Manufacturer Part Number
XC2V1000-5FG256C
Manufacturer
xilinx
Introduction
Virtex-II series FPGA designed for high-performance logic integration
Product Features and Performance
Field Programmable Gate Array category
1 million gates capacity for complex digital logic
1280 Logic Blocks/Cells (LABs/CLBs) for flexible configuration
737280 Total RAM Bits for data storage
172 I/O pins for connectivity
Voltage supply range between 1.425V and 1.575V
Surface Mount technology for secure PCB attachment
Wide operating temperature range from 0°C to 85°C
Product Advantages
Ample gate density for versatile design scalability
High I/O count for extensive external interfacing
Sufficient RAM for storage purposes within the FPGA
Designed for reliability in various temperature conditions
Key Technical Parameters
Number of LABs/CLBs: 1280
Total RAM Bits: 737280
Number of I/O: 172
Number of Gates: 1000000
Voltage Supply: 1.425V ~ 1.575V
Operating Temperature: 0°C ~ 85°C
Package/Case: 256-BGA
Quality and Safety Features
Strict adherence to industry standards for FPGA design
High-quality fabrication process with reliable performance
Compatibility
Compatible with various design tools and software provided by xilinx
Ease of integration into different system architectures due to standard BGA packaging
Application Areas
Telecommunications
Networking
Data processing
Industrial control
Medical equipment
Defense and aerospace systems
Product Lifecycle
Obsolete status
Potential for replacements or upgrades with newer FPGA models
Several Key Reasons to Choose This Product
Advanced Virtex-II architecture accommodates complex and high-speed logic designs
High gate count allows for large-scale system integration on a single chip
Balanced RAM and I/O ratios for well-rounded performance
Compatibility with a wide temperature range suits various operating environments
Established manufacturer, xilinx, with a reputation for quality and support
Previous generation FPGA offering a potential cost-saving for certain applications requiring less advanced technology