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Showing results: 6241 - 6255 of 7546 items found.

  • sbRIO-9476 , Non-Enclosed, 36 V, 32-Channel (Sourcing Output), 500 µs C Series Digital Module

    783951-01 - NI

    Non-Enclosed, 36 V, 32-Channel (Sourcing Output), 500 µs C Series Digital Module - The sbRIO‑9476 works with industrial logic levels and signals to connect directly to a wide array of industrial switches, transducers, and devices. Each channel is compatible with signals from 6 V to 36 V, based on the external power supply, and features transient overvoltage protection between the output channels and the backplane. You can programmatically monitor the built-in overcurrent and short-circuit protection status of each channel. Non-enclosed modules are designed for OEM applications.

  • sbRIO-9264, Non-Enclosed, 25 kS/s/ch Simultaneous, ±10 V, 16-Channel C Series Voltage Output Module

    781119-01 - NI

    Non-Enclosed, 25 kS/s/ch Simultaneous, ±10 V, 16-Channel C Series Voltage Output Module - The sbRIO‑9264 is a simultaneously updating analog output module that accommodates higher‑channel‑count systems. Higher density modules conserve chassis space, which leaves room for other measurement types. Each channel has its own digital‑to‑analog converter. The spring-terminal version of the sbRIO‑9264 uses a 36‑position connector for the output channels, and each channel has a ground connection. Non-enclosed modules are designed for OEM applications.

  • sbRIO-9265, Non-Enclosed, 4-Channel C Series Current Output Module

    780921-01 - NI

    Non-Enclosed, 4-Channel C Series Current Output Module - The sbRIO‑9265 is ideal for interfacing and controlling industrial current-driven actuators at high rates. The module has built-in open-loop detection, which generates an interrupt in software when an open loop is detected as well as zeroing outputs to ensure safety and avoid driving actuators at system power on. The sbRIO‑9265 requires an external power supply and includes a channel‑to‑earth ground double isolation barrier for safety and noise immunity. Non-enclosed modules are designed for OEM applications.

  • sbRIO-9211, Non-Enclosed, 4-Channel, 14 S/s Aggregate, ±80 mV C Series Temperature Input Module

    780877-01 - NI

    Non-Enclosed, 4-Channel, 14 S/s Aggregate, ±80 mV C Series Temperature Input Module - The sbRIO‑9211 includes anti-aliasing filters, open-thermocouple detection, and cold-junction compensation for high-accuracy thermocouple measurements. The sbRIO‑9211 features NIST‑traceable calibration and a channel‑to‑earth ground double isolation barrier for safety, noise immunity, and high common-mode voltage range. Non-enclosed modules are designed for OEM applications.

  • NI-9205, cDAQ-9171, and cRIO-9940 USB Voltage Measurement Bundle

    865683-01 - NI

    NI-9205, cDAQ-9171, and cRIO-9940 USB Voltage Measurement Bundle - The USB Voltage Measurement Bundle with NI-9205, cDAQ-9171, and cRIO-9940 includes the NI-9205 C Series Voltage Input Module and the cDAQ-9171 CompactDAQ Chassis for voltage measurements. This bundle also includes the cRIO-9940 Backshell for strain relief and operator protection from high-voltage signals. The included NI-9205 features a channel-to-earth ground double isolation barrier for safety, noise immunity, and high common-mode voltage range. Additionally, the NI-9205 provides up to 60 V of overvoltage protection between input channels and common, and it is rated for 1,000 Vrms transient overvoltage protection.

  • NI-9210 and cDAQ-9171 USB Temperature Measurement Bundle

    865662-01 - NI

    NI-9210 and cDAQ-9171 USB Temperature Measurement Bundle - The USB Temperature Measurement Bundle with NI-9210 and cDAQ-9171 includes the cDAQ-9171 CompactDAQ Chassis and the NI-9210 C Series Temperature Input Module. This bundle provides a portable, USB-based sensor measurement system with the NI-9210, which is a high-density thermocouple input module that supports 4 channels, a 14 S/s aggregate sample rate, and a ±80 mV temperature range. Additionally, the bundle supports features such as anti-aliasing filters, open-thermocouple detection, and cold-junction compensation for high-accuracy thermocouple measurements.

  • PXI-8360, MXI-Express Interface, PXI Remote Control Module

    779501-01 - NI

    MXI-Express Interface, PXI Remote Control Module—The PXI‑8360 allows you to control PXI and CompactPCI systems from your PC using a fully transparent MXI‑Express link. It is installed in a PXI chassis and uses a PCI Express‑to‑PCI bridge to interface with an installed PCI‑8360 through a copper, x1 MXI‑Express cable.

  • PXI-8368, MXI-Express Interface with Connector for Fiber Cable, PXI Remote Control Module

    783934-01 - NI

    MXI-Express Interface with Connector for Fiber Cable, PXI Remote Control Module—The PXI‑8368 allows you to control PXI and CompactPCI systems from your PC using a fully transparent MXI‑Express link. It is installed in a PXI chassis and uses a PCI Express‑to‑PCI bridge to interface with an installed PCI‑8366 through a copper, x1 MXI‑Express cable. The fiber-optic cabling of the PXI‑8368 provides electrical isolation between the PC and PXI chassis, as well as cabling up to 200 m per link.

  • NI-9402, LVTTL, 4 Bidirectional Channels, 55 ns C Series Digital Module

    779987-01 - NI

    LVTTL, 4 Bidirectional Channels, 55 ns C Series Digital Module - The NI‑9402 is a per‑channel configurable digital I/O interface for input or output. With reconfigurable I/O (RIO) technology (CompactRIO only), you can use the LabVIEW FPGA Module to program the NI‑9402 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.

  • PXI-6624, Isolated 48 VDC, 8-Channel PXI Counter/Timer Module

    778975-01 - NI

    Isolated 48 VDC, 8-Channel PXI Counter/Timer Module—The PXI‑6624 performs a wide variety of counter/timer tasks, including event counting, time period/frequency measurement, quadrature encoder position measurement, pulse-width measurement, pulse generation, and pulse-train generation. It features 48 VDC channel‑to‑channel isolated I/O with eight counter/timers, 26 digital inputs, and eight digital outputs. Example applications also include the generation of retriggerable pulses, two-signal edge separation measurements, continuous buffered event counting, and continuous buffered pulse-train measurements. The PXI‑6624 offers superior industrially rugged features for a wide array of applications such as automotive/aerospace, industrial/motion control, and manufacturing test.

  • NI-9203, 200 kS/s, ±20 mA, 8-Channel C Series Current Input Module

    783731-01 - NI

    200 kS/s, ±20 mA, 8-Channel C Series Current Input Module - The NI‑9203 is intended for high-performance control and monitoring applications. It features programmable input ranges and variable connectivity options. To protect against signal transients, the NI‑9203 … includes a channel‑to‑earth ground double‑isolation barrier (250 Vrms isolation) for safety and noise immunity.

  • SWB-2816, 8x46, 0.3 A, No Row Access, Reed Relay Matrix Module for SwitchBlock

    781421-16 - NI

    8x46, 0.3 A, Reed Matrix Module for SwitchBlock - The SWB‑2816 is a reed relay matrix module for SwitchBlock systems. Designed for high power, it can operate as an individual relay card or expand in a single carrier or single PXI chassis. You can connect any input to any output, individually or in combination. You can use matrix switches to route signals from oscilloscopes, DMMs, arbitrary waveform generators, and power supplies to various test points on a unit under test (UUT). The primary benefit of matrix switches is simplified wiring—the overall test system can easily and dynamically change the internal connection path without any external manual intervention.

  • SWB-2834, 8x34, 2 A, Electromechanical Relay Matrix Module for SwitchBlock

    781421-34 - NI

    8x34, 2 A, Electromechanical Relay Matrix Module for SwitchBlock - The SWB‑2834 is an electromechanical relay matrix card for SwitchBlock systems. Designed for high power, it can operate as an individual relay card or expand in a single carrier or single PXI chassis. You can connect any input to any output, individually or in combination. You can use matrix switches to route signals from oscilloscopes, DMMs, arbitrary waveform generators, and power supplies to various test points on a unit under test (UUT). The primary benefit of matrix switches is simplified wiring—the overall test system can easily and dynamically change the internal connection path without any external manual intervention.

  • SWB-2834, 8x34, 2 A, Electromechanical Relay Matrix Module for SwitchBlock

    781420-34 - NI

    8x34, 2 A, Electromechanical Relay Matrix Module for SwitchBlock - The SWB‑2834 is an electromechanical relay matrix card for SwitchBlock systems. Designed for high power, it can operate as an individual relay card or expand in a single carrier or single PXI chassis. You can connect any input to any output, individually or in combination. You can use matrix switches to route signals from oscilloscopes, DMMs, arbitrary waveform generators, and power supplies to various test points on a unit under test (UUT). The primary benefit of matrix switches is simplified wiring—the overall test system can easily and dynamically change the internal connection path without any external manual intervention.

  • NI-9231, 8-Channel, 51.2 kS/s/channel, -5 V to 5 V, C Series Sound and Vibration Input Module

    783610-01 - NI

    8-Channel, 51.2 kS/s/channel, -5 V to 5 V, C Series Sound and Vibration Input Module - The NI-9231 is a high-density sound and vibration module that can measure signals from integrated electronic piezoelectric (IEPE) and non-IEPE sensors such as accelerometers, tachometers, and proximity probes. It can perform the high dynamic range measurements necessary for modern measurement microphones and accelerometers and features simultaneous sampling. The NI-9231 incorporates both a TEDS input path and 2 mA of IEPE signal excitation source that can be turned on and off, removing the need for external sensor power and reducing the complexity of the data acquisition system.

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