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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Engineering Lab Stations
Engineering Lab Stations provide an all-in-one solution to engineering education by combining hardware, software, and courseware to give real hands-on experience to students in electronics, mechatronics, and communications courses.
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Frame Grabber Device
The Frame Grabber Device is designed for machine vision and scientific applications requiring high-resolution and high-speed digital imagining. They offer a range of features including onboard programmable region of interest, pixel decimation, image scaling, and lookup tables. Hubs connected to ports allow acquisition from additional cameras.
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Optimize Throughput And Cost For MmWave 5G Device Functional Test
Test engineers always have faced tough new test-coverage challenges. Those introduced by 5G measurements at mmWave are no exception, as they require over-the-air (OTA) radiated test solutions. But never have these pressures seen today’s intense time-to-market, manufacturing volume, and operational expectations! A solution that meets these demands must:
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Power Cord, AC, U.S., 120 VAC, 2.3 Meters
763000-01
Power Cord, AC, U.S., 120 VAC, 2.3 meters
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Application Software for Electronic Test & Instrumentation
Application software provides configuration-based workflows for electronic test and instrumentation applications. Application software is part of the NI software portfolio.
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USRP Software Defined Radio Stand-Alone Device
The USRP Software Defined Radio Stand-Alone Device consists of an onboard processor, FPGA, and RF front end. You can program this device using either LabVIEW Communications System Design Suite or an open-source software workflow, depending on the operating system you choose. You can provision the device with NI Linux Real-Time, Linux Fedora, or Linux Ubuntu real-time operating systems. The USRP Software Defined Radio Stand-Alone Device enables you to prototype a range of advanced research applications such as stand-alone LTE or 802.11 device emulation; Medium Access Control (MAC) algorithm development; multiple input, multiple output (MIMO); heterogeneous networks; LTE relaying; RF compressive sampling; spectrum sensing; cognitive radio; beamforming; and direction finding.The registered trademark Linux® is used pursuant to a sublicense from LMI, the exclusive licensee of Linus Torvalds, owner of the mark on a worldwide basis.
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PXI Carrier Module For SwitchBlock
The PXI Carrier Module for SwitchBlock can hold up to six Matrix Modules for SwitchBlock while occupying four PXI slots. By connecting multiple SwitchBlock relay cards through the carrier's integrated analog bus, you can easily create large matrices with more than 2,000 crosspoints in four PXI slots and more than 8,000 crosspoints in a single PXI chassis. Each Matrix Module for SwitchBlock comes in an A-type version, which serves as the first matrix building block and offers row and column access through the front connector, and a B-type version, which serves as an expansion module and only provides column access through the front connector. Typically, SwitchBlock systems contain one A-type module and numerous B-type modules.
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Power Measurements Conditioner
The Power Measurements Conditioner provides voltage and current signal conditioning for a supported data acquisition module or device to make up to four simultaneous power measurements per conditioner. It also includes attenuation for voltage channels up to 2,000 V and has power, communication, and signal lines for current measurements from current transducers.
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Automotive
As vehicles advance towards autonomous operation, test engineers face drastically increasing system complexity while dealing with ever present cost and time pressure.
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Benchtop Measurement Bundle With SMU
The Benchtop Measurement Bundle provides a PXI Express- and Thunderbolt™-based measurement system that features a chassis with a high-bandwidth, all-hybrid backplane. With the SMU, you can make use of precise voltage or current sourcing and measurement capabilities for PXI systems. Additionally, you can use analog-to-digital converters to help you perform high-precision measurements.Thunderbolt is a trademark of Intel Corporation or its subsidiaries in the US and/or other countries.
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Analog Output Module For Remote I/O
The Analog Output Module for Remote I/O features a 2-wire spring terminal connection, selectable output ranges (0 V to 10 V, ±10 V, 0 V to 5 V, ±5 V, 0 mA to 20 mA, 4 mA to 20 mA, and ±20 mA) output ranges, and short circuit proof outputs. A remote I/O system consists of an EtherCAT bus coupler and individual modules mounted on a DIN rail. You control the Analog Output Module for Remote I/O from a real‐time controller, such as a CompactRIO Controller or an Industrial Controller. You can use remote I/O hardware to add low‐cost I/O for simple tasks while your controller handles advanced tasks such as image processing, motion control, and high‐speed or specialty measurements.
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C Series Digitizer Module
The C Series Digitizer Module takes both high-speed and high-resolution time- and frequency-domain measurements. It features up to four channels that can sample at speeds up to 20 MS/s—ideal for discrete detection of signals 10 MHz and smaller for applications such as fault detection, partial discharge analysis, and acoustic measurements. The module's store-and-forward architecture allows up to 128 Mbits of measurement data to be sent back to the CompactRIO Controller and analyzed. You can use the module as part of a CompactRIO system and use the LabVIEW FPGA Module to develop an advanced trigger based on low-speed streaming for added flexibility. This digitizer includes the NI-DAQmx driver and configuration utility that simplifies configuration and measurements. NI-DAQmx supports NI programming environments and Python, ANSI C, C#.NET, and MathWorks MATLAB® software.
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NI LabVIEW Base Development System for Windows
NLabVIEW is system engineering software designed for applications that require test, measurement, and control with rapid access to hardware and data insights. The LabVIEW Base Development System is recommended to integrate NI hardware and third-party devices together to build automated desktop measurement applications with an intuitive graphical programming syntax.For applications that require advanced inline analysis or PID control, consider LabVIEW Full Development System.
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Temperature Input Module For Remote I/O
The Temperature Input Module for Remote I/O features a features a thermocouple input range of ±100 mV and a voltage input range of ±5 V. It also has an adjustable filter time for improved measurement quality and optional external CJC or PT100 RTD measurements.A remote I/O system consists of an EtherCAT bus coupler and individual modules mounted on a DIN rail. You control the Temperature Input Module for Remote I/O from a real‐time controller, such as a CompactRIO Controller or an Industrial Controller. You can use remote I/O hardware to add low‐cost I/O for simple tasks while your controller handles advanced tasks such as image processing, motion control, and high‐speed or specialty measurements.
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Voltage Input Module For Remote I/O
The Voltage Input Module for Remote I/O features 2-, 3-, and 4-wire spring terminal connection methods, a built-in power supply for sensors, four selectable input ranges, and simultaneous sampling. A remote I/O system consists of an EtherCAT bus coupler and individual modules mounted on a DIN rail. You control the Voltage Input Module for Remote I/O from a real-time controller, such as a CompactRIO Controller or an Industrial Controller. You can use remote I/O hardware to add low-cost I/O for simple tasks while your controller handles advanced tasks such as image processing, motion control, and high-speed or specialty measurements.