4.87 O Consider the circuit of Fig. P4.39 with R1 = 10k2. The diodes have turn-on voltages of Vf = R2: 0.6 V. A bipolar square wave of magnitude +10 V and frequency 100 Hz is applied to the input terminals. %3D (a) Determine the smallest voltages Vị and V2 (magni- tudes positive with the polarities shown) that will yield a symmetrical square wave at the output ter- minals. (b) A filter capacitor of value C1 = 220 µF is con- nected to the VOUT terminals. Find the magnitude of the average dc voltage that develops across the capacitor if V1 = V½ = 0.

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4.87 O Consider the circuit of Fig. P4.39 with R1
R2
10k2. The diodes have turn-on voltages of Vf =
0.6 V. A bipolar square wave of magnitude ±10V and
frequency 100 Hz is applied to the input terminals.
(a) Determine the smallest voltages V1 and V2 (magni-
tudes positive with the polarities shown) that will
yield a symmetrical square wave at the output ter-
minals.
(b) A filter capacitor of value C1 = 220 µF is con-
nected to the VOUT terminals. Find the magnitude
of the average dc voltage that develops across the
capacitor if V1 = V½ = 0.
Transcribed Image Text:4.87 O Consider the circuit of Fig. P4.39 with R1 R2 10k2. The diodes have turn-on voltages of Vf = 0.6 V. A bipolar square wave of magnitude ±10V and frequency 100 Hz is applied to the input terminals. (a) Determine the smallest voltages V1 and V2 (magni- tudes positive with the polarities shown) that will yield a symmetrical square wave at the output ter- minals. (b) A filter capacitor of value C1 = 220 µF is con- nected to the VOUT terminals. Find the magnitude of the average dc voltage that develops across the capacitor if V1 = V½ = 0.
ww
Ry
D2
Dv
R2
VOUT
UIN
Fig. P4.39
ww
Transcribed Image Text:ww Ry D2 Dv R2 VOUT UIN Fig. P4.39 ww
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