Design of High-Performance CMOS Voltage-Controlled Oscillators
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Author
Contributions
- Harjani, Ramesh - Contributor
Publication
2003 - Springer US, Boston, MA, Massachusetts
Language
English
Word Count
39,500 words, Guess
Page Count
158 pages
Physical Format
Electronic resource
Identifiers
- Internet Archivedesignhighperfor00dail
- ISBN-101461354145
- ISBN-101461511453
- ISBN-139781461354147
- ISBN-139781461511458
and 4 more
- OCLC Control Number852792474
- Better World Books9781461354147
- Better World Books9781461511458
- Open LibraryOL27030622M
Classifications
- DDC621.3815
- LCCTK7888.4
- LCCTK7888.4TK1-9971
and 1 more
- LCCTK7867-7867.5
Description
Design of High-Performance CMOS Voltage-Controlled Oscillators presents a phase noise modeling framework for CMOS ring oscillators. The analysis considers both linear and nonlinear operation. It indicates that fast rail-to-rail switching has to be achieved to minimize phase noise. Additionally, in conventional design the flicker noise in the bias circuit can potentially dominate the phase noise at low offset frequencies. Therefore, for narrow bandwidth PLLs, noise up conversion for the bias circuits should be minimized. We define the effective Q factor (Qeff) for ring oscillators and predict its increase for CMOS processes with smaller feature sizes. Our phase noise analysis is validated via simulation and measurement results. The digital switching noise coupled through the power supply and substrate is usually the dominant source of clock jitter. Improving the supply and substrate noise immunity of a PLL is a challenging job in hostile environments such as a microprocessor chip where millions of digital gates are present.
Subjects
Series Statement
- The Springer International Series in Engineering and Computer Science, Analog Circuits and Signal Processing -- 708
- Springer International Series in Engineering and Computer Science, Analog Circuits and Signal Processing -- 708.
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