BIOS Features | Plug and Play (PnP)DMI 2.3PCI 2.2ACPI 5.1USB Keyboard SupportSMBIOS 3.1.1 |
---|---|
PCI-Express | 1 PCI-E 4.0 x16 Right Riser Slot1 PCI-E 4.0 x8 Left Riser Slot1 PCI-E 4.0 x16 AIOM LAN Networking Slot |
Cores | Up to 64 Cores |
Network Controllers | 1 PCI-E 4.0 x16 AIOM LAN Networking SlotATEN IPMI (Dedicated) from ASPEED AST2600 BMC |
M.2 | 22110Key: M-Key, Interface: 4 SATA/PCI-E 4.0 x4Form Factor: 2280 |
DIMM Sizes | 128GB, 16GB, 256GB, 32GB, 64GB, 8GB |
BIOS Type | AMI 256Mb SPI Flash EEPROM |
LAN | Provided via AIOM1 RJ45 Dedicated IPMI LAN port |
NVMe | 4 internal NVMe ports |
USB | 2 USB 3.0 ports (rear) |
Form Factor | Proprietary FatTwin |
Memory Type | 288-pin gold-plated DIMMs, DDR4 3200 MHz Registered ECC |
Application | Server |
IPMI | Support for Intelligent Platform Management Interface v. 2.0IPMI 2.0 with virtual media over LAN and KVM-over-LAN supportASPEED AST2600 BMC |
Others | 1 COM port (header)2 SuperDOM power connectors1 TPM 1.2/2.0 header |
VGA | 1 VGA port (rear) |
SATA/NVMe Hybrid | 8 SATA3 or 2 NVMe via SlimSAS |
Memory Voltage | 1.2V |
CPU | Single AMD EPYC 7003/7002 Series ProcessorSocket SP3 |
SATA | 2 SATA3 (6 Gbps) ports |
Memory Capacity | 8 DIMM slotsSupports up to 2TB Registered ECC DDR4 3200MHz SDRAM in 8 DIMMs8-channel memory bus |
Error Detection | Corrects single-bit errorsDetects double-bit errors (using ECC memory) |
Dimensions | 8.53" x 20.19" |
Supermicro MBD-H12SSFR-AN6
The Supermicro MBD-H12SSFR-AN6 is a single-socket SP6 motherboard designed for AMD EPYC 8004 series processors, leveraging Zen 4c architecture for high-density, energy-efficient performance in cloud, enterprise, and edge environments. Key features include 12 DDR5 DIMM slots for fast memory throughput, 3x PCIe 5.0 x16 slots and OCP 3.0 support for scalable expansion, plus 6x SATA and 3x M.2 slots for versatile storage. Dual 10G LAN ports ensure high-speed connectivity, while an integrated BMC with IPMI 2.0 enables robust remote management. Its compact ATX form factor, exceptional scalability, and optimized power efficiency make it ideal for resource-intensive workloads and edge deployments, balancing cutting-edge performance with reliability.
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