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HUAWEI Tecal XH321 V2 Server Node White Paper V1.0 HUAWEI Tecal XH321 V2 Server Node White Paper V1.0 Issue 01 Date 2014-05-07 HUAWEI TECHNOLOGIES CO., LTD.

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HUAWEI Tecal XH321 V2 Server Node White Paper V1.0

HUAWEI Tecal XH321 V2 Server Node White Paper V1.0

Issue 01

Date 2014-05-07

HUAWEI TECHNOLOGIES CO., LTD.

Issue 01 (2014-05-07) Huawei Proprietary and Confidential

Copyright © Huawei Technologies Co., Ltd. i

Copyright © Huawei Technologies Co., Ltd. 2014. 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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V1.0 Contents

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Contents

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

1.1 Product Positioning ....................................................................................................................................................... 1

1.2 System Design .............................................................................................................................................................. 2

2 Features ........................................................................................................................................... 4

3 Appearance and Structure ........................................................................................................... 7

3.1 Appearance ................................................................................................................................................................... 7

4 Technical Specifications ............................................................................................................ 11

5 Component Compatibility ........................................................................................................ 13

5.1 Processor ..................................................................................................................................................................... 13

5.2 Memory ...................................................................................................................................................................... 15

5.3 Storage System ........................................................................................................................................................... 19

5.4 I/O Expansion ............................................................................................................................................................. 21

5.5 PSU ............................................................................................................................................................................. 22

5.6 Peripherals .................................................................................................................................................................. 23

5.7 OS ............................................................................................................................................................................... 23

6 Management ................................................................................................................................. 25

7 Warranty........................................................................................................................................ 27

8 Physical Specifications ............................................................................................................... 30

9 Certifications ................................................................................................................................ 31

10 A Acronyms and Abbreviations ............................................................................................. 33

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V1.0 Figures

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Figures

Figure 1-1 XH321 V2 ............................................................................................................................................ 2

Figure 1-2 XH321 V2 system design .................................................................................................................... 3

Figure 3-1 Front view of an XH321 V2 ................................................................................................................ 7

Figure 3-2 XH321 V2 components ....................................................................................................................... 9

Figure 5-1 DIMM positions................................................................................................................................. 18

Figure 5-2 PCIe card positions ............................................................................................................................ 21

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Tables

Table 3-1 Components on the front panel .............................................................................................................. 8

Table 3-2 Indicator description .............................................................................................................................. 8

Table 3-3 Component description .......................................................................................................................... 9

Table 4-1 Technical specifications ....................................................................................................................... 11

Table 5-1 Processors supported by the XH321 V2 .............................................................................................. 13

Table 5-2 RDIMM configuration rules ................................................................................................................ 15

Table 5-3 LRDIMM configuration rules.............................................................................................................. 16

Table 5-4 Memory channels ................................................................................................................................ 17

Table 5-5 DIMM installation sequence................................................................................................................ 18

Table 5-6 DIMMs supported by the XH321 V2 .................................................................................................. 18

Table 5-7 Hard disks supported by the XH321 V2 .............................................................................................. 19

Table 5-8 RAID level comparison ....................................................................................................................... 20

Table 5-9 External storage devices supported by the XH321 V2 ........................................................................ 20

Table 5-10 PCIe cards supported by the XH321 V2 ............................................................................................ 21

Table 5-11 PSUs supported by the XH321 V3 .................................................................................................... 22

Table 5-12 Peripherals supported by the XH321 V2 ........................................................................................... 23

Table 5-13 OSs supported by the XH321 V2 ...................................................................................................... 23

Table 6-1 iMana 200 specifications ..................................................................................................................... 25

Table 7-1 Response time ...................................................................................................................................... 27

Table 7-2 Warranty services................................................................................................................................. 28

Table 8-1 Physical specifications ......................................................................................................................... 30

Table 9-1 Certifications and standards ................................................................................................................. 31

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V1.0 1 Overview

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1

1 Overview

About This Chapter

1.1 Product Positioning

1.2 System Design

1.1 Product Positioning

The HUAWEI Tecal XH321 V2 (XH321 V2 for short) is a new-generation 2-socket

half-width server node of the X6000 high-density server. It provides four 2.5-inch high-speed

hard disks and 16 double data rate 3 (DDR3) dual in-line memory modules (DIMMs). The

XH321 V2 applies to data centers, cloud computing applications, and Internet applications.

Figure 1-1 shows the XH321 V2.

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Figure 1-1 XH321 V2

1.2 System Design

The XH321 V2 is developed based on the Intel® Romley-EP platform. It supports Intel

®

XeonTM

E5-2600 or E5-2600 v2 series processors. Figure 1-2 shows the XH321 V2 system

design.

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Figure 1-2 XH321 V2 system design

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V1.0 2 Features

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2 Features

Performance

The XH321 V2 provides the following performance features:

The XH321 V2 uses two Intel® Xeon

TM E5-2600 or E5-2600 v2 series processors, with

each processor supporting a maximum of 95 W Thermal Design Power (TDP). Each

Intel®

XeonTM

E5-2600 v2 processor has up to 10 cores and a 25 MB L3 cache and

provides 2.2 GHz frequency and two 8 GT/s QuickPath Interconnect (QPI) links

between processors.

The two processors offer a maximum of 20 cores and 40 threads, which maximizes the

concurrent execution of multithreaded applications.

Intel®

Turbo Boost Technology 2.0 allows processor cores to run faster than the TDP

configuration specified frequency if the processor cores are operating below power,

current, and temperature specification limits.

Intel Hyper-Threading Technology enables each processor core to run up to two threads,

improving parallel computation capability.

The hardware-assisted Intel®

Virtualization Technology (Intel® VT) allows operating

system (OS) vendors to better use hardware to address virtualization workloads.

Intel Advanced Vector Extensions (AVX) improves floating-point computing

performance for computing-intensive applications.

