FPGA Development Boards
AMD Xilinx XCVU13F Virtex UltraScale+ FMC+ FPGA PCIe Ultra High-End Development Board
XCVU13P industrial-grade FPGA · 3780K logic · 4×FMC+ · 2×100G optical ports · 12V-20A ATX

The PB7K325 is a high-performance video processing and algorithm verification development board based on the AMD Kintex-7 industrial FPGA (XC7K325T-2FFG900I). With an ultra-low-latency hardware architecture, high-bandwidth data transfer capability and complete coverage of mainstream video interfaces, it runs reliably with an industrial -40°C to 85°C wide-temperature design. It suits mid-to-high-end scenarios including video encoding/decoding, medical imaging, high-speed data processing, protocol conversion and radar signal processing, and supports deep end-to-end customization of hardware, IP and algorithms — an ideal platform for high-end video services and algorithm prototyping.
Interface, cooling, structure and batch supply can be customized per project · we respond within 1 business day after submission.
The PB7K325 is a high-performance video processing and algorithm verification development board based on the AMD Kintex-7 industrial FPGA (XC7K325T-2FFG900I). With an ultra-low-latency hardware architecture, high-bandwidth data transfer capability and complete coverage of mainstream video interfaces, it runs reliably with an industrial -40°C to 85°C wide-temperature design. It suits mid-to-high-end scenarios including video encoding/decoding, medical imaging, high-speed data processing, protocol conversion and radar signal processing, and supports deep end-to-end customization of hardware, IP and algorithms — an ideal platform for high-end video services and algorithm prototyping.
| Parameter | Specification |
|---|---|
| FPGA Chip Model | XC7K325T-2FFG900I |
| Logic Cells | 326,080 |
| LUTs | 50,950 |
| Flip-Flops | 407,600 |
| Block RAM | 16,020Kb |
| DSP | 840 |
| QSPI Flash | 128Mbit |
| DDR3 Memory | 2GB |
| Product Grade | Industrial; temperature range -40°C ~ 85°C |
| Board Size | 16cm × 13cm |
| HDMI 2.0 Input | 1, implemented with GTX |
| HDMI 2.0 Output | 1, implemented with GTX |
| 12G SDI In/Out | 2, bidirectional configurable |
| GMSL2 Input | 4, MAX96712, with POC |
| 10G Fiber | 2 |
| Raspberry Pi CSI MIPI | 1 |
| Gigabit Ethernet | 2 |
| M.2 SSD | 1, PCIe x4 2.0 |
| CAN Bus | 2 |
| RS485 | 2 |
| USB UART | 1, Type-C |
| Expansion I/O | 1, 34× 3.3V I/O, differential supported |
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.
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.
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.
Phased-array and imaging radar impose strict requirements on signal processing platforms: multi-channel parallel acquisition, high-throughput dataflow and deterministic low latency. With its reconfigurable parallel architecture, FPGA serves as the core carrier of radar signal processing, delivering multi-channel parallel, high-throughput, deterministic low-latency compute in beamforming, pulse compression and target detection, while supporting algorithm reconfiguration and platform evolution.
We respond within 1 business day after submission, supporting selection consulting, parameter customization and batch supply.
Contact · +86 18621324348