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华为应用服务器RH2288H V3技术白皮书

华为应用服务器RH2288H V3技术白皮书
华为应用服务器RH2288H V3技术白皮书

Huawei FusionServer RH2288H V3 White Paper

Issue06

Date2016-10-31

Copyright ? Huawei Technologies Co., Ltd. 2016. 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:https://www.sodocs.net/doc/9318911204.html,

White Paper Contents

Contents

1 Overview (1)

2 Features (3)

3 Logical Architecture (6)

4 Hardware Description (7)

4.1 Appearance (7)

4.2 Ports (15)

4.3 Indicators and Buttons (16)

4.4 Physical Structure (19)

5 Technical Specifications (26)

6 Component Compatibility (34)

6.1 Processor (34)

6.2 Memory (37)

6.3 Storage (44)

6.4 I/O Expansion (51)

6.5 PSU (69)

6.6 OS and Software (70)

7 System Management (76)

8 Warranty (78)

9 Physical Specifications (79)

10 Certifications (82)

1 Overview The Huawei RH2288H V3 is a

2 U dual-socket rack server. This multipurpose server is designed in response to customer requirements for Internet, Internet data center, cloud computing, enterprise, and telecom service applications.

The RH2288H V3 features high-performance computing, large storage capacity, low power consumption and high scalability and reliability. It supports virtualization and is easy to deploy and manage. It is ideal for basic enterprise applications, telecom services, and storage services, such as distributed storage, data mining, electronic albums, and videos.

The RH2288H V3 supports the following hard disk configurations:

l Eight front 2.5-inch hard disks

Eight front 2.5-inch SAS HDDs, SATA HDDs, or SSDs, with one SAS card or SAS

RAID controller card

l Eight front 3.5-inch hard disks

Eight front 3.5-inch SAS HDDs, SATA HDDs, or SSDs, with one SAS card or SAS

RAID controller card

The hard disks can also be connected through the Intel chipset (PCH).

If SATA HDDs are used, the SATA HDDs can be connected to the platform controller hub (PCH) instead of being connected to a RAID controller card. The RH2288H V3

server supports an optional SoftRAID license and SoftRAID 0, 1, and 5. The server with SoftRAID configuration does not support installation of a virtualization OS.

If you have any questions about the hard disk configuration, contact your local Huawei sales

representatives.

l Twelve front 3.5-inch hard disks

Twelve front 3.5-inch SAS HDDs, SATA HDDs, or SSDs, with one SAS card or SAS RAID controller card, and four optional rear 3.5-inch SAS or SATA HDDs or 2.5-inch SAS HDDs, SATA HDDs, or SSDs

l Twelve front hard disks

Twelve front hard disks, including a maximum of four front NVMe PCIe SSDs. To

support SAS HDDs, SATA HDDs, and SSDs, the server must be configured with a SAS card or SAS RAID controller card. A server without NVMe PCIe SSDs supports a

maximum of twelve front 3.5-inch SAS HDDs, SATA HDDs, and SSDs.

l Twelve front 3.5-inch hard disks

A server without NVMe PCIe SSDs supports a maximum of twelve front 3.5-inch SAS

HDDs, SATA HDDs, and SSDs

Eight to twleve front NVMe PCIe SSDs. The server can be configured with a SAS card or SAS RAID controller card.

The hard disks can also be connected through the Intel chipset (PCH).

2.5-inch SAS HDDs, SATA HDDs, or SSDs can be installed in NVMe PCIe SSD slots.

l Twenty-four front 2.5-inch hard disks

Twenty-four front 2.5-inch SAS HDDs, SATA HDDs, or SSDs, with one SAS card or SAS RAID controller card for every eight hard disks and a maximum of three SAS cards or SAS RAID controller cards for the server

l Twenty-five front 2.5-inch hard disks

Twenty-five front 2.5-inch SAS HDDs, SATA HDDs, or SSDs, with one SAS card or SAS RAID controller card, and three optional rear 3.5-inch SAS or SATA HDDs or 2.5-inch SAS HDDs, SATA HDDs, or SSD.

SAS HDDs, SATA HDDs, or SSDs can be installed in some of the NVMe PCIe SSD slots.

Figure 1-1 shows an RH2288H V3 server.

