Part number: XC2V20005BG575C
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XC2V20005BG575C FPGA Specifications
General Information: The XC2V20005BG575C Field-Programmable Gate Array (FPGA) is a versatile and high-performance integrated circuit designed for demanding applications in digital logic design, signal processing, and embedded systems. Renowned for its flexibility and reconfigurability, this FPGA offers significant advantages in prototyping, development, and deployment of complex electronic systems.
Specifications
- Architecture: Utilizes advanced programmable logic blocks, memory elements, and configurable interconnects to enable rapid customization and optimization for specific tasks.
- Logic Capacity: Offers a generous logic cell count and resource availability, allowing for the implementation of intricate algorithms, signal processing functions, and control logic.
- Speed Grade: Operates at a high clock frequency, providing fast processing capabilities suitable for real-time applications and high-speed data processing.
- Package: Housed in a robust and compact Ball Grid Array (BGA) package, ensuring secure mounting and reliable electrical connections in electronic assemblies.
Applications
- Telecommunications: Used in wireless communication systems, network infrastructure, and data transmission equipment for efficient signal processing and protocol implementation.
- Industrial Automation: Employed in control systems, robotics, and sensor interfaces to enable precise control, monitoring, and data processing in industrial environments.
- Medical Devices: Integrated into medical imaging devices, diagnostic equipment, and monitoring systems to facilitate real-time data analysis and image processing.
Compliance
Industry Standards: The XC2V20005BG575C FPGA complies with industry regulations and quality standards, ensuring reliability, performance, and interoperability with other electronic components.
Identification
The designation XC2V20005BG575C provides detailed information about the FPGA's configuration, speed grade, and package type, enabling accurate identification and seamless integration into electronic designs and systems.
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