VCE (V) Ic (mA) VCE (V) Ic (mA) VCE (V) Ic (mA) (a)IB = 0 μA 0.1 v 0.2 v 0.3 v 0.4 v 0.5 v 0.7 v 1.0 v 3.0 v 5.0 v 000000000 (b)IB = 10 μA 0.3 v 0.4 v 0.5 v 0.7 v 1.0 v 3.0 v 5.0 v 2 2.03 2.03 2.04 2.05 2.07 2.1 (c)IB = 20 μA 0.4 v 3.95 0.1 v 0.2 v 0.92 1.98 0.1 v 0.2 v 2.14 3.05 0.3 v 3.94 0.5 v 3.96 0.7 v 1.0 v 3.97 3.98 4.6 3.0 v 5.0 v 4.13
VCE (V) Ic (mA) VCE (V) Ic (mA) VCE (V) Ic (mA) (a)IB = 0 μA 0.1 v 0.2 v 0.3 v 0.4 v 0.5 v 0.7 v 1.0 v 3.0 v 5.0 v 000000000 (b)IB = 10 μA 0.3 v 0.4 v 0.5 v 0.7 v 1.0 v 3.0 v 5.0 v 2 2.03 2.03 2.04 2.05 2.07 2.1 (c)IB = 20 μA 0.4 v 3.95 0.1 v 0.2 v 0.92 1.98 0.1 v 0.2 v 2.14 3.05 0.3 v 3.94 0.5 v 3.96 0.7 v 1.0 v 3.97 3.98 4.6 3.0 v 5.0 v 4.13
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Question
Plot the output properties on graph paper

Transcribed Image Text:VCE (V)
Ic (mA)
VCE (V)
Ic (mA)
0.1 v
3.91
0.2 v
7.54
0.1 v
0.2 v
4.88 10.76
(d) IB = 40 μA
0.3 v 0.4 v 0.5v
7.84
7.92
7.94
(f)IB = 60 μA
0.4 v
0.5 v
11.73 11.83
0.3 v
11.4
0.7 v 1.0 v 3.0 v 5.0 v
7.97
8.0
8.2
8.4
0.7 v
1.0 v
3.0 v
11.9 12 12.42
5.0 v
12.65

Transcribed Image Text:VCE (V)
Ic (mA)
VCE (V)
Ic (mA)
VCE (V)
Ic (mA)
0.1 v
0
(a)IB = 0 μA
0.2 v 0.3 v 0.4 v 0.5 v 0.7 v 1.0 v 3.0 v
0
0
0
0
0
0
0
(b)IB = 10 μA
0.1 v
0.2 v
0.92 1.98
0.1 v
0.2 v
2.14 3.05
0.3 v
0.4 v 0.5 v
2
2.03
2.03
(c)IB = 20 μA
0.3 v
0.4 v
3.94 3.95
0.7 v
2.04
0.5v
0.7 v
3.96 3.97
1.0 v
2.05
3.0 v
2.07
1.0 v
3.0 v
3.98 4.6
5.0 v
0
5.0 v
2.1
5.0 v
4.13
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