TP48200A-D15A1 & H15A3 & H15A5 V300R001 Quick Installation Guide 06
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Transcript of TP48200A-D15A1 & H15A3 & H15A5 V300R001 Quick Installation Guide 06
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TP48200A-D15A1 & H15A3 & H15A5 V300R001
Quick Installation Guide
Issue 06
Date 2013-07-23
HUAWEI TECHNOLOGIES CO., LTD.
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Issue 06 (2013-07-23) Huawei Proprietary and Confidential
Copyright Huawei Technologies Co., Ltd.
i
Copyright Huawei Technologies Co., Ltd. 2013. All rights reserved.
No part of this document may be reproduced or transmitted in any form or by any means without prior
written consent of Huawei Technologies Co., Ltd.
Trademarks and Permissions
and other Huawei trademarks are trademarks of Huawei Technologies Co., Ltd.
All other trademarks and trade names mentioned in this document are the property of their respective
holders.
Notice
The purchased products, services and features are stipulated by the contract made between Huawei and
the customer. All or part of the products, services and features described in this document may not be
within the purchase scope or the usage scope. Unless otherwise specified in the contract, all statements,
information, and recommendations in this document are provided "AS IS" without warranties, guarantees or
representations of any kind, either express or implied.
The information in this document is subject to change without notice. Every effort has been made in the
preparation of this document to ensure accuracy of the contents, but all statements, information, and
recommendations in this document do not constitute a warranty of any kind, express or implied.
Huawei Technologies Co., Ltd.
Address: Huawei Industrial Base
Bantian, Longgang
Shenzhen 518129
People's Republic of China
Website: http://www.huawei.com
Email: [email protected]
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Issue 06 (2013-07-23) Huawei Proprietary and Confidential
Copyright Huawei Technologies Co., Ltd.
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About This Document
Purpose
This document describes the TP48200A-D15A1 & H15A3 & H15A5 in terms of its structure,
components, installation, and commissioning.
Intended Audience
This document is intended for:
Installation and commissioning engineers
Technical support engineers
Symbol Conventions
The symbols that may be found in this document are defined as follows.
Symbol Description
Indicates a hazard with a high level or medium level of risk
which, if not avoided, could result in death or serious injury.
Indicates a hazard with a low level of risk which, if not
avoided, could result in minor or moderate injury.
Indicates a potentially hazardous situation that, if not avoided,
could 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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Change History
Changes between document issues are cumulative. The latest document issue contains all the
changes made in earlier issues.
Issue 06 (2013-07-23)
Modified section 7.1.1 UIM02C.
Issue 05 (2013-04-28)
Optimized the content of the document, including standardizing the terminology and
improving the accuracy of the description.
Issue 04 (2013-02-28)
Add the installation dimensions for the cabinet installation holes.
Issue 03 (2013-01-09)
This issue is the third official release, which incorporates the following changes:
Chapter 6 Installing Components
Modify the picture of Install a temperature and humidity sensor.
Chapter 8 Powering On and Commissioning
Set battery fuse break alarm "Enable/Disable" status is added.
Issue 02 (2012-11-12)
This issue is the second official release, which incorporates the following changes:
Port description is modified.
Issue 01 (2012-07-28)
This issue is used for first office release.
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Contents
About This Document .................................................................................................................... ii
1 Safety Precautions ......................................................................................................................... 1
1.1 Health and Safety ............................................................................................................................................. 1
1.1.1 Overview ................................................................................................................................................. 1
1.1.2 Electrical Safety ...................................................................................................................................... 3
1.1.3 Inflammable Environment ...................................................................................................................... 4
1.1.4 Battery ..................................................................................................................................................... 4
1.1.5 Working at Heights ................................................................................................................................. 6
1.1.6 Using Ladders ......................................................................................................................................... 7
1.1.7 Mechanical Safety ................................................................................................................................... 7
1.1.8 Bundling Signal Cables ........................................................................................................................... 8
1.2 Equipment Safety ............................................................................................................................................. 9
1.2.1 Electricity Safety ..................................................................................................................................... 9
1.2.2 Electrostatic Discharge............................................................................................................................ 9
1.2.3 Laying Cables ....................................................................................................................................... 10
2 Installation Preparations ........................................................................................................... 11
2.1 Tools ............................................................................................................................................................... 11
2.2 Installation Clearance Requirements .............................................................................................................. 12
2.3 Prepare Cables ................................................................................................................................................ 12
3 Configuration ............................................................................................................................... 14
4 Installing the Cabinet ................................................................................................................. 18
5 Installing a PGND Cable ........................................................................................................... 21
6 Installing Components............................................................................................................... 22
6.1 Installing Rectifiers ........................................................................................................................................ 22
6.2 Installing a Smoke Sensor(Optional) ............................................................................................................. 23
6.2.1 Securing the Smoke Sensor ................................................................................................................... 23
6.2.2 Connecting the Smoke Sensor .............................................................................................................. 23
6.3 Installing a Temperature and Humidity Sensor(Optional) .............................................................................. 24
