Power Management Techniques for Integrated Circuitdesign(Wiley - IEEE)

电源管理集成芯片设计

工程热物理

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1124.00
发货周期:预计3-5周发货
作      者
出  版 社
出版时间
2016年05月25日
装      帧
精装
ISBN
9781118896815
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页      码
552
开      本
168.3x244.5mm
语      种
英文
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图书简介
This book begins with the premise that energy demands are directing scientists towards ever-greener methods of power management, so highly integrated power control ICs (integrated chip/circuit) are increasingly in demand for further reducing power consumption. This book explains how to design high-efficient, fast transient, and low cost power management ICs. Separate design and technology sections are included within each chapter, in which both aspects are discussed for the various circuit solutions addressed. This clarifies how technological aspects and design aspects are organised and why some particular technology aspects are given particular relevance. For example, the use of multi-layer capacitors is explained first. Then, the problems in the design can be clearly addressed. Finally, the design techniques are summarized. System architectures and applications are also included to let the readers realize the whole concept of the design. Examples are given based on everyday items, such as a mobile phone or iPad.  The outcome is for readers to realize the various techniques for different applications, from the system view to circuit implementation. They will also know how to define the power system and how to implement the integrated power management IC. The contents also include silicon-verified chip designs to show the readers the proven designs. The book is supported by a website which includes presentation files with book illustrations, lecture notes, simulation circuits, solution manuals, instructors manuals, and program downloads, enhancing the learning experience. Contents include chapters on:- The design of low dropout (LDO) regulators / Design of switching power regulators (SWR) Constant-on-time (COT) control for low cost and fast transient response / Light-emitting-diode (LED) driver / Switched capacitor (SC) regulators / Single-inductor multiple-output converter designs / Design examples
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