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Showing results: 91 - 105 of 1404 items found.

  • Dynamic D/A Converter, 16-channels, 16-Bit, Unipolar, 30 V/20 mA

    M9188A - Keysight Technologies

    The M9188A is a PXI based, 1-slot unipolar Dynamic DAC which has 16 channels capable of supplying typical waveforms at high voltages. It has 4 isolated banks with 4 channels in each bank.

  • Analog Output PXI Card

    GX1642 - Marvin Test Solutions, Inc.

    The GX1642 is a 3U PXI digital to analog output board is designed specifically for applications where multiple analog outputs are required. The GX1642 offers precision signal sourcing performance and quality at an economical price.

  • Analog Output PXI Card

    GX1648 - Marvin Test Solutions, Inc.

    The GX1648 is a 3U PXI digital to analog output board is designed specifically for applications where multiple analog outputs are required. The GX1648 offers precision signal sourcing performance and quality at an economical price.

  • 96-CH 12-Bit 3 MS/s Ultra High Density Analog Input PXI Module

    PXI-2208 - ADLINK Technology Inc.

    ADLINIK PXI-2208 is an ultra high-density, highperformance analog input module. This device can sample up to 96 AI channels with various gain settings and scan sequences, making it ideal for dealing with ultra high-density analog signals with various input ranges and sampling speeds. These devices also offer a differential mode for 48 AI channels to achieve maximum noise elimination. The PXI-2208 also features analog and digital triggering and 24-CH programmable digital I/O lines. Like all the other members in the PXI-2000 family, the PXI-2208 is able to perform analog input at full speed. Multiple modules can also be synchronized through the PXI trigger bus. The auto-calibration feature adjusts the gain and offset to a specified accuracy, eliminating the need to calibrate the modules by adjusting trimpots.

  • PXIe-6739 , 16-Bit, 64-Channel, 1 MS/s PXI Analog Output Module

    783801-01 - NI

    16-Bit, 64-Channel, 1 MS/s PXI Analog Output Module—The PXIe‑6739 is a high-density analog output module. The device is ideal for applications such as stimulus-response tests and open-loop simulations at high densities. You can achieve the maximum sample rate if using up to 16 channels, where each channel is on a separate bank. The PXIe‑6739 also includes 20 digital I/O lines, four counter/timers, digital triggering, and advanced timing to meet a wide range of application requirements. Its digital triggering and PXI Express synchronization capabilities allow it to be coupled with additional data acquisition, motion, and vision products to create highly custom measurement solutions to test innovative designs.

  • PXIe-6738, 16-Bit, 32-Channel, 1 MS/s PXIe Analog Output Module

    783800-01 - NI

    16-Bit, 32-Channel, 1 MS/s PXIe Analog Output Module—The PXIe‑6738 is a high-density analog output module. The device is ideal for applications such as stimulus-response tests and open-loop simulations at high densities. You can achieve the maximum sample rate if using up to eight channels, where each channel is on a separate bank. The PXIe‑6738 also includes 10 digital I/O lines, four counter/timers, digital triggering, and advanced timing to meet a wide range of application requirements. Its digital triggering and PXI Express synchronization capabilities allow it to be coupled with additional data acquisition, motion, and vision products to create highly custom measurement solutions to test innovative designs.

  • PXI-6704, 16-Bit, 32-Channel, Static PXI Analog Output Module

    777796-01 - NI

    16-Bit, 32-Channel, Static PXI Analog Output Module—The PXI‑6704 is a static analog output device. You can use the PXI‑6704 to create software-timed voltage and current output applications. You can independently set the output voltage range on each channel. The PXI‑6704 also includes eight 5 V TTL/CMOS digital I/O lines.

  • PXIe-4481, 24-Bit, 6-Channel, 1.25 MS/s/ch PXI Analog Input Module

    784278-01 - NI

    24-Bit, 6-Channel, 1.25 MS/s/ch PXI Analog Input Module—The PXIe‑4481 is an analog input module for higher bandwidth voltage measurements. The module offers analog and digital filtering for accurate frequency domain measurements. You also can select from four gain settings to configure your input range. For measuring sudden changes, such as high speed blast and pressure events, the PXIe-4481 can sample up to 20 MS/s per channel in time domain mode. The included NI-DAQmx driver simplifies hardware configuration and measurement.

  • 4/8-CH 12-Bit 1 MS/s Analog Output Multi-Function PXI modules

    PXI-2500 Series - ADLINK Technology Inc.

    ADLINIK PXI-2501 and PXI-2502 are high-speed, high-performance analog output multifunction PXI modules. These devices are able to update up to 8-CH, 12-bit analog outputs imultaneously sustaining 1 MS/s. The reference sources and output polarities are programmable individually per channel. Combine this with the multiplying PXI architecture, ADLINK PXI-2500 series PXI modules can generate complex modulated analog signals. The hardware-based arbitrary waveform generation frees CPU intervention even when all analog outputs are updating at full speed, and the lengths of waveforms are only limited by the system memory. The PXI-2500 series integrate up to 8-CH, 400 kS/s, 14-bit single-ended analog inputs with programmable polarity, 24-CH programmable digital I/O lines, and 2-CH 16-bit general-purpose timer/counters.