6.3.1 Securing the Temperature and Humidity Sensor ................................................................................... 24
6.3.2 Connecting the Temperature and Humidity Sensor ............................................................................... 24
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6.4 Installing a Water Sensor(Optional) ............................................................................................................... 25
6.4.1 Securing the Water Sensor .................................................................................................................... 25
6.4.2 Connecting the Water Sensor ................................................................................................................ 25
7 Installing Cables ......................................................................................................................... 27
7.1 Installing Signal Cables and Communication Cables ..................................................................................... 27
7.1.1 UIM02C ................................................................................................................................................ 27
7.1.2 Installing Dry Contacts and Boolean Values Signal Cables .................................................................. 29
7.1.3 Installing Sensor Cables ........................................................................................................................ 29
7.1.4 Installing Communications Cables ....................................................................................................... 30
7.2 Installing Power Cables .................................................................................................................................. 30
7.2.1 Installing DC Output Cables ................................................................................................................. 31
7.2.2 Installing Storage Batteries and Copper Bars ....................................................................................... 32
7.2.3 Installing AC Output Cables ................................................................................................................. 34
7.2.4 Installing AC Input Cables .................................................................................................................... 35
8 System Commissioning ............................................................................................................. 38
8.1 Installation Verification .................................................................................................................................. 38
8.2 Powering On and Commissioning .................................................................................................................. 38
8.2.1 Setting Parameters ................................................................................................................................ 38
8.3 Powering On................................................................................................................................................... 42
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Issue 06 (2013-07-23) Huawei Proprietary and Confidential
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1 Safety Precautions 1.1 Health and Safety
1.1.1 Overview
Introduction
This section describes the safety precautions you must take before installing or maintaining
Huawei equipment.
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.
The "NOTE", "CAUTION", and "WARNING" marks in other documents do not
represent all the safety instructions. They are only supplements to the safety instructions.
Installation and maintenance personnel must understand basic safety precautions to avoid
hazards.
When operating Huawei equipment, in addition to following the general precautions in
this document, follow the specific safety instructions given by Huawei.
Only trained and qualified personnel are allowed to install, operate, and maintain Huawei
equipment.
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.
General Requirements
To minimize risk of personal injury and damage to equipment, read and follow all the
precautions in this document before performing any installation or maintenance.
Ensure that the instructions provided in this document are followed completely. This section
also provides guidelines for selecting the measuring and testing devices.
Installation The device (or system) must be installed in an access-controlled location.
The device can be mounted only on concrete or non-combustible surfaces.
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The device must be fixed securely on the floor or to other immovable objects such as
walls and mounting racks before operation.
When installing the unit, always make the ground connection first and disconnect it at
the end.
Do not block the ventilation while the device is operating. Keep a minimum distance of 5
cm between the device and the wall or other objects that may block the ventilation.
Tighten the thumbscrews by using a tool after initial installation and subsequent access
to the panel.
Ground Do not damage the ground conductor or operate the device in the absence of a properly
installed ground conductor. Conduct the electrical inspection carefully.
The device (or system) must be connected permanently to the protection ground before
an operation. The cross-sectional area of the protective ground conductor must be at least
10 mm2.
Power Supply For AC-supplied models: The device applies to TN or TT power system.
For DC-supplied models: Reinforced insulation or double insulation must be provided to
isolate the DC source from the AC mains supply.
For DC-supplied model: The device applies to DC power source that complies with the
Safety Extra-Low Voltage (SELV) requirements in IEC 60950-1 based safety standards.
Prepared conductors are connected to the terminal block, and only the appropriate
AWG/Type of wire is secured with the lug terminals.
Human Safety Do not operate the device or cables during lightning strikes.
Remove the AC power connector when there is lightning. Do not use fixed terminals or
touch terminals or antenna connectors when there is lightning.
To avoid electric shock, do not connect safety extra-low voltage (SELV) circuits to
telecommunication network voltage (TNV) circuits.
Move or lift the chassis by holding its lower edge. Do not hold the handles on certain
modules such as power supply, fans, and boards because they cannot support the weight
of the device.
At least two persons are required to lift the chassis. When lifting it, keep your back
straight and move stably.
Do not wear jewelry or watches when you operate the device.
Operator Only qualified professional personnel are allowed to install, configure, operate, and
disassemble the device.
Only the personnel authenticated or authorized by Huawei are allowed to replace or
change the device of the parts of the device (including the software).
Any fault or error that might cause safety problems must be reported immediately to a
supervisor.
Only qualified personnel are allowed to remove or disable the safety facilities and to
troubleshoot and maintain the device.
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1.1.2 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.
During the installation of the AC power supply facility, follow the local safety
regulations. The personnel who install the AC facility must be qualified to perform high
voltage and AC operations.
Do not wear conductive articles, such as watches, hand chains, bracelets, and rings
during the operation.
When water is found in the rack or the rack is damp, switch off the power supply
immediately.
When the operation is performed in a damp environment, make sure that the device is
dry.
Non-standard and improper high voltage operations may result in fire and electric shock.
Therefore, you must abide by the local rules and regulations when bridging and wiring AC
cables. Only qualified personnel are allowed to perform high voltage and AC operations.
