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PXIe-6386

The National Instruments PXIe-6386 is a multifunction I/O module with 8 differential analog input channels, 16-bit resolution, and a 14 MS/s sampling rate, featuring NI-DAQmx driver software and NI STC3

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    Description

    The National Instruments PXIe-6386 Multifunction I/O Module, bearing the part number 785926-01, is a sophisticated piece of equipment designed to interface through the PXIe bus. This module is specifically engineered to be compatible with NI-DAQmx driver software, ensuring seamless programming and configuration.

    It boasts eight differential analog input channels, which are capable of a swift sampling rate of 14 MS/s, and these channels are finely tuned to offer a high resolution of 16 bits. The incorporation of NI STC3 technology underlines its advanced capabilities, providing precise timing functions crucial for high-performance applications.

    One can expect a remarkable level of absolute accuracy, measured at 2688 µV, from its analog inputs. Additionally, the module is equipped with four counters, each offering a detailed 32-bit resolution. For output purposes, it includes two analog channels, which can be updated at a maximum rate of 3.3 MS/s, enabling rapid response to control signals.

    Feature Specification
    Product National Instruments PXIe-6386 Multifunction I/O Module
    Part Number 785926-01
    Bus Interface PXIe
    Driver Software NI-DAQmx
    Analog Input Channels 8 differential channels
    Sampling Rate 14 MS/s
    Resolution 16 bits
    Technology NI STC3
    Absolute Accuracy 2688 µV
    Counters 4 counters with 32-bits resolution
    Analog Output Channels 2 channels
    Maximum Channel Update Rate 3.3 MS/s

    Question 1: What are the specifications and capabilities of the National Instruments PXIe-6386 Multifunction I/O Module, such as input channels, sampling rate, and compatibility with driver software?
    Answer 1: The absolute accuracy measurement in microvolts for the analog inputs of the National Instruments PXIe-6386 Multifunction I/O Module with part number 785926-01 is 2688 µV.

    Question 2: What is the absolute accuracy measurement of the analog inputs on the National Instruments PXIe-6386 Multifunction I/O Module, part number 785926-01?
    Answer 2: The absolute accuracy measurement of the analog inputs on the National Instruments PXIe-6386 Multifunction I/O Module, part number 785926-01, is 2688 µV.

    Question 3: What is the sample rate and resolution of the analog input channels on the National Instruments PXi-6386 Multifunction I/O Module?
    Answer 3: The National Instruments PXIe-6386 Multifunction I/O Module features eight differential analog input channels with a rapid sampling rate of 14 MS/s and a high resolution of 16 bits, incorporates NI STC3 technology for precise timing, offers four 32-bit resolution counters, and includes two analog output channels with a maximum update rate of 3.3 MS/s, all of which are compatible with NI-DAQmx driver software for easy programming and configuration.

    Question 4: What are the capabilities and specifications of the National Instruments PXIe-6386 Multifunction I/O Module, particularly in terms of input channels, sampling rates, and the technologies it incorporates?
    Answer 4: The National Instruments PXIe-6386 Multifunction I/O Module features eight differential analog input channels with a sampling rate of 14 MS/s and a resolution of 16 bits, is compatible with NI-DAQmx driver software for easy programming and configuration, and integrates NI STC3 technology for precise timing functions; it also offers an absolute accuracy of 2688 µV for its inputs, includes four counters with 32-bit resolution, and provides two analog output channels capable of updating at

    Question 5: What is the absolute accuracy measurement in microvolts for the analog inputs of the National Instruments PXIe-6386 Multifunction I/O Module with part number 785926-01?
    Answer 5: The analog input channels on the National Instruments PXIe-6386 Multifunction I/O Module have a sample rate of 14 MS/s and a resolution of 16 bits.