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XA3S200-4TQG144Q: High-Performance Automotive FPGA for Advanced Electronic Systems

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

1. Product Specifications

Core Architecture

  • Logic Capacity: 200,000 system gates
  • Logic Cells: 4,320 configurable logic cells
  • Configurable Logic Blocks (CLBs): 480 CLBs for maximum design flexibility
  • Technology Node: Advanced 90nm CMOS process technology
  • Maximum Clock Frequency: Up to 630 MHz for high-speed operations

Memory and Storage

  • Block RAM: 216 Kbits of internal block RAM
  • Total RAM Bits: 221,184 bits for efficient data storage
  • Dedicated Multipliers: 12 ร— 18×18 multipliers for enhanced arithmetic operations

I/O and Connectivity

  • User I/O Pins: 97 configurable I/O pins
  • Package Type: TQFP (Thin Quad Flat Pack)
  • Pin Count: 144 pins
  • Package Code: TQG144
  • Mounting Type: Surface Mount Technology (SMT)

Power Requirements

  • Core Voltage: 1.2V (operating range: 1.14V to 1.26V)
  • I/O Voltage: Configurable based on bank requirements
  • Power Consumption: Optimized for low-power automotive applications

Environmental Specifications

  • Operating Temperature Range: -40ยฐC to +125ยฐC (Q-grade automotive)
  • Industry Compliance: AEC-Q100 qualified
  • Temperature Grade: Automotive Q-grade for extreme environments
  • Package Material: Lead-free, RoHS compliant

Clock Management

  • Digital Clock Managers (DCMs): 4 DCMs for precise timing control
  • Clock Distribution: Advanced clock management capabilities
  • Timing Performance: Industry-leading timing characteristics

2. Price Information

Pricing Structure

  • Unit Price Range: Contact authorized distributors for current pricing
  • Volume Discounts: Available for quantities over 1,000 units
  • Lead Time: 12-16 weeks for standard orders
  • Minimum Order Quantity: Varies by distributor (typically 25-100 units)
  • Lifecycle Status: Active production with long-term availability

Cost Considerations

  • Cost-Effective Solution: Optimized price-to-performance ratio for automotive applications
  • No NRE Costs: Eliminates non-recurring engineering expenses compared to ASICs
  • Design Flexibility: Reduces development costs through reprogrammability

3. Documents & Media

Technical Documentation

  • Datasheet: XA Spartan-3 Automotive FPGA Family Datasheet (DS529)
  • User Guide: Spartan-3 FPGA Family Complete Data Sheet
  • Application Notes: Automotive-specific implementation guidelines
  • Pin Configuration: 144-pin TQFP pinout diagrams and signal descriptions

Design Resources

  • Reference Designs: Automotive application reference implementations
  • Development Tools: Compatible with Xilinx ISE Design Suite
  • Simulation Models: SPICE and behavioral models available
  • Package Information: Mechanical drawings and thermal characteristics

Software Support

  • Design Software: Xilinx ISE Design Suite (legacy support)
  • Programming Tools: Impact configuration software
  • Synthesis Tools: XST (Xilinx Synthesis Technology)
  • Verification Tools: ModelSim simulation support

4. Related Resources

Development Tools

  • Evaluation Boards: Spartan-3 Automotive development platforms
  • Programming Cables: Platform Cable USB and Parallel Cable IV
  • Debug Tools: ChipScope Pro analyzer for real-time debugging
  • IP Cores: Extensive library of automotive-qualified IP cores

Training and Support

  • Technical Documentation: Comprehensive application notes and white papers
  • Online Training: Xilinx/AMD educational resources and webinars
  • Community Forums: Access to design engineer communities
  • Technical Support: Dedicated automotive FPGA support channels

Alternative Products

  • XA3S400-4TQG144Q: Higher logic capacity variant (400K gates)
  • XA3S50-4TQG144Q: Lower cost variant (50K gates)
  • XA3S200-4PQG208Q: Same logic capacity in 208-pin package
  • Next-Generation Options: Zynq-7000 automotive series for advanced applications

Application Resources

  • Automotive Examples: ADAS, infotainment, and instrument cluster designs
  • Implementation Guides: Best practices for automotive FPGA design
  • Compliance Documentation: AEC-Q100 qualification reports
  • Thermal Analysis: Junction temperature and power dissipation calculations

5. Environmental & Export Classifications

Environmental Compliance

  • RoHS Compliance: Fully compliant with RoHS directive 2011/65/EU
  • REACH Regulation: Compliant with EU REACH regulation
  • Lead-Free: Pb-free package and terminations
  • Halogen-Free: Meets halogen-free requirements for automotive applications

Export Control Classifications

  • ECCN Code: 3A001.a.7 (US Export Administration Regulations)
  • HTS Code: 8542.31.0001 (Harmonized Tariff Schedule)
  • Country of Origin: Varies by manufacturing location
  • Export Restrictions: Subject to US export control regulations

Quality Standards

  • ISO/TS 16949: Automotive quality management system compliance
  • AEC-Q100: Automotive Electronics Council qualification
  • Zero Defects: Automotive-grade quality and reliability standards
  • Traceability: Full supply chain traceability for automotive applications

Packaging and Shipping

  • ESD Protection: Electrostatic discharge protective packaging
  • Moisture Sensitivity: MSL-3 (Moisture Sensitivity Level 3)
  • Storage Requirements: -55ยฐC to +150ยฐC storage temperature range
  • Shelf Life: Minimum 2 years from date of manufacture

Applications and Use Cases

Primary Applications

  • Automotive Electronics: Engine control units, transmission control, and body electronics
  • ADAS Systems: Advanced driver assistance systems and sensor fusion
  • Infotainment: In-vehicle entertainment and navigation systems
  • Instrument Clusters: Digital dashboards and display controllers

Key Benefits

  • Automotive Qualified: AEC-Q100 qualified for automotive reliability
  • Cost Effective: Lower total cost of ownership compared to ASIC solutions
  • Design Flexibility: Field-upgradeable and reconfigurable architecture
  • Long-Term Support: Extended product lifecycle for automotive applications

The XA3S200-4TQG144Q represents the perfect balance of performance, reliability, and cost-effectiveness for automotive FPGA applications, making it an ideal choice for engineers developing next-generation automotive electronic systems.