The Supermicro MBD-X11SRI-IF is a server-grade motherboard designed for reliable, continuous operation in professional and technical environments. It supports Intel Xeon W-2100 and W-2200 processors in LGA 2066 socket with a maximum TDP of 165W, providing a robust platform for compute-intensive workloads.
With support for ECC memory and a compact board format, this platform is optimized for stability, data integrity and efficient use of rack or workstation space.
Processor support: LGA 2066 socket, compatible with Intel Xeon W-2100/2200 family, single-socket configuration, max CPU TDP 165W, enabling high core-count and high-frequency configurations for demanding applications.
Memory subsystem: 4 DIMM slots supporting up to 512GB ECC LRDIMM or 256GB ECC RDIMM DDR4-2133. ECC functionality enhances data integrity, making the board suitable for professional workloads where reliability is critical.
Expansion capabilities: 1x PCI Express 3.0 x16 slot for high-performance add-on cards such as professional GPUs, high-speed storage controllers or specialized accelerator cards.
Network connectivity: 2x RJ-45 1Gb/s Ethernet ports provide redundant or segmented networking options for server and workstation deployments.
USB connectivity: 2x rear USB 3.0 ports for high-speed peripherals, external storage, or service access.
Storage options: No M.2 NVMe slots are integrated, which facilitates use in environments preferring traditional SATA/SAS or external storage architectures. Storage expansion can be implemented via PCIe controllers.
Reliability and lifecycle: Server-class design with ECC memory support and a 36-month manufacturer warranty, aimed at long-term, stable operation in business and technical infrastructures.
This motherboard is suitable for scenarios where deterministic performance, memory capacity and data integrity are more important than consumer features. It can serve as a foundation for compact servers, engineering workstations, or dedicated appliances that require a single-socket Xeon W platform with ECC support.