Rectifier module

fault

1. Check the alarm thresholds of the DC

overvoltage and undervoltage. If the

thresholds are not proper, reset the

thresholds according to the actual

conditions.

2. When the storage battery is powering the

load, remove all the rectifiers, and then

insert each rectifier one by one. If an

overvoltage alarm is generated after a

rectifier is inserted, the voltage of the

rectifier exceeds the upper threshold.

Then replace the rectifier.

Charging

overcurrent

Communication

failure between

modules

Battery loop fault

1. Check whether the rectifier module is in

position or whether contact is proper. If

the monitoring unit is inserted in an

incorrect position, insert it correctly. If

the contact is not proper, remove and

then insert it.

2. Check whether the battery loop is

short-circuited or has other faults.

3. Check whether the batteries are faulty. If

the batteries are faulty, replace them.

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Fault Type Fault Analysis Handling Method

Load shutdown Load circuit

breaker set to

OFF

Contactor fault

Excessively high

setting of

monitoring unit

load shutdown

voltage

Output

undervoltage due

to greater load

power than

configured

rectifier module

power

1. Check whether the load detection cable is

securely connected. If the cable is not

connected securely, connect it correctly.

2. If the load circuit breakers switch to OFF,

check whether the load circuit is short

circuit or overcurrent. Switch the load

circuit breakers to ON after repairing the

load circuit.

3. Check whether the contactor is faulty and

whether it can be connected and

disconnected. If the contactor is faulty,

replace it.

4. Check whether the monitoring unit load

shutdown voltage is set excessively high.

If it is set excessively high, set it

according to the actual situation.

5. Check whether the load power is higher

than the configured rectifier module

power. If the load power is higher than

the configured rectifier module power,

add a rectifier module. If the load power

exceeds the maximum supported power

of the system, lower the load power.

Battery shutdown Improper setting

of monitoring

unit battery

parameters

Contactor fault

1. Check whether the mains supply is off or

the voltage of storage batteries is lower

than the “Battery Shutdown Voltage”.

2. Check whether the battery shutdown

permission is set.

3. Check whether the battery cables or the

connectors are faulty. If the cables or

connectors are faulty, replace them.

4. Check whether the contactor is faulty and

whether it can be connected and

disconnected. If the contactor is faulty,

replace it.

Battery fuse failure Battery loop fault

Contactor fault

Battery fault

Temperature

sensor fault

1. Check whether cables of the battery loop

or connectors are faulty. If the cables or

connectors are faulty, replace them.

2. Check whether the contactor is faulty and

whether it can be connected and

disconnected. If the contactor is faulty,

replace it.

3. Check whether batteries are faulty. If the

batteries are faulty, replace them.

4. Check whether temperature sensor is

faulty. If the temperature sensor is faulty,

replace it.

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Fault Type Fault Analysis Handling Method

Ambient

overtemperature or

undertemperature

alarm

(The alarm is

generated only

when the

temperature sensor

is installed.)

Improper setting

of monitoring

unit temperature

alarm parameters

Overtemperature

or

undertemperature

in the shelter

with the

temperature

sensor

Temperature

sensor fault

1. Check whether monitoring unit

temperature alarm thresholds are set

according to local conditions. If the

thresholds are not proper, set the

thresholds accordingly.

2. Check whether the temperature control

device in the shelter is faulty. If the

temperature control device is faulty,

repair it. The alarm is automatically

cleared when the temperature in the

shelter is adjusted to the proper range.

3. Check whether the temperature sensor is

faulty. If the temperature sensor is faulty,

replace it.

Ambient

overhumidity or

underhumidity

alarm

(The alarm is

generated only

when the humidity

sensor is installed.)

Improper setting

of monitoring

unit humidity

alarm parameters

Overhumidity or

underhumidity in

the shelter with

the humidity

sensor

Humidity sensor

fault

1. Check whether monitoring unit humidity

alarm thresholds are set according to

local conditions. If the thresholds are not

proper, set the thresholds accordingly.

2. Check whether the floor of the shelter is

wet. If the floor is wet, use a cotton cloth

to wipe the floor and ensure it is dry or

use other dehumidifiers.

3. If the alarm persists when the humidity is

proper, check whether the humidity

sensor is faulty.

Battery

overtemperature or

undertemperature

alarm

Battery cabin

overtemperature

Improper setting

of monitoring

unit battery

temperature

alarm parameters

Battery charging

overcurrent

Temperature

sensor fault

1. Check whether monitoring unit battery

temperature alarm thresholds are properly

set. If the thresholds are not proper, set

the thresholds accordingly.

2. Check whether the temperature in the

battery room is excessively high. If the

temperature is excessively high, the

alarm can be cleared when the

temperature is lowered.

3. Check the charging current. If the current

is excessively strong, switch equalized

charging to float charging and check

whether the charging current is

weakened. If the charging current is still

excessively strong, adjust the current

limit to reduce the charging current. If the

preceding steps do not work, replace the

faulty battery.

4. Check whether the temperature sensor is

faulty. If the temperature sensor is faulty,

replace it.

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Fault Type Fault Analysis Handling Method

Door alarm

(The alarm is

generated only

when the door

status sensor is

installed.)

Opened cabinet

door

Door status

sensor fault

1. The alarm is cleared after the cabinet

door is closed.

2. If the alarm persists after the cabinet door

is closed, check whether the door status

sensor is faulty.

Water immersion

alarm

(The alarm is

generated only

when the water

sensor is installed.)

Shelter water

accumulation

Water sensor

fault

1. Check whether the floor of the shelter is

wet. If the floor is wet, use a cotton cloth

to wipe the floor and ensure it is dry or

use other dehumidifiers.

