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CMOS Integrated Capacitive DC-DC Converters

CMOS Integrated Capacitive DC-DC Converters
Kataloginformation
Feldname Details
Vorliegende Sprache eng
Hinweise auf parallele Ausgaben 414303105 Buchausg. u.d.T.: ‡Breussegem, Tom van: CMOS integrated capacitive DC-DC converters
ISBN 978-1-4614-4279-0
Name Breussegem, Tom ¬van¬
Steyaert, Michiel
Name ANZEIGE DER KETTE Steyaert, Michiel
T I T E L CMOS Integrated Capacitive DC-DC Converters
Verlagsort New York, NY [u.a.]
Verlag Springer
Erscheinungsjahr 2013
2013
Umfang Online-Ressource (XIII, 209 p. 182 illus, digital)
Reihe Analog Circuits and Signal Processing
Notiz / Fußnoten Description based upon print version of record
Weiterer Inhalt CMOS Integrated Capacitive DC-DC Converters; Preface; Contents; Abbreviations, Symbols and Quantities; 1 Introduction; 1.1 System-on-Chip Power Management; 1.1.1 Power Density; 1.1.2 Voltage Gap; 1.1.3 Energy Gap; 1.2 Power-Management Techniques; 1.2.1 Power Consumption in CMOS; 1.2.2 Clock Gating; 1.2.3 Voltage and Frequency Scaling; 1.2.4 Adaptive Voltage Body Biasing; 1.2.5 Analysis; 1.3 DC--DC Voltage Conversion; 1.3.1 Definition; 1.3.2 Requirements and Characteristics; 1.3.3 Linear Series Conversion; 1.3.4 Capacitive Conversion; 1.3.5 Inductive Conversion; 1.3.6 Analysis. 1.4 State-of-the-Art Integrated Converters1.4.1 Inductive Converters; 1.4.2 Capacitive Converters; 1.4.3 Figures of Merit; 1.4.4 Analysis; 1.5 Summary and Outline; 1.6 Conclusion; 2 Converter Topologies and Fundamentals; 2.1 Characteristics; 2.1.1 DC--DC Converter Structure; 2.1.2 Principles; 2.1.3 Example: The Series-Parallel 12 Converter; 2.2 Analysis Techniques; 2.2.1 Charge Flow Analysis; 2.2.2 Charge Balance Analysis; 2.2.3 Branch Analysis; 2.3 Topologies: Taxonomy; 2.3.1 Topology Occurrence Theorem; 2.3.2 Up Converters; 2.3.3 Down Converters; 2.3.4 Multi-Topology Converters. 2.4 Topologies: Analysis2.4.1 Dickson Converter; 2.4.2 Voltage Doubler; 2.4.3 Voltage Divider; 2.4.4 Fractional Converter; 2.5 Conclusion; 3 Modeling and Design of Capacitive DC--DC Converters; 3.1 Output Impedance Model; 3.2 Design of Single-Topology Single-Operation-Point Converters; 3.2.1 Implementation Parameters; 3.2.2 Output Impedance Requirements; 3.2.3 Output Impedance Balance; 3.2.4 Parameter Substitution; 3.2.5 Loss Analysis; 3.2.6 Loss Minimization; 3.2.7 Analysis; 3.3 Design of Multi-Topology Converters; 3.3.1 Model Refinement; 3.3.2 Optimization Space. 3.3.3 Multi-Objective Optimization3.4 Accuracy Improvement; 3.4.1 Conventional Model; 3.4.2 Modified Model; 3.4.3 Cases; 3.4.4 Measurements; 3.5 Conclusion; 4 Noise Reduction by Multi-Phase Interleaving and Fragmentation; 4.1 Noise in Systems on Chip; 4.2 Noise Characteristics; 4.2.1 Noise in the Slow Switching Limit; 4.2.2 Noise in the Fast Switching Limit; 4.2.3 Additional Noise Sources; 4.3 Noise Power Loss; 4.3.1 Analog Point-of-View; 4.3.2 Digital Point-of-View; 4.4 Noise Mitigation Techniques; 4.4.1 Series Regulator; 4.4.2 Multi-Phase Interleaving. 4.4.3 Capacitance Modulation by Means of Fragmentation4.5 Conclusion; 5 Control of Fully Integrated Capacitive Converters; 5.1 Control Nature; 5.2 Frequency-Domain Analysis; 5.2.1 Frequency-Domain Analysis in FSL; 5.2.2 Frequency-Domain Analysis in SSL; 5.3 Techniques; 5.3.1 Topology Reconfiguration; 5.3.2 Capacitance Modulation; 5.3.3 Pulse-Width Modulation; 5.3.4 Pulse-Frequency Modulation; 5.4 Implementations; 5.4.1 Lead Compensation; 5.4.2 Lead Compensation for Multi-Phase Converters; 5.4.3 Hysteretic Discrete-Time Control; 5.4.4 Multi-Phase Hysteretic Discrete-Time Control. 5.5 Conclusions
Titelhinweis Buchausg. u.d.T.: ‡Breussegem, Tom van: CMOS integrated capacitive DC-DC converters
ISBN ISBN 978-1-4614-4280-6
Klassifikation TJFC
TEC008010
621.3815
TK7888.4
ZN 5660
Kurzbeschreibung This book provides a detailed analysis of all aspects of capacitive DC-DC converter design: topology selection, control loop design and noise mitigation. Readers will benefit from the authors’ systematic overview that starts from the ground up, in-depth circuit analysis and a thorough review of recently proposed techniques and design methodologies. Not only design techniques are discussed, but also implementation in CMOS is shown, by pinpointing the technological opportunities of CMOS and demonstrating the implementation based on four state-of-the-art prototypes.
2. Kurzbeschreibung This book provides a detailed analysis of all aspects of capacitive DC-DC converter design: topology selection, control loop design and noise mitigation. Readers will benefit from the authors' systematic overview that starts from the ground up, in-depth circuit analysis and a thorough review of recently proposed techniques and design methodologies. Not only design techniques are discussed, but also implementation in CMOS is shown, by pinpointing the technological opportunities of CMOS and demonstrating the implementation based on four state-of-the-art prototypes
SWB-Titel-Idn 373364318
Signatur Springer E-Book
Bemerkungen Elektronischer Volltext - Campuslizenz
Elektronische Adresse $uhttp://dx.doi.org/10.1007/978-1-4614-4280-6
Internetseite / Link Volltext
Siehe auch Volltext
Siehe auch Cover
Kataloginformation500176947 Datensatzanfang . Kataloginformation500176947 Seitenanfang .
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