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Advanced Multiphasing Switchedcapacitor Dcdc Converters Pushing The Limits Of Fully Integrated Power Management 1st Ed Nicolas Butzen

  • SKU: BELL-22448200
Advanced Multiphasing Switchedcapacitor Dcdc Converters Pushing The Limits Of Fully Integrated Power Management 1st Ed Nicolas Butzen
$ 31.00 $ 45.00 (-31%)

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Advanced Multiphasing Switchedcapacitor Dcdc Converters Pushing The Limits Of Fully Integrated Power Management 1st Ed Nicolas Butzen instant download after payment.

Publisher: Springer International Publishing;Springer
File Extension: PDF
File size: 6.22 MB
Author: Nicolas Butzen, Michiel Steyaert
ISBN: 9783030387341, 9783030387358, 3030387348, 3030387356
Language: English
Year: 2020
Edition: 1st ed.

Product desciption

Advanced Multiphasing Switchedcapacitor Dcdc Converters Pushing The Limits Of Fully Integrated Power Management 1st Ed Nicolas Butzen by Nicolas Butzen, Michiel Steyaert 9783030387341, 9783030387358, 3030387348, 3030387356 instant download after payment.

This book gives a detailed analysis of switched-capacitor DC-DC converters that are entirely integrated on a single chip and establishes that these converters are mainly limited by the large parasitic coupling, the low capacitor energy density, and the fact that switched-capacitor converter topologies only have a fixed voltage conversion ratio. The authors introduce the concept of Advanced Multiphasing as a way to circumvent these limitations by having multiple out-of-phase parallel converter cores interact with each other to minimize capacitor charging losses, leading to several techniques that demonstrate record efficiency and power-density, and even a fundamentally new type of switched-capacitor topology that has a continuously-scalable conversion ratio.

  • Provides single-source reference to the recently-developed Advanced Multiphasing concept;
  • Enables greatly improved performance and capabilities in fully integrated switched-capacitor converters;
  • Enables readers to design DC-DC converters, where multiple converter cores are put in parallel and actively interact with each other over several phases to improve their capabilities.

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