SUPER MICRO Computer 5013C-M8 Choosing a Setup Location, Rack Precautions, Server Precautions

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SUPERSERVER 5013C-M8 User's Manual

Choosing a Setup Location

-Leave enough clearance in front of the rack to enable you to open the front door completely (~25 inches).

-Leave approximately 30 inches of clearance in the back of the rack

to allow for sufficient airflow and ease in servicing.

! Warnings and Precautions! !

Rack Precautions

-Ensure that the leveling jacks on the bottom of the rack are fully extended to the floor with the full weight of the rack resting on them.

-In a single rack installation, stabilizers should be attached to the rack.

-In multiple rack installations, the racks should be coupled together.

-Always make sure the rack is stable before extending a component from the rack.

-You should extend only one component at a time - extending two or more simultaneously may cause the rack to become unstable.

Server Precautions

-Review the electrical and general safety precautions in Chapter 4.

-Determine the placement of each component in the rack before you install the rails.

-Install the heaviest server components on the bottom of the rack first, and then work up.

-Use a regulating uninterruptible power supply (UPS) to protect the

server from power surges, voltage spikes and to keep your system operating in case of a power failure.

-Allow the power supply units and hot plug SCSI drives to cool before touching them.

-Always keep the rack's front door and all panels and components on the servers closed when not servicing to maintain proper cooling.

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Contents Super Page Manual Organization PrefaceAbout This Manual System Safety Advanced Motherboard SetupAdvanced Chassis Setup BiosPreface Table of Contents System Safety Advanced Motherboard SetupAdvanced Chassis Setup BiosAppendices Page Chapter Introduction OverviewMotherboard Features Chipset OverviewMemory Controller Hub MCH Controller Hub 6300ESBProcessors Memory Scsi SubsystemPCI Expansion Slots Ethernet PortsOther Features MCHServer Chassis Features System PowerControl Panel Rear I/O PanelCooling System Rear I/O PanelContacting Supermicro HeadquartersEurope Asia-PacificPage Unpacking the SuperServer 5013C-M8 Chapter Server InstallationPreparing for Setup Server Precautions Choosing a Setup LocationRack Precautions Rack Mounting Considerations Identifying the Sections of the Rack Rails Installing the 5013C-M8 into a RackInstalling the Rear Inner Rails Installing the Rack Rails Installing Rear Inner Chassis RailsInstalling the Server into the Rack Installing the Server into a Telco Rack Checking the Motherboard Setup Accessing the inside of the 5013C-M8 FigureAccessing the Inside of the SuperServer 5013C-M8 Checking the Drive Bay Setup Accessing the drive baysChapter System Interface Control Panel ButtonsControl Panel LEDs Scsi Drive Carrier LEDs Page Chapter System Safety Electrical Safety PrecautionsGeneral Safety Precautions ESD Precautions Operating Precautions Handling the P4SC8 Motherboard Chapter Advanced Motherboard SetupPrecautions Motherboard Installation UnpackingConnecting Cables Connecting Data CablesConnecting Power Cables Connecting the Control PanelControl Panel Header Pins I/O PortsInstalling Processors Pin Socket Empty and with Processor Installed Installing Memory Installing memory modulesAdding PCI Cards Memory SpeedsMotherboard Details UperP4SC8 Quick Reference Jumpers Description Default SettingConnectors Description Connector Definitions Power Supply ConnectorsIR Connector GLAN1/2 Ethernet PortsOverheat LED OH Pwon ConnectorReset Connector Fan Headers Power On LEDSerial Ports Universal Serial Bus USB Chassis IntrusionATX PS/2 Keyboard and PS/2 Mouse Ports Wake-On-LAN Wake-On-RingCmos Clear Jumper SettingsExplanation Jumpers Keyboard Wake-Up Front Side Bus SpeedUSB Wake-Up Watch Dog Enable/Disable Scsi Enable/DisableVGA Enable/Disable Keylock Enable/DisableSystem Power Force On OH Fan Force Power OnGLAN2 Enable/Disable Speaker JumperParallel Port Connector Parallel Port, Scsi and IDE Drive ConnectionsIDE Connectors IDE Connector Pin Definitions J2, J5Ultra320 Scsi Connectors Pin U ltra320 SC SIC onnectors JA 1,JAInstalling the Operating System and Software New Operating System-Windows XP InstallationDriver/Tool Installation Display Screen Tools Required Chapter Advanced Chassis SetupStatic-Sensitive Devices Control Panel Chassis Front ViewDrive Bay Installation/Removal System FansSystem Fan Failure Removing the Front BezelAccessing the Drive Bays Scsi Drive InstallationInstalling/removing hot-swap Scsi drives CD-ROM Drive Installation Replacing the Power Supply Power SupplyPower Supply Failure Page System Bios How To Change the Configuration DataStarting the Setup Utility ChapterMain Bios Setup Menu Running SetupMain Bios Setup Access Mode Date/TimeLegacy Diskette a Legacy Diskette BAdvanced Bios Setup Advanced Bios FeaturesQuick Boot Quiet BootApic Mode Acpi FunctionAdvanced Chipset Control 3 I/O Device Configuration Uart Mode Select IR Transmission DelayUR2 Duplex Mode Use IR PinsPnP Configuration Console Redirection Hardware Monitor Agent after BootCPU Warning Temperature Processor & Clock Options Set Supervisor Password Set User PasswordPassword Check SecurityBoot Hard Disk Boot PriorityCdrom Boot Priority First Boot DeviceExit Discard Changes Load Fail-Safe DefaultsLoad Optimized Defaults Appendix a Bios Post Messages Page Appendix B Bios Post Codes Post hex DescriptionPost hex Description Appendix B Bios Post Codes Post hex Description Appendix B Bios Post Codes Page Appendix C System Specifications Weight Power SupplySystem Cooling System Input Requirements

