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PXIe-7976R

The National Instruments PXIe-7976R is a FlexRIO PXI FPGA module with 2 GB of RAM, a Kintex-7 410T FPGA, and supports data transfer rates up to 3.2 GB/s

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    Description

    The National Instruments PXIe-7976R PXI FPGA Module for FlexRIO, with Part Number 783625-01, is a high-performance module featuring 2 GB of RAM and supports data transfer rates of up to 3.2 GB/s. It is built around a powerful Kintex-7 410T FPGA and provides a substantial amount of logic resources including 28,620 kbit of block RAM (BRAM), 1,540 DSP slices, and 63,550 FPGA slices.

    This module offers flexible channel configurations with 136 single-ended channels or 68 differential channels, and the general-purpose channels are divided into three banks: Bank 0 and Bank 1 with 48 channels each, and Bank 2 with 40 channels. The PXIe-7976R can achieve a maximum data rate of 400 Mb/s in single-ended mode and 1 Gb/s for low voltage differential signals (LVDS). Additionally, it is equipped with 5 single-region and 5 multi-region clock inputs to cater to various timing requirements.

    Feature Specification
    Product Name National Instruments PXIe-7976R PXI FPGA Module for FlexRIO
    Part Number 783625-01
    Memory 2 GB RAM
    Data Transfer Rate Up to 3.2 GB/s
    FPGA Kintex-7 410T FPGA
    Block RAM (BRAM) 28620 kbit
    DSP Slices 1540
    FPGA Slices 63550
    Channel Configuration 136 single-ended channels or 68 differential channels
    General-Purpose Channels Bank 0 and Bank 1: 48 channels each, Bank 2: 40 channels
    Maximum Data Rate (Single-Ended Mode) 400 Mb/s
    Maximum Data Rate (LVDS) 1 Gb/s
    Clock Inputs 5 single-region and 5 multi-region

    Question 1: What are the key specifications and channel configuration options of the National Instruments PXIe-7976R PXI FPGA Module for FlexRIO with Part Number 783625-01?
    Answer 1: The National Instruments PXIe-7976R PXI FPGA Module features 2 GB of RAM, supports data transfer rates of up to 3.2 GB/s, and offers flexible channel configurations with 136 single-ended channels or 68 differential channels.

    Question 2: What are the logic resources and channel configurations available on the National Instruments PXIe-7976R PXI FPGA Module for FlexRIO with Part Number 783625-01?
    Answer 2: The National Instruments PXIe-7976R PXI FPGA Module for FlexRIO, with Part Number 783625-01, offers logic resources comprising 28,620 kbit of block RAM, 1,540 DSP slices, and 63,550 FPGA slices, and it provides flexible channel configurations with either 136 single-ended channels or 68 differential channels, which are divided into three banks with 48 channels each in Bank 0 and Bank 1, and 40 channels

    Question 3: What are the channel configurations and maximum data rates for differential signals that the National Instruments PXIe-7976R PXI FPGA Module for FlexRIO supports?
    Answer 3: The National Instruments PXIe-7976R PXI FPGA Module for FlexRIO supports 68 differential channels and can achieve a maximum data rate of 1 Gb/s for low voltage differential signals (LVDS).

    Question 4: What are the RAM capacity and data transfer capabilities of the National Instruments PXIe-7976R PXI FPGA Module, and how many single-ended and differential channels does it support?
    Answer 4: The National Instruments PXIe-7976R PXI FPGA Module for FlexRIO, with Part Number 783625-01, features 2 GB of RAM, a Kintex-7 410T FPGA, 28,620 kbit of BRAM, 1,540 DSP slices, 63,550 FPGA slices, data transfer rates up to 3.2 GB/s, and offers channel configurations of either 136 single-ended channels or 68 differential channels, divided

    Question 5: What are the key features and channel configurations of the National Instruments PXIe-7976R PXI FPGA Module for FlexRIO with Part Number 783625-01?
    Answer 5: The National Instruments PXIe-7976R PXI FPGA Module for FlexRIO, Part Number 783625-01, features 2 GB of RAM, a Kintex-7 410T FPGA, 28,620 kbit of block RAM, 1,540 DSP slices, 63,550 FPGA slices, and supports data transfer rates up to 3.2 GB/s, with flexible channel configurations of either 136 single-ended channels or 68 differential channels,