Before powering on a device, ground the device. Otherwise, personal injury or device damage
may be caused by high leakage current.
Tools
Dedicated tools must be used during high voltage and AC operations. Avoid using ordinary
tools.
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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.
1.1.3 Inflammable Environment
Operating the electrical device in an inflammable environment can be fatal.
Do not place the device in an environment that has inflammable and explosive air or gas. Do
not perform any operation in this environment.
1.1.4 Battery
Storage Battery
Before operating storage batteries, carefully read the safety precautions for battery handling
and connection.
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Improper handling of storage batteries causes hazards.
When operating storage batteries, avoid short circuit and overflow or leakage of the
electrolyte. Electrolyte overflow may damage the device. It will corrode metal parts and
circuit boards, and ultimately damage the device and cause short circuit of circuit boards.
Basic Precautions
Before installing and maintaining the battery, note the following:
Do not wear metal articles such as wristwatch, hand chain, bracelet, and ring.
Use special insulation tools.
Take care to protect your eyes when operating the device.
Wear rubber gloves and a protective coat in case of electrolyte overflow.
When handling a storage battery, ensure that its electrodes are upward. Leaning or
reversing the storage battery is prohibited.
Short Circuit
Battery short circuit may cause human injuries. Although the voltage of ordinary batteries is
low, the instantaneous high current caused by the short circuit releases a great deal of energy.
There is danger of explosion if the battery is incorrectly replaced. Therefore, replace the
battery only with the same or equivalent type recommended by the manufacturer.
Keep away metal objects, which may cause battery short circuit, from batteries. If metal
objects must be used, first disconnect the batteries in use before performing any other
operations.
Hazardous Gas
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Do not use unsealed lead acid storage batteries. Lead acid storage batteries must be placed
horizontally and stably to prevent the batteries from releasing flammable gas, which may
cause fire or erode the device.
Lead acid storage batteries in use emit flammable gas. Therefore, ventilation and
fireproofing measures must be taken at the sites where lead acid storage batteries are used.
Battery Temperature
If a battery overheats, the battery may be deformed or damaged, and the electrolyte may
overflow.
When the temperature of the battery is higher than 60 C, check the battery for electrolyte
overflow. If the electrolyte overflows, absorb and counteract the electrolyte immediately.
Battery Leakage
When the electrolyte overflows, absorb and counteract the electrolyte immediately.
When moving or handling a battery whose electrolyte leaks, note that the leaking electrolyte
may hurt human bodies. When you find the electrolyte leaks, use the following substances to
counteract and absorb the leaking electrolyte:
Sodium bicarbonate (baking soda): NaHCO3
Sodium carbonate (soda): Na2CO3
Select a substance to counteract and absorb the leaking electrolyte according to the
instructions of the battery manufacturer.
1.1.5 Working at Heights
Avoid object falling when you work at heights.
When working at heights, fulfill the following requirements:
Only trained personnel can work at heights.
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Prevent the devices and tools that you carry from falling down.
Take safety and protection measures, for example, wear a helm and safety belt.
Wear warm clothes when working at heights in a cold region.
Before working at heights, check that all the lifting facilities are in good condition.
1.1.6 Using Ladders
Checking a Ladder Before using a ladder, check whether the ladder is damaged. Only the ladder in good
condition can be used.
Before using a ladder, you should know the maximum weight capacity of the ladder.
Avoid overweighing the ladder.
Placing a Ladder
The recommended gradient of ladders is 75 degrees. You can measure the gradient of the
ladder with an angle square or your arms. When using a ladder, ensure that the wider feet of
the ladder are downward, or take protection measures for the ladder feet to prevent the ladder
from sliding. Ensure that the ladder is placed securely.
Climbing Up a Ladder
When climbing up a ladder, note the following:
Ensure that the center of gravity of your body does not deviate from the edges of the two
long sides.
To minimize the risk of falling, hold your balance on the ladder before any operation.
Do not climb higher than the fourth rung of the ladder (counted from up to down).
If you want to climb up a roof, ensure that the ladder top is at least one meter higher than
the roof.
1.1.7 Mechanical Safety
Drilling Holes
Do not drill the cabinet at will. Drilling holes without complying with the requirements affects
the electromagnetic shielding performance of the cabinet and damages the cables inside the
cabinet. In addition, if the scraps caused by drilling enter the cabinet, the printed circuit
boards (PCBs) may be short circuited.
Before you drill a hole in the cabinet, wear insulated gloves and remove the internal
cables from the cabinet.
Wear an eye protector when drilling holes. This is to prevent your eyes from being
injured by the splashing metal scraps.
Ensure that the scraps caused by drilling do not enter the cabinet.
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Drilling holes without complying with the requirements affects the electromagnetic
shielding performance of the cabinet.
After drilling, clean the metal scraps immediately.
Sharp Objects
Before you hold or carry a device, wear protective gloves to avoid getting injured by sharp
edges of the device.
Handling Fans
When handling fans, note the following:
When replacing a component, place the component, screws, and tools in a safe place.
Otherwise, if any of them fall into the operating fans, the fans may be damaged.
