Intel_10AX048E3F29E2SG
original

Intel
10AX048E3F29E2SG

696-10AX048E3F29E2SG
PDF Datasheet
Field Programmable Gate Array, 480000-Cell, CMOS, PBGA780, 29 X 29 MM, ROHS COMPLIANT, FBGA-780
16 Weeks

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Tech Specifications

Max Operating Temperature
100
Number of Terminals
780
Min Operating Temperature
0
Terminal Position
BOTTOM
JEDEC Package Code
S-PBGA-B780
Width
29
Length
29
Temperature Grade
OTHER
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10AX048E3F29E2SG Description

Intel's 10AX048E3F29E2SG is an advanced, high-performance programmable chip designed for a wide range of applications. This device is part of Intel's Agilex FPGA family, which is known for its versatility, power efficiency, and cutting-edge features. Here's a detailed description of the model 10AX048E3F29E2SG, its features, and potential applications:

Description:

The 10AX048E3F29E2SG is a mid-range, high-density FPGA that offers a combination of logic elements, memory, and I/O resources to cater to various system requirements. It is based on Intel's 10nm SuperFin process technology, which enables superior performance and power efficiency compared to previous generations.

Features:

  1. High-Density Logic Elements: The 10AX048E3F29E2SG boasts a large number of logic elements, making it suitable for complex designs and applications that require significant computational power.

  2. Memory Resources: This FPGA comes with a generous amount of memory resources, including M20K blocks and DSP blocks, which can be utilized for data storage, processing, and various other tasks.

  3. I/O Capabilities: The device offers a wide range of I/O options, including high-speed transceivers and versatile I/O (VIO), allowing it to interface with various peripherals and communication protocols.

  4. Power Efficiency: Thanks to the 10nm SuperFin process technology, the 10AX048E3F29E2SG provides excellent power efficiency, making it an ideal choice for applications where energy consumption is a critical factor.

  5. Security Features: The FPGA includes advanced security features, such as integrated encryption blocks and secure boot capabilities, ensuring the protection of sensitive data and system integrity.

  6. High-Performance Transceivers: The device supports high-speed serial transceivers, enabling it to handle data rates up to 56 Gbps, which is suitable for high-bandwidth applications.

  7. Versatile Configuration Options: The 10AX048E3F29E2SG can be configured in various ways to meet the specific needs of different applications, providing designers with the flexibility to optimize their system designs.

Applications:

  1. Networking: The high-speed transceivers and versatile I/O options make the 10AX048E3F29E2SG an excellent choice for networking applications, such as routers, switches, and network interface cards.

  2. Automotive: The device's robustness and power efficiency make it suitable for automotive applications, including advanced driver assistance systems (ADAS), in-vehicle infotainment systems, and powertrain control.

  3. Industrial Automation: The FPGA's versatility and high-performance capabilities make it well-suited for industrial automation applications, such as motor control, robotics, and process automation.

  4. Data Centers: The 10AX048E3F29E2SG can be used in data center applications, such as storage systems, high-performance computing, and data processing, thanks to its high-speed transceivers and memory resources.

  5. Signal Processing: The FPGA's DSP blocks and high-performance capabilities make it an ideal choice for signal processing applications, including image and video processing, medical imaging, and communication systems.

  6. Cybersecurity: The advanced security features of the 10AX048E3F29E2SG make it suitable for cybersecurity applications, where data protection and system integrity are paramount.

In summary, Intel's 10AX048E3F29E2SG is a powerful, versatile FPGA that offers a wide range of features and capabilities, making it suitable for a variety of applications across different industries. Its high-density logic elements, memory resources, I/O capabilities, and power efficiency make it an attractive choice for designers looking to develop cutting-edge systems.

FAQ

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