The XH321 V2 supports up to sixteen 1866 MHz DDR3 load-reduced DIMMs

(LRDIMMs), which provide a maximum of 512 GB of memory. The LRDIMMs adopt

error checking and correcting (ECC) technology, ensuring high speed and availability.

The Intel® Xeon

TM E5-2600 series processors provide a maximum of 51.2 GB/s memory

bandwidth, and the Intel® Xeon

TM E5-2600 v2 series processors provide a maximum of

59.7 GB/s memory bandwidth.

The XH321 V2 provides four Serial Advanced Technology Attachment (SATA) or Serial

Attached SCSI (SAS) hard disk drives (HDDs), or solid-state drives (SSDs). SSDs

greatly improve I/O performance. An SSD supports approximately 100 times more I/O

operations per second (IOPS) than a typical HDD.

The XH321 V2 provides two onboard GE ports through the I/O module and one PCIe

2.0 x8 slot (this slot is available only when two CPUs are configured).

Intel®

Integrated I/O enables the PCIe 3.0 controller to be integrated into the Intel®

XeonTM

E5 series processors. This shortens I/O latency and enhances overall system

performance.

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Availability and Serviceability

The XH321 V2 provides the following features to improve availability and serviceability:

The XH321 V2 uses carrier-class components and follows the engineering process,

which dramatically improves system reliability.

The XH321 V2 uses four hot-swappable hard disks, which can be directly attached to the

PCH chipset or integrated with an LSISAS2208 controller. When an LSISAS2208

controller is used, the XH321 V2 supports redundant array of independent disks (RAID)

0, 1, 5, 6, and 10 and offers a RAID cache. A supercapacitor is used to protect RAID

cache data from power failures.

The PWR, UID, and HLY indicators on the panel and the Huawei's proprietary iMana

200 intelligent management system (iMana 200 for short) web user interface (WebUI)

help technical support personnel learn the status of key components and promptly locate

failed (or failing) components. This simplifies maintenance, accelerates troubleshooting,

and improves system availability.

SSDs offer better reliability than HDDs, prolonging system uptime.

iMana 200 monitors system parameters, triggers alarms, and performs recovery actions

in the case of failures. This minimizes system downtime.

Huawei provides a three-year warranty for parts replacement and limited onsite repair for

the XH321 V2 used in China. Huawei provides a 10-hour-a-day, 5-day-a-week Next

Business Day (NBD) support program. Optional service upgrades are available.

Huawei provides a three-year warranty for parts replacement and repair for the XH321

V2 used outside China. Huawei provides a 9-hour-a-day, 5-day-a-week NBD support

program. Huawei delivers the repaired or new parts within 45 calendar days after

receiving the defective parts.

Manageability and Security

The XH321 V2 provides the following features to enhance manageability and security:

The built-in iMana 200 module monitors server operating status and provides remote

management.

The integrated industry-standard Unified Extensible Firmware Interface (UEFI)

increases setup, configuration, and update efficiency, and simplifies fault handling.

The optional Trusted Platform Module (TPM) 1.2 provides advanced encryption

functions, such as digital signatures and remote authentication.

The Intel Advanced Encryption Standard New Instructions (AES NI) implement faster

and stronger encryption.

The Intel Execute Disable Bit (EDB) function prevents certain types of malicious buffer

overflow attacks when working with a supported operating system (OS).

Energy Efficiency

The XH321 V2 provides the following energy-conservation features:

The Intel® Xeon

TM E5-2600 v2 series processors provide better performance over the

previous-generation processors while fitting into the same TDP.

Intel®

Intelligent Power Capability allows a processor to be powered on or off based on

site requirements.

Low-voltage Intel® Xeon

TM processors consume less energy and apply to the data centers

and telecommunication environments that have power and thermal limitations.

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The 1.35 V DDR3 RDIMMs consume 15% less energy than 1.5 V DDR3 RDIMMs.

SSDs consume 80% less power than HDDs.

The hexagonal ventilation holes on the front panel enable higher ventilation density than

round holes, remarkably increasing system cooling efficiency.

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3 Appearance and Structure

About This Chapter

3.1 Appearance

3.1 Appearance

Figure 3-1 shows the front view of an XH321 V2.

Figure 3-1 Front view of an XH321 V2

1 Hard disk 0 2 Hard disk fault

indicator

3 HLY indicator

4 Hard disk 2 5 Hard disk 3 6 UID

button/indicator

7 High-density port 8 Power

button/indicator

9 Hard disk active

indicator

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10 Spring 11 Ejector lever 12 Hard disk 1

Table 3-1 describes the components on the front panel.

Table 3-1 Components on the front panel

Component Description

Power

button/indicator Functions as the power button and the power status indicator.

HLY indicator Displays the server health status.

High-density port Connects to a cable that provides one VGA and three USB ports.

UID button/indicator Functions as the UID button and the UID indicator.

Hard disks 0, 1, 2,

and 3

Supports four 2.5-inch hot-swappable SSDs or SAS or SATA

HDDs.

Hard disk indicators Include the hard disk active indicator and fault indicator, which

display the hard disk status.

Ejector lever Helps install or remove a server node from the chassis.

Spring Helps raise and lower an ejector lever.

Table 3-2 describes the indicators on the panel.

Table 3-2 Indicator description

Indicator Color Description

HLY indicator Red

and

green

Off: The server node is not powered on.

Steady green: The server node is operating properly.

Blinking red: An alarm is generated.

Power

button/indicator

Orange Off: The XH321 V2 is powered on properly.

On: The server node is standby.

UID

button/indicator

Blue Steady on: The UID button is pressed.

Off: The UID button is not triggered.

Hard disk active

indicator

Green Off: The hard disk is inactive.

Blinking: Data is being read from or written to the hard

disk.

Steady green: Data is being read from or written to the

hard disk for a long period of time.

Hard disk fault

indicator

Orange On: The hard disk is lost or faulty.

Blinking: An alarm is generated for the hard disk.

