Problem 2. (10 points) Determine the input operating point from the given input and output characteristics of a BJT, when Icq = 6 mA and VCEq = 10V. Also, Explain why this Q point is ideal. ig (A) 25 25 20 20 15 10 S 00 0.2 iB = VBE 0.4 ic (mA) Note the i, current labels are above their line 12 10 8 6 4 00 2 0.6 VBE (V) 0.8 1.0 (a) Input 4 iB = 25 μА 20 ΜΑ 15 ΜΑ 10 ΜΑ 5 μA VCE (V) 12 16 20 (b) Output 8
Problem 2. (10 points) Determine the input operating point from the given input and output characteristics of a BJT, when Icq = 6 mA and VCEq = 10V. Also, Explain why this Q point is ideal. ig (A) 25 25 20 20 15 10 S 00 0.2 iB = VBE 0.4 ic (mA) Note the i, current labels are above their line 12 10 8 6 4 00 2 0.6 VBE (V) 0.8 1.0 (a) Input 4 iB = 25 μА 20 ΜΑ 15 ΜΑ 10 ΜΑ 5 μA VCE (V) 12 16 20 (b) Output 8
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Transcribed Image Text:Problem 2. (10 points) Determine the input operating point from the given input and output characteristics
of a BJT, when Icq = 6 mA and VCEq = 10V. Also, Explain why this Q point is ideal.
ig (A)
25
25
20
20
15
10
S
00
0.2
iB =
VBE
0.4
ic (mA)
Note the i, current labels are above their line
12
10
8
6
4
00
2
0.6
VBE (V)
0.8
1.0
(a) Input
4
iB = 25 μА
20 ΜΑ
15 ΜΑ
10 ΜΑ
5 μA
VCE (V)
12
16
20
(b) Output
8
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