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PCIe-7856

The National Instruments PCIe-7856 (Part Number: 786455-01) is a Multifunction Reconfigurable I/O Device featuring a user-programmable Kintex-7 160T FPGA, 11,700 kbits

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    Description

    The National Instruments PCIe-7856, with a Part Number of 786455-01, is a versatile Multifunction Reconfigurable I/O Device that features a user-programmable Kintex-7 160T FPGA for advanced onboard processing and customization through the LabVIEW FPGA Module.

    It boasts 11,700 kbits of embedded block RAM and operates on a 40 MHz default timebase. The device is equipped with 8 analog input channels that support DIFF, NRSE, and RSE modes and can handle a versatile range of signal inputs from ±1 V to ±10 V.

    With a maximum sample rate of 1 MS/s for analog inputs and 48 bidirectional digital I/O channels, this device is capable of handling complex and high-speed tasks. The 8 single-ended analog output channels come with a 16-bit resolution, 1 μs update time, and can achieve up to a 1 MS/s maximum update rate, all while providing short-circuit to ground protection to ensure device safety and longevity.

    Feature Description
    Part Number 786455-01
    Device Type Multifunction Reconfigurable I/O Device
    FPGA Kintex-7 160T FPGA (User-programmable)
    Embedded block RAM 11,700 kbits
    Default timebase 40 MHz
    Programming Customizable through LabVIEW FPGA Module
    Analog Input Channels 8 (DIFF, NRSE, RSE modes)
    Analog Input Signal Range ±5 V, ±10 V, ±1 V, ±2 V
    Maximum Sample Rate (AI) 1 MS/s
    Digital I/O Channels 48 bidirectional
    Analog Output Channels 8 single-ended
    Resolution (AO) 16 bits
    Update Time (AO) 1 μs
    Maximum Update Rate (AO) 1 MS/s
    Protection (AO) Short-circuit to ground

    Question 1: What are the capabilities and features of the National Instruments PCIe-7856 with the part number 786455-01, and how does its onboard Kintex-7 160T FPGA contribute to its functionality?
    Answer 1: The National Instruments PCIe-7856’s analog input channels can handle signal inputs ranging from ±1 V to ±10 V.

    Question 2: What are the capabilities and specifications of the National Instruments PCIe-7856, including its FPGA type, memory capacity, I/O-channel specifications, and sample rates?
    Answer 2: The National Instruments PCIe-7856 is a Multifunction Reconfigurable I/O Device equipped with a user-programmable Kintex-7 160T FPGA, features 11,700 kbits of embedded block RAM, and operates on a 40 MHz default timebase. It has 8 analog input channels supporting DIFF, NRSE, and RSE modes with input ranges from ±1 V to ±10 V, and a maximum sample rate of 1 MS/s for these inputs

    Question 3: What functionalities does the National Instruments PCIe-7856 Multifunction Reconfigurable I/O Device provide, including its user-programmable FPGA and its support for various signal input modes and range?
    Answer 3: The National Instruments PCIe-7856, part number 786455-01, is a multifunction reconfigurable I/O device that includes a user-programmable Kintex-7 160T FPGA which allows for advanced onboard processing and customization via the LabVIEW FPGA Module. It features 11,700 kbits of embedded block RAM, a 40 MHz default timebase, and offers 8 analog input channels supporting DIFF, NRSE, and RSE modes, with input ranges from

    Question 4: What types of input modes do the 8 analog input channels of the National Instruments PCIe-7856 support, and what is the range of signal inputs they can accommodate?
    Answer 4: The 8 analog input channels of the National Instruments PCIe-7856 support DIFF, NRSE, and RSE input modes and can accommodate a range of signal inputs from ±1 V to ±10 V.

    Question 5: What is the range of signal inputs that the National Instruments PCIe-7856’s analog input channels can handle?
    Answer 5: The National Instruments PCIe-7856 Multifunction Reconfigurable I/O Device offers advanced onboard processing and customization with a user-programmable Kintex-7 160T FPGA, supports DIFF, NRSE, and RSE signal input modes, and accommodates a wide range of signal inputs from ±1 V to ±10 V, making it suitable for a variety of high-speed and complex tasks.