The XC2VP40-6FF1152C is a powerful Field-Programmable Gate Array (FPGA) from Xilinx’s Virtex-II Pro family, engineered to deliver exceptional performance for demanding digital signal processing, networking, and telecommunications applications. This advanced FPGA combines high-speed processing capabilities with flexible programmability, making it an ideal solution for complex system designs.
Product Specifications
The XC2VP40-6FF1152C features robust specifications that meet the requirements of high-performance applications:
Core Architecture:
- Logic Cells: 40,000 equivalent system gates
- Configurable Logic Blocks (CLBs): Optimized for complex logic implementation
- Block RAM: Integrated memory blocks for efficient data storage
- Speed Grade: -6 (high-performance variant)
- Package Type: FF1152C (1152-pin Fine-Pitch Ball Grid Array)
Performance Characteristics:
- Operating voltage range supports multiple power domains
- High-speed I/O capabilities for demanding interface requirements
- Advanced clock management with multiple clock domains
- Built-in PowerPC processor cores for embedded processing
- Dedicated multipliers for DSP applications
Physical Specifications:
- Package: 1152-pin FBGA (Fine-Pitch Ball Grid Array)
- Industrial temperature range operation
- RoHS compliant design
- Lead-free package construction
Price
The XC2VP40-6FF1152C is positioned as a premium FPGA solution with pricing that reflects its advanced capabilities and performance specifications. Contact authorized distributors for current pricing and volume discounts. Pricing varies based on:
- Order quantity and volume tiers
- Lead time requirements
- Package and speed grade options
- Regional availability and distribution channels
For the most current XC2VP40-6FF1152C pricing information, consult with Xilinx authorized distributors or electronic component suppliers.
Documents & Media
Essential documentation and resources for the XC2VP40-6FF1152C include:
Technical Documentation:
- Virtex-II Pro Family Data Sheet containing detailed electrical and timing specifications
- XC2VP40-6FF1152C pinout diagrams and package drawings
- User guides for development tools and programming software
- Application notes for specific implementation scenarios
Development Resources:
- Reference designs and example projects
- Development board schematics and layouts
- Programming and configuration guides
- Timing analysis and constraint files
Software Tools:
- Xilinx ISE Design Suite compatibility information
- Simulation models and libraries
- Programming file formats and utilities
Related Resources
The XC2VP40-6FF1152C ecosystem includes comprehensive support resources:
Development Boards:
- Evaluation and development platforms featuring the XC2VP40-6FF1152C
- Starter kits with example designs and tutorials
- Third-party development boards and modules
IP Cores and Libraries:
- Pre-verified intellectual property cores
- DSP and communication protocol implementations
- Memory controllers and interface IP
Community and Support:
- Xilinx community forums and knowledge base
- Technical support channels and documentation
- Training materials and certification programs
Environmental & Export Classifications
The XC2VP40-6FF1152C meets stringent environmental and regulatory requirements:
Environmental Compliance:
- RoHS (Restriction of Hazardous Substances) compliant
- Lead-free manufacturing process
- Halogen-free package options available
- WEEE (Waste Electrical and Electronic Equipment) directive compliance
Export Control Information:
- Export Control Classification Number (ECCN) as defined by U.S. export regulations
- Country-specific import/export restrictions may apply
- Dual-use technology considerations for international shipments
Quality Standards:
- ISO 9001 certified manufacturing
- Automotive-grade variants available for specific applications
- Industrial temperature range testing and qualification
The XC2VP40-6FF1152C represents a mature, reliable FPGA solution backed by comprehensive documentation, development tools, and global support infrastructure. Its combination of performance, flexibility, and proven reliability makes it suitable for a wide range of applications requiring high-speed digital processing and programmable logic capabilities.

