XC3S250E-4VQG100I by AMD

Overview of XC3S250E-4VQG100I by AMD

The XC3S250E-4VQG100I is a Field Programmable Gate Array (FPGA) that features 612 Configurable Logic Blocks (CLBs), with an impressive capacity of 250,000 gates. Designed for high-performance applications, it functions at a maximum clock frequency of 572 MHz and contains a total of 5508 logic cells. This part is encapsulated in a compact 100-pin Quad Flat Package (QFP), specifically the VQFP-100 format, which supports surface mounting technology. This product has been manufactured by Advanced Micro Devices, Inc. (AMD) and is coded as RoHS compliant, ensuring it meets the required European standards for hazardous substances.

Important technical attributes include a combinational delay of a CLB-max at 0.76 ns, facilitating swift data processing capabilities. The XC3S250E-4VQG100I operates within an industrial temperature range, from -40 °C to 100 °C, engaging a robust resilience suitable for various environmental conditions. The nominal power supply voltage requirement is 1.2 V with tolerances provided, making it versatile for different on-board power designs. Moreover, it’s notable that the part is labeled as obsolete in its lifecycle phase, which might affect its availability and support.

Industry Applications for XC3S250E-4VQG100I

The XC3S250E-4VQG100I’s robust features such as high gate count, significant number of I/O ports, and its high operating frequency make it conceivable for a vast range of applications across different industries. However, it’s important to consider that these scenarios are illustrative and should be evaluated in detail by engineering and procurement teams for specific use cases.

  • Telecommunications – The device’s high frequency and logic density potentially allow for use in network infrastructure equipment like routers and switchers, which require large amounts of rapid and reliable data processing.
  • Consumer Electronics – Being an FPGA allows for considerable flexibility in the design and re-programmability aspects, meaning it could find applications in consumer electronic devices where adaptation to evolving processing needs is required, such as advanced gaming consoles.
  • Industrial Automation – The industrial temperature grade and the high number of logic cells make this FPGA suitable for complex automation systems, potentially improving the efficiency and responsiveness of automated manufacturing processes.
  • Computing and Data Storage – With its ability to facilitate fast computations and serve numerous I/O requirements, this FPGA can be a part in enhancing cloud computing infrastructure or for use in high-performance servers.

Note that these potential applications are conceptual and must adhere to applicable standards and specifications as stipulated in specific industries.

About AMD

Advanced Micro Devices, Inc. (AMD) is a prominent player in the semiconductor industry, known for its innovation in computing and graphics products. AMD’s portfolio in the realm of Field Programmable Gate Arrays underlines their commitment to delivering high-performance programmable logic solutions. They offer a range of FPGAs designed to meet the diverse needs of modern electronics. The XC3S250E-4VQG100I and similar FPGAs by AMD illustrate their ability to offer robust performance characteristics suitable for a variety of demanding applications.

Where to Find XC3S250E-4VQG100I by AMD

To source the XC3S250E-4VQG100I, interested buyers should consider utilizing comprehensive databases such as findchips.com. This platform allows users to check the availability and current pricing of parts from a plethora of distributors. Historically, this FPGA part has been stocked by distributors like DigiKey. To access a broader range of options, the Field Programmable Gate Arrays link at findchips.com can lead users to alternative solutions from AMD or other manufacturers as well. Due to its obsolete status, verifying the current stock is crucial.

Compare pricing for XC3S250E-4VQG100I and other Field Programmable Gate Arrays / Programmable Logic at findchips.com