Part number: XC4VFX100-10FFG1152I
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XC4VFX100-10FFG1152I Component Specifications
General Information: The XC4VFX100-10FFG1152I is a high-performance FPGA (Field-Programmable Gate Array) component known for its advanced capabilities and reliability in complex electronic systems. This component offers extensive programmability and computational power, making it suitable for demanding applications in various industries.
Specifications
- Architecture: Utilizes a sophisticated FPGA architecture with a high number of logic cells, memory blocks, and DSP slices to enable complex logic functions and signal processing tasks.
- Speed Grade: Operates at a speed grade of 10, providing fast processing capabilities for real-time applications and high-speed data processing requirements.
- Package: Housed in a FFG (Fine-Pitch Ball Grid Array) package with 1152 pins, offering a compact form factor while supporting extensive I/O connectivity for system integration.
- Configuration: Supports flexible configuration options, allowing users to program the FPGA to perform specific functions tailored to their application requirements.
Applications
- Telecommunications: Used in telecommunications infrastructure for signal processing, data routing, and protocol handling in communication networks.
- Embedded Systems: Integrated into embedded systems for industrial automation, IoT (Internet of Things) devices, and control systems requiring customizable and high-performance computing capabilities.
- Signal Processing: Ideal for applications involving digital signal processing, image processing, audio processing, and other computational tasks that demand high-speed processing and reconfigurability.
Compliance
Industry Standards: The XC4VFX100-10FFG1152I complies with industry standards for FPGA components, ensuring compatibility, reliability, and performance consistency across different systems and applications.
Identification
The designation XC4VFX100-10FFG1152I provides detailed information about the FPGA's model, speed grade, package type, and pin configuration, facilitating accurate identification and integration into electronic designs and systems.
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