NI

NI is a technology pioneer and leader in virtual instrumentation - a revolutionary concept that has changed the way engineers and scientists in industry, government, and academia approach measurement and automation.

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  • 11500 N Mopac Expwy
    Austin, TX 78759-3504
    United States

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Showing results: 331 - 345 of 1970 items found.

  • PXI-2531, 512-Crosspoint, 1-Wire PXI Matrix Switch Module

    778572-31 - NI

    512-Crosspoint, 1-Wire PXI Matrix Switch Module—The PXI‑2531 is a high-density PXI matrix switch module built to serve high‑channel‑count automated test systems. Featuring compact reed relays with switching speeds up to 2,000 cycles/s, the PXI‑2531 is designed for low‐current, high‐speed switching. It also features onboard relay counting for relay monitoring and deterministic operation with hardware triggers to improve test throughput.

  • 50 MHz to 2.2 GHz, GPS-Disciplined OCXO, Reconfigurable USRP Software Defined Radio Device

    783150-01 - NI

    50 MHz to 2.2 GHz, GPS-Disciplined OCXO, Reconfigurable USRP Software Defined Radio Device - The USRP-2950 provides an integrated hardware and software solution for rapidly prototyping high-performance wireless communication systems. With the flexible hardware architecture and the LabVIEW unified design flow, researchers can prototype faster and significantly shorten time to results. You can prototype a wide range of advanced research applications that include multiple input, multiple output (MIMO); synchronization of heterogeneous networks; LTE relaying; RF compressive sampling; spectrum sensing; cognitive radio; beamforming; and direction finding. The USRP-2950 is equipped with a GPS-disciplined 10 MHz oven-controlled crystal oscillator (OCXO) reference clock. GPS disciplining delivers improved frequency accuracy and synchronization capabilities.

  • 50 MHz to 2.2 GHz, GPS-Disciplined OCXO, Reconfigurable USRP Software Defined Radio Device

    783926-01 - NI

    50 MHz to 2.2 GHz, GPS-Disciplined OCXO, Reconfigurable USRP Software Defined Radio Device - The USRP-2950 provides an integrated hardware and software solution for rapidly prototyping high-performance wireless communication systems. With the flexible hardware architecture and the LabVIEW unified design flow, researchers can prototype faster and significantly shorten time to results. You can prototype a wide range of advanced research applications that include multiple input, multiple output (MIMO); synchronization of heterogeneous networks; LTE relaying; RF compressive sampling; spectrum sensing; cognitive radio; beamforming; and direction finding. The USRP-2950 is equipped with a GPS-disciplined 10 MHz oven-controlled crystal oscillator (OCXO) reference clock. GPS disciplining delivers improved frequency accuracy and synchronization capabilities.

  • GPIB-RS232, GPIB-RS232, Instrument Control Device - North America 240VAC

    779732-05 - NI

    The GPIB‑RS232 is an IEEE 488 controller device for computers with an RS232 port. You can use this device to integrate an instrument into your system using GPIB. This device transforms a computer with an RS232 serial port into a talker, listener, or controller on the GPIB bus. It can also interface RS232 instruments and peripherals to the GPIB bus. It can implement the physical and electrical specifications of the IEEE 488 and RS232 standards, as well as interpret and execute high-level commands from the serial port, including RS232‑to‑GPIB and GPIB‑to‑RS232 protocol conversions. This device is IEEE 488.2 compatible. The device includes a license for the NI‑488.2 driver software, providing maximum reliability for connecting to third-party instruments with GPIB.

  • GPIB-RS232, Instrument Control Device

    779732-12 - NI

    The GPIB‑RS232 is an IEEE 488 controller device for computers with an RS232 port. You can use this device to integrate an instrument into your system using GPIB. This device transforms a computer with an RS232 serial port into a talker, listener, or controller on the GPIB bus. It can also interface RS232 instruments and peripherals to the GPIB bus. It can implement the physical and electrical specifications of the IEEE 488 and RS232 standards, as well as interpret and execute high-level commands from the serial port, including RS232‑to‑GPIB and GPIB‑to‑RS232 protocol conversions. This device is IEEE 488.2 compatible. The device includes a license for the NI‑488.2 driver software, providing maximum reliability for connecting to third-party instruments with GPIB.

  • USB-5132, 50 MHz Bandwidth, 2-Channel, 8-Bit USB Oscilloscope Device

    780468-02 - NI

    50 MHz Bandwidth, 2-Channel, 8-Bit USB Oscilloscope Device - The USB‑5132 low-cost oscilloscope device has two channels that sample up to 50 MS/s with flexible settings for coupling, impedance, voltage range, and filtering. Oscilloscope devices also feature a number of triggering modes and an instrument driver that includes data streaming and analysis functions. This device is ideal for portable and benchtop applications with fast signals that require flexible measurement configurations and up to 50 MHz of analog bandwidth.

  • USB-5132, 50 MHz Bandwidth, 2-Channel, 8-Bit USB Oscilloscope Device

    779969-01 - NI

    50 MHz Bandwidth, 2-Channel, 8-Bit USB Oscilloscope Device - The USB‑5132 low-cost oscilloscope device has two channels that sample up to 50 MS/s with flexible settings for coupling, impedance, voltage range, and filtering. Oscilloscope devices also feature a number of triggering modes and an instrument driver that includes data streaming and analysis functions. This device is ideal for portable and benchtop applications with fast signals that require flexible measurement configurations and up to 50 MHz of analog bandwidth.

