Phase Locked Loops by J. Encinas.

This book is devoted to a detailed and comprehensive study of phase locked loops aimed at preparing the reader to design them and to understand their applications. It is written at a level corresponding to a final year electronics undergraduate or a postgraduate student. Linear and semidigital phase...

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Bibliographic Details
Main Author: Encinas, J. (Author)
Corporate Author: SpringerLink (Online service)
Format: eBook
Language:English
Published: New York, NY : Springer US : Imprint: Springer, 1993.
Edition:1st ed. 1993.
Series:Microwave and RF Techniques and Applications ; 6
Springer eBook Collection.
Subjects:
Online Access:Click to view e-book
Holy Cross Note:Loaded electronically.
Electronic access restricted to members of the Holy Cross Community.

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505 0 |a 1 Simplified operation of PLL circuits -- 1.1 PLL circuits -- 1.2 Operation principle -- 2 Analysis methods for linear PLLs -- 2.1 Introduction -- 2.2 Idealized characteristics of PLL elements -- 2.3 First-order loop -- 2.4 Second-order loops -- 2.5 Third-order loops -- 3 Linear tracking -- 3.1 Definitions -- 3.2 Application to the PLL -- 4 Response to a snusoidal excitation -- 4.1 Preliminary remarks -- 4.2 Sinusoidal FM modulation -- 4.3 Application to the different loops -- 5 Operating ranges -- 5.1 Hold range -- 5.2 Capture process -- 5.3 Pull-out range -- 5.4 Operating range spectrum -- 6 Noise -- 6.1 Noise at the input loop -- 6.2 Loop noise -- 6.3 Noise-equivalent bandwidth according to the different filters -- 6.4 Practical acceptable noise -- 6.5 Capture in the presence of noise -- 7 Linear bipolar silicon PLL integrated circuits -- 7.1 Integrated functions -- 7.2 Phase comparator -- 7.3 Voltage controlled oscillators -- 7.4 Bipolar analogue PLL family -- 8 PLLs using digital phase comparators -- 8.1 Exclusive-OR comparator -- 8.2 Phase—frequency three-state comparator with charge-pump -- 8.3 Technology of fabrication -- 9 Applications -- 9.1 Radio (Hertzian transmission) -- 9.2 Television -- 9.3 Fast shift keying (FSK) demodulation -- 9.4 Speed control of DC motors -- Appendix A The Laplace transform -- A.1 Definition -- A.2 Properties -- Appendix B Notions on feedback and control systems -- B.1 Definition -- B.2 Response of linear systems -- B.3 Stability -- Appendix C The Fourier transform -- C.1 Definition -- C.2 Parseval’s theorem -- C.3 Duhamel’s theorem -- References -- Further reading. 
520 |a This book is devoted to a detailed and comprehensive study of phase locked loops aimed at preparing the reader to design them and to understand their applications. It is written at a level corresponding to a final year electronics undergraduate or a postgraduate student. Linear and semidigital phase locked loops are studied in nine chapters. Most of this book is concerned with analogue PLLs, but there are chapters on semidigital PLLs and on applications. The mathematical tools and background required are described at the end of the book. Important symbols A Amplifier gain Mixer gain (V -1) A Filter bandwidth (Hz) Bi Low pass filter bandwidth (Hz) BL Unilateral equivalent noise bandwidth (Hz) Bn D(s) Polynomial of variable s Peak amplitude of signal voltage (V) Ee Peak amplitude of reference signal voltage (V) Er Carrier frequency (Hz) Ie Intermediate frequency (Hz) Ii Intermediate frequency (Hz) IIF Local oscillator frequency (Hz) it Reference frequency (Hz) Ir F(s) Transfer function of loop filter G Amplifier voltage gain k FM modulator sensitivity (rad s -1 V -1) m K Motor coefficient (rad s -1) Back-electromotive force coefficient (V s rad -1) K1 Reverse back -electromotive force coefficient (rad V -1 S -1) Ke PC conversion gain (V rad s -1) Kd Motor torque coefficient (N m A -1) KM 1 1 VCO conversion gain (rads- V- ) Ko Conversion gain of PLL (S-2) Kv m Modulation factor m Integer n Integer n Loop order N ,N Integers representing division 1 2 1. 
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