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Measurement of Power Dissipation Due to Parasitic Capacitances of Power MOSFETs

Utkarsh Jadli, Faisal Mohd-Yasin, Hamid Amini Moghadam, Peyush Pande, Jordan R. Nicholls, Sima Dimitrijev

2020IEEE Access17 citationsDOIOpen Access PDF

Abstract

Analysis of the switching losses in a power MOSFET is crucial for the design of efficient power electronic systems. Currently, the state-of-the-art technique is based on measured drain current and drain-to-source voltage during the switching intervals. However, this technique does not separate the switching power due to the resistance of the MOSFET channel and due to the parasitic capacitances. In this paper, we propose a measurement method to extract the power dissipation due to the parasitic capacitances of a MOSFET, providing useful information for device selection and for the design of efficient power electronic systems. The proposed method is demonstrated on a basic boost converter. The proposed method shows that the existing method underestimates the turn-On losses by 41% and overestimates the turn-Off losses by 35%.

Topics & Concepts

MOSFETPower MOSFETDissipationElectrical engineeringParasitic capacitancePower (physics)Switched-mode power supplyElectronic engineeringCapacitancePower semiconductor deviceParasitic extractionVoltageComputer scienceEngineeringTransistorPhysicsQuantum mechanicsThermodynamicsElectrodeSilicon Carbide Semiconductor TechnologiesAdvanced DC-DC ConvertersElectromagnetic Compatibility and Noise Suppression
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