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Fast high-power thyristors triggered in impact-ionization wave mode

GTO-like thyristors 5STH-2045H0002 (4.5 kV, 18 kA/μ s) developed by ABB semiconductors are currently used at CERN in LHC Beam Dumping System (LBDS): high-power switches with high dI/dt capability and low turn-on delay time are required. Implementation of the impact-ionization triggering in GTO-like...

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Autores principales: Gusev, A., Lyubutin, S., Patrakov, V., Rukin, S., Slovikovsky, B., Barnes, M.J., Kramer, T., Senaj, V.
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1748-0221/14/10/P10006
http://cds.cern.ch/record/2697432
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author Gusev, A.
Lyubutin, S.
Patrakov, V.
Rukin, S.
Slovikovsky, B.
Barnes, M.J.
Kramer, T.
Senaj, V.
author_facet Gusev, A.
Lyubutin, S.
Patrakov, V.
Rukin, S.
Slovikovsky, B.
Barnes, M.J.
Kramer, T.
Senaj, V.
author_sort Gusev, A.
collection CERN
description GTO-like thyristors 5STH-2045H0002 (4.5 kV, 18 kA/μ s) developed by ABB semiconductors are currently used at CERN in LHC Beam Dumping System (LBDS): high-power switches with high dI/dt capability and low turn-on delay time are required. Implementation of the impact-ionization triggering in GTO-like thyristor enhances its switching performance and gives new information about semiconductor physics. In this work thyristors of 5STH-2045H0002 type triggered in impact-ionization wave mode are investigated. A semiconductor opening switch (SOS) generator providing a dV/dt of several kV/ns was used as a source of triggering pulses. A thyristor switching time of approximately 200–300 ps was observed. Maximum discharge parameters were obtained for two series connected thyristors at a charging voltage of 10 kV, and a capacitor stored energy of 300 J: peak current of 43 kA, dI/dt of 120 kA/μs (limited by the discharge circuit), Full Width at Half Maximum (FWHM) of 1.5 μs. A single thyristor was tested in the repetitive mode at the charging voltage of 4.2 kV, and the stored energy of 18 J: peak current of 5.5 kA, dI/dt of 40 kA/μs, FWHM of 1.5 μs were obtained. No thyristor degradation was observed after more than one million pulses at a PRF up to 1 kHz in burst mode. Thyristor recovery time was 250 μs. The switching efficiency was up to 98% depending on dV/dt and stored energy.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
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spelling cern-26974322020-02-01T03:23:40Zdoi:10.1088/1748-0221/14/10/P10006http://cds.cern.ch/record/2697432engGusev, A.Lyubutin, S.Patrakov, V.Rukin, S.Slovikovsky, B.Barnes, M.J.Kramer, T.Senaj, V.Fast high-power thyristors triggered in impact-ionization wave modephysics.acc-phAccelerators and Storage Ringsphysics.ins-detDetectors and Experimental TechniquesGTO-like thyristors 5STH-2045H0002 (4.5 kV, 18 kA/μ s) developed by ABB semiconductors are currently used at CERN in LHC Beam Dumping System (LBDS): high-power switches with high dI/dt capability and low turn-on delay time are required. Implementation of the impact-ionization triggering in GTO-like thyristor enhances its switching performance and gives new information about semiconductor physics. In this work thyristors of 5STH-2045H0002 type triggered in impact-ionization wave mode are investigated. A semiconductor opening switch (SOS) generator providing a dV/dt of several kV/ns was used as a source of triggering pulses. A thyristor switching time of approximately 200–300 ps was observed. Maximum discharge parameters were obtained for two series connected thyristors at a charging voltage of 10 kV, and a capacitor stored energy of 300 J: peak current of 43 kA, dI/dt of 120 kA/μs (limited by the discharge circuit), Full Width at Half Maximum (FWHM) of 1.5 μs. A single thyristor was tested in the repetitive mode at the charging voltage of 4.2 kV, and the stored energy of 18 J: peak current of 5.5 kA, dI/dt of 40 kA/μs, FWHM of 1.5 μs were obtained. No thyristor degradation was observed after more than one million pulses at a PRF up to 1 kHz in burst mode. Thyristor recovery time was 250 μs. The switching efficiency was up to 98% depending on dV/dt and stored energy.GTO-like thyristors 5STH-2045H0002 (4.5 kV, 18 kA/us) developed by ABB semiconductors are currently used at CERN in LHC Beam Dumping System (LBDS): high-power switches with high dI/dt capability and low turn-on delay time are required. Implementation of the impact-ionization triggering in GTO-like thyristor enhances its switching performance and gives new information about semiconductor physics. In this work thyristors of 5STH-2045H0002 type triggered in impact-ionization wave mode are investigated. An SOS generator providing a dV/dt of several kV/ns was used as a source of triggering pulses. A thyristor switching time of approximately 200-300 ps was observed. Maximum discharge parameters were obtained for two series connected thyristors at a charging voltage of 10 kV, and a capacitor stored energy of ~300 J: peak current of 43 kA, dI/dt of 120 kA/us (limited by the discharge circuit), FWHM of 1.5 us. A single thyristor was tested in the repetitive mode at the charging voltage of 4.2 kV, and the stored energy of 18 J: peak current of 5.5 kA, dI/dt of 40 kA/us, FWHM of 1.5 us were obtained. No thyristor degradation was observed after more than one million pulses at a PRF up to 1 kHz in burst mode. Thyristor recovery time was ~250 us. The switching efficiency was up to 98% depending on dV/dt and stored energy.arXiv:1907.10382oai:cds.cern.ch:26974322019-07-24
spellingShingle physics.acc-ph
Accelerators and Storage Rings
physics.ins-det
Detectors and Experimental Techniques
Gusev, A.
Lyubutin, S.
Patrakov, V.
Rukin, S.
Slovikovsky, B.
Barnes, M.J.
Kramer, T.
Senaj, V.
Fast high-power thyristors triggered in impact-ionization wave mode
title Fast high-power thyristors triggered in impact-ionization wave mode
title_full Fast high-power thyristors triggered in impact-ionization wave mode
title_fullStr Fast high-power thyristors triggered in impact-ionization wave mode
title_full_unstemmed Fast high-power thyristors triggered in impact-ionization wave mode
title_short Fast high-power thyristors triggered in impact-ionization wave mode
title_sort fast high-power thyristors triggered in impact-ionization wave mode
topic physics.acc-ph
Accelerators and Storage Rings
physics.ins-det
Detectors and Experimental Techniques
url https://dx.doi.org/10.1088/1748-0221/14/10/P10006
http://cds.cern.ch/record/2697432
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