Intel SHG2 manual Memory

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Installing or removing jumpers: A jumper is a small plastic encased conductor that slips over two jumper pins. Some jumpers have a small tab on top that you can grip with your fingertips or with a pair of fine needle nosed pliers. If your jumpers do not have such a tab, take care when using needle nosed pliers to remove or install a jumper; grip the narrow sides of the jumper with the pliers, never the wide sides. Gripping the wide sides can damage the contacts inside the jumper, causing intermittent problems with the function controlled by that jumper. Take care to grip with, but not squeeze, the pliers or other tool you use to remove a jumper, or you may bend or break the stake pins on the board.

Memory

The SHG2 Server Board contains six 184-pin DIMM sockets. Memory is partitioned as three banks. DIMMs must be populated in identical pairs.

The SHG2 server board supports up to six 2.5 V, ECC, DDR 200 or 266-compliant, registered SDRAM 184-pin gold DIMMs. A wide range of DIMM sizes are supported, including 128 MB, 256 MB, 512 MB, 1 GB, and 2 GB DIMMs. The minimum supported memory configuration is 256 MB, using two identical 128 MB DIMMs. The maximum configurable memory size is 12 GB using six 2 GB DIMMs.

The SDRAM interface runs at 200 MHz; however 266 MHz memory can be used. The memory controller supports 2-way interleaved SDRAM, memory scrubbing, single-bit error correction and multiple-bit error detection with Chipkill capability that allows the system to continue to run even in the event of a multi-bit SDRAM failure. Memory can be implemented with either single-sided (one row) or double-sided (two row) DIMMs.

NOTE

Use DIMMs that have been tested for compatibility with the server board. Contact your sales representative or dealer for a current list of approved memory modules. Check the Intel Customer Support website for the latest tested memory list:

http://support.intel.com/support/motherboards/server/SHG2

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Intel Server Board SHG2 Product Guide

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Contents Intel Server Board SHG2 Product Guide Disclaimer Contents Configuration Software and Utilities UpgradingRegulatory and Integration Information Solving ProblemsTechnical Reference Equipment Log Worksheet IndexTables Viii Server Board Features DescriptionBack Panel Connectors FG HServer Board Connector and Component Locations CC BB AA KK LL WV U T S RProcessor MemoryAdd-in Board Connectors VideoScsi Controller IDE ControllerModular RAID Capable PCI-X Slot USB InterfaceNetwork Teaming Features Network ControllersAdapter Fault Tolerance Adaptive Load BalancingSecurity with Mechanical Locks and Monitoring Keyboard and MouseSecurity Using Passwords Software LocksSecure Mode Summary of Software Security FeaturesDescription Server Board Installation Safety CautionsTools and Supplies Needed Before You BeginSafety and Regulatory Compliance Power SupplyMinimum Hardware Requirements ProcessorInstalling the I/O Gasket and Shield Installation NotesInstallation Procedures Attaching the Gasket to the I/O Shield Attaching the Label to the I/O ShieldInstalling the I/O Shield Installing the I/O ShieldInstalling Memory Dimm LocationsConfiguring Chassis Standoffs Installing MemoryInstalling the Server Board Placing the Server Board in the ChassisInstalling the Processors Installing the Retention BracketsOpening Socket Lever and Attaching Processor Apply thermal grease to the processor as shown Installing the Processor Wind Tunnel Attaching the Heat Sink and Retention ClipAttaching the Wind Tunnel Assembly Attaching the Wind Tunnel Intake and Exhaust Making Connections to the Server Board II JJ CC BBIntel SC5200 Hot-Swap, Redundant Power Server Chassis Note Cable Routing Intel SC5200 Base ChassisIntel SC5200 Base Server Chassis Note IDE or Scsi CablesCable Routing Intel SC5200 Hot-Swap, Redundant Power Chassis Floppy and Front Panel CablesInstalling the Serial B Cable Installing the Serial B CableFinishing Up Making Back Panel ConnectionsInstalling a Service Partition on the Server Optional Select Format Service Partition and Install SoftwareInstalling your Operating System Installing Intel Server ManagementInstalling Intel SMaRT Tool Make a Selection drop-down menu, select Install SMaRT ToolUpgrading Memory Processors Adding or Replacing a Processor Opening Socket Lever and Attaching Processor Apply thermal grease to the processor as shown Installing the Processor Wind Tunnel Attaching the Heat Sink Fan to the Air Intake Assembly Attaching the Wind Tunnel Intake and Exhaust Replacing the Backup Battery Removing a ProcessorReplacing the Back up Battery Intel Server Board SHG2 Product Guide Configuration Software and Utilities Hot KeysPower-On Self-Test Post Using Bios Setup Record Your Setup SettingsIf You Cannot Access Setup Starting SetupUsing the System Setup Utility Creating SSU DiskettesRunning the SSU Working with the GUISetting Boot Device Priority Setting Passwords and Security OptionsCustomizing the SSU Interface Exiting the SSUSetting Security Options Setting the Admin PasswordSetting the User Password Viewing the System Event Log Viewing FRU InformationViewing Sensor Data Records Updating System Firmware and BiosUpdating the Bios Saving and Restoring the System Configuration Saving a ConfigurationUpdating the Firmware Verifying the FirmwareRestoring a Configuration Setting Up Email AlertsSetting Up Paging Alerts Alerting for Platform EventsSetting Up LAN Alerts From the Options menu, choose Configure Event ActionsSetting Up Remote LAN Access Managing the Server RemotelySetting Up Remote Modem or Serial Access What You Need to Do When to Run the Frusdr Load UtilityFrusdr Load Utility Command Line Format Parsing the Command LineHow You Use the Frusdr Load Utility Displaying Usage InformationUsing Specified CFG File Displaying SM Bios AreaUpdating the SDR Nonvolatile Storage Area Upgrading the Bios Preparing for the UpgradeRecording the Current Bios Settings Obtaining the Upgrade UtilityUpgrading the Bios Creating the Bios Upgrade DisketteRecovering the Bios Changing the Bios LanguageUsing the Firmware Update Utility Making a BMC Firmware Update DisketteMaking the Update Diskette Bootable Updating the BMC FirmwareRecovering the BMC Firmware Making a FRU/SDR File Update DisketteUpdating the FRU/SDR Files Updating the FRU/SDR FilesUsing the Adaptec Scsi Utility Running the Scsi UtilitySolving Problems Resetting the SystemChecklist Initial System StartupRunning New Application Software After the System Has Been Running CorrectlyMonitoring Post More Problem Solving ProceduresPreparing the System for Diagnostic Testing Specific Problems and Corrective Actions Power Light Does Not LightVerifying Proper Operation of Key System Lights Confirming Loading of the Operating SystemNo Characters Appear on Screen Characters Are Distorted or IncorrectHard Disk Drive Activity Light Does Not Light System Cooling Fans Do Not Rotate ProperlyDiskette Drive Activity Light Does Not Light Cannot Connect to a Server Problems with NetworkCD-ROM Drive Activity Light Does Not Light PCI Installation Tips Problems with Application SoftwareBootable CD-ROM Is Not Detected Getting Help World Wide Web TelephoneIntel Server Board SHG2 Product Guide Technical Reference Server Board JumpersConfiguration Jumper CN27 Enabling PCI-X on Slot 6 and Disabling On-board ScsiProduct Safety Compliance Regulatory and Integration InformationProduct Regulatory Compliance Product EMC ComplianceProduct Regulatory Compliance Markings Electromagnetic Compatibility Notices FCC USAEurope CE Declaration of Conformity Taiwan Declaration of ConformityKorean RRL Compliance Australia / New ZealandEquipment Log Worksheet Equipment LogEquipment Log Bios IndexPCI Raidios 100 Intel Server Board SHG2 Product Guide