Figure 1-1 RH2288H V3

2 Features

Performance and Scalability

An RH2288H V3 supports up to two Intel? Xeon? E5-2600 v3 processors, 36 cores, and 72

threads, or two Intel? Xeon? E5-2600 v4 processors, 44 cores, and 72 threads, which

maximizes the concurrent execution of multithreaded applications.

l Each Intel? Xeon? E5-2600 v3 processor has up to 18 cores, 3.5 GHz frequency, one L3 cache of 45 MB, and two 9.6 GT/s QuickPath Interconnect (QPI) link pairs between

processors.

l Each Intel? Xeon? E5-2600 v4 processor has up to 22 cores, 3.5 GHz frequency, one L3 cache of 55 MB, and two 9.6 GT/s QuickPath Interconnect (QPI) link pairs between

processors.

l Intel Hyper-Threading technology enables each processor core to run up to two threads, improving parallel computing performance.

l Intel Turbo Boost Technology 2.0 allows processor cores to run faster than the frequency specified in the Thermal Design Power (TDP) configuration if they are operating below

power, current, and temperature specification limits.

l The RH2288H V3 supports Peripheral Component Interconnect Express (PCIe) 3.0 to

provide 60% higher I/O bandwidth (8 Gbit/s) than PCIe 2.0 (5 Gbit/s).

l Intel integrated I/O enables the PCIe 3.0 controller to be integrated into the Intel? Xeon?E5 series processors. This shortens I/O latency and improves overall system

performance.

The RH2288H V3 provides flexible memory and hard disk configurations to meet storage and

upgrade requirements.

l The RH2288H V3 supports double data rate 4 (DDR4) registered DIMMs (RDIMMs)

and load-reduced DIMMs (LRDIMMs). An RH2288H V3 fully configured with twenty-

four 2400MT/s RDIMMs or LRDIMMs provides 1536 GB of memory space. The

maximum theoretical memory bandwidth is 136.5 GB/s. In addition, error checking and

correcting (ECC) technology ensures high DIMM availability.

l The RH2288H V3 supports hard disk drive (HDD) and solid state drive (SSD) disks. An SSD supports up to 100 times more I/O operations per second (IOPS) than a typical

HDD. The use of all SSDs provides higher I/O performance than the use of all HDDs or

a combination of HDDs and SSDs.

The RH2288H V3 supports a built-in or plug-in NIC, which provides a variety of network

ports.

Hardware-assisted Intel? Virtualization Technology (Intel? VT) allows operating system (OS)

vendors to better use hardware to address virtualization workloads.

Intel Advanced Vector Extensions 2.0 (A VX 2.0) improves floating-point computing

performance for computing-intensive applications.

Availability and Serviceability

The following features make the RH2288H V3 more available and serviceable:

l Manufactured using carrier-class components.

l Hot-swappable SATA HDDs, SAS HDDs, or SSDs. The SSDs are more reliable than

HDDs, ensuring uninterrupted system performance.

l Support for RAID 0, 1, 1E, 10, 5, 50, 6, and 60, and a RAID cache. A supercapacitor

protects cache data from power failures.

l Huawei proprietary intelligent baseboard management system (iBMC) monitors system parameters in real time, triggers alarms, and performs failure recovery, minimizing

system downtime.

l Simplified O&M and efficient troubleshooting through:

–UID and HLY indicators on the front panel

–Fault diagnosis LED

–Touch LCD diagnosis panel

–iBMC web user interface (WebUI)

Manageability and Security

The following features make the RH2288H V3 more manageable and secure:

l Built-in iBMC monitors server operating status and allows remote management.

l Integrated Unified Extensible Firmware Interface (UEFI) improves setup, configuration, and update efficiency and simplifies fault handling.

l Optional Trusted Platform Module (TPM) provides advanced encryption functions,

including digital signatures and remote authentication.

l Advanced Encryption Standard–New Instruction (AES NI) allows faster and stronger

encryption.

l Lockable server chassis panel ensures security of local data.

l Chassis opening events are logged for security purposes.

l Intel Execute Disable Bit function to prevent certain types of malicious buffer overflow attacks when working with a supported OS.

l Intel Trusted Execution Technology enhances security using hardware-based defense

against malicious software attacks, allowing applications to run independently.

l Network Controller Sideband Interface (NC-SI) gives a network port both management and service port functions for maximized customer return on investment (ROI).

The NC-SI feature is disabled by default and can be enabled through the iBMC WebUI or basic input/

output system (BIOS). The service network port with NC-SI enabled supports the following

configurations:

l Bound to a network port on the onboard NIC or on any network port of the subboard installed on the server. By default, the service network port is bound to host network port 1.

l Enabling, disabling, and configuring a virtual local area network (VLAN) ID. The VLAN ID is 0

and disabled by default.

l IPv4 and IPv6 addresses are supported. You can set an IPv4 address, subnet mask, and gateway IP

address, or IPv6 address prefix length for the service network port.

