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XAZU4EV-1SFVC784Q Description
XAZU4EV-1SFVC784Q Description
The XAZU4EV-1SFVC784Q is a high-performance System-on-Chip (SoC) from AMD's Zynq® UltraScale+™ MPSoC EV series, combining a multicore processing system (MCU) and FPGA fabric for embedded applications requiring flexibility and power efficiency. Built on UltraScale+™ architecture, it integrates 192K+ logic cells, a 500MHz–1.2GHz quad-core ARM® Cortex®-A53, and dual-core Cortex®-R5 real-time processors, delivering scalable performance for compute-intensive tasks. The device features 256KB RAM, 252 I/O pins, and advanced peripherals, housed in a 784-ball SBGA package (RoHS3 compliant). Ideal for industrial, automotive, and communications systems, it balances programmability with deterministic processing.
XAZU4EV-1SFVC784Q Features
- Heterogeneous Processing: Combines FPGA (192K+ logic cells) and ARM® Cortex®-A53/R5 cores for parallel processing and real-time control.
- High-Speed Connectivity: Supports CANbus, Ethernet, USB OTG, SPI, I2C, UART/USART, and MMC/SD/SDIO for versatile interfacing.
- Robust Peripherals: Includes DMA controllers and watchdog timers (WDT) for reliable operation.
- Scalable Performance: Configurable clock speeds (500MHz, 600MHz, or 1.2GHz) optimize power-to-performance ratios.
- Industrial Resilience: MSL 3 (168 hours) rated and ROHS3 compliant, suitable for harsh environments.
- High I/O Density: 252 programmable I/Os enable complex system integration.
XAZU4EV-1SFVC784Q Applications
- Industrial Automation: Real-time motor control, PLCs, and robotics leveraging FPGA flexibility and MCU determinism.
- Automotive Systems: ADAS, in-vehicle networking (CANbus/Ethernet), and sensor fusion.
- Communications Infrastructure: Software-defined radio (SDR), packet processing, and 5G baseband units.
- Embedded Vision: AI/ML inference at the edge with FPGA-accelerated algorithms.
- Aerospace & Defense: Secure, low-latency processing for avionics and mission-critical systems.
Conclusion of XAZU4EV-1SFVC784Q
The XAZU4EV-1SFVC784Q stands out for its dual-architecture design, merging FPGA reconfigurability with ARM® processing power. Its rich connectivity, high I/O count, and industrial-grade reliability make it a top choice for developers needing a scalable, future-proof SoC. Whether for edge computing, real-time control, or high-speed data processing, this device delivers performance, flexibility, and longevity in demanding applications.



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