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XCV200-4FGG256C FPGA: High-Performance Virtex Series Field-Programmable Gate Array

Original price was: $20.00.Current price is: $19.00.

The XCV200-4FGG256C is a powerful field-programmable gate array (FPGA) from Xilinx’s Virtex series, designed to deliver exceptional performance for demanding digital signal processing and high-speed computing applications. This advanced FPGA combines robust functionality with reliable operation, making it an ideal choice for engineers developing complex electronic systems.

Product Specifications

The XCV200-4FGG256C offers impressive technical capabilities that set it apart in the FPGA market. This device features 200,000 system gates, providing substantial logic capacity for complex designs. The FPGA incorporates advanced CLB (Configurable Logic Block) architecture with 1,200 logic cells, enabling flexible implementation of digital circuits and algorithms.

Key specifications of the XCV200-4FGG256C include a -4 speed grade, indicating high-performance operation with fast propagation delays and setup times. The device operates reliably across commercial temperature ranges, ensuring consistent performance in various environmental conditions. With its 256-pin Fine-pitch Ball Grid Array (FBGA) packaging, the XCV200-4FGG256C provides excellent signal integrity and thermal characteristics while maintaining a compact footprint.

The FPGA supports multiple I/O standards, including LVTTL, LVCMOS, and GTL+, offering designers flexibility in interfacing with different system components. Built-in memory resources include block RAM and distributed RAM options, supporting diverse data storage requirements within FPGA-based designs.

Price Information

Pricing for the XCV200-4FGG256C varies based on quantity, supplier, and current market conditions. This FPGA typically falls within the mid-range pricing tier for Virtex series devices, reflecting its balance of performance and cost-effectiveness. For accurate pricing information, contact authorized Xilinx distributors or electronic component suppliers who can provide current quotes based on your specific volume requirements and delivery timeline.

Educational institutions and volume purchasers may qualify for special pricing programs. When evaluating the XCV200-4FGG256C price, consider the total cost of ownership, including development tools, support resources, and long-term availability commitments.

Documents & Media

Comprehensive documentation supports successful implementation of the XCV200-4FGG256C in your designs. Essential resources include the detailed datasheet containing electrical specifications, timing parameters, and pinout information. The Virtex series user guide provides in-depth coverage of architecture details, configuration options, and design guidelines specific to the XCV200-4FGG256C.

Application notes demonstrate practical implementation techniques, design optimization strategies, and best practices for maximizing FPGA performance. Reference designs showcase typical applications and provide starting points for custom development projects. Package information documents detail mechanical specifications, thermal characteristics, and PCB layout recommendations for the 256-pin FBGA package.

Development software documentation covers integration with Xilinx ISE Design Suite and other EDA tools, ensuring smooth design flow from concept to implementation. Migration guides assist engineers transitioning from other FPGA families or upgrading existing XCV200-4FGG256C designs.

Related Resources

The XCV200-4FGG256C ecosystem includes various supporting products and resources that enhance development efficiency. Development boards featuring the XCV200-4FGG256C provide hands-on evaluation platforms for prototyping and testing. These boards typically include essential peripherals, connectors, and support circuitry needed for comprehensive FPGA evaluation.

Software tools specifically optimized for the XCV200-4FGG256C include synthesis, place-and-route, and timing analysis applications. IP cores compatible with this FPGA expand functionality without requiring custom development, covering areas such as digital signal processing, communications protocols, and interface controllers.

Training materials, including webinars, tutorials, and technical papers, help engineers maximize their productivity with the XCV200-4FGG256C. Online communities and forums provide peer support and knowledge sharing opportunities for developers working with this FPGA family.

Environmental & Export Classifications

The XCV200-4FGG256C meets stringent environmental and regulatory standards required for commercial and industrial applications. This FPGA complies with RoHS (Restriction of Hazardous Substances) directives, ensuring environmentally responsible manufacturing and disposal practices. Lead-free packaging options support green electronics initiatives and regulatory compliance requirements.

Environmental operating specifications for the XCV200-4FGG256C include commercial temperature range operation, typically 0ยฐC to +85ยฐC for ambient conditions. The device demonstrates excellent reliability under standard operating conditions, with MTBF (Mean Time Between Failures) ratings supporting mission-critical applications.

Export classification information indicates the XCV200-4FGG256C’s status under international trade regulations, including ECCN (Export Control Classification Number) designations where applicable. This information assists companies in determining export licensing requirements and compliance obligations for international shipments and projects.

Quality certifications demonstrate the XCV200-4FGG256C’s adherence to industry standards for electronic components, including ISO quality management systems and automotive-grade reliability testing where applicable. These certifications provide confidence in device performance and long-term reliability for critical applications.

The XCV200-4FGG256C represents an excellent choice for engineers seeking a reliable, high-performance FPGA solution that balances advanced capabilities with practical implementation considerations. Its comprehensive support ecosystem and proven track record make it suitable for a wide range of applications requiring flexible, programmable logic functionality.