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XCZU5EG-2SFVC784I – AMD Zynq UltraScale+ MPSoC System-on-Chip

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

The XCZU5EG-2SFVC784I is a high-performance System-on-Chip (SoC) from AMD’s Zynq UltraScale+ MPSoC EG family, combining advanced ARM processing capabilities with FPGA programmable logic. This cutting-edge device delivers exceptional processing power and flexibility for demanding embedded applications.

1. Product Specifications

Core Processor Architecture

  • Quad ARM Cortex-A53 MPCore with CoreSight debug support
  • Dual ARM Cortex-R5 real-time processors with CoreSight
  • ARM Mali-400 MP2 graphics processing unit
  • Operating frequencies: 533MHz, 600MHz, and 1.3GHz

FPGA Resources

  • Logic cells: 256K+ (256,200 cells)
  • Technology node: 20nm FinFET process
  • Operating voltage: 0.85V
  • Family: Zynq UltraScale+ MPSoC EG series

Physical Package

  • Package type: 784-pin FCBGA (Flip Chip Ball Grid Array)
  • Package dimensions: 23mm ร— 23mm
  • Pin count: 784 pins
  • Packaging format: Tray

Memory and Storage

  • Integrated RAM: 256KB on-chip memory

Performance Features

The XCZU5EG-2SFVC784I provides 64-bit processor scalability, combining real-time control with advanced processing engines for graphics, video, waveform, and packet processing applications.

2. Price

Current Market Pricing

  • Unit price: $2,658.03 (USD)
  • Bulk pricing: Starting at $2,657.73 per 1,000 units
  • Availability: In stock at major distributors
  • Lead time: 25 weeks manufacturer lead time

Pricing Notes

Prices may vary by distributor and quantity. Contact authorized distributors for current pricing and volume discounts.

3. Documents & Media

Technical Documentation

  • Product datasheet (PDF format available)
  • UltraScale Architecture and Product Data Sheet: Overview (PDF)
  • Package pinout files in TXT and CSV formats
  • Programming and configuration guides

Development Resources

  • Vivado Design Suite compatibility
  • Software development tools for ARM processors
  • Reference designs and application notes
  • Debug and trace tools support

Media Resources

  • Product images and package diagrams
  • Technical specification sheets
  • Application briefs and white papers

4. Related Resources

Development Tools

  • Vivado Design Suite – Primary design environment
  • SDK (Software Development Kit) for ARM processor programming
  • CoreSight debug tools for system-level debugging
  • Mali GPU development tools

Compatible Products

  • XCZU5EG-1SFVC784I (Speed grade -1 variant)
  • XCZU5EV-2SFVC784I (EV family variant)
  • Other Zynq UltraScale+ MPSoC family members

Application Areas

  • Industrial automation and motor control
  • Automotive systems with real-time requirements
  • Video processing and graphics applications
  • Communications infrastructure
  • Edge AI and machine learning applications
  • Sensor fusion systems

Technical Support

  • AMD technical documentation portal
  • Community forums and support
  • Application engineering assistance
  • Training and certification programs

5. Environmental & Export Classifications

Compliance Standards

  • RoHS Status: RoHS3 Compliant
  • Product Status: Active

Trade Classifications

  • USHTS Code: 8542390001
  • TARIC Code: 8542399000
  • ECCN (Export Control Classification Number): 5A002.A.4

Environmental Considerations

  • Lead-free and halogen-free package options available
  • Compliant with international environmental regulations
  • Suitable for industrial temperature ranges
  • Energy-efficient 20nm process technology

Quality Assurance

  • Manufactured under ISO quality standards
  • Comprehensive testing and validation
  • Long-term product availability commitment
  • Automotive-grade variants available

The XCZU5EG-2SFVC784I represents AMD’s commitment to delivering high-performance, energy-efficient SoC solutions that combine the flexibility of programmable logic with the power of advanced ARM processing. This device is ideal for next-generation embedded systems requiring both real-time processing capabilities and FPGA programmability.