Q5) Find the average power dissipation for the circuit shown below. where ẞ= 40 if needed VINA O- VINB O- Voc = 5 V R50 Q RB 2.8 k Rc 900 Ω K QP2 REP 3.3 ΚΩ DCA DCB RBD Transistor ww RCD 250 Ω 500 Ω Q₁ VOH VOUT VOL On hard Cutoff Edge of conduction QP2 Edge of conduction QD Cutoff Qo Cutoff Reverse On hard Forward active Cutoff On hard On hard
Q5) Find the average power dissipation for the circuit shown below. where ẞ= 40 if needed VINA O- VINB O- Voc = 5 V R50 Q RB 2.8 k Rc 900 Ω K QP2 REP 3.3 ΚΩ DCA DCB RBD Transistor ww RCD 250 Ω 500 Ω Q₁ VOH VOUT VOL On hard Cutoff Edge of conduction QP2 Edge of conduction QD Cutoff Qo Cutoff Reverse On hard Forward active Cutoff On hard On hard
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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
Transcribed Image Text:Q5) Find the average power dissipation for the circuit shown below. where ẞ= 40 if needed
VINA O-
VINB O-
Voc = 5 V
R50 Q
RB 2.8 k
Rc
900 Ω
K
QP2
REP
3.3 ΚΩ
DCA DCB
RBD
Transistor
ww
RCD
250 Ω
500 Ω
Q₁
VOH
VOUT
VOL
On hard
Cutoff
Edge of conduction
QP2
Edge of conduction
QD
Cutoff
Qo
Cutoff
Reverse
On hard
Forward active
Cutoff
On hard
On hard
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