Off: The hard disk is operating properly or is not powered

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Indicator Color Description

on.

Connection

status indicator

Green Steady on: The network port is properly connected.

Off: The network port is not connected.

Data

transmission

status indicator

Orange Blinking: Data is being transmitted over the network port.

Off: The network port is idle.

Figure 3-2 shows the XH321 V2 components.

Figure 3-2 XH321 V2 components

Table 3-3 describes the components of the XH321 V2.

Table 3-3 Component description

No. Component Description

1 Hard disk The server node supports four 2.5-inch hot-swappable SATA or

SAS hard disks.

2 USB device The USB device is used for data storage or USB key digital

certification.

3 BMC The BMC module implements baseboard management based on

the Romley platform.

4 TPM A TPM protects the system from viruses or unauthorized

operations, enhancing hardware platform security.

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No. Component Description

5 DIMM The server node provides 16 DDR3 slots for installing DIMMs.

Each slot can hold a DIMM of 32 GB. The server node provides

a maximum of 512 GB memory capacity.

6 Processor The server node uses a maximum of two Intel® Ivy Bridge-EP or

Intel® Sandy Bridge-EP series high-performance processors with

TDP of 95 W or lower.

7 Heat sink The heat sinks are used to cool processors.

8 Supercapacitor

tray

A supercapacitor tray holds and fastens a supercapacitor.

9 Supercapacitor A supercapacitor is required to protect RAID cache data from

power failures when the XH321 V2 uses a RAID controller card.

10 Trans flash

module (TFM)

The TFM connects to the supercapacitor.

11 Mainboard The mainboard integrates the processors, network modules, hard

disk interface modules, power modules, onboard LSISAS2208

RAID controller card, clock module, and logic module.

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4 Technical Specifications

Table 4-1 lists the XH321 V2 technical specifications.

Table 4-1 Technical specifications

Item Specifications

Supported

chassis

X6000 V2

Processor A maximum of two Intel® Xeon

TM E5-2600 or E5-2600 v2 series

processors, with each processor supporting a maximum of 95 W TDP.

Specifications for each Intel® Xeon

TM E5-2600 v2 processor:

Number of cores per processor: 10 cores (up to 2.2 GHz), 8 cores

(up to 2.6 GHz), 6 cores (up to 2.6 GHz), or 4 cores (up to 2.5 GHz)

Number of QPI links: 2

Maximum transmission speed per QPI link: 8.0 GT/s

Maximum memory speed: 1866 MHz

Maximum L3 cache: 25 MB

Chipset Intel C604

Memory Up to 16 slots (8 slots per processor) for installing RDIMMs or

LRDIMMs:

16 x 16 GB RDIMMs for two processors, with a maximum memory

capacity of 256 GB16 x 32 GB LRDIMMs for two processors, with

a maximum memory capacity of 512 GB

Maximum memory speed: 1866 MHz

Data protection measures: ECC

NOTE

The XH321 V2 does not support mixed use of RDIMMs and LRDIMMs.

Local storage The XH321 V2 supports a maximum of four 2.5-inch hot

swappable SAS or SATA HDDs, or SSDs and offers the maximum

storage capacity as follows:

2.4 TB (600 GB SSD)3.2 TB (800 GB SSD)3.6 TB (900 GB SAS

HDD)4 TB (1 TB NL SAS HDD)

Mixed configuration of SAS HDDs, SATA HDDs, and SSDs is

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Item Specifications

supported.

RAID support Hard disks can be directly attached to the PCH chipset or integrated

with an LSISAS2208 controller.

When an LSISAS2208 controller is used, the following specifications

are supported:

Supports RAID 0, 1, 5, 6, and 10

Provides a 512 MB cache.

Uses an optional supercapacitor to enable memory data in the RAID

card to be written to the flash memory when a power failure occurs.

Network port Two front integrated GE 1000BASE-T ports use the Intel i350 network

chips and support Network Controller Sideband Interface (NC-SI).

The Intel i350 is a single-chip, low-power device that supports dual- or

quad- port GE designs. It provides four 1000BASE-T ports that

integrate Media Access Control (MAC), physical layer (PHY), Serial

Gigabit Media Independent Interface (SGMII), Serializer/Deserializer

(SERDES), and supports PCIe 2.0 and rich virtualization features.

Expansion slot The I/O modules support one PCIe 2.0 x8 slot for each server node on

the rear. (This slot is available only when two CPUs are configured.)

Port The high-density port on the front panel connects to a cable that

provides the following:

Three USB 2.0 ports

One DB15 port

One internal standard USB port

One port for a USB flash card (for storing the embedded system

management program)

System

management

UEFI and iMana

Security feature Power-on password, administrator's password, and TPM

Video card SM750 video chip with 16 MB display memory integrated on the BMC

The maximum resolution is 1920 x 1440 at 60 Hz with 8-bit, 16-bit, or

32-bit colors.

OSs supported Microsoft Windows Server 2008 R2

Microsoft Windows 2012 Server

Red Hat Enterprise Linux 6.1

SUSE Linux Enterprise Server 11.1

Citrix 6.0

VMware ESXi 5.0

Dimensions (H x

W x D)

41 mm x 210 mm x 540 mm (1.61 in. x 8.27 in. x 21.26 in.)

Weight Maximum weight in full configuration: 5 kg (11.02 lb)

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5 Component Compatibility

About This Chapter

5.1 Processor

5.2 Memory

5.3 Storage System

5.4 I/O Expansion

5.5 PSU

5.6 Peripherals

5.7 OS

5.1 Processor

The XH321 V2 supports up to two Intel®

XeonTM

E5-2600 or E5-2600 v2 series processors,

with each processor supporting a maximum of 95 W TDP.

If two processors are required, use the same type of processors.

If only one processor is required, install it in socket CPU 1, as shown in Figure 3-2.

Table 5-1 lists the processors supported by the XH321 V2.

