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OceanStor S2600 Storage System
V100R001
Installation Guide
Issue 02
Date 2011-07-30
HUAWEI TECHNOLOGIES CO., LTD.
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Copyright Huawei Technologies Co., Ltd. 2011. 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 the 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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About This Document
Intended Audience
This document describes hardware installation of the OceanStor S2600 series storage system.
This document covers the following parts: precautions and preparations, installation flow,
cabling, installation check, power-on, and status indicator check.
This document is intended for:
l Technical support engineers
l Management and maintenance engineers
Update History
Updates between document issues are cumulative. Therefore, the latest document issue contains
all updates made in previous issues.
Updates in Issue 02 (2011-07-30)
The second commercial release.
Some errors found in tests are corrected.
Updates in Issue 01 (2011-07-04)
Initial commercial release.
OceanStor S2600 Storage System
Installation Guide About This Document
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Contents
About This Document.....................................................................................................................ii
1 Safety Precautions.........................................................................................................................1
1.1 Overview............................................................................................................................................................2
1.2 Electric Safety.....................................................................................................................................................31.3 Battery................................................................................................................................................................4
1.4 Laser...................................................................................................................................................................6
1.5 Working at Heights.............................................................................................................................................7
1.6 Miscellaneous.....................................................................................................................................................7
2 Device Introduction......................................................................................................................9
2.1 Cabinet..............................................................................................................................................................10
2.2 Controller Enclosure.........................................................................................................................................11
2.3 Disk Enclosure..................................................................................................................................................15
2.4 Switch...............................................................................................................................................................18
3 Installation Flow..........................................................................................................................19
4 Before You Start...........................................................................................................................20
4.1 Documents, Tools, and Meters.........................................................................................................................21
4.1.1 Documents...............................................................................................................................................21
4.1.2 Tools and Meters.....................................................................................................................................21
4.2 Installation Environment Checklist..................................................................................................................23
4.3 Unpacking and Checking..................................................................................................................................25
4.3.1 Unpacking the Package...........................................................................................................................25
4.3.2 Checking the Goods.................................................................................................................................26
4.4 ESD Preventive Measures................................................................................................................................27
5 Installing the Cabinet.................................................................................................................31
6 Installing the Devices.................................................................................................................32
6.1 Removing Filler Panels....................................................................................................................................34
6.2 Locating Device Installation Positions.............................................................................................................35
6.3 Installing Guide Rails.......................................................................................................................................38
6.4 Installing the Controller Enclosure...................................................................................................................42
6.5 Installing Disk Enclosures................................................................................................................................43
6.6 Installing Filler Panels......................................................................................................................................45
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7 Laying Grounding Cables and Power Cables........................................................................47
7.1 Introduction to Grounding Cables and Power Cables......................................................................................48
7.2 Principles of Laying Grounding Cables and Power cables..............................................................................48
7.3 Laying Grounding Cables.................................................................................................................................50
7.4 Laying Power Cables Inside the Cabinet..........................................................................................................51
7.4.1 Overview.................................................................................................................................................51
7.4.2 Principles of Connecting the Power Supply............................................................................................52
7.4.3 Laying Power Cables...............................................................................................................................52
8 Laying SignalCables..................................................................................................................57
8.1 Introduction to Signal Cables...........................................................................................................................58
8.2 Principlesof Laying Signal Cables..................................................................................................................58
8.3 Laying Signal Cables........................................................................................................................................59
8.3.1 Laying Optical Fibers..............................................................................................................................59
8.3.2 Laying Network Cables...........................................................................................................................63
8.3.3 Laying SAS Cables..................................................................................................................................67
8.3.4 Laying mini SAS Cables.........................................................................................................................68
8.3.5 Connecting the MGNT Serial Port Cable................................................................................................73
9 Checking the Hardware Installation.......................................................................................75
9.1 Checking the Device Installation......................................................................................................................76
9.2 Checking the Laying of Grounding Cables and Power Cables........................................................................76
9.3 Checking the Laying of Signal Cables.............................................................................................................77
10 Powering Onand Checking....................................................................................................8010.1 PoweringOn the Devices...............................................................................................................................81
10.2 Checking the Status Indicators on the Controller Enclosure..........................................................................83
10.3 Checkingthe Status Indicators on Disk Enclosures.......................................................................................86
11 Installing and Configuring Software....................................................................................90
11.1 Installingthe ISM...........................................................................................................................................91
11.2 Modifying the Password of the Administrator...............................................................................................92
11.3 Modifying the IP Address of the Management Network Port........................................................................93
11.4 Importing a License........................................................................................................................................93
11.5 Installing theUltraPath...................................................................................................................................94
11.6 Installing theHostAgent.................................................................................................................................94
A Requirements for the Device Running Environment.........................................................96
A.1 Equipment Room Environment.......................................................................................................................98
A.2 Equipment Room Layout.................................................................................................................................99
A.3 Equipment Room Building..............................................................................................................................99
A.4 Equipment Room Cleanliness........................................................................................................................100
A.5 Temperature and Humidity............................................................................................................................101
A.6 Corrosive Gas Control...................................................................................................................................102
A.7 Electromagnetic Requirements......................................................................................................................102
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A.8 ESD Prevention.............................................................................................................................................103
A.9 Lightning Protection......................................................................................................................................103
A.10 Power Supply...............................................................................................................................................104
A.11 Equipment Room Lighting..........................................................................................................................105
A.12 System Protection........................................................................................................................................105
B Grounding Specifications.......................................................................................................109
B.1 General Grounding Specifications.................................................................................................................110
B.2 Equipment Room Building Grounding Specifications..................................................................................110
B.3 Device Grounding Specifications..................................................................................................................110
B.4 Grounding Specifications for Office Power..................................................................................................111
B.5 Signal Cable Grounding Specifications.........................................................................................................112
B.6 Grounding Cable Handling Specifications....................................................................................................112
C Assembling Cables and Connectors.....................................................................................114C.1 Assembling Ring Terminals and Power Cables.............................................................................................115
C.2 Assembling Ordinary Network Cables..........................................................................................................118
C.3 Assembling Shielded Network Cables...........................................................................................................120
D How to Obtain Help................................................................................................................124
D.1 Preparations for Contacting Huawei..............................................................................................................125
D.1.1 Collecting Troubleshooting Information..............................................................................................125
D.1.2 Making Debugging Preparations..........................................................................................................125
D.2 How to Use the Document.............................................................................................................................125
D.3 How to Obtain Help from Website................................................................................................................125
D.4 Ways to Contact Huawei...............................................................................................................................126
E Glossary......................................................................................................................................127
F Acronyms and Abbreviations.................................................................................................129
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1Safety PrecautionsAbout This Chapter
This chapter describes safety precautions against personal injuries and device damage during
installation of the S2600.
