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XC2064-33PG68M Field Programmable Gate Array – Xilinx Legacy FPGA

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

The XC2064-33PG68M is a legacy field programmable gate array (FPGA) from Xilinx’s pioneering XC2000 Logic Cell Array family. This XC2064-33PG68M represents the foundation of modern FPGA technology, offering fully programmable digital logic implementation for embedded systems and custom digital designs.

1. Product Specifications

Core Architecture

The XC2064-33PG68M features a comprehensive logic cell array architecture with the following specifications:

Logic Capabilities:

  • 64 Configurable Logic Blocks (CLBs) providing flexible digital logic implementation
  • 600 equivalent gates of logic complexity for medium-scale digital designs
  • 33 MHz maximum operating frequency for real-time applications
  • 5.0V nominal supply voltage for TTL/CMOS compatibility

Package Details:

  • PG68 package type – 68-pin plastic grid array
  • Military temperature grade (M) supporting extended operating conditions
  • CMOS static memory technology for low power consumption
  • 68-pin count providing adequate I/O connectivity

Programmable Elements:

  • Input/Output Blocks (IOBs) for external interface configuration
  • Programmable interconnect resources enabling flexible routing
  • Configurable logic functions supporting complex digital designs
  • Static memory-based configuration ensuring design persistence

Development Support

The XC2064-33PG68M is supported by Xilinx’s comprehensive development ecosystem:

  • XACT Development System for design entry and implementation
  • Schematic capture tools and macro libraries
  • Automatic place and route capabilities
  • Logic and timing simulation for design verification
  • In-circuit emulation support for real-time debugging

2. Price

Pricing Information:

  • Current market pricing for XC2064-33PG68M varies based on quantity and supplier
  • Legacy component pricing reflects limited availability and specialized applications
  • Contact authorized distributors for current pricing and availability
  • Quantity breaks available for volume orders
  • Lead times may vary due to legacy status

Note: As a legacy component, the XC2064-33PG68M may have limited availability. Contact suppliers directly for current stock levels and pricing.

3. Documents & Media

Available Documentation

  • Official Xilinx XC2064 datasheet with complete technical specifications
  • XC2000 family user guide covering programming and design methodology
  • XACT development system documentation for software tools usage
  • Application notes for specific implementation examples
  • Package mechanical drawings and pinout diagrams

Design Resources

  • Schematic symbols and PCB footprints for CAD systems
  • SPICE models for circuit simulation
  • Timing specifications and performance characteristics
  • Programming guides and configuration procedures
  • Reference designs and example implementations

Software Tools

  • XACT Design Editor for interactive design capture
  • Place and route software for automatic implementation
  • Timing analysis tools for performance optimization
  • Configuration utilities for device programming

4. Related Resources

Compatible Components

XC2000 Family Alternatives:

  • XC2064-50PG68M – Higher speed variant (50 MHz)
  • XC2064-70PG68M – Maximum performance version (70 MHz)
  • XC2064-33PC68C – Commercial temperature grade equivalent
  • XC2064-33PG68I – Industrial temperature grade option

Development Boards

  • XC2000 evaluation boards for prototyping and testing
  • Programming cables and configuration hardware
  • Reference design kits with example applications
  • Educational development platforms for learning FPGA design

Application Areas

The XC2064-33PG68M is suitable for:

  • Legacy system maintenance and replacement applications
  • Educational projects teaching FPGA fundamentals
  • Prototyping simple digital logic circuits
  • Retrofit applications requiring XC2000 compatibility
  • Historical technology preservation and research

Migration Path

For new designs, consider modern Xilinx FPGA families:

  • Spartan series for cost-effective applications
  • Artix series for low-power requirements
  • Kintex series for balanced performance
  • Virtex series for high-performance applications

5. Environmental & Export Classifications

Environmental Compliance

RoHS Compliance:

  • Legacy component manufactured before RoHS directive implementation
  • May contain restricted substances including lead-based solder
  • Check specific date codes for compliance status
  • Alternative RoHS-compliant solutions available in modern FPGA families

REACH Regulation:

  • Component predates REACH implementation
  • Substances of Very High Concern (SVHC) may be present
  • Consult manufacturer for specific chemical composition data
  • Modern alternatives comply with current REACH requirements

Operating Conditions

Environmental Specifications:

  • Military temperature range (-55ยฐC to +125ยฐC) for harsh environments
  • Extended humidity tolerance for challenging operating conditions
  • Shock and vibration resistance meeting military standards
  • Long-term reliability proven in deployed systems

Export Classifications

Trade Compliance:

  • Export Control Classification Number (ECCN) may apply
  • International Traffic in Arms Regulations (ITAR) status: Standard commercial
  • Export Administration Regulations (EAR) compliance required
  • Country-specific restrictions may apply for certain destinations

Certifications:

  • Military specification compliance for defense applications
  • Quality standards meeting aerospace requirements
  • Traceability documentation available for critical applications
  • Chain of custody maintained for secure applications

Packaging and Shipping

  • Moisture sensitivity level appropriate for component handling
  • Anti-static packaging preventing electrostatic damage
  • Temperature-controlled shipping for sensitive applications
  • Proper labeling for regulatory compliance during transport

The XC2064-33PG68M represents a significant milestone in FPGA technology evolution. While newer alternatives offer superior performance and features, this component remains valuable for legacy system support, educational applications, and historical technology preservation.