2. If the alarm persists after the water is

drained, check whether the water sensor

is faulty.

Smoke alarm

(The alarm is

generated only

when the smoke

sensor is installed.)

Smoke in the

shelter

Smoke sensor

fault

1. Check whether the smoke caused by fire

pervades in the shelter. If there is fire,

extinguish the fire and ventilate the

shelter.

2. If the alarm persists when there is no

smoke, check whether the smoke sensor

is faulty.

Rectifier module

fault

Poor contact of

the rectifier

module

Rectifier module

fault

1. Check whether the ALM indicator on the

panel of the rectifier module is on. If the

ALM indicator is on, remove the rectifier

module and insert the rectifier module

after the indicator is off.

2. Disconnect AC input to the rectifier

module and restart the rectifier module

later on. If the alarm persists, replace the

rectifier module.

Rectifier module

shutdown

Rectifier module

protection

Input

overvoltage or

undervoltage of

the rectifier

module

Rectifier module

fault

1. Check whether the mains voltage is over

the AC overvoltage alarm threshold (300

V) of the rectifier module or below the

AC undervoltage alarm threshold (85 V).

For the power supply network with

long-time overvoltage or undervoltage,

negotiate with the maintenance personnel

of the electricity department to improve

the power supply network.

2. If the alarm persists when the input

voltage of the rectifier module is proper,

check whether the rectifier module is

proper. If the rectifier module is faulty,

replace it.

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Fault Type Fault Analysis Handling Method

Communication

Failure between

rectifier and

monitoring unit

Signal cable

connection fault

of the rectifier

module

Rectifier module

out of position

Poor contact of

the rectifier

module

Rectifier module

fault

1. Check whether the rectifier module is in

position or whether contact is proper. If

the monitoring unit is inserted in an

incorrect position, insert it correctly. If

the contact is not proper, remove and

then insert it.

2. If the alarm persists, replace the rectifier

module.

Load Fuse Alarm The load fuse is

faulty.

Load circuit

breaker set to

OFF

1. Check whether the load fuse detection

cable is securely connected. If the cable

is not connected securely, connect it

correctly.

2. Check whether the load circuit breaker is

in the OFF position. If it is, switch it to

the ON position.

3. Check whether the load fuse is damaged.

Use a multimeter to measure the voltage

at both ends of the fuse. If the voltage is

close to 0 V, the fuse is normal.

Otherwise, the fuse is blown. Replace the

fuse.

4. If the alarm persists after the fuse is

replaced, check the new fuse. If the new

fuse is blown or the load circuit breaker

is automatically switched to the OFF

position, the load power on this route

may be excessive or a short circuit may

occur. In this case, you need to rectify the

fault on this load loop.

AC surge protector

fault

AC surge

protector fault

User interface

module fault

1. Check the observation window on the AC

surge protector. If the color of the

window is red, replace the surge

protector.

2. Check whether the fault detection cables

of the AC surge protector are correctly

connected or whether the cables are in

good condition. If the cables are not in

good condition, replace and reconnect

them.

3. If the cable connection is proper, it

indicates that the alarm loop is faulty.

Replace the user interface module.

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TEC faults

When a TEC becomes faulty, it transmits alarm signals over one dry contact to EMS software,

and the ALM indicator turns on.

The spare parts for a TEC includes temperature sensor,internal fan, external fan and TEC

refrigeration module.

Table 5-3 describes the TEC faults and troubleshooting measures.

Table 5-3 TEC faults and troubleshooting measures

Symptom Possible Cause Measures

The internal and

external fans rotate

properly, the

semiconductor

refrigeration chips

do not work, the

RUN indicator turns

on, and no alarm is

generated.

The semiconductor

refrigeration chips are

faulty.

Check that no input undervoltage or

overvoltage occurs.

Check that cables properly connect to

the semiconductor refrigeration chips.

If no fault is located, replace the

CMUA.

The external fan

rotates properly, the

TEC circuit breaker

trips, the RUN

indicator turns on,

and no alarm is

generated.

The input voltages

before and after the

internal and external

fans start are not within

normal ranges.

If the input voltage is greater than 4 V,

replace the damaged power cable.

If the input voltage is lower than 4 V,

replace the CMUA.

The semiconductor

refrigeration chips

refrigerate properly,

the internal and

external fans rotate

properly, the ALM

indicator turns on,

and an alarm is

generated.

The cables to the

temperature sensor

are damaged.

Cables to the fans are

damaged.

If the cables to the fans are damaged,

replace the cables.

If all components are normal but an

alarm is generated, reinstall internal

and external fans. If an alarm is still

generated, replace the TEC

refrigeration module or control

board .

CMUA faults

When a CMUA is working properly, the resistance in the dry contact is low and the RUN

indicator is steady on.When a CMUA is transmitting alarm signals, the resistance in the dry

contact is high and the ALM indicator is steady on.

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Table 5-4 CMUA faults and troubleshooting measures

Symptom Possible Cause Measures

The host generates

an alarm, and the

ALM indicator and

RUN indicator turn

off.

No DC power is

supplied to the TEC.

Control broad

burned out.

Measure the input voltage.

Check the power supply circuit

breaker.

Check that power cables connect to

the correct polarities.

If no fault is located, replace the

control board.

The host generates

an alarm, and the

RUN indicator turns

on.

The alarm signal is

loose, disconnected, or

broken.

Secure the alarm cable.

5.3 Component Replacment

Load disconnection is prohibited when you replace the main components. Take measures to ensure

that important loads are always connected during the replacement. For example, keep the circuit

breaker of important loads set to ON and storage batteries and AC input are not cut off.

If a load must be disconnected, ask for the customer's prior permission.

The rectifier and the monitoring unit are hot-swappable.