1.1 Overview
This section describes the safety precautions to be followed during installation of the S2600.
1.2 Electric Safety
This section describes the safety precautions related to the high voltage, thunderstorm, large
creepage, power cable,fuse, and ESD.
1.3 Battery
When installing and maintaining the S2600, follow the safety precautions related to the battery
to ensure the safety of the human body and the devices.
1.4 Laser
This section describes the precautions related to the laser during handling of optical fibers.
1.5 Working at Heights
When installing and maintaining the S2600 at heights, follow the safety precautions related to
working at heights to ensure the safety of the human body and the devices.
1.6 Miscellaneous
This section describes safety precautions related to inserting a board and bundling cables at a
low temperature.
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1.1 Overview
This section describes the safety precautions to be followed during installation of the S2600.
General
Before performing any operation, read the operation instructions and safety precautions in this
document to minimize the risk of accidents.
The Note, Caution, Warning, and Dangeritems in the document do not cover all the safety
precautions that must be followed. They are only supplements to the safety precautions for all
operations.
Local Safety Regulations and StandardsWhen performing any operation, obey the local safety regulations. The safety precautions
provided in this document are only supplements to the local safety regulations.
Basic Requirements on Installation Engineers
The basic requirements on installation engineers are as follows:
l Only the personnel who have completed trainings are allowed to install, operate, and
maintain the devices.
l Only the qualified professional personnel are allowed to remove the security facilities and
overhaul the devices.l Only the personnel certificated or authorized by the provider are allowed to replace or
modify the devices or components (including software).
l The operators should report to the person in charge the faults or errors that may result in
security accidents.
Grounding Requirements
The devices must be grounded according to the following requirements:
l Ground the devices immediately after they are installed into the cabinet and remove the
grounding cables when all the other cables are removed.
l Do not damage the grounding conductor.
l The installed devices must be grounded. Before handling the devices, check that they are
grounded reliably.
Precautions Against Personal Injuries
l Do not handle the devices or cables on a thunderstorm day.
l To avoid an electric shock, do not connect an ultralow voltage circuit terminal to a
communication network voltage circuit terminal.
l
To avoid damaging your eyes by the laser, do not stare at the optical fiber outlet with unaidedeyes.
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l To avoid an electric shock, wear an electrostatic discharge (ESD) wrist strap, ESD gloves,
and ESD clothes, and take off electrically conductive objects such as ornaments and
watches before handling the devices.
l When a fire accident occurs, run out of the building or the device installation site
immediately, and press the fire alarm or phone the fire department. Do not re-enter thebuilding that is in combustion.
Device Security
l Before handling the devices, fix them reliably on the floor, walls, or installation racks.
l When the system is running, ensure that the ventilation openings are not blocked.
l When installing the filler panels, fasten the screws with a Philips screwdriver.
l After the devices are installed, clean the empty packages out of the installation site.
1.2 Electric SafetyThis section describes the safety precautions related to the high voltage, thunderstorm, large
creepage, power cable, fuse, and ESD.
High Voltage
DANGER
l Contact with the high voltage power supply of the device may cause death.
l Improper operations under a high voltage may result in a fire accident or an electric shock.
Thunderstorm
This is only applicable to wireless stations or devices with an antenna feeder.
DANGEROperations under high voltage or AC, or operations in a steel tower or a mast on a thunderstorm
day are prohibited. Otherwise, death may be caused.
Large Creepage
WARNING
Ground the device before connecting the power supply; otherwise, personal injuries or device
damages may be caused.
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Before connecting an AC power supply terminal beside which a label reading "large creepage"
is affixed, ground the protection grounding terminal on the device chassis to avoid an electric
shock on the human body caused by the creepage.
Power Cable
DANGER
Do not lay or remove the live power cable. When the live power cable core and the conductor
contact, the electric arc or spark may be generated and cause a fire accident or eye injuries.
l Before laying or removing the power cable, switch off the power supply.
l Before laying the power cable, confirm that the power cable is labeled correctly.
Fuse
CAUTION
For the safe device running, replace the blown fuse with a new fuse of the same type and
specifications.
ESD
CAUTION
The ESD from the human body may damage the electrostatic sensitive elements such as the
large-scale integrated circuit (LIC) on a board.
The following activities may generate a static electromagnetic field:
l Human body moving
l Clothes friction
l Friction between shoes and the ground
l Holding ordinary plastic in hand
Before touching the device, or hand-holding circuit boards or ASICs, wear a grounded ESD
wrist strap.
1.3 Battery
When installing and maintaining the S2600, follow the safety precautions related to the battery
to ensure the safety of the human body and the devices.
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CAUTION
Before handling the battery, read the safety precautions and the procedure for connecting the
batteries. Electrolyte overflow may damage the devices by, for example, corroding metal parts
and circuit boards or causing short circuit of the circuit boards.
General Operations
Before installing and maintaining the battery, note the following:
l Do not wear metallic articles, such as a watch, bracelet, and ring.
l Use special insulation tools.
l Use eye protection devices.
l Wear rubber gloves. Wear an apron in case of electrolyte overflow.
l Always keep the electrode upright when handling the battery.
Short Circuit
CAUTION
The short circuit of the battery may cause injuries. Though the battery voltage is low, the high
transient current generated by the short circuit releases a great deal of power.
Keep metal objects that may cause battery short circuit away from the batteries. If the metalobjects need to be used, disconnect the batteries in use and then perform any operations.