SHG2 specifications

Intel SHG2, short for Server High-Performance GPU 2, represents a significant evolution in graphics technology designed to meet the demanding requirements of data centers and high-performance computing applications. Developed to support a range of workloads, SHG2 is particularly optimized for artificial intelligence, machine learning, and data analytics.

One of the defining features of the Intel SHG2 is its impressive processing power. With numerous cores capable of parallel processing, it can execute multiple tasks simultaneously, leading to faster computation times. This architecture makes it incredibly efficient for applications that require heavy calculations and real-time data processing.

The SHG2 also embraces advanced fabrication technologies, moving to smaller nodes that enhance power efficiency while delivering higher performance. These innovations not only allow for improved thermal management but also contribute to the reduction of overall energy consumption, making the SHG2 a more environmentally friendly choice for server operations.

In terms of memory support, the SHG2 offers a robust configuration, accommodating high-bandwidth memory (HBM) that ensures quick access to critical data. This feature is essential for applications needing rapid data retrieval and integration, such as deep learning models where every millisecond counts.

Moreover, the SHG2 is built with compatibility in mind. It integrates seamlessly with existing Intel architectures, allowing organizations to leverage their current investments while upgrading their processing capabilities. This compatibility makes it easier for businesses to enhance their infrastructure without undergoing a complete overhaul of their systems.

Another salient characteristic of the Intel SHG2 is its support for virtualization. This allows multiple workloads to be handled simultaneously on a single GPU, maximizing resource utilization and enhancing overall system performance. As enterprises increasingly adopt cloud-based solutions, the ability to virtualize GPU resources becomes critical.

Security is also a major consideration in the design of the SHG2. Intel has incorporated various security features to ensure that data is protected against unauthorized access and vulnerabilities that could threaten system integrity.

As businesses increasingly turn to AI and machine learning to drive innovation, the Intel SHG2 positions itself as an essential tool for those looking to harness the power of advanced computing. With its impressive features, powerful performance, and forward-thinking design, is a strategic choice for organizations aiming to enhance their computational capabilities and meet the challenges of tomorrow's technological landscape.