Title :
Turn on switching losses analysis for Si and SiC diodes in induction heating inverters
Author :
Jordán, J. ; Magraner, J.M. ; Cases, C. ; Esteve, V. ; Dede, E. ; Sanchis, E. ; Maset, E. ; Ferreres, A. ; Ejea, J.B. ; Gumbau, Eva
Author_Institution :
Dept. d´´Eng. Electron., Univ. de Valencia, Valencia, Spain
Abstract :
In high frequency induction heating applications, the inverters used to generate the high frequency alternating current are implemented with MOSFET. In order to avoid the failure of the MOSFET intrinsic diode, each switch is formed by two extern diodes which are connected to the MOSFET, one in series, and the other one in anti-parallel with both devices. If the power regulation is achieved by using the frequency variation control strategy, the MOSFET turn-off causes the turn-on of the anti-parallel diode in the same arm of the inverter. In given conditions of load (null load), the MOSFET turns-off the maximum current. Hence the diode turns-on with maximum current. On switching losses in fast Silicon diodes cannot be neglected for switching frequencies around 400 kHz. In this paper, a solution to reduce the on switching losses in the diodes is proposed by replacing Si diodes by SiC diodes with similar characteristics. For this purpose, the on switching losses have been characterised for several Silicon Carbide diodes. Finally, the results were verified in a 25 kW inverter working at 400 kHz.
Keywords :
field effect transistor switches; induction heating; invertors; losses; power MOSFET; power semiconductor diodes; silicon compounds; voltage regulators; MOSFET; Si; SiC; frequency 400 kHz; frequency variation control; high frequency alternating current; induction heating inverter; intrinsic diode; power 25 kW; power regulation; turn on switching loss; AC generators; Diodes; Frequency; Induction generators; Inverters; MOSFET circuits; Power MOSFET; Silicon carbide; Switches; Switching loss; Induction heating; Resonant converter; SiC; eon;
Conference_Titel :
Power Electronics and Applications, 2009. EPE '09. 13th European Conference on
Conference_Location :
Barcelona
Print_ISBN :
978-1-4244-4432-8
Electronic_ISBN :
978-90-75815-13-9