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XC3S400A-4FTG256C Specifications
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TypeParameter
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Number of Logic Elements/Cells8064
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Number of LABs/CLBs896
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Supplier Device Package256-FTBGA (17x17)
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Package / Case256-LBGA
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Operating Temperature0°C ~ 85°C (TJ)
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Mounting TypeSurface Mount
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Voltage - Supply1.14V ~ 1.26V
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Number of Gates400000
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Number of I/O195
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Total RAM Bits368640
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DigiKey ProgrammableNot Verified
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PackagingTray
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Product StatusActive
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SeriesSpartan®-3A
The XC3S400A-4FTG256C is a specific model of the Xilinx Spartan-3A FPGA (Field-Programmable Gate Array) family. Here are some advantages and application scenarios of this integrated circuit chip:Advantages: 1. Programmability: FPGAs are highly programmable devices, allowing users to configure the chip's logic functions and interconnections according to their specific requirements. 2. Flexibility: The XC3S400A-4FTG256C offers a large number of configurable logic blocks (CLBs), digital signal processing (DSP) slices, and input/output (I/O) pins, providing flexibility in implementing various digital designs. 3. High-performance: The Spartan-3A FPGA family offers high-speed performance, making it suitable for applications that require fast data processing and high throughput. 4. Low power consumption: The XC3S400A-4FTG256C is designed to be power-efficient, making it suitable for battery-powered or low-power applications. 5. Cost-effective: FPGAs provide a cost-effective solution compared to custom ASIC (Application-Specific Integrated Circuit) designs, as they can be reprogrammed and reused for different applications.Application scenarios: 1. Digital signal processing: The XC3S400A-4FTG256C's DSP slices and high-performance capabilities make it suitable for applications such as audio/video processing, image recognition, and wireless communication. 2. Industrial automation: FPGAs are commonly used in industrial automation systems for tasks like motor control, sensor interfacing, and real-time monitoring. 3. Communications: The XC3S400A-4FTG256C can be used in networking equipment, such as routers and switches, to handle high-speed data processing and packet routing. 4. Test and measurement: FPGAs are widely used in test and measurement equipment for their ability to implement complex signal processing algorithms and perform real-time data analysis. 5. Prototyping and development: FPGAs are often used in the early stages of product development to quickly prototype and validate digital designs before moving to custom ASICs.It's important to note that the specific application scenarios may vary depending on the requirements and design goals of a particular project.