Part number: XC2V1500-4FG676-C
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XC2V1500-4FG676-C Component Specifications
General Information: The XC2V1500-4FG676-C is a high-performance FPGA (Field-Programmable Gate Array) component renowned for its versatility and efficiency in diverse electronic applications. This component is designed to deliver advanced programmability and processing power for complex digital systems.
Specifications
- Architecture: Utilizes a sophisticated FPGA architecture with a high logic cell count and versatile routing resources to enable flexible and efficient implementation of complex digital designs.
- Speed Grade: Operates at a specified speed grade to meet performance requirements for demanding applications, ensuring rapid data processing and reliable operation.
- Package Type: Housed in a 676-pin Fine-Pitch Ball Grid Array (FBGA) package, providing a compact footprint and efficient heat dissipation for enhanced reliability.
- Configuration: Supports dynamic reconfiguration and on-the-fly updates, allowing for adaptive and scalable system designs without the need for hardware changes.
Applications
- Telecommunications: Ideal for use in telecommunications infrastructure, networking equipment, and data processing systems that require high-speed data handling and programmable functionality.
- Embedded Systems: Commonly integrated into embedded systems for industrial automation, IoT devices, and signal processing applications due to its reconfigurable nature and processing capabilities.
- Consumer Electronics: Used in consumer electronics products such as high-definition displays, gaming consoles, and multimedia devices to enable advanced features and performance.
Compliance
Industry Standards: The XC2V1500-4FG676-C complies with industry standards for FPGA components, ensuring reliability, compatibility, and performance consistency across various applications.
Identification
The designation XC2V1500-4FG676-C signifies key attributes of the FPGA, including its logic capacity, package type, speed grade, and configurability, facilitating accurate identification and integration into complex electronic systems.
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