Table 5-1 Processors supported by the XH321 V2

No. BOM Number Description

1 41020438 X86

series-FCLGA2011-2400MHz-0.9V-64bit-60000mW-IvyBrid

ge EP Xeon E5-2630L V2-6Core

2 41020429 X86

series-FCLGA2011-1800MHz-0.9V-64bit-80000mW-IvyBrid

ge EP Xeon E5-2603 v2-4Core

3 41020428 X86

series-FCLGA2011-2500MHz-0.9V-64bit-80000mW-IvyBrid

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No. BOM Number Description

ge EP Xeon E5-2609 v2-4Core

4 41020425 X86

series-FCLGA2011-2600MHz-0.9V-64bit-80000mW-IvyBrid

ge EP Xeon E5-2630 v2-6Core

5 41020426 X86

series-FCLGA2011-2100MHz-0.9V-64bit-80000mW-IvyBrid

ge EP Xeon E5-2620 v2-6Core

6 41020423 X86

series-FCLGA2011-1700MHz-0.9V-64bit-70000mW-IvyBrid

ge EP Xeon E5-2650L v2-10Core

7 41020422 X86

series-FCLGA2011-2000MHz-0.9V-64bit-95000mW-IvyBrid

ge EP Xeon E5-2640 v2-8Core

8 41020421 X86

series-FCLGA2011-2600MHz-0.9V-64bit-95000mW-IvyBrid

ge EP Xeon E5-2650 v2-8Core

9 41020417 X86

series-FCLGA2011-2200MHz-0.9V-64bit-95000mW-IvyBrid

ge EP Xeon E5-2660 v2-10Core

10 41020310 X86

series-FCLGA2011-1800MHz-0.9V-64bit-70000mW-SandyB

ridge EP Xeon E5-2650L-8Core

11 41020278 X86

series-FCLGA2011-1800MHz-0.9V-64bit-80000mW-SandyB

ridge EP Xeon E5-2603-4Core

12 41020279 X86

series-FCLGA2011-2400MHz-0.9V-64bit-80000mW-SandyB

ridge EP Xeon E5-2609-4Core

13 41020274 X86

series-FCLGA2011-2300MHz-0.9V-64bit-95000mW-SandyB

ridge EP Xeon E5-2630-6Core

14 41020275 X86

series-FCLGA2011-2500MHz-0.9V-64bit-95000mW-SandyB

ridge EP Xeon E5-2640-6Core

15 41020276 X86

series-FCLGA2011-2000MHz-0.9V-64bit-95000mW-SandyB

ridge EP Xeon E5-2650-8Core

16 41020277 X86

series-FCLGA2011-2200MHz-0.9V-64bit-95000mW-SandyB

ridge EP Xeon E5-2660-8Core

17 41020265 X86

series-FCLGA2011-2100MHz-0.6V-64bit-95000mW-SandyB

ridge EP Xeon E5-2658-8Core

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No. BOM Number Description

18 41020222 X86

series-FCLGA2011-2000MHz-0.9V-64bit-95000mW-SandyB

ridge EP Xeon E5-2620-6Core

5.2 Memory

Memory Configuration Rules

The XH321 V2 supports a maximum of eight DIMMs if one processor is installed and

supports a maximum of 16 DIMMs if two processors are installed. Each processor comes with

four memory channels, and each channel supports two DIMMs.

Observe the following rules when configuring DIMMs:

1. The XH321 V2 does not support mixed use of different types of DIMMs. Use either

RDIMMs or LRDIMMs.

2. Do not use 1.5 V and 1.35 V DIMMs in the same server.

3. Each channel supports a maximum of eight ranks.

A channel supports more than eight ranks for LRDIMMs, because a quad-rank LRDIMM generates the

same electrical load as a single-rank RDIMM on a memory bus.

4. The maximum number of DIMMs to be installed in the XH321 V2 varies depending on

the processor type, DIMM type, number of ranks, and operating voltage. For details, see

"Maximum number of DIMMs" in Table 5-2 and Table 5-3.

Maximum number of DIMMs supported by each channel ≤ Number of ranks supported by each

channel/Number of ranks supported by each DIMM

5. All DIMMs in a server operate at the same speed, whichever of the following is the

lowest:

− Memory speed supported by a specified processor

− Lowest value of the maximum operating speeds for the specific memory

configuration that depends on the rated speed, operating voltage, and number of

DIMMs for each memory channel. For details, see "Maximum operating speed" in

Table 5-2 and Table 5-3.

Table 5-2 RDIMM configuration rules

Item RDIMM

Rank Dual rank

Rated speed (MHz) 1333 1600 1866

Rated voltage (V) 1.35 1.35 1.5

Operating voltage (V) 1.35 1.35 1.5

Maximum number of RDIMMs 16 16 16

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Item RDIMM

Maximum capacity per RDIMM

(GB)

4 16 16

Maximum memory capacity (GB) 64 256 256

Maximum memory capacity at the

maximum operating speed (GB) 64 128 128

Maximum

operating

speed (MHz)

One RDIMM per

channel

1333 1600 1866

Two RDIMMs

per channel 1333 1333 1600

Three RDIMMs

per channel Not supported Not supported Not supported

NOTE

The maximum number of RDIMMs is given for two-processor configuration. If the XH321 V2 uses

only one processor, the maximum number of RDIMMs is half the values given in this table.

The cells with bold characters indicate that all DIMM slots are occupied.

Table 5-3 LRDIMM configuration rules

Item LRDIMM

Rank Quad rank

Rated speed (MHz) 1333 1866

Rated voltage (V) 1.35 1.5

Operating voltage (V) 1.35 1.5

Maximum number of LRDIMMs 16 16

Maximum capacity per

LRDIMM (GB)

32 32

Maximum memory capacity

(GB)

512 512

Maximum memory capacity at

the maximum operating speed

(GB)

256 256

Maximum

operating

speed

(MHz)

One LRDIMM

per channel

1333 1866

Two LRDIMMs

per channel

1066 1066

Three LRDIMMs

per channel

Not supported Not supported

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Item LRDIMM

NOTE

The maximum number of LRDIMMs is given for two-processor configuration. If the XH321 V2 uses

only one processor, the maximum number of LRDIMMs is half the values given in this table.

