Part number: XC2VP100-5FFG1696I
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XC2VP100-5FFG1696I Component Specifications
General Information: The XC2VP100-5FFG1696I is a high-performance programmable logic device (PLD) designed for demanding applications in industrial automation, telecommunications, aerospace, and other advanced technology sectors. This component is renowned for its versatility, reliability, and advanced features that cater to complex system requirements.
Specifications
- Architecture: Utilizes a sophisticated architecture with programmable logic blocks, memory elements, and high-speed interconnects to enable flexible and efficient implementation of complex digital circuits.
- Speed Grade: Operates at a speed grade of 5, offering rapid signal processing and data manipulation capabilities for real-time applications.
- Package: Housed in a 1696-pin Fine-Pitch Ball Grid Array (FFG1696) package, providing a compact form factor while accommodating a large number of I/O interfaces for enhanced connectivity.
- Power Efficiency: Designed for low power consumption without compromising performance, making it suitable for battery-powered or energy-efficient systems.
Applications
- Industrial Automation: Ideal for industrial control systems, robotics, and process automation where high-speed data processing and reliability are essential.
- Telecommunications: Used in networking equipment, base stations, and communication infrastructure for signal processing, protocol handling, and data routing tasks.
- Aerospace: Trusted in avionics, flight control systems, and satellite communications for its robust performance and radiation-hardened design.
Compliance
Industry Standards: The XC2VP100-5FFG1696I complies with industry standards for programmable logic devices, ensuring compatibility, reliability, and performance consistency across diverse applications and environments.
Identification
The designation XC2VP100-5FFG1696I signifies specific details about the PLD, including its speed grade, package type, and architectural features, enabling precise identification and seamless integration into complex electronic systems.
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