Part number: XC5VLX155-3FFG1153C
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XC5VLX155-3FFG1153C Component Specifications
General Information: The XC5VLX155-3FFG1153C is a high-performance FPGA (Field-Programmable Gate Array) component known for its advanced capabilities and versatility in electronic systems. This component offers exceptional processing power, flexibility, and reliability, making it a preferred choice for complex applications in various industries.
Specifications
- Technology: Utilizes cutting-edge FPGA technology to provide reconfigurable logic elements, memory blocks, and high-speed interfaces for efficient data processing and system integration.
- Logic Cells: Contains a specific number of logic cells optimized for programmability and customization based on application requirements, enabling rapid prototyping and system development.
- Speed Grade: Operates at a designated speed grade to ensure fast data processing, low latency, and high throughput, essential for real-time applications.
- Package: Housed in a specific package type (FFG1153C) designed for optimal thermal performance, signal integrity, and compatibility with PCB layouts.
Applications
- Telecommunications: Used in telecommunications infrastructure for signal processing, protocol conversion, and data routing in networks and communication systems.
- Industrial Automation: Deployed in industrial control systems, robotics, and automation equipment for real-time monitoring, control, and data processing tasks.
- Medical Devices: Integrated into medical devices and imaging systems for high-speed data processing, image analysis, and signal manipulation in healthcare applications.
Compliance
Industry Standards: The XC5VLX155-3FFG1153C complies with industry standards for FPGA components, ensuring reliability, performance, and compatibility with industry protocols and design requirements.
Identification
The designation XC5VLX155-3FFG1153C provides detailed information about the FPGA component's configuration, speed grade, and package type, facilitating accurate identification and seamless integration into electronic designs and systems.
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