XC7VX980T-1FFG1930C – High-Performance Xilinx FPGA for Advanced Applications
The XC7VX980T-1FFG1930C is a high-end Xilinx FPGA designed for demanding applications that require high-speed processing, large logic capacity, and flexible I/O configurations. Ideal for telecommunications, data centers, and embedded systems, this FPGA combines reliability, scalability, and powerful programmable logic in a single device.
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Key Features of XC7VX980T-1FFG1930C
- High logic cell count for complex designs
- Multiple high-speed transceivers for data-intensive applications
- Large block RAM capacity for real-time processing
- Advanced DSP slices for signal processing
- Robust thermal and power management
Technical Specifications
| Specification |
Details |
| Logic Cells |
2,000,000+ |
| Block RAM |
75.9 Mb |
| DSP Slices |
3,600 |
| Transceivers |
Up to 32.75 Gbps |
| I/O Pins |
1,930 |
| Package Type |
FFG1930 |
| Speed Grade |
-1 |
| Power Supply |
1.0V core, 1.8V I/O |
| Operating Temperature |
Commercial & Industrial |
Advantages of Using XC7VX980T-1FFG1930C
High Logic Density
The XC7VX980T-1FFG1930C offers an extremely high logic cell count, enabling the implementation of complex designs without compromising speed or reliability.
Advanced Signal Processing
With thousands of DSP slices and large memory blocks, this FPGA excels at signal processing tasks, making it suitable for communication systems, video processing, and AI acceleration.
High-Speed Data Transfer
Equipped with multi-gigabit transceivers, the device supports high-speed serial interfaces, ensuring reliable and low-latency data transfer for demanding applications.
Flexible I/O and Packaging
With 1,930 I/O pins and a compact FFG1930 package, the FPGA allows flexible connectivity options while maintaining a manageable footprint for system integration.
Applications
The XC7VX980T-1FFG1930C is widely used in:
- High-performance computing systems
- 5G and telecommunications equipment
- Advanced automotive and aerospace electronics
- AI and machine learning accelerators
- Video processing and image recognition systems