Difference between revisions of "Data Acquisition Basics"

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* Assign Project1 - Simulation
 
* Assign Project1 - Simulation
 
* Homework 4
 
* Homework 4
** Finish ComputeAngle.vi (in Project1 -> RoboticSensing.zip -> micSourceLocator.lvproj -> My Computer -> ComputeAngle.vi)
+
** A: Finish ComputeAngle.vi (in Project1 -> RoboticSensing.zip -> micSourceLocator.lvproj -> My Computer -> ComputeAngle.vi)
** Finish ComputeIntersection.vi
+
** B: Finish ComputeIntersection.vi
 
* Additional Resources
 
* Additional Resources
 
** Conditionally append values to an array in a loop
 
** Conditionally append values to an array in a loop

Revision as of 20:11, 1 September 2015

  • LabVIEW Tutorial
    • Code up examples in LabVIEW for slides 11, 14, 27, 31, 36, 38, 41. Put each one in a separate VI and demo to me or T/A.
    • Configure LabVIEW options as shown in slides 15-17
    • NI LabVIEW 101
  • Homework 3 - Watch LabVIEW 101 Tutorials
  • Assign Project1 - Simulation
  • Homework 4
    • A: Finish ComputeAngle.vi (in Project1 -> RoboticSensing.zip -> micSourceLocator.lvproj -> My Computer -> ComputeAngle.vi)
    • B: Finish ComputeIntersection.vi
  • Additional Resources
  • Data Acquisition Basics
    • Homework 5 - Finish exercise
    • Homework 6 - Connect wires from A00 and AO1 to AI0+ and AI1+ (remove wire from Banana A to AI0+). Make sure that the Prototyping Power is on. Modify your vi from Homework 5 to collect samples from both AI0 and AI1. Then open DelayedChirp2DAC.vi and run this vi. You shouldn't modifiy DelayedChirp2Dac.vi. Run your modified Homework 5 vi and zoom in in the time and frequency domain to examine the waveforms in detail. Describe in detail what you see. Measure the difference in time between both channels. Hint: Start and stop your Data Acquisition vi until the entire signal is in the middle of the buffer.