Switching devices comparison and RC snubber for ringing suppression in one single leg T-type converter

In this paper, one single leg T-type converter with full silicon carbide (SiC) half-bridge power modules and hybrid power modules combined silicon carbide (SiC) with silicon (Si) power module, are designed and investigated. Firstly, the switching characteristics of Cree SiC device CAS300M12BM2 and S...

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Main Authors: Liu, Yong, Fei, Fan, See, Kye Yak, Liu, Xiong, Lim, Ziyou, Simanjorang, Rejeki, Pou, Josep, Gupta, Amit K., Lai, Jih-Sheng
Other Authors: School of Electrical and Electronic Engineering
Format: Conference or Workshop Item
Language:English
Published: 2020
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Online Access:https://hdl.handle.net/10356/143305
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Institution: Nanyang Technological University
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spelling sg-ntu-dr.10356-1433052020-08-20T01:36:11Z Switching devices comparison and RC snubber for ringing suppression in one single leg T-type converter Liu, Yong Fei, Fan See, Kye Yak Liu, Xiong Lim, Ziyou Simanjorang, Rejeki Pou, Josep Gupta, Amit K. Lai, Jih-Sheng School of Electrical and Electronic Engineering 2018 Asian Conference on Energy, Power and Transportation Electrification (ACEPT) Rolls-Royce@NTU Corporate Lab Engineering::Electrical and electronic engineering Single-leg T-type Converter Double Pulse Testing In this paper, one single leg T-type converter with full silicon carbide (SiC) half-bridge power modules and hybrid power modules combined silicon carbide (SiC) with silicon (Si) power module, are designed and investigated. Firstly, the switching characteristics of Cree SiC device CAS300M12BM2 and Semikron SiC device SKM350MB120SCH17 single-leg T-Type converters are compared with double pulse testing (DPT). Then, to further investigate the performance, the hybrid power modules of the single leg T-type converter with Cree SiC device CAS300M12BM2 and Semikron Si device SKM300GM12T4 are built, which can increases the power density, compared to the full SiC devices T-type converter. To suppress the ringing of the middle leg switching device, the resistor-capacitor (RC) snubber are designed and demonstrated with DPT. Finally, the function testing of the hybrid single leg T-type converter are experimentally verified. Nanyang Technological University National Research Foundation (NRF) Accepted version This research work was conducted in the Rolls-Royce@NTU Corporate Lab with funding support from the National Research Foundation (NRF), Rolls-Royce and Nanyang Technological University; under the Corp Lab@University Scheme. 2020-08-20T01:36:10Z 2020-08-20T01:36:10Z 2019 Conference Paper Liu, Y., Fei, F., See, K. Y., Liu, X., Lim, Z., Simanjorang, R., ... Lai, J.-S. (2018). Switching devices comparison and RC snubber for ringing suppression in one single leg T-type converter. Proceedings of the 2018 Asian Conference on Energy, Power and Transportation Electrification (ACEPT), 1-5. doi:10.1109/acept.2018.8610855 9781538681367 https://hdl.handle.net/10356/143305 10.1109/ACEPT.2018.8610855 2-s2.0-85062076993 1 5 en © 2018 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for all other uses, in any current or future media, including reprinting/republishing this material for advertising or promotional purposes, creating new collective works, for resale or redistribution to servers or lists, or reuse of any copyrighted component of this work in other works. The published version is available at: https://doi.org/10.1109/ACEPT.2018.8610855. application/pdf
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic Engineering::Electrical and electronic engineering
Single-leg T-type Converter
Double Pulse Testing
spellingShingle Engineering::Electrical and electronic engineering
Single-leg T-type Converter
Double Pulse Testing
Liu, Yong
Fei, Fan
See, Kye Yak
Liu, Xiong
Lim, Ziyou
Simanjorang, Rejeki
Pou, Josep
Gupta, Amit K.
Lai, Jih-Sheng
Switching devices comparison and RC snubber for ringing suppression in one single leg T-type converter
description In this paper, one single leg T-type converter with full silicon carbide (SiC) half-bridge power modules and hybrid power modules combined silicon carbide (SiC) with silicon (Si) power module, are designed and investigated. Firstly, the switching characteristics of Cree SiC device CAS300M12BM2 and Semikron SiC device SKM350MB120SCH17 single-leg T-Type converters are compared with double pulse testing (DPT). Then, to further investigate the performance, the hybrid power modules of the single leg T-type converter with Cree SiC device CAS300M12BM2 and Semikron Si device SKM300GM12T4 are built, which can increases the power density, compared to the full SiC devices T-type converter. To suppress the ringing of the middle leg switching device, the resistor-capacitor (RC) snubber are designed and demonstrated with DPT. Finally, the function testing of the hybrid single leg T-type converter are experimentally verified.
author2 School of Electrical and Electronic Engineering
author_facet School of Electrical and Electronic Engineering
Liu, Yong
Fei, Fan
See, Kye Yak
Liu, Xiong
Lim, Ziyou
Simanjorang, Rejeki
Pou, Josep
Gupta, Amit K.
Lai, Jih-Sheng
format Conference or Workshop Item
author Liu, Yong
Fei, Fan
See, Kye Yak
Liu, Xiong
Lim, Ziyou
Simanjorang, Rejeki
Pou, Josep
Gupta, Amit K.
Lai, Jih-Sheng
author_sort Liu, Yong
title Switching devices comparison and RC snubber for ringing suppression in one single leg T-type converter
title_short Switching devices comparison and RC snubber for ringing suppression in one single leg T-type converter
title_full Switching devices comparison and RC snubber for ringing suppression in one single leg T-type converter
title_fullStr Switching devices comparison and RC snubber for ringing suppression in one single leg T-type converter
title_full_unstemmed Switching devices comparison and RC snubber for ringing suppression in one single leg T-type converter
title_sort switching devices comparison and rc snubber for ringing suppression in one single leg t-type converter
publishDate 2020
url https://hdl.handle.net/10356/143305
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