Part number: XC3S400-4FT256C-ESA
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XC3S400-4FT256C-ESA Component Specifications
General Information: The XC3S400-4FT256C-ESA is a cutting-edge programmable logic device renowned for its exceptional performance and versatility in electronic design applications. This component offers advanced features and robust functionality, making it a preferred choice for high-complexity projects requiring reliable and efficient logic solutions.
Specifications
- Technology: Utilizes state-of-the-art FPGA technology to provide reconfigurable logic capabilities for diverse applications, enabling rapid prototyping and customization.
- Capacity: With a capacity of XC3S400, this device offers ample resources for implementing complex logic functions, memory interfaces, and signal processing algorithms.
- Package: Housed in a 256-pin Fine-pitch Ball Grid Array (FTBGA) package, ensuring secure mounting and reliable connections for seamless integration into electronic systems.
- Speed: Operates at high clock speeds, delivering rapid data processing and response times crucial for real-time applications and high-speed communication protocols.
Applications
- Embedded Systems: Ideal for embedded applications requiring flexible and scalable logic solutions, such as industrial control systems, IoT devices, and telecommunications equipment.
- Signal Processing: Well-suited for signal processing tasks, including digital filtering, image processing, and data compression, due to its high computational performance.
- Communications: Used in communication systems for protocol conversion, data encryption, and channel coding, enhancing data transmission efficiency and reliability.
Compliance
Industry Standards: The XC3S400-4FT256C-ESA complies with industry standards for programmable logic devices, ensuring compatibility, performance, and reliability in accordance with established norms and guidelines.
Identification
The designation XC3S400-4FT256C-ESA provides specific details about the component's configuration, capacity, and packaging, facilitating accurate identification and integration into electronic designs for optimal functionality and performance.
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