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MODULE 2: Circuits, Signals and the Analog Discovery Board SUMMER CHALLENGE Electrical Engineering: Smart Lighting Michael Rahaim, PhD Candidate Multimedia.

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Presentation on theme: "MODULE 2: Circuits, Signals and the Analog Discovery Board SUMMER CHALLENGE Electrical Engineering: Smart Lighting Michael Rahaim, PhD Candidate Multimedia."β€” Presentation transcript:

1 MODULE 2: Circuits, Signals and the Analog Discovery Board SUMMER CHALLENGE Electrical Engineering: Smart Lighting Michael Rahaim, PhD Candidate Multimedia Communications Lab Smart Lighting Engineering Research Center Boston University

2 Signal Analysis - Recap
07/07/2015 Signal Analysis - Recap Draw 3 more periods of the square wave What is the frequency of this waveform? Label the amplitude Label the pulse width What is the duty cycle of this square wave? Draw another signal with 25% duty cycle Draw another signal with a phase shift period Amplitude (Pk to Pk) t 1s Pulse Width Phase Shift

3 Amplitude here is the maximum deviation from zero
07/07/2015 Signal Generation Function Generator Waveform Select Signal Preview Setting Sliders Run/Stop Channel Select Amplitude here is the maximum deviation from zero

4 Signal Observation Oscilloscope Measure Base Run/Stop Trigger Settings
07/07/2015 Signal Observation Oscilloscope Run/Stop Measure Range Base Received Signal View Trigger Settings

5 AD Board Pinout 1+/- Analog Input 1 (Oscilloscope and Voltmeter)
07/07/2015 AD Board Pinout 1+/- Analog Input 1 (Oscilloscope and Voltmeter) 2+/- Analog Input 2 (Oscilloscope and Voltmeter) ↓ Ground V+/- 5V DC Supply W1 Analog Output 1 (Waveform Generator) W2 Analog Output 2 (Waveform Generator) T1 Trigger 1 T2 Trigger 2 0-15 Digital Input and Output

6 Experiment II WaveForms Signal Generation NOTE
07/07/2015 Experiment II WaveForms Signal Generation Function Generator (i.e., waveform generator) Oscilloscope NOTE Connect the output of one analog discovery to the input of another

7 07/07/2015 Analog Signals 2πœ‹ radians = 360 Β° 𝑦 𝑑 =𝐴 sin 2πœ‹π‘“π‘‘+πœ‘ πœ”=2πœ‹π‘“

8 07/07/2015 Analog Signals Example: Sine Wave 𝑦 𝑑 =𝐴 sin πœ”π‘‘+πœ‘

9 Frequency Domain Analysis
07/07/2015 Frequency Domain Analysis Sine waves generate a β€œpure” frequency Time domain signals have a frequency domain representation and can be generated with a combination of sine waves Harmonics are integer multiples of a signals fundamental frequency

10 Experiment III Arbitrary Waveform Generator (AWG) Spectrum Analyzer
07/07/2015 Experiment III Arbitrary Waveform Generator (AWG) Standard signals are a subset of potential AWG signals! Spectrum Analyzer

11 Recap References: What did you today? http://www.physicsclassroom.com/
07/07/2015 Recap References: What did you today?


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