02. The input voltage, Vin(t) = 25 sin(200mt) V is connected to four germanium diodes with VF = 0.3 V as shown in Figure 5. (a) Briefly explain how the output voltage, vo(t) is obtained during the positive and negative half cycles. (b) Sketch and label 2 cycles of the input voltage waveform, Vin(t). Indicate the period, maximum voltage and minimum voltage. (c) Sketch and label 2 cycles of the output voltage waveform, ve(t). Indicate the period, maximum voltage and minimum voltage. (d) Calculate the average output voltage. (e) Calculate the average current flowing through the load resistor, R.. Vin(t) (2) De Figure 5 D₁ RL D₂ 2 KQ Vo(t)

Electric Motor Control
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Chapter59: Motor Startup And Troubleshooting Basics
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Pls assist in Q2 figure 5

02.
The input voltage, Vin(t) = 25 sin(200mt) V is connected to four germanium diodes
with VF = 0.3 V as shown in Figure 5.
(a) Briefly explain how the output voltage, vo(t) is obtained during the positive
and negative half cycles.
(b) Sketch and label 2 cycles of the input voltage waveform, Vin(t).
Indicate the period, maximum voltage and minimum voltage.
(c) Sketch and label 2 cycles of the output voltage waveform, ve(t).
Indicate the period, maximum voltage and minimum voltage.
(d) Calculate the average output voltage.
(e) Calculate the average current flowing through the load resistor, R..
Vin(t) (~
Da
Figure 5
D₁
RL
D₂ 2 KQ
Vo(t)
Transcribed Image Text:02. The input voltage, Vin(t) = 25 sin(200mt) V is connected to four germanium diodes with VF = 0.3 V as shown in Figure 5. (a) Briefly explain how the output voltage, vo(t) is obtained during the positive and negative half cycles. (b) Sketch and label 2 cycles of the input voltage waveform, Vin(t). Indicate the period, maximum voltage and minimum voltage. (c) Sketch and label 2 cycles of the output voltage waveform, ve(t). Indicate the period, maximum voltage and minimum voltage. (d) Calculate the average output voltage. (e) Calculate the average current flowing through the load resistor, R.. Vin(t) (~ Da Figure 5 D₁ RL D₂ 2 KQ Vo(t)
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