When replacing a component near fans, do not insert your fingers or boards into the
operating fans until the fans are switched off and stops running.
Lifting Heavy Objects
When heavy objects are being lifted, do not stand or walk under the cantilever or the lifted
object.
1.1.8 Bundling Signal Cables
Do not bundle signal cables with high current cables or high voltage cables.
Maintain a minimum space of 150 mm between adjacent ties.
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1.2 Equipment Safety
1.2.1 Electricity Safety
High Electrical Leakage
If the "high electrical leakage" tag is present on the power terminal of the device, you must
ground the device before powering it on.
1.2.2 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).
Figure 1-1 shows how to wear an ESD wrist strap.
Figure 1-1 Wearing an ESD wrist strap
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1.2.3 Laying Cables
When the temperature is very low, violent strike or vibration may damage the cable sheathing.
To ensure safety, comply with the following requirements:
Cables can be laid or installed only when the temperature is higher than 0 C.
Before laying cables which have been stored in a temperature lower than 0 C, move the
cables to an environment of the ambient temperature and store them at the ambient
temperature for at least 24 hours.
Handle cables with caution, especially at a low temperature. Do not drop the cables
directly from the vehicle.
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2 Installation Preparations 2.1 Tools
Table 2-1 shows the tools that must be obtained before installation.
Table 2-1 Tools
Combination
spanner
Marker pen
Rubber hammer
Phillips
screwdriver
Flathead
screwdriver
Socket spanner
Wire clippers
Hydraulic pliers
Torque spanner
Diagonal plier
Adjustable
spanner
Paper knife
Network cable
pliers
Sharp-nose pliers
Wire stripper
RJ-45.connect
or crimping
pliers
Power cable
cutting pliers
Power cable
crimping pliers
Crimping pliers
ESD-preventiv
e wrist strap
Percussion
drill
Drill bit
Clamp meter
Hot air dun
Steel tape
Vacuum cleaner
Multimeter
Antistatic gloves
Protective gloves
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2.2 Installation Clearance Requirements Figure 2-1 shows the installation clearance requirements.
Figure 2-1 Installation clearance requirements
2.3 Prepare Cables
Table 2-2 lists the specification of the system cables.
Table 2-2 The specification of the system cables
Cable Cable Diameter and Color
Signal cables to dry contacts,
Boolean values, and sensor ports Not provided
RS485, RS232 or Fast Ethernet
(FE) cable Not provided
DC Power cable to the primary
load Not provided
DC Power cable to the secondary
load Not provided
The PGND cable Cross-sectional area: 16 mm2 (0.02 in.2) Color: yellow green cable
AC input power cable single-phase: Cross-sectional area: 25 mm2 (0.04 in.
2 )
three-phase: Cross-sectional area: 16 mm2
(0.02 in.2
)
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Cable Cable Diameter and Color (recommended /Not provided)
Cut cables to a length suitable for the actual cable route, and then add OT terminals or cord
end terminals to each end of the cables, as shown in Figure 2-2, Figure 2-3.
Figure 2-2 Prepare OT terminals
Figure 2-3 Prepare cord end terminals.
The local cable colors prevail. The cable colors in the figure are for reference only.
Cables routed along the floor should be protected with protection tubes that comply with NFPA70
standards.
NOTE
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3 Configuration Specifications
Table 3-1 Specifications
Category Specifications
Dimensions (H x W x D) Cabinet: 1500 mm (59.06 in.) x 650 mm (25.59 in.) x 650
mm (25.59 in.)
Base: 100 mm (3.94 in.) x 650 mm (25.59 in.) x 650 mm
(25.59 in.)
Weight 120 kg (264.6 lb) (without rectifiers or storage batteries)
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Interior of the Cabinet
Figure 3-1 Interior of the TP48200A-D15A1
(1) Maintenance socket (2) AC input circuit breakers (3) Ground bar
(4) Cable hole (5) Storage battery circuit breakers (6) Load circuit breakers
(7) Site monitoring unit (SMU) (8) Space for rectifiers (9) Battery rack
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Figure 3-2 Interior of the TP48200A- H15A3
(1) Maintenance socket (2) AC input circuit breakers (3) Ground bar
(4) Cable hole (5) Storage battery circuit breakers (6) Load circuit breakers
(7) Site monitoring unit (SMU) (8) Space for rectifiers (9) Battery rack
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Figure 3-3 Interior of the TP48200A-H15A5
(1) Maintenance socket (2) AC input circuit breakers (3) Ground bar
(4) Cable hole (5) Storage battery circuit breakers (6) Load circuit breakers
(7) Site monitoring unit (SMU) (8) Space for rectifiers (9) Heater
(10) Battery rack
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4 Installing the Cabinet To install a cabinet, perform the following steps:
Step 1 Remove the cover of the packaging box and locate the marking-off template on the cover interior, as shown in Figure 4-1.
Figure 4-1 Marking-off template
Step 2 Fix the installation hole, as shown in Figure 4-2.
Figure 4-2 Fixing the installation hole
(1) Marker (2) Marking-off template (3) Installation hole
(4) Concrete pad
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Step 3 Drill holes and install expansion sleeves, as shown in Figure 4-3.
