Part number: XC4VL15-10SFG363I
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XC4VL15-10SFG363I Component Specifications
General Information: The XC4VL15-10SFG363I is a high-performance field-programmable gate array (FPGA) component designed for advanced digital applications in industries such as telecommunications, aerospace, and high-performance computing. Renowned for its versatility and processing power, this FPGA offers exceptional performance and reliability in demanding environments.
Specifications
- Architecture: Utilizes a sophisticated architecture with programmable logic blocks, memory elements, and high-speed interconnects to support complex digital designs and algorithms.
- Speed Grade: Operating at a speed grade of 10, the XC4VL15-10SFG363I delivers rapid processing capabilities for real-time applications and data-intensive tasks.
- Package: Housed in a compact 363-pin Fine-Pitch Ball Grid Array (FBGA) package, this FPGA offers high pin count and efficient thermal management for optimal performance.
- Configuration: Supports in-system reprogramming and configuration to adapt to evolving design requirements and facilitate rapid prototyping and development cycles.
Applications
- Telecommunications: Ideal for implementing signal processing, encryption, and networking functions in telecommunications infrastructure and wireless communication systems.
- Aerospace: Used in avionics, radar systems, and flight control applications where reliability, performance, and radiation tolerance are critical.
- High-Performance Computing: Deployed in supercomputing clusters, data centers, and scientific research environments to accelerate data processing and computation-intensive tasks.
Compliance
Industry Standards: The XC4VL15-10SFG363I complies with industry standards for FPGA design, quality, and reliability, ensuring compatibility with existing hardware and software ecosystems.
Identification
The designation XC4VL15-10SFG363I provides detailed information about the FPGA's configuration, speed grade, and packaging, enabling precise identification and integration into complex digital systems and applications.
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