(a) A 240 Vrms, 50Hz is supplied to a circuit shown in Figure 3. It is estimated that the diode will be turn on at 55° at each cycle. With R = 270 2 and C = 220 µF, determine: i) ii) iii) the peak-to-peak ripple voltage, AV₁ = the angle when the diode is turned off, 0 = the output voltage, Vė = C = iv) the value of the capacitor if the ripple voltage is reducing to half of the peak input voltage rad UF

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(a) A 240 Vrms, 50Hz is supplied to a circuit shown in Figure 3. It is estimated that
the diode will be turn on at 55° at each cycle. With R = 270 2 and C = 220 μF,
determine:
i)
ii)
vi)
the peak-to-peak ripple voltage, AV。 =
vii)
the angle when the diode is turned off, 0 =
the output voltage, Vė =
iv)
the value of the capacitor if the ripple voltage is reducing to half of the peak
input voltage
C=
Vmin
v)
the minimum voltage, Vmin as the ripple voltage is reducing to half of the
peak input voltage
=
UF
V
the new angle for the new capacitor, a =
the new peak diode current, Ippeak
Vs=Vm
V
A
sin(ot)
rad
iD
-***
rad
ic
C
R
Vo
Transcribed Image Text:(a) A 240 Vrms, 50Hz is supplied to a circuit shown in Figure 3. It is estimated that the diode will be turn on at 55° at each cycle. With R = 270 2 and C = 220 μF, determine: i) ii) vi) the peak-to-peak ripple voltage, AV。 = vii) the angle when the diode is turned off, 0 = the output voltage, Vė = iv) the value of the capacitor if the ripple voltage is reducing to half of the peak input voltage C= Vmin v) the minimum voltage, Vmin as the ripple voltage is reducing to half of the peak input voltage = UF V the new angle for the new capacitor, a = the new peak diode current, Ippeak Vs=Vm V A sin(ot) rad iD -*** rad ic C R Vo
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