Energy Efficiency

The following features make the RH2288H V3 conserve more energy:

l80 Plus Platinum power supply units (PSUs) of multiple power ratings provide 94%

power efficiency at 50% load.

l V oltage regulator-down (VRD) power supplies for boards minimize energy loss from

DC/DC power conversion.

l Improved thermal design, area-based and Proportional-Integral-Derivative (PID)

intelligent fan speed adjustment, and intelligent CPU frequency adjustment optimize heat

dissipation and reduce overall system power consumption.

l Intel? Intelligent Power Capability allows a processor to be powered on or off based on service requirements.

l Power capping and power control functions.

l Use of innovative components:

–Intel? Xeon? E5-2600 v3 processors and Intel? Xeon? E5-2600 v4 processors

perform better than the previous-generation Intel? Xeon? processors while fitting

into the same TDP. Low-voltage Intel? Xeon processors consume less energy,

ideally suited for data centers and telecommunications environments constrained by

power and thermal limitations.

–SSDs consume 80% less power than HDDs. In addition, hard disks can be powered

on at different times to reduce startup power consumption.

– 1.2 V DDR4 RDIMMs consume 20% less energy than 1.5 V DDR3 RDIMMs. Customization Support

The Huawei proprietary RH2288H V3 supports customization timed to customer needs.

3

Logical Architecture

Figure 3-1 shows the components of the RH2288H V3 that provide the software services necessary for its rich functionality.

At the heart of the server are two Intel? Xeon? E5-2600 v3 (Haswell-EP) or E5-2600 v4(Broadwell-EP) series processors and 24 DDR4 DIMMs. The processors are connected by QPI links at 9.6 GT/s.

Each processor connects to two PCIe riser cards to provide ease of expandability and connection.

The RAID controller card and hard disk backplane form a hard disk interface module, which connects to the processors through PCIe connectors.Figure 3-1

RH2288H V3 logical architecture

White Paper

3 Logical Architecture

4 Hardware Description

4.1 Appearance

Front Pane

Figure 4-1 shows the front panel of an RH2288H V3 with eight 3.5" hard disks.

Figure 4-1

Front panel of an RH2288H V3 with eight 3.5" front hard disks

1Fault diagnosis LED2Health status indicator

3UID button/indicator4Power button/indicator

5VGA port6NMI button

7Customizable label8Built-in DVD-ROM drive or

touch LCD diagnosis panel

9Hard disks (slots numbered 0 to 7

from top to bottom and from left

to right)

10Hard disk fault indicator

11Hard disk active indicator12USB 2.0 port

13Network port link status indicators 414Network port link status

indicators 3

15Network port link status indicators 216Network port link status

indicators 1

Figure 4-2 shows the front panel of an RH2288H V3 with twelve 3.5" hard disks.

Figure 4-2 Front panel of an RH2288H V3 with twelve 3.5" front hard disks

1Fault diagnosis LED2Health status indicator

3UID button/indicator4Power button/indicator

5Customizable label6Hard disks (numbered 0 to 11 from

top down and from left to right)

7Hard disk fault indicator8Hard disk active indicator

9USB 2.0 port10Network port link status indicators

4

11Network port link status indicators 312Network port link status indicators 2

13Network port link status indicators

1

––

Figure 4-3 shows the front panel of the RH2288H V3 with twelve 3.5-inch hard disks, including four NVMe PCIe SSDs.

Figure 4-3 Front panel of the RH2288H V3 with twelve 3.5-inch hard disks, including four NVMe PCIe SSDs

1Fault diagnosis LED2Health indicator

3UID button/indicator4Power button/indicator

5NVMe PCIe SSD yellow

indicator

6NVMe PCIe SSD green indicator

7Label (including ESN label)8

NVMe PCIe SSDs (numbered 8 to 11from left to right and from top to

bottom)

9

Hard disks (numbered 0 to 7 from top to bottom and from left to right)

10

Hard disk fault indicator

11Hard disk active indicator 12USB 2.0 port

13Network port link status indicators 4

14Network port link status indicators 315Network port link status indicators 2

16

Network port link status indicators 1

Figure 4-4 shows the front panel of an RH2288H V3 with eight to twelve NVMe PCIe SSDs.Figure 4-4 Front panel of an RH2288H V3 with eight to twelve NVMe PCIe SSDs

1Fault diagnosis LED 2Health indicator 3UID button/indicator 4Power button/indicator

5NVMe PCIe SSD yellow indicator

6NVMe PCIe SSD green indicator 7Label (including the ESN label)8NVMe PCIe SSDs (numbered 4 to 11from top to bottom and from left)9

Hard disks (supporting SSDs,SAS HDDs, SATA HDDs, and NVMe PCIe SSDs; numbered 0to 3 from top to bottom and from left to right)

10

Hard disk fault indicator or NVMe PCIe SSD yellow indicator

11Hard disk activity indicator or NVMe PCIe SSD green indicator 12USB 2.0 port

13Network port link status indicators 4

14Network port link status indicators 315

Network port link status indicators 2

16

Network port link status indicators 1

Figure 4-5 shows the front panel of an RH2288H V3 with eight 2.5" hard disks.

