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Titlebook: CMOS Integrated Switching Power Converters; A Structured Design Gerard Villar Piqué,Eduard Alarcón Book 2011 Springer Science+Business Med

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书目名称CMOS Integrated Switching Power Converters
副标题A Structured Design
编辑Gerard Villar Piqué,Eduard Alarcón
视频videohttp://file.papertrans.cn/221/220356/220356.mp4
概述Provides a comprehensive reference on structured design and optimization of fully monolithic power supplies for on-chip power management.Describes a multidisciplinary approach, encompassing enhanced i
图书封面Titlebook: CMOS Integrated Switching Power Converters; A Structured Design  Gerard Villar Piqué,Eduard Alarcón Book 2011 Springer Science+Business Med
描述This book describes the structured design and optimization of efficient, energy processing integrated circuits. The approach is multidisciplinary, covering the monolithic integration of IC design techniques, power electronics and control theory. In particular, this book enables readers to conceive, synthesize, design and implement integrated circuits with high-density high-efficiency on-chip switching power regulators. Topics covered encompass the structured design of the on-chip power supply, efficiency optimization, IC-compatible power inductors and capacitors, power MOSFET switches and efficient switch drivers in standard CMOS technologies.
出版日期Book 2011
关键词Adaptive Voltage Scaling; Adaptive envelope tracking; Buck converter; Low Power Integrated Circuits; On-
版次1
doihttps://doi.org/10.1007/978-1-4419-8843-0
isbn_softcover978-1-4899-8873-7
isbn_ebook978-1-4419-8843-0
copyrightSpringer Science+Business Media, LLC 2011
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3-Level Buck Converter Analysis and Specific Components Models,ing discussed some of the required characteristics to reduce the power losses, and consequently increase the converter power efficiency, the 3-level Buck converter presented by Meynard and Foch in 1992 (., Toledo), is selected. Then, the analysis of the converter operation is presented since it is r
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https://doi.org/10.1007/978-3-031-02084-1l the details corresponding to each component design are provided. Finally, important conclusions on the feasibility of the microelectronic implementation of a Buck converter are discussed from the results.
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