5.10 The boost regulator in Figure 5.18a has an input voltage V, 6V. The average out- put voltage V, 12V and average load current I, 0.5 A. The switching frequency is 20 kHz. If L = 250 µ.H and C = 440 µ.F, determine (a) the duty cyclek (b) the ripple current of inductor Al, (c) the peak current of inductor I2, (d) the ripple voltage of filter capacitor AVe, and (e) the critical values of L and C. 4 Dm M1 VD Ve Load Vo Va (a) Circuit diagram

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5.10 The boost regulator in Figure 5.18a has an input voltage V, = 6V. The average out-
put voltage V, = 12 V and average load current I, = 0.5 A. The switching frequency is
20 kHz. If L = 250 µ.H and C = 440 µF, determine (a) the duty cycle k (b) the ripple
current of inductor Al, (c) the peak current of inductor I2, (d) the ripple voltage of
filter capacitor AVe, and (e) the critical values of L and C.
į Dm
L
+
+
M1
VD
Ve
Load Vo, Va
(a) Circuit diagram
Transcribed Image Text:5.10 The boost regulator in Figure 5.18a has an input voltage V, = 6V. The average out- put voltage V, = 12 V and average load current I, = 0.5 A. The switching frequency is 20 kHz. If L = 250 µ.H and C = 440 µF, determine (a) the duty cycle k (b) the ripple current of inductor Al, (c) the peak current of inductor I2, (d) the ripple voltage of filter capacitor AVe, and (e) the critical values of L and C. į Dm L + + M1 VD Ve Load Vo, Va (a) Circuit diagram
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