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Refining Accuracy: A Quasi-Floating Channel SPICE Model for Third-Quadrant SiC MOSFET Analysis in Both Planar and Trench Structures
會議論文集

Refining Accuracy: A Quasi-Floating Channel SPICE Model for Third-Quadrant SiC MOSFET Analysis in Both Planar and Trench Structures

Fu-Jen Hsu, Ting-Fu Chang, Hsiang-Ting Hung, Cheng-Tyng Yen 和 Chih-Fang Huang
Proceedings of the International Symposium on Power Semiconductor Devices & ICs, 頁碼.72-75
02/06/2024
Web of Science ID: WOS:001270353500040

摘要

Accuracy Analytical models Body diode Computational modeling MOSFET Semiconductor device modeling SiC Silicon carbide SPICE Switches Third quadrant
This paper presents an improved SPICE model for SiC MOSFETs. We introduce a model dividing SiC MOSFET operation into a PN diode and a quasi-floating channel (QFC) model, specifically addressing the third quadrant operational mode. This approach significantly reduces root mean square error in I_(D)-V_(D) characteristics compared to conventional models, as demonstrated by experimental data from dynamic switching experiments and comparative analysis. The proposed model exhibits a marked improvement in replicating real-world operational dynamics of SiC MOSFETs, especially in dynamic scenarios. With a maximum 95% reduction in RMSE and enhanced computational efficiency, the model is established as a valuable tool for advanced SiC MOSFET simulation and analysis, impacting the efficiency, performance, and reliability of power electronic systems.

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