Figure 4-3 Drilling holes and install expansion sleeves
(1) Expansion bolt(M12) (2) Spring washer (3) Flat washer (4) Expansion sleeve
(5) Concrete pad
Step 4 Remove the cabinet from the pallet, as shown in Figure 4-4.
Figure 4-4 Removing the cabinet
(1) Pallet
The configuration prevail, the pallet in the figure is for reference only
Step 5 Secure the cabinet on the concrete pad, as shown in Figure 4-5.
NOTE
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Figure 4-5 Securing the cabinet
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5 Installing a PGND Cable The PGND cable is used to connect PGND screws on the cabinet and the ground busbar
outside the cabinet to ensure proper grounding of the cabinet.
Install the PGND cable as shown in Figure 5-1.
Figure 5-1 Installing the PGND cable
(1) Ground bar for the site (2) Ground bar for the cabinet
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6 Installing Components 6.1 Installing Rectifiers
The rated output current of each rectifier is 50 A. The number of rectifiers depends on actual
capacity requirements.as shown in Figure 6-1 and Figure 6-2.
Figure 6-1 Removing the filler panel
Figure 6-2 Installing rectifiers
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6.2 Installing a Smoke Sensor(Optional)
6.2.1 Securing the Smoke Sensor
Secure the smoke sensor base to the cabinet top using two M4 mm screws and fasten the
smoke sensor to the base based on the direction shown in the smoke sensor, as shown in
Figure 6-3.
Figure 6-3 Installing a Smoke Sensor
6.2.2 Connecting the Smoke Sensor
Connect one end of the smoke sensor signal cable to the "SMOKE" port on the UIM02C and
the other end to the port on the smoke sensor, as shown in Figure 6-4.
Figure 6-4 Connect the smoke sensor
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6.3 Installing a Temperature and Humidity Sensor(Optional)
6.3.1 Securing the Temperature and Humidity Sensor
Secure the temperature and humidity sensor base to the cabinet top, as shown in Figure 6-5.
Step 1 Secure the temperature and humidity sensor base to the cabinet top using two M4 mm screws.
Step 2 Connect and secure signal cables of the temperature and humidity sensor to the cabinet base, as shown in the following figure
Step 3 Install the top cover of the temperature and humidity sensor to the cabinet base.
Step 4 The final installation view is as follows.
Figure 6-5 Installing a temperature and humidity sensor
----End
6.3.2 Connecting the Temperature and Humidity Sensor
Connect one end of the temperature and humidity sensor signal cable to the "TEM-HUM"
port on the UIM02C and the other end to the port on the temperature and humidity sensor, as
shown in Figure 6-6.
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Figure 6-6 Connecting the temperature and humidity sensor
6.4 Installing a Water Sensor(Optional)
6.4.1 Securing the Water Sensor
Secure the water sensor to the cabinet bottom using cable ties, as shown in Figure 6-7.
Figure 6-7 Installing a Water Sensor
6.4.2 Connecting the Water Sensor
Connect one end of the water sensor signal cable to the "WATER" port on the UIM02C, as
shown in Figure 6-8
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Figure 6-8 Connecting the water sensor
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7 Installing Cables 7.1 Installing Signal Cables and Communication Cables
7.1.1 UIM02C
All ports in this manual are protected by a security mechanism.
The user interface module (UIM02C) supports eight dry contact outputs, nine Boolean value
inputs (including general DI1-6, smoke, water, door status), three analog signals inputs
(ambient temperature, humidity, and battery temperature).
Appearance
Figure 7-1 UIM02C panel
Port Description
Table 7-1 UIM02C port description
Port Type Silkscreen Description Default Mode
Sensor
ports
TEM_HUM Temperature and humidity
sensor
-
WATER Water sensor -
TEMP1 Connected to environment
temperature sensor and used
for fan speed adjustment
-
NOTE
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Port Type Silkscreen Description Default Mode
TEMP2 Reserved -
GATE Door status sensor -
SMOKE Smoke sensor -
BTEMP Battery temperature sensor -
Boolean
value input
ports
DIN1 Boolean value input 1 Close: alarm
Open: normal
DIN2 Boolean value input 2 Close: alarm
Open: normal
DIN3 Boolean value input 3 Close: alarm
Open: normal
DIN4 Boolean value input 4 Close: alarm
Open: normal
DIN5 Boolean value input 5 Open: alarm
Close: normal
DIN6 Boolean value input 6 Close: alarm
Open: normal
Dry
contact
output
ports
Default
mode
(Close:
alarm;
Open:
normal)
can be
modified
as
required.
ALM1 AC power failure alarm Close: alarm
Open: normal
ALM2 DC undervoltage alarm or DC
overvoltage alarm
Close: alarm
Open: normal
ALM3 Rectifier faults, Protect and No
Response alarm Close: alarm
Open: normal
ALM4 SPD failure alarm Close: alarm
Open: normal
ALM5 Fuse burn-out alarm Close: alarm
Open: normal
ALM6 Battery or environment
temperature alarms
Close: alarm
Open: normal
ALM7 Door alarms Close: alarm
Open: normal
ALM8 Heater faults alarms and Fan
faults alarms
Close: alarm
Open: normal
Communic
ation Port
COM RS485
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7.1.2 Installing Dry Contacts and Boolean Values Signal Cables
Install dry contacts and Boolean values signal cables, as shown in Figure 7-2.