Harmful Gas
CAUTION
Do not use unsealed lead-acid battery, because the gas emitted from the battery may result in
inflammation or device corrosion. Place the battery horizontally and then fix it properly.
The battery in use may emit flammable gas. Therefore, store the battery in a place with goodventilation and take precautions against fire.
High Temperature
CAUTION
High temperature may result in distortion, damage, and electrolyte overflow of the battery.
When the temperature of the battery exceeds 60C, check whether the electrolyte overflows. Ifthe electrolyte overflows, clean it immediately.
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Acid Liquid
CAUTIONIn the case of acid overflow, absorb and neutralize the liquid immediately.
When moving or replacing a leaky battery, observe the damage caused by the acid. When acid
spill is found, use the following materials to absorb and neutralize it:
l Sodium bicarbonate (baking soda): NaHCO3
l Sodium carbonate (soda): Na2CO3
When using antacids, strictly follow the guide provided by the battery supplier.
1.4 LaserThis section describes the precautions related to the laser during handling of optical fibers.
WARNING
When handling optical fibers, do not keep unaided eyes close to or gazing at the optical fiber
outlet.
The outlets of laser transceivers and transmitters used in the optical transmission system, related
test tools, optical fibers, and connectors transmit invisible laser that has a very high power
density. Therefore, staring at the outlet with unaided eyes may cause eye injuries.
Staring at an optical fiber outlet or a damaged optical fiber with unaided eyes at a distance longer
than 150 mm will not cause eye injuries. Eye injuries, however, may be caused if you use an
optical tool such as microscope, magnifying glass, or eye loupe.
Laser Safety Guidelines
To avoid laser injuries, read the following guidelines:
l All the operations must be performed by the authorized personnel who have completed
approved trainings.
l Wear a pair of goggles when you are handling laser devices or optical fibers.
l Before disconnecting the optical fiber connector, switch off the optical source.
l Do not stare at the bare optical fiber outlet or open connector if you are not sure whether
the optical source is switched off.
l Measure the optical power with an optical power meter to ensure that the optical source is
switched off.
l Before opening the front door of an optical transmission system, ensure that you are not
exposed to laser radiation.
l
Do not look into the optical connector or optical fiber outlet with an optical tool such asmicroscope, magnifying glass, or eye loupe.
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Handling Optical Fibers
When handling optical fibers, abide by the following requirements:
l Only the trained personnel are allowed to cut and splice optical fibers.
l Before cutting or splicing an optical fiber, ensure that the optical fiber is disconnected from
the optical source. After disconnecting the optical fiber, use optical fiber tubes to protect
all the optical connectors.
1.5 Working at Heights
When installing and maintaining the S2600 at heights, follow the safety precautions related to
working at heights to ensure the safety of the human body and the devices.
WARNING
When working at heights, prevent objects from falling down.
When working at heights, comply with the following requirements:
l Only trained personnel are allowed to work at heights.
l The operating machines and tools should be carried and handled safely to prevent them
from falling.
l Safety measures such as wearing a helmet and a safety belt should be taken.
l In cold areas, wear warm clothes before performing any high-altitude operation.
l Before working at heights, ensure that the appliances used for lifting objects function well.
1.6 Miscellaneous
This section describes safety precautions related to inserting a board and bundling cables at a
low temperature.
Inserting a Board
When inserting a board, note the following:
l Wear an ESD wrist strap and ESD gloves before inserting the board.
l Insert the board along the slot guide.
l To avoid short-circuit or scratches, do not contact the board with other boards.
l To avoid distorting pins on the backplane, insert the board gently.
Bundling Cables
NOTE
Signal cables must be bundled separately from the large-current or high-voltage cables at spacing of at
least 30 mm.
The plastic skin of power cables may crack due to the ultralow temperature, fierce impact, orintense vibration. Thus, to ensure safety, abide by the following requirements:
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l All cables must be laid at a temperature above zero.
l Before laying the cables that are stored at a temperature below zero, move them to a place
at room temperature and store them there for more than 24 hours.
l Move the cables gently especially when carrying them at a low temperature. Improper
operations such as directly pushing the cables down from the truck are prohibited.
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2Device IntroductionAbout This Chapter
The devices that are used during the installation include the cabinet, controller enclosure, disk
enclosures, and switch.
2.1 Cabinet
This section describes the cabinet in which the S2600 is installed.
2.2 Controller Enclosure
This section describes the appearance, structure, front view, rear view, dimensions, and weight
of the S2600 controller enclosure.
2.3 Disk Enclosure
This section describes the appearance, structure, front view, rear view, and dimensions of the
D120S disk enclosure.
2.4 Switch
The Ethernet switch or FC switch is required for the S2600 based on the switched networking.
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2.1 Cabinet
This section describes the cabinet in which the S2600 is installed.
The storage device can be installed into a 19-inch high and 800 mm deep standard cabinet. In
this document, the N68E-22 AC cabinet of Huawei Technologies, Co., Ltd. is used as an
example. Figure 2-1shows the appearance of the assembly N68E-22 AC cabinet.
Figure 2-1Front view of the assembly N68E-22 AC cabinet
External Dimensions of the Assembly N68E-22 AC Cabinet
Table 2-1lists the external dimensions of the assembly N68E-22 cabinet.
Table 2-1External dimensions of the assembly N68E-22 cabinet
Height Width Depth
2200 mm 600 mm 1000 mm
Internal Headroom of the Assembly N68E-22 AC Cabinet
Table 2-2lists the internal headroom of the assembly N68E-22 cabinet.
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Table 2-2Internal headroom of the assembly N68E-22 cabinet
Height Width Depth
46 U (1 U = 44.45 mm) 19 inches (1 inch = 25.4 mm) 1000 mm
2.2 Controller Enclosure
This section describes the appearance, structure, front view, rear view, dimensions, and weight
of the S2600 controller enclosure.
The S2600 controller enclosure is divided into the following four types according to the
configuration of different host ports:
l S2600i controller enclosure (with iSCSI host ports)
l S2600S controller enclosure (with SAS host ports)l S2600F controller enclosure (with FC host ports)
l S2600C controller enclosure (with FC+iSCSI host ports)
The front view, rear view, dimensions, and weight of the S2600 controller enclosure are shown
as follows.
