2. An adaptor is designed to convert the AC 600-V(rms), 60-Hz input signal to a nearly DC output of 48 V (the maximum output voltage, have to consider VD,on of 0.8 V). Assuming the constant-voltage diode model is used for the rectifier design. (a) If a half-wave rectifier is used, determine the term ratio N of the transformer. (b) Determine the smoothing capacitor for the filter to have the ripple smaller than 0.3 V, if the load resistor is 2 kohm. Also, plot the output waveform as a function of time. (c) Repeat (a) and (b) if a full-wave rectifier is used in the design. N:1 ac line 600 V (rms) 60 Hz + Vs Diode rectifier Filter O + VOUT

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2. An adaptor is designed to convert the AC 600-V(rms), 60-Hz input signal to a nearly
DC output of 48 V (the maximum output voltage, have to consider VD,on of 0.8 V).
Assuming the constant-voltage diode model is used for the rectifier design.
(a) If a half-wave rectifier is used, determine the term ratio N of the transformer.
(b) Determine the smoothing capacitor for the filter to have the ripple smaller than 0.3
V, if the load resistor is 2 kohm. Also, plot the output waveform as a function of
time.
(c) Repeat (a) and (b) if a full-wave rectifier is used in the design.
N:1
ac line
600 V (rms)
60 Hz
O
Vs
Diode
rectifier
Filter
O +
VOUT
Transcribed Image Text:2. An adaptor is designed to convert the AC 600-V(rms), 60-Hz input signal to a nearly DC output of 48 V (the maximum output voltage, have to consider VD,on of 0.8 V). Assuming the constant-voltage diode model is used for the rectifier design. (a) If a half-wave rectifier is used, determine the term ratio N of the transformer. (b) Determine the smoothing capacitor for the filter to have the ripple smaller than 0.3 V, if the load resistor is 2 kohm. Also, plot the output waveform as a function of time. (c) Repeat (a) and (b) if a full-wave rectifier is used in the design. N:1 ac line 600 V (rms) 60 Hz O Vs Diode rectifier Filter O + VOUT
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