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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cDAQ-9135, 1.33 GHz Dual-Core Atom, 8-Slot, Extended Temperature CompactDAQ Controller
783688-01
The cDAQ‑9135 controls the timing, synchronization, and data transfer between C Series I/O modules and an integrated computer. It includes Intel Atom dual-core processing and 32 GB nonvolatile storage for data-logging and embedded monitoring in extreme environments. You can choose between running Windows or NI Linux® Real‑Time. The cDAQ‑9135 offers a wide array of standard connectivity and expansion options, including SD storage, USB, Ethernet, RS232 serial, and trigger input, and an integrated NI‑XNET port. You can combine the cDAQ‑9135 with up to eight C Series I/O modules for a custom analog I/O, digital I/O, counter/timer, and controller area network (CAN) measurement and logging system. 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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cDAQ-9133, 1.33 GHz Dual-Core Atom, 8-Slot, CompactDAQ Controller
783687-01
1.33 GHz Dual-Core Atom, 8-Slot, CompactDAQ Controller - The cDAQ‑9133 controls the timing, synchronization, and data transfer between C Series I/O modules and an integrated computer. It includes Intel Atom dual-core processing and 16 GB nonvolatile storage for data-logging and embedded monitoring. You can choose between running Windows or NI Linux® Real‑Time. The cDAQ‑9133 offers a wide array of standard connectivity and expansion options, including SD storage, USB, Ethernet, RS232 serial, and trigger input. You can combine the cDAQ‑9133 with up to eight C Series I/O modules for a custom analog I/O, digital I/O, counter/timer, and controller area network (CAN) measurement and logging system. 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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cDAQ-9133, 1.33 GHz Dual-Core Atom, 8-Slot, CompactDAQ Controller
783686-01
1.33 GHz Dual-Core Atom, 8-Slot, CompactDAQ Controller - The cDAQ‑9133 controls the timing, synchronization, and data transfer between C Series I/O modules and an integrated computer. It includes Intel Atom dual-core processing and 16 GB nonvolatile storage for data-logging and embedded monitoring. You can choose between running Windows or NI Linux® Real‑Time. The cDAQ‑9133 offers a wide array of standard connectivity and expansion options, including SD storage, USB, Ethernet, RS232 serial, and trigger input. You can combine the cDAQ‑9133 with up to eight C Series I/O modules for a custom analog I/O, digital I/O, counter/timer, and controller area network (CAN) measurement and logging system. 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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cDAQ-9132, 1.33 GHz Dual-Core Atom, 4-Slot, CompactDAQ Controller
783339-01
1.33 GHz Dual-Core Atom, 4-Slot, CompactDAQ Controller - The cDAQ‑9132 controls the timing, synchronization, and data transfer between C Series I/O modules and an integrated computer. It includes Intel Atom dual-core processing and 16 GB nonvolatile storage for data-logging and embedded monitoring. You can choose between running Windows or NI Linux® Real‑Time. The cDAQ‑9132 offers an array of standard connectivity and expansion options, including SD storage, USB, Ethernet, RS232 serial, and trigger input. You can combine the cDAQ‑9132 with up to four C Series I/O modules for a custom analog I/O, digital I/O, counter/timer, and controller area network (CAN) measurement and logging system.
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cDAQ-9132, 1.33 GHz Dual-Core Atom, 4-Slot, CompactDAQ Controller
783338-01
1.33 GHz Dual-Core Atom, 4-Slot, CompactDAQ Controller - The cDAQ‑9132 controls the timing, synchronization, and data transfer between C Series I/O modules and an integrated computer. It includes Intel Atom dual-core processing and 16 GB nonvolatile storage for data-logging and embedded monitoring. You can choose between running Windows or NI Linux® Real‑Time. The cDAQ‑9132 offers an array of standard connectivity and expansion options, including SD storage, USB, Ethernet, RS232 serial, and trigger input. You can combine the cDAQ‑9132 with up to four C Series I/O modules for a custom analog I/O, digital I/O, counter/timer, and controller area network (CAN) measurement and logging system.
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PXI-8430, 16-Port, RS232 PXI Serial Interface Module
779948-01
16-Port, RS232 PXI Serial Interface Module - The PXI‑8430/16 is a high-performance interface for high-speed communication with RS232 devices. It features high-performance DMA transfers, multithreading, and multiprocessor support. NI serial interfaces also appear as standard COM ports for compatibility with programs that use serial communications.
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FlexRIO Custom Instruments And Processing
FlexRIO Custom Instruments and Processing products provide high-performance I/O and powerful FPGAs for applications that require more than standard instruments offer. Program these products with LabVIEW to create solutions for whatever challenge you’re facing.
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PXIe-6368, 16 AI (16-Bit, 2 MS/s/ch), 4 AO, 48 DIO, PXI Multifunction I/O Module
781058-01
PXIe, 16 AI (16-Bit, 2 MS/s/ch), 4 AO, 48 DIO, PXI Multifunction I/O Module—The PXIe‑6368 is a simultaneous sampling, multifunction DAQ device. It offers analog I/O, digital I/O, four 32‑bit counters, and analog and digital triggering. Onboard NI‑STC3 timing and synchronization technology delivers advanced timing functionality, including independent analog and digital timing engines and retriggerable measurement tasks. The PXIe‑6368 is ideal for a variety of applications, such as IF digitization; transient recording; ISDN, ADSL, and POTS manufacturing test in the telecom industry; ultrasound and sonar testing; and high-energy physics. The included NI‑DAQmx driver and configuration utility simplify configuration and measurements.
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400 MHz to 4.4 GHz, GPS-Disciplined OCXO, Reconfigurable USRP Software Defined Radio Device
783151-01
400 MHz to 4.4 GHz, GPS-Disciplined OCXO, Reconfigurable USRP Software Defined Radio Device - The USRP-2952 provides an integrated hardware and software solution for rapidly prototyping high-performance wireless communication systems. Built on the LabVIEW reconfigurable I/O (RIO) architecture, USRP RIO delivers an integrated hardware and software solution, so researchers can prototype faster and shorten time to results. You can prototype a 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-2952 is equipped with a GPS-disciplined 10 MHz oven-controlled crystal oscillator (OCXO) reference clock. GPS disciplining delivers improved frequency accuracy and synchronization capabilities.
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PXI-6143, 8 AI (16-Bit, 250 kS/s/ch), 8 DIO, PXI Multifunction I/O Module
779063-01
8 AI (16-Bit, 250 kS/s/ch), 8 DIO, PXI Multifunction I/O Module—The PXI‑6143 is a simultaneous-sampling, multifunction data acquisition device. It offers analog input, digital I/O, two 24‑bit counters, and digital triggering. The PXI‑6143 is ideal for a variety of applications, such as high-energy physics, ultrasonic and sonar testing, ballistics and highly transient signals, and multiaxis control. The included NI‑DAQmx driver and configuration utility simplify configuration and measurements.
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USRP-2940, 50 MHz to 2.2 GHz, Reconfigurable USRP Software Defined Radio Device
783146-01
50 MHz to 2.2 GHz, Reconfigurable USRP Software Defined Radio Device - The USRP-2940 provides an integrated hardware and software solution for rapidly prototyping high-performance wireless communication systems. Built on the LabVIEW reconfigurable I/O (RIO) architecture, USRP RIO delivers an integrated hardware and software solution, so 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.
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Standardize Production Test Software For PCBAs And Electronic Devices
The vast majority of test project man-hours are spent on software development, so the choices that teams make in software tools and architecture have significant impact on deployment schedules. Standardizing software across a team or organization increases both efficiency and proficiency, lowering the risk of missed deadlines and improving test quality and reliability. Test software must:
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PXI-2796, 40 GHz, 50 Ω, Dual 6x1 (SP6T) PXI RF Multiplexer Switch Module
782356-01
40 GHz, 50 Ω, Dual 6x1 (SP6T) PXI RF Multiplexer Switch Module—The PXI‑2796 offers a high-density, unterminated multiplexer with dual 6x1 multiplexer banks in the same module. It is ideal for passing high-order harmonics from PXI RF Signal Upconverter modules or routing multiple sources to PXI RF Signal Downconverter modules.
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PCIe-1437, 80-Bit Camera Link, PoCL-Compatible Frame Grabber Device
785605-01
The PCIe-1437 is a Camera Link image acquisition device designed for machine vision and scientific imaging applications that require high data throughput. The PCIe-1437 includes an onboard FIFO for higher bandwidth use cases, and it works with any base‑, medium-, and full-configuration Camera Link camera. The PCIe-1437 is ideal for many industrial, life science, and biomedical imaging applications. The PCIe-1437 also supports Power over Camera Link (PoCL) and can power cameras through PoCL-enabled cables.
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PXIe-4051 - PXIe, 1-Channel, 60 V, 40 A PXI Electronic Load Module
788179-01
The PXIe-4051 provides programmable load capable of sinking DC power for characterization, design validation, and manufacturing test. This module helps you sink current and absorb power out of a power source up to 300 W with programmable constant voltage, current, resistance, and power levels. You can use the PXIe-4051 to streamline the task of designing automated test systems for a wide range of applications—from aerospace and defense to automotive and semiconductor component test—by eliminating the need to mix multiple instrumentation form factors in a given test system and simplifying synchronization.