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Author: Robert L. Boylestad
Publisher: PEARSON
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![Table 1
Re
IB = 50 µA
IB = 150 µA
IB = 100 µA
VCE (V) Ic (mA) | VCE (V) | Ic (mA) | VCE (V) Ic (mA)
0.
mA
120 0
R.
HA
56 KO
11.2
22.5
30.9
11.7
4
25.0
4
36.4
6.
12.3
6.
26.9
6.
39.6
8
13.1
8.
28.8
8
42.8
14.1
Figure 1
10
10
31.0
10
45.0
1- Find the hfe (Bac) of the transistor at IB = 100 µA and VCE = 6 V from the plotted output characteristics.
2- Use the plotted characteristic curves to determine the DC current gain Bdc for the transistor at VCE = 6 V
%3D
924](https://content.bartleby.com/qna-images/question/ffbd675c-02d6-4a58-a231-b7f03d5226c0/ac154674-af5f-45fd-bd2d-9f0c30312d4e/4nst12p_thumbnail.jpeg)
Transcribed Image Text:Table 1
Re
IB = 50 µA
IB = 150 µA
IB = 100 µA
VCE (V) Ic (mA) | VCE (V) | Ic (mA) | VCE (V) Ic (mA)
0.
mA
120 0
R.
HA
56 KO
11.2
22.5
30.9
11.7
4
25.0
4
36.4
6.
12.3
6.
26.9
6.
39.6
8
13.1
8.
28.8
8
42.8
14.1
Figure 1
10
10
31.0
10
45.0
1- Find the hfe (Bac) of the transistor at IB = 100 µA and VCE = 6 V from the plotted output characteristics.
2- Use the plotted characteristic curves to determine the DC current gain Bdc for the transistor at VCE = 6 V
%3D
924
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