Product Specification
The XC2C64A-7PCG44C is a high-performance Complex Programmable Logic Device (CPLD) from Xilinx’s industry-leading CoolRunner-II family. This versatile device features 64 macrocells with advanced system integration capabilities in a space-efficient 44-pin VQFP package, making it ideal for modern surface-mount designs. The “-7” speed grade indicates superior performance with minimal propagation delays, while the “C” suffix denotes commercial temperature range operation. The XC2C64A-7PCG44C combines excellent performance with ultra-low power consumption, perfect for applications requiring reliability and efficiency.
Key specifications of the XC2C64A-7PCG44C include:
- 64 macrocells for versatile logic implementation
- 1,500 usable gates for complex design requirements
- Up to 33 user I/O pins available in the 44-pin VQFP package
- DataGATE technology for significant power reduction
- Advanced 0.18ฮผm CMOS process technology
- Commercial temperature range (0ยฐC to 70ยฐC)
- 1.8V core voltage with 3.3V I/O compatibility
- JTAG programming interface for easy configuration
- Standby current as low as 33ฮผA for power-sensitive applications
- Slim 10mm ร 10mm package with 0.8mm pitch for modern PCB designs
Price
The XC2C64A-7PCG44C is competitively priced for its VQFP package option, typically ranging from $8.50 to $12.00 per unit depending on quantity and supplier. The VQFP package offers excellent value for designs requiring efficient space utilization and surface-mount compatibility. Volume discounts are available for bulk orders, and pricing may fluctuate based on market conditions and availability. Contact authorized Xilinx distributors for current pricing and availability of the XC2C64A-7PCG44C.
Documents & Media
Access comprehensive documentation for the XC2C64A-7PCG44C:
- Detailed datasheet with complete electrical specifications
- VQFP package installation and soldering guidelines
- PCB design recommendations for optimal routing
- Programming guide for implementation in your designs
- Application notes for optimal usage scenarios
- Package drawings and dimensions
- IBIS models for signal integrity simulations
- Programming files and software support documentation
- Thermal performance data for surface-mount designs
All technical documents for the XC2C64A-7PCG44C can be downloaded from Xilinx’s official website or through authorized distributors.
Related Resources
Enhance your experience with the XC2C64A-7PCG44C using these resources:
- Xilinx ISE WebPACK design software (free download)
- CoolRunner-II Family Overview
- Development boards compatible with XC2C64A-7PCG44C
- Reference designs showcasing typical applications
- Technical support forums for implementation assistance
- Migration guides from other CPLD families to CoolRunner-II
- SMT assembly guidelines for VQFP packages
- Power optimization techniques for energy-efficient designs
- PCB footprint and land pattern recommendations
- Reflow soldering profile recommendations
Environmental & Export Classifications
The XC2C64A-7PCG44C meets strict environmental standards and export regulations:
- RoHS compliant (lead-free)
- REACH compliant
- Halogen-free package
- Export Classification: ECCN 3A001
- HTS Code: 8542.39.0000
- Operating temperature range: Commercial (0ยฐC to 70ยฐC)
- Storage temperature range: -65ยฐC to 150ยฐC
- Moisture Sensitivity Level (MSL): Level 3
- Green package compliance: IEC61249-2-21
The XC2C64A-7PCG44C may be subject to export controls depending on destination country. Verify current export requirements before shipping internationally.
When your design demands modern surface-mount compatibility with high-performance programmable logic, the XC2C64A-7PCG44C delivers exceptional value. The thin VQFP package offers excellent thermal performance and PCB space efficiency while providing the advanced features of Xilinx’s CoolRunner-II architecture. This combination of modern packaging and superior performance makes the XC2C64A-7PCG44C an excellent choice for diverse applications from consumer electronics to industrial control systems requiring compact, energy-efficient solutions.


