Preparation and Application of Novel Power Semiconductor Chips

This study aims to improve the triggering current and dynamic characteristics of thyristor chips by designing new gate structures and multilayer semiconductor structures. Thyristor chips are essential components in power electronic devices, widely used in fields such as power transmission, motor con...

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Main Authors: Zhiwei Yang, Asim Abas
Format: Article
Language:English
Published: Wiley 2024-01-01
Series:Journal of Engineering
Online Access:http://dx.doi.org/10.1155/2024/5589976
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author Zhiwei Yang
Asim Abas
author_facet Zhiwei Yang
Asim Abas
author_sort Zhiwei Yang
collection DOAJ
description This study aims to improve the triggering current and dynamic characteristics of thyristor chips by designing new gate structures and multilayer semiconductor structures. Thyristor chips are essential components in power electronic devices, widely used in fields such as power transmission, motor control, and energy conversion systems. Trigger current is a key factor in the performance of thyristor chips, which is responsible for initiating the conduction state of the thyristor and carrying high current under high voltage conditions. This study improved the triggering current and dynamic characteristics of thyristor chips by optimizing the chip structure, especially by introducing multilayer P/N semiconductor design and improving the gate structure. The research results provide important guidance for the future development of thyristor chips and also contribute to the advancement of semiconductor technology.
format Article
id doaj-art-8e63c3cd4faa46438ca117e76a990e56
institution DOAJ
issn 2314-4912
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publishDate 2024-01-01
publisher Wiley
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series Journal of Engineering
spelling doaj-art-8e63c3cd4faa46438ca117e76a990e562025-08-20T02:43:16ZengWileyJournal of Engineering2314-49122024-01-01202410.1155/2024/5589976Preparation and Application of Novel Power Semiconductor ChipsZhiwei Yang0Asim Abas1School of Intelligent ManufacturingHefei Institutes of Physical ScienceThis study aims to improve the triggering current and dynamic characteristics of thyristor chips by designing new gate structures and multilayer semiconductor structures. Thyristor chips are essential components in power electronic devices, widely used in fields such as power transmission, motor control, and energy conversion systems. Trigger current is a key factor in the performance of thyristor chips, which is responsible for initiating the conduction state of the thyristor and carrying high current under high voltage conditions. This study improved the triggering current and dynamic characteristics of thyristor chips by optimizing the chip structure, especially by introducing multilayer P/N semiconductor design and improving the gate structure. The research results provide important guidance for the future development of thyristor chips and also contribute to the advancement of semiconductor technology.http://dx.doi.org/10.1155/2024/5589976
spellingShingle Zhiwei Yang
Asim Abas
Preparation and Application of Novel Power Semiconductor Chips
Journal of Engineering
title Preparation and Application of Novel Power Semiconductor Chips
title_full Preparation and Application of Novel Power Semiconductor Chips
title_fullStr Preparation and Application of Novel Power Semiconductor Chips
title_full_unstemmed Preparation and Application of Novel Power Semiconductor Chips
title_short Preparation and Application of Novel Power Semiconductor Chips
title_sort preparation and application of novel power semiconductor chips
url http://dx.doi.org/10.1155/2024/5589976
work_keys_str_mv AT zhiweiyang preparationandapplicationofnovelpowersemiconductorchips
AT asimabas preparationandapplicationofnovelpowersemiconductorchips