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Advanced multiphasing switched-capac...
~
Butzen, Nicolas.
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Advanced multiphasing switched-capacitor DC-DC converters = pushing the limits of fully integrated power management /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Advanced multiphasing switched-capacitor DC-DC converters/ by Nicolas Butzen, Michiel Steyaert.
Reminder of title:
pushing the limits of fully integrated power management /
Author:
Butzen, Nicolas.
other author:
Steyaert, Michiel.
Published:
Cham :Springer International Publishing : : 2020.,
Description:
xv, 160 p. :ill., digital ;24 cm.
[NT 15003449]:
Introduction -- Fully Integrated Switched-Capacitor Fundamentals -- Voltage-Domain Analysis -- Scalable Parasitic Charge Redistribution -- MIMO Switched-Capacitor Converter using Parasitic Coupling -- Stage-Outphasing and Multiphase Soft-Charging -- Continuously-Scalable Conversion Ratio Topologies -- Conclusions.
Contained By:
Springer Nature eBook
Subject:
Electric current converters. -
Online resource:
https://doi.org/10.1007/978-3-030-38735-8
ISBN:
9783030387358
Advanced multiphasing switched-capacitor DC-DC converters = pushing the limits of fully integrated power management /
Butzen, Nicolas.
Advanced multiphasing switched-capacitor DC-DC converters
pushing the limits of fully integrated power management /[electronic resource] :by Nicolas Butzen, Michiel Steyaert. - Cham :Springer International Publishing :2020. - xv, 160 p. :ill., digital ;24 cm.
Introduction -- Fully Integrated Switched-Capacitor Fundamentals -- Voltage-Domain Analysis -- Scalable Parasitic Charge Redistribution -- MIMO Switched-Capacitor Converter using Parasitic Coupling -- Stage-Outphasing and Multiphase Soft-Charging -- Continuously-Scalable Conversion Ratio Topologies -- Conclusions.
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.
ISBN: 9783030387358
Standard No.: 10.1007/978-3-030-38735-8doiSubjects--Topical Terms:
778376
Electric current converters.
LC Class. No.: TK7872.C8 / B889 2020
Dewey Class. No.: 621.3815322
Advanced multiphasing switched-capacitor DC-DC converters = pushing the limits of fully integrated power management /
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pushing the limits of fully integrated power management /
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by Nicolas Butzen, Michiel Steyaert.
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2020.
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24 cm.
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Introduction -- Fully Integrated Switched-Capacitor Fundamentals -- Voltage-Domain Analysis -- Scalable Parasitic Charge Redistribution -- MIMO Switched-Capacitor Converter using Parasitic Coupling -- Stage-Outphasing and Multiphase Soft-Charging -- Continuously-Scalable Conversion Ratio Topologies -- Conclusions.
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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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Engineering (SpringerNature-11647)
based on 0 review(s)
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W9395405
電子資源
11.線上閱覽_V
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EB TK7872.C8 B889 2020
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