(b) Figure 5 shows a simple Zener diode clipper circuit, together with the model for each Zener diode. Using the Zener model, carefully sketch the output voltage vout (t) if the input voltage is vin(t) = 7 sin(2π1000t) V. + Vin(t) R 150 Ω K + D₁ Dideal Dideal Vout (t) + D2 VZK 4.7V 0.7 V VD Ab (a) (b) Figure 5: A simple Zener-based clipper (a) and the Zener model (b).

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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(b) Figure 5 shows a simple Zener diode clipper circuit, together with the model for each Zener
diode. Using the Zener model, carefully sketch the output voltage vout (t) if the input voltage
is vin(t) = 7 sin(2π1000t) V.
+
Vin(t)
R
150 Ω
K
+
D₁
Dideal
Dideal
Vout (t)
+
D2
VZK
4.7V 0.7 V
VD
Ab
(a)
(b)
Figure 5: A simple Zener-based clipper (a) and the Zener model (b).
Transcribed Image Text:(b) Figure 5 shows a simple Zener diode clipper circuit, together with the model for each Zener diode. Using the Zener model, carefully sketch the output voltage vout (t) if the input voltage is vin(t) = 7 sin(2π1000t) V. + Vin(t) R 150 Ω K + D₁ Dideal Dideal Vout (t) + D2 VZK 4.7V 0.7 V VD Ab (a) (b) Figure 5: A simple Zener-based clipper (a) and the Zener model (b).
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