International audienceThis paper presents a model of a power converter with SiC components in order to predict the conducted perturbation that it generates (at the LISN level). Some methods to create a model of any passive elements (parasitic capacitance and inductance, decoupling capacitors, load, LISN) as an equivalent circuit are shown. Finally the complete model of the converter is presented and confronted to experimental measurements. Comparisons show a good behaviour until 30MHz
In this paper operating analysis of DC–DC converter is presented. Silicon Carbide based DC–DC conver...
Abstract: This paper deals with conducted Electromagnetic Interference (EMI) produced by power elect...
The growing use of electric vehicles is requiring the implementation of power electronics applicatio...
In this paper, the EMC behaviour of a switching cell is studied in a standardized environment, using...
International audienceThe reduced switching times of silicon carbide (SiC) components compared to Si...
The recent technological progress of semiconductors and increasing demand for power electronic conve...
International audienceA Model dedicated to EMI prediction in a DC-DC converter is presented in this ...
International audienceThis paper presents a "black box" model for EMC prediction of power electronic...
Silicon Carbide (SiC) power semiconductor devices achieve low switching losses with fast switching o...
High power density is the primary design consideration for power converters in more electric aircraf...
Abstract This paper presents a "black box " model for EMC prediction of power electronics ...
Isolated DC-DC converters are widely used for electric vehicle applications. The fast power electron...
International audienceThis paper presents different ways of modeling the EMC behavior of power elect...
International audienceThe presence of numerous power electronics converters on embedded networks, or...
International audienceThis paper deals with system level EMC models for power electronics converter,...
In this paper operating analysis of DC–DC converter is presented. Silicon Carbide based DC–DC conver...
Abstract: This paper deals with conducted Electromagnetic Interference (EMI) produced by power elect...
The growing use of electric vehicles is requiring the implementation of power electronics applicatio...
In this paper, the EMC behaviour of a switching cell is studied in a standardized environment, using...
International audienceThe reduced switching times of silicon carbide (SiC) components compared to Si...
The recent technological progress of semiconductors and increasing demand for power electronic conve...
International audienceA Model dedicated to EMI prediction in a DC-DC converter is presented in this ...
International audienceThis paper presents a "black box" model for EMC prediction of power electronic...
Silicon Carbide (SiC) power semiconductor devices achieve low switching losses with fast switching o...
High power density is the primary design consideration for power converters in more electric aircraf...
Abstract This paper presents a "black box " model for EMC prediction of power electronics ...
Isolated DC-DC converters are widely used for electric vehicle applications. The fast power electron...
International audienceThis paper presents different ways of modeling the EMC behavior of power elect...
International audienceThe presence of numerous power electronics converters on embedded networks, or...
International audienceThis paper deals with system level EMC models for power electronics converter,...
In this paper operating analysis of DC–DC converter is presented. Silicon Carbide based DC–DC conver...
Abstract: This paper deals with conducted Electromagnetic Interference (EMI) produced by power elect...
The growing use of electric vehicles is requiring the implementation of power electronics applicatio...