Huawei Indoor Power Tp48300b-x6x0 Tp48600b-x6x0 User Manual

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    TP48300B-X6X0 & TP48600B-X6X0V300R001

    User Manual

    Issue 02

    Date 2012-12-04

    HUAWEI TECHNOLOGIES CO., LTD.

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    Issue 02 (2012-12-04) 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 orrepresentations 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] 

    http://www.huawei.com/http://www.huawei.com/mailto:[email protected]:[email protected]:[email protected]://www.huawei.com/

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    TP48300B-X6X0 & TP48600B-X6X0

    User Manual About This Document

    Issue 02 (2012-12-04) Huawei Proprietary and Confidential

    Copyright © Huawei Technologies Co., Ltd

    ii

    About This Document

    PurposeThis document describes the TP48300B-X6X0 & TP48600B-X6X0 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 ConventionsThe 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 notavoided, result in moderate or minor injury.

    Alerts you to a potentially hazardous situation that could, if notavoided, 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 supplementimportant points in the main text.

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    Change History

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

    changes made in earlier issues.

    Issue 02 (2012-12-04)

    Port description is modified.

    Issue 01 (2011-12-26)

    This issue is the first official release.

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    TP48300B-X6X0 & TP48600B-X6X0

    User Manual Contents

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    Contents

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

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

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

    1.2 Typical Application ....................................................... .............................................................. ..................... 1 

    1.3 Features ............................................................................................................................................................ 2 

    1.4 Structure ............................................................. .............................................................. ................................ 3 

    2 Component Description ............................................................................................................... 5 

    2.1 Cabinet ............................................................................................................................................................. 5 

    2.1.1 Appearance ........................................................... .............................................................. ..................... 5 

    2.1.2 Features ................................................................ .............................................................. ..................... 6 

    2.2 Rectifier .............................................................. .............................................................. ................................ 6 

    2.2.1 Appearance ........................................................... .............................................................. ..................... 6 

    2.2.2 Panel........................................................................................................................................................ 7 

    2.2.3 Protection Mechanisms ................................................................................................................. .......... 8 

    2.2.4 Features ................................................................ .............................................................. ..................... 8 

    2.3 Monitoring Unit ............................................................................................................................................... 8 

    2.3.1 Introduction .......................................................... .............................................................. ..................... 8 

    2.3.2 PMU .......................................................... .............................................................. .............................. 10 

    2.3.3 UIM ........................................................... .............................................................. .............................. 12 

    2.3.4 SNMP Module (Optional) ......................................................... ............................................................ 15 

    2.3.5 Querying alarms ............................................................. ............................................................... ........ 15 

    2.3.6 Remote Software Upgrade ............................................................................................................ ........ 17 

    3 Safety Precautions ....................................................................................................................... 20 

    3.1 Overview ............................................................ .............................................................. .............................. 20 

    3.2 Local Safety Regulations ............................................................................................................................... 20 

    3.3 Grounding Requirements ......................................................................................... ...................................... 20 

    3.4 Human Safety ................................................................ .............................................................. ................... 21 

    3.5 Equipment Safety ............................................................................................................. .............................. 21 

    3.6 Electrical Safety ............................................................................................................................................. 21 

    4 Installation And Commissioning ............................................................................................ 24 

    5 Maintenance ................................................................................................................................. 25 

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    5.1 Routine Maintenance...................................................................................................................................... 25 

    5.2 Common Faults .............................................................................................................................................. 26 

    5.3 Troubleshooting Components....................................... ............................................................... ................... 32 

    5.4 Component Replacment .......................................................... ............................................................... ........ 34 

    A Technical Specifications ........................................................................................................... 39 

    B LCD Menu ................................................................................................................................... 42 

    C Acronyms and Abbreviations .................................................................................................. 47 

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    1 Overview1.1 Designation Explanation

    The TP48300B-X6X0 & TP48600B-X6X0 are alternating current (AC)-to-direct current (DC)

    indoor power system and supply power to -48 V series communications equipment. TheTP48300B-X6X0 & TP48600B-X6X0 use 50 A rectifiers. The TP48300B-X6X0 provides amaximum current of 300 A, and the TP48600B-X6X0 provides a maximum current of 600 A.

    The TP48300B-X6X0 supports dual live wire (L1, L2, PE) AC input, and theTP48600B-X6X0 supports three-phase-four-line (L1, L2, L3, PE) AC input.

    1.2 Typical Application

    The TP48300B-X6X0 & TP48600B-X6X0, AC power source, automatic transfer switch(ATS), and storage batteries are combined to form a site power supply solution. Figure 1-1shows the position of the TP48300B-X6X0 & TP48600B-X6X0 in a typical site solution.

    Figure 1-1 Position of the TP48300B-X6X0 & TP48600B-X6X0 in a typical site solution

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    1.3 Features

    The TP48300B-X6X0 & TP48600B-X6X0 support easy installation, intelligent hibernation,

    network Management over the NetEco, and wide range of AC input voltage.

    Easy Installation

    The power monitoring unit (PMU) and rectifier are hot-swappable. This facilitates the system

    installation, saves maintenance time, and reduces the operational expenditure (OPEX).

    Intelligent Hibernation

    The rectifier efficiency increases in proportion to the load power. When the total load power is

    low, certain rectifiers can be hibernated to improve the load power of running rectifiers andincrease the rectifier efficiency. This facilitates energy conversation.

    rectifiers should be hibernated in turn to ensure the same aging degree. When the startedrectifier with the longest running time in total runs for 7 days (by default) more than the

    hibernated rectifier with the longest running time in total, start all rectifiers for 2 hours and

    then hibernate the rectifiers with long running time.

    High Efficiency

    The TP48300B-X6X0 & TP48600B-X6X0 use rectifiers with a 91.5% efficiency record.

    Low Imbalance Degree of Current Equalization

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

    Remote Management

    OPEX is reduced when the TP48300B-X6X0 & TP48600B-X6X0 performs comprehensive power management and battery management functions by connecting to the elementmanagement system (EMS).

    Wide Range of AC Input Voltage

    The AC input voltage of the TP48300B-X6X0 & TP48600B-X6X0 ranges from 85 V AC to

    300 V AC phase voltage.

    High-Level Regulatory DesignThe TP48300B-X6X0 & TP48600B-X6X0 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.