Replacing the rectifier

To replace the rectifier, perform the following steps:

Step 1 Loosen the screws on the rectifier panel using a flat-head screwdriver.

Step 2 Pull the handle of the rectifier outwards, and then remove the rectifier from the plug-in

subrack, as shown in Figure 5-1.

Step 3 Insert the rectifier into the corresponding slot in the plug-in subrack. Then, loosen the screws

on the handle and pull out the handle.

Step 4 Slide the rectifier into the plug-in subrack slowly along the guide rails. Then, lock the handle.

Step 5 Tighten the screws on the handle, as shown in Figure 5-2.

----End

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Figure 5-1 Removing the old rectifier

Figure 5-2 Installing the new rectifier

Replacing the monitoring module

To replace a module in the ECC500, perform the following steps:

Step 1 Remove the signal cables from old module. Insulate the cables in time and stamp labels.

Step 2 Loosen the captive screws on the old module anti-clockwise using the M3 screwdriver.

Step 3 Pull out the old module by grasping the handle with both hands, as shown in Figure 5-3.

Step 4 Grasp the handles of the new module, and insert the module into the corresponding slot in the

ECC500 subrack.

Step 5 Push the new module until its front panel is level with that of the ECC500 subrack.

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Step 6 Fold the handle.

Step 7 Tighten the captive screws using the M3 screwdriver, as shown in Figure 5-4.

Step 8 Connect the cables to the module according to the labels on the cables.

Step 9 If the main control module is replaced, set parameters by referring TP48200T-D20A1 &

D20A2 & D14A1 & D14A2 Quick Installation Guide.

----End

Figure 5-3 Pulling out the old module

Figure 5-4 Installing a new moudle

Replacing the AC SPD

To replace the AC SPD, perform the following steps:

Step 1 Remove the faulty SPD.

Step 2 Insert the new SPD.

----End

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Figure 5-5 Replacing the AC SPD

Replacing Circuit breakers

To replace a circuit breaker, perform the following steps:

Step 1 Disconnect the power supply of a circuit breaker. For example, disconnect the DC input and

set the circuit breaker to OFF before replacing the input circuit breaker.

Step 2 Remove the cables or copper bars connected to the circuit breaker using a Phillips screwdriver,

and then wrap the cables or copper bars using black PVC insulation tape to avoid hazards.

Step 3 Press the contact plate at the bottom of the circuit breaker using a flat-head screwdriver. Then,

remove the circuit breaker, as shown in Figure 5-6.

Step 4 Press the contact plate at the bottom of the circuit breaker using a flat-head screwdriver again

to install the new circuit breaker in the correct position. Then, push the contact plate upwards

using the screwdriver.

Step 5 Install the cables or copper bars to the circuit breaker using a Phillips screwdriver in the same

way.

Step 6 Set the circuit breaker to ON and connect power supply of this circuit breaker, as shown in

Figure 5-7.

----End

Figure 5-6 Removing the circuit breaker

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Figure 5-7 Installing the circuit breaker

Replacing temperature and humidity sensor

To replace a temperature and humidity sensor, perform the following steps:

Step 1 Open the front door of the cabinet, press the latch in the front of the temperature and humidity

sensor, and then remove the cover of the temperature and humidity sensor.

Step 2 Loosen the two screws on holder of the temperature and humidity sensor, and then remove the

holder, as shown in Figure 5-8.

Step 3 Loosen the crimping screws on holder of the temperature and humidity sensor by using the

flat-head screwdriver. Record the installation positions of the cables, and then remove the

cables.

Step 4 Correctly connect the cables to the wiring terminal on the new temperature and humidity

sensor holder and secure the crimping screws by using the small flat-head screwdriver.

Step 5 Install the holder of the new temperature and humidity sensor on the cabinet by securing the

captive screws.

Step 6 Install the cover on the holder of the temperature and humidity sensor.

----End

Figure 5-8 Temperature and humidity sensor

(1) Cover of the temperature and

humidity sensor

(2) Holder of the temperature and

humidity sensor

(3) Screw on the temperature

and humidity sensor holder

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Replacing Fan assembly

To replace the fan assembly, perform the following steps:

Step 1 Switch off the circuit breaker of the fan assembly.

Step 2 Loosen the screws on top of the cabinet as shown in Figure 5-9.

Figure 5-9 Loosen the screws on top of the cabinet

Step 3 Open the top cover and secure the butterfly nut, as shown in Figure 5-10.

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Figure 5-10 Open the top cover

Step 4 Remove the power cables of the fans.

Step 5 Loosen the screws on top of the fan assembly, as shown in Figure 5-11.

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Figure 5-11 Removing the fan assembly

Step 6 Install the new fan assembly, as shown in Figure 5-12.

Figure 5-12 Installing the fan assembly

Step 7 Install the power cables of the fans.

Step 8 Close the top cover.

Step 9 Tighten the screws on top of the cabinet as shown in Figure 5-13.

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Figure 5-13 Tighten the screws on top of the cabinet

----End

Replacing TEC

To replace the TEC, perform the following steps:

Step 1 Power off the TEC.

1. Switch off the TEC circuit breaker on the DC PDU or power system.

2. Remove the power cables and alarm cables.

Step 2 Remove the TEC refrigeration module, as shown in Figure 5-14.

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Figure 5-14 Removing the TEC refrigeration module

Step 3 Install a new TEC refrigeration module.

1. Secure a new TEC refrigeration module to the door using the removed screws.

2. Reinstall the cover to the temperature control door using the removed screws.

3. Install power cables to the correct poles.

4. Install the dry contact alarm cables to the correct poles.

Step 4 Power on the TEC.

