Part number: XC2VP30-FF896
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XC2VP30-FF896 Component Specifications
General Information: The XC2VP30-FF896 is a high-performance FPGA (Field Programmable Gate Array) component renowned for its versatility and reliability in complex electronic systems. This component offers advanced programmability and computational capabilities, making it a preferred choice for demanding applications requiring rapid prototyping and flexibility.
Specifications
- Architecture: Utilizes a sophisticated FPGA architecture with programmable logic blocks, configurable I/O interfaces, and embedded memory resources for efficient data processing and system integration.
- Speed: Operates at high clock frequencies to deliver rapid data processing and real-time performance, essential for applications demanding low latency and high throughput.
- Integration: Supports seamless integration with external components and peripherals through various communication protocols, enabling versatile system designs and connectivity options.
- Package: Housed in a compact and robust package, ensuring mechanical stability and thermal management for reliable operation in diverse environments.
Applications
- Telecommunications: Widely used in telecommunications infrastructure for signal processing, networking, and protocol handling tasks.
- Embedded Systems: Ideal for embedded applications requiring customizable hardware acceleration, real-time processing, and system-on-chip (SoC) implementations.
- Industrial Automation: Deployed in industrial control systems, robotics, and automation equipment for high-speed data processing and control algorithm execution.
Compliance
Industry Standards: The XC2VP30-FF896 complies with industry standards for FPGA components, ensuring compatibility, reliability, and performance consistency across different hardware and software environments.
Identification
The designation XC2VP30-FF896 provides specific details about the FPGA component, including its model, features, and operational characteristics, facilitating accurate identification and integration into complex electronic systems.
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