| Interactive Product Compare
Need to Compare National Instruments 1000+ hardware products, no problem meet Interactive Product Compare.
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| NI-CANアプリケーションをNI-XNETに移行する
NI-CANアプリケーションをNI-XNETに移行する NI-XNETシリーズのCAN/FlexRayインタフェースは、CAN/FlexRayインタフェースにNI-XNETドライバソフトウェアを組み合わせたものです。新しいNI-XNETインタフェースは、Series 2 PCI/PXI/PCMCIAインタフェースなどのレガシーNI-CAN製品と比較して、使い...
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| NI-XNET Add-On for NI VeriStand
The NI-XNET add-on for NI VeriStand enables users to use the NI-XNET native API with new high performance NI-XNET CAN and FlexRay hardware.
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| Software Support for CompactRIO, CompactDAQ, Single-Board RIO, R Series, FlexRIO, and EtherCAT
The attached HTML file provides quick reference information you can use to determine what minimum versions of software you need for the C Series modules, CompactRIO ...
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| J1939 Transport Protocol Reference Example
J1939 is a set of SAE standards that is built on top of CAN (Controller Area Network). Part of the standard defines how to deconstruct, transfer and reassemble CAN ...
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| .dbc to Fibex Converter
This example program shows how to convert a .dbc file to a Fibex (.xml) file using the NI-XNET API. The page also contains a compiled executable if you just want ...
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| NI-XNET CAN and FlexRay Platform Overview
The NI-XNET product line is a combination of accelerated controller area network (CAN) and FlexRay interfaces, an optimized driver, easy-to-use APIs, and configuration ...
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| What is Hardware-in-the-Loop (HIL) Testing
NI Home Overview Understand how HIL testing improves control system validation. View Now 9 minute(s) webcast Requires: Flash 9 Please disable your browser's pop-up ...
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| What is NI VeriStand
NI VeriStand is a software environment for configuring real-time testing applications, including hardware-in-the-loop (HIL) tests. Out of the box, NI VeriStand helps ...
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| FIBEX and the NI-XNET Database Editor Overview
This document covers the basics of FIBEX and the NI-XNET Database Editor for CAN and FlexRay networks.
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| HART Communication Protocol Reference Example
The HART Communications Protocol (Highway Addressable Remote Transducer Protocol) is a bi-directional industrial field communication protocol used to communicate ...
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| CAN Physical Layer and Termination Guide
This document presents an overview of the various physical layers for controller area networks. It details which NI CAN products support which layers and how to ...
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| Introduction to the Local Interconnect Network (LIN) Bus
LIN (Local Interconnect Network) is a low-cost embedded networking standard for connecting intelligent devices together. LIN is most popular in the automotive industry.
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| Exploring Effective Calibration and Sparing Strategies
Discover how an effective calibration and sparing strategy can minimize downtime costs and maximize automated test system productivity. This presentation is from ...
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| Three Tips for Getting Started with Your HIL Application, featuring Prevas AB
Learn the value of hardware-in-the-loop (HIL) applications in test systems. Prevas AB, an industry expert in dynamic test solutions, shares three tips for creating ...
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| Incorporate Multiphysics or Multidomain Models in Your NI LabVIEW Applications
Learn how to use the external model interface (EMI) to bring complex multiphysics models developed in third-party software into the LabVIEW platform. Models created ...
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| C Interface to LabVIEW FPGA FAQ
The NI LabVIEW FPGA Module is a development tool that enables you to program a field-programmable gate array (FPGA) on NI Reconfigurable I/O (RIO) hardware, such ...
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| Architecting Adaptable HIL Test Systems with FPGA Technology
Review examples of how HIL test system developers can lower total system cost and improve system performance.
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| Create and Deploy Advanced PID Algorithms
Proportional integral derivative (PID) control is still a useful control algorithm in the market and many of the current model-based control algorithms are based ...
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| Obtaining CAN Channel Properties with Frame Channel Conversion Library via USB-CAN
Obtaining CAN Channel Properties with Frame Channel Conversion Library via USB-CAN is a EXAMPLE - Introduction This example builds off of USB_CAN_Basic_Input.VI ...
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