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XC4005E-PQ208C FPGA: High-Performance Programmable Logic Solution

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

The XC4005E-PQ208C is a versatile field-programmable gate array (FPGA) from Xilinx’s XC4000E series, designed to deliver reliable programmable logic capabilities for a wide range of electronic applications. This advanced semiconductor device offers engineers and designers the flexibility to implement custom digital circuits with exceptional performance and efficiency.

Product Specifications

The XC4005E-PQ208C features a robust architecture optimized for demanding applications. This FPGA incorporates 196 configurable logic blocks (CLBs) and provides 10,000 system gates, making it suitable for medium-complexity digital designs. The device operates across commercial temperature ranges and supports various I/O standards.

Key technical specifications of the XC4005E-PQ208C include a 208-pin plastic quad flat pack (PQFP) package that ensures reliable connectivity and thermal performance. The device features distributed RAM capabilities and supports both combinatorial and sequential logic implementations. With its advanced routing architecture, the XC4005E-PQ208C enables efficient signal distribution throughout the device.

The FPGA supports multiple configuration modes, including serial and parallel programming options. Power consumption characteristics are optimized for battery-powered and power-sensitive applications, while maintaining high-speed operation capabilities essential for real-time processing requirements.

Pricing Information

XC4005E-PQ208C pricing varies based on order quantity, delivery requirements, and supplier selection. Volume discounts are typically available for quantities exceeding 100 units, with significant cost reductions for production-level orders of 1,000 pieces or more.

Current market pricing reflects the device’s position as a mature, cost-effective FPGA solution. Educational institutions and development projects often qualify for special pricing programs. Contact authorized distributors for current pricing information and availability status, as semiconductor pricing fluctuates based on market conditions and supply chain factors.

Long-term availability and pricing stability make the XC4005E-PQ208C an attractive choice for products requiring extended lifecycle support and predictable component costs throughout the production cycle.

Documents & Media

Comprehensive technical documentation supports XC4005E-PQ208C implementation and development. The complete datasheet provides detailed electrical characteristics, timing specifications, and package information essential for successful design integration.

Application notes demonstrate practical implementation examples and design best practices specific to the XC4005E-PQ208C architecture. These resources include reference designs, configuration examples, and optimization techniques that accelerate development timelines and improve design reliability.

Development tools documentation covers software requirements, programming procedures, and debugging methodologies. User guides provide step-by-step instructions for device configuration, simulation, and testing procedures that ensure proper functionality in target applications.

Technical support resources include online forums, knowledge bases, and direct engineering support channels. Video tutorials and webinar recordings offer visual learning opportunities for developers new to FPGA technology or the XC4005E-PQ208C specifically.

Related Resources

The XC4005E-PQ208C ecosystem includes compatible development boards, programming tools, and reference designs that simplify evaluation and prototyping activities. Evaluation kits provide complete hardware platforms for testing device capabilities and validating design concepts before committing to custom PCB development.

Software tools supporting the XC4005E-PQ208C include industry-standard design entry, synthesis, and place-and-route applications. These tools enable efficient design capture, optimization, and implementation while providing comprehensive timing analysis and verification capabilities.

Compatible intellectual property (IP) cores extend device functionality and reduce development time. Available IP includes communication protocols, signal processing functions, and interface controllers specifically optimized for the XC4005E-PQ208C architecture.

Training resources and educational materials support skill development and knowledge transfer within engineering teams. These resources range from basic FPGA concepts to advanced implementation techniques specific to the XC4000E device family.

Environmental & Export Classifications

The XC4005E-PQ208C meets stringent environmental standards and regulatory requirements for commercial and industrial applications. RoHS compliance ensures lead-free manufacturing processes that align with global environmental protection initiatives.

Operating temperature specifications define reliable performance across commercial temperature ranges, typically from 0ยฐC to +70ยฐC for commercial grade devices. Storage temperature ratings extend beyond operating ranges to accommodate shipping and warehousing requirements.

Moisture sensitivity classification provides guidelines for handling and storage procedures that prevent device damage during assembly processes. Proper handling procedures ensure optimal device reliability and longevity in finished applications.

Export classification information addresses international trade requirements and restrictions that may apply to the XC4005E-PQ208C. These classifications help determine licensing requirements and shipping restrictions for international projects and customers.

Environmental testing standards verify device performance under various stress conditions including thermal cycling, humidity exposure, and mechanical shock. These qualifications ensure reliable operation in challenging deployment environments where the XC4005E-PQ208C may be utilized.

The device packaging materials are selected for compatibility with standard PCB assembly processes while minimizing environmental impact throughout the product lifecycle. Recycling information supports end-of-life disposal planning and environmental responsibility initiatives.