Appearance of the S2600 Controller Enclosure
Figure 2-2shows the appearance of the S2600 controller enclosure.
Figure 2-2Appearance of the S2600 controller enclosure
Structure of the S2600 Controller Enclosure
The S2600 controller enclosure has a modular design and comprises the following parts:
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l System enclosure
l Hard disk module
l Cover panel
l Fan module
l Power entry module (PEM)
Figure 2-3shows the structure of the S2600 controller enclosure.
Figure 2-3Structure of the S2600 controller enclosure
1 System enclosure 2 Disk module
3 Controller module 4 PEM
5 Fan module
Front View of the S2600 Controller EnclosureAll S2600 controller enclosures share the same front view, as shown in Figure 2-4.
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Figure 2-4Front view of the S2600 controller enclosure
1 Controller enclosure start/alarm
indicator
2 Controller enclosure power indicator
3 Disk module 4 Disk handle
5 Disk running indicator 6 Disk alarm/locating indicator
Rear View of the S2600 Controller EnclosureThis section uses the S2600i controller enclosure configured with AC PEMs as an example to
describe the rear view of the controller enclosure, as shown in Figure 2-5.
Figure 2-5Rear view of the S2600i controller enclosure
1 PEM spring leaf 2 Power socket
3 PEM running/alarm indicator 4 PEM
5 PEM handle 6 Fan module spring leaf
7 Fan running/alarm indicator 8 Fan module handle
9 Fan module 10 Controller B (secondary controller)
11 MGNT serial port 12 Uninterrupted power supply (UPS) serial port
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13 mini SAS expander port 14 Link indicator of the mini SAS expander port
15 Controller enclosure alarm indicator 16 Port module
17 Management network port 18 Controller spring leaf
19 Controller A (primary controller) 20 Link indicator of the iSCSI host porta
21 Active indicator of the iSCSI host portb 22 Controller power indicator
23 Mute button of the buzzer 24 iSCSI host port
25 Reset button 26 Link indicator of the management network
port
27 Active indicator of the management network
port
a: For the FC host port, it is the 2Glink indicator.
b: For the FC host port, it is the 4Glink indicator.
NOTE
The difference among the four types of S2600 controller enclosures lies in the host port modules, but other
parts of the S2600 controller enclosures keep the same. For details on the rear view of each type of the
S2600 controller enclosure, see the OceanStor S2600 Storage System Hardware Description.
Dimensions of the S2600 Controller Enclosure
The S2600 controller enclosure that is 86.1 mm high is installed in a 2 U space. Table 2-3lists
the dimensions of the S2600 controller enclosure.
Table 2-3Dimensions of the S2600 controller enclosure
Depth Width Height
536 mm 446 mm 86.1 mm
Weight of the S2600 Controller Enclosure
Table 2-4lists the weight of the S2600 controller enclosure.
Table 2-4Weight of the S2600 controller enclosure
Name Weight
S2600 controller
enclosureMaximum a Emptyb Freight c
27.7 kg 7.7 kg 30.0 kg
a: weight of the S2600 controller enclosure in full configuration
b: weight of the S2600 controller enclosure without any components
c: sum of the maximum weight of the S2600 controller enclosure and the weight of its auxiliary
materials
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Table 2-5lists the unit weight of the components of the S2600 controller enclosure.
Table 2-5Unit weight of the components of the S2600 controller enclosure
Component Weight
Controller 2.0 kg
SAS disk 0.9 kg
SATA disk 0.8 kg
Fan module 1.0 kg
PEM 1.8 kg
BBU 0.29 kg
2.3 Disk Enclosure
This section describes the appearance, structure, front view, rear view, and dimensions of the
D120S disk enclosure.
Appearance of the D120S Disk Enclosure
The S2600 storage system is configured with D120S disk enclosures. Each D120S disk enclosure
can hold 12 SAS and/or SATA disks. Figure 2-6shows the appearance of the D120S disk
enclosure.
Figure 2-6Appearance of the D120S disk enclosure
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Structure of the D120S Disk Enclosure
The D120S disk enclosure has a modular design and comprises the following parts:
l One system enclosure
l Disk modules
l Two PEMs
l Two fan modules
l One or two expander modules
Figure 2-7shows the structure of the D120S disk enclosure.
Figure 2-7Structure of the D120S disk enclosure
1 System enclosure 2 Disk module
3 Expander module 4 PEM
5 Fan module
Front View of the D120S Disk Enclosure
Figure 2-8shows the front view of the D120S disk enclosure.
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Figure 2-8Front view of the D120S disk enclosure
1 Controller enclosure start/alarm
indicator
2 Controller enclosure power indicator
3 Disk module 4 Disk handle
5 Disk running indicator 6 Disk alarm/locating indicator
Rear View of the D120SDisk Enclosure
Figure 2-9shows the rear view of the D120S disk enclosure.
Figure 2-9Rear view of the D120S disk enclosure
1 Power socket 2 PEM
3 PEM handle 4 Fan module spring leaf
5 Fan running/alarm indicator 6 Fan module handle
7 Fan module 8 PEM spring leaf
9 PEM running/alarm indicator 10 EXP port link indicator
11 PRI port link indicator 12 Spring leaf of the expander module
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13 Enclosure ID indicator 14 EXP expander port
15 Expander module power indicator 16 Expander module alarm indicator
17 PRI expander port 18 Reset button
19 Debug serial port
Dimensions of the D120S Disk Enclosure
The D120S disk enclosure that is 86.1 mm is installed in a 2 U space. Table 2-6lists the
dimensions of the D120S disk enclosure.
Table 2-6Dimensions of the D120S disk enclosure
Depth Width Height
536 mm 446 mm 86.1 mm
2.4 Switch
The Ethernet switch or FC switch is required for the S2600 based on the switched networking.
l An Ethernet switch is required when the iSCSI host ports are connected to the application
server based on switched networking or when the management network port is connected
to the maintenance terminal based on switched networking.
l An FC switch is required when the FC host ports are connected to the application server
based on switched networking.
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3Installation FlowThe installation flow gives you a panoramic view of the S2600 installation.
