Q.1 For the circuit shown, calculate CMi and C3 that required to obtain 177HZ lower critical frequency. Vcc +9 V BDc = Bac = 125 Che=25 pF Che=10 pF Re 220 2 C3 V R 12 kf RL 680 ER, 50 Ω R2 34.7 k RE 100 2 C2 10 uF Vin
Q.1 For the circuit shown, calculate CMi and C3 that required to obtain 177HZ lower critical frequency. Vcc +9 V BDc = Bac = 125 Che=25 pF Che=10 pF Re 220 2 C3 V R 12 kf RL 680 ER, 50 Ω R2 34.7 k RE 100 2 C2 10 uF Vin
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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![Q.1 For the circuit shown, calculate CMi and C3 that required to obtain 177HZ lower critical
frequency.
Vcc
+9 V
BDc = Bac = 125
Che= 25 pF
Che = 10 pF
Rc
220 2
C3
Vout
R1
12 kf
RL
R,
50 N
680
TµF
Vin
R2
4.7 kf.
RE
100 2
C2
10 µF](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F30bf53c8-d146-493c-95c3-70a6adc34b1e%2F0e79426d-a9bc-4d5c-a5fb-f7417a7df83c%2Fymn2k9w_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Q.1 For the circuit shown, calculate CMi and C3 that required to obtain 177HZ lower critical
frequency.
Vcc
+9 V
BDc = Bac = 125
Che= 25 pF
Che = 10 pF
Rc
220 2
C3
Vout
R1
12 kf
RL
R,
50 N
680
TµF
Vin
R2
4.7 kf.
RE
100 2
C2
10 µF
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