Hardware Interfacing Using NI USB Devices
- Descrição
- Currículo
- FAQ
- Revisões
Laboratory Virtual Instrument Engineering Workbench (LabVIEW) is a system-design platform and development environment for a visual (graphical) programming language from National Instruments.
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LabVIEW solves engineering challenges across a broad range of application areas. Hence it is an indispensable skill to have.
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LabVIEW is a Systems Engineering Software for applications that require test, measurement, and control.
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Participants will get exposure to LabVIEW-based application development using standard PC-based software and interfacing field instruments through Data Acquisition Hardware.
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Many startups use LabVIEW for rapid prototyping, building breadboard, and proof of concept systems prior to building the final shipping products.
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LabVIEW is especially valuable for companies who want to ship complex systems that need all of the embedded software, FPGA software, and client applications for the same product as LabVIEW allows developing the whole stack in a single high-level language cutting the total development cost and time significantly.
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In addition, many companies use it for testbeds, R&D tools, and manufacturing and service tools for hardware products that were developed using some other embedded programming languages.
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Here students can learn some basics of LabVIEW software.
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How to acquire an analog signal using NI USB 6001 DAQ card.
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How to generate an analog signal using NI USB 6001 DAQ card.
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How to acquire a digital signal using NI USB 6001 DAQ card.
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How to generate a digital signal using NI USB 6001 DAQ card.
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How to acquire an analog signal using NI MY DAQ card.
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How to generate an analog signal using NI MY DAQ card.
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How to acquire a digital signal using NI MY DAQ card.
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How to generate a digital signal using NI MY DAQ card.
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How to acquire an analog signal using NI MY RIO.
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How to generate an analog signal using NI MY RIO.
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How to acquire a digital signal using NI MY RIO.
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How to generate a digital signal using NI MY RIO.
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Learn about NI ELVIS II+
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IoT using LabVIEW
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1IntroductionVídeo Aula
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2IntroVídeo Aula
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3Download LabVIEWVídeo Aula
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4Control and Simulation Toolbox InstallVídeo Aula
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5Mathematical Expressions in LabVIEWVídeo Aula
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6Boolean Expression in LabVIEWVídeo Aula
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7Comparison in LabVIEWVídeo Aula
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8Different Types of Loops in LabVIEWVídeo Aula
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9Capacitor and Inductor Behavior for AC and DC voltageVídeo Aula
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10Express VI creationVídeo Aula
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11Data loging into Excel using LabVIEWVídeo Aula
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12Particle swarm optimization (PSO) using LabVIEWVídeo Aula
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13Solar Panel Data logging in to ExcelVídeo Aula
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14Report GenerationVídeo Aula
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15NI Example Automatic Tank Level PID ControllerVídeo Aula
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16LabVIEW BasicsQuestionário
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17Write Multiple Digital DATA using NI USB 6001Vídeo Aula
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18Generate Multiple signals using NI USB 6000 seriesVídeo Aula
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19Acquire Multiple Digital Signal using USB 6000 seriesVídeo Aula
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20Read Multiple analog signals using NI USB 6000 seriesVídeo Aula
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21Acquire Analog and Generate analog outputVídeo Aula
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22PIR sensor interfaced with NI USB 6001 DAQ cardVídeo Aula
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23LVDT interfaced with NI LabVIEWVídeo Aula
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24Linear POT interfaced with LabVIEWVídeo Aula
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25Rotatory POT interfaced with LabVIEWVídeo Aula
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26PWM signal generationVídeo Aula
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27HC SR04 InterfacingVídeo Aula
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28General Information of NI USB 6001Questionário
Basics of NI USB 6001
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30Introduction to NI MY DAQVídeo Aula
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31Digital Signal Acquisition using MY DAQVídeo Aula
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32Digital Signal Generation using MY DAQVídeo Aula
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33Fading LED using MY DAQVídeo Aula
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34IR Sensor Interface Using MY DAQVídeo Aula
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35Relay Interfacing using MY DAQVídeo Aula
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36Sound Signal Acquisition using MY DAQVídeo Aula
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37NI USB MY DAQ CARDQuestionário
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38MY RIO Basics P-1Vídeo Aula
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39MY RIO Basics P-2Vídeo Aula
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40Running Light Project using my RIOVídeo Aula
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41Digital Signal Generation low level programmingVídeo Aula
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42Connecting and Utilizing Potentiometers for ControlVídeo Aula
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43LDR Interfacing with myRIO: Light Sensing and Data IntegrationVídeo Aula
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44Combining Light Sensing and Touch Interaction with ElectronicsVídeo Aula
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45Sensor Fusion: Integrating LDR, IR, and Touch Sensors for Advanced InterfacingVídeo Aula
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46Acquire Analog Signal Using my RIOVídeo Aula
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47Generate Analog Signal using my RIOVídeo Aula
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48my RIO Acquire Digital InputVídeo Aula
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49my RIO Generate Digital OutVídeo Aula
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50Digital Potentiometer (DPOT) using myRIOVídeo Aula
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51my RIO AccelerometerVídeo Aula
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52PWM signal using My RIO REAL DEMONSTRATIONVídeo Aula
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53Reading X axis, Y axis and Z axis data using accelerometer in LabVIEW my RIOVídeo Aula
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54MY RIOQuestionário
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59Read Signal using VISAVídeo Aula
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60Write signal using VISAVídeo Aula
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61Digital Write using VISAVídeo Aula
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62Multiple Digital Write using VISAVídeo Aula
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63Multiple Digital Read using VISAVídeo Aula
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64VISA Analog ReadVídeo Aula
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65Digital read using VISA, LDR interfacingVídeo Aula
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66Digital Read and WriteVídeo Aula
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67Digital read based on input digital writeVídeo Aula
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72Introduction to Arduino NanoVídeo Aula
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73Acquire Analog Signal Using Arduino NanoVídeo Aula
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74Acquire Digital Signal using NanoVídeo Aula
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75Acquire Multiple Analog SignalsVídeo Aula
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76Generate Digital Signal Using Arduino NanoVídeo Aula
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77Touch Sensor interfacing using Arduino NanoVídeo Aula
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78Buzzer with Arduino NanoVídeo Aula
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79IR Sensor using Arduino NanoVídeo Aula
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80PIR Sensor using Arduino NanoVídeo Aula
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81Relay With Arduino NANOVídeo Aula
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82Flame Sensor With Arduino NanoVídeo Aula
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83DHT11 Humidity and Temperature MeasurementVídeo Aula
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84MQ3 Sensor Interfacing with Arduino NanoVídeo Aula
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85Ultrasonic Sensor using Arduino NanoVídeo Aula
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86QuizzQuestionário
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87Arduino BasicsQuestionário
Arduino Basics
