Frequency Modulation Theory
eBook - PDF

Frequency Modulation Theory

Application to Microwave Links

  1. 500 pages
  2. English
  3. PDF
  4. Available on iOS & Android
eBook - PDF

Frequency Modulation Theory

Application to Microwave Links

About this book

Electronics and Instrumentation, Volume 11: Frequency Modulation Theory: Application to Microwave Links provides information pertinent to the fundamental aspects of microwave beam techniques. This book discusses the development in the application of frequency modulation. Organized into five chapters, this volume begins with an overview of the transfer of the radio-frequency energy over a given path. This text then examines all the general problems of frequency modulation, including principle, band covered, distortion, and improvement of the signal-to-noise ratio. Other chapters deal with propagation distortion that is apparent in a variable-velocity guided transmission channel. This book discusses as well the complete problem of telephony and television transmission over radio links and considers the requisite conditions for meeting the international standards. The final chapter deals with all the applied techniques concerned with radio link equipment that deals with a large number of general problems. This book is a valuable resource for students and engineers.

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Yes, you can access Frequency Modulation Theory by Jacques Fagot,Philippe Magne, D. W. Fry,W. Higinbotham in PDF and/or ePUB format, as well as other popular books in Technology & Engineering & Engineering General. We have over one million books available in our catalogue for you to explore.
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Table of contents

  1. Front Cover
  2. Frequency Modulaton Theory: Application to Microwave Links
  3. Copyright Page
  4. Table of Contents
  5. FOREWORD
  6. INTRODUCTION
  7. CHAPTER 1. PROPAGATION — ENERGY TRANSFER
  8. CHAPTER 2. DISTORTION AND NOISE IN FREQUENCY MODULATION
  9. CHAPTER 3. PROPAGATION DISTORTION
  10. CHAPTER 4. TRANSMISSION OF THE OVERALL INFORMATION
  11. CHAPTER 5. EQUIPMENT
  12. INDEX