Shape Fill Тext Box Quick Z Shape Outl Convert to Picture Shapes Arrange BIUab x x, AV v Aa v SmartArt Styles Circuit Type of Transistor: npn Bipolar Junction Transistor Input (v,): Terminal Base Output (v.): Terminal Collector Type of Amplifier Configuration: Common-Emitter Amplifier B Vcc RC Circuit Parameters Transistor Parameters vo Rs Vcc = 10 V Rc = 2 k2 B = 100 VBE(ON) = 0.7 V VT = 26 mV Cc RE = 0.4 k2 RE Rs = 0.5 k2 VA = 00 R1 = 56 k2 R2 = 12.2 k2 Accessibility: Investigate ww wwH

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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v A A A
而<一HH | m<| == v
Century Gothic
20
Shape Fill v
IUeb
X, AV v Aa v
|川| W<母
Convert to
SmartArt
Picture Shapes
Text
Box
Arrange
Quick
Styles
Shape Outlin
Circuit
Type of Transistor: npn Bipolar Junction Transistor
Input (v,): Terminal Base
Output (v.): Terminal Collector
B
Type of Amplifier Configuration: Common-Emitter
Amplifier
VcC
RC
Circuit Parameters
Transistor Parameters
Rs
www
Vcc = 10 V
Rc = 2 k2
RE = 0.4 k2
B = 100
VBE(ON) = 0.7 V
VT = 26 mV
VA = 00
HH
%3D
Cc
Rs = 0.5 k2
RE
R1 = 56 k2
R2 = 12.2 k2
Accessibility: Investigate
Netes
ww
wwH
Transcribed Image Text:nsitions Animations Slide Show Review View Tell me É Share v A A A 而<一HH | m<| == v Century Gothic 20 Shape Fill v IUeb X, AV v Aa v |川| W<母 Convert to SmartArt Picture Shapes Text Box Arrange Quick Styles Shape Outlin Circuit Type of Transistor: npn Bipolar Junction Transistor Input (v,): Terminal Base Output (v.): Terminal Collector B Type of Amplifier Configuration: Common-Emitter Amplifier VcC RC Circuit Parameters Transistor Parameters Rs www Vcc = 10 V Rc = 2 k2 RE = 0.4 k2 B = 100 VBE(ON) = 0.7 V VT = 26 mV VA = 00 HH %3D Cc Rs = 0.5 k2 RE R1 = 56 k2 R2 = 12.2 k2 Accessibility: Investigate Netes ww wwH
By stating and applying electrical circuit theory/law/principle:
2. Derive and Determine the Quiescent-Point (Q-Point) large-signal (DC)
parameters.
4. Derive and Determine the small-signal (ac) parameters.
5. If vs = 100 mVp-p, sketch the input and output waveforms of the Amplifier
Circuit B.
%3D
Thevenin Resistance, RTH = ?
Thevenin Voltage, VTH = ?
Q-Point Base Current, IBQ = ?
Q-Point Collector Current, Ica = ?
Q-Point Emitter Current, leQ = ?
Q-Point Collector-Emitter, VCEQ = ?
Base-Emitter Input Resistance / Diffusion Resistance, Im = ?
Small-Signal Transistor Output Resistance, ro = ?
Transconductance, gm = ?
Input Resistance to the Base, Rib = ?
Amplifier Input Resistance, Ri = ?
Small-Signal Mid-Band Voltage Gain, Av = ?
Transcribed Image Text:By stating and applying electrical circuit theory/law/principle: 2. Derive and Determine the Quiescent-Point (Q-Point) large-signal (DC) parameters. 4. Derive and Determine the small-signal (ac) parameters. 5. If vs = 100 mVp-p, sketch the input and output waveforms of the Amplifier Circuit B. %3D Thevenin Resistance, RTH = ? Thevenin Voltage, VTH = ? Q-Point Base Current, IBQ = ? Q-Point Collector Current, Ica = ? Q-Point Emitter Current, leQ = ? Q-Point Collector-Emitter, VCEQ = ? Base-Emitter Input Resistance / Diffusion Resistance, Im = ? Small-Signal Transistor Output Resistance, ro = ? Transconductance, gm = ? Input Resistance to the Base, Rib = ? Amplifier Input Resistance, Ri = ? Small-Signal Mid-Band Voltage Gain, Av = ?
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