i lab week 7 for Roel
Laboratory Report Cover/Worksheet DeVry University College of Engineering and Information Sciences
Course Number: ECET210
Professor:
Laboratory Number: 7
Laboratory Title: Voltage Rectifier and Voltage Regulation Circuits
Submittal Date: Click here to enter a date.
Objectives:
Results:
Conclusions:
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Observations/Measurements:
III. A. 1. A. Theoretical analysis of the rectifier diode:
Sketch the input and output signal waveforms. Record the positive and negative peak voltages and average voltage for the input and output signals. Enter the data in Table 1 under the Theoretical column.
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Voltage (V) |
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Theoretical |
Simulation |
Experimental |
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CH-1 |
Positive Peak Voltage |
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Negative Peak Voltage |
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Average Voltage |
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CH-2 |
Positive Peak Voltage |
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Table 1 – Rectifier data
III. B. 2. Multisim simulation of the rectifier circuit:
Insert the Multisim capture of the input CH-1 and output CH-2 waveforms here. Record the positive and negative peak voltages and average voltage for the input and output signals. Enter the data in Table 1 under the Simulation column.
III. C. 1. Online: Place a digital photo of your circuit below:
III. C. 2. Hardware circuit of the Rectifier circuit:
Measure and record the positive and negative peak voltages and average voltage for the input and output signals. Enter the data in Table 1 under the Experimental column.
Either sketch the scope CH-1 and CH-2 waveforms here or insert the picture captured of the scope CH-1 and CH-2 waveforms here.
III. C. 3. Compare and comment on any differences and similarity between the Theoretical, Simulation and Experimental results.
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Comments: |
III. D. 1. Theoretical analysis of the filtered rectified circuit:
Sketch the input and output signal waveforms. Record the positive and negative peak voltages and average voltage for the input and output signals. Enter the data in Table 2 under the Theoretical column.
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Voltage (V) |
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Theoretical |
Simulation |
Experimental |
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CH-1 |
Positive Peak Voltage |
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Negative Peak Voltage |
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Average Voltage |
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CH-2 |
Positive Peak Voltage |
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Negative Peak Voltage |
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Average Voltage |
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Table 2 – Filtered Rectifier data
III. E. 2. Multisim simulation of the filtered rectifier circuit:
Insert the Multisim capture of the input CH-1 and output CH-2 waveforms here. Record the positive and negative peak voltages and average voltage for the input and output signals. Enter the data in Table 2 under the Simulation column.
III. F. 1. Online: Place a digital photo of your circuit below:
III. F. 2. Hardware circuit of the Filtered Rectifier circuit:
Measure and record the positive and negative peak voltages and average voltage for the input and output signals. Enter the data in Table 2 under the Experimental column.
Either sketch the scope CH-1 and CH-2 waveforms here or insert the picture captured of the scope CH-1 and CH-2 waveforms here.
III. F. 3. Compare and comment on any differences and similarity between the Theoretical, Simulation and Experimental results.
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III. G. 2. Copy and paste the Multisim oscilloscope display of input and output signals below:
III. H. 2. Copy and paste the Multisim oscilloscope display of input and output signals below:
III. H. 3. Comment on the zener diode and voltage regulator regulation circuits:
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Comments:
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IV. Answer the following questions on the worksheet:
1. What would be different about the signal waveforms if the diode D1 is reversed?
2. Why would an individual desire to use a capacitor after the diode rectifier? What impact does the value of the capacitor have on the filter rectified circuit?
3. For negative voltages, what voltage regulator(s) would you suggest to use?
4. If an individual needs a positive voltage other than 5 V, what voltage regulator would you recommend? What must be the regulator input voltage for this voltage regulator to operate properly?
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Deliverable |
Points Available |
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Laboratory Cover page |
5 |
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Working Circuit(s)/Simulation |
8 |
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Observations/Measurements |
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Questions |
7 |
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Total Points |
30 |
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Comments:
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ECET-210 Lab 7 Worksheet DeVry University Page 1 of 6