1. Switch on the TEC circuit breaker on the DC PDU or power system.

2. Power on the TEC for a self-check and a refrigeration function test.

3. Check that the ALM indicators on the temperature controller and monitoring device turn

off.

4. After the TEC runs properly for 5 minutes, check the refrigeration function.

----End

Replacing CMUA

To replace the CMUA, perform the following steps:

Step 1 Switch off the CMUA circuit breaker on the DC PDU or power system.

Step 2 Remove the CMUA.

1. Remove the two M4 screws from the CMUA cover, and then remove the CMUA cover,

as shown in Figure 5-15.

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Figure 5-15 Removing the CMUA cover

2. Label the cables and then remove these cables.

3. Remove the four M3 screws on CMUA board and then remove the CMUA board , as

shown in Figure 5-16.

Figure 5-16 Removing the CMUA board

Step 3 Install a new CMUA board.

1. Install a new CMUA board using the four removed screws.

2. Install jumper caps on the jumper slot, by referring to 2.2.1 CMUA Jumper Slot or 2.2.2

CMUA Jumper Slot.

3. Connect all the removed cables to the CMUA.

4. Reinstall ther cover using the two removed screws.

Step 4 Power on the CMUA.

1. Switch on the CMUA circuit breaker on the DC PDU or power system.

2. Power on the CMUA for a self-check and a refrigeration function test.

3. Check that the ALM indicators on the temperature controller and monitoring device turn

off.

4. After the CMUA runs properly for 5 minutes, check the refrigeration function.

----End

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Replacing the Air filter

To replace the air filter, perform the following steps:

Step 1 Loosen the screws with the crosshead screwdriver and then remove the air filter.

Step 2 Install the air filter in the original position and fasten the screws with the crosshead

screwdriver.

----End

Figure 5-17 Removing the air filter

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Figure 5-18 Installing the air filter

Replacing the Door lock cylinder

To replace the lock cylinder, perform the following steps:

Step 1 Open the door lock using a key to the degree as shown in the following figure.

Step 2 Unscrew the lock cylinder to be replaced using a Phillips screwdriver.

Step 3 Secure a new lock cylinder using screws.

----End

Figure 5-19 Replacing the lock cylinder

Replacing the Door lock

To replace the lock, perform the following steps:

Step 1 Disconnect the cable between the Bluetooth controller and the door lock.

Step 2 Unscrew the lock rod to be replaced using a Phillips screwdriver.

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Step 3 Remove the door lock.

Step 4 Secure a new lock using screws.

Step 5 Connect the cable between the Bluetooth controller and the door lock.

----End

Figure 5-20 Replacing the door lock

Replacing the Door status sensor

To replace the door status sensor, perform the following steps:

Step 1 Open the front door and remove the case of the door status sensor, as shown in Figure 5-21.

Figure 5-21 Removing the case of the door status sensor

Step 2 Record the connections of the alarm cables and then disconnect them.

Step 3 Loosen the screws on the door status sensor and then remove the sensor.

Step 4 Install a new door status sensor in position and tighten the screws.

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Step 5 Install the alarm cables of the new door status sensor according to the recorded connections,

and then install the case.

----End

Replacing the Intelligent Power Meter

To replace the intelligent power meter, perform the following steps:

Step 1 Loosen the screws on the baffle plate and then remove the baffle plate.

Step 2 Press the contact plate at the bottom of the intelligent power meter using a flat-head

screwdriver. Then, remove the intelligent power meter.

Figure 5-22 Removing the intelligent power meter

Step 3 Press the contact plate at the bottom of the intelligent power meter using a flat-head

screwdriver again to install the new intelligent power meter in the correct position.

Step 4 Install the baffle plate and tighten the screws.

----End

Figure 5-23 Installing the intelligent power meter

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Replacing the GPRS antenna

To replace the GPRS antenna, perform the following steps:

Step 1 Remove the GPRS cable from the GPRS module, as shown in Figure 5-24.

Figure 5-24 Removing the GPRS cable

Step 2 Remove the GPRS antenna, as shown in Figure 5-25.

Figure 5-25 Removing the GPRS antenna

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Step 3 Install the GPRS antenna, as shown in Figure 5-26.

Figure 5-26 Installing the GPRS antenna

Step 4 Installing the GPRS cable to the GPRS module, as shown in Figure 5-27.

Figure 5-27 Installing the GPRS cable

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6 Monitoring Function

6.1 LCD User Interface

Selecting a Display Language

After the ECC500 is powered on, the screen for selecting a display language is displayed. You

can select Chinese, English or other language by pressing ▲ or ▼ and enter the standby

screen by pressing Enter.

Querying Active Alarms

This section describes how to query active alarms on the LCD, as shown in Figure 6-1. The

parameter values in Figure 6-1 are for reference only.

Figure 6-1 Querying active alarms

110215 indicates February 15, 2011. The alarm severity and date are displayed alternatively.

NOTE

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Setting Parameters Quickly

This section describes how to quickly set the number of battery strings and rated battery

capacity on the LCD, as shown in Figure 6-2. The parameter values in Figure 6-2 are for

reference only.

Figure 6-2 Setting parameters quickly

To open the Settings page, Quick Setting page, and Control page, you need to enter a password. The

default user name is admin and the default password is 001. You can add or delete users, and change the

user name and password.

NOTE

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Setting Alarm Parameters

Figure 6-3 Setting alarm parameters

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Figure 6-4 Setting DO alarm status

LCD Menu Hierarchy

Figure 6-5 shows the LCD main menu.

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Figure 6-5 LCD Menu hierarchy

6.2 Web User Interface

You can perform the following operations over the WebUI:

View the system status, including the PSU status, battery status, and active alarm

information.

Configure system parameters.

