AMD Xilinx XC7K325T Kintex7 Development Board – FPGA Board
Product Introduction:
PB7K325 is a high-performance video processing and algorithm prototyping board based on the AMD Kintex-7 industrial-grade FPGA (XC7K325T-2FFG900I). With ultra-low-latency hardware architecture, high-bandwidth data paths and full coverage of mainstream video interfaces, it operates reliably over -40 to 85 C industrial temperature range. Suitable for video codecs, medical imaging, high-speed data processing, protocol conversion and radar signal processing, with full custom support across hardware, IP and algorithms.
Key Features:
– Ultra-low-latency hardware real-time:FPGA hardware direct video path eliminates software scheduling overhead, achieving microsecond-level end-to-end latency
– Full-interface high bandwidth: Full coverage of 12G-SDI, GMSL2, 10G fiber, MIPI for multi-channel high-speed video input
– Industrial-grade reliability:-40 to 85 C wide-temperature design for industrial, medical and automotive environments
– High compute power, easy to expand:326K Logic Cells + 840 DSP, Equipped with 2GB DDR3 and M.2 high-speed storage for complex parallel algorithm processing
– Flexible custom development:Open hardware resources and interface design; full support for algorithm porting, hardware customization and IP development
Key Specifications:
| Item | Parameter |
| FPGA Chip | XC7K325T-2FFG900I |
| Logic Cells | 326,080 |
| LUTs | 50,950 |
| Flip-Flops | 407,600 |
| Block RAM | 16,020Kb |
| DSP Slices | 840 |
| QSPI FLASH | 128Mbit |
| DDR3 Memory | 2GB |
| Grade | Industrial; Temperature range -40°C~85°C |
| Board Dimensions | 16cm × 13cm |
Interfaces:
| Interfaces | Description |
| HDMI 2.0 输入 | 1 channel, GTX实现 |
| HDMI 2.0 输出 | 1 channel, GTX实现 |
| 12G SDIInput/Output | 2 channels, bidirectional configurable |
| GMSL2 输入 | 4 channels, MAX96712, with POC |
| 10G 光纤 | 2 channels |
| Raspberry Pi CSI MIPI | 1 channel |
| Gigabit Ethernet | 2 channels |
| M.2 SSD | 1, PCIe X4 2.0 |
| CAN Bus | 2 channels |
| RS485 | 2 channels |
| USB UART | 1 channel, Type-C |
| Expansion IO | 1 channel, 34 3.3V IO supports differential |
Applications:
1. Ultra-low-latency video codec systems
Leveraging FPGA native parallel compute and direct video hardware architecture, it achieves ultra-low-latency 4K/8K encoding/decoding, real-time transcoding and hardware-level transmission. Ideal for live streaming, remote medical imaging, low-latency video conferencing, industrial monitoring and in-vehicle video transmission, with microsecond-level end-to-end latency.
2. Medical endoscope ISP development and image processing
Four-channel GMSL2 interface supports long-distance MIPI sensor data transmission. Custom FPGA medical-grade ISP algorithms enable image denoising, color correction, detail enhancement, 3D reconstruction and multi-image fusion. Suited for HD endoscope systems, laparoscopes, minimally invasive surgery platforms, medical image recorders and portable inspection devices.
3. Multi-protocol video interoperability and format conversion
Integrating HDMI 2.0, 12G-SDI, 10G fiber and Gigabit Ethernet, it enables seamless conversion between SDI, HDMI, 10G optical and IP streams, multi-format distribution, real-time stream forwarding and broadcast-grade routing. Ideal for broadcast equipment, video matrices, surveillance platforms, conferencing systems and industrial video gateways.
4. FPGA Lossless video storage acceleration
With on-board M.2 SSD and FPGA hardware acceleration, real-time lossless 4K/8K capture, high-speed writing, local storage and instant playback are achieved without CPU involvement. Ideal for industrial vision inspection, medical image archiving, HD surveillance recording, high-speed video logging and research data storage — preserving original frames with zero distortion.
5. Radar high-speed signal processing
Receiving raw radar sensor data via GMSL2, massive on-board DSP resources enable radar preprocessing, beamforming, pulse compression, target detection, digital filtering and real-time analysis. Suited for industrial, security, automotive mmWave, UAV avionics and weather radar applications.
6. Industrial vision high-speed image acquisition
Multiple high-speed video interfaces support line-scan cameras, area-scan industrial cameras, CoaXPress and SDI devices, enabling real-time acquisition, preprocessing, defect detection, dimensional measurement and AI inference. Widely used in semiconductor wafer inspection, PCB AOI, lithium electrode inspection, high-speed line QC and precision optical metrology.

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