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FPGA Development Boards Industrial -40~85°C

AMD Xilinx XCVU13F Virtex UltraScale+ FMC+ FPGA PCIe Ultra High-End Development Board

Board model: VU13F

The VU13F is an industrial-grade FPGA development board based on the AMD Xilinx UltraScale+ XCVU13P-2FHGA2104I, designed for high-speed networking, AI acceleration and complex algorithm prototyping. It offers 3780K logic cells, 12,288 DSP slices and 94.5Mb on-chip Block RAM for abundant compute resources. With 4 FMC+ expansion interfaces, 2 QSFP28 100G optical ports, 1 Gigabit Ethernet port and DDR4-SODIMM memory, it delivers outstanding high-speed data throughput. Powered by 12V-20A ATX with a USB Type-C UART port for easy debugging, the compact 205×160mm form factor simplifies system integration. Industrial temperature design makes it suitable for communications R&D, signal processing, research projects and other high-performance development scenarios.

$10,769.08 Tax not included · batch and customization supported
3780K logic cells + 12,288 DSPs, ultra-large-scale parallel compute
4×FMC+ expansion + 2×QSFP28 100G optical ports + Gigabit Ethernet
DDR4-SODIMM memory, configurable as needed
USB Type-C UART debug port
Industrial -40~85°C · compact 205×160mm form factor

Interface, cooling, structure and batch supply can be customized per project · we respond within 1 business day after submission.

Specifications

Data source: www.profpga.net official product page

The VU13F is an industrial-grade FPGA development board based on the AMD Xilinx UltraScale+ XCVU13P-2FHGA2104I, designed for high-speed networking, AI acceleration and complex algorithm prototyping. It offers 3780K logic cells, 12,288 DSP slices and 94.5Mb on-chip Block RAM for abundant compute resources. With 4 FMC+ expansion interfaces, 2 QSFP28 100G optical ports, 1 Gigabit Ethernet port and DDR4-SODIMM memory, it delivers outstanding high-speed data throughput. Powered by 12V-20A ATX with a USB Type-C UART port for easy debugging, the compact 205×160mm form factor simplifies system integration. Industrial temperature design makes it suitable for communications R&D, signal processing, research projects and other high-performance development scenarios.

Parameter Specification
Board Model VU13F
Main Chip XCVU13P-2FHGA2104I
Temperature Grade Industrial; -40°C ~ 85°C
Logic Cells 3780K
LUTs 1728K
Flip-Flops 3456K
DSP Slices 12288
Block RAM 94.5Mb
DDR4 SODIMM memory module
FMC+ 4
Gigabit Ethernet 1
QSFP28 2×100G
UART 1×USB Type-C
Power Supply 12V 20A ATX
Shape & Size 205×160mm

Typical Application Scenarios

One platform, many roles

Artificial Intelligence

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.

Communication

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.

Research & Prototyping

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.

High-Performance Radar

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.

Interested in this product or need customization?

We respond within 1 business day after submission, supporting selection consulting, parameter customization and batch supply.

Contact · +86 18621324348