Figure 7-2 Installing dry contacts and Boolean values signal cables
(1) White Contact plate (2) Dry contact
7.1.3 Installing Sensor Cables
Connect the sensor cable to the corresponding ports on UIM02C. The pin definitions of the
sensor ports refer to Figure 7-3 and Table 7-2.
Figure 7-3 Pins of sensor ports
Table 7-2 Pin Definition
Silk Screen Pin Pin definition
WATER 1 12 V
2 WATER
3 GND
4 -
TEMHUM 1 12 V
2 ENV_TEMP
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3 12 V
4 ENV_HUM
TEMP1 1 TEMP1
2 GND
TEMP2 1 TEMP2
2 GND
GATE 1 DIN7+
2 JTD7
SMOKE 1 12 V
2 Smoke
BTEMP 1 Btemp1
2 12 V
7.1.4 Installing Communications Cables
When in-band monitoring is required, connect the RS485/RS232 port on the SMU to the
communications equipment over a cable with an RJ45 connector, when out-of-band
monitoring is required, connect the FE port on the SMU to the communications equipment
over a cable with an RJ45 connector, as shown in Figure 7-4.
Figure 7-4 Port on the SMU
7.2 Installing Power Cables
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Before installing power cables, ensure that all circuit breakers to the OFF position.
Do not bind the ground cable, AC power cables, DC power cales, signal cables, and
communications cable together.
Open the panel of power distribution unit, as shown in Figure 7-5.
Figure 7-5 Open the panel of power distribution unit
7.2.1 Installing DC Output Cables
Install DC output cables, as shown in Figure 7-6
CAUTION
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Figure 7-6 Installing DC output cables
7.2.2 Installing Storage Batteries and Copper Bars
Before installing storage batteries, ensure that the circuit breakers of the storage batteries
to the OFF position.
During the installation, avoid short circuits or reverse connections between the positive
and negative poles of the storage batteries. All the tools used, such as a screwdriver, must
be insulated to prevent the storage batteries from being burned and to ensure personal
safety.
Step 1 Installing the storage batteries, as shown in Figure 7-7.
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Figure 7-7 Installing two layer storage batteries
Install the copper bar, as shown in Figure 7-8.
Figure 7-8 Installing the copper bar
Step 2 Installing the power cables for storage batteries, as show in Figure 7-9.
Connect negative power cables and then positive power cables for the batteries.
CAUTION
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Figure 7-9 Installing the power cables for storage batteries
----End
7.2.3 Installing AC Output Cables
Install AC output cables, as shown in Figure 7-10.
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Figure 7-10 Installing AC output cables
7.2.4 Installing AC Input Cables
Install three-phase AC input cables refer to Figure 7-11.
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Figure 7-11 Installing three-phase AC input cables
Install single-phase AC input cables, remove the copper bar from the cable bridge on the side
panel and connect the copper bar to the AC input circuit breaker to short-circuit the breaker,
as shown in Figure 7-12.
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Figure 7-12 Installing single-phase AC input cables
Recover the panel of power distribution unit, as shown in Figure 7-13.
Figure 7-13 Recover the panel of power distribution unit.
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8 System Commissioning 8.1 Installation Verification
After installation, verify that:
Step 1 The cabinet is installed properly and the cables are connected properly. (Cables fastened by screws are not easily removable.)
Step 2 Cables are arranged neatly and bound properly by using cable ties.
Step 3 The storage battery is connected properly.
Step 4 Check for short circuits between the live wires, between the live wire and the ground cable, between the live wire and the neutral wire, between the RTN+ and the 48 V busbar. Rectify short circuits before powering on the power system.
----End
8.2 Powering On and Commissioning
8.2.1 Setting Parameters
Figure 8-1 SMU panel
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(1) Running status indicator (2) Minor alarm indicator (3) Major alarm indicator
(4) Liquid crystal display
(LCD)
(5) FE (6) Locking latch
(7) Four buttons (8) USB (Reserved) (9) RS485/RS232
(10) Hold hands
If the Run indicator (green) on the SMU panel is blinking and the LCD is on, the SMU is powered on
successfully.
Button Description
Button description of SMU panel as shown in Table 8-1
Table 8-1 Button description of SMU panel
Button Name Description
or upordown Allows you to view menu items and set the value of a menu item by pressing or .
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 the
settings of a submenu item.
Remark:
After a menu is displayed, the standby screen is displayed and the LCD screen becomes dark if you do not press any button within 5 minutes.
You need to log in again if you do not press any button with 8 minutes.
The preset username is admin and the preset password is 001.
Setting Parameters
Step 1 Measure the voltage across the input ports of AC input circuit breakers. The voltage must range from 200 V to 240 V. The rated voltage is 220 V. If not, ask professionals to rectify the
fault.