Memory Slot Configuration Rules

The XH321 V2 supports DIMMs of 4 GB, 8 GB, 16 GB, and 32 GB. When the XH321 V2 is

fully configured with DIMMs, the maximum memory capacity is 512 GB.

The XH321 V2 provides 16 DDR3 DIMM slots and eight memory channels: 1A, 1B, 1C, 1 D,

2A, 2B, 2C, and 2D, as shown in Table 5-4.

Table 5-4 Memory channels

Memory Channel Composition

1A 1A1 (primary)

1A2

1B 1B1 (primary)

1B2

1C 1C1 (primary)

1C2

1D 1D1 (primary)

1D2

2A 2A1 (primary)

2A2

2B 2B1 (primary)

2B2

2C 2C1 (primary)

2C2

2D 2D1 (primary)

2D2

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Figure 5-1 DIMM positions

The DIMMs must be installed in the sequence specified in Table 5-5.

Table 5-5 DIMM installation sequence

Configured Processors DIMM Installation Sequence

CPU1 1A1, 1B1, 1C1, 1D1, 1A2, 1B2, 1C2, and 1D2

CPU1 and CPU2 1A1, 2A1, 1B1, 2B1, 1C1, 2C1, 1D1, 2D1, 1A2, 2A2, 1B2,

2B2, 1C2, 2C2, 1D2, and 2D2

Memory Protection

The XH321 V2 supports ECC for memory protection.

Supported DIMM Models

Table 5-6 lists the DIMMs supported by the XH321 V2.

Table 5-6 DIMMs supported by the XH321 V2

No. BOM Number

Description Maximum Number of DIMMs

1 06200110 DDR3 RDIMM-4 GB-2Rx8 2 Gbit-LV 1.35

V 1333-Height 30 mm

16 (8 per processor)

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No. BOM Number

Description Maximum Number of DIMMs

2 06200169 DDR3 RDIMM-8 GB-240 pin-1.1

ns-1866000 KHz-1.5 V-ECC-2 Rank (512

MB x 8 bit)-Height 30 mm

3 06200172 DDR3 RDIMM-16 GB-240 pin-1.1

ns-1866000 KHz-1.5 V-ECC-2 Rank (1 GB

x 4 bit)-Height 30 mm

4 06200123 DDR3 RDIMM-8 GB-240 pin-1.25

ns-1600000 KHz-1.35 V-ECC-Dual Rank

(512 MB x 8 bit)-Height 30 mm

5 06200161 DDR3 RDIMM-16 GB-240 pin-1.25

ns-1600000 KHz-1.35 V-ECC-2 Rank (1

GB x 4 bit)

6 06200137 DDR3 LRDIMM-32 GB-240 pin-1.5

ns-1333000 KHz-1.35 V-ECC-4 Rank (1

GB x 4 bit)

Table 5-6 is for reference only. For details about the components available, consult the local Huawei

sales representatives.

5.3 Storage System

The XH321 V2 supports a maximum of four 2.5-inch hot-swappable SAS HDDs, SATA

HDDs, or SSDs. Table 5-7 lists the compatible HDDs or SSDs.

Table 5-7 Hard disks supported by the XH321 V2

No. BOM Number Description

1 02310KPR 10000 RPM - 2.5'' SAS 6 Gbit/s – 300 GB HDD

2 02310KPU 10000 RPM - 2.5'' SAS 6 Gbit/s – 600 GB HDD

3 02310LYS 10000 RPM - 2.5'' SAS 6 Gbit/s – 900 GB HDD

4 02310LHE 15000 RPM - 2.5'' SAS 6 Gbit/s – 146 GB HDD

5 02310MMV 15000 RPM - 2.5'' SAS 6 Gbit/s – 300 GB HDD

6 02310LBB 7200 RPM - 2.5'' SATA 6 Gbit/s – 500 GB HDD

7 02310LAY 7200 RPM - 2.5''SATA 6 Gbit/s – 1000 GB HDD

8 02310MLB 7200 RPM - 2.5'' NL SAS 6 Gbit/s – 1000 GB HDD

9 02310KSX MLC -2.5'' SATA 3 Gbit/s – 160 GB SSD

10 02310LTB MLC -2.5'' SATA 3 Gbit/s – 300 GB SSD

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No. BOM Number Description

11 02310MMS MLC -2.5'' SATA 3 Gbit/s – 600 GB SSD

12 02310YHK MLC -2.5'' SATA 6 Gbit/s – 800 GB SSD

Table 5-7 is for reference only. For details about the components available, consult the local Huawei

sales representatives.

The XH321 V2 supports the southbridge Platform Controller Hub (PCH) for directly

providing SATA ports or an integrated LSISAS2208 controller card (supporting RAID 0, 1, 5,

6, and 10) with a supercapacitor for protecting cache data from power failures.

Table 5-8 describes the RAID level comparison.

Table 5-8 RAID level comparison

RAID Level

Reliability Read Performance

Write Performance

Minimum Number of Hard Disks

Hard Disk Utilization

RAID 0 Low High High 1 100%

RAID 1 High Low Low 2 1/N

RAID 5 Better than

medium

High Medium 3 (N-1)/N

RAID 6 Better than

medium

High Medium 4 (N-2)/N

RAID

10

High Medium Medium 4 M/N

NOTE

N indicates the number of member hard disks in a RAID. M indicates the number of subgroups of a

RAID.

The XH321 V2 connects to external storage devices by using host bus adapter (HBA) cards.

Table 5-9 lists the external storage devices supported by the XH321 V2.

