Part number: XC4VLX100-11FFG1513C
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XC4VLX100-11FFG1513C Component Specifications
General Information: The XC4VLX100-11FFG1513C is a high-performance FPGA (Field-Programmable Gate Array) component designed for advanced digital and electronic applications. Renowned for its versatility and processing power, this FPGA is a key element in cutting-edge systems requiring rapid data processing and complex logic operations.
Specifications
- Architecture: Utilizes a sophisticated architecture with a large number of configurable logic blocks and embedded memory, enabling flexible and efficient implementation of diverse algorithms and functions.
- Speed Grade: Operates at a high clock frequency with low propagation delays, ensuring rapid data processing and real-time responsiveness in demanding applications.
- Package: Housed in a compact and robust package, providing protection and ease of integration into electronic systems.
- Features: Offers advanced features such as high-speed serial connectivity, DSP blocks, and dedicated memory resources for enhanced performance and functionality.
Applications
- Communications: Widely used in telecommunications infrastructure, networking equipment, and data centers for signal processing, protocol handling, and encryption tasks.
- Embedded Systems: Essential for embedded control systems, IoT devices, and industrial automation applications requiring customizable and reconfigurable hardware acceleration.
- Signal Processing: Ideal for digital signal processing applications, including audio/video processing, radar systems, and image recognition, thanks to its parallel processing capabilities.
Compliance
Industry Standards: The XC4VLX100-11FFG1513C complies with industry standards for FPGA components, ensuring compatibility, reliability, and performance consistency across various applications and environments.
Identification
The designation XC4VLX100-11FFG1513C denotes specific details about the FPGA, such as its logic capacity, speed grade, and package type, facilitating accurate selection and integration into complex electronic designs.
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