Principles of Analog Electronics 1st Saggio Solution Manual

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  • ISBN-10 ‏ : ‎ 9781466582019
  • ISBN-13 ‏ : ‎ 978-1466582019
  • Author: Giovanni Saggio

Build from the Essentials of Math, Physics, and Chemistry to Electronic Components, Circuits, and Applications

Building a solid foundation, the book first explains the mathematics, physics, and chemistry that are essential for grasping the principles behind the operation of electronic devices. It then examines the theory of circuits through models and important theorems. The book describes and analyzes passive and active electronic devices, focusing on fundamental filters and common silicon-based components, including diodes, bipolar junction transistors, and metal–oxide–semiconductor field-effect transistors (MOSFETs). It also shows how semiconductor devices are used to design electronic circuits such as rectifiers, power suppliers, clamper and clipper circuits, and amplifiers. A chapter explores actual applications, from audio amplifiers and FM radios to battery chargers.

Table Of Contents:

Mathematical Tools
Multiples and Submultiples
Periodic Waveforms
Complex Numbers
Phase Vector (or Phasor)
Laplace Transform
Taylor Series
Fourier Series and Integral
Modulation
Key Points, Jargon and Terms
Exercises

Physical and Electrical Background
Force, Work, Energy, Power
Heat and Temperature
Electric Charge
Coulomb Force
Electric Field
Electric Induction
Electric Current
Electric Voltage
Electron Mobility
Electric Energy and Power
Conventional Notations
Magnetic Field
Magnetic Induction
Undulatory Phenomena
Key Points, Jargon and Terms
Exercises

Nature of Matter
Atomic Model
Lattice
Wave-Particle Duality
Electromagnetic Radiation
Energy Band Theory
Conductors
Insulators
Semicondutors
Electrical Resistance and Joule Heating
Temperature Coefficient
Key Points, Jargon and Terms

Two-Terminal Components
Definitions
Conventional Notations
Topology of Interconnections
Resistors
Electrical Sources
Capacitors
Inductors
Capacitor-Inductor Duality
Complex Power
Summing-Up of Constitutive Relations
Key Points, Jargon and Terms
Exercises

Two-Port Networks
Definitions
Transformers
Dependent Sources
Models of Two-Port Networks
Interconnections of Two-Port Networks
Key Points, Jargon and Terms
Exercises

Circuit Theorems
Definitions
Kirchhoff’s Laws
Thévenin’s Theorem
Norton’s Theorem
Superposition Theorem
Miller’s Theorem
Miller’s Dual Theorem
Substitution Theorem
Impedance Matching and Bridging
Who Decides What
Key Points, Jargon and Terms
Exercises

Frequency Domain
Introduction
Resistance, Reactance, Impedance
Electronic Filters
Sources of Phase Shift
RC Integrator
Key Points, Jargon and Terms
Exercises

Semiconductor Components
Doping of Semiconductors
Charge Carriers
Current in Semiconductors
P-N Junction
Diode
BJT
MOSFET
BJT Vs. MOSFET
Numbering and Coding Schemes
Key Points, Jargon and Terms
Exercises

Diode Circuits
Rectifiers
DC Power Supply
Voltage Doubler Circuits
Clamper Circuits
Clipper Circuits
Key Points, Jargon and Terms
Exercises

Amplifiers: Intro
Introduction
Key Parameters
Types of Amplifier
Loading Effect and Driving Parameters
Key Points, Jargon and Terms
Exercises

Amplifiers: Basic BJT Configurations
Conventional Notations
Step-by-Step First Design
BJT as a Signal Amplifier
C.E. Configuration
Swamped C.E.
C.C. Configuration (Emitter Follower)
C.B. Configuration
C.E., C.B., C.C. Comparisons
BJT’s Simplified Hybrid Model
Bias Stability
Key Points, Jargon and Terms
Exercises

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