Given: Single-stage, voltage-divider biased, common-emitter with 1. VCC = 17V 2. R1 = 30kohms 3. R2 = 5kohms 4. RC = 2kohms 5. RE = 1kohms 6. RS = 13ohms 7. RL = 1kohms 8. BDC = BAC = 130 9. ** 10.C, andc, are coupling capacitors. 11.C, is bypass capacitor 12. 13.Solve for: a. VB = Blank 1 V; b. VE = Blank 2 V; c. IE = Blank 3 mA ; d. VCE = Blank 4 V; e. VC = Blank 5 V; f. re' = Blank 6 ohms;
Given: Single-stage, voltage-divider biased, common-emitter with 1. VCC = 17V 2. R1 = 30kohms 3. R2 = 5kohms 4. RC = 2kohms 5. RE = 1kohms 6. RS = 13ohms 7. RL = 1kohms 8. BDC = BAC = 130 9. ** 10.C, andc, are coupling capacitors. 11.C, is bypass capacitor 12. 13.Solve for: a. VB = Blank 1 V; b. VE = Blank 2 V; c. IE = Blank 3 mA ; d. VCE = Blank 4 V; e. VC = Blank 5 V; f. re' = Blank 6 ohms;
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Answer. d,e,f

Transcribed Image Text:Given:
Single-stage, voltage-divider biased, common-emitter with
1. VCC = 17V
2. R1 = 30kohms
3. R2 = 5kohms
4. RC = 2kohms
5. RE = 1kohms
6. RS = 13ohms
7. RL = 1kohms
8. BDC = BAC = 130
9. **
10.C, andc, are coupling capacitors.
11.C, is bypass capacitor
%3D
12.
13.Solve for:
a. VB = Blank 1 V;
b. VE = Blank 2 V;
c. IE = Blank 3 mA;
d. VCE = Blank 4 V;
e. VC = Blank 5 V;
f. re' = Blank 6 ohms;
g. Rin(base) = Blank 7 kohms ;
h. Rin(tot) = Blank 8 kohms ;
i. Voltage gain (Av) = Blank 9;
j. Attenuation (Att) = Blank 10;
k. Overall voltage gain (AVT) = Blank 11;
%3D
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