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XC4010-5PG191M FPGA: High-Performance Programmable Logic Solution

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

The XC4010-5PG191M is a versatile field-programmable gate array (FPGA) from Xilinx’s XC4000 series, designed to deliver reliable programmable logic performance for a wide range of applications. This XC4010-5PG191M features advanced architecture optimized for both prototyping and production environments.

Product Specifications

The XC4010-5PG191M offers robust technical specifications that make it suitable for demanding digital design applications:

Core Architecture:

  • Logic cells: 400 configurable logic blocks
  • System gates: Up to 10,000 equivalent gates
  • Speed grade: -5 (high-performance variant)
  • Package type: PG191 (191-pin plastic grid array)
  • Operating voltage: 5V TTL/CMOS compatible

Memory and I/O Features:

  • User I/O pins: Up to 142 available
  • Internal RAM blocks for data storage
  • Dedicated clock distribution networks
  • Advanced routing architecture for optimal signal integrity

Performance Characteristics:

  • Maximum operating frequency varies by design complexity
  • Low power consumption in standby mode
  • Industrial temperature range operation
  • High noise immunity and signal integrity

Price Information

The XC4010-5PG191M pricing varies based on quantity, supplier, and market conditions. For current pricing and availability of the XC4010-5PG191M, we recommend contacting authorized distributors or checking electronic component marketplaces. Volume discounts are typically available for production quantities.

Pricing Factors:

  • Order quantity (single units vs. volume pricing)
  • Lead time requirements
  • Packaging preferences
  • Geographic location and shipping costs

Documents & Media

Technical Documentation:

  • XC4010-5PG191M datasheet with complete electrical specifications
  • Programming and configuration guides
  • Application notes for common design patterns
  • Pin configuration diagrams and package drawings
  • Timing specifications and AC/DC characteristics

Development Resources:

  • Reference designs and example projects
  • PCB layout guidelines and recommendations
  • Thermal management documentation
  • Quality and reliability reports

Software Tools:

  • Compatible with legacy Xilinx development software
  • Programming file formats and utilities
  • Simulation models and timing files

Related Resources

Compatible Products:

  • Other XC4000 series FPGAs for scalability options
  • Configuration PROMs and memory devices
  • Development boards featuring the XC4010-5PG191M
  • Programming cables and hardware tools

Design Support:

  • Online community forums and user groups
  • Technical support documentation
  • Training materials and tutorials
  • Migration guides for design updates

Alternative Solutions:

  • Pin-compatible variants in different speed grades
  • Modern FPGA alternatives for new designs
  • Cost-optimized options for high-volume applications

Environmental & Export Classifications

Environmental Compliance:

  • RoHS compliant versions available
  • Lead-free packaging options
  • Halogen-free materials where applicable
  • Environmental stress testing certifications

Operating Conditions:

  • Commercial temperature range: 0ยฐC to +70ยฐC
  • Industrial temperature range: -40ยฐC to +85ยฐC
  • Humidity and altitude specifications
  • ESD protection ratings

Export Classifications:

  • Export Control Classification Number (ECCN) compliance
  • Country of origin documentation
  • Trade compliance certifications
  • Restricted party screening compatibility

Quality Standards:

  • ISO 9001 manufacturing quality systems
  • Automotive qualification standards where applicable
  • Military and aerospace certifications for qualified versions
  • Reliability testing and qualification reports

The XC4010-5PG191M continues to serve as a reliable solution for legacy designs and applications requiring proven FPGA technology. Its mature architecture and extensive documentation make it an excellent choice for maintaining existing systems while providing the flexibility needed for custom digital logic implementations.