Configure network parameters, including IP addresses, host communications addresses

and baud rates under master/slave protocol.

Control the system, such as choosing battery boost or floating charge and resetting PSUs.

Add or delete users, and change user names and passwords.

Upgrade software online.

Query and export historical logs and alarms.

Configure alarm parameters, alarm severities, and the relationship between alarms and

dry contacts.

Set the system date and time, site and storage battery type, save, download, and upload

configuration files.

Query electronic label information.

Configure site information including date and site name and deal with configuration files

and so on.

Set the IP address, gateway, and subnet mask of the SMU on the LCD before logging into the

WebUI.

Main Menu

Active Alarm Running Status

Site Summary

PSU Summary

PSU

Batt Summ

VRLA Batt

Settings

Alarm Setting

Site Summary

PSU Summary

VRLA Batt Summ

Control

Site Summary

Batt Summ

Quick Settings

Qty of Battery

Rated Capacity

Set Date

Set Time

IP Address

Subnet Mask

Gateway

ECC500

GPRS

Alarm History

Batt Test Log

ECC500

LVD Setting

Comm Para

PSU Summary

PSU

Clr Alarm Hist

System Para

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Login Web Page

Step 1 Connect an SMU to an Ethernet.

Step 2 Set the IP address, subnet mask, and gateway on the LCD based on those assigned by the

customer.

Step 3 Enter the IP address of the SMU in the Internet Explorer address box and press .

Step 4 On the login page shown in Figure 6-6, set User Name to admin and Password to 001, and

then press Login.

Figure 6-6 Login page

Setting the Internet Explorer

Make sure exporting historical logs successfully, need to set the Internet Explorer.

Setting method as follows:

Step 1 Open the Internet Explorer.

Step 2 Choose Tools > Internet Options.

Step 3 On the Security tab, choose Internet and click Customer Level as shown in Figure 6-7.

After set Internet, please set Local intranet in the same method.

Step 4 Select Enable under Initialize and script ActiveX controls not marked as safe.

----End

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Figure 6-7 Internet options interface

Step 5 Select Enable for all the options..

----End

Querying System Status

To view the information about the site, active alarms, PSUs, batteries, power distribution,

TCU and fan, click System Status, as shown in Figure 6-8

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Figure 6-8 System Status

Configuring System Parameters

You can configure the site, PSUs, and batteries in the System Configuration pane shown in

Figure 6-9

Figure 6-9 System Configuration

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Configuring Network Parameters

In the Network Configuration pane, you can set the IP address, subnet mask, and gateway

under System IP, the host communications address and baud rate under Master Slave

Protocol, the SNMP version under SNMP, the trap IP address under SNMP Trap, and the

server IP addresses and port number under NetEco.

Figure 6-10 shows the Network Configuration pane.

Figure 6-10 Network Configuration

Setting Control Parameters

You can set control parameters for the site, PSUs, storage batteries, and PDU in the Control

pane shown in Figure 6-11.

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Figure 6-11 Control

Managing Users

You can create and delete users and modify user information in the User Management pane

shown in Figure 6-12. Users are classified into three types: admin, engineer, and operator.

Different user types have different operation rights. Only admin users have user management

rights.

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Figure 6-12 User Management

Upgrading Software

You can upgrade SMU and PSU software in the Upgrade pane shown in Figure 6-13 To

upgrade software, perform the following steps:

Step 1 Click Browse to select the software and then click Send.

Step 2 After the software information is displayed under Available package active, select the

software and click Activate.

The software upgrade progress is displayed. A message is displayed when the upgrade is

successful.

----End

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Figure 6-13 Upgrade

Exporting Historical Logs

To download configuration files and log files, perform the following steps:

Step 1 Click Log History.

Step 2 Click Download under One-click Download.

The message "Are you sure to download the current configuration file and log file?" is

displayed.

Step 3 Click OK.

The configuration files and log files are downloaded in about 2 minutes.

----End

You can export battery testing records in Hypertext Markup Language (HTML) files by

clicking Export.

Figure 6-14 shows the Log History pane.

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Figure 6-14 Log History

Exporting Historical Alarms

You can download historical alarms in the History Alarms pane shown in Figure 6-15. To

export historical alarms in HTML files, click Export. To clear historical alarms, click Clean.

Figure 6-15 Historical Alarms

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Configuring Alarm Parameters

You can set Alarm Enable, Alarm Level, and Relay in the Alarm Configuration pane

shown in Figure 6-16.

Figure 6-16 Alarm Configuration

Configuring Site Parameters

You can set the date, time, site, and storage batteries type, and save, download, and upload

configuration files in the Site Configure pane shown in Figure 6-17.

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Figure 6-17 Site Configure

Energy Saving

You can set Basic Parameters, Control For Different Rates, Control for Exceeding Max Power,

Daily Electric Consum Mode, Monthly Electric Consum Mode in the Energy Saving pane

shown in Figure 6-18.

Figure 6-18 Energy Saving

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Reading Electronic Labels

You can query electronic label information about system components such as the SMU, power

distribution subrack, and PSUs in the Electronic Label pane. To export electronic label

information in HTML files, click Export.

Figure 6-19 Electronic Labels

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A Technical Specifications

Table A-1 Technical specifications

Category Item Specifications

Environmental

conditions

Operating

temperature

–10ºC to +45ºC (14ºF to +113ºF)

Storage

temperature

–40°C to +70°C (–40°F to +158°F)

Transportation

temperature

–40°C to +70°C (–40°F to +158°F)

Operating

humidity

5%–100% RH

Storage humidity 5%–100% RH

Altitude 0-4000 m (0-13123.2 ft)

When the altitude ranges from 2000 m (6561.6 ft) to

4000 m (13123.2 ft), the operating temperature is

derated by 1ºC (1.8ºF) for each additional 200 m

(656.16 ft).

