a) b) With the aid of suitable diagrams, differentiate a half-wave rectifier, a full-wave centre tap rectifier and a full-wave bridge rectifier in terms of average value (Vac) and peak inverse voltage (PIV). Assume all diodes are ideal. Using a Si diode, determine the values of V, for positive and negative cycles of V₁ for the clipper in Figure Q2b. Subsequently sketch the output waveform V..

Electric Motor Control
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Chapter59: Motor Startup And Troubleshooting Basics
Section: Chapter Questions
Problem 12SQ: How is a solid-state diode tested? Explain.
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QUESTION 2
With the aid of suitable diagrams, differentiate a half-wave rectifier, a full-wave centre tap
rectifier and a full-wave bridge rectifier in terms of average value (Vdc) and peak inverse
voltage (PIV). Assume all diodes are ideal.
a)
b)
c)
Using a Si diode, determine the values of V, for positive and negative cycles of V₁ for the
clipper in Figure Q2b. Subsequently sketch the output waveform V..
V
:
R
www
Si
-20
6V
Vo
+15
-15
Figure Q2b
Examine the input and output waveform in Figure Q2c. Design a clamper network using
Si diode with a forward bias voltage of 0.7V. Justify your answer by calculating I the
variables for positive and negative input cycles.
V₁
V₂
V
+10
+34.3
by tu
0
t.
t₁
t₁
t₂
+4.31
V
Figure Q2c
ta
Transcribed Image Text:QUESTION 2 With the aid of suitable diagrams, differentiate a half-wave rectifier, a full-wave centre tap rectifier and a full-wave bridge rectifier in terms of average value (Vdc) and peak inverse voltage (PIV). Assume all diodes are ideal. a) b) c) Using a Si diode, determine the values of V, for positive and negative cycles of V₁ for the clipper in Figure Q2b. Subsequently sketch the output waveform V.. V : R www Si -20 6V Vo +15 -15 Figure Q2b Examine the input and output waveform in Figure Q2c. Design a clamper network using Si diode with a forward bias voltage of 0.7V. Justify your answer by calculating I the variables for positive and negative input cycles. V₁ V₂ V +10 +34.3 by tu 0 t. t₁ t₁ t₂ +4.31 V Figure Q2c ta
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