Step 2 Switch the AC input circuit breaker to the ON position, measure the voltage between L wiring and N wiring terminal. The voltage must range from 200 V to 240 V. The rated voltage is 220
V.
Step 3 Set the NetEco Main IP, NetEco Bak IP, NetEco Port, LUI Language and Set Time Zone according to actual conditions.
NOTE
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Step 4 Set the Qty of Battery, Rated Capacity, Set Date and Set Time according to actual conditions. (Always set Qty of Battery to 1 and set Rated Capacity to the total capacity of all
battery strings.)
Step 5 Set the IP Address, Subnet Mask and Default Gateway according to actual conditions.
Table 8-2 Parameter settings
Main Menu
Second-Level Menu
Third-Level Menu
Fourth-Level Menu
Default Value
Settings Comm Para NetEco Main IP - -
NetEco Bak IP - -
NetEco Port - 31220
Host Comm Addr 0
Comm Baudrate 9600
System Para LUI Language - ENGLISH
Set Time Zone - GMT +08:00
Quick
Settings
Qty of Battery - - 1
Rated Capacity - - 150Ah
Set Date - - -
Set Time - - -
IP Address - - 192.168.0.10
Subnet Mask - - 255.255.255.0
Default
Gateway
- - 192.168.0.1
Step 6 Set battery fuse break alarm "Enable/Disable" status.
----End
Table 8-3 Battery fuse break alarm "Enable/Disable" status
Main Menu
Second-Level Menu
Third-Level Menu
Fourth-Level Menu Set Value
Settings Alarm Setting Site Summary Battery Fuse1 Break Enable battery
fuse blown alarms
for the branches
with batteries, and
disable battery
fuse blown alarms
for the branches
Battery Fuse2 Break
Battery Fuse3 Break
Battery Fuse4 Break
Battery Fuse5 Break
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Main Menu
Second-Level Menu
Third-Level Menu
Fourth-Level Menu Set Value
Battery Fuse6 Break without batteries.
Battery Fuse7 Break
Battery Fuse8 Break
Battery Fuse9 Break
Battery Fuse10 Break
Battery Fuse11 Break
Battery Fuse12 Break
You can set parameters to modify the default mode of the Boolean value input ports and the dry contact
output ports, as shown in Table 8-4.
Table 8-4 Modify the default mode of the Boolean value input ports and the dry contact output ports
Main Menu Second-Level Menu Third-Level Menu Default Value Settings Site Summary DI1Alarm Close
DI2 Alarm Close
DI3 Alarm Close
DI4 Alarm Close
DI5 Alarm Open
DI6 Alarm Close
DO1 Alarm Act Close
DO2 Alarm Act Close
DO3 Alarm Act Close
DO4 Alarm Act Close
DO5 Alarm Act Close
DO6 Alarm Act Close
DO7 Alarm Act Close
DO8 Alarm Act Close
You can set parameters to modify the related relay of the alarm. For example, set Battery1 Lost to DO8,
as shown in Table 8-5.
NOTE
NOTE
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Table 8-5 Set Battery1 Lost to DO8
Main Menu
Second-Level Menu
Third-Level Menu
Fourth-Level Menu
Default Value
Set Value
Settings Alarm Setting Batt Summ Battery1 Lost None DO8
8.3 Powering On
To avoid damaging storage batteries, switch the battery circuit breaker to the ON positions
only after correctly setting the storage battery parameters on the SMU.
Switch the AC input circuit breakers to the OFF positions.
Step 1 Reinstall the removed copper bar or cable of the storage battery.
Step 2 Switch the storage battery circuit breakers in the PDU to the ON positions.
Step 3 Switch the AC input circuit breakers to the ON positions. Check whether the voltage between the RTN+ busbar and DC output terminal are the same as the storage battery voltage and the
voltage displayed on the monitoring unit. If not, ask professionals to rectify the fault.
Step 4 Switch the LLVD and BLVD branches to the ON positions, measure whether the voltage between RTN+ and the DC output terminal. The voltage must range from 42 V to 58 V
(without load). The rated voltage is 53.5 V. Check whether the loads work normally. If the
loads work abnormally, rectify the fault according to the relevant user guides.
Step 5 Switch the circuit breakers for the Maintenance socket, AC input, battery route, BLVD switch, and LLVD switch as required.
Step 6 Check whether the element management system (EMS) can receive the information from the power system. If not, check whether the IP address is set correctly.
Step 7 Observe the operation of the power system for 15 minutes. If no alarms (except for door alarm) are generated, and current/voltage parameters of the storage battery and loads are set properly,
then re-install the cover of the distribution unit, lock the door to the cabinet, give the key of
the cabinet door to the customer, and clean the site before leaving.
To make the system run properly, flip the switch to the Normal position.
To power on the battery forcibly, flip the switch to the BAT On position.