AC input Input mode TP48200T-D20A1 & D14A1:

220V three-phase five-line (L1, L2, L3, N, PE)

110V three-phase five-line (L1, L2, L3, N, PE)

220V single-phase three-line (L, N, PE)

TP48200T-D20A2 & D14A2:

110V dual-live-wire (L1, L2, N, PE)

110V dual-live-wire (L1, L2, PE)

220V single-phase three-line (L, N, PE)

Input voltage 85V AC - 300 V AC

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Category Item Specifications

Rated voltage TP48200T-D20A1 & D14A1:

200-240/346-415V AC for 220V three-phase

five-line (L1, L2, L3, N, PE)

100-127/200-240 V AC for 110V three-phase

five-line (L1, L2, L3, N, PE)

200-240 V AC for 220V single-phase three-line

(L, N, PE)

TP48200T-D20A2 & D14A2:

100-120/200-240 V AC for 110V dual-live-wire

(L1, L2, N, PE)

100-120/200-240 V AC for 110V dual-live-wire

(L1, L2, PE)

200-240 V AC for 220V single-phase three-line

(L, N, PE)

Input frequency 45–65 Hz

Rated frequency 50/60 Hz

Power factor ≥ 0.99

DC output Output voltage

range

–42 V DC to –58V DC

Default output

voltage

–53.5 V DC

Maximum output

power

Number of rectifiers multiplied by the output power

of a single rectifier.

Regulated

voltage precision

≤ 1%

Peak-to-peak

noise voltage

≤ 200 mV (0–20 MHz)

AC input

protection

AC input

overvoltage

protection

threshold

Overvoltage protection is performed when the

single-phase AC input voltage exceeds the AC input

overvoltage protection threshold (300 V AC by

default).

AC input

overvoltage

recovery

threshold

When the voltage is restored to 290 V AC, the output

resumes.

AC input

undervoltage

protection

threshold

Undervoltage protection is performed when the

single-phase AC input voltage is below the AC input

undervoltage protection threshold (85 V AC by

default).

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Category Item Specifications

AC input

undervoltage

recovery

threshold

When the voltage is restored to 90 V AC, the output

resumes.

DC output

protection

DC output

overvoltage

protection

threshold

58.5–60.5 V DC

Rectifier

(R4850G1)

Max output

current

50A

Efficiency The peak point is ≥96.0%

≥95.0%(30%-100% load)

Output power 3000W

Overvoltage

protection

58.5–60.5 VDC (can be set by monitoring unit )

1.If the overvoltage occurs inside the rectifier due to

a fault, the rectifier will latch off.

2.If the output voltage is higher than 63 V and lasts

for more than 500 ms, the rectifier will latch off.

EMC CE CISPR 22/EN 55022 class B (AC terminal)

CISPR 22/EN 55022 class A (DC output terminal)

RE CISPR 22/EN 55022 Class B

Harmonic IEC 61000-3-12

Fluctuation and

blinking

IEC 61000-3-3

ESD Contact discharge voltage: 6kV (Class B); air

discharge voltage: 8 kV (Class B);

Contact discharge voltage: 8kV (Class B); air

discharge voltage: 15 kV (Class R);

standard: IEC61000-4-2

EFT The voltage at signal ports is 1 kV, and the voltage

at the power ports is 2 kV (criterion B).

RS 10 V/m (criterion A)

CS The voltage at signal ports is 3V and power ports is

10 V (criterion A).

SURGE It complies with the IEC61000-4-5 standard. The

voltage at the AC power ports in differential mode is

±2 kV. The voltage at the AC power ports in

common mode is ±4 kV (criterion B).

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Category Item Specifications

Others Surge protection For AC power ports,

Nominal discharge current 20 kA

Max discharge current 40 kA

For DC power ports,

Differential mode: 10 kA

Common mode: 20 kA

MTBF 200,000 hours (at 30°C)

Structure Dimensions (H x

W x D)

TP48200T-D20A1 & D20A2:

Cabinet: 2060 mm (81.1 in.) x 700 mm (27.56

in.) x 700 mm (27.56 in.)

Base: 180 mm (7.1 in.) x 700 mm (27.56 in.) x

700 mm (27.56 in.)

TP48200T-D14A1 & D14A2:

Cabinet: 1400 mm (55.1 in.) x 700 mm (27.56

in.) x 700 mm (27.56 in.)

Base: 180 mm (7.1 in.) x 700 mm (27.56 in.) x

700 mm (27.56 in.)

Weight TP48200T-D20A1 & D20A2:

≤ 200 kg (excluding rectifiers and storage batteries)

TP48200T-D14A1 & D14A2:

≤ 160 kg (excluding rectifiers and storage batteries)

Protection level IP55

Installation Ground installation

Maintenance From the front, supporting module-level

replacement.

