Part number: XC5VFX30T-1FF665I
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XC5VFX30T-1FF665I Component Specifications
General Information: The XC5VFX30T-1FF665I is a sophisticated programmable logic device (PLD) renowned for its versatility and high-performance capabilities in demanding electronic systems. This component is designed to deliver exceptional speed, reliability, and functionality for a wide range of applications.
Specifications
- Technology: Utilizes advanced FPGA technology to provide reconfigurable logic elements, memory blocks, and high-speed connectivity interfaces for flexible system integration.
- Speed Grade: Operating at a high-speed grade of 1, the XC5VFX30T-1FF665I offers rapid data processing and efficient performance for time-critical applications.
- Package: Housed in a 665-pin flip-chip ball grid array (FF665), this component ensures secure mounting and reliable connections for stable operation.
- Configuration: Supports extensive programmability options, allowing users to customize logic functions, memory configurations, and I/O settings to meet specific project requirements.
Applications
- Telecommunications: Ideal for telecommunications infrastructure, networking equipment, and data processing systems that demand high-speed data handling and signal processing capabilities.
- Industrial Automation: Suitable for industrial automation, control systems, and robotics applications requiring real-time processing, sensor interfacing, and complex logic operations.
- Embedded Systems: Commonly used in embedded systems, IoT devices, and automotive electronics to enable rapid prototyping, algorithm acceleration, and system integration.
Compliance
Industry Standards: The XC5VFX30T-1FF665I complies with industry standards for programmable logic devices, ensuring reliability, interoperability, and performance consistency across diverse applications.
Identification
The designation XC5VFX30T-1FF665I signifies key features of the component, including its speed grade, package type, and configuration capabilities, facilitating accurate identification and seamless integration into complex electronic designs.
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