8 7 6 5 4 3 2 1 0 a. For the common-emitter characteristics in the figures shown below, find the dc beta at an operating point of VCE = 6 V and Ic = 2 mA. b. Find the value of a corresponding to this operating point. lc (mA) VCEsat 90 μA 5 80 ΜΑ 70 μA 60 μA 50 μA (Active region) 10 40 με 30 μA ICEO BICBO (a) 20 μ.Α 15 10 με IB=0 μA 20 VCE (V) 100 90 80 70 60 50 40 30 20 10 0 IB (μA) 0.2 0.4 0.6 (b) 0.8 VCE = 1 V VCE = 10 V VCE = 20 V 1.0 VBE (V)

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Author:Robert L. Boylestad
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8
7
6
Mc (mA)
5
4
3
a. For the common-emitter characteristics in the figures shown below, find the dc beta at an
operating point of VCE = 6 V and Ic = 2 mA.
b. Find the value of a corresponding to this operating point.
2
VCEsat
190 μ.Α
5
80 ΜΑ
70 με
60 μA
50 μα
(Active region)
10
40 μ.Α
30 μ.Α
ICEO BICBO
(a)
20 μα
15
10 με
IB = 0 MA
20 VCE (V)
+IB (μA)
100
90
80
70
60
50
40
30
20
10
0
0.2 0.4 0.6
(b)
0.8
VCE=1V
VCE = 10 V
VCE = 20 V
1.0
VBE (V)
Transcribed Image Text:8 7 6 Mc (mA) 5 4 3 a. For the common-emitter characteristics in the figures shown below, find the dc beta at an operating point of VCE = 6 V and Ic = 2 mA. b. Find the value of a corresponding to this operating point. 2 VCEsat 190 μ.Α 5 80 ΜΑ 70 με 60 μA 50 μα (Active region) 10 40 μ.Α 30 μ.Α ICEO BICBO (a) 20 μα 15 10 με IB = 0 MA 20 VCE (V) +IB (μA) 100 90 80 70 60 50 40 30 20 10 0 0.2 0.4 0.6 (b) 0.8 VCE=1V VCE = 10 V VCE = 20 V 1.0 VBE (V)
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