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XC3S200-4FTG256Q

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Product Details: XA3S1200E-4FTG256I


XA3S1200E-4FTG256I is a high-performance, low-power FPGA (Field Programmable Gate Array) device that offers advanced features and functionality for a wide range of applications.


XA3S1200E-4FTG256I is part of the popular Xilinx Artix-7 family, which is known for its flexibility, scalability, and cost-effectiveness. This device provides designers with an extensive set of tools to create custom logic designs that meet their specific needs.


XA3S1200E-4FTG256I includes up to 44 high-speed serial transceivers that support data rates up to 6.375 Gbps. These transceivers can be configured for different protocols, such as Ethernet, PCI Express, SATA, and more.


This FPGA has over 1 million logic cells, allowing users to implement complex designs without running out of resources. The large number of logic cells also means that there is plenty of room for future design upgrades or enhancements.


The device comes with a total of 96 Mbits of block RAM, providing ample memory resources for storing intermediate results or buffering data streams. In addition, there are dedicated on-chip DSP blocks for handling digital signal processing tasks.


The XA3S1200E-4FTG256I consumes very little power compared to similar devices in its class. This makes it ideal for use in portable or battery-powered systems where power efficiency is critical.


One of the main advantages of the XA3S1200E-4FTG256I is its versatility. It can be used for a wide range of applications, from industrial control systems to networking equipment to video processing systems. Additionally, the device's programmability allows designers to quickly adapt to changing requirements or standards.


The device's large number of logic cells and DSP blocks make it well-suited for high-performance computing applications. For example, it can be used to accelerate algorithms for machine learning or data analytics.


With its high-speed serial transceivers and built-in MAC units, the XA3S1200E-4FTG256I is ideal for implementing network interfaces and communication protocols.