Following the installation flow can bring you convenience for installing the S2600.
Figure 3-1shows the field installation flow of the S2600.
Figure 3-1Installation flow of the S2600
Start
Installing the devices into
the cabinet
Laying device cables
End
Installing the cabinet
Checking the hardware
installation
Powering on devices and
checking status indicators
Before you start
Installing and configuring
software
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4Before You StartAbout This Chapter
This chapter describes what you need to prepare before you start the installation.
4.1 Documents, Tools, and Meters
The documents, tools, and meters can help you to install the S2600 safely and correctly.
4.2 Installation Environment Checklist
To ensure proper installation and running of the S2600, check the installation environment.
4.3 Unpacking and Checking
Before the installation, unpack the S2600 and check that all the required devices and components
are intact andready for use.
4.4 ESD Preventive Measures
Before installing the cabinet and the S2600, you need to understand ESD precautions and take
ESD preventive measures.
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4.1 Documents, Tools, and Meters
The documents, tools, and meters can help you to install the S2600 safely and correctly.
4.1.1 Documents
The technical construction documents offer you practical references to proper installation.
Before installing the S2600, ensure that the following technical construction documents are
ready for use:
l Contracted agreements, configuration manual, equipment room design material, and
detailed engineering drawings, prepared by the customer
l OceanStor S2600 Storage System Installation Guide, prepared by Huawei
l OceanStor S2600 Storage System Quick Installation Guide, prepared by Huawei.
4.1.2 Tools and Meters
Proper use of the tools and meters ensures the quick and safe installation of the S2600.
Before installing the S2600, ensure that the required tools and meters are ready for use.
Table 4-1and lists the required tools.
Table 4-1Tools
Name Illustration Description
Philips screwdriver Used to fasten small screws
and bolts, instead of nuts. The
Philips screwdriver has a
cross-shaped head and
provides a small fastening
force moment.
Flathead screwdriver Used to fasten small screws
and bolts, instead of nuts. The
flathead screwdriver has a
line-shaped head and
provides a small fastening
force moment.
Diagonal pliers Used to cut insulation tubes
and cable ties.
Crimp pliers Used to crimp the connectors
of network cables.
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Name Illustration Description
Utility knife Used to cut paper or straps.
Captive nut mount bar Used to install and remove
captive nuts.
ESD clothes Used to prevent the ESD
damage when you touch or
operate a device or
component.
ESD gloves Used to prevent the ESDdamage when you touch or
operate a device or
component.
ESD wrist strap with a
metallic clip
Used to prevent the ESD
damage when you touch or
operate a device or
component.
ESD wrist strap with a plug Used to prevent the ESD
when you touch or operate a
device or component.
Installation template Used to specify the positions
of the S2600 controller
enclosure and disk
enclosures, and of the captive
nuts and bolts to fix theseenclosures into the cabinet.
Table 4-2lists the required meters.
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Table 4-2Meters
Name Graphical Presentation Description
Multimeter Used to measure the
insulation of a cabinet,connection of a cable, and
electric performance
specifications of a device,
such as voltage, current, and
resistance.
Network cable tester Used to test the connectivity
of the network cables.
4.2 Installation Environment Checklist
To ensure proper installation and running of the S2600, check the installation environment.
Table 4-3lists the check items of and requirements for the installation environment.
Table 4-3Check items of and requirements for the installation environment
No. Item Requirements
1 Site
selection
The site of the equipment room must be free from high temperature,
heavy dust, harmful gas, dangerous goods (objects that easily catch
fire or explode), electromagnetic interference (from nearby large-
sized radar station, broadcast transmitting station, or transformer
station), unstable electric voltage, large vibration, or strong noise.
Therefore, during the engineering design, consider factors such ashydrology, geography, earthquake, electric power, and transportation
conditions according to the technical requirements for
communication network planning and communication devices.
2 Civil
construction
l The equipment room must be big enough for device installation
and expansion.
l The floor must meet the bearing requirements.
l The wiring troughs, ladders, and holes are ready.
l The decoration is complete.
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No. Item Requirements
3 Air
conditioner
If the temperature in the room exceeds 35C, install air conditioners
(which can automatically restart after power-off). Do not let the air
conditioners blow directly toward the devices.
4 Moisture-
proof
measures
If the relative humidity is higher than 70%, add a dehumidifier such
as an air conditioner with the dehumidification function or a dedicated
dehumidifier. Ensure that the equipment room is protected from
moisture and water seepage.
5 Heating For an environment where the average daily temperature is lower than
5C for more than 90 days a year, heating devices are required. For
an environment where the average temperature is lower than 5C a
year for 60 to 90 days, heating devices are recommended.
6 Ventilation
and heatdissipation
l To ensure sound ventilation, the cabinet must be at least 100 cm
distant away from the walls and keep a space of at least 120 cm inthe front and rear sides.
l To keep a convective air flow between the cabinet and the
equipment room, no enclosed space is allowed in the cabinet.
l An 1 U space must be left above and below each device.
7 Dust-proof
measures
For the equipment room near dust sources (such as coal mines,
country roads, or farmland), use double-layer aluminum alloy
windows for proper sealing and a fireproof anti-theft door. Separate
the devices from the door with a partition board to keep the dust out.
8 Lightning
protection
The equipment room must be provided with lightning conductors such
as lightning rods or lightning belts. The lightning conductors share
the grounding bars with the grounding cables in the equipment room.
9 AC voltage The AC power of the equipment room must range from 200 V to 240
V. The AC distribution switches and AC power cables are properly
installed.
10 AC power
grounding
Do not connect the neutral line of a power cable to the protection
grounding bar of any communication devices in the equipment room.
It is recommended to set leading-out terminals for AC safety ground
in the equipment room for the connection to devices.
11 AClightning
protection
The AC power system of the equipment room must be equipped witha lightning arrestor with the nominal discharging current no less than
20 kA. The arrestor must be grounded properly.
In addition, ensure that the following special requirements for the installation site are met:
l The goods transportation passages (elevators and corridors) allow the pass of the cabinet.
l Before installation, submit the qualification certificate of the installation company to the
property management entity in charge of the installation site as required.
l
Confirm the delivery time and installation time in advance (for example, from 8:00 a.m. to6:00 p.m.).
