A greatly revised and expanded account of phaselock technology
The Third Edition of this landmark book presents new developments in the field of phaselock loops, some of which have never been published until now. Established concepts are reviewed critically and recommendations are offered for improved formulations. The work reflects the author's own research and many years of hands-on experience with phaselock loops.
Reflecting the myriad of phaselock loops that are now found in electronic devices such as televisions, computers, radios, and cell phones, the book offers readers much new material, including:
* Revised and expanded coverage of transfer functions
* Two chapters on phase noise
* Two chapters examining digital phaselock loops
* A chapter on charge-pump phaselock loops
* Expanded discussion of phase detectors and of oscillators
* A chapter on anomalous phaselocking
* A chapter on graphical aids, including Bode plots, root locus plots, and Nichols charts
As in the previous editions, the focus of the book is on underlying principles, which remain valid despite technological advances. Extensive references guide readers to additional information to help them explore particular topics in greater depth.
Phaselock Techniques, Third Edition is intended for practicing engineers, researchers, and graduate students. This critically acclaimed book has been thoroughly updated with new information and expanded for greater depth.
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11 LOOP FILTERS
12 CHARGEPUMP PHASELOCK LOOPS
13 DIGITAL SAMPLED PHASELOCK LOOPS
14 ANOMALOUS LOCKING
15 PLL FREQUENCY SYNTHESIZERS
16 PHASELOCK MODULATORS AND DEMODULATORS
17 MISCELLANEOUS APPLICATIONS OF PHASELOCK LOOPS
10 PHASE DETECTORS
Other editions - View all
acquisition additive noise amplitude analog PLL analysis analyzer applied approximation bandwidth behavior Bode plot carrier Chapter charge pump Circuits Syst clock closed-loop components configuration control voltage counter curve cycle slips damping delay demodulator digital PLL DPLL equation example feedback Figure first-order loop first-order PLL frequency divider frequency response high-frequency IEEE IEEE Trans input signal integrator limit cycle linear loop bandwidth loop filter loop gain Nichols chart noise bandwidth nonlinear offset open-loop operation parameters PD output peak phase detector phase jitter phase noise Phase-Locked Loops phaselock poles pull-in quantization rad/sec ratio ring oscillator ripple root-locus s-curve sample second-order type Section shown in Fig sidebands sinusoidal SNRL Solid-State Circuits spectral density stability static phase error switching Synchronization synthesizer third-order threshold tracking transfer function type 2 PLL values varactors variance waveform z-transform zero
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Phase Locked Loops 6/e: Design, Simulation, and Applications
Limited preview - 2007