Development of a current source resonant inverter for high current MHz induction heating

Author:

Aunsborg Thore S.12ORCID,Duun Sune Bro2,Munk‐Nielsen Stig1,Uhrenfeldt Christian1

Affiliation:

1. Department of Energy Technology Aalborg University Aalborg Denmark

2. Topsil GlobalWafers Frederikssund Denmark

Funder

Innovationsfonden

Publisher

Institution of Engineering and Technology (IET)

Subject

Electrical and Electronic Engineering

Reference36 articles.

1. Dede E.J. Jordan J. Esteve V.:State‐of‐the art and future trends in transistorised inverters for induction heating applications. In:Proceedings of the Fifth IEEE International Caracas Conference on Devices Circuits and Systems pp.204–211.IEEE Piscataway(2004)

2. Richardson Electronics:Dielectric heating.https://www.relltubes.com/filebase/en/src/Brochure/DielectricBrochure_FINAL_LR_051412.pdf.

3. Simon C. Eizaguirre S. Denk F. Heidinger M. Kling R. Heering W.:SiC 2.5 MHz switching mode resonant halfbridge inverter. In:Power Conversion and Intelligent Motion Europe pp.1644–1651.IEEE Piscataway(2018)

4. Guo S. Zhang L. Lei Y. Li X. Xue F. Yu W. et al.:3.38 Mhz operation of 1.2kV SiC MOSFET with integrated ultra‐fast gate drive. In:IEEE Workshop on Wide Bandgap Power Devices and Applications pp.390–395.IEEE Piscataway(2015)

5. Ghodke D.V. Khachane P. Senecha V.K. Kulkarni V. Joshi S.C.:Simulation & development of high power Class‐D 2 MHz 4 kW RF source for RF based H‐Ion source. In:International Conference on Devices Circuits and Systems (ICDCS) pp.10–13.IEEE Piscataway(2016)

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1. Modeling and Operation of Series-Parallel Resonant Load in Industrial RF Dielectric Heating Application;IEEE Transactions on Industry Applications;2023-07

2. Multi-cell Operation of Class-PN at 6.78 MHz using GaN Devices for Industrial Dielectric Heating;2023 11th International Conference on Power Electronics and ECCE Asia (ICPE 2023 - ECCE Asia);2023-05-22

3. Loss Imbalance in SiC Half-Bridge Power Module;2023 IEEE 6th International Electrical and Energy Conference (CIEEC);2023-05-12

4. A Comparative Evaluation of Wide-Bandgap Semiconductors for High-Performance Domestic Induction Heating;Energies;2023-05-09

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