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Future power electronics systems will be based on the emerging wide bandgap devices. These new devices are faster, can sustain higher temperatures and have better blocking capabilities. The faster risetimes for the wide bandgap components yield signals with a higher frequency content, entering the GHz range. With frequencies in this range, it becomes immensely difficult for the designer to be certain that any unwanted resonances are not triggered when the first prototype is tested. Any potential coupling between different circuit elements also needs to receive higher attention as the high frequency content can cause large currents to flow in the surrounding equipment.
However, by considering conducted and radiated noise as an early part in the design phase through the use of finite element analysis an even more descriptive simulation of the circuit including its physical configuration can be made. Using the simulation an indication of any potential resonances and parasitic coupling between different planes, traces or casings can be obtained. This information can be utilized to make the needed adjustments to the design prior to assembling the first prototypes. Thus, some of the time spent on experimentally testing whether the design suffer from unwanted couplings and resonances can be saved.
Funding: Poul Due Jensen Foundation
Status | Afsluttet |
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Effektiv start/slut dato | 01/09/2021 → 31/08/2024 |
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Projekter
- 1 Igangværende
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CoDE: Center of Digitalized Electronics (CoDE)
Munk-Nielsen, S. (PI (principal investigator)), Jørgensen, A. B. (CoPI), Uhrenfeldt, C. (CoPI), Beczkowski, S. M. (Projektdeltager), Ahmad, F. (Projektdeltager), Meinert, J. D. (Projektdeltager), Kubulus, P. P. (Projektdeltager), Takahashi, M. (Projektdeltager), Sun, Z. (Projektdeltager), Wang, R. (Projektdeltager), Gao, Y. (Projektdeltager), Zäch, M. R. (Projektdeltager), Meyer, S. (Projektdeltager), Liccardi, S. (Projektdeltager), Kristensen, N. H. (Projektdeltager) & Steffensen, B. (Projektkoordinator)
01/01/2021 → 31/12/2026
Projekter: Projekt › Forskning
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A FEM Approach for Mitigating Magnetic Crosstalk for an Embedded Current Sensor
Meinert, J. D., Beczkowski, S., Luan, S., Andersen, M. A. E., Munk-Nielsen, S. & Jørgensen, A. B., 2 sep. 2024, ECCE Europe 2024 - Energy Conversion Congress and Expo Europe, Proceedings. IEEE (Institute of Electrical and Electronics Engineers), 6 s.Publikation: Bidrag til bog/antologi/rapport/konference proceeding › Konferenceartikel i proceeding › Forskning › peer review
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Inductive Crosstalk Study of Embedded Current Sensor for SiC Die Current Measurement
Meinert, J. D., Jorgensen, A. B., Munk-Nielsen, S., Beczkowski, S. M. & Andersen, M. A. E., dec. 2024, I: IEEE Journal of Emerging and Selected Topics in Power Electronics. 12, 6, s. 5523-5533 11 s.Publikation: Bidrag til tidsskrift › Tidsskriftartikel › Forskning › peer review
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Embedded Current Sensor for SiC Die Current Measurement
Meinert, J. D., Beczkowski, S. M., Kubulus, P. P., Munk-Nielsen, S. & Jørgensen, A. B., 9 maj 2023, PCIM Europe 2023: International Exhibition and Conference for Power Electronics, Intelligent Motion, Renewable Energy and Energy Management 09 – 11 May 2023, Nuremberg. VDE Verlag GMBH, s. 1278-1285 8 s.Publikation: Bidrag til bog/antologi/rapport/konference proceeding › Konferenceartikel i proceeding › Forskning › peer review
Åben adgangFil3 Citationer (Scopus)139 Downloads (Pure)