Analog Integrated Circuits for Communication: Principles, Simulation and Design

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Springer Science & Business Media, 4 ott 2007 - 534 pagine

Analog Integrated Circuits for Communication: Principles, Simulation and Design, Second Edition covers the analysis and design of nonlinear analog integrated circuits that form the basis of present-day communication systems. Both bipolar and MOS transistor circuits are analyzed and several numerical examples are used to illustrate the analysis and design techniques developed in this book. Especially unique to this work is the tight coupling between the first-order circuit analysis and circuit simulation results. Extensive use has been made of the public domain circuit simulator Spice, to verify the results of first-order analyses, and for detailed simulations with complex device models.

Highlights of the new edition include:

  • A new introductory chapter that provides a brief review of communication systems, transistor models, and distortion generation and simulation.
  • Addition of new material on MOSFET mixers, compression and intercept points, matching networks.
  • Revisions of text and explanations where necessary to reflect the new organization of the book
  • Spice input files for all the circuit examples that are available to the reader from a website.
  • Problem sets at the end of each chapter to reinforce and apply the subject matter.
  • An instructors solutions manual is available on the book's webpage at

Analog Integrated Circuits for Communication: Principles, Simulation and Design, Second Edition is for readers who have completed an introductory course in analog circuits and are familiar with basic analysis techniques as well as with the operating principles of semiconductor devices. This book also serves as a useful reference for practicing engineers.



1 Review of Communication Systems Transistor Models and Distortion Generation
2 LargeSignal Performance of the Basic Gain Stagesin Analog ICs
3 Amplifier Power Series and Distortion
4 Distortion Generation with Source Resistanceand Nonlinear Beta
5 Distortion in Feedback Amplifiers
6 Basic IC Output Stages
7 Transformers
8 Tuned Circuits in Bandpass Amplifiers
11 Electronic Oscillators with BiasShift Limiting
12 Relaxation and VoltageControlled Oscillators
13 Analog Multipliers Mixers Modulators
14 Demodulators and Detectors
15 PhaseLocked Loops

9 Simple Bandpass Amplifiers
10 Basic Electronic Oscillators

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Pagina 9 - However, for large amplitude signals the output is distorted; a flattening occurs at the negative peak value. The distortion in amplitude results in the output having frequency components that are integer multiples of the input frequency, harmonics, as shown in Figure 1.9.
Pagina 9 - Sinusoidal input signals of two different amplitudes are applied and the output responses corresponding to these inputs are also shown.

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