For the transistor circuit shown below, what is the value of the VCE? Vi RB1 39 ΚΩ C₁ DE 10 uF Vcc = +18 V 1B Rc lc C 3.3 k B + + V CE C₂ HE 10 μF Vo B = 120

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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Question 1
For the transistor circuit shown below, what is the value of the VCE?
Vi
Vi
(A) 30.234 μA
B) 30.303 μA
(C) 29.176 μA
(D) 32.947 μA
RB2
8,2 ΚΩ
A) 8.176 V
B 8.075 V
C) 8.067 V
(D) 8.149 V
Question 2
For the transistor circuit shown below, what is the value of the emitter current?
Vcc = +18V
Rc
2.7 ΚΩ
RB
470 ΚΩ
10 μF
F
C₁
C₁
DE
10 μF
RB1
39 ΚΩ
RB
470 ΚΩ
10 μF
Vi HE
G₁
Vcc= +18 V
Rc
3.3 k
B
B
C
B
b
+
VBE E
A) 3.054 mA
B) 2.942 MA
c) 2.954 mA
(D) 2.67 MA
Question 3
For the transistor circuit shown below, what is the value of the base current?
Vcc=+18V
IB
B
Rc-
2.7 ΚΩ S
C
L
B b
+
VBE E
+
VCE
RE
30.68 ΚΩ
+
V BE
+
10 μF
G₂
10 μF
HE
G₂
VCE
> RE
0.68 kn
C
E
CE
40 μF
Vo
B = 80
lc
CE
40 μF
+
V CE
RE
C₂
HE
10 μF
1 ΚΩ
Vo
B = 80
Vo
B = 120
В
CE
50 μF
H1₁
www
...
Transcribed Image Text:Question 1 For the transistor circuit shown below, what is the value of the VCE? Vi Vi (A) 30.234 μA B) 30.303 μA (C) 29.176 μA (D) 32.947 μA RB2 8,2 ΚΩ A) 8.176 V B 8.075 V C) 8.067 V (D) 8.149 V Question 2 For the transistor circuit shown below, what is the value of the emitter current? Vcc = +18V Rc 2.7 ΚΩ RB 470 ΚΩ 10 μF F C₁ C₁ DE 10 μF RB1 39 ΚΩ RB 470 ΚΩ 10 μF Vi HE G₁ Vcc= +18 V Rc 3.3 k B B C B b + VBE E A) 3.054 mA B) 2.942 MA c) 2.954 mA (D) 2.67 MA Question 3 For the transistor circuit shown below, what is the value of the base current? Vcc=+18V IB B Rc- 2.7 ΚΩ S C L B b + VBE E + VCE RE 30.68 ΚΩ + V BE + 10 μF G₂ 10 μF HE G₂ VCE > RE 0.68 kn C E CE 40 μF Vo B = 80 lc CE 40 μF + V CE RE C₂ HE 10 μF 1 ΚΩ Vo B = 80 Vo B = 120 В CE 50 μF H1₁ www ...
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