3. Given the BJT amplifier circuit shown VEE-6V Vcc=-20V RE 2.2 k2 RC 4.7 kN B=100 Is 4.7 µF R, 4.7 µF Veb=0.7V Vo 0.1 kN RL 5.6 k2 Vs Ri' Ri Ro Ro' Assume: hfe-ß and hoe is approximate y zero. (a) Determine IC and VCE- (b) Determine hie. (c) Determine the equivalent resistances Ri Ri', Ro, and Ro'. (d) Determine the current gain Ais=lo/ls. (e) Determine the voltage gain Avs=Vo/Vs.

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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3. Given the BJT amplifier circuit shown
VEE-6V
Vcc=-20V
RE
2.2 k2
RC
4.7 kN
B=100
Is
4.7 µF
R,
4.7 µF
Vo
Veb=0.7V
Io
0.1 kN
Vs(
RL
5.6 k2
Ro
Ro'
Ri'
Ri
Assume: hfe-ß and hoe is approximately zero.
(a) Determine IC and VCE-
(b) Determine hie.
(c) Determine the equivalent resistances Ri Ri', Ro, and Ro'.
(d) Determine the current gain Ais=lo/ls.
(e) Determine the voltage gain Avs=Vo/Vs.
Transcribed Image Text:3. Given the BJT amplifier circuit shown VEE-6V Vcc=-20V RE 2.2 k2 RC 4.7 kN B=100 Is 4.7 µF R, 4.7 µF Vo Veb=0.7V Io 0.1 kN Vs( RL 5.6 k2 Ro Ro' Ri' Ri Assume: hfe-ß and hoe is approximately zero. (a) Determine IC and VCE- (b) Determine hie. (c) Determine the equivalent resistances Ri Ri', Ro, and Ro'. (d) Determine the current gain Ais=lo/ls. (e) Determine the voltage gain Avs=Vo/Vs.
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