    Low Noise

    The noise specifications comply with ETSI EN 300 753 Class 4.1 (rural environment).

    http://3ms.huawei.com/term/docMaintain/termOperate.do?method=listTermAndDefinition&f_id=20100110000301&fd_id=55921&node_id=1-9&searchType=fulltext&searchValue=OPEX&caseSensitive=http://3ms.huawei.com/term/docMaintain/termOperate.do?method=listTermAndDefinition&f_id=20081203001375&fd_id=53480&node_id=1-9&searchType=fulltext&searchValue=UL&caseSensitive=http://3ms.huawei.com/term/docMaintain/termOperate.do?method=listTermAndDefinition&f_id=20081203001375&fd_id=53480&node_id=1-9&searchType=fulltext&searchValue=UL&caseSensitive=http://3ms.huawei.com/term/docMaintain/termOperate.do?method=listTermAndDefinition&f_id=20100110000301&fd_id=55921&node_id=1-9&searchType=fulltext&searchValue=OPEX&caseSensitive=

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    Periodic Battery Test 

    The periodic battery test is used to test battery aging. The test allows storage batteries to befully charged automatically and then to discharge till the voltage reaches the value of Test EndVolt . The test is performed periodically (every 120 days by default).

    1.4 StructureFigure 1-2 shows the TP48300B-X6X0 & TP48600B-X6X0 interior.

    Figure 1-2 TP48300B-X6X0 & TP48600B-X6X0 interior

    (1) Positive DC output

     busbar

    (2) Battery fuse (3) Load low voltage disconnection

    (LLVD) DC Contactor

    (4) Battery route DC

    Contactor

    (5) Battery switch (6) Space for rectifier

    (7) AC input circuit breaker (8) Load low voltage

    disconnection (LLVD) fuse

    (9) LLVD circuit breaker

    (10) Battery low voltage

    disconnection(BLVD)

    circuit breaker

    (11) PMU (12) User interface module (UIM)

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    (13) Ground busbar (14) AC surge protection device

    (SPD)

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    2 Component Description2.1 Cabinet

    2.1.1 Appearance

    The TP48300B-X6X0 & TP48600B-X6X0 cabinet is made of steel. Dimensions (H x W x D)of the TP48300B-X6X0 & TP48600B-X6X0 cabinet are 1600 mm x 600 mm x 450 mm(62.99 in. x 23.62 in. x 17.72 in.).

    Figure 2-1 shows the TP48300B-X6X0 & TP48600B-X6X0 cabinet.

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    Figure 2-1 TP48300B-X6X0 & TP48600B-X6X0 exterior

    2.1.2 Features

    The TP48300B-X6X0 & TP48600B-X6X0 cabinet has the following features:

      All operations can be performed from the front of the cabinet.

      The cabinet can be shipped together with boards.

    2.2 Rectifier

    2.2.1 Appearance

    The rectifier converts AC power into stable -48 V DC power. The TP48300B-X6X0 can be

    configured with 6 rectifiers based on the actual load power. The TP48600B-X6X0 can be

    configured with 12 rectifiers based on the actual load power.

    Figure 2-2 shows the rectifier.

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    Figure 2-2 rectifier

    2.2.2 Panel

    The rectifier panel provides the power light emitting diode (LED), protection LED, and faultLED. Figure 2-3 shows the rectifier panel.

    Figure 2-3 rectifier panel

    (1) Power LED (2) Protection LED (3) Fault LED

    Table 2-1 LED description

    LED Color Normal

    Status

    Abnormal

    Status

    Exception Causes

    Power

    LEDGreen Steady

    onOff   The mains supply fails due to no

    AC input, AC input overvoltage, orAC input undervoltage.

      The rectifier has no power output.

    Protection

    LEDYellow Off Steady on   Overtemperature shutdown occurs.

      The rectifier hibernates.

    In this case, the protection LED ison.

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    LED Color Normal

    Status

    Abnormal

    Status

    Exception Causes

    Fault LED Red Off Steady on The rectifier has no power output due

    to output overvoltage shutdown, fan

    failure, overtemperature shutdown, orrectifier failure. If the unavailable power output is caused by a mains

    supply failure due to AC inputabsence, AC input overvoltage, or AC

    input undervoltage, the fault LED doesnot illuminate, either.

    2.2.3 Protection Mechanisms

    The TP48300B-X6X0 & TP48600B-X6X0 supports the following protection mechanisms:

      Input overvoltage protection

      Input undervoltage protection

      Input overcurrent protection

      Output overvoltage protection

      Output short circuit protection

      Output current limiting protection

      Overtemperature protection

    2.2.4 Features

    The rectifier provides the following features:

      High power density

      Stable operation

      Intelligent hibernation

      Hot swappable

    2.3 Monitoring Unit

    2.3.1 IntroductionIn the middle is the PMU, on the left are the BLVD switch and AC detection board, and on theright is the UIM. Figure 2-4 shows the monitoring unit subrack.

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    Figure 2-4 Monitoring unit subrack

    Table 2-2 lists the structural specifications of the monitoring unit subrack.

    Table 2-2 Structural specifications of the monitoring unit subrack

    Item Description

    Dimensions (H x W x D) 86.1 mm x 442 mm x 226 mm (3.89 in. x 17.40 in. x 8.90 in.)

    Installation scenario 19-inch rack

    Maintenance mode Maintained from the front

    The monitoring unit consists of a PMU, a UIM, an AC detection board, an SNMP module

    (optional), and a monitoring signal transfer board. Table 2-3 describes these components.

    Table 2-3 Component description

    Component Description

    Monitoring signal

    transfer board

    The monitoring signal transfer board is vertically installed in the

    innermost of the monitoring unit subrack, and provides conversion ports for the PMU, UIM, and other components of the

    TP48300B-X6X0 & TP48600B-X6X0. The monitoring signaltransfer board connects to the power distribution with mechanical

    switch (PDM), AC detection board, and power subrack over cables

    and to the UIM and function extended board over 96-pinconnectors.

    PMU The PMU, which is hot-swappable, connects to the monitoring

    signal transfer board over a 125-pin connector to performmonitoring functions.

    UIM The UIM provides various ports such as the temperature and

    humidity detection port, Boolean value input port, dry contactoutput, and communications port. The UIM connects to themonitoring signal transfer board over a 96-pin connector.

    AC detection board The AC detection board detects single-phase AC voltage and passes

    signals to the monitoring signal transfer board over a cable.

