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10AX048H3F34E2SG
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10AX048H3F34E2SG Description
10AX048H3F34E2SG Description
The 10AX048H3F34E2SG is a high-performance FPGA from Intel's Arria 10 GX series, designed for advanced applications requiring high logic density and power efficiency. This surface-mount device features 480,000 logic elements and 183,590 LABs/CLBs, offering exceptional processing capability for complex digital designs. With 5664768 RAM bits and 492 I/O pins, it supports high-speed data processing and interfacing. Operating within a 0.87V–0.93V supply range and a 0°C–100°C (TJ) temperature range, it balances power efficiency with thermal resilience. Packaged in a 1152-FBGA tray, it meets RoHS and REACH compliance, making it suitable for environmentally conscious designs.
10AX048H3F34E2SG Features
- High Logic Density: 480K logic elements and 183K LABs/CLBs enable complex algorithm implementation.
- Ample Memory: 5.66 Mb of embedded RAM for data-intensive tasks.
- Versatile I/O: 492 I/O pins support multi-protocol interfacing (e.g., PCIe, DDR4).
- Power Efficiency: Low-voltage operation (0.87V–0.93V) reduces dynamic power consumption.
- Robust Thermal Performance: Operates reliably up to 100°C junction temperature.
- Industry Compliance: RoHS-compliant and REACH-unaffected, with MSL 3 (168 hours) moisture sensitivity.
10AX048H3F34E2SG Applications
This FPGA excels in:
- High-Speed Networking: Routers, switches, and 5G infrastructure due to its high I/O count and logic density.
- Data Center Acceleration: Hardware acceleration for AI/ML workloads and storage controllers.
- Aerospace & Defense: Radar, EW systems, and secure communications requiring rugged, high-performance FPGAs.
- Industrial Automation: Real-time control systems and vision processing with low-latency requirements.
- Medical Imaging: High-throughput signal processing for ultrasound or MRI systems.
Conclusion of 10AX048H3F34E2SG
The 10AX048H3F34E2SG stands out in Intel's Arria 10 GX lineup with its optimal balance of logic capacity, power efficiency, and thermal resilience. Its high I/O count and memory resources make it ideal for bandwidth-intensive applications, while its compliance with environmental standards ensures broad market suitability. For engineers designing next-gen networking, compute, or embedded systems, this FPGA offers a future-proof solution with scalable performance.



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