Table 5-9 External storage devices supported by the XH321 V2

No. BOM Number Description Auxiliary HBA

1 0125G03H OceanStorTM S3900 series

storage 06030220, 06030221,

06030217, and 06030216

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5.4 I/O Expansion

If two processors are configured, the XH321 V2 provides one PCIe x8 slot for installing a

half-height, half-length card through the I/O module. The XH321 V2 supports three types of

half-height, half-length PCIe cards, which can be configured based on the required card type

and rate.

GE expansion card

10GE expansion card

FC expansion card

Figure 5-2 shows the PCIe card positions. Numbers 1 to 4 indicate the PCIe cards in slots 1 to

4 on an XH321 of the X6000.

Figure 5-2 PCIe card positions

Table 5-10 lists the PCIe cards supported by the XH321 V2.

Table 5-10 PCIe cards supported by the XH321 V2

No. BOM Number

Description Vendor Chip Model

1 06310023 Dual Port Gigabit Ethernet Server Adapter,

RJ45 Copper, PCIe 2.0 x4 -Half-height

half-length

Intel 82576

2 06310025 Quad Port Gigabit Ethernet Card, RJ45

Copper, PCIe 2.0 x4 -Half-height half-length

Intel 82580

3 06310024 Dual Port 10 Gigabit Ethernet Server

Adapter, SFP+ Direct Attach Copper, PCIe

2.0 x8 -Half-height half-length

Intel 82599

4 06310026 Dual Port 10 Gigabit Ethernet Server

Adapter, LC Fibre Optic, PCIe 2.0 x8

-Half-height half-length

Intel 82599

5 03030PWD Manufactured Board, Tecal X6000,

CN21ITGAA0, Intel 82599 2 x 10GE SFP+,

Half-height Half-length, x8 Ethernet Card,

PCIe 2.0 x8-Vendor ID 8086-Device ID

10FB-2

Huawei 82599

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No. BOM Number

Description Vendor Chip Model

6 06310039 Dual Port 10 Gigabit Ethernet Server

Adapter, SFP+ Direct Attach Copper, PCIe

2.0 x8 -Half-height half-length

Silicom 82599

7 06310040 Quad Port Gigabit Ethernet Card, RJ45

Copper, PCIe 2.0 x4 -Half-height half-length

Silicom 82580

8 06310041 Dual Port 10 Gigabit Ethernet Server

Adapter, LC Fibre Optic, PCIe 2.0 x8

-Half-height half-length

Silicom 82599

9 06030217 Dual Port FC HBA Card, PCIe 1.0

x8-10DF-F100-2, 8 Gbit/s, Fiber Channel

Multimode LC Optic Interface

Emulex LPE1200

2

10 06030216 Single Port FC HBA Card, PCIe 1.0

x8-10DF-F100-1, 8 Gbit/s, Fiber Channel

Multimode LC Optic Interface

Emulex LPE1200

0

Table 5-10 is for reference only. For details about the components available, consult the local Huawei

sales representatives.

5.5 PSU

The XH321 V2 uses DC or AC power supply units (PSUs) in redundancy mode. The input

voltage of the PSUs is as follows:

AC PSU: 100 V to 240 V AC at 50 Hz or 60 Hz

DC PSU: –48 V to –60 V DC

The output voltage range of the PSUs is 11.75 V DC to 12.48 V DC.

Table 5-11 lists the PSUs supported by the XH321 V2.

Table 5-11 PSUs supported by the XH321 V3

No. BOM Number

Description Vendor

Certifications

Power Efficiency

Maximum Input Current

1 021309

85

AC/DC Power Module

1200 W 100 V-240

V/6.6 A to 9.3 A +12

V/100 A 94.0%

Platinum

LITE

ON

TUV, CCC,

and UL

Platinu

m

9.3 A

2 022701

13

DC/DC Power Module

824 W -38 V- –75V/26

A +12 V/65 A 93.5%

Emers

on

TUV, UL,

CE, and

CCC

Gold 26 A

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No. BOM Number

Description Vendor

Certifications

Power Efficiency

Maximum Input Current

Gold (only for China)

PSUs 02270113 in Table 5-11 can be used in China only.

5.6 Peripherals

Table 5-12 lists the peripherals supported by the XH321 V2.

Table 5-12 Peripherals supported by the XH321 V2

No. BOM Number Description

1 06020088 DVDRW-CD 24X/DVD 8X, USB 2.0, External, USB 2.0 5 V

power

5.7 OS

Table 5-13 lists the OSs supported by the XH321 V2.

Table 5-13 OSs supported by the XH321 V2

No. Version Description

1 Windows 2008 SP2 Microsoft Windows Server 2008 SP2 32bit

2 Windows 2008 R2 SP1 Microsoft Windows Server 2008 R2 SP1 64bit

3 RHEL 6U1 Red Hat Enterprise Linux 6. Update 1 Server for

x86/Intel EM64T

4 SLES 11.1 SUSE Linux Enterprise Server 11 Service Pack 1 for

x86/Intel EM64T

5 Oracle 6.1 Oracle Enterprise Linux 6.1 Server X86_64

6 Oracle VM 3.0.2 Oracle Server VM 3.0.2

7 Citrix 5.6 Citrix XenServer 5.6.0

8 Citrix 6.0 Citrix XenServer 6.0.0

9 VMware 4.1 VMware ESXi 4.1.0

10 VMware 5.0 VMware ESXi 5.0.0

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No. Version Description

11 CentOS 5U8 CentOS Linux 5. Update 8 for x86/Intel EM64T

12 RHEL 6.1 KVM KVM of Red Hat Enterprise Linux 6.1 Update 1

Server for x86/Intel EM64T

13 SUSE11SP1 XEN SUSE Linux Enterprise Server 11 SP1 XEN (i586)

Table 5-13 is for reference only. For details about the components available, consult the local Huawei

sales representatives.

