Simulation of an integrated spiral inductor and inter-digital capacitor in a buck micro converter

In this paper, a novel radiofrequency circuit is designed and developed for an integrated on-chip spiral inductor and inter-digital capacitor of the substrate. Results of extensive simulations concerning the influence of both spiral inductor and inter-digital capacitor geometrical parameters on qual...

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Main Authors: Abdelhadi Namoune, Rachid Taleb, Noureddine Mansour
Format: Article
Language:English
Published: Taylor & Francis Group 2023-04-01
Series:Automatika
Subjects:
Online Access:https://www.tandfonline.com/doi/10.1080/00051144.2022.2142572
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author Abdelhadi Namoune
Rachid Taleb
Noureddine Mansour
author_facet Abdelhadi Namoune
Rachid Taleb
Noureddine Mansour
author_sort Abdelhadi Namoune
collection DOAJ
description In this paper, a novel radiofrequency circuit is designed and developed for an integrated on-chip spiral inductor and inter-digital capacitor of the substrate. Results of extensive simulations concerning the influence of both spiral inductor and inter-digital capacitor geometrical parameters on quality factor value are presented. Two scenarios are considered in the simulation; the first operation of buck converter including an ideal capacitor and inductor and then its operation including an inter-digital capacitor and integrated spiral inductor. For both scenarios, we observed that their respective output voltages as well as their respective output currents present the same time responses.
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spelling doaj.art-36afcd457a784fde9d5000c60558c3ba2023-01-27T04:35:05ZengTaylor & Francis GroupAutomatika0005-11441848-33802023-04-0164226827610.1080/00051144.2022.2142572Simulation of an integrated spiral inductor and inter-digital capacitor in a buck micro converterAbdelhadi Namoune0Rachid Taleb1Noureddine Mansour2Department of Electrotechnical & Automatic Engineering, Faculty of Science and Technology, University of Relizane, Relizane, AlgeriaLaboratoire Génie Electrique et Energies Renouvelables (LGEER), Electrical Engineering Department, Hassiba Benbouali University of Chlef, Chlef, AlgeriaDepartment of Chemical Engineering, College of Engineering, University of Bahrain, Sakhir, BahrainIn this paper, a novel radiofrequency circuit is designed and developed for an integrated on-chip spiral inductor and inter-digital capacitor of the substrate. Results of extensive simulations concerning the influence of both spiral inductor and inter-digital capacitor geometrical parameters on quality factor value are presented. Two scenarios are considered in the simulation; the first operation of buck converter including an ideal capacitor and inductor and then its operation including an inter-digital capacitor and integrated spiral inductor. For both scenarios, we observed that their respective output voltages as well as their respective output currents present the same time responses.https://www.tandfonline.com/doi/10.1080/00051144.2022.2142572Buck converterspiral inductorinter-digital capacitorintegratedsubstrate
spellingShingle Abdelhadi Namoune
Rachid Taleb
Noureddine Mansour
Simulation of an integrated spiral inductor and inter-digital capacitor in a buck micro converter
Automatika
Buck converter
spiral inductor
inter-digital capacitor
integrated
substrate
title Simulation of an integrated spiral inductor and inter-digital capacitor in a buck micro converter
title_full Simulation of an integrated spiral inductor and inter-digital capacitor in a buck micro converter
title_fullStr Simulation of an integrated spiral inductor and inter-digital capacitor in a buck micro converter
title_full_unstemmed Simulation of an integrated spiral inductor and inter-digital capacitor in a buck micro converter
title_short Simulation of an integrated spiral inductor and inter-digital capacitor in a buck micro converter
title_sort simulation of an integrated spiral inductor and inter digital capacitor in a buck micro converter
topic Buck converter
spiral inductor
inter-digital capacitor
integrated
substrate
url https://www.tandfonline.com/doi/10.1080/00051144.2022.2142572
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