A common emitter BJT circuit is designed as shown in Fig. 4(a). The output load line and defined Q-point of the circuit are shown in Fig. Determine the required values of Vcc, Rc and RB. Assume that VBE (on)3D0.7 .V +Vcc 12 1c(mA) 10 RC -Ig3 30 µA 1e2 20 µA In = 10 µA 8 Opoint RB VCE ww VBE 4 2 Vez (V) = 10 V 10 15 20 25

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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A common emitter BJT circuit is
designed as shown in Fig. 4(a). The
output load line and defined Q-point
of the circuit are shown in Fig.
Determine the required values of Vcc,
Rc and RB. Assume that VBE (on)3D0.7
.V
Vcc
12 e(mA)
10
RC
8
le3 = 30 µA
@point
RB
ww
6.
I82 20 µA
Ig1 10 µA
VCE
VBE
VBB
VcE (V)
= 10 V
10
15
20
25
إجابتك
N O
www
Transcribed Image Text:A common emitter BJT circuit is designed as shown in Fig. 4(a). The output load line and defined Q-point of the circuit are shown in Fig. Determine the required values of Vcc, Rc and RB. Assume that VBE (on)3D0.7 .V Vcc 12 e(mA) 10 RC 8 le3 = 30 µA @point RB ww 6. I82 20 µA Ig1 10 µA VCE VBE VBB VcE (V) = 10 V 10 15 20 25 إجابتك N O www
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