XC2C256-5TQ144I
XC2C256-5TQ144I
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AMD Xilinx

XC2C256-5TQ144I


XC2C256-5TQ144I
F20-XC2C256-5TQ144I
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XC2C256-5TQ144I Attributes


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XC2C256-5TQ144I Overview



Xilinx's XC2C256-5TQ144I chip model is a high-performance digital signal processing chip specifically designed for embedded processing, image processing and other related applications. It is based on the Xilinx Spartan-II family of Field Programmable Gate Arrays (FPGAs) and is programmed using the Hardware Description Language (HDL). The chip model features a high-speed logic architecture that supports a maximum operating frequency of up to 200 MHz, and has 256 macrocells, 5,000 slices, and 144 I/O pins.


The XC2C256-5TQ144I chip model is a powerful and reliable solution for a wide range of applications, offering a number of advantages over traditional systems. It offers a high level of flexibility and scalability, allowing users to quickly and easily customize their designs to meet their specific requirements. Additionally, the chip model is designed to be highly reliable and durable, with a long service life. It also offers low power consumption, making it an ideal solution for applications that require efficient power management.


The XC2C256-5TQ144I chip model is designed with the intention of providing a cost-effective and reliable solution for a variety of applications. As the demand for high-performance digital signal processing, embedded processing and image processing increases, the XC2C256-5TQ144I chip model is expected to become increasingly popular. It is also possible to upgrade the chip model for use in more advanced communication systems, allowing users to take advantage of the latest technologies.


Overall, the XC2C256-5TQ144I chip model is an ideal solution for a variety of applications, offering a high level of flexibility and scalability, as well as a long service life and low power consumption. It is designed to meet the growing demand for high-performance digital signal processing, embedded processing and image processing, and can be upgraded for use in more advanced communication systems.



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