VD=Volt 1.33 13.3 133 0.133 VB= -------Volt 14 1.4 0.7 0.14 1B= -------- А. 12A 0 12 Micro A 12 MA 0 12 Mega A. VE= --------- VE-VB O VE = VD VE=VS ⒸVE = VC 0 0 0 0 00 Q/ For the circuit below. VCC=20 Volt, Bd.c.=83. RC=4K ohm, RS= 3K ohm, R1=500K ohm. Find: oss-8 mA V--y 0 0 0 0 – 0 0 0 0

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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VD= Volt
1.33
13.3
133
0.133
VB= -------Volt
14
1.4
(0.7
О 0.14
IB= -------- А.
12A
( 12 Micro A
( 12 mA.
0 12 Mega A.
0 0 0
о
0 0
0 0 0 0
VE=
Q/ For the circuit below,
VCC-20 Volt, Bd.c.-83, RC=4K
ohm, RS= 3K ohm, R1=500K ohm.
Find:
pss-8 mA
V-4V
0 0 0 0
VE = VB.
VE = VD
VE=VS
VE=VC
m+
Transcribed Image Text:VD= Volt 1.33 13.3 133 0.133 VB= -------Volt 14 1.4 (0.7 О 0.14 IB= -------- А. 12A ( 12 Micro A ( 12 mA. 0 12 Mega A. 0 0 0 о 0 0 0 0 0 0 VE= Q/ For the circuit below, VCC-20 Volt, Bd.c.-83, RC=4K ohm, RS= 3K ohm, R1=500K ohm. Find: pss-8 mA V-4V 0 0 0 0 VE = VB. VE = VD VE=VS VE=VC m+
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