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    XC7K325T-1FBG676C

    Manufacturer: XILINX

    Part Number: XC7K325T-1FBG676C

    Description: 1.9555664MB 326080 25475 970mV 1.03V FCBGA SMD mount
    Datasheet:
    Quantity: 80
    In Stock
    Number:
    - +
    * $164.72 (Unit Price)
    MOQ 40 Mult 1 SPQ 40 DC 22+
    Ext. Price: $6588.80
    Quantity Unit Price
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    $164.72 $161.88 $159.04
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    Specifications
    Attribute Value
    cate_name Field Programmable Gate Arrays (FPGA)
    rohs Compliance
    reference_package FCBGA
    mounting SMD mount
    application_level
    lifecycle On sale
    spm tray
    min_operating_temperature 0℃(TJ)
    max_operating_temperature 85℃(TJ)
    length_width_height
    max_operating_supply_voltage 1.03V
    min_operating_supply_voltage 970mV
    number_of_labclb 25475
    number_of_logic_blocks 326080
    total_ram_bits 1.9555664MB
    Description
    Xilinx XC7K325T-1FBG676C Overview and Features

    Overview:
    The Xilinx XC7K325T-1FBG676C is a high-performance Field-Programmable Gate Array (FPGA) device from Xilinx's Kintex-7 series. This device is designed to deliver exceptional performance and versatility for a wide range of applications, including embedded vision, industrial control, and high-speed data processing.

    Key Features:
    1. High-Speed Performance: With a high-speed transceiver supporting up to 28 Gbps, the XC7K325T-1FBG676C is ideal for applications requiring fast data transfer rates.
    2. Versatile I/O: The device offers a rich mix of I/O options, including LVDS, DDR, and high-speed transceivers, catering to diverse connectivity needs.
    3. Power Efficiency: Designed with power optimization in mind, the XC7K325T-1FBG676C provides a balance between performance and power consumption.
    4. Advanced DSP Slices: Equipped with advanced DSP slices, the FPGA is well-suited for signal processing applications.
    5. Robust Memory Resources: The device includes a significant amount of Block RAM (BRAM) and UltraRAM, providing ample memory for complex designs.

    Development Support:
    Xilinx provides comprehensive development support for the XC7K325T-1FBG676C, including:
    - Vivado Design Suite: A powerful, integrated design environment for creating and optimizing FPGA designs.
    - IP Cores: A wide range of pre-built intellectual property (IP) cores to accelerate development.
    - Board Support Packages: For seamless integration with Xilinx development boards.
    - Technical Documentation: Extensive documentation and user guides to assist developers.

    Application Areas:
    The XC7K325T-1FBG676C is suitable for various high-demand applications such as:
    - Embedded Vision Systems: Utilizing its high-speed data processing capabilities.
    - Industrial Automation: Benefiting from its robust I/O and real-time processing features.
    - High-Performance Computing: Leveraging its advanced DSP slices and memory resources.
    - Telecommunications: Employing its high-speed transceivers for data-intensive tasks.

    Parameter Introduction:
    - Package Type: FBGA (Fine-Pitch Ball Grid Array)
    - Pin Count: 676
    - Logic Cells: Over 325,000
    - Memory (BRAM): Up to 1,300 blocks
    - DSP Slices: Over 800
    - Transceivers: Up to 28 Gbps
    - Power Supply: 1.0V to 1.35V

    Frequently Asked Questions (FAQs):
    1. Q: What is the typical use case for the XC7K325T-1FBG676C?
    A: It's typically used in applications requiring high-speed data processing and complex I/O capabilities.

    2. Q: Does the XC7K325T-1FBG676C support high-speed serial communication?
    A: Yes, it supports high-speed serial communication with its high-speed transceivers.

    3. Q: Can I use the Vivado Design Suite for developing applications with this FPGA?
    A: Yes, the Vivado Design Suite is the recommended development environment for Xilinx FPGAs, including the XC7K325T-1FBG676C.

    4. Q: What kind of power efficiency does the XC7K325T-1FBG676C offer?
    A: It is designed with power optimization features, allowing for a balance between performance and power consumption.

    5. Q: How can I ensure the XC7K325T-1FBG676C meets my application's memory requirements?
    A: With over 1,300 BRAM blocks and UltraRAM, it provides substantial memory resources for most complex designs.

    This summary provides a comprehensive introduction to the Xilinx XC7K325T-1FBG676C FPGA, highlighting its capabilities, development support, and potential applications.
    Please refer to the product rule book for details.
    Manufacturer Introduction
    Xilinx, Inc., now part of Advanced Micro Devices (AMD) following its acquisition in 2021, is a prominent player in the semiconductor industry, renowned for its innovation in adaptive computing technologies. Founded in 1984 by Ross Freeman, Bernard Vonderschmitt, and James V Barnett II in San Jose, California, Xilinx revolutionized the technology landscape by inventing the field-programmable gate array (FPGA). This invention has enabled a wide range of applications, from telecommunications to automotive systems, and has significantly impacted the development of hardware and software integration.

    Xilinx has consistently been at the forefront of technology, developing products that enhance the performance and flexibility of a myriad of electronic systems. The company's product line includes FPGAs, complex programmable logic devices (CPLDs), and system on chip (SoC) solutions, along with a robust suite of software tools for design and analysis. These products are fundamental in the creation of digital circuits that can be programmed and reprogrammed to perform specific functions and adapt to new requirements without the need to redesign the hardware.

    One of Xilinx's key innovations is the Adaptive Compute Acceleration Platform (ACAP), a highly integrated multi-core heterogeneous compute platform that goes beyond traditional FPGA technology. ACAPs are designed to provide significant performance acceleration for a variety of applications, including machine learning, video processing, and data analytics. This technology exemplifies Xilinx's commitment to pushing the boundaries of what can be achieved with programmable logic technologies.

    Xilinx's technology is crucial in numerous industries, including data centers, wireless communications, industrial, medical, , and defense sectors. In data centers, Xilinx's solutions help in accelerating workloads such as artificial intelligence and database management, thereby enhancing efficiency and reducing operational costs. In the wireless sector, the company's technology facilitates the deployment of next-generation networks, including 5G, by offering flexible and scalable solutions.

    The company's approach to market-driven innovation has also led to the development of the Vivado Design Suite, an advanced and highly integrated design environment that provides system-to-IC level tools designed to increase productivity and accelerate time-to-market. Vivado uses a shared scalable data model and a common debug environment, which supports the company's devices from low-end to ultra-high-end families.

    Xilinx also places a strong emphasis on sustainability and corporate responsibility. The company's initiatives focus on reducing environmental impact through energy-efficient products and solutions that contribute to the creation of sustainable technology ecosystems. Xilinx's global presence includes not only its headquarters in San Jose but also numerous offices worldwide, with a significant focus on research and development to maintain its competitive edge in the semiconductor industry.

    As part of AMD, Xilinx continues to leverage its expertise in adaptive computing, contributing to AMD's broader strategy of high-performance and adaptive computing solutions. This synergy enhances the combined company's ability to drive innovation in the computing and graphics markets, furthering advancements in areas such as high-performance computing, edge computing, and more.

    In conclusion, Xilinx's legacy and ongoing contributions to the semiconductor industry underline its status as a leader in adaptive and programmable computing solutions. With a history marked by innovation and a future aimed at driving technological advancements, Xilinx remains a key player in shaping the digital future.
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