1) For the circuit in Figure 1, calculate the following with the exact analysis. (Make the solutions for silicon transistors) nd t +Vcc = 20 V al d RC oS10 knnabinota RB1 75 k2 a) Find VB, Vc, Ve, VBE, VCE, VBC for B = 80 VB B = 80 b) For B = 80 and ß =160 , compare the VCE and Ic in a table, show the rate of change with percentages (%). Explain the reason for this result. VE RB2 10 k2 RE 1.2 k2 Figure 1

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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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For the circuit in Figure 1, calculate the following with the exact analysis.

1)
For the circuit in Figure 1, calculate the following
with the exact analysis. (Make the solutions for
silicon transistors)
hdt +Vcc = 20 V
RC
75 k2
-Vc
a) Find VB, Vc, VE, VBE, VCE, VBC for B = 80
VB
B = 80
b) For ß = 80 and ß =160 , compare the VCE and Ic
in a table, show the rate of change with
percentages (%). Explain the reason for this
result.
RB2
VE
10 ΚΩ
RE
$1.2 k2
Figure 1
Transcribed Image Text:1) For the circuit in Figure 1, calculate the following with the exact analysis. (Make the solutions for silicon transistors) hdt +Vcc = 20 V RC 75 k2 -Vc a) Find VB, Vc, VE, VBE, VCE, VBC for B = 80 VB B = 80 b) For ß = 80 and ß =160 , compare the VCE and Ic in a table, show the rate of change with percentages (%). Explain the reason for this result. RB2 VE 10 ΚΩ RE $1.2 k2 Figure 1
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