5013C-M8 specifications

Super Micro Computer 5013C-M8 is an enterprise-grade server chassis designed to provide robust performance, scalability, and reliability for a wide range of applications, including virtualization, cloud computing, and large-scale data processing. Its compact 1U form factor makes it an ideal choice for data centers and businesses looking to optimize space without compromising on power or functionality.

One of the standout features of the 5013C-M8 is its versatile support for multiple Intel Xeon Scalable processors. This allows users to select processors that best fit their workload requirements, ranging from single-socket configurations for smaller applications to dual-socket setups for more demanding tasks. With the capability to support up to 512 GB of DDR4 memory, the chassis allows for high memory bandwidth and capacity, which is crucial for memory-intensive applications.

The Super Micro 5013C-M8 is engineered with a high-performance thermal management system. It comes equipped with multiple hot-swappable fans that ensure optimal airflow and cooling, which is essential for maintaining system stability and longevity under heavy loads. Furthermore, the chassis supports redundant power supplies, enhancing reliability by ensuring that downtime is minimized even in the event of a power supply failure.

Storage capabilities in the 5013C-M8 are expansive, featuring support for a combination of SATA, SAS, and NVMe drives. This flexibility allows organizations to tailor their storage solutions to meet specific performance and capacity needs, from traditional hard drives to cutting-edge SSDs for high-speed data access.

In terms of connectivity, the 5013C-M8 is fitted with multiple PCIe slots. This enables users to add a variety of expansion cards, including high-speed networking cards, GPUs for AI and machine learning applications, or additional storage controllers. This modularity ensures that the chassis can evolve alongside the business, adapting to new technologies and requirements as they arise.

Moreover, Super Micro emphasizes security and management features in the 5013C-M8. It offers a dedicated management interface that supports IPMI, allowing for remote monitoring and management of system health and performance metrics. This functionality is crucial for administrators looking to maintain and troubleshoot servers without needing physical access to the hardware.

In summary, the Super Micro Computer 5013C-M8 stands out for its reliable build quality, expansive scalability, and a versatile feature set, making it an excellent choice for organizations looking to invest in a powerful and adaptable server chassis capable of meeting modern computing demands.