Cooling Equipment compartment is direct-cooling

Battery compartment is TEC

Cooling capacity TP48200T-D20A1 & D20A2: 1200W

TP48200T-D14A1 & D14A2: 800W

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B LCD Menu

Table B-1 LCD Menu

Main Menu

Second-Level Menu

Third-Level Menu

Fourth-Level Menu

Default Value

Range

Active

Alarm

- - - - -

Running

Status

Site

Summary

System Voltage - - -

Total Load - - -

Ambient Humi 1 - - -

Ambient Temp 1 - - -

Qty of Battery - - -

Sys. Efficiency - - -

Peak Power - - -

Peak Power Time - - -

System Type - - -

PSU

Summary

Total Current - - -

Used Capacity - - -

AC Voltage - - -

AC Total Curr - - -

AC Frequency - - -

DC Total Power - - -

PSU - - - -

Batt Summ Total Current - - -

Pre Disch Time - - -

BattChargeSta - - -

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Main Menu

Second-Level Menu

Third-Level Menu

Fourth-Level Menu

Default Value

Range

Batt Test Sta - - -

Batt Temp 1 - - -

VRLA Batt VRLA Batt 1 Current - -

Capacity - -

Capa

Percent

- -

ECC500 MUC01A_DI_6 - - -

GPRS GPRS Slot ID - - -

GPRS Cur Signal - - -

GPRS Status - - -

SIM Card Status - - -

GPRS IP Address - - -

Alarm

History

- - - -

Batt Test Log - - - -

Settings

Alarm Setting Alarm Relay - - -

Site Summary - - -

PSU Summary - - -

PSU - -- -

Batt Summ - - -

VRLA Batt - - -

Site

Summary

System Type - TP48200T_D1

4A2

-

DC Over Volt - 58.0 V 53.0-60.0 V

DC Ultra Over V - 60.0 V 53.0-60.0 V

DC Under Volt - 45.0 V 35.0-47.8 V

DC Ultra UnderV - 43.0 V 35.0-47.8 V

Shunt Current - 300 A 0-50

Shunt Voltage - 75 mV 0-3000 A

Qty of Battery - 1 0-1500 V

AC Over Volt - 280 V 100-300 V

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Main Menu

Second-Level Menu

Third-Level Menu

Fourth-Level Menu

Default Value

Range

AC Under Volt - 180 V 60-300 V

System AC Type - Single Phase Single Phase,

ThreePhase

AC Fail Time - 10Min 0-30Min

Dial-up Network - Disable Disable,Enable

Amb Hi Temp Pt - 40degC 25 - 80degC

Amb Low Temp

Pt

- 0degC -20 -20 degC

Amb Hi Humi Pt - 80% 0%-100%

Amb Low Humi Pt - 10% 0%-100%

Amb V-Hi Temp - 50degC 25 - 80degC

High Power Pt - 80% 1%-120%

D.G. Function - Non Non,Current

Limit,Smart Ctrl

Diesel Capaciey - 12.5KVA 1 KVA-100 KVA

D.G. start Cap - 30% 10-100%

D.G. stop Cap - 90% 10-100%

Air-Con. StPwr - 3.0KW 0.0 -300.0 KW

Air-Con. WtPwr - 0.6KW 0.0 -300.0 KW

Max Charge Time - 12H 6-100H

Min Charge Time - 0H 0-5H

D.G. Working - Close Close, Open

E04A_ D (01-

08)Alm Act

- Open Close, Open

Record Interval - 15Min 1 -60 Min

Alarm Voice Dly - 10Min 1-100 Min

Alarm Voice En - No No,Yes

DST Enable - Disable Disable, Enable

Forbid All Alm - No No,Yes

PSU

Summary Walk-in Enabled - Disable Disable,Enable

Seq Start Intv - 0s 0-20s

High Volt Limit - 59.5V 58.5-60.5V

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Main Menu

Second-Level Menu

Third-Level Menu

Fourth-Level Menu

Default Value

Range

High PSU Cap % - 20% 0-120%

Low PSU Cap % - 100% 0-120%

Rect Redund Ena - Disable Disable,Enable

VRLA Batt

Summ

Basic Para Smart

Mgmt En

Disable Disable,Enable

Float

Charge

53.5 V 48.0-58.3 V

Boost

Charge

56.4 V 48.0-58.3 V

Current

Limit

0.15C10 0.05-0.25

Over

Current

0.25C10 0.05-0.50

Rated

Capacity

100Ah 10-10000 Ah

Install Date 2010-01-01 YYYY-MM-DD

FC BC Auto BC

Enabled

Enable Enable, Disable

To BC

Current

0.05C10 0.01-0.30

Curr BC

Delay

30 Min 2-1440 Min

To BC

Capacity

80% 50-100%

Capa BC

Delay 10 Min 2-1440 Min

BC to FC

Curr

0.01C10 0.01-0.30

BC to FC

Delay

30 Min 2-540 Min

Max BC

Time

16 H 5-48 H

Cyclic BC

Ena

Enable Enable, Disable

Cyclic BC

Intv

30 Day 1-365 Days

Cyc BC 9 H 1-24 H

Page 104: User Manual Plantas Huawei

TP48200T-D20A1 & D20A2 & D14A1 & D14A2

User Manual B LCD Menu

Issue 01 (2012-06-01) Huawei Proprietary and Confidential

Copyright © Huawei Technologies Co., Ltd

98

Main Menu

Second-Level Menu

Third-Level Menu

Fourth-Level Menu

Default Value

Range

Duration

Battery Test Test End

Volt

46.0 V 43.0-53.0 V

Test End

Capa

20.0% 0.0-100.0%

Test End

Temp

5degC -5-15 degC

Test End

Time 480Min 1-6000 Min

Mains Fail

Test

Disable Disable,Enable

Batt Test

Type

No Test No Test,Cyclic

Test, Plan Test

Short Test

Ena

Enable Enable,Disable

Short Test

Intv

30 Day 1-360 Days

ShortT

Duration

5 Min 1-240 Min