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    Component Description

    SNMP module

    (optional)

    The RS485/232 port is connected to the fast Ethernet (FE) port on

    the SNMP module for remote management and management of theTP48300B-X6X0 & TP48600B-X6X0.

    2.3.2 PMU

    All ports in this manual are protected by a security mechanism.

    The PMU manages the TP48300B-X6X0 & TP48600B-X6X0 and storage batteries by

    communicating with the host over an RS485/232 port. It detects power distribution and

    generates alarms for power distribution failures. It also reports spare boolean values, ambient

    temperatures and humidity status, battery temperatures, and spare analog parameters. Spare boolean values and detection results from sensors are transferred to the PMU over themonitoring signal transfer board and UIM.

    The PMU implements local management, remote communication, and alarming functions. Itcommunicates with the element network system (EMS) by using the RS485 or RS232

     protocol. It can also communicate with third-party equipment. The PMU can be connected toa modem or an SNMP module.

    The liquid crystal display (LCD) of the PMU displays operating parameters about the AC power supply, DC power supply, rectifiers, and storage batteries. It also displays the operating

    status and alarm status of the TP48300B-X6X0 & TP48600B-X6X0. You can set parameters

    and control functions on the LCD using the four buttons on the PMU panel.

    Figure 2-5 shows the PMU panel.

    Figure 2-5 PMU panel

    Table 2-4 lists the structural specifications of the PMU.

    Table 2-4 Structural specifications of the PMU

    Item Specifications

    Weight 2 kg (4.41 lb)

    Dimensions (H x W x D) 40.8 mm x 100 mm x 205.3 mm (1.61 in. x 3.94 in. x 8.08 in.)

    Table 2-5 describes the buttons on the front panel.

    NOTE

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    Table 2-5 Button description

    Button  Description 

    ▲ or ▼  Allows you to view menu items and set the value of a menu item.

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

    main menu, or saves the settings of a submenu item.

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

    item.

      The backlight turns off if the liquid crystal display (LCD) of the CPMU01 is left unattended for eightminutes. The standby screen is displayed if the LCD is left unattended for five minutes.

      On the standby screen, press ▼+Enter to decrease the LCD contrast, and press ▲+Enter to increasethe LCD contrast.

      The preset customer password is 0#, and Huawei engineer password is11#.

    The PMU supports environment monitoring, alarm management, battery management,

    rectifier management, and power distribution management on its LCD or the EMS.

    Table 2-6 PMU functions

    Function Description

    Battery

    management

      Load high temperature disconnection

      Battery high temperature disconnection

      Battery boost charge management  Battery floating charge management

      Battery discharge test

      Battery temperature compensation

    Remote

    detection

      AC input voltage detection

      Load current detection

      Battery string current detection

      DC busbar voltage detection

      Battery temperature detection

      Ambient humidity detection  Ambient temperature detection

      Spare analog parameter detection

    NOTE

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    Function Description

    Remote

    management

      rectifier startup and shutdown

      rectifier boost charge and floating charge

      rectifier voltage adjustment  rectifier current limiting

      Battery connection and disconnection

      Current limiting for storage batteries when the diesel generator (D.G.)

    is started

      Buzzer control

    Dry contact outputs (including one dry contact output for detecting the

    D.G.)

    Remote

    communication

    Mains fault; mains overvoltage and undervoltage; DC overvoltage and

    undervoltage; load fuse blown; charge overcurrent; battery disconnection

    (by the EMS or due to overtemperature or undervoltage); overhighambient temperature; over low ambient temperature; No. n rectifier fault; No. n rectifier protection; rectifier output current reporting; battery loop

     broken; SPD fault; door status sensor alarm; water sensor alarm; smokesensor alarm; Boolean value input

    The PMU panel has a RUN indicator and an ALM indicator, which show the working statusof the TP48300B-X6X0 & TP48600B-X6X0. In addition, the PMU has a buzzer. Table 2-7

    describes the indicators on the PMU panel.

    Table 2-7 Indicators on the PMU

    Indicator Status Description 

    RUN indicator

    (green)Off The PMU is faulty.

    Steady on The PMU is running properly but is not communicating

    with the communications equipment.

    Blinking The PMU is running properly and the PMU

    communicates with Huawei communications equipment

    normally.

    ALM indicator(red) Steady on If the ALM indicator is steady on and the buzzer beeps,a major alarm is generated.

    2.3.3 UIM

    The UIM provides sensor detection ports, Boolean value input ports, dry contact outputs, and

    a communications port.

    Figure 2-6 shows the UIM panel.

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    Figure 2-6 UIM panel

    Table 2-8 Ports on the UIM

    Port Type Silk Screen Description Remarks

    Sensor port WATER Used to detect water -

    TEM_HUM Used to detect theambient temperature

    and humidity

    -

    AIN 0 – 5 V spare analog

     parameters-

    SMOKE Used to detect smoke -

    GATE Used to detect door -

    TEM_BAT Used to detect the

     battery temperature

    -

    Boolean value

    detection portDIN1 Boolean value input 1 Reserved

    DIN2 Boolean value input 2 Reserved

    DIN3 Boolean value input 7 Reserved

    Status1 Used to detect D.G.

    status 1

    Detecting D.G. startup or

    stopping

    Status2 Boolean value input 6 Reserved

    Dry contact

    output

    ALM1 AC power failure Default alarm

    ALM2 DC undervoltage Default alarm

    ALM3 rectifier fault Default alarm

    ALM4 SPD fault Default alarm

    ALM5 Fuse blown Default alarm

    ALM6 Battery protection Default alarm

    SPD detection

     portAC_SPD Used to detect AC SPD

    faults-

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    Port Type Silk Screen Description Remarks

    DC_SPD Used to detect DC SPD

    faultsReserved

    Communications port

    COM_485/232 Used to communicatewith the EMS

    -

    Table 2-9 Pin defination

    Silk Screen Pin Pin defination

    WATER 1 12V

    2 WATER

    3 AGND_OUT

    4 NULL

    TEM_HUM 1 24V

    2 VBTEM1

    3 24V

    4 VHUM

    AIN 1 SIM4

    2 AGND_OUT

    SMOKE 1 24V

    2 SMOKE

    GATE 1 24V

    2 DOOR

    DIN1 1 12V

    2 JTD1

    DIN2 1 12V

    2 JTD2

    DIN3 1 12V

    2 JTD7

    AC_SPD 1 12V

    2 JTD3

    DC_SPD 1 12V

    2 JTD4

    TEMBAT 1 VBTEM1

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    Silk Screen Pin Pin defination

    2 24V

    2.3.4 SNMP Module (Optional)The SNMP module is used to establish a communication channel between theTP48300B-X6X0 & TP48600B-X6X0 and an EMS. The SNMP module is a converter whichconverts the RS485 or RS232 protocol to the TCP/IP protocol. The SNMP module remotely

    manages the AC/DC converter cabinet that cannot be connected to the Ethernet. If thenetwork is connected, you can use any computer having an EMS or Web browser installed to

    manage the power system by using the SNMP module.