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CAUTION
During transportation, relocation, or installation of the S2600, avoid a collision with other objects
such as doors, walls, or shelves. Do not touch the uncoated metal surface of any unit with dirtyESD gloves.
4.3 Unpacking and Checking
Before the installation, unpack the S2600 and check that all the required devices and components
are intact and ready for use.
4.3.1 Unpacking the Package
Before installing the S2600, unpack the package in which the devices are placed.
Prerequisite
Before unpacking the package, prepare the utility knife.
Context
CAUTION
When carrying the devices, avoid collision against the doors, walls, or shelves and do not touchthe unpainted surfaces of the devices and components with dirty ESD gloves.
Procedure
Step 1 Check the package. If the package is heavily damaged or soaked. If the device is rusted, stopunpacking it, check out the causes, and fill in the Goods Feedback Sheet.
Step 2 Cut the straps with the utility knife.
Step 3 Cut the adhesive tapes with the utility knife.
Step 4 Open the package and take out the devices and accessories such as grounding cables, signalcables, and screws, as shown in Figure 4-1.
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Figure 4-1Exploded view of the package
1. CD-ROMs and instruction manuals 2. Cables
3. Packing materials 4. S2600 controller enclosure or D120S disk enclosure
----End
4.3.2 Checking the GoodsBefore installing the devices, check that the components and cables meet device installation
requirements.
Procedure
Step 1 Check that the packing materials of the components and cables are not damaged.
Step 2 Check the device type and quantity according to thePacking List.
Step 3 Check each device according to thePacking List. If there is a mismatch in the number ofpackages, if the cargo is damaged, or if the consignment is wrong, sign the Unpacking Memo.
The project supervisor should also fill in the Cargo Inspection Feedback Formand report the
problem to the local Huawei representative office within three days.
Step 4 Store the unpacked devices in a room if the product does not match the contents of thePackingList. Take photographs of the storage site, the rusty or corroded product, and the case or package
material. Archive the photographs and store the empty case and materials.
Step 5 Inspect the devices in other packages.
Step 6 Sign thePacking Listby the project supervisor and the customer's representative.
----End
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Step 3 Wear the ESD wrist strap.
1. Stretch your hand through the ESD wrist strap.
2. Fasten the latch and make the wrist strap completely contact your skin.NOTE
After this step, go to Step 3.3if you wear the ESD wrist strap with a plug, or go to Step 3.4if you
wear the ESD wrist strap with a metallic clip.
3. Insert the plug into the ESD jack of the cabinet, as shown in Figure 4-4.
Figure 4-4Inserting the plug into the ESD jack of the cabinet
4. Clip the cabinet with the metallic clip, as shown in Figure 4-5.
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Figure 4-5Clipping the cabinet with the metallic clip
TIP
For the convenience of your operation, you can choose to wear the ESD wrist strap or the ESD gloves:
When handling devices near the cabinet, wear the ESD wrist strap; when handling devices away from
the cabinet, wear the ESD gloves.
----End
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5Installing the CabinetThis chapter describes how to install the cabinet that is used to hold the devices.
Context
If the cabinet has been installed in the equipment room, skip this procedure; otherwise, install
the cabinet according to related cabinet installation guide.
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6Installing the DevicesAbout This Chapter
This chapter describes how to install the controller enclosure, disk enclosures, and filler panels
into the cabinet.
Prerequisite
Before installing the devices into the cabinet, ensure that you have taken ESD preventive
measures. For details on ESD preventive measures, see 4.4 ESD Preventive Measures.
Before installing the devices into the cabinet, prepare the following tools:
l Philips screwdriver
l Flathead screwdriver
l Diagonal pliers
l Captive nut mount bar
l ESD clothes
l ESD gloves
l ESD wrist strap
l Installation template
Context
NOTE
For sound ventilation and convenient cabling, reserve a 1 U space between devices.
6.1 Removing Filler Panels
If your cabinet is covered with filler panels, remove them off before installing devices.
Otherwise, skip this procedure.
6.2 Locating Device Installation Positions
Before installing the devices, locate the device installation positions.
6.3 Installing Guide Rails
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Guide rails are used to fix the devices such as the controller enclosure and disk enclosures into
the cabinet. After specifying the installation position of the controller enclosure, install guide
rails into the cabinet.
6.4 Installing the Controller Enclosure
After the guide rails are installed, place the controller enclosure into the cabinet.
6.5 Installing Disk Enclosures
After the controller enclosure is installed, install the disk enclosures.
6.6 Installing Filler Panels
The empty slots in the cabinet must be covered with filler panels to reduce electromagnetic
interference (EMI) and keep dust out.
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Figure 6-3Device positions in the cabinet
Step 2 Locating the installation position of each device by counting the 1 U mark lines on both front
channels of the cabinet, as shown in Figure 6-4.
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NOTE
If the front and rear channels on your cabinet contain no 1 U mark line, draw 1 U mark lines on them for
the convenience of hardware installation (three square holes occupy an 1 U space).
Figure 6-4Locating the installation position of each device
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----End
6.3 Installing Guide RailsGuide rails are used to fix the devices such as the controller enclosure and disk enclosures into
the cabinet. After specifying the installation position of the controller enclosure, install guide
rails into the cabinet.
Prerequisite
Before installing guide rails, prepare the following tools:
l Philips screwdriver
l Installation template
NOTE
Each controller enclosure or disk enclosure requires a pair of L guide rails or adjustable guide rails. To
decide the number of guide rails, check the number of controller enclosure and disk enclosures to be
installed.
Procedure
Step 1 Hang the installation template on the cabinet with the left and right hooks, as shown in Figure6-5.
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Figure 6-5Hanging the installation template on the cabinet
Step 2 Install the L guide rail into the cabinet, as shown in Figure 6-6.
1. Take an L guide rail and align it with the 1 U mark line on the front channel of the cabinet,
as shown in Step 1 of Figure 6-6.