Figure 4-5 Front panel of an RH2288H V3 with eight 2.5" front hard disks

1Fault diagnosis LED2Health status indicator

3UID button/indicator4Power button/indicator

5VGA port6NMI button

7Customizable label8Built-in DVD-ROM drive or touch

LCD diagnosis panel

9Hard disks (numbered 0 to 7 from

left to right)

10USB 2.0 port

11Network port link status indicators 412Network port link status indicators 3

13Network port link status indicators 214Network port link status indicators 1

15Hard disk fault indicator16Hard disk activity indicator

Figure 4-6 shows the front panel of an RH2288H V3 with twenty-five 2.5" hard disks. Figure 4-6 Front panel of an RH2288H V3 with twenty-five 2.5" front hard disks

1Fault diagnosis LED2Health status indicator

3UID button/indicator4Power button/indicator

5Customizable label6Hard disks (numbered 0 to 24

from left to right)

7USB 2.0 port8Network port link status indicators

4

9Network port link status

indicators 310Network port link status indicators 2

11Network port link status

indicators 1

12Hard disk fault indicator

13Hard disk activity indicator––

Figure 4-7 shows the front panel of an RH2288H V3 with twenty-four 2.5" hard disks.

Figure 4-7 Front panel of an RH2288H V3 with twenty-four 2.5" front hard disks

1Fault diagnosis LED2Health indicator

3UID button/indicator4Power button/indicator

5NMI button6VGA port

7Label (including the ESN label)8Hard disks (numbered 0 to 23 from left to

right)

9USB 2.0 port10Network port link status indicators 4

11Network port link status

indicators 3

12Network port link status indicators 2

13Network port link status

indicators 1

14Hard disk fault indicator

15Hard disk activity indicator––

Rear Panel

Figure 4-8 shows the rear view of an RH2288H V3.

Figure 4-8 Rear view of an RH2288H V3

1PSU2PSU indicator

3Power socket of a PSU4I/O module 2

5Connection status indicator6Data transmission status

indicator

7Onboard standard PCIe slot8I/O module 1

9NIC10UID indicator

11USB 3.0 port12Management network port

(Mgmt)

13VGA port14Serial port

The slots labeled 4 and 8 can house either I/O modules or 2.5" or 3.5" hard disks.

l An RH2288H V3 equipped with twelve front 3.5" hard disks can house up to four rear

3.5" or 2.5" hard disks.

l An RH2288H V3 equipped with twenty-five front 2.5" hard disks can house up to two rear 2.5" hard disks.

l An RH2288H V3 not equipped with any rear hard disk can house up to two I/O modules.

Each I/O module provides two or three PCIe slots.

PCIe Slot Layout

Figure 4-9 shows the PCIe slot layout of the RH2288H V3.

Figure 4-9 PCIe slot layout

PCIe slots on I/O module 1 and 2

I/O module 1 provides slots 1 to 3, and PCIe riser module 2 provides slots 6 to 8.

I/O module 1 and 2 supports 2-slot PCIe riser module or 3-slot PCIe riser module, but three PCIe slots are always displayed on the panel.

l If I/O module 1 provides two PCIe slots, slot 3 is unavailable.

l If I/O module 2 provides two PCIe slots, slot 8 is unavailable.

Table 4-1 describes the mapping between PCIe slots and CPUs, and the PCIe specifications of the RH2288H V3.

The PCIe slots mapping to a vacant CPU socket are unavailable.

Table 4-1 PCIe slot description

PCIe GPU Configuration Rules

A GPU must be installed on a PCIe riser module.

l A 2-slot PCIe riser module supports a maximum of two single-slot PCIe x16 GPUs (bandwidth of one GPU: x8) or one dual-slot PCIe x16 GPU.

l A 3-slot riser module does not support any GPU.

4.2 Ports

All ports found on an RH2288H V3 are listed in Table 4-2 and Table 4-3.

Table 4-2 Ports on the front panel

Table 4-3 Ports on the server rear

4.3 Indicators and Buttons

Indicators, described with buttons in Table 4-4 and Table 4-6, display the status of the

RH2288H V3.

Table 4-4 Indicators and buttons on the front panel

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