CAUTION
CAUTION
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----End
About This Document1 Safety Precautions1.1 Health and Safety1.1.1 Overview1.1.2 Electrical Safety1.1.3 Inflammable Environment1.1.4 Battery1.1.5 Working at Heights1.1.6 Using Ladders1.1.7 Mechanical Safety1.1.8 Bundling Signal Cables
1.2 Equipment Safety1.2.1 Electricity Safety1.2.2 Electrostatic Discharge1.2.3 Laying Cables
2 Installation Preparations2.1 Tools2.2 Installation Clearance Requirements2.3 Prepare Cables
3 ConfigurationSpecificationsInterior of the Cabinet
4 Installing the CabinetStep 1 Remove the cover of the packaging box and locate the marking-off template on the cover interior, as shown in Figure 4-1.Step 2 Fix the installation hole, as shown in Figure 4-2.Step 3 Drill holes and install expansion sleeves, as shown in Figure 4-3.Step 4 Remove the cabinet from the pallet, as shown in Figure 4-4.Step 5 Secure the cabinet on the concrete pad, as shown in Figure 4-5.
5 Installing a PGND Cable6 Installing Components6.1 Installing Rectifiers6.2 Installing a Smoke Sensor(Optional)6.2.1 Securing the Smoke Sensor6.2.2 Connecting the Smoke Sensor
6.3 Installing a Temperature and Humidity Sensor(Optional)6.3.1 Securing the Temperature and Humidity SensorStep 1 Secure the temperature and humidity sensor base to the cabinet top using two M4 mm screws.Step 2 Connect and secure signal cables of the temperature and humidity sensor to the cabinet base, as shown in the following figureStep 3 Install the top cover of the temperature and humidity sensor to the cabinet base.Step 4 The final installation view is as follows.
6.3.2 Connecting the Temperature and Humidity Sensor
6.4 Installing a Water Sensor(Optional)6.4.1 Securing the Water Sensor6.4.2 Connecting the Water Sensor
7 Installing Cables7.1 Installing Signal Cables and Communication Cables7.1.1 UIM02CAppearancePort Description
7.1.2 Installing Dry Contacts and Boolean Values Signal Cables7.1.3 Installing Sensor Cables7.1.4 Installing Communications CablesWhen in-band monitoring is required, connect the RS485/RS232 port on the SMU to the communications equipment over a cable with an RJ45 connector, when out-of-band monitoring is required, connect the FE port on the SMU to the communications equipment o...Figure 7-4 Port on the SMU
7.2 Installing Power Cables7.2.1 Installing DC Output Cables7.2.2 Installing Storage Batteries and Copper BarsStep 1 Installing the storage batteries, as shown in Figure 7-7.Install the copper bar, as shown in Figure 7-8.Step 2 Installing the power cables for storage batteries, as show in Figure 7-9.
7.2.3 Installing AC Output Cables7.2.4 Installing AC Input Cables
8 System Commissioning8.1 Installation VerificationStep 1 The cabinet is installed properly and the cables are connected properly. (Cables fastened by screws are not easily removable.)Step 2 Cables are arranged neatly and bound properly by using cable ties.Step 3 The storage battery is connected properly.Step 4 Check for short circuits between the live wires, between the live wire and the ground cable, between the live wire and the neutral wire, between the RTN+ and the 48 V busbar. Rectify short circuits before powering on the power system.
8.2 Powering On and Commissioning8.2.1 Setting ParametersButton DescriptionSetting ParametersStep 1 Measure the voltage across the input ports of AC input circuit breakers. The voltage must range from 200 V to 240 V. The rated voltage is 220 V. If not, ask professionals to rectify the fault.Step 2 Switch the AC input circuit breaker to the ON position, measure the voltage between L wiring and N wiring terminal. The voltage must range from 200 V to 240 V. The rated voltage is 220 V.Step 3 Set the NetEco Main IP, NetEco Bak IP, NetEco Port, LUI Language and Set Time Zone according to actual conditions.Step 4 Set the Qty of Battery, Rated Capacity, Set Date and Set Time according to actual conditions. (Always set Qty of Battery to 1 and set Rated Capacity to the total capacity of all battery strings.)Step 5 Set the IP Address, Subnet Mask and Default Gateway according to actual conditions.Step 6 Set battery fuse break alarm "Enable/Disable" status.
8.3 Powering OnSwitch the AC input circuit breakers to the OFF positions.Step 1 Reinstall the removed copper bar or cable of the storage battery.Step 2 Switch the storage battery circuit breakers in the PDU to the ON positions.Step 3 Switch the AC input circuit breakers to the ON positions. Check whether the voltage between the RTN+ busbar and DC output terminal are the same as the storage battery voltage and the voltage displayed on the monitoring unit. If not, ask profess...Step 4 Switch the LLVD and BLVD branches to the ON positions, measure whether the voltage between RTN+ and the DC output terminal. The voltage must range from 42 V to 58 V (without load). The rated voltage is 53.5 V. Check whether the loads work norma...Step 5 Switch the circuit breakers for the Maintenance socket, AC input, battery route, BLVD switch, and LLVD switch as required.Step 6 Check whether the element management system (EMS) can receive the information from the power system. If not, check whether the IP address is set correctly.Step 7 Observe the operation of the power system for 15 minutes. If no alarms (except for door alarm) are generated, and current/voltage parameters of the storage battery and loads are set properly, then re-install the cover of the distribution unit, ...