2. a. For the common-emitter characteristics of figure 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. C. At VcE = 6 V, find the corresponding value of ICEO - d. Calculate the approximate value of ICRO using the dc beta value obtained in part (a). tlc (mA) 90 µA 80 uA 7 VCE = 1 V VCE = 10 V 70 μΑ 6. 60 μΑ 100 50 µA VCE = 20 V 90 aturation region) 5 40 μΑ 80 70 30 μΑ 60 50 (Active region) 20 µA 40 2 30 10 µA 20 10- Ig = 0 µA 20 VCE (V) 0.2 0.4 0.6 0.8 1.0 VRE (V) 10 15 (Cutoff region) ICEO = BICBO

Introductory Circuit Analysis (13th Edition)
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2. a. For the common-emitter characteristics of figure below , find the dc beta at an operating point of
VCE = 6 V and lc = 2 mA.
b. Find the value of a corresponding to this operating point.
c. At Vce = 6 V , find the corresponding value of IcEo ·
d. Calculate the approximate value of ICBO using the dc beta value obtained in part (a).
tle (mA)
90μΑ
80 μΑ
7
Is (HA)
VCE = 1 V
VCE = 10 V
70 μΑ
6.
60 µA
100
50 µA
VCE = 20 V
90
(Saturation region) 5
40 μΑ
80
70
30 µA
60
50
(Active region)
20 µA
40
2
30
10 µA
20
10
Ig = 0 µA
20 VCE (V)
1.0
0.2 0.4 0.6 0.8
VRE (V)
5
10
15
(Čutoff region)
ICEO=B !cBO
(b)
(a)
Transcribed Image Text:2. a. For the common-emitter characteristics of figure below , find the dc beta at an operating point of VCE = 6 V and lc = 2 mA. b. Find the value of a corresponding to this operating point. c. At Vce = 6 V , find the corresponding value of IcEo · d. Calculate the approximate value of ICBO using the dc beta value obtained in part (a). tle (mA) 90μΑ 80 μΑ 7 Is (HA) VCE = 1 V VCE = 10 V 70 μΑ 6. 60 µA 100 50 µA VCE = 20 V 90 (Saturation region) 5 40 μΑ 80 70 30 µA 60 50 (Active region) 20 µA 40 2 30 10 µA 20 10 Ig = 0 µA 20 VCE (V) 1.0 0.2 0.4 0.6 0.8 VRE (V) 5 10 15 (Čutoff region) ICEO=B !cBO (b) (a)
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