  • PXIe-4305, 24-Bit, 32-Channel, 51.2 kS/s, 42 V, PXI Analog Input Module

    783868-01 - NI

    24-Bit, 32-Channel, 51.2 kS/s, 42 V, PXI Analog Input Module—The PXIe‑4305 is a filtered analog input module for higher voltage measurements. The module offers the ability to select a digital filter per channel to provide extra filtering performance. You also can operate up to four different sample rates and triggering configurations concurrently to ensure you measure every sensor as needed. The module has an A/D converter per channel to enable a simultaneous sample rate at the maximum sample rate across the input range. The included NI‑DAQmx driver simplifies hardware configuration and measurement.

  • PXIe-4304, 24-Bit, 32-Channel, 5 kS/s, 42 V, PXI Analog Input Module

    783867-01 - NI

    24-Bit, 32-Channel, 5 kS/s, 42 V, PXI Analog Input Module—The PXIe‑4304 is a filtered analog input module for higher voltage measurements. The module offers the ability to select a digital filter per channel to provide extra filtering performance. You also can operate up to four different sample rates and triggering configurations concurrently to ensure you measure every sensor as needed. The module has an A/D converter per channel to enable a simultaneous sample rate at the maximum sample rate across the input range. The included NI‑DAQmx driver simplifies hardware configuration and measurement.

  • PXI-6723, 13-Bit, 32-Channel, 800 kS/s PXI Analog Output Module

    778998-01 - NI

    13-Bit, 32-Channel, 800 kS/s PXI Analog Output Module—The PXI‑6723 delivers low-cost, high-density analog outputs to meet a wide range of applications, such as stimulus-response, signal simulation, waveform generation, and actuator stimulation. In addition, the device provides eight 5 V TTL/CMOS digital I/O lines; two 24‑bit, 20 MHz counter/timers; and digital triggering and external clocking capabilities. The PXI‑6723 can replace several kinds of instruments, including stand-alone proportional integral derivative (PID) controllers, low-speed arbitrary waveform generators, and function generators. You can control each data point for each channel to define common waveforms, such as square, sine, or sawtooth, as well as complex waveforms.

  • PCIe-6738, 16-Bit, 32 Channels, 1 MS/s Analog Output Device

    785822-01 - NI

    The PCIe-6738 is a high-speed, high-density analog output device designed to deliver simultaneous, multichannel updates for control and waveform output applications such as stimulus-response tests, including acoustic distortion testing, and simulation such as three-phase power simulation. In addition, the device provides eight 5 V TTL/CMOS digital I/O lines; two 24-bit, 20 MHz counter/timers; and digital triggering and external clocking capabilities. The PCIe-6738 can replace several kinds of instruments, including stand-alone proportional integral derivative (PID) controllers, low-speed arbitrary waveform generators, and function generators. You can control each data point for each channel to define common waveforms, such as square, sine, or sawtooth, as well as complex waveforms.

  • PXI-6733, 16-Bit, 8-Channel, 1 MS/s PXI Analog Output Module

    778512-01 - NI

    16-Bit, 8-Channel, 1 MS/s PXI Analog Output Module—The PXI‑6733 is a high-speed analog output device designed to deliver simultaneous, multichannel updates for control and waveform output applications, such as stimulus-response tests (including acoustic distortion testing) and simulation (such as three-phase power simulation). In addition, the device provides eight 5 V TTL/CMOS digital I/O lines; two 24‑bit, 20 MHz counter/timers; and digital triggering and external clocking capabilities. The PXI‑6733 can replace several kinds of instruments, including stand-alone proportional integral derivative (PID) controllers, low-speed arbitrary waveform generators, and function generators. You can control each data point for each channel to define common waveforms, such as square, sine, or sawtooth, as well as complex waveforms.

  • PXI-6713, 12-Bit, 8-Channel, 1 MS/s PXI Analog Output Module

    777795-01 - NI

    12-Bit, 8-Channel, 1 MS/s PXI Analog Output Module—The PXI‑6713 is a high-speed analog output device designed to deliver simultaneous, multichannel updates for control and waveform output applications, such as stimulus-response, power supply control, high-speed, deterministic control, and sensor/signal simulation. In addition, the device provides eight 5 V TTL/CMOS digital I/O lines; two 24‑bit, 20 MHz counter/timers; and digital triggering and external clocking capabilities. The PXI‑6713 can replace several kinds of instruments, including stand-alone proportional integral derivative (PID) controllers, low-speed arbitrary waveform generators, and function generators. You can control each data point for each channel to define common waveforms, such as square, sine, or sawtooth, as well as complex waveforms.

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