Supermicro X10SRH-CLN4F Server Motherboard - Intel C612 Chipset - Socket LGA 2011-v3 - ATX

SupermicroSKU: 4187655

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Sale price$794.14

Description

Supermicro X10SRH-CLN4F Server Motherboard – Dual Xeon E5, Intel C612, ATX

The Supermicro X10SRH-CLN4F is a high-performance server motherboard designed to deliver scalable, reliable compute for demanding workloads. Built on Intel’s C612 chipset with LGA 2011-v3 (Socket R3) support, this ATX motherboard targets dual-processor configurations that power virtualization, data analytics, HPC, and data center tasks. It combines robust power delivery, extensive expansion options, and enterprise-grade management to meet the needs of modern workloads that require headroom for growth, redundancy, and uptime. Whether you’re building a dense virtualization cluster, a heavy-duty database server, or a research workstation, the X10SRH-CLN4F is engineered to optimize throughput while controlling total cost of ownership.

  • Dual Socket LGA 2011-v3 configuration: Supports two Intel Xeon E5-2600 v3 family processors (Haswell-EP) to deliver exceptional multi-core performance and parallel processing power for virtualization, AI inference, and compute-intensive workloads.
  • Intel C612 chipset for enterprise reliability: Optimizes memory bandwidth and I/O throughput while maintaining solid platform stability and compatibility with a wide ecosystem of components.
  • DDR4 ECC memory and multi-channel access: Designed for server-grade memory reliability with ECC support and multiple memory channels per CPU, enabling large memory footprints and improved error detection/correction in mission-critical applications.
  • Extensive I/O and expansion options: A rich set of PCIe 3.0 expansion slots, multiple SATA/NVMe storage options, and flexible LAN configurations to tailor the board to virtualization, storage, and acceleration workloads.
  • Remote management and enterprise features: Built-in management capabilities (IPMI/remote console) and robust power-designs help administrators deploy, monitor, and maintain servers with minimal on-site intervention.

Technial Details of Supermicro X10SRH-CLN4F Server Motherboard

  • CPU Sockets: Dual LGA 2011-v3 (Socket R3) designed for Intel Xeon E5-2600 v3 family processors.
  • Chipset: Intel C612, optimized for dual-processor configurations and high memory bandwidth.
  • Memory: DDR4 ECC DIMMs with multi-channel support per socket; capacity and top-end figures depend on installed modules and SKUs.
  • Memory Features: Support for ECC and server-class memory for reliability in virtualization, databases, and compute-intensive workloads.
  • Expansion: Multiple PCIe 3.0 slots for graphics, adapters, NVMe, and accelerator cards (configurations vary by SKU).
  • Storage: SATA 6Gb/s interfaces and options for NVMe/PCIe storage via add-in cards or backplane solutions; RAID possibilities depend on attached controllers.
  • Networking: Onboard Ethernet options with room for additional NICs; supports flexible networking configurations for cloud and data-center environments.
  • Form Factor: ATX motherboard suitable for a wide range of server enclosures and chassis designs.
  • Management: IPMI 2.0-compatible management with remote console and monitoring capabilities for hands-off administration.
  • BIOS/firmware: UEFI BIOS with familiar server-management features and firmware update pathways to keep systems secure and up-to-date.

how to install Supermicro X10SRH-CLN4F

Preparing for installation begins with confirming compatibility across components: ensure your chassis supports the ATX form factor and provides adequate cooling and power supply for dual Xeon configuration. Start by updating to the latest BIOS/firmware to maximize processor support and memory compatibility. If you plan to use DDR4 ECC memory, verify the memory configuration recommendations for dual sockets to maximize bandwidth and stability.

1) Install the CPUs: Power down the system and ground yourself to avoid static discharge. Open the CPU sockets, align the processor with the socket’s notches, and firmly seat the Xeon E5-2600 v3 CPUs. Apply an appropriate amount of thermal interface material and reseat the heatsinks securely to ensure proper cooling.

2) Install memory modules: Following the motherboard’s memory population guidelines, insert ECC DDR4 DIMMs into the correct slots for each CPU. Maintain proper channel and bank configurations to achieve optimized memory bandwidth and reliability. Avoid mixing different memory speeds unless supported by the platform to prevent throttling and instability.

3) Attach essential backplane and I/O: Connect any backplanes, storage controllers, or PCIe expansion cards you plan to use. Route data cables neatly to avoid obstruction of fans and ensure airflow remains unobstructed for cooling efficiency.

4) Connect power and power-on tests: Install the power supply connectors, including 8-pin and 24-pin ATX power connectors as required by your chassis and dual-CPU configuration. Double-check all power connections to prevent boot failures. Power on and enter the BIOS to verify that both CPUs are detected and that memory is recognized in the correct configuration.

5) BIOS configuration: Update to the latest firmware if not preloaded. Configure boot order, enable required virtualization features (Intel VT-x/VT-d), memory timing profiles, and any RAID or storage controller settings. Save changes and exit to boot into your chosen OS installer.

6) Install operating system and drivers: Install your preferred server OS (Windows Server, a Linux distribution, or specialized virtualization platforms). After installation, apply system drivers for chipset, storage controllers, NICs, and management interfaces to ensure full functionality and performance.

7) Enable management and monitoring: If IPMI or a dedicated management port is available, configure it for remote administration. Set up alerting for thermal, power, and hardware faults to minimize downtime and accelerate fault isolation.

8) Performance tuning and validation: Run benchmarking and stress tests to validate stability under peak loads. Fine-tune memory profiles, PCIe slot usage, and boot configurations as needed to satisfy your workload requirements.

Carefully following these steps will help you realize the full potential of the X10SRH-CLN4F, ensuring reliable multithreaded performance, scalable memory, and robust management for enterprise-grade workloads. For best results, align the configuration with your virtualization, analytics, or HPC targets and reference the latest product documentation for any SKU-specific notes or limitations.

Frequently asked questions

  • What processors are compatible with the X10SRH-CLN4F? The board is designed for Intel Xeon E5-2600 v3 family processors (Haswell-EP) in dual LGA 2011-v3 sockets. Always verify SKU-specific compatibility with your CPU and BIOS version before purchase.
  • How much memory can I install? The board supports DDR4 ECC memory with multi-channel configurations per socket. Total capacity depends on the number of DIMMs installed, their per-DIMM capacity, and the memory topology recommended by Supermicro for dual-socket configurations.
  • Does it include IPMI for remote management? Yes. The X10SRH-CLN4F features enterprise-grade management capabilities, including IPMI 2.0 support and remote console access to simplify administration of servers in data centers or remote locations.
  • What storage options are available? The board provides SATA 6Gb/s interfaces and support for NVMe/PCIe storage through expansion cards or backplanes. RAID capabilities depend on the installed storage controller or backplane solution.
  • Is this motherboard compatible with standard ATX chassis? Yes. The X10SRH-CLN4F uses the ATX form factor, enabling broad compatibility with a wide range of chassis, power supplies, and cooling solutions designed for dual-processor servers.
  • What kind of expansion slots are available? The motherboard includes multiple PCIe 3.0 expansion slots to accommodate GPUs, accelerators, and network adapters, providing flexibility for virtualization, acceleration, and storage components.

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