Power electronic system design: linking differential equations, linear algebra, and implicit functions
Intro -- Half Title -- Title -- Copyright -- Dedication -- Contents -- About the Author -- Preface -- Chapter 1 Capacitor and inductor -- 1.1 Capacitor equation in differential form -- 1.2 Capacitor equation in integral form -- 1.3 Inductor equation in differential form -- 1.4 Inductor equation in i...
Gespeichert in:
1. Verfasser: | |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
San Diego
Elsevier
2021
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Schlagworte: | |
Online-Zugang: | DE-1050 DE-863 DE-862 DE-706 URL des Erstveröffentlichers |
Zusammenfassung: | Intro -- Half Title -- Title -- Copyright -- Dedication -- Contents -- About the Author -- Preface -- Chapter 1 Capacitor and inductor -- 1.1 Capacitor equation in differential form -- 1.2 Capacitor equation in integral form -- 1.3 Inductor equation in differential form -- 1.4 Inductor equation in integral form -- 1.5 Definition of inductance and Faraday's law -- 1.6 Magnetic coupling and mutual inductance -- 1.7 Transformer equation -- 1.8 Nonideal capacitor, nonideal inductor, and equivalent circuit -- 1.9 Transformer equivalent circuits -- 1.10 Physical size of capacitor and inductor -- 1.11 Specifications for capacitor and inductor -- 1.11.1 Capacitor -- 1.11.2 Inductor -- 1.11.3 Inductor core material -- 1.11.4 Inductor core Geometry -- 1.11.5 Inductor winding -- Chapter 2 First-order circuits -- 2.1 RC network with periodic drive source -- 2.1.1. Fourier analysis approach -- 2.1.1 Continuity of states and boundary condition approach -- 2.2 Sawtooth (triangle ramp) generator -- 2.3 Full-wave rectifier with RC load -- 2.3.1 Issues -- 2.3.2 Solutions -- 2.3.3 Graphical method -- 2.3.4 Numerical method -- 2.4 A brushless DC Motor with permanent magnets rotor -- 2.5 A BLDC (Brushless DC) motor speed detector -- References -- Chapter 3 Current source -- 3.1 Semiconductor diode equation -- 3.2 Simple current source -- 3.3 Bob Widlar current source -- 3.4 Improved current source -- 3.5 Source impedance -- 3.6 555 timer -- 3.7 Precision current loop -- 3.8 Current-mode laser driver -- 3.9 LED array driver -- 3.10 JFET current source -- 3.11 MOSFET current source -- Chapter 4 Second order -- 4.1 Form -- 4.2 Root -- 4.2.1 Parametric change -- 4.3 Time domain -- 4.4 Frequency domain -- 4.5 Parallel and serial resonance -- 4.5.1 Steady-state AC analysis -- 4.5.2 Inverse Laplace transform -- 4.5.3 Approximation considering only the fundamental |
Beschreibung: | Description based on publisher supplied metadata and other sources |
Beschreibung: | 1 Online-Ressource (384 Seiten) |
ISBN: | 9780323885430 |
DOI: | 10.1016/C2020-0-02305-4 |
Internformat
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520 | 3 | |a Intro -- Half Title -- Title -- Copyright -- Dedication -- Contents -- About the Author -- Preface -- Chapter 1 Capacitor and inductor -- 1.1 Capacitor equation in differential form -- 1.2 Capacitor equation in integral form -- 1.3 Inductor equation in differential form -- 1.4 Inductor equation in integral form -- 1.5 Definition of inductance and Faraday's law -- 1.6 Magnetic coupling and mutual inductance -- 1.7 Transformer equation -- 1.8 Nonideal capacitor, nonideal inductor, and equivalent circuit -- 1.9 Transformer equivalent circuits -- 1.10 Physical size of capacitor and inductor -- 1.11 Specifications for capacitor and inductor -- 1.11.1 Capacitor -- 1.11.2 Inductor -- 1.11.3 Inductor core material -- 1.11.4 Inductor core Geometry -- 1.11.5 Inductor winding -- Chapter 2 First-order circuits -- 2.1 RC network with periodic drive source -- 2.1.1. Fourier analysis approach -- 2.1.1 Continuity of states and boundary condition approach -- 2.2 Sawtooth (triangle ramp) generator -- 2.3 Full-wave rectifier with RC load -- 2.3.1 Issues -- 2.3.2 Solutions -- 2.3.3 Graphical method -- 2.3.4 Numerical method -- 2.4 A brushless DC Motor with permanent magnets rotor -- 2.5 A BLDC (Brushless DC) motor speed detector -- References -- Chapter 3 Current source -- 3.1 Semiconductor diode equation -- 3.2 Simple current source -- 3.3 Bob Widlar current source -- 3.4 Improved current source -- 3.5 Source impedance -- 3.6 555 timer -- 3.7 Precision current loop -- 3.8 Current-mode laser driver -- 3.9 LED array driver -- 3.10 JFET current source -- 3.11 MOSFET current source -- Chapter 4 Second order -- 4.1 Form -- 4.2 Root -- 4.2.1 Parametric change -- 4.3 Time domain -- 4.4 Frequency domain -- 4.5 Parallel and serial resonance -- 4.5.1 Steady-state AC analysis -- 4.5.2 Inverse Laplace transform -- 4.5.3 Approximation considering only the fundamental | |
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author | Wu, Keng C. 1948- |
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discipline | Elektrotechnik / Elektronik / Nachrichtentechnik |
discipline_str_mv | Elektrotechnik / Elektronik / Nachrichtentechnik |
doi_str_mv | 10.1016/C2020-0-02305-4 |
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id | DE-604.BV047625920 |
illustrated | Not Illustrated |
index_date | 2024-07-03T18:44:20Z |
indexdate | 2025-02-20T07:15:44Z |
institution | BVB |
isbn | 9780323885430 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-033010433 |
oclc_num | 1289772461 |
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owner | DE-862 DE-BY-FWS DE-863 DE-BY-FWS DE-1050 DE-706 |
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physical | 1 Online-Ressource (384 Seiten) |
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publishDate | 2021 |
publishDateSearch | 2021 |
publishDateSort | 2021 |
publisher | Elsevier |
record_format | marc |
spellingShingle | Wu, Keng C. 1948- Power electronic system design linking differential equations, linear algebra, and implicit functions Leistungselektronik (DE-588)4035235-3 gnd |
subject_GND | (DE-588)4035235-3 |
title | Power electronic system design linking differential equations, linear algebra, and implicit functions |
title_auth | Power electronic system design linking differential equations, linear algebra, and implicit functions |
title_exact_search | Power electronic system design linking differential equations, linear algebra, and implicit functions |
title_exact_search_txtP | Power Electronic System Design linking differential equations, linear algebra, and implicit functions |
title_full | Power electronic system design linking differential equations, linear algebra, and implicit functions |
title_fullStr | Power electronic system design linking differential equations, linear algebra, and implicit functions |
title_full_unstemmed | Power electronic system design linking differential equations, linear algebra, and implicit functions |
title_short | Power electronic system design |
title_sort | power electronic system design linking differential equations linear algebra and implicit functions |
title_sub | linking differential equations, linear algebra, and implicit functions |
topic | Leistungselektronik (DE-588)4035235-3 gnd |
topic_facet | Leistungselektronik |
url | https://doi.org/10.1016/C2020-0-02305-4 |
work_keys_str_mv | AT wukengc powerelectronicsystemdesignlinkingdifferentialequationslinearalgebraandimplicitfunctions |