GIven a common-emiter amplifier circuit, witn: VCC = 15 V, Vin = 5 mV, ß = 110 A/A, VT = 25 mV, Is = 10 fA, R1 = 33 kN, R2 = 8.2 kN, RC = 3.3 kN, RE = 1 k, and RL = 1kQ. R1 RC VCC 3.3k Cc2 33k 15V out 10u Cc1 RL 1k in Q1 NPN 10µ V1 R2 RE Cb1 SINE(O 5m 1k) 8.2k 1k 100µ Part 1 - Large-Signal (DC) Analysis: 1) Draw the DC equivalent circuit in your answer sheet; and write the Kircchoff's voltage equations at input circuit and at output circuit. 2) Determine the operating dc base-to-emitter voltage. VBE = -

Introductory Circuit Analysis (13th Edition)
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Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Given a common-emitter amplifier circuit, with:
VCC = 15 V, Vin = 5 mV, ß = 110 A/A, VT = 25 mV, Is = 10 fA,
R1 = 33 kQ, R2 = 8.2 kQ, RC = 3.3 kQ, RE = 1 kQ, and RL = 1kQ.
R1
RC
VCC
33k
3.3k
15V
Cc2
out
10µ
Cc1
RL
in
Q1
1k
NPN
10µ
V1
°R2
RE
Cb1
SINE(0 5m 1k)
8.2k
1k
100µ
Part 1- Large-Signal (DC) Analysis:
(1) Draw the DC equivalent circuit in your answer sheet; and write the Kircchoff's voltage equations at input circuit and at output circuit.
(2) Determine the operating dc base-to-emitter voltage.
VBE =
Transcribed Image Text:Given a common-emitter amplifier circuit, with: VCC = 15 V, Vin = 5 mV, ß = 110 A/A, VT = 25 mV, Is = 10 fA, R1 = 33 kQ, R2 = 8.2 kQ, RC = 3.3 kQ, RE = 1 kQ, and RL = 1kQ. R1 RC VCC 33k 3.3k 15V Cc2 out 10µ Cc1 RL in Q1 1k NPN 10µ V1 °R2 RE Cb1 SINE(0 5m 1k) 8.2k 1k 100µ Part 1- Large-Signal (DC) Analysis: (1) Draw the DC equivalent circuit in your answer sheet; and write the Kircchoff's voltage equations at input circuit and at output circuit. (2) Determine the operating dc base-to-emitter voltage. VBE =
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