2. Fix the L guide rail into the cabinet with M4 screws, as shown in Step 2 of Figure 6-6.
Figure 6-6Installing the L guide rail into the cabinet
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NOTE
When installing the L guide rail, ensure that its front and rear sides are kept level.
3. Repeat Step 2.1and Step 2.2to install the other L guide rail on the opposite side.
NOTE
When installing the L guide rail on the opposite side, ensure that it is kept level with the installed L
guide rail.
4. Repeat Step 2.1and Step 2.3to install other L guide rails required for the devices to be
installed.
NOTE
If you use L guide rails, skip Step 3.
Step 3 Install the adjustable guide rail into the cabinet, as shown in Figure 6-7.
1. Align the lower edge of the adjustable guide rail with the mark line on the front channel,
stretch the adjustable guide rail toward its two ends and insert the positioning pins of the
guide rail into the panes of the front and rear channels, as shown in Step 1 of Figure 6-7.
2. Fix a 2 U latch bracket onto the front channel with an M6 screw (which is installed into the
installation hole below the front positioning pin), and fix the adjustable guide rail onto the
rear channel with two M6 screws (the two M6 screws are installed into the second and
fourth installation holes on the rear of the guide rail), as shown in Step 2 of Figure 6-7.
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Figure 6-7Installing the adjustable guide rail
3. Repeat Step 3.1to Step 3.2to install the adjustable guide rail on the opposite side.
NOTE
When installing the adjustable guide rail on the opposite side, align it with the installed adjustable
guide rail.
4. Repeat Step 3.1to Step 3.3to install other adjustable guide rails required for the devices
to be installed.
Step 4 Check that the guide rails are installed levelly and the screws are fixed properly.
----End
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6.4 Installing the Controller Enclosure
After the guide rails are installed, place the controller enclosure into the cabinet.
Prerequisite
Before installing the controller enclosure into the cabinet, prepare the following tools and
materials:
l Philips screwdriver
l M6 screws
Context
WARNING
l To avoid human injuries, it is recommended to arrange two persons to carry the controller
enclosure that is fully configured.
l The devices must be installed onto the guide rails. To avoid device damage, don not pile up
the device directly.
Procedure
Step 1 Slide the controller enclosure into the cabinet, as shown in Step 1 in Figure 6-8.
Step 2 Fix the controller enclosure in the cabinet with M6 screws, as shown in Step 2 in Figure 6-8.
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Context
WARNING
To avoid personal injuries, it is recommended to arrange two persons to carry the disk enclosure
that is fully configured.
Procedure
Step 1 Slide the controller enclosure into the cabinet, as shown in Step 1 in Figure 6-9.
Step 2 Fix the controller enclosure in the cabinet with M6 screws, as shown in Step 2 in Figure 6-9.
Figure 6-9Installing the disk enclosure into the cabinet
Step 3 Check that the disk enclosure sits properly on the guide rails.
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Step 4 Repeat Step 1to Step 3to install the other disk enclosures.
----End
6.6 Installing Filler PanelsThe empty slots in the cabinet must be covered with filler panels to reduce electromagnetic
interference (EMI) and keep dust out.
Prerequisite
Before installing the filler panels, ensure that all the devices are installed into the cabinet and
prepare the following tools and materials:
l Philips screwdriver
l M6 screws
Procedure
Step 1 Install a filler panel onto the cabinet with M6 screws, as shown in Figure 6-10.
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Figure 6-10Installing a filler panel onto the cabinet
Step 2 Install other filler panels onto the cabinet.
Step 3 Check that all required filler panels are installed.
----End
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7Laying Grounding Cables and Power CablesAbout This Chapter
This chapter describes how to lay grounding cables and power cables according to related
principles after all the devices and filler panels are installed into the cabinet.
7.1 Introduction to Grounding Cables and Power Cables
This section describes the properties of the grounding cables and power cables.
7.2 Principles of Laying Grounding Cables and Power cables
Grounding cables and power cables need to be laid according to certain principles.
7.3 Laying Grounding Cables
The devices inside the cabinet need to be grounded with grounding cables for safe running.
7.4 Laying Power Cables Inside the Cabinet
After the devices are grounded, lay the power cables inside the cabinet.
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l The power cables laid in the cable trough do not need to be bundled and must be kept within
the cable trough, but they must be straight without any crossing.
l When the bundled power cables bend, the bend radius must be at least trifold the cable
diameter to avoid breaking the inner core of the cables caused by an excessive stress on the
bend part.l To ensure the bundling strength, do not tie several cable ties together to bundle power
cables.
l The spacing between cable ties on the bundled cables should be kept even and three to four
times the diameter of a cable.
l After bundling the power cables, trim the cable ties and leave no cusp at the joints.
Figure 7-1shows the status of correctly bundled power cables.
Figure 7-1Status of correctly bundled power cables
1. The power cables at the bend cannot be
bundled with cable ties.
2. Cable ties 3. Cusp 4. Trim the cusp off.
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7.3 Laying Grounding Cables
The devices inside the cabinet need to be grounded with grounding cables for safe running.
Prerequisite
Before laying grounding cables, preparing the following tools and materials:
l Philips screwdriver
l Grounding cables
Context
NOTE
The grounding cable of the S2600 has a larger round clip and a smaller round clip. The smaller round clipis fixed to the grounding terminal of the S2600 and the larger round clip is fixed to the cabinet.
Procedure
Step 1 Unpack and take out a grounding cable.
Step 2 Remove the grounding screw from the S2600 controller enclosure with the Philips screwdriver,as shown in Step 1 of Figure 7-2.
Step 3 Place the smaller grounding clip onto the S2600 controller enclosure, as shown in Step 2 ofFigure 7-2.
Step 4 Fix the smaller grounding clip with the grounding screw, as shown in Step 3 of Figure 7-2.
Figure 7-2Laying a grounding cable
Step 5 Remove the grounding screw from the cabinet with the Philips screwdriver.
NOTE
Before connecting the grounding cable to the grounding terminal on the cabinet, check whether the
grounding terminal is covered by insulation paint. If the grounding terminal is covered by insulation paint,
scrape the paint off.
Step 6 Place the larger grounding clip onto the cabinet.