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6 Management

The XH321 V2 uses Huawei's proprietary iMana 200 intelligent management system to

implement remote server management. iMana 200 complies with IPMI 2.0 specifications and

provides reliable hardware monitoring and management.

iMana 200 supports the following features and protocols:

KVM and text console redirection

Remote virtual media

IPMI V2.0

Simple Network Management Protocol version 3 (SNMPv3)

Common information model (CIM)

Login by using a web browser

Table 6-1 describes the iMana 200 specifications.

Table 6-1 iMana 200 specifications

Item Description

Management

interface

Uses an RJ45 port as the management network port.

Integrates with any standard management system through the

following interfaces:

IPMI V2.0Command-line interface

(CLI)SM_CLPHTTPSSNMPv3Web Services-Management

(WS-MAN)

Fault detection Detects faults and accurately locates faults in hardware components.

Alarm

management

Supports alarm management and reports alarms using the SNMP trap,

Simple Mail Transfer Protocol (SMTP), and syslog service.

Integrated

virtual KVM

Provides remote maintenance measures for troubleshooting the

system.

Supports a maximum resolution of 1280x1024.

Integrated

virtual media

Virtualizes local media devices or images to media devices on a remote

server, which simplifies OS installation (The virtual DVD-ROM drive

supports a maximum transmission rate of 8 MB/s).

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Item Description

WebUI Provides a user-friendly graphical user interface (GUI), which simplifies

users' configuration and query operations.

The iMana 200 WebUI supports the following web browsers:

Internet Explorer 6.0

Internet Explorer 8.0

Firefox 9.0

Google Chrome 13.0

Safari

Fault

reproduction

Reproduces faults to facilitate fault diagnosis.

Screen

snapshots and

videos

Allows you to view screen snapshots and videos without login, which

facilitates routine preventive maintenance inspection (PMI).

Domain name

service (DNS)

and directory

service

Supports the DNS and directory service, which significantly simplifies

network and configuration management.

Dual-image

backup

Starts software from a backup image if the software fails.

Assets

management

Provides intelligent assets management.

Intelligent

power

management

Uses the power capping technology to increase deployment density, and

uses dynamic energy saving to lower operating expenses.

IPv6 Supports IPv6 to ensure sufficient IP addresses.

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7 Warranty

According to the Huawei Warranty Policy for Servers & Storage Products (Warranty Policy

for short), the XH321 V2 has a three-year warranty, the DVD-ROM drive and iBBU have a

one-year warranty, and the software media have a three-month warranty. The Warranty Policy

stipulates warranty terms and conditions, including the available services, response time,

terms of service, and disclaimer.

The warranty terms and conditions may vary by country, and some service and/or parts may

not be available in all countries. For more information about warranty services in your country,

contact Huawei technical support or the local Huawei office.

Table 7-1 describes the warranty service response time.

Table 7-1 Response time

Service Response Time Description Remarks

Help Desk 24/7 Available 24 hours a

day, 7 days a week

(00:00 to 24:00,

Monday to Sunday)

None

Remote

troubleshooting

Available 24 hours a

day, 7 days a week

(00:00 to 24:00,

Monday to Sunday)

The response time starts

from the time when

Huawei technical

support accepts a

customer's service

request to the time when

the technical support

contacts the customer

the first time to provide

remote troubleshooting

services.

Online

technical

support

Huawei enterprise

support website:

available 24 hours a

day, 7 days a week

(00:00 to 24:00,

Monday to Sunday)

None

Licensing of Huawei enterprise None

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Service Response Time Description Remarks

software

updates

support website:

available 24 hours a

day, 7 days a week

(00:00 to 24:00,

Monday to Sunday)

Return for

repair

Outside

China

9/5

hours, 45

calendar

days

shipment

Available 9 hours a

day, 5 days a week

(09:00 to 18:00,

Monday to Friday),

excluding official

holidays

The repaired or

replacement parts will

be shipped within 45

calendar days after

Huawei receives the

defective parts.

In

China

10/5

hours,

next

business

day

Available 10 hours a

day, 5 days a week

(08:00 to 18:00,

Monday to Friday),

excluding official

holidays

Service requests

submitted after 15:30

will be handled the next

business day.

Table 7-2 describes the warranty services provided by Huawei.

Table 7-2 Warranty services

No. Description

Help Desk Huawei provides 24-hour after-sales technical support (such as

handling requests for troubleshooting and hardware repair), receives

and handles customer inquiries, complaints, and suggestions through a

dedicated hotline.

Remote

troubleshooting

After receiving a service request for rectifying a network or system

fault, Huawei engineers will first analyze and handle the fault

remotely and rectify it in the shortest possible time. There are two

methods for remote troubleshooting: telephone support and remote

access.

Online technical

support

Huawei enterprise support website (http://enterprise.huawei.com)

provides product and technical materials, such as product manuals,

configuration guides, networking case study, and maintenance

experience collections. Registered users can access the website and

download required documents.

Licensing of

software updates

To ensure that the devices operate stably, Huawei provides software

patches whenever necessary.

Return for repair Huawei provides repair or replacement services for customers within

the promised time to meet customer needs for spare parts. You can

return defective parts to the designated Huawei site after submitting a

service request.

Huawei provides a three-year warranty for parts replacement and

onsite repair for the RH1288 V2 used in China. Huawei provides a

10-hour-a-day, 5-day-a-week NBD support program.

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No. Description

Huawei provides a three-year warranty for parts replacement and

repair for the RH1288 V2 used outside China. Huawei provides a

9-hour-a-day, 5-day-a-week NBD support program. Huawei delivers

the repaired or new parts within 45 calendar days after receiving the

defective parts.

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8 Physical Specifications

Table 8-1 lists the XH321 V2 physical specifications.

Table 8-1 Physical specifications

Item Specifications

Operating temperature 5°C to 35°C (41°F to 95°F)

Storage temperature –40°C to +65°C (–40°F to +149°F)

Temperature change rate 15°C/h (27°F/h)

Operating humidity 8% RH to 90% RH (non-condensing)

Storage humidity 5% RH to 95% RH

Altitude ≤ 3000 m (9842.40 ft)

Mean time between

failures (MTBF) Mainboard: 352861 hours

Integrated system: 234705 hours

Mean time to repair

(MTTR)

192s

Dimensions (H x W x D) 41 mm x 210 mm x 540 mm (1.61 in. x 8.27 in. x 21.26 in.)