Temp Comp TC Factor 80 mV/degC 0-500 mV/degC

Nominal

Temp

25degC 5-45 degC

Charge Disch 0.05C10

DisTime

20.00 H 0.20-50.00 H

0.1C10 Dis

Time

10.00H 0.20-50.00 H

0.2C10 Dis

Time

4.00 H 0.20-50.00 H

0.3C10 Dis

Time

2.42 H 0.20-50.00 H

0.4C10 Dis

Time

1.63 H 0.20-50.00 H

0.5C10 Dis

Time

1.16H 0.20-50.00 H

0.6C10 Dis

Time

0.87 H 0.20-50.00 H

0.7C10 Dis

Time 0.61 H 0.20-50.00 H

Page 105: User Manual Plantas Huawei

TP48200T-D20A1 & D20A2 & D14A1 & D14A2

User Manual B LCD Menu

Issue 01 (2012-06-01) Huawei Proprietary and Confidential

Copyright © Huawei Technologies Co., Ltd

99

Main Menu

Second-Level Menu

Third-Level Menu

Fourth-Level Menu

Default Value

Range

0.8C10 Dis

Time

0.50 H 0.20-50.00 H

0.9C10 Dis

Time

0.42 H 0.20-50.00 H

1.0C10 Dis

Time

0.35H 0.20-50.00 H

Capacity

Coeff

95% 60-1005%

Other Batt Temp

VHigh

Lower DC Volt Lower DC

Volt,BLVD,Do

Nothing

Over Temp

Volt

50.5V 42.0-53.0 V

Batt High

Temp

45degC 25-80 degC

Bat V-High

Temp

53degC 25-80 degC

Batt Low

Temp

–5degC -20-20 degC

Batt V-Low

Temp

–10degC -20-20 degC

LVD Setting BLVD Enabled - Enable Enable, Disable

BLVD Mode - By Voltage By Voltage,By

Capacity,By Time

BLVD Voltage - 43.2 V 35.0-47.8 V

BLVD Recon Volt - 51.5 V 37.0-53.0 V

LLVD1 Enabled - Disable Disable ,Enable

ECC500 MUC01A_DI_1 - Normal Close Normal

Close ,Normal

Open

Comm Para Network Mode - IP -

IP Address - 192.168.0.10 -

Subnet Mask - 255.255.255.0 -

Gateway - 192.168.0.1 -

Host Comm Addr - 0 0~31

Comm Baudrate - 9600 9600,19200

Page 106: User Manual Plantas Huawei

TP48200T-D20A1 & D20A2 & D14A1 & D14A2

User Manual B LCD Menu

Issue 01 (2012-06-01) Huawei Proprietary and Confidential

Copyright © Huawei Technologies Co., Ltd

100

Main Menu

Second-Level Menu

Third-Level Menu

Fourth-Level Menu

Default Value

Range

DHCP - Disable Disable,Enable

Phone Number

(1-3)

- - -

Account(1-3) - - -

Password - - -

NetEco Main IP - 58.251.159.33 -

NetEco Bak IP - 58.251.159.33 -

NetEco Port - 31220 -

System Para LUI Language - ENGLISH English , Chinese

Set Date - - -

Set Time - - -

Set Time Zone - GMT +08:00 -

Save As Def Cfg - Yes -

Restore Def Cfg - Yes -

Restore Manu Cfg - Yes -

Logout - Yes -

Set Site Name - - -

Set Batt Type - NA -

LCD Contrast - 5 -

Control Site

Summary

Auto/Man Ctrl - Auto Auto ,Manual

Network Detect - Yes -

Clear PeakPower - No Yes, No

Clr ATS Alarm - No No, Yes

Clr D.G.Fault - No -

E04A_D(01-08) - Open Open, Close

Smoke 1 Reset - Yes -

Batt Summ BC/FC Ctrl - Float Charge - Float Charge,

Boost Charge

Battery Test - Stop Stop, Start

Reset Batt Cap - Yes -

Clear Batt Alm - Yes -

Page 107: User Manual Plantas Huawei

TP48200T-D20A1 & D20A2 & D14A1 & D14A2

User Manual B LCD Menu

Issue 01 (2012-06-01) Huawei Proprietary and Confidential

Copyright © Huawei Technologies Co., Ltd

101

Main Menu

Second-Level Menu

Third-Level Menu

Fourth-Level Menu

Default Value

Range

Short Test - Stop Stop, Start

LLVD1 Control - Connect Connect,

Disconnect

BLVD Control - - -

PSU

Summary

Current Limit - 121% 1~121%

DC Votage Ctrl - 53.2V 42.0~58.0 V

On/Off Control - On On,Off

Reset - Yes -

Clear Rect Lost - Yes -

Clr Phase Fail - Yes -

PSU - - - -

Clr Alm Hist - - - -

Quick

Settings

Qty of

Battery

- - 1 0-50

Rated

Capacity

- - 100 Ah 10 Ah-10000Ah

Set Date - - - -

Set Time - - - -

IP Address - - - -

Subnet mask - - - -

Gateway - - - -

Page 108: User Manual Plantas Huawei

TP48200T-D20A1 & D20A2 & D14A1 & D14A2

User Manual C Acronyms and Abbreviations

Issue 01 (2012-06-01) Huawei Proprietary and Confidential

Copyright © Huawei Technologies Co., Ltd

102

C Acronyms and Abbreviations

A

AC PDU Alternating Current Power Distribution Unit

ASIC Application-Specific Integrated Circuit

ATS Automatic Transfer Switch

D

DC PDU Direct Current Power Distribution Unit

E

EMS Element Management System

I

IEC International Electrotechnical Commission

L

LED Light Emitting Diode

LSI Large-scale Integration

O

OPEX Operational Expenditure

P

PDU Power Distribution Unit

PMU Power Monitoring Unit

Page 109: User Manual Plantas Huawei

TP48200T-D20A1 & D20A2 & D14A1 & D14A2

User Manual C Acronyms and Abbreviations

Issue 01 (2012-06-01) Huawei Proprietary and Confidential

Copyright © Huawei Technologies Co., Ltd

103

S

SELV Safety Extra-low Voltage

T

TCU Temperature Control Unit