Step 7 Fix the larger grounding clip with a grounding screw.
Step 8 Check that the grounding cable is fixed properly, as shown in Figure 7-3.
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Figure 7-3Status of the connected grounding cable
Step 9 Repeat Step 1to Step 8to lay the grounding cables for the disk enclosures.
----End
7.4 Laying Power Cables Inside the Cabinet
After the devices are grounded, lay the power cables inside the cabinet.
7.4.1 Overview
This section describes the power sockets on the AC controller enclosure and AC disk enclosures
and the DC power distribution box on the DC controller enclosure and DC disk enclosures.
The S2600 can be configured with AC power modules or DC power distribution panels.
Figure 7-4shows the power sockets on the AC controller enclosure.
Figure 7-4Power sockets on the AC controller enclosure
Figure 7-5shows the power sockets on the AC disk enclosure.
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Figure 7-5Power sockets on the AC disk enclosure
Figure 7-6shows the DC power distribution box on the DC controller enclosure and DC disk
enclosures.
Figure 7-6DC power distribution box
NOTE
Connect the OT terminal of the black cable to the RTN (+) terminal, the OT terminal of the blue cable to
the NEG (-) terminal, and the yellow-green grounding cable to the grounding terminal.
7.4.2 Principles of Connecting the Power Supply
All the devices connect to the power supply according to certain principles.
NOTE
To avoid unexpected power-off of the storage device due to failures of a single power module, the electric
current of the circuit breakers of the external power supplies to which the storage device is connected must
comply with required specifications. The required specifications of the electric current of the circuit
breakers are:
l 6A (for AC power supplies)
l 10A (for DC power supplies)
The principles of connecting all the devices to the power supply are as follows:
l All power cables are laid on the same side in the rear of the cabinet.
l Connect each device to its proximate power cable.
l After a power cable is connected, mark the power cable out with a label to indicate the
information about this cable.
7.4.3 Laying Power Cables
This section describes how to connect the controller enclosures and disk enclosures to the powersupply directly with power cables.
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If the S2600 is configured with single controller, connect the cable to the left PEM on each
enclosure. If the S2600 is configured with dual controllers, connect the cables to both left and
right PEMs on each enclosure.
NOTE
To avoid unexpected power-off of the storage device due to failures of a single power module, the electric
current of the circuit breakers of the external power supplies to which the storage device is connected must
comply with required specifications. The required specifications of the electric current of the circuit
breakers are:
l 6A (for AC power supplies)
l 10A (for DC power supplies)
Laying Power Cables of the AC Controller Enclosure and AC Disk Enclosures
Before laying power cables, prepare the following tools and materials:
l Philips screwdriver
l AC power cables (for AC power supply)
l DC power cables (for DC power supply)
If the power cables are already connected to the power distribution panel, insert the power cables
into the power sockets on the controller enclosure and disk enclosures, as shown in Figure
7-7.
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Figure 7-7Laying the AC power cables
If the cabinet is equipped with power sockets on both sides, connect the power cables to the AC
controller enclosure and AC disk enclosures according to the following steps:
1. Unpack and take out the AC power cables.
2. Connect the AC power cables to the AC controller enclosure.
3. Connect the AC power cables to the AC cabinet.
4. Repeat 1to 3to connect other power cables to the AC disk enclosures, as shown in Figure
7-8.
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Figure 7-8Connecting the AC power cables to the AC cabinet
Laying Power Cables of the DC Controller Enclosure and DC Disk Enclosures
When the DC controller enclosure and DC disk enclosures are provided, connect the DC power
cables according to the following steps:
1. Remove the plastic insulating tubes from the DC power cable connectors.
2. Remove the protection cover on the DC power distribution box.
3. Connect the DC power cables to the DC power distribution box on the DC controller
enclosure and fasten the protection cover of the DC power distribution box, as shown in
Figure 7-9.
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Figure 7-9Connecting DC power cables
NOTE
Connect the OT terminal of the black cable to the RTN (+) terminal and the OT terminal of the blue
cable to the NEG (-) terminal. Connect the yellow-green grounding cable to the grounding terminal.
4. Repeat 1to 3to connect the DC power cables to the DC power distribution box on the DC
disk enclosures.
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8Laying Signal CablesAbout This Chapter
This chapter describes how to lay signal cables according to related principles after all the devices
and filler panels are installed into the cabinet.
8.1 Introduction to Signal Cables
Signal cables include network cables, serial port cables, SAS cables, mini SAS cables, and
optical fibers.
8.2 Principles of Laying Signal Cables
The signal cables must be laid according to certain principles.
8.3 Laying Signal Cables
This section describes how to lay signal cables. Signal cables, including network cables, serial
port cables, SAS cables, mini SAS cables, and optical fibers, are connected to the devices to
enable service running.
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8.1 Introduction to Signal Cables
Signal cables include network cables, serial port cables, SAS cables, mini SAS cables, and
optical fibers.
Table 8-1lists the properties of the signal cables.
Table 8-1Properties of the signal cables
Name Illustration Use
Network cable Used to connect the iSCSI host
ports on the controller
enclosure to the application
server or connect the
management network port onthe controller enclosure to the
maintenance terminal.
Serial port cable Used to connect the MGNT
serial port on the controller
enclosure to the maintenance
terminal.
SAS cable Used to connect the mini SAS
host port to the SAS port on the
application server.
mini SAS cable Used to connect the mini SAS
host port to the mini SAS port
on the application server or
connect the disk enclosures to
the controller enclosure.
Optical fiber Used to connect the FC host
ports on the controller
enclosure to the applicationserver.
8.2 Principles of Laying Signal Cables
The signal cables must be laid according to certain principles.
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Figure 8-2Switched connection between the FC host port and the application server
To connect the multiple mode optical fibers and to install the multiple mode optical module, doas follows:
Procedure
Step 1 Unpack and take out an optical transceiver.
Step 2 Remove the protective caps on the optical transceiver, as shown in Step 1 and Step 2 of Figure8-3.
Figure 8-3Removing the protective caps on the optical transceiver
Step 3 As shown in step 1 in Figure 8-5, insert the optical transceiver into the FC port on the controllerenclosure.
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