2) Set up the circuit of Figure 8.5. Adjust vm(t) = 5 sin(2000 7t) volts. BA 159 + vi(t) (V 1KO vo(t) Figure 8.5 Plot the input and output voltage waveforms; compare the peak values of the input and the output. Measure the de value of the output voltage waveform. b) Connect the capacitor in parallel with load resistor 1 k2. Measure Vde and V; draw the input and output ripple voltage waveforms. (Be sure that the capacitor is connected in correct polarity.). Try the cases with R=1 kQ, and C=1µF, 10µF and 100µF. Comment on the results.

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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2) Set up the circuit of Figure 8.5. Adjust vin(t) = 5 sin(2000 m) volts.
ВА 159
v:(t) (
1KO
vo(t)
Figure 8.5
Plot the input and output voltage waveforms; compare the peak values of the input and the output.
Measure the de value of the output voltage waveform.
b) Connect the capacitor in parallel with load resistor 1 k2. Measure Vde and V; draw the input and
output ripple voltage waveforms. (Be sure that the capacitor is connected in correct polarity.). Try the cases
with R=1 k2, and C=1µF, 10µF and 100µF. Comment on the results.
Transcribed Image Text:2) Set up the circuit of Figure 8.5. Adjust vin(t) = 5 sin(2000 m) volts. ВА 159 v:(t) ( 1KO vo(t) Figure 8.5 Plot the input and output voltage waveforms; compare the peak values of the input and the output. Measure the de value of the output voltage waveform. b) Connect the capacitor in parallel with load resistor 1 k2. Measure Vde and V; draw the input and output ripple voltage waveforms. (Be sure that the capacitor is connected in correct polarity.). Try the cases with R=1 k2, and C=1µF, 10µF and 100µF. Comment on the results.
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