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XCZU3EG-1SBVA484I Description
XCZU3EG-1SBVA484I Description
The XCZU3EG-1SBVA484I from AMD's Zynq® UltraScale+™ MPSoC EG series is a high-performance System-on-Chip (SoC) integrating a quad-core ARM® Cortex®-A53 processor (up to 1.2GHz), dual-core Cortex-R5 real-time processors, and an UltraScale+™ FPGA fabric with 154K+ logic cells. Packaged in a 484-ball FCBGA, it combines MCU and FPGA architectures for flexible, high-speed processing. With 256KB RAM, 82 I/O pins, and advanced peripherals (CANbus, Ethernet, USB OTG, etc.), it delivers exceptional real-time control and data acceleration capabilities. Compliant with ROHS3 and REACH, it suits industrial, automotive, and embedded applications requiring low latency and high reliability.
XCZU3EG-1SBVA484I Features
- Heterogeneous Processing: Combines 500MHz–1.2GHz Cortex-A53, Cortex-R5, and FPGA logic for parallel task execution.
- High-Speed Connectivity: Supports Ethernet, USB OTG, CANbus, SPI, I2C, and UART/USART for versatile interfacing.
- Robust Peripherals: Includes DMA controllers and watchdog timers (WDT) for secure operation.
- Scalable Logic: 154K+ FPGA logic cells enable custom hardware acceleration.
- Industrial-Grade: MSL 4 (72 hours) and -1SBVA484I speed grade ensure reliability in harsh environments.
- Low Power: Optimized power efficiency for edge computing and battery-powered devices.
XCZU3EG-1SBVA484I Applications
- Embedded Vision: Real-time image processing for machine vision and ADAS.
- Industrial Automation: PLC controllers, motor control, and predictive maintenance systems.
- Communications: 5G infrastructure, SDR (Software-Defined Radio), and network packet processing.
- Aerospace/Defense: Radar systems and secure communications leveraging FPGA encryption.
- Medical Devices: Portable diagnostics and high-precision imaging with low-latency processing.
Conclusion of XCZU3EG-1SBVA484I
The XCZU3EG-1SBVA484I stands out for its heterogeneous compute architecture, high-speed I/O, and FPGA programmability, making it ideal for complex, real-time systems. Its industrial certifications and low-power design cater to demanding applications in automotive, Industry 4.0, and edge AI. Compared to similar SoCs, it offers superior flexibility (via FPGA) and processing density, reducing BOM costs for multi-function designs. A top choice for engineers needing scalable performance and future-proofing.



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