Taifast
Taifast B250-BTC 12 CPU SATA USB3.0 DDR4 server motherboard
Server motherboard with 12 CPU sockets, SATA and USB 3.0 interfaces, plus DDR4 dual-channel memory support
- CPU TypeIntel Core i3 / i5 / i7
- Supports up to 12 CPUs for high-density compute
- SATA interface provides reliable storage connectivity
- DDR4 memory support enables modern RAM performance
- USB 3.0 ports deliver fast peripheral data transfer
- B250 chipset platform designed for server workloads
Taifast B250-BTC 12 CPU Server Board
The Taifast B250-BTC server motherboard integrates twelve CPU sockets onto a single PCB. It targets mining-farm operators and high-density compute clusters that need many low-power Intel Core i3, i5 or i7 processors sharing one platform. DDR4 dual-channel memory support and SATA storage connectivity complete the baseline feature set for headless workloads.
Suited for multi-thread batch jobs.
This board suits builders running parallel workloads such as cryptocurrency mining, rendering farms or distributed databases where thread count outweighs per-core frequency. It is not for gamers or workstation users who need high single-core boost clocks, integrated graphics output or consumer-chipset features like overclocking controls and audio codecs.
Twelve physical CPU sockets define capacity
The defining specification is the twelve LGA sockets wired to the B250 chipset, which sets the hard ceiling on concurrent threads and memory channels. No other figure in the data sheet changes the scale of deployment this board can support.
Highlights
- Supports up to 12 CPUs for high-density compute
- SATA interface provides reliable storage connectivity
- DDR4 memory support enables modern RAM performance
- USB 3.0 ports deliver fast peripheral data transfer
- B250 chipset platform designed for server workloads
Specifications
| CPU Type | Intel Core i3 / i5 / i7 |
|---|
Questions about this item
How do I install the board using the SATA and USB3.0 interfaces, and what step is often missed?
Connect the SATA data cables to the drive backplane and the USB3.0 header to the front-panel bracket, then seat the CPU and DDR4 modules before applying power; the step most often missed is plugging the auxiliary 12 V power connector near the PCI-E transfer slots.
What maintenance or replacement will the board need later?
The DDR4 memory slots and SATA ports are the only serviceable interfaces; plan to reseat or replace DDR4 modules if errors appear, and keep spare SATA cables for drive swaps.
What limit appears first under sustained use?
With 12 CPU sockets the VRM thermal ceiling is reached before the SATA or USB3.0 bandwidth saturates, so sustained loads will throttle at the power-delivery stage.
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