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Titlebook: Control Techniques for Power Converters with Integrated Circuit; Wen-Wei Chen,Jiann-Fuh Chen Book 2018 Springer Nature Singapore Pte Ltd.

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書目名稱Control Techniques for Power Converters with Integrated Circuit
編輯Wen-Wei Chen,Jiann-Fuh Chen
視頻videohttp://file.papertrans.cn/238/237287/237287.mp4
概述Combines academic research and industrial cases to provide helpful insights.Focuses on fast transient response and increased light load efficiency with power integrated circuit (IC) behavior and train
叢書名稱Power Systems
圖書封面Titlebook: Control Techniques for Power Converters with Integrated Circuit;  Wen-Wei Chen,Jiann-Fuh Chen Book 2018 Springer Nature Singapore Pte Ltd.
描述.This book offers an overview of power electronic applications in the study of power integrated circuit (IC) design, collecting novel research ideas and insights into fast transient response to prevent the output voltage from dropping significantly at the undershoot. It also discusses techniques and training to save energy and increase load efficiency, as well as fast transient response and high efficiency, which are the most important factors for consumer products that implement power IC. Lastly, the book focuses on power electronics for system loop analysis and optimal compensation design to help users and engineers implement their applications..The book is a valuable resource for university researchers, power IC R&D engineers, application engineers and graduate students in power electronics who wish to learn about the power IC design principles, methods, system behavior, and applications in consumer products..
出版日期Book 2018
關(guān)鍵詞Power Electronics; Power IC design; IC design; Adaptive On-Time; High Efficiency Switching Converter; Loo
版次1
doihttps://doi.org/10.1007/978-981-10-7004-4
isbn_softcover978-981-13-4983-6
isbn_ebook978-981-10-7004-4Series ISSN 1612-1287 Series E-ISSN 1860-4676
issn_series 1612-1287
copyrightSpringer Nature Singapore Pte Ltd. 2018
The information of publication is updating

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Adaptive On-time Control Circuit for Buck Converters,quency on-time control circuit for buck converter is showed in this chapter. The concept uses the quick dynamic response to filter V. at the load transient to change the on-time width dynamically, preventing V. from dropping markedly. Finally, 12 V input voltage, 3.3 V output voltage, and 60 W outpu
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Ripple-Based Constant Frequency On-time Control Circuit with Virtual Inductor Current Ripple for Bu load transient to dynamically change the width of on-time to prevent the .. from dropping markedly. Finally, 12-V input voltage, 3.3-V output voltage, and 60-W output power with the quick dynamic response for the integrated circuit of the proposed buck converter are implemented to verify its viabil
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Constant Current Ripple On-Time Control Circuit With Native Adaptive Voltage Positioning Design fortput capacitance, especially to central processing unit and high current slew rate load applications, so a pure constant current ripple on-time control circuit for voltage regulators cannot achieve a faster load transient response. Improved transient response using quick dynamic response of the cons
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I Vertrauen in der modernen Gesellschafthe output voltage to maintain bandwidth and phase margin using the invariant inductor and compensation circuit. Finally, 14-V input voltage, 12-V output voltage, and 24-W output power with the dynamic ramp sampling the output voltage is implemented using MathCAD predictions, SIMPLIS simulation resul
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Vertrauen in Nationen durch kulturelle N?he?quency on-time control circuit for buck converter is showed in this chapter. The concept uses the quick dynamic response to filter V. at the load transient to change the on-time width dynamically, preventing V. from dropping markedly. Finally, 12 V input voltage, 3.3 V output voltage, and 60 W outpu
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https://doi.org/10.1007/978-3-658-02675-2 load transient to dynamically change the width of on-time to prevent the .. from dropping markedly. Finally, 12-V input voltage, 3.3-V output voltage, and 60-W output power with the quick dynamic response for the integrated circuit of the proposed buck converter are implemented to verify its viabil
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