Weight Net weight in full configuration: 5 kg (11.02 lb)

Packing material weight: 1.9 kg (4.19 lb)

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9 Certifications

Table 9-1 lists the certifications passed by the XH321 V2 and the standards to which the

XH321 V2 conforms.

Table 9-1 Certifications and standards

No. Country/Region Certification Standard

1 China RoHS SJ/T-11363-2006

SJ/T-11364-2006

2 Europe WEEE 2002/96/EC

3 Europe RoHS 2002/95/EC

4 Europe REACH EC 1907/2006

5 Europe CE Safety:

IEC 60950-1:2005 (2nd Edition) +

A1:2009 and/or EN 60950-1:2006 +

A11:2009 + A1:2010 + A12:2011

EMC:

EN 55022:2010

CISPR 22:2008

EN 55024:2010

CISPR 24:2010

ETSI EN300386 V1.5.1:2010

6 Australia C-tick AS/NZS CISPR22: 2009

7 America FCC FCC CFR47 Part 15 Class A

8 Canada IC ICES-003 Class A

9 Japan VCCI VCCI V3:2010

10 Nigeria SONCAP idt IEC 60950-1

11 China CCC GB4943.0-2011

GB9254-2008 Class A

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No. Country/Region Certification Standard

GB17625.1-2012

12 Saudi Arabia SASO idt EN60950-1

13 America UL UL 60950-1

14 China China

Environmental

Labeling

GB/T24024:2001 idt ISO14021:1999

HJ 2507-2011

15 Russia GOST GOST R IEC60950-1-2009

GOST 26329-84

GOST R 51318.22-2006

GOST R 51318.24-99

GOST R 51317.3.2-2006

GOST R 51317.3.3-2008

16 Global CB EN

60950-1:2006/A11:2009/A1:2010/A1

2: 2011

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10 A Acronyms and Abbreviations

A

AC alternating current

AES NI Advanced Encryption Standard New Instruction Set

ARP Address Resolution Protocol

AVX Advanced Vector Extensions

B

BBU backup battery unit

BIOS basic input/output system

BMC baseboard management controller

C

CD calendar day

CE Conformite European

CIM Common Information Model

CLI command-line interface

D

DC direct current

DDR3 double data rate 3

DDDC Double Device Data Correction

DEMT Dynamic Energy Management Technology

DIMM dual in-line memory module

DRAM dynamic random access memory

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A

DVD digital video disc

E

ECC error checking and correcting

ECMA European Computer Manufacturers Association

EDB Execute Disable Bit

EN European Efficiency

ERP Enterprise Resource Planning

ETS European Telecommunication Standards

F

FB-DIMM fully buffered DIMM

FC Fibre Channel

FCC Federal Communications Commission

FCoE Fibre Channel over Ethernet

FTP File Transfer Protocol

G

GE gigabit Ethernet

GPIO general purpose input/output

GPU graphics processing unit

H

HDD hard disk drive

HPC high-performance computing

HTTP Hypertext Transfer Protocol

HTTPS Hypertext Transfer Protocol Secure

I

IC Industry Canada

ICMP Internet Control Message Protocol

IDC Internet data center

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A

IEC International Electrotechnical Commission

IEEE Institute of Electrical and Electronics Engineers

IGMP Internet Group Message Protocol

iMana Integrated Management

IOPS input/output operations per second

IP Internet Protocol

IPC Intelligent Power Capability

IPMB Intelligent Platform Management Bus

IPMI Intelligent Platform Management Interface

K

KVM keyboard video and mouse

L

LC Lucent Connector

LDIMM local dual in-line memory module

LED light emitting diode

LOM LAN on motherboard

M

MAC Media Access Control

N

NBD next business day

NC-SI Network Controller Sideband Interface

MMC module management controller

P

PCIe Peripheral Component Interconnect Express

PHY physical layer

PMBUS Power Management Bus

POK power OK

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A

PWM pulse-width modulation

PXE Preboot Execution Environment

Q

QPI QuickPath Interconnect

R

RAID redundant array of independent disks

RAS Reliability, Availability, and Serviceability

RDIMM registered dual in-line memory module

REACH Registration Evaluation and Authorization of Chemicals

RJ45 Registered Jack 45

RoHS Restriction of the Use of Certain Hazardous Substances in Electrical

and Electronic Equipment

S

SAS Serial Attached Small Computer System Interface

SATA Serial Advanced Technology Attachment

SCM Supply Chain Management

SDDC Single Device Data Correction

SERDES Serializer/Deserializer

SGMII Serial Gigabit Media Independent Interface

SMI Serial Management Interface

SMTP Simple Mail Transfer Protocol

SM_CLP Server Management Command Line Protocol

SNMP Simple Network Management Protocol

SOL Serial over LAN

SONCAP Standards Organization of Nigeria—Conformity Assessment

Program

SSD solid-state drive

SSE Streaming SIMD Extension

T

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A

TACH Tachometer signal

TBT Turbo Boost Technology

TCG Trusted Computing Group

TCO total cost of ownership

TDP Thermal Design Power

TELNET Telecommunication Network Protocol

TET Trusted Execution Technology

TFTP Trivial File Transfer Protocol

TOE TCP offload engine

TPM Trusted Platform Module

U

UDIMM unbuffered dual in-line memory module

UEFI Unified Extensible Firmware Interface

UID unit identification light

UL Underwriter Laboratories Inc.

USB Universal Serial Bus

V

VCCI Voluntary Control Council for Interference by Information

Technology Equipment

VGA video graphics array

VLAN virtual local area network

VRD voltage regulator-down

W

WEEE Waste Electrical and Electronic Equipment

WSMAN Web Service Management