    The SNMP module is optional for the TP48300B-X6X0 & TP48600B-X6X0 and can be

    installed in the power supply cabinet but not in the monitoring unit subrack.

    Figure 2-7 shows the network diagram for the SNMP module.

    Figure 2-7  Network diagram for the SNMP module

    2.3.5 Querying alarms

    When a major alarm is generated on the TP48300B-X6X0 & TP48600B-X6X0, the red ALM

    indicator on the CPMU01 will be steady on and the buzzer will beep. Troubleshoot the fault

     based on the alarms displayed on the CPMU01. For details about how to rectify the fault, seeTable 5-2. For details about menus on the CPMU01, see B LCD Menu. After the currentalarm is cleared, the ALM indicator on the CPMU01 turns off and the buzzer stops beeping.All alarms can be queried in the alarm history.

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    Figure 2-8 Querying alarms on the CPMU01 panel

    Figure 2-9 Querying alarms on the NetEco net work management UI

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    2.3.6 Remote Software Upgrade 

    When the TP48300B-X6X0 & TP48600B-X6X0 is used a Simple Network Management

    Protocol (SNMP) module, you can upgrade software of the TP48300B-X6X0 &TP48600B-X6X0 remotely on the NetEcoV1.2 network management UI. For details about the NetEco, See the NetEco Help. To upgrade software remotely, perform the following steps:

    Step 1  Upload the target version file of the controller from a PC to the server.

    Choose Software > Software Browser.

    On the Software Browser tab page, click Transfer and then click From Client to Server… 

    In the Select Software File dialog box, click Select.

    Select the save path for the target version file of the controller on the PC, and then click OK .

    In the Select Software File dialog box, click Confirm. Then the system starts transferring thetarget version file.

    Step 2  View the progress for transferring the target version file of the controller.

    Choose Software > Software Browser in the NetEco main window.

    On the Software Browser tab page, click the Server tab. Then you can view the progress for

    transferring the target version file of the controller in the lower part of the tab page.

    Step 3  Create a task for upgrading the controller software.

    Choose Software > Upgrade Task Management in the NetEco main window.

    On the Upgrade Task Management tab page, click Create.

    In the Site Upgrade Wizard dialog box, enter a task name in Task Name and set Upgrade

    Type to Upgrade Version.

    Choose the home site of the controller to be upgraded in the navigation tree. Click toadd the site to the list shown in the following figure on the right. Then click Next.

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    Check that the home site and target version of the controller are correct. Click Finish to start

    the upgrade.

    Step 4  View the progress for upgrading the controller software.

    Choose Software > Upgrade Task Management in the NetEco main window.

    On the Upgrade Task Management tab page, click Controller in the navigation tree. Thenyou can view the progress of all current tasks in the right pane.

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    Step 5  Verify whether the upgrade is successful.

    Choose Software > Software Browser in the NetEco main window.

    On the Software Bowser tab page, click the Site tab and select the home site of the target

    controller.On the Version tab page on the right of the Site tab page, you can view the current softwareversion of the controller.

    ----End

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    3 Safety Precautions3.1 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 safetyinstructions. 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 RegulationsWhen 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 properlyinstalled 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 beforean 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 totelecommunication network voltage (TNV) circuits.

      Before operating the device, wear electrostatic discharge (ESD) clothes, ESD gloves, andan 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 surfaceof 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 indirectcontact (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 usingordinary 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 mustground 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, whichmay 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 betweenshoes 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 onhuman bodies, you must wear a well-grounded ESD wrist strap when touching thedevice 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 CommissioningThe detailed installation and commissioning refer to the TP48300B-X6X0 Quick InstallationGuide (V300R001) and TP48600B-X6X0 Quick Installation Guide (V300R001).

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    5 Maintenance5.1 Routine Maintenance

    The TP48300B-X6X0&TP48600B-X6X0 is maintained every six months. If faults are

    identified, rectify them immediately.

    Table 5-1 Routine maintenance checklist

    MaintenanceItem

    Maintenance Task

    Check Whether

    CheckMethod

    Repair When Measures

    Electricity The voltage

    output is

    normal.

    Using a

    multimeter

    The battery low

    voltage

    disconnection(BLVD)voltage or load

    low voltagedisconnection

    (LLVD) voltageexceeds thethreshold.

    For details

    about how to

    rectify the fault,See 5.2Common Faults

    Preventivemaintenance

    inspection

    (PMI)

    Indicators are innormal status.

    Observingindicators

    Fault alarms aregenerated.

    Cabinetappearance

    The paint andtheelectroplated

    coating on the

    surface of thecabinet are in

    good condition.

    Observing thecabinet

    The cabinetsurface isdamaged or

    distorted.

    Repaint andrepair thecabinet.

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    5.2 Common Faults

    Table 5-2 Troubleshooting the TP48300B-X6X0&TP48600B-X6X0

    Category Exception Cause Measures

    AC out of phase   The AC inputcable is faulty.

      The mainssupply or D.G.

    fails.

      Check whether the AC input cable isconnected properly. If it is not connected

     properly, reconnect it. If the insulation layerdeteriorates, replace the AC input cable.

      Use a multimeter to check whether the ACinput voltage is over low and whether an AC

    undervoltage alarm (lower than 180 V AC) is

    generated. If yes, check whether short circuitsoccur in the AC input loop and whether

    electrical leakage occurs. If a short circuit or

    electrical leakage occurs, replace the ACinput cable.

      If the mains supply provides the AC power,

    contact the mains supplier. If the D.G. provides the AC power, check and repair the

    D.G. by referring to the D.G. User Manual .

    AC power

    failure

      The AC input

    cable is faulty.

      The mainssupply or D.G.

    fails.

      Check whether the AC input cable is

    connected properly. If it is not connected

     properly, reconnect it.

