c) Using = 150, VBE = 0.7V, ro= co find Q operating point employing DC analysis, find re, Zi, Zo, Av employing small-signal AC analysis. (you need your own calculations) .Compare your results with the results of the b part. Vcc Vs(t) = 0.001sin(2πft) f = 10kHz R₁ = 56kQ R₂ = 8.2kQ Rc = 6.2kQ RE= 1.2kQ C₁ = 10μF C₂ = 20 μF C3 = 20 µF Vcc = 20V Vs Rg=0 C₁ S R₁ R₂ RE Re C₂ C3 + Vo £

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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c) Using B = 150, VBE = 0.7V, ro = ∞o find Q operating point employing DC analysis, find re, Zi, Zo, Av employing
small-signal AC analysis. (you need your own calculations) .Compare your results with the results of the b part.
Vcc
Vs(t) = 0.001sin(2πft)
f = 10kHz
R₁ = 56kΩ
R₂ = 8.2kΩ
= 6.2kΩ
Rc
RE
= 1.2kQ
C₁ = 10μF
C₂ = 20μF
C3 = 20μF
Vcc = 20V
V₂
R$=0
C₁
R₁
R₂
RE
Re
C₂
C3
+
Vo
Transcribed Image Text:c) Using B = 150, VBE = 0.7V, ro = ∞o find Q operating point employing DC analysis, find re, Zi, Zo, Av employing small-signal AC analysis. (you need your own calculations) .Compare your results with the results of the b part. Vcc Vs(t) = 0.001sin(2πft) f = 10kHz R₁ = 56kΩ R₂ = 8.2kΩ = 6.2kΩ Rc RE = 1.2kQ C₁ = 10μF C₂ = 20μF C3 = 20μF Vcc = 20V V₂ R$=0 C₁ R₁ R₂ RE Re C₂ C3 + Vo
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