Part number: XC4VFX12-10SFG363I
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XC4VFX12-10SFG363I Component Specifications
General Information: The XC4VFX12-10SFG363I is a high-performance FPGA (Field-Programmable Gate Array) component known for its advanced capabilities in digital logic design and signal processing applications. This component offers exceptional flexibility and processing power, making it a preferred choice for complex and demanding engineering projects.
Specifications
- Architecture: Utilizes a sophisticated FPGA architecture with programmable logic blocks, memory elements, and high-speed interconnects for efficient data processing and design flexibility.
- Speed Grade: Operating at a speed grade of 10, this component delivers rapid data processing and response times, crucial for real-time applications and high-speed data handling.
- Package: Housed in a compact and robust 363-pin BGA (Ball Grid Array) package, ensuring secure mounting and reliable electrical connections for seamless integration into electronic systems.
- Configuration: Supports dynamic reconfiguration, allowing users to modify the logic design and functionality of the FPGA on-the-fly, providing versatility and adaptability in diverse applications.
Applications
- Digital Signal Processing: Ideal for applications requiring high-speed data processing, such as telecommunications, image processing, and audio/video processing.
- Embedded Systems: Commonly used in embedded control systems, IoT devices, and industrial automation for rapid prototyping and system customization.
- Telecommunications: Suitable for networking equipment, base stations, and data communication systems that demand efficient data handling and processing capabilities.
Compliance
Industry Standards: The XC4VFX12-10SFG363I complies with industry standards for FPGA components, ensuring reliability, performance, and compatibility with existing design practices and tools.
Identification
The designation XC4VFX12-10SFG363I provides detailed information about the FPGA component's speed grade, package type, and specific features, enabling accurate identification and integration into FPGA-based projects and systems.
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