Q1. A discrete-circuit BJT CE amplifier is given below with ß = 100, VBB = 4 V, Rc = 3 kn, RBB = 50 KS2 and VA = 20 V. The amplifier is operating at a room temperature. a. Perform DC analysis to calculate Ic and IB. Find gm and ro. b. c. Draw a small signal equivalent circuit. d. Determine voltage gain vo/v; for this amplifier. Vcc = + 10 V RBB www VBB Rc ovc+%
Q1. A discrete-circuit BJT CE amplifier is given below with ß = 100, VBB = 4 V, Rc = 3 kn, RBB = 50 KS2 and VA = 20 V. The amplifier is operating at a room temperature. a. Perform DC analysis to calculate Ic and IB. Find gm and ro. b. c. Draw a small signal equivalent circuit. d. Determine voltage gain vo/v; for this amplifier. Vcc = + 10 V RBB www VBB Rc ovc+%
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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![Q1. A discrete-circuit BJT CE amplifier is given below with ß = 100, VBB = 4 V, Rc = 3 k2,
RBB = 50 KS2 and VA = 20 V. The amplifier is operating at a room temperature.
a. Perform DC analysis to calculate Ic and IB.
b. Find gm and ro.
c. Draw a small signal equivalent circuit.
d. Determine voltage gain vo/v; for this amplifier.
Vcc = +10 V
21
ⒸHI
RBB
www
BB
+1₁
Re
ovc+%](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9ad5b41a-e0e2-4095-8e57-16b6f4fda9ed%2Fa60f602f-ff71-4b1a-98ba-2d625c19b58a%2Fsirolq9_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Q1. A discrete-circuit BJT CE amplifier is given below with ß = 100, VBB = 4 V, Rc = 3 k2,
RBB = 50 KS2 and VA = 20 V. The amplifier is operating at a room temperature.
a. Perform DC analysis to calculate Ic and IB.
b. Find gm and ro.
c. Draw a small signal equivalent circuit.
d. Determine voltage gain vo/v; for this amplifier.
Vcc = +10 V
21
ⒸHI
RBB
www
BB
+1₁
Re
ovc+%
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