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10AX048E3F29E2SG
+BOMIC FPGA 360 I/O 780FBGA
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ManufacturerAltera
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Mfr. Part #10AX048E3F29E2SG
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In Stock4210
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Specifications
| Attribute | Value |
| Series | Arria 10 GX |
| Part Status | Active |
| DigiKey Programmable | Not Verified |
| Total RAM Bits | 5664768 |
| Number of I/O | 360 |
| Voltage - Supply | 0.87V ~ 0.93V |
| Mounting Type | Surface Mount |
| Operating Temperature | 0°C ~ 100°C (TJ) |
| Package / Case | 780-BBGA, FCBGA |
| Supplier Device Package | 780-FBGA, FC (29x29) |
| Number of Logic Elements/Cells | 480000 |
| Number of LABs/CLBs | 183590 |
Overview
Description
Key features of the 10AX048E3F29E2SG include:
1. Capacity: Approximately 48,000 logic elements, allowing for complex designs and high-density applications.
2. Performance: High-speed transceivers and low-latency processing capabilities, suitable for demanding applications.
3. Power Efficiency: Incorporates Intel’s 14nm Tri-Gate technology, which enhances power efficiency while maintaining performance levels.
4. Flexibility: Supports various protocols and interfaces, providing adaptability for different system requirements.
5. Development Tools: Compatible with Intel’s Quartus Prime software for design and implementation.
Overall, the 10AX048E3F29E2SG is ideal for developers looking to leverage FPGA technology for innovative and performance-critical applications.
Equivalent
Features
1. Logic Elements: Approximately 48,000 adaptive logic modules (ALMs) for high-density logic implementation.
2. Memory: Up to 1.5 MB of embedded memory (M20K blocks) for efficient data storage and processing.
3. DSP Blocks: Equipped with multiple 18x18 DSP blocks, facilitating high-performance digital signal processing tasks.
4. I/O Capabilities: Supports a variety of I/O standards with multiple high-speed transceivers, enabling robust connectivity options.
5. Power Efficiency: Optimized for low power consumption while delivering high performance.
6. Embedded Processing: Can integrate ARM Cortex-A9 processor cores, allowing for advanced computing capabilities.
7. Flexible Configuration: Supports various design methodologies, including hardware and software co-design.
This FPGA is ideal for applications in telecommunications, automotive, industrial, and more, where performance and flexibility are critical.
Pinout
This FPGA is designed for various applications, including data processing, high-performance computing, networking, and more. The device supports multiple interfaces, including DDR4 memory, PCIe, and various I/O standards.
The pin functions in this FPGA are versatile, allowing for configuration as input, output, or bidirectional pins, depending on the design requirements. It supports high-speed serial protocols, provides clock input pins, and includes configuration pins for programming the FPGA.
For detailed specifications and application-specific configurations, refer to the Intel Agilex documentation.
Manufacturer
The 10AX048E3F29E2SG is part of Intel's Arria 10 FPGA (Field Programmable Gate Array) family. FPGAs are integrated circuits that can be configured by the customer or designer after manufacturing, allowing for a high degree of flexibility in various applications, including telecommunications, automotive systems, data centers, and industrial automation.
Intel’s business encompasses research, development, and the manufacturing of hardware and software technologies. The company has a significant influence on the global electronics market and is a key player in driving advancements in artificial intelligence, machine learning, and cloud computing.
Application
1. Data Processing: High-performance computing and data analytics.
2. Network Infrastructure: Packet processing and routing in telecommunications.
3. Machine Learning: Acceleration of AI algorithms and inference tasks.
4. Embedded Systems: Control and automation in industrial applications.
5. Signal Processing: Real-time audio and video processing.
6. Automotive: Advanced driver assistance systems (ADAS) and autonomous vehicles.
7. Aerospace and Defense: Reliable processing for critical systems.
Its versatility supports various applications requiring high-performance, low-latency operations.