AMD_XCVU7P-L2FLVA2104E
original

AMD
XCVU7P-L2FLVA2104E

696-XCVU7P-L2FLVA2104E
IC FPGA 832 I/O 2104FCBGA
20 Weeks

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Tech Specifications

Operating Temperature
0°C ~ 110°C (TJ)
Total RAM Bits
260812800
Number of LABs/CLBs
98520
ECCN
3A001A7B
Number of I/O
832
Mounting Type
Surface Mount
Product Status
Active
Supplier Device Package
2104-FCBGA (47.5x47.5)
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XCVU7P-L2FLVA2104E Description

AMD's XCVU7P-L2FLVA2104E is a high-performance Field Programmable Gate Array (FPGA) device that offers a range of features and applications for various industries. Here is a description of the XCVU7P-L2FLVA2104E, including its features and applications:

Description:

The XCVU7P-L2FLVA2104E is a Virtex UltraScale+ FPGA device from AMD, designed to deliver exceptional performance, power efficiency, and versatility for a wide range of applications. This device is built on a 16nm FinFET process technology, providing a high-density integration of digital logic, memory, and I/O resources.

Features:

  1. Advanced 16nm FinFET process technology: The XCVU7P-L2FLVA2104E is manufactured using a 16nm FinFET process, which enables higher performance, lower power consumption, and smaller form factors compared to older process technologies.
  2. High-density integration: This FPGA offers a high-density integration of digital logic, memory, and I/O resources, making it suitable for complex and demanding applications.
  3. Versatile I/O capabilities: The XCVU7P-L2FLVA2104E provides a wide range of I/O options, including high-speed transceivers, multi-gigabit transceivers, and versatile I/Os, allowing it to interface with various peripherals and communication protocols.
  4. Embedded memory: The device features a large amount of embedded memory resources, including block RAM, ultra-RAM, and distributed RAM, which can be used for data storage, processing, and buffering.
  5. High-performance digital logic: The XCVU7P-L2FLVA2104E offers a high-performance digital logic fabric, capable of handling complex algorithms and processing tasks with low latency and high throughput.
  6. Advanced power management: The FPGA includes advanced power management features, such as power optimization and dynamic frequency scaling, which help to reduce power consumption and improve overall system efficiency.
  7. Security features: The device provides a range of security features, including encryption, authentication, and secure boot, to protect sensitive data and ensure system integrity.

Applications:

  1. High-performance computing: The XCVU7P-L2FLVA2104E is well-suited for high-performance computing applications, such as data centers, cloud computing, and scientific research, where high processing power and low latency are critical.
  2. Networking and communications: The FPGA's versatile I/O capabilities and high-speed transceivers make it ideal for networking and communications applications, including 5G infrastructure, routers, and switches.
  3. Automotive: The XCVU7P-L2FLVA2104E can be used in advanced driver-assistance systems (ADAS), autonomous vehicles, and in-vehicle infotainment systems, where real-time processing and data handling are essential.
  4. Industrial and IoT: The FPGA's versatility and power efficiency make it suitable for industrial automation, control systems, and Internet of Things (IoT) applications, where connectivity, processing power, and adaptability are crucial.
  5. Aerospace and defense: The XCVU7P-L2FLVA2104E can be used in aerospace and defense applications, such as radar systems, satellite communications, and electronic warfare, where high reliability, performance, and security are paramount.
  6. Medical imaging and signal processing: The FPGA's high-performance digital logic and embedded memory resources make it suitable for medical imaging and signal processing applications, where high-speed data handling and complex algorithms are required.

In summary, AMD's XCVU7P-L2FLVA2104E is a powerful and versatile FPGA device that offers a range of features and applications for various industries. Its advanced process technology, high-density integration, and diverse I/O capabilities make it an ideal choice for demanding applications that require high performance, low power consumption, and advanced security features.

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