Part number: XC3S1000-4FG456C
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XC3S1000-4FG456C Component Specifications
General Information: The XC3S1000-4FG456C is a high-performance field-programmable gate array (FPGA) known for its advanced capabilities and versatility in electronic design and development. This component is designed to offer flexibility, speed, and reliability in a wide range of applications, from telecommunications to industrial automation.
Specifications
- Technology: Utilizes advanced semiconductor technology to provide programmable logic functions, memory resources, and high-speed interfaces for complex digital systems.
- Package: Housed in a 456-ball Fine-Pitch Ball Grid Array (FG456) package, ensuring secure mounting and efficient thermal management for optimal performance.
- Speed: Operates at high clock speeds and offers rapid signal processing capabilities, making it suitable for demanding real-time applications.
- Configuration: Supports in-system programming and reconfiguration, allowing for dynamic adjustments to logic functions and connectivity as needed.
- Power Efficiency: Designed for low power consumption while maintaining high performance levels, ideal for energy-efficient electronic systems.
Applications
- Telecommunications: Used in networking equipment, base stations, and data communication systems for signal processing and protocol implementation.
- Industrial Automation: Employed in control systems, robotics, and sensor interfaces to enable precise control and monitoring functions.
- Embedded Systems: Integrated into embedded devices, IoT applications, and consumer electronics for custom logic implementation and hardware acceleration.
Compliance
Industry Standards: The XC3S1000-4FG456C complies with industry standards for FPGA devices, ensuring compatibility, reliability, and performance consistency across various applications and environments.
Identification
The designation XC3S1000-4FG456C provides detailed information about the FPGA's capacity, packaging, and key features, facilitating accurate selection and integration into electronic designs and systems.
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