Part number: XC4VLX200-10FFG1513
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XC4VLX200-10FFG1513 Component Specifications
General Information: The XC4VLX200-10FFG1513 is an advanced programmable logic device designed for high-performance applications in sectors such as telecommunications, aerospace, and industrial automation. Renowned for its exceptional processing power and versatility, this component offers a reliable solution for complex system integration and development.
Specifications
- Technology: Utilizes cutting-edge FPGA technology to provide reconfigurable logic elements and high-speed interconnects for efficient data processing and system customization.
- Speed Grade: Operates at a speed grade of 10, ensuring rapid data processing and real-time responsiveness in demanding applications.
- Capacity: Offers a generous logic capacity of 200,000 logic cells, enabling the implementation of intricate algorithms, signal processing, and control functions.
- Package: Housed in a FFG1513 package, providing a robust and compact form factor suitable for integration into various electronic systems.
Applications
- Telecommunications: Commonly used in network infrastructure, signal processing, and high-speed data communication systems for enhanced performance and flexibility.
- Aerospace Industry: Deployed in avionics, flight control systems, and onboard processing units to support mission-critical functions and ensure reliable operation in challenging environments.
- Industrial Automation: Integrated into automation controllers, robotic systems, and sensor interfaces to enable precise control, data processing, and connectivity in industrial settings.
Compliance
Industry Standards: The XC4VLX200-10FFG1513 complies with industry standards for programmable logic devices, ensuring compatibility, reliability, and performance consistency in accordance with established guidelines.
Identification
The designation XC4VLX200-10FFG1513 signifies key attributes of the component, including its logic capacity, speed grade, and package type, facilitating accurate identification and integration into complex electronic systems.
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