Memory
Supported memory clock speeds |
1600, 1866, 2133, 2400 MHz |
Memory channels |
Dual |
Supported UDIMM module capacity |
16GB |
Supported RDIMM module capacity |
32GB |
Maximum internal memory |
32 GB |
Number of DIMM slots |
4 |
Supported memory types |
DDR4-SDRAM |
Memory voltage |
1.2 V |
Design
Motherboard form factor |
Mini ITX |
Component for |
Server |
Internal I/O
ATX Power connector (24-pin) |
Y |
Power fan connector |
N |
Number of SATA III connectors |
6 |
CPU fan connector |
Y |
Number of COM connectors |
1 |
Number of chassis fan connectors |
1 |
Processor
Number of processors supported |
1 |
Processor manufacturer |
Intel |
Intel Xeon series |
D-1500 |
Processor number of cores supported |
8 |
Networking
LAN controller |
Intel I210 |
Wi-Fi |
N |
Expansion slots
PCI Express x16 (Gen 3.x) slots |
1 |
Back panel I/O ports
Microphone in |
N |
USB 3.0 (3.1 Gen 1) Type-A ports quantity |
2 |
VGA (D-Sub) ports quantity |
1 |
Packaging content
Quick installation guide |
Y |
Storage controllers
Hard drive interface |
Serial ATA III |
Technical details
Thermal Design Power (TDP) |
45 W |
Graphics
Discrete graphics support |
Y |
Additionally
Ethernet LAN connection |
Y |
Ethernet LAN (RJ-45) ports quantity |
3 |
Xeon® D-1541, 4xDDR4 2133MHz, 2x10GbE SFP+LAN, 2xGbE LAN, 6xSATAIII, 1xPCIx16, Aspeed® AST2400, Mini-ITX
Built With the Intel Xeon D-1541 SoC Processor
Based on the Broadwell microarchitecture, the Intel Xeon D are Server-on-Chip processors based on the 14nm process.
Designed for high density and scale-out server infrastructures, these processors focus on high power efficiency while maintaining datacenter grade features, such as large storage and memory platforms. Through this density and computing power, they aim at lowering the TCO of enterprise & public clouds, storage, and network applications.
10 Gigabit Fiber Connectivity
With 2 x 10GbE SFP+ fiber ports, 2 x GbE ports, and a separate management traffic port, this motherboard is built with a network platform designed to fit into a large range of possible network topologies.