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XC7Z030-2FF676I Description
XC7Z030-2FF676I Description
The XC7Z030-2FF676I from AMD is a high-performance System on Chip (SoC) integrating a dual-core ARM Cortex-A9 MPCore processor running at 800MHz with a 28nm FPGA fabric. This device combines the flexibility of programmable logic with the processing power of an embedded CPU, making it ideal for complex embedded systems. Packaged in a 676-pin FCBGA, it features 256KB of RAM, 130 I/O pins, and advanced peripherals, supporting Ethernet, USB OTG, CANbus, and multiple serial interfaces. With an ECCN 3A991D classification and REACH Unaffected status, it meets stringent industrial and commercial requirements.
XC7Z030-2FF676I Features
- Dual-core ARM Cortex-A9 @ 800MHz for high-speed processing.
- FPGA + MCU Architecture: Combines programmable logic with deterministic processing.
- Rich Connectivity: Supports CANbus, Ethernet, USB OTG, I2C, SPI, UART/USART, and EBI/EMI.
- High I/O Count: 130 configurable I/Os for versatile interfacing.
- DMA Controller: Enhances data transfer efficiency.
- Industrial Compliance: MSL 4 (72 hours) and HTSUS 8542.39.0001 certified.
- Active Product Status: Reliable long-term availability.
XC7Z030-2FF676I Applications
This SoC excels in applications requiring real-time processing, reconfigurable logic, and high-speed connectivity, such as:
- Industrial Automation: PLCs, motor control, and robotics.
- Embedded Vision: Machine vision, surveillance systems.
- Communications Infrastructure: Gateways, protocol converters.
- Medical Devices: Portable diagnostics, imaging systems.
- Automotive: ADAS, infotainment, and telematics.
Conclusion of XC7Z030-2FF676I
The XC7Z030-2FF676I stands out for its hybrid FPGA-MCU architecture, high-speed processing, and versatile I/O capabilities. Its industrial-grade reliability and broad connectivity options make it a superior choice for developers needing a balance of performance and flexibility. Whether in automation, communications, or embedded systems, this SoC delivers scalability, power efficiency, and future-proof design.



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