XC3S400-4FTG256I by AMD

Overview of XC3S400-4FTG256I by AMD

The XC3S400-4FTG256I by AMD is a Field Programmable Gate Array (FPGA) with a plastic epoxy package configured in a 256-ball fine-pitch Ball Grid Array (FBGA). This particular model is distinguished by several key features, including its 630 MHz maximum clock frequency, 400,000 gates, and a maximum combinatory delay of 0.61 nanoseconds in a configurable logic block (CLB). These blocks support complex digital computations making it a flexible resource for a variety of electronic applications.

This part, with its substantial capability to handle high-speed signal processing, consists of 8064 logic cells and supports 173 I/O pins structured in a standardized 17 x 17 mm lead-free package. Both RoHS and REACH compliant, the XC3S400-4FTG256I is poised to meet environmentally stringent installments in circuit design projects.

Even though the XC3S400-4FTG256I is marked as obsolete, which indicates cessation in manufacturing, this type of FPGA is still relevant in circuit designs where existing infrastructure utilizes its specifications or where secondary market acquisitions make it viable for legacy support or specific application requirements.

Industry Applications for XC3S400-4FTG256I

The XC3S400-4FTG256I could be beneficial in a number of industry applications by supporting complex digital processes crucial for various technologies:

  • Telecommunications: With the ability to process high-speed signals, this FPGA could potentially be used in base station infrastructure, enabling efficient signal processing and data flow management necessary for mobile communications and broadband connectivity.
  • Consumer Electronics: Given its high frequency and extensive logic cell capabilities, this FPGA could be integrated into consumer electronic devices like high-performance portable gaming systems, where rapid signal processing and enhanced graphics rendering is essential.
  • Computing and Data Storage: The high gate count and robust I/O capacity make this FPGA a potentially suitable choice for server farms and data centers that require vast amounts of data manipulation and throughput.
  • Entertainment and Gaming: In the gaming industry, the quick CLB combinatory delay and considerably sized logic gates could potentially enhance visual output and processing in arcade game systems and virtual reality hardware.

Note that these potential industry applications are conceptual and their implementation would require thorough analysis and verification by engineering and design teams to ensure adherence to specific industry standards and application requirements.

About AMD

AMD (Advanced Micro Devices) is a significant player in the semiconductor industry, known for its wide range of electronic components which include microprocessors, motherboards, and an impressive lineup of FPGAs. In FPGA technology, AMD through its product offerings like the XC3S400-4FTG256I, provides solutions that are integral to system design across various applications, leveraging programmable silicon combined with software-centric solutions. AMD’s emphasis on semiconductor innovation helps cater to the needs for programmable logic devices. Regarding XC3S400-4FTG256I, despite being labeled as obsolete, showcases AMD’s commitment to creating adaptable and powerful solutions suited for complex digital computing tasks.

Where to Find XC3S400-4FTG256I by AMD

To procure the XC3S400-4FTG256I, engineers and procurement specialists should utilize platforms like findchips.com. This platform not only provides current stock levels with real-time updates but also pricing from various distributors. Historically, components such as the XC3S400-4FTG256I have been available at major distributors like DigiKey. To explore similar or alternate parts offered by AMD or other manufacturers in the category of Field Programmable Gate Arrays, findchips.com can guide users to make informed purchasing decisions with comprehensive data.

Compare pricing for XC3S400-4FTG256I and other Field Programmable Gate Arrays / Programmable Logic at findchips.com