a) Using the hybrid-pi model with early voltage effect, compute the small signal voltage gain, Av, input resistance and output resistance for the CE BJT amplifier shown below. Vec= 12 V B=100 Vaniaw) =0.7V V=100V R, = 93.7k ; R=6 kQ R=0.5 k2 C, B E R,= 6.3 ko Figure Q1(a)
a) Using the hybrid-pi model with early voltage effect, compute the small signal voltage gain, Av, input resistance and output resistance for the CE BJT amplifier shown below. Vec= 12 V B=100 Vaniaw) =0.7V V=100V R, = 93.7k ; R=6 kQ R=0.5 k2 C, B E R,= 6.3 ko Figure Q1(a)
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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![Q1.
(a)
Using the hybrid-pi model with early voltage effect, compute the small signal
voltage gain, Av, input resistance and output resistance for the CE BJT amplifier
shown below.
Vec = 12 V
B=100
VRELON) = 0.7V
V = 100V R, = 93.7k2 3
R=6 kN
Rg=0.5 k2 C,
E
R2= 6.3 k
Figure Q1(a)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F4fa8485f-fe36-4cce-8125-9595a61c96dc%2F5531a2c4-f40a-4455-b819-228e8255bb59%2Fd7eklrn_processed.png&w=3840&q=75)
Transcribed Image Text:Q1.
(a)
Using the hybrid-pi model with early voltage effect, compute the small signal
voltage gain, Av, input resistance and output resistance for the CE BJT amplifier
shown below.
Vec = 12 V
B=100
VRELON) = 0.7V
V = 100V R, = 93.7k2 3
R=6 kN
Rg=0.5 k2 C,
E
R2= 6.3 k
Figure Q1(a)
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