Employing the characteristic curve in Figure 1 and obtain the design for a voltage divider configuration that has a Q point of ICQ = 5 mA and VCEQ = 8 V. Using VCC = 24 V and RC = 3RE. Find the following: a) Draw the configuration indicating each of the elements b) Determine RC and RE c) Find VE
Employing the characteristic curve in Figure 1 and obtain the design for a voltage divider configuration that has a Q point of ICQ = 5 mA and VCEQ = 8 V. Using VCC = 24 V and RC = 3RE. Find the following: a) Draw the configuration indicating each of the elements b) Determine RC and RE c) Find VE
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Employing the characteristic curve in Figure 1 and obtain the design for a voltage divider configuration that has a Q point of ICQ = 5 mA and VCEQ = 8 V. Using VCC = 24 V and RC = 3RE. Find the following:
a) Draw the configuration indicating each of the elements
b) Determine RC and RE
c) Find VE
d) Determine VB
e) Calculate ? for point Q f) Find R2 if R1 = 24 kΩ
![Ic (mA)
110 µA
100 HA
90 µA
10
80 µA
70 µA
60 µA
50 μΑ
140 μΑ
30 μΑ.
4
20 µA
3
2
10 μΑ
Ig =0 µA
15
20
30
VCE (V)
10
25](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F7f29b30d-6f87-4c42-a936-992dafcf9c79%2Fa87a5300-0fdf-45e9-a853-7784c02d3481%2F8k79qaq_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Ic (mA)
110 µA
100 HA
90 µA
10
80 µA
70 µA
60 µA
50 μΑ
140 μΑ
30 μΑ.
4
20 µA
3
2
10 μΑ
Ig =0 µA
15
20
30
VCE (V)
10
25
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