Crystal Oscillator Design and Temperature Compensation

by M. E. Ferking

Table of Contents

Front Matter

Forward

Acknowledgments

List of Symbols

Contents

Introduction

Basic Oscillator Theory

Methods of Design

Oscillator Frequency Stability

Quartz Crystal Resonators

Discussion of Transistors

Oscillator Circuits

Preproduction Tests for Crystal Oscillators

Other Topics

Temperature Compensation

Derivation of the Complex Equation for Oscillation

Derivation of the Y-Parameter Equations for the Pierce Oscillator

Derivation of Y-Parameter Equations for the Grounded-Base Oscillator

Derivation of Approxiate Equations for the Clapp Oscillator

Derivation of Approximate Equations for the Pierce Oscillator Analysis

Derivation of Approximate Equations for the Colpitts Oscillator

Large-Signal Transistor Parameters

Large-Signal Transistor Parameters with Emitter Degeneration

Nonlinear Analysis of the Colpitts Oscillator Based on the Principle of Harmonic Balance

Mathermatical Development of the Sideband Level Versus Phase Deviation Equation

Derivation of Crystal Equations

Sample Crystal Specification

Bibliography, Crystal Oscillator Design and Temperature Compensation

Index

End Matter