Tyan S8232 Server Motherboard - AMD SR5690 Chipset - Socket G34 LGA-1944 - SSI MEB

TyanSKU: 2970577

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Sale price$793.09

Description

Tyan S8232 Server Motherboard - AMD SR5690 Chipset - Socket G34 LGA-1944 - SSI MEB

The Tyan S8232 is engineered for today’s most demanding data centers and enterprise IT environments, delivering a robust foundation that combines performance, upgradeability, and reliability. Built around the AMD SR5690 chipset and a dual-processor socket design, this SSI MEB motherboard is purpose-built for virtualization, HPC workloads, and dense compute tasks. It offers a future‑proof upgrade path while maintaining compatibility with proven AMD Opteron processors, giving administrators a dependable platform that scales with evolving workloads and software ecosystems. Designed for high‑demand deployments, the S8232 emphasizes uptime, manageability, and expansive I/O, making it a compelling choice for server deployments that require continuous operation and aggressive performance headroom.

  • Processor flexibility and chipset synergy: The S8232 is purposefully paired with the AMD SR5690 chipset, delivering optimized I/O throughput and multi‑processor support. With dual CPU sockets enabled for AMD Opteron processors, this motherboard is tailored for compute‑intensive environments where parallel processing, virtualization density, and data‑centric workloads drive productivity. The combination of Socket G34 LGA‑1944 compatibility and the SR5690 architecture translates into a platform capable of handling large, memory‑intensive tasks with predictable performance and stability.
  • Memory architecture and capacity for memory‑heavy workloads: Designed for enterprise memory workflows, the S8232 supports ECC DDR3 memory with multi‑channel pathways to maximize bandwidth and reliability. This memory design enhances data integrity and reduces error rates in long‑running computations, scientific simulations, and virtualized environments. The board’s configurable memory topology enables generous capacity per system, enabling administrators to allocate larger memory footprints for in‑memory databases, in‑memory analytics, and dense virtual machines while maintaining robust error detection and correction capabilities.
  • Expansion and I/O richness for virtualization and storage: The S8232 provides extensive I/O options to accommodate GPUs for acceleration, high‑speed networking, and fast storage controllers. With multiple PCIe expansion slots and dedicated lanes, administrators can attach GPU accelerators, 10GbE/25GbE adapters, and SAS/SATA storage controllers to meet modern virtualization, AI‑inference, and data‑intensive workloads. Integrated storage pathways and optional backplane support deliver flexible storage topologies, enabling efficient hot‑swap drive configurations and scalable I/O performance for applications ranging from VDI to HPC clusters.
  • Reliability, manageability, and serviceability: Enterprise reliability features are a core focus of the S8232. The motherboard supports remote management capabilities, including IPMI/management interfaces, to streamline out‑of‑band administration, monitoring, and firmware updates. Redundant power considerations, robust cooling, and hot‑swap fan support contribute to higher uptime and simplified maintenance in data center environments. The design emphasizes fault tolerance and proactive health monitoring, so administrators can detect issues early and minimize unplanned downtime.
  • Upgrade path, compatibility, and lifecycle value: For data centers planning long‑term investments, the S8232 offers a clear upgrade path within the AMD Opteron ecosystem. The combination of socket G34 compatibility, dual‑CPU support, and PCIe expansion aligns with evolving software demands, virtualization growth, and HPC expansion. This board is well‑suited to organizations seeking a durable platform that can scale with software-defined infrastructure, containerized workloads, and next‑generation virtualization stacks while preserving the integrity of existing AMD investments.

Technical Details of Tyan S8232 Server Motherboard

  • Chipset: AMD SR5690
  • Socket: G34 LGA‑1944
  • Form factor: SSI MEB
  • CPU support: Dual AMD Opteron processors (compatible with AMD Opteron family designed for Socket G34)
  • Memory: DDR3 ECC memory with multi‑channel architecture for data integrity and performance
  • Expansion: Multiple PCIe expansion slots to accommodate GPUs, NICs, storage controllers, and other I/O cards
  • Storage and backplane: Support for SATA/SAS storage interfaces with options for backplane connectivity and hot‑swap drive configurations
  • Management and reliability: IPMI/managed services support for remote administration, health monitoring, and firmware updates; designed with reliability features suitable for 24/7 operation
  • Networking: Onboard networking options with potential for additional NICs to meet high‑throughput networking requirements

How to install Tyan S8232 Server Motherboard

  • Prepare a compatible server chassis that supports SSI MEB form factor and offers adequate airflow and power capacity for dual Opteron configurations.
  • Install the CPU(s) into the G34 LGA‑1944 sockets with care, aligning notches for correct orientation, and apply appropriate thermal interface material before seating the heatsinks.
  • Attach the CPU coolers securely, ensuring good contact and proper mounting hardware. Verify that all fan headers align with the cooling system and that airflow paths are unobstructed for optimal cooling.
  • Insert DDR3 ECC memory modules in the recommended memory channels and slots, following the motherboard’s population guidelines to achieve the desired memory speed and capacity. Confirm that all memory modules are fully seated and recognized by the BIOS during initial power‑on.
  • Install PCIe expansion cards (GPUs, NICs, storage controllers) in the appropriate slots, ensuring no conflicts with CPU sockets or memory modules and securing each card with the chassis’s expansion slots.
  • Connect all power cables from the PSU to the motherboard, including main power, CPU power, and any auxiliary connectors required by dual‑CPU configurations. Attach chassis management and temperature sensors as needed.
  • Power on the system and enter the BIOS/UEFI to configure CPU settings, memory profiles, boot order, storage controllers, and RAID arrays if applicable. Update to the latest firmware and drivers, and enable IPMI/remote management if required for ongoing administration.
  • Install operating system and drivers, then validate system stability with stress tests and monitoring tools. Monitor temperatures, fan speeds, and power consumption to ensure reliable operation in your data center environment.

Frequently asked questions

  • Q: Is the Tyan S8232 a dual‑CPU motherboard?
  • A: Yes. The S8232 is designed to support two AMD Opteron processors in Socket G34 LGA‑1944, delivering substantial compute power for virtualization, HPC, and data‑intensive workloads.
  • Q: What processor families are compatible with this motherboard?
  • A: It is designed for AMD Opteron processors compatible with the Socket G34 platform and the AMD SR5690 chipset. Check the vendor’s compatibility list for supported Opteron models and stepping requirements.
  • Q: What memory type does it require?
  • A: The board supports DDR3 ECC memory with a multi‑channel architecture to maximize performance and reliability in server workloads.
  • Q: Can I use this motherboard for virtualization or HPC workloads?
  • A: Absolutely. With dual CPUs, PCIe expansion, ample memory capacity, and enterprise management features, the S8232 is well suited for virtualization environments, HPC clusters, and data‑centric applications.
  • Q: Does it include remote management features?
  • A: The board supports enterprise management interfaces (such as IPMI) to enable remote monitoring, health reporting, and firmware updates, simplifying data‑center operations and maintenance.
  • Q: What storage options are available?
  • A: The S8232 provides connections for SATA/SAS storage with backplane support and options for hot‑swap configurations, enabling scalable and maintainable storage layouts.

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