      Check whether the AC power is available. If

    the AC power is unavailable, check whether

    an open or a short circuit occurs in the ACinput loop. If the AC power is available and

    no open or short circuit occurs, contact the

    mains supplier. If the D.G. provides the AC power, check and repair the D.G. by referring

    to the D.G. User Manual .

      If the AC power is available, check whetherthe AC detection cable is connected properly.

      If the AC detection cable is connected

     properly, replace the AC detection board.

      If the power failure does not last long, use

    storage batteries to power DC-powered loads.If the power failure lasts long, use another

     power supply.

    AC overvoltage

    or undervoltage

      The alarm

    threshold forAC overvoltageor undervoltage

    is not properlyset on the PMU.

      The mains

    supply or D.G.

    fails.

      Check whether the AC overvoltage and

    undervoltage alarm thresholds are properlyset on the PMU. If no, adjust them asrequired.

      If the mains supply provides the AC power,

    contact the mains supplier. If the D.G. provides the AC power, check and repair the

    D.G. by referring to the D.G. User Manual .

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    Category Exception Cause Measures

    DC overvoltage

    or undervoltage

      The alarm

    threshold forDC overvoltage

    or undervoltageis not properly

    set on the PMU.

      Check whether the DC overvoltage and

    undervoltage alarm thresholds are properlyset on the PMU. If no, adjust them as

    required.

      Reseat all rectifiers one by one when storage batteries provide power normally. If an

    overvoltage alarm is generated when a certainrectifier is reinserted, replace this rectifier.

    Overcurrent

    charge

      The charging

     parameters arenot properly set

    on the PMU.

      The batteryloop is faulty.

      Check the charging parameters on the PMU

    and reset those that are not properly set.

      Check whether faults such as short circuits

    occur in the battery loop. If faults occur,rectify them.

      Check the storage batteries and replace faulty

    ones.

    Load

    disconnection

      The contactor is

    faulty.

      The PMU load

    disconnection

    voltage isoverhigh.

      The load power

    is greater thanthe maximum

    valueconfigured forthe rectifier,

    and this causeslow outputvoltage.

      Check whether the contactor is faulty and

    whether the contactor cannot be connected or

    disconnected. If the contactor is faulty or the

    contactor cannot be connected ordisconnected, replace the contactor.

      Check whether the LLVD voltage isoverhigh. If it is overhigh, adjust the voltageto the normal range.

      Check whether the load power is greater than

    the configured rectifier power. If yes, addrectifiers. If the load power exceeds themaximum power of the TP48300B-X6X0 or

    TP48600B-X6X0, decrease the load power.

    Batterydisconnection

      The battery parameters are

    not properly seton the PMU.

      The contactor is

    faulty.

      Check whether the mains supply fails andwhether the battery voltage is below the

    BLVD threshold. If the mains supply fails orthe battery voltage is below the BLVD

    threshold, contact the mains supplier.

     

    Check whether that BLVD is enabled on thePMU.

      Check whether the battery cables andconnectors are faulty, and replace faulty ones.

      Check whether the contactor is faulty and

    whether the contactor cannot be connected ordisconnected. If the contactor is faulty or

    cannot be connected or disconnected, replace

    the contactor.

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    Category Exception Cause Measures

    Battery loop

     broken

      The battery

    loop is faulty.

     

    The contactor isfaulty.

      Storage batteries are

    faulty.

      Check the battery cables and connectors, and

    replace faulty ones.

     

    Check whether the contactor is faulty andwhether the contactor cannot be connected or

    disconnected. If the contactor is faulty orcannot be connected or disconnected, replace

    the contactor.

      Check the storage batteries and replace faultyones.

    Overhigh or overlow ambient

    temperature

      The alarmthreshold for

    ambienttemperatures isnot properly set

    on the PMU.

      The

    temperatureinside theshelter wherethe ambient

    temperature

    sensor isinstalled is not

    in the normalrange.

      The ambient

    temperature

    sensor is faulty.

      Check that the alarm threshold for ambienttemperatures is properly set on the PMU.

      Check the temperature control system in theshelter and repair it if necessary. After the

    temperature inside the cabinet is adjusted tothe specified range, the alarm is automatically

    cleared.

      If the alarm persists, repair the temperaturesensor.

    Faulty ambienttemperaturesensor

      The sensor isnot connected properly.

      The ambient or

     battery

    temperaturesensor is faulty.

      The UIM is

    faulty.

      Check whether the signal cable is properlyconnected to the UIM. If no, fasten or replacethe signal cable.

      If the cable is connected properly but the

    sensor is faulty, replace the sensor.

      If the alarm persists, replace the UIM.

    Faulty battery

    temperaturesensor

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    Category Exception Cause Measures

    Overhigh or over

    low ambienthumidity

      The alarm

    threshold forambient

    humidity is notset properly on

    the PMU.

      The humidityinside theshelter that

    houses thehumidity sensor

    is not in thenormal range.

      The humidity

    sensor is faulty.

      Check that the alarm threshold for ambient

    humidity is properly set on the PMU.

     

    Check the shelter for water intrusion. If thereis water in the shelter, remove the water using

    a dry cotton cloth or dehumidifier.

      If the humidity in the cabinet is adjusted to

    the specified range but the alarm persists,

    check and repair the humidity sensor.

    Faulty ambient

    humidity sensor

      The sensor is

    not connected

     properly.

      The humiditysensor is faulty.

      The monitoring

     backplane is

    faulty.

      Check whether the signal cable is properly

    connected to the monitoring backplane. If no,

    fasten or replace the signal cable.

      If the cable is connected properly but thesensor is faulty, replace the sensor.

      If the alarm persists, replace the monitoring

     backplane.

    Overhigh or over

    low batterytemperature

      The battery

    cabinet is underan

    overtemperature

    condition.

      The alarmthreshold for

     batterytemperatures is

    not properly set

    on the PMU.

      The chargecurrent of

    storage batteriesis overhigh.

      The battery

    temperature

    sensor is faulty.

      Check that the alarm threshold for battery

    temperatures is properly set on the PMU.  Check whether the temperature inside the

     battery cabinet is overhigh. If it is, lower the

    temperature inside the battery cabinet. Thealarm is automatically cleared after thetemperature lowers to the proper range.

      Check the charge current. If the charge

    current is overhigh, change the charge modefrom boost charge to floating charge and

    check whether the charge current lowers. If

    the charge current is still overhigh, reduce thecharge current. If the overtemperature

    condition persists, check the storage batteriesand replace faulty ones.

    Door status

    sensor alarm

      The cabinet

    door is open.

      The door statussensor is faulty.

      Close the cabinet door.

      If the alarm persists after the cabinet door is

    closed, check and repair the door statussensor.

      If the door status sensor is not faulty, replace

    the monitoring backplane.

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    Category Exception Cause Measures

    Water detector

    alarm

      There is water

    in the shelter.

     

    The watersensor is faulty.

      Check the shelter for water intrusion. If there

    is water in the shelter, remove the water usinga dry cotton cloth or dehumidifier.

      If the alarm persists after the water is

    removed, check and repair the water sensor.

      If the water sensor is not faulty, replace the

    monitoring backplane.

    Smoke sensor

    alarm

      There is smoke

    in the shelter.

      The smoke

    sensor is faulty.

      Check the shelter for smoke. If there is

    smoke, put out the fire immediately and open

    the shelter door for ventilation.

      If there is no smoke but this alarm persists,check and repair the smoke sensor.

      If the smoke sensor is not faulty, replace the

    monitoring backplane.

    rectifier fault   The rectifier has

     poor contact

    with thesubrack.

      The rectifier is

    faulty.

      Check the fault indicator on the rectifier

     panel. If the indicator is red, the rectifier is

    faulty. Then replace the rectifier.

      Disconnect the AC power from the rectifier,and then restart the rectifier after a period of

    time. If the alarm persists, replace therectifier.

    rectifier

    shutdown

    rectifier protection

      rectifier enters

    the hibernation

    mode.  The input

    voltage to the

    rectifier is notin the normal

    range.

      A fault occurson the rectifier.

      If rectifier enters the hibernation mode, the

     power system generates rectifier shutdown

    alarm, don’t need to deal with it.  Check whether the mains supply voltage is

    higher than the rectifier AC overvoltage

    threshold (300 V) or lower than the rectifierAC undervoltage threshold (85 V). If the

     power grid is in an overvoltage orundervoltage condition for a long period of

    time, contact the mains supplier to improvethe power grid.

      If the input voltage to the rectifier is withinthe specified range but this alarm persists,

    replace the rectifier.

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    Category Exception Cause Measures

    Communication

    failure betweenthe rectifier and

    the PMU

      The signal cable

    to the rectifieris not connected

     properly.

      The rectifier isnot installed in

    the subrack.

      The rectifier has poor contact

    with the

    subrack.

      A fault occurson the rectifier.

      The monitoring

     backplane isfaulty.

      Check whether the rectifier is installed in the

    subrack and whether the rectifier is properlyconnected. If the rectifier is not installed in

    the subrack, install the rectifier in the correct position. If the rectifier has poor contact with

    the subrack, reseat the rectifier, and ensurethat the rectifier is secured to the subrack.

      Check whether the communications cable is properly connected between the rectifier and

    the monitoring backplane. If yes, reseat therectifier.

      If the alarm persists, replace the rectifier.

      If the alarm still persists after the rectifier is

    replaced, replace the monitoring backplane.

    Load fuse blown   The load fuse isfaulty.

      The load circuit

     breaker is in the

    OFF position.

      Check whether the load circuit breaker is inthe OFF position. If it is, switch it to the ON position.

      Check whether the load fuse is damaged. Use

    a multimeter to measure the voltage at bothends of the fuse. If the voltage is close to 0 V,

    the fuse is normal. Otherwise, the fuse is blown. Replace the fuse.

      If the alarm persists after the fuse is replaced,

    check the new fuse. If the new fuse is blownor the load circuit breaker is automaticallyswitched to the OFF position, the load power

    on this route may be excessive or a short

    circuit may occur. In this case, you need torectify the fault on this load loop. If the new

    fuse functions normally, the alarm loop isfaulty. Then replace the PMU.

    Faulty AC SPD   The AC SPD is

    faulty.

      The monitoring

     backplane isfaulty.

      Observe the indication window on the AC

    surge protection module. If it turns red,replace the surge protection module. If it does

    not turn red, the alarm loop in the PMU isfaulty. Then replace the PMU.

      If the alarm persists, replace the monitoring

     backplane.

    Faulty DC SPD  The DC SPD is

    faulty.

      Replace the DC surge protection board.

      If the alarm persists after the PMU is

    replaced, replace the monitoring backplane.

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      If the customer does not require the TP48300B-X6X0 & TP48600B-X6X0 to be managed in in-bandmode, do not connect the TP48300B-X6X0 & TP48600B-X6X0 and the base band unit (BBU) withan Ethernet cable or an RJ45 communications cable. If the customer requires the TP48300B-X6X0& TP48600B-X6X0 to be managed in in-band mode, set the capacity of storage batteries on the

    EMS.  After a fault is rectified, the corresponding alarm is automatically cleared on the PMU and the alarm

    information is stored in the alarm history.

      The BLVD fuse and LLVD fuse are both called load fuse.

      Disconnect the fuse before replacing it. Otherwise, arc sparks may be generated, and this may cause bodily injury.

      After replacing the PMU, reset parameters by referring to the TP48300B-X6X0 Quick Installation

    Guide or TP48600B-X6X0 Quick Installation Guide.

      The PMU and rectifiers are hot-swappable.

      When replacing the monitoring board, take ESD measures such as wearing an ESD wrist wrap.

    5.3 Troubleshooting Components

    AC SPD

    Observe the indication window on the surge protection module. If the indication window

    turns red, the surge protection module is damaged. In this case, replace the surge protection

    module. If the indication window remains green, the SPD runs properly.

    Circuit Breaker

    The circuit breaker fault is usually caused by overcurrent or short circuits. Circuit breakerfaults are caused by overcurrent or short circuits. To check whether a circuit break is faulty,

     perform the following steps:

    Step 1  Switch the circuit breaker to the ON position.

    Step 2  Measure the resistance at the two ends of the circuit breaker using a multimeter. If theresistance is infinity, the circuit breaker is damaged.

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    DC Contactor

    Table 5-3 DC contactor description

    Position Type Check MethodLLVD route  Normally closed (NC)

    (When the contactor is

     powered off, the contactor isclosed.)

      When there is no voltage on the control pin of the contactor, use a mulitmeter

    to check whether the output pin is innormal status. For example, if pins 1

    and 2 shown in Figure 5-1 have no

    voltage, use a multimeter to check theconnection status between pins 3 and 4.

    If pins 3 and 4 are disconnected, thecontactor is faulty.

      When there is a rated control voltageon the control pin of the contactor, use

    a mulitmeter to check whether theoutput pin status of the contactor is

    normal. For example, if pins 1 and 2

    shown in Figure 5-1 have a ratedcontrol voltage, use a multimeter to

    check the connection status between pins 3 and 4. If pins 3 and 4 are

    connected, the contactor is faulty.

    Battery route

    (battery fuse

    or circuit

     breaker route)

     Normally open (NO) (When

    the contactor is powered off,

    the contactor is open.)

      When there is no voltage on the control

     pin of the contactor, use a mulitmeter

    to check whether the output pin of the

    contactor is in normal status. Forexample, if pins 1 and 2 shown in

    Figure 5-1 have no voltage, use amultimeter to check the connectionstatus between pins 3 and 4. If pins 3

    and 4 are connected, the contactor isfaulty.

      When there is a rated control voltage

    on the control pin of the contactor, usea mulitmeter to check whether theoutput pin status of the contactor is

    normal. For example, if pins 1 and 2

    shown in Figure 5-1 have a ratedcontrol voltage, use a multimeter tocheck the connection status between

     pins 3 and 4. If pins 3 and 4 are 

    disconnected, the contactor is faulty.

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    Figure 5-1 DC contactor

    Rectifier

    The rectifier is damaged if either of the following conditions is not met:

      The Run indicator of the rectifier is steady on and the Fault indicator is off when the

    rectifier does not communicate with the PMU and the input AC voltage is around 220 V.The rectifier outputs power normally.

      The PMU can perform control on the charge mode (boost charge or floating charge) and

    current for the rectifier when the rectifier communications cable is properly connectedand the rectifier communicates with the PMU normally.

    PMU

    If any of the following occurs, the PMU is faulty:

      The PMU breaks down or fails to start, or its LCD or keyboard fails.

      The PMU does not generate an alarm when a fault occurs in the system.

      The PMU generates an alarm (false alarm) when the system runs properly.

      Communication between the PMU and all subordinate equipment is interrupted.

      The PMU fails to control or monitor all the modules when these modules run properly

    and communications cables are connected properly.

      The PMU fails to monitor or control AC or DC distribution when AC/DC power is

    distributed normally and communications cables are connected properly.

      Parameters cannot be set or operating information cannot be viewed on the PMU.

    5.4 Component ReplacmentDescribes how to replace the main components of the power system.

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      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 PMU are hot-swappable.

      For more safety precautions, see Safety Information.

    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-insubrack, as shown in Figure 5-2.

    Step 3  Insert the rectifier into the corresponding slot in the plug-in subrack. Then, loosen the screwson 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 5-3.

    ----End

    Figure 5-2 Removing the old rectifier

    Figure 5-3 Installing the new rectifier

    Replacing the PMU

    To replace the PMU, perform the following steps:

    Step 1  Unscrew the PMU panel using a Phillips screwdriver.

    Step 2  Remove the old PMU.

    Step 3  Insert a new PMU.

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    Step 4  Tighten the screws on the handle.

    Step 5  Set parameters on the PMU panel.

    ----End

    Figure 5-4 Replacing the PMU

    Replacing the UIM

    To replace the UIM, perform the following steps:

    Step 1  Remove signal cables from the UIM.

    Step 2  Loosen the screws on the UIM panel using a Phillips screwdriver.

    Step 3  Pull the UIM outwards.

    Step 4  Insert the new UIM.

    Step 5  Tighten the screws on the handle.

    Step 6  Reinstall the signal cables.

    ----End

    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 andset 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 againto 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 sameway.

    Step 6  Set the circuit breaker to ON and connect power supply of this circuit breaker, as shown inFigure 5-7.

    ----End

    Figure 5-6 Removing the circuit breaker

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    Figure 5-7 Installing the circuit breaker

    Replacing a Fuse

    To replace a fuse, perform the following steps:

    Step 1  Disconnect the fuse loop.

    Step 2  Remove the damaged fuse using a fuse extracting unit, as shown in Figure 5-8. 

    Figure 5-8 Removing a fuse

    Step 3  Install a new fuse, as shown in Figure 5-9. 

    Figure 5-9 Installing a fuse

    Step 4  Connect the fuse loop.

    ----End

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    A Technical SpecificationsTable A-1 Technical specifications

    Category Item Specifications

    Environmental

    conditions

    Operating

    temperature

      Long-term operating temperature: 20ºC to +50ºC

    ( – 4ºF to +122ºF)

      Short-term operating temperature: 50 ºC – 55ºC

    (122 ºF – 131ºF)

    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

    humidity5% – 95% RH (non-condensing)

    Storage humidity 5% – 95% RH (non-condensing)

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

    (656.16 ft).

    AC input Input mode   TP48300B-X6X0: dual live wire (L1, L2, PE)

      TP48600B-X6X0: three-phase-four-line (L1, L2,

    L3, PE)

    Input voltage   176 V AC to 290 V AC (corresponding

    to the rated power of the rectifier)

      90 V AC to 175 V AC (corresponding to

    the derated output power of the rectifier)

    Input frequency 45 Hz to 66 Hz (50 Hz by default)

    Power factor ≥ 0.99

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    Category Item Specifications

    DC output Output voltage

    range – 43.2 V DC to – 57.6V DC

    Default outputvoltage

     – 53.5 V DC

    AC input

     protection

    AC input

    overvoltage protectionthreshold

    Overvoltage protection is performed when the

    single-phase AC input voltage exceeds the AC inputovervoltage protection threshold (300 V AC bydefault).

    AC input

    overvoltagerecoverythreshold

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

    resumes.

    AC inputundervoltage

     protection

    threshold

    Undervoltage protection is performed when thesingle-phase AC input voltage is below the AC input

    undervoltage protection threshold (85 V AC by

    default).

    AC input

    undervoltagerecovery

    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 Efficiency >91.5%( 35%~80% load)

    Output power 2900W (176 – 290 V AC)

    1200W (90 – 175 V AC)

    Output soft start At the moment when the rectifier is powered on, the

    output voltage rises slowly. The time for voltage riseis configurable.

    Overvoltage

     protectionVoltage range: 58.5 – 60.5 V DC

      If the external voltage is less than 63 V, therectifier is in the standby state. If overvoltage

    disappears, the rectifier output resumes.

      If the external voltage is greater than 63 V formore than 500 ms, the rectifier experiences a

    deadlock.

    Others Surge protection   Level C surge protection

      Standard surge discharge current: ±20 kA, 8/20µs

    Maximum surge discharge current: ±40 kA, 8/20 µs

    MTBF 500,000 hours, at a temperature of 25ºC (77ºF)

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    Category Item Specifications

    Structure Dimensions (H x

    W x D)

    1600 mm x 600 mm x 450 mm (62.99 in. x 23.62 in.

    x 17.72 in.)

    Weight(includingmodules)

    ≤ 110 kg (242.55 lb), excluding rectifiers

    Protection level IP20

    Installation Installed on a concrete floor or an ESD floor against

    the wall, with a slack of at least 100 mm (3.94 in.)

    Maintenance Operated and maintained from the front

    Installationscenario

    Standard 19-inch rack

    Table A-2 EMC specifications

    Item Specifications

    Electromagnetic

    interference(EMI)

    Conducted

    emission(CE)/Radiated

    emission (RE)

    In compliance with CISPR 22/EN 55022 class A

    Harmonic In compliance with IEC 61000-3-12

    Fluctuation and

     blinkingIn compliance with IEC 61000-3-11

    Electronic

    magnetic

    sensitivity(EMS)

    ESD Contact discharge 6 kV and air discharge 8 kV

    (criterion B)

    Contact discharge 8 kV and air discharge 15 kV(criterion R)

    Electrical fast

    transient (EFT)Signal port 1 kV and power port 2 kV (criterion B)

    Radiated

    susceptibility(RS)

    10 V/m (criterion A)

    Conducted

    susceptibility

    (CS)

    Signal port 10 V and power port 10 V (criterion A)

    SURGE Differential mode of the AC power port: ±2 kV

    (criterion B)

    Common mode of the AC power port: ± 4 kV(criterion B)

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    B LCD MenuFigure B-1 Menu hierarchy (to the secondary level) on the LCD screen

    Table B-1 Menu Table on the LCD screen

    MainMenu

    SecondMenu

    Third Menu Forth Menu FifthMenu

    DefaultValue

    Status Rectifiers Rectifiers ID ID - -

    Voltage -  -

    Current -  -

    Current limit -  - 

    Status -  - 

    Output power- 

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    MainMenu

    SecondMenu

    Third Menu Forth Menu FifthMenu

    DefaultValue

    Rated

    efficiency-  - 

    Input power -  - 

    Input current - -

    Rated current -  -

    Inner

    temperature-  -

    Active alarm Major alarm -  -  - 

    Common alarm -  -  - 

    History

    alarm-  -  -  - 

    Battery test

    result-  -  -  - 

    Version

    display-  -  -  - 

    Generator

    statusGenerator 1/2 -  - 

    Mainten

    ance

    Management

    mode-

     -

     -

     -

     

    Start -  -  -  - 

    Rectifier ID -  -  -  - 

    Settings System

    settingsAddress -  -  0

    Text -  -  -

    Communicationmode

    -  RS232

    Baud- 

    -  9600

    Date -  - 

    Time -  - 

    Battery 2 shunt -  -  Yes

    Display

    contrast-  -  3

    System type -  TP48300B or

    TP48600B

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    MainMenu

    SecondMenu

    Third Menu Forth Menu FifthMenu

    DefaultValue

    IP address -  -  192.168.0.1

    Subnet mask- 

    -  255.255.254.0

    Gateway -  -  10.70.199.1

    Server port -  -  31220

    Server IP

    address 1-  -  192.168.0.1

    Server IPaddress 2

    -  -  192.168.0.2

    Engineering

    settings

    Modify

    Password

    -   None

    Initial

     parameter-   No

    Rectifier

    sleep-   No

    Rectifier

    exchange

    sleep

    -  7days

    Rectifier

    Minimumnumber ON

    -  1pieces

    Best

    efficiency point

    -  70%

    Fast charge -   No

    Alarm

    settingsAlarm level Alarm - 

    Level - 

    Digital alarm DI No. - 

    Mode - 

    Set DI name - 

    Alarm control Audible

    alarm-  Yes

    Clear history

    alarm-   No

    Relay relate Alarm - 

    Relate relay- 

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    MainMenu

    SecondMenu

    Third Menu Forth Menu FifthMenu

    DefaultValue

    AC settings Over voltage -  -  280V

    Under voltage- 

    -  180V

    State measure -  -  Yes

    DC settings Over voltage -  -  58V

    Under voltage -  -  45V

    Battery

    settings

    Battery

    selectionBattery string -  1

    Capacitor 1 -  400AH

    Capacitor 2 -  0

    Install date - 2001-01-01

    LVD settings LLVD enable -  Yes

    BLVD

    enable-  Yes

    LLVD -  44V

    BLVD -  43V

    Charge Float 53.5V

    Boost 56.5V

    Cycle BCduration

    60days

    Current limit 0.10C10

    Battery test Auto test Autotest

    enable

    Discharge test

    Cycle 120days

    Test endvoltage

    1.9V

    Duration 10hours

    Testdelay

    14days

    Short test Test endvoltage

    45V

    Duration 60minutes

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    MainMenu

    SecondMenu

    Third Menu Forth Menu FifthMenu

    DefaultValue

    Temperature co

    efficiency

    Temp

    compensation basis

    -  Batt1

    Temperature

    compensation-  80mV/℃ 

    BHTD

    enable-   No

    BHTD

    temperature-  53℃ 

    Low

    temperature

    alarm

    -  0℃ 

    High

    temperaturealarm

    -  50℃ 

    Upper limit -  80℃ 

    Lower limit -  -20℃ 

    Ambient

    settingsUpper limit -  -  80℃ 

    Lower limit -  -  -20℃ 

    High alarm -  -  50℃ 

    Low alarm -  -  0℃ 

    Generator Generator

    enable-  -   No

    Output power -  -  12.5kW

    Dischargedepth

    -  -  30%

    Temperature

    OFF enable-  -  Yes

    Start

    temperature-  -  45℃ 

    OFF

    temperature-  -  29℃ 

    Air-condition Type -  -  Single-phase

    Power -  -  1.0 kW

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    C Acronyms and AbbreviationsA

    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

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    PMU Power Monitoring Unit

    S

    SELV Safety Extra-low Voltage

    T

    TCU Temperature Control Unit