FPGA SoM
AMD Xilinx Artix-7 XC7A200T SoM – PBC7A20
Artix-7 industrial-grade SoM · 215K logic · PCIe Gen2 · 1GB DDR3 · 180 I/O

AMD Kintex UltraScale industrial SoM · 1176K logic · 8GB DDR4+ECC · 20×16.3Gbps GTH · PCIe Gen3 x8
Interface, cooling, structure and batch supply can be customized per project · we respond within 1 business day after submission.
AMD Kintex UltraScale industrial SoM · 1176K logic · 8GB DDR4+ECC · 20×16.3Gbps GTH · PCIe Gen3 x8
The XCKU095 industrial-grade FPGA SoM is built on the AMD Kintex UltraScale XCKU095-1FFVA1156I, retaining the 80×60mm SoM + carrier board split architecture. Building on 1176K logic cells, 768 DSP slices, 20×16.3Gbps GTH transceivers and a PCIe Gen3 x8 path, it introduces four key upgrades: 8GB DDR4 + ECC high-capacity reliable memory, 64MB OSPI high-speed configuration loading, a programmable clock source, and China-based high-speed B2B connectors with active cooling — targeting high-compute, high-reliability applications in data centers, 5G, industrial control, optical communication, medical imaging and security surveillance.
| Parameter | Specification |
|---|---|
| SoM Model | XCKU095 V1.1 |
| FPGA Chip Model | XCKU095-1FFVA1156I |
| Chip Grade | Speed grade -1; industrial; temperature range -40°C ~ 85°C |
| Logic Cells | 1176K |
| LUTs | 537K |
| Flip-Flops | 1075K |
| DSP Slices | 768 |
| Block RAM | 59.1Mb |
| Clock Management Tiles (CMTs) | 16 |
| Max. Distributed RAM | 4800kb |
| Onboard Memory | 8GB DDR4 + ECC: 4×2GB data (64-bit) + 1×ECC (8-bit) |
| Configuration Storage | 64MB OSPI (8-bit high-speed configuration loading) |
| Clock Source | Programmable clock (Si5341-class, China-based compatible) |
| High-Speed Transceivers | 20×16.3Gbps GTH |
| PCI Express | PCIe Gen3 x8 |
| I/O | 302 HP I/O + 52 HR I/O |
| Board-to-Board Connectors | 4×120-pin + 2×80-pin high-speed B2B (China-based high-speed connectors) |
| Cooling | Active cooling: aluminum heatsink + fan (standard) |
| Power Supply | 12V/3A input; onboard multi-rail power tree (0.95V/1.0V/1.2V/1.8V etc.) |
| PCB | 18 layers, dedicated power and GND planes |
| Dimensions | 80×60×9.7mm (excl. heatsink height) |
| LED | 1× power LED + 1× DONE configuration LED |
Industrial sites impose strict requirements on control equipment: wide temperature range, interference immunity and deterministic latency. FPGA handles real-time control, protocol parsing and high-speed I/O acquisition with reconfigurable parallel logic, providing a highly reliable hardware foundation for PLC expansion, motion control and industrial communication buses. Duyuan industrial-grade boards support a -40~85°C wide temperature range and long-term stable supply, helping devices move from prototype verification to mass production.
AI model deployment demands a balanced combination of compute power, bandwidth and power efficiency. With hardware parallelism, reconfigurable datapaths and rich high-speed interfaces, FPGA and MPSoC deliver low-latency, energy-efficient heterogeneous compute for CNN/YOLO inference, Vitis-AI acceleration and edge intelligence terminals, enabling rapid algorithm porting and product deployment.
5G/6G base stations and high-speed network equipment impose strict requirements on protocol processing, data forwarding and deterministic latency. With high-speed transceivers, reconfigurable protocol stacks and parallel pipelines, FPGA powers 100G optical communication, protocol processing and network security acceleration, providing a high-throughput, low-latency hardware platform from R&D to mass production.
Medical equipment demands the highest levels of image quality, real-time performance and reliability. FPGA provides low-latency pipelines and highly reliable hardware for endoscope ISP, medical image processing and device control, helping China-based medical devices achieve independent and controllable development in image enhancement, interface protocols and system miniaturization.
From university labs to enterprise pre-research, rapidly verifying algorithms and hardware architectures is the critical first step to project success. Duyuan FPGA development boards and SoMs provide rich high-speed interfaces, complete reference designs and end-to-end technical support for ASIC prototype verification, high-speed data acquisition, instrument development and academic research — helping teams turn ideas into working hardware systems quickly.
4K/8K video, machine vision and industrial cameras impose strict requirements on end-to-end latency and interface coverage. With hardware-direct video paths and parallel pipelines, FPGA delivers microsecond-level deterministic processing in video encoding/decoding, image pre-processing, multi-protocol interfaces and low-latency transport, supporting deep customization of video services and vision algorithms.
We respond within 1 business day after submission, supporting selection consulting, parameter customization and batch supply.
Contact · +86 18621324348