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XC7K160T-L2FBG484I Specifications
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TypeParameter
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Supplier Device Package484-FCBGA (23x23)
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Package / Case484-BBGA, FCBGA
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Operating Temperature-40°C ~ 100°C (TJ)
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Mounting TypeSurface Mount
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Voltage - Supply0.87V ~ 0.93V
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Number of I/O285
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Total RAM Bits11980800
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Number of Logic Elements/Cells162240
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Number of LABs/CLBs12675
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DigiKey ProgrammableNot Verified
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PackagingTray
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Product StatusActive
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SeriesKintex®-7
The XC7K160T-L2FBG484I is a specific model of integrated circuit (IC) chip from Xilinx, which belongs to the Kintex-7 family of FPGAs (Field-Programmable Gate Arrays). Here are some advantages and application scenarios of this chip:Advantages: 1. High-performance FPGA: The XC7K160T-L2FBG484I offers a high logic density and performance capabilities, making it suitable for complex and computationally intensive applications. 2. Programmable flexibility: FPGAs are known for their ability to be reprogrammed, allowing for flexibility in design and functionality. This chip can be customized to meet specific application requirements. 3. Low power consumption: The Kintex-7 family of FPGAs, including the XC7K160T-L2FBG484I, is designed to provide high performance while minimizing power consumption, making it suitable for power-sensitive applications. 4. Integrated features: The chip includes various integrated features such as high-speed transceivers, memory controllers, and DSP (Digital Signal Processing) blocks, which enhance its capabilities and reduce the need for external components.Application scenarios: 1. Communications and networking: The XC7K160T-L2FBG484I can be used in applications such as wireless base stations, routers, and switches, where high-speed data processing, protocol handling, and signal processing are required. 2. Aerospace and defense: The chip's high performance and programmability make it suitable for applications in radar systems, avionics, satellite communication, and military-grade equipment. 3. Industrial automation: The XC7K160T-L2FBG484I can be utilized in industrial control systems, robotics, and machine vision applications, where real-time processing, sensor interfacing, and complex algorithms are needed. 4. High-performance computing: The chip's computational power and flexibility make it suitable for applications in scientific research, data centers, and supercomputing, where parallel processing and acceleration of algorithms are crucial.It's important to note that the specific application scenarios may vary depending on the requirements and design choices made by the system designer.