  • USB-5132 , 50 MHz Bandwidth, 2-Channel, 8-Bit USB Oscilloscope Device

    780468-01 - NI

    50 MHz Bandwidth, 2-Channel, 8-Bit USB Oscilloscope Device - The USB‑5132 low-cost oscilloscope device has two channels that sample up to 50 MS/s with flexible settings for coupling, impedance, voltage range, and filtering. Oscilloscope devices also feature a number of triggering modes and an instrument driver that includes data streaming and analysis functions. This device is ideal for portable and benchtop applications with fast signals that require flexible measurement configurations and up to 50 MHz of analog bandwidth.

  • USB-5132, 50 MHz Bandwidth, 2-Channel, 8-Bit USB Oscilloscope Device

    779969-02 - NI

    50 MHz Bandwidth, 2-Channel, 8-Bit USB Oscilloscope Device - The USB‑5132 low-cost oscilloscope device has two channels that sample up to 50 MS/s with flexible settings for coupling, impedance, voltage range, and filtering. Oscilloscope devices also feature a number of triggering modes and an instrument driver that includes data streaming and analysis functions. This device is ideal for portable and benchtop applications with fast signals that require flexible measurement configurations and up to 50 MHz of analog bandwidth.

  • NI-9403, 5 V/TTL, 32 Bidirectional Channels, 7 µs C Series Digital Module

    780179-01 - NI

    5 V/TTL, 32 Bidirectional Channels, 7 µs C Series Digital Module - The NI‑9403 is a configurable digital I/O interface for input or output with shift‑on‑the‑fly capabilities. Each channel features transient isolation between the I/O channels and the backplane. With reconfigurable I/O (RIO) technology (CompactRIO only), you can use the LabVIEW FPGA Module to program the NI‑9403 for applications such as custom, high-speed counter/timers; digital communication protocols; and pulse generation. In a CompactDAQ chassis, you can use the NI‑9403 only as a static (software-timed) digital I/O module. You cannot use these modules to route timing or triggering signals.

  • NI-9401, 5 V/TTL, 8 Bidirectional Channels, 100 ns C Series Digital Module

    779351-01 - NI

    5 V/TTL, 8 Bidirectional Channels, 100 ns C Series Digital Module - The NI‑9401 is a configurable digital I/O interface for input or output in 4‑bit increments. Therefore, the NI‑9401 can create three configurations: 8 digital inputs, 8 digital outputs, or four digital inputs and four digital outputs. With reconfigurable I/O (RIO) technology (CompactRIO only), you can use the LabVIEW FPGA Module to program the NI‑9401 for implementing custom, high-speed counter/timers; digital communication protocols; pulse generation; and more. Each channel features transient isolation between the I/O channels and the backplane.

  • NI-9401, 5 V/TTL, 8 Bidirectional Channels, 100 ns C Series Digital Module

    782401-01 - NI

    5 V/TTL, 8 Bidirectional Channels, 100 ns C Series Digital Module - The NI‑9401 is a configurable digital I/O interface for input or output in 4‑bit increments. Therefore, the NI‑9401 can create three configurations: 8 digital inputs, 8 digital outputs, or four digital inputs and four digital outputs. With reconfigurable I/O (RIO) technology (CompactRIO only), you can use the LabVIEW FPGA Module to program the NI‑9401 for implementing custom, high-speed counter/timers; digital communication protocols; pulse generation; and more. Each channel features transient isolation between the I/O channels and the backplane.

  • NI-9470, 5 VDC to 30 VDC, 8-Channel (Sourcing Output), 2 kHz C Series Digital Module

    787089-01 - NI

    5 VDC to 30 VDC, 8-Channel (Sourcing Output), 2 kHz C Series Digital Module - The NI‑9470 is a digital output module that features proportional valve drive control. You can use the NI-9470 to perform pulse width modulation (PWM), dither control, and current readback. The NI‑9470 features eight output channels compatible with signals from 5 V to 30 V and transient overvoltage protection between the output channels and the backplane.

  • NI-9470, 5 VDC to 30 VDC, 8-Channel (Sourcing Output), 2 kHz C Series Digital Module

    787089-02 - NI

    5 VDC to 30 VDC, 8-Channel (Sourcing Output), 2 kHz C Series Digital Module - The NI‑9470 is a digital output module that features proportional valve drive control. You can use the NI-9470 to perform pulse width modulation (PWM), dither control, and current readback. The NI‑9470 features eight output channels compatible with signals from 5 V to 30 V and transient overvoltage protection between the output channels and the backplane.

  • PXI-2798, 40 GHz, Dual-Transfer PXI Transfer Switch Module

    782358-01 - NI

    40 GHz, Dual-Transfer PXI Transfer Switch Module—The PXI‑2798 can route RF or microwave signals in automated test applications. Designed to operate with less than 1 dB insertion loss at up to 40 GHz, the PXI‑2798 appears almost invisible to signals at much lower frequencies as well. You can use this module for basic signal routing or inserting and removing components in a signal path. The PXI‑2798 is also well-suited for passing high-order harmonics from RF upconverters or routing multiple sources to RF downconverters.

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