Edge Termination Optimization of a 6.5 kV SiC PiN Diode with a P-type Epitaxial Layer

A breakdown voltage of 9.2 kV with an improved JTE dose window was achieved in a 6.5 kV SiC PiN diode with a p-type epitaxial layer using an optimized edge termination. Since the etching profile and charge balance critically affect the electric field distribution in high voltage structures, the effects of single and double etched structures were first investigated, followed by the optimization of SZ-JTE and RA-JTE. To further improve the edge termination characteristics, a Hybrid-JTE incorporating MFZ-JTE was developed based on the optimized RA-JTE structure. The optimized Hybrid-JTE achieved a breakdown voltage of 9.2 kV and exhibited enhanced tolerance to JTE dose variation.

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Publication Details

Journal
The Transactions of The Korean Institute of Electrical Engineers
Published
2026-09-28
DOI
https://doi.org/10.5370/kiee.2026.75.9.2151
Primary Topic
Silicon Carbide Semiconductor Technologies
Type
article
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article

Edge Termination Optimization of a 6.5 kV SiC PiN Diode with a P-type Epitaxial Layer

석오균, Junki Jung, Sumin Park, Hyerin Ju
The Transactions of The Korean Institute of Electrical Engineers
Silicon Carbide Semiconductor Technologies
article

Edge Termination Optimization of a 6.5 kV SiC PiN Diode with a P-type Epitaxial Layer

석오균, Junki Jung, Sumin Park, Hyerin Ju
article en

Abstract

A breakdown voltage of 9.2 kV