LabVIEW
Graphical development software
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Automated Thermostat Test System
*Transport mechanism moves thermostats to various temperature controlled locations.*Continuously monitored process status*PC controlled transport and measurements*Operator is shielded from 200 - 210 degree F hot water insertion baths*LabVIEW® test/process language
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LabVIEW & Software Development
We are a National Instruments Gold Alliance Partner and our software engineers are NI Certified LabVIEW Developers. We have successfully delivered hundreds of LabVIEW applications either as custom software applications or integrated with hardware instruments and delivered as turnkey systems.
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PXIe-2512, 7-Channel, 10 A PXI Signal Insertion Switch Module
780587-12
PXIe, 7-Channel, 10 A PXI Signal Insertion Switch Module—The PXIe‑2512 fault insertion unit (FIU) is designed for hardware‑in‑the‑loop (HIL) applications and electronic reliability tests. Each module has a set of feedthrough channels that you can open or short to one or more fault buses. You can use this architecture to simulate open or interrupted connections as well as shorts between pins, shorts to battery voltages, and shorts to ground on a per-channel basis. When controlled with the LabVIEW Real-Time Module, the PXIe‑2512 is ideal for validating the integrity of control systems including engine control units (ECUs) and full authority digital engine controls (FADECs).
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PXIe-7847, Kintex-7 160T FPGA, 500 kS/s, DRAM PXI Multifunction Reconfigurable I/O Module
784144-01
Kintex-7 160T FPGA, 500 kS/s, DRAM PXI Multifunction Reconfigurable I/O Module—The PXIe‑7847 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals to ensure complete flexibility of system timing and synchronization. You can customize these devices with the LabVIEW FPGA Module to develop applications requiring precise timing and control such as hardware‑in‑the‑loop testing, custom protocol communication, sensor simulation, and high-speed control. The PXIe‑7847 features a dedicated A/D converter (ADC) per channel for independent timing and triggering. This design offers specialized functionality such as multirate sampling and individual channel triggering, which are outside the capabilities of typical data acquisition hardware. The PXIe‑7847 also includes peer-to-peer streaming for direct data transfer to other PXI Express modules.
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Caraya Unit Tester
Caraya is a new experimental open source assertion and unit testing framework for LabVIEW. It takes a whole new approach to unit testing; your VI is your test. Caraya allows you to convert your manual test VIs you use for debugging into unit test cases with nearly no effort. Even running the tests is easy, just run the test case VI. Caraya significantly lowers the barrier for developers to write unit tests leading into improved overall code quality in real-world projects where developers don’t always have the luxury to write unit test cases first.
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*PC Interfaces
Ophir PC interfaces work on the smart plug principle. This means that almost any Ophir PC interface can work – plug and play – with almost any of the wide range of Ophir sensors. Ophir PC interfaces are also the most precisely calibrated units on the marketת, thus measuring with the highest accuracy. With the versatile Ophir StarLab software, your PC becomes a complete laser measurement station. Ophir also provides software to interface seamlessly with LabVIEW or the user's own software.
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ISC-1781, 1.3 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera
785145-01
The ISC‑1781 is a high-performance smart camera for machine vision and is powered by a 1.58 GHz dual-core Intel Celeron processor. The combination of the onboard processor with a CMOS image sensor provides an easily distributed all‑in‑one system. In addition to high-performance image acquisition and processing, you can use built-in digital I/O and industrial communication options for dynamic, real-time communication and integration with industrial automation devices including programmable logic controllers (PLCs), human machine interfaces (HMIs), robotics, sensors, and industrial machinery. You can configure NI Smart Cameras with the included Vision Builder for Automated Inspection (AI) software or program the camera with the LabVIEW Real‑Time Module and the Vision Development Module.
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ATE Development Services
Automated Testing Engineering and Automated Test Equipment (ATE) provide a faster, more efficient way to test your product. With the help of LabVIEW and Modular Instruments, our engineers create test and measurement systems for all areas of product design and manufacturing.Whether you are in early stage R&D prototype testing, and design validation, or providing a solution for quality control and life testing our engineers can work with you to design fully customized automated Test Systems using entirely off-the-shelf products to ensure you deliver quality product on time.
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SMX Series
The SMX series is an extension of VTI’s award-winning EX1200 series switch family. Designed using the same core philosophy of high-density without compromising on performance, the SMX brings instrument grade switching capability to PXI Express for the first time. Our SMX switch cards encompass everything from power switching to the widest range of microwave switching in the PXI platform. Our drivers and support software provide standard operation in Windows, Linux, and LabView but add additional capability through our award winning GUI.
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ArgoBot Kit
ROB-00001
The ArgoBot Full Kit is a fully assembled robot and controls development platform. It is based on the Digilent chipKIT WF32(TM), a WiFi enabled development platform, and configured for LabVIEW targeting. Most importantly ArgoBot was designed with FIRST Robotics Competition teams in the front of our minds! Named after the FRC Team 1756 mascot, Argos, the ArgoBot development platform includes a fully-assembled, ready to drive mini WiFi enabled robot (about 8" x 5" x 4"), as well as tons of FRC controls tutorials and example code (LabVIEW VIs). Features included on the ArgoBot will look very familiar to anyone who has worked with National Instruments products (Compact RIO and RoboRIO) in the past. This includes three 5V Digital I/O modules (with jumpered pull-ups), three 5V analog inputs, and an I2C header. Example VIs have been streamlined to enable a 1-click configuration style to accelerate your development process. We also added a 2-channel motor driver that is used to supply the ArgoBot drive motors. Our ultimate goal is that everything you can build, control or implement on ArgoBot can be easily leveraged on your FRC bot! Complimenting its many electrical features, ArgoBot is easy to work with and easy to maintain. The chassis is a polycarbonate (the extremely tough stuff that is easy to drill and modify but easily takes bumps and bruises without cracking) case that is fully intact - meaning that ArgoBot doesn't just come with a case... it is a case! Clean-up and organization is simple - just close the case and turn off the power switch.
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GPIB Relay Interfaces
*ICS's GPIB to Relay Interfaces provide the user with a choice of 16 contact closures or 16 relay driver outputs for driving external relays. All of the GPIB to Relay Interfaces include 8 isolated digital inputs. Available in ICS's Minibox™ or as an OEM board.*All interfaces are IEEE-488.2 compliant and use SCPI commands for operation with NI or Agilent VISA, LabVIEW and VEE or any GPIB programming language. Use ICS's interactive GPIB Keyboard program for easy operation from your PC without having to write a program.
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Industrial Automation
Industrial automation involves integrating Data Acquisition and control logic with various third-party components, devices, and sensors. Bringing together this broad mix of technologies, and integrating them into a final solution requires Mechanical, Electrical, and Software Engineers, and a common technology platform to ensure all system components work cohesively. Leveraging the LabVIEW, PXI, and CompactRIO, platforms we can solve extremely complex industrial automation challenges and deliver success for our customers that could not otherwise be achieved.
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FlexRIO
The FlexRIO product line was designed for engineers and scientists who need the flexibility of custom hardware without the cost of custom design. Featuring large, user-programmable FPGAs and high-speed analog, digital, and RF I/O, FlexRIO provides a fully reconfigurable instrument that you can program graphically with LabVIEW or with VHDL/Verilog.
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Calibration And Verification Instruments
The system of automatic calibration and verification consists of a computer of the operator's workplace and a control controller with a calibrator connected to it and a verified device. The device under test can have 4 to 16 working channels with a complicated circuit for connecting different types of signals: voltage, current, thermocouples, thermoresistance. The system allows a change in the set of operating ranges during calibration and calibration. The software development system used the LabVIEW development environment with the Real-Time module.
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Positioner HD
The Positioner HD is a two-axis azimuth over elevation positioner, for precise angular positioning with full spherical coverage. Designed for antenna and RF device measurement, the positioner is built out of low-reflection materials, with additional RF shielding for minimal multipath and improved measurement accuracy. A slip ring is included to allow for continuous 360° rotation in both axes. This system is highly configurable, with options for RF rotary joints, slip rings for data communications, and custom sizing. An external motor controller is included by default with the Positioner HD. This motor controller connects to a computer via USB and includes an easy-to-use graphic interface. Other command options include automated macros, manual control knobs, Python, Matlab, or Labview interfaces, or direct control via ASCII commands. The controller also includes a digital I/O trigger system, for precise synchronization with other devices.
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PXI-7954, Virtex-5 LX110 FPGA, 128 MB DRAM PXI FPGA Module for FlexRIO
780563-01
Virtex-5 LX110 FPGA, 128 MB DRAM PXI FPGA Module for FlexRIO—The PXI‑7954 provides flexible, customizable I/O for LabVIEW FPGA. It includes 132 single-ended I/O lines configurable as 66 differential pairs. You can pair the PXI‑7954 with FlexRIO adapter modules that offer high-performance analog and digital I/O. Together, the two modules create a reconfigurable instrument that you can program with LabVIEW FPGA software.
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Timing Generator Software and Hardware Package
TIO-10
Package includes a Fiber Optic Interface to National Instruments TIO-10 Timing Board #1, a National Instruments PC-TIO-10 timing card, and a LabVIEW executable software program. See Fiber Optic Interface to National Instruments TIO-10 Timing Board #1 or LabVIEW executable software program for details.
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PCIe-7822, Kintex 7 325T FPGA, Digital Reconfigurable I/O Device
785360-01
The PCIe‑7822 is a reconfigurable I/O (RIO) device that features a user-programmable FPGA for onboard processing and flexible I/O operation. With LabVIEW FPGA, you can individually configure the digital lines as inputs, outputs, counter/timers, PWM, encoder inputs, or specialized communication protocols. You can also program custom onboard decision making that executes with hardware-timed speed and reliability. Each line offers software-selectable logic levels. The PCIe‑7822 is well-suited for a wide variety of applications, such as high-speed waveform generation, sensor simulation, hardware‑in‑the‑loop (HIL) test, bit error rate test, and other applications that require precise timing and control.
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RISC-based DIN-rail Fanless Embedded System With I.MX 6UL Processor, COM, LAN, DIO (2-in/2-out), 4 AI Channels (16-bit, 250 KS/s) And 2 PCIe Mini Card Slots
IRU152
The IRU152 is powered by the low-power NXP i.MX 6 UltraLite processer. It can withstand an extended operating temperature range of -40°C to +70°C and up to 2G of vibration for operating in harsh environments. Furthermore, it supports NI LabVIEW to allow users to design graphical user interfaces for their measurement applications quickly and efficiently. In order to provide data collection and device control, the IRU152 comes with various I/O connectors, including four analog input (AI) channels, one isolated RS-232/422/485 port, one isolated LAN and one isolated DIO (2-in/2-out). The four analog input channels have differential input configuration and overvoltage protection of 55V DC. The maximum sampling rate of IRU152 is up to 250 kS/s with a 16-bit resolution for low-speed high-resolution sensor monitoring and signal measurements. Apart from the abovementioned features, the IRU152 comes in two PCI Express Mini Card slots and one SIM card slot for Wi-Fi, 3G/4G and LoRa connections. The DIN-rail embedded system is equipped with onboard 512MB DDR3 SDRAM; besides, they have an 8GB eMMC flash memory. The extremely low power industrial IoT gateway has passed the Heavy Industrial certification and FCC part 15 to ensure the excellent quality and highly reliable performance.
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ISC-1782, 2 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera
785150-01
The ISC‑1782 is a high-performance smart camera for machine vision and is powered by a 1.58 GHz dual-core Intel Celeron processor. The combination of the onboard processor with a CMOS image sensor provides an easily distributed all-in-one system. In addition to high-performance image acquisition and processing, you can use built-in digital I/O and industrial communication options for dynamic, real-time communication and integration with industrial automation devices including programmable logic controllers (PLCs), human machine interfaces (HMIs), robotics, sensors, and industrial machinery. You can configure NI Smart Cameras with the included Vision Builder for Automated Inspection (AI) software or program the camera with the LabVIEW Real‑Time Module and the Vision Development Module.
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ARINC 429 Test & Simulation Interface for PCI Express
PCIe-C429
Avionics Interface Technologies
4, 8, 16, or 32 Software Programmable Tx/Rx Channels - Programmable High/Low Speed Operation - Concurrent operation of all Tx/Rx Channels at high data rates - Full error injection and detection • Data capture filtering, 100% bus recording, and physical bus replay - Rate-oriented Label Transmission - Label Selective Trigger for Capture/Filtering - IRIG-B time code encoder/decoder with free-wheeling mode - Application Interface supporting C/C++, C# and VB.NET Development - Device driver support: Windows, Linux, LabVIEW Real-Time (others on request) - Compatible with AIT’s Flight Simulyzer GUI Bus Analyzer Software
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PXIe-7821, Kintex 7 160T FPGA, 128 DIO, 512 MB DRAM, PXI Digital Reconfigurable I/O Module
783485-01
Kintex 7 160T FPGA, 128 DIO, 512 MB DRAM, PXI Digital Reconfigurable I/O Module—The PXIe‑7821 is a reconfigurable I/O (RIO) device that features a user-programmable FPGA for onboard processing and flexible I/O operation. With LabVIEW FPGA, you can individually configure the digital lines as inputs, outputs, counter/timers, PWM, encoder inputs, or specialized communication protocols. You can also program custom onboard decision making that executes with hardware-timed speed and reliability. Each line offers software-selectable logic levels. The PXIe‑7821 supports peer‑to‑peer streaming for direct data transfer between PXI Express modules. The PXIe‑7821 is well-suited for a wide variety of applications, such as high-speed waveform generation, sensor simulation, hardware‑in-‑the‑loop (HIL) test, bit error rate test, and other applications that require precise timing and control.
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E-Type Thermocouple, 32°F to 900°F Temperature Sensor
745690-E002
E-Type Thermocouple, 32°F to 900°F Temperature Sensor - The E-Type Thermocouple works with NI measurement devices and software to help you acquire temperature data within a measurement system. You can use LabVIEW or FlexLogger software and NI-DAQmx driver software to configure measurements and predefined scaling coefficients for the E-Type Thermocouple and acquire synchronized temperature data in units of degrees. The E-Type Thermocouple is available in various lengths and configurations including field-cuttable, ready-made sensors, and thermocouple wire extensions with a -20°F to 221°F temperature range.
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USB-7856, Kintex-7 160T FPGA, 1 MS/s Multifunction Reconfigurable I/O Device
782916-01
Kintex-7 160T FPGA, 1 MS/s Multifunction Reconfigurable I/O Device - The USB‑7856 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals for complete flexibility of system timing and synchronization. You can customize these devices with the LabVIEW FPGA Module to develop applications requiring precise timing and control such as hardware‑in‑the‑loop testing, custom protocol communication, sensor simulation, and high-speed control. The USB‑7856 features a dedicated A/D converter per channel for independent timing and triggering. This design offers specialized functionality such as multirate sampling and individual channel triggering, which are outside the capabilities of typical DAQ hardware.
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NI-9402, LVTTL, 4 Bidirectional Channels, 55 ns C Series Digital Module
779987-01
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.
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K-Type Thermocouples Wire, Fiberglass (32 deg F to 900 deg F) 1 m
745690-K001
K-Type Thermocouple, 32°F to 900°F Temperature Sensor - The K-Type Thermocouple works with NI measurement devices and software to help you acquire temperature data within a measurement system. You can use LabVIEW or FlexLogger software and NI-DAQmx driver software to configure measurements and predefined scaling coefficients for the K-Type Thermocouple and acquire synchronized temperature data in units of degrees. The K-Type Thermocouple is available in various lengths and configurations including field-cuttable, ready-made sensors, and thermocouple wire extensions with a -20°F to 221°F temperature range.
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PCIe-7857, Kintex-7 160T FPGA, 1 MS/s, DRAM Multifunction Reconfigurable I/O Device
786458-01
PCIe, Kintex-7 160T FPGA, 1 MS/s, DRAM Multifunction Reconfigurable I/O Device - The PCIe‑7857 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals to ensure complete flexibility of system timing and synchronization. You can customize these devices with the LabVIEW FPGA Module to develop applications requiring precise timing and control such as hardware‑in‑the‑loop testing, custom protocol communication, sensor simulation, and high-speed control. The PCIe‑7857 features a dedicated analog-to-digital converter per channel for independent timing and triggering. This device offers specialized functionality such as multirate sampling and individual channel triggering, which are outside the capabilities of typical data acquisition hardware.
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AFDX ® / ARINC 664 Test And Simulation XMC Module
XMC-664
*Supports IEEE 802.3 10/100/1000 Mbit / s full duplex Ethernet connections*Uses SFPs to support both electrical and optical interfaces*Half-size PCI / PCI-X modules*Simulates multiple AFDX® / ARINC 664 end systems*Standard Ethernet processes simultaneous to AFDX® / ARINC 664*Up to 128 output VLs and 512 input VLs*Upper layer protocol handling (ARINC 653, UDP, IP) managed onboard*DMA for high data rate applications*Windows XP / 7, Linux, and LabVIEW Real Time Drivers & APIs (others on request)*Easy to use tool for configuring AFDX® / ARINC 664 end systems (XML based)
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USRP-2955, 10 MHz to 6 GHz, 80 MHz Bandwidth, GPS-Disciplined OCXO, Reconfigurable USRP Software Defined Radio Device
785264-01
The USRP-2955 provides an integrated hardware and software solution for rapidly prototyping high-performance wireless receiver systems. It is designed for over-the-air signal acquisition and analysis. It features a two-stage superheterodyne architecture with four independent receiver channels and shares local oscillators for phase-coherent operation. It also offers a Kintex-7 FPGA programmable with the LabVIEW FPGA Module. With these features, the USRP-2955 has the RF and processing performance for applications such as spectrum monitoring, direction finding, signals intelligence, wideband recording, and radar prototyping. The USRP-2955 is equipped with a GPS-disciplined 10 MHz oven-controlled crystal oscillator (OCXO) Reference Clock, which improves frequency accuracy and synchronization.
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SAE AS5643 Mil-FireWire PXI Express Test & Simulation Instrument
HSSUB-6120
Avionics Interface Technologies
Highest density capability available in an AS5643 3U PXI Express, single slot instrument - Four (4) FireWire nodes, each with three (3) ports - Apps provide high-level (AS5643) and low-level (1394) access, while accommodating end-user customization - S100, S200, S400, S800 transfer rates - Support all Nodes operating concurrently at 800 Mbps - Independent transformer coupling for each port - Eight (8) standard PXI backplane triggers - Industry standard Texas Instruments IEEE 1394b Chipset - ANSI C (typical), C++/C#/LabVIEW





























