:- Consider the circuit shown in Figure 1. ß-120 a) Find Rc such that VCEQ=2.8 V b) Determine the midband gain c) Determine Cc and CE such that the corner frequency associated with CE is fÊ=10 Hz and the corner frequency associated with Cc is fc-50 Hz. d) Determine fHi and fío. e) What is the gain-bandwidth product? Vcc=+4V R₁ = 10 kQ wwwwwww ¹Q= 0.4 mA Rc VEE -4V 8= :CE www Cwi Cwo Vo = = 8 pF 10 pF R₁ = 20 kQ Figure 1 Cbc = 20 pF Che = 30 pF Cce = 12 pF

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1:- Consider the circuit shown in Figure1. ß=120
a) Find Rc such that VCEQ-2.8 V
b) Determine the midband gain
c) Determine Cc and CE such that the corner frequency associated with CE is f-10 Hz and the
corner frequency associated with Cc is fc-50 Hz.
d) Determine fHi and fío.
e) What is the gain-bandwidth product?
R₁ =
10 kQ
Vcc=+4V
lo=
0.4 mA
Rc
VEE=-4V
Сс
HF
CE
CW₂
CWo
=
=
8 pF
10 pF
R₁ = 20 kQ
Figure 1
Cbc = 20 pF
Che =
Cre
=
30 pF
12 pF
Transcribed Image Text:1:- Consider the circuit shown in Figure1. ß=120 a) Find Rc such that VCEQ-2.8 V b) Determine the midband gain c) Determine Cc and CE such that the corner frequency associated with CE is f-10 Hz and the corner frequency associated with Cc is fc-50 Hz. d) Determine fHi and fío. e) What is the gain-bandwidth product? R₁ = 10 kQ Vcc=+4V lo= 0.4 mA Rc VEE=-4V Сс HF CE CW₂ CWo = = 8 pF 10 pF R₁ = 20 kQ Figure 1 Cbc = 20 pF Che = Cre = 30 pF 12 pF
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