Reduction of Intra-system Common-mode Electromagnetic Interference in Enclosed Wide-bandgap Four-pole Boost Converter
Tianchen Li, Jacob Gudex, Joseph Lentz, Mark Vygoder, Robert Cuzner, Jason Katcha
Abstract
Tianchen Li, Jacob Gudex, Joseph Lentz, Mark Vygoder, Robert Cuzner, Jason Katcha
Abstract
This article demonstrates the reduction of electro-magnetic interference (EMI) in an enclosed high-power-density wide-bandgap (WBG) four-pole DC to DC boost converter. The authors introduce a new methodology for characterizing the EMI in WBG power electronics. The converter's physically compact design and its enclosure induce a problematic level of common-mode EMI that leads to failure of electromagnetic compatibility (EMC) compliance tests. Utilizing common-mode equivalent modeling (CEM) and rapid frequency-domain circuit analysis, this methodology allows the designer to assess the common-mode EMI problem independently from the mixedmode measurements and design an optimized filter accordingly.
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This article demonstrates the reduction of electro-magnetic interference (EMI) in an enclosed high-power-density wide-bandgap (WBG) four-pole DC to DC boost converter. The authors introduce a new methodology for characterizing the EMI in WBG power electronics. The converter's physically compact design and its enclosure induce a problematic level of common-mode EMI that leads to failure of electromagnetic compatibility (EMC) compliance tests. Utilizing common-mode equivalent modeling (CEM) and rapid frequency-domain circuit analysis, this methodology allows the designer to assess the common-mode EMI problem independently from the mixedmode measurements and design an optimized filter accordingly.
Key concepts: EMI, Electromagnetic interference, Common-mode signal, Electromagnetic compatibility, Conducted electromagnetic interference, Electronic engineering, Electrical engineering, Enclosure