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Designing Dynamic Circuit Response Analog Circuit Design Volume 2 2nd Edition Dennis Feucht

  • SKU: BELL-4322336
Designing Dynamic Circuit Response Analog Circuit Design Volume 2 2nd Edition Dennis Feucht
$ 35.00 $ 45.00 (-22%)

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Designing Dynamic Circuit Response Analog Circuit Design Volume 2 2nd Edition Dennis Feucht instant download after payment.

Publisher: SciTech Publishing
File Extension: PDF
File size: 1.78 MB
Pages: 215
Author: Dennis Feucht
ISBN: 9781613530610, 9781891121838, 1613530617, 1891121839
Language: English
Year: 2010
Edition: 2
Volume: 2

Product desciption

Designing Dynamic Circuit Response Analog Circuit Design Volume 2 2nd Edition Dennis Feucht by Dennis Feucht 9781613530610, 9781891121838, 1613530617, 1891121839 instant download after payment.

This second volume, for engineers and students, builds upon the first volume by extending coverage to include reactances and their time- and frequency-related behavioral consequences. Retaining a design-oriented analysis, this volume begins with circuit fundamentals involving capacitance and inductance and lays down the approach using s-domain analysis. Additional concepts and perspectives fill in the blanks left by textbooks in regards to circuit design. It simplifies dynamic circuit analysis by using the graphical methods of reactance plots. Methods of compensating amplifiers, including feedback amplifiers, are kept as simple as possible using reactance plots and s-domain transfer functions that mainly require algebraic skill.
Contents
Chapter 1 Transient and Frequency Response 1
Reactive Circuit Elements 1
First-Order Time-Domain Transient Response 4
Complex Poles and the Complex Frequency Domain 7
Second-Order Time-Domain Response: RLC Circuit 10
Forced Response and Transfer Functions in the s-Domain 16
The Laplace Transform 20
Time-Domain Response to a Unit Step Function 29
Circuit Characterization in the Time Domain 37
The s-Plane Frequency Response of Transfer Functions 41
Graphical Representation of Frequency Response 43
Loci of Quadratic Poles 50
Optimization of Time-Domain and Frequency-Domain Response 53
Reactance Chart Transfer Functions of Passive Circuits 61
Closure 73
Chapter 2 Dynamic Response Compensation 75
Passive Compensation: Voltage Divider 75
Op-Amp Transfer Functions from Reactance Charts 78
Feedback Circuit Response Representation 84
Feedback Circuit Stability 91
Compensation Techniques 100
Compensator Design: Compensating with Zeros in H 105
Compensator Design: Reducing Static Loop Gain 118
Compensator Design: Pole Separation and Parameter Variation 120
Two-Pole Compensation 133
Output Load Isolation 150
Complex Pole Compensation 159
Compensation by the Direct (Truxal’s) Method 162
Power Supply Bypassing 163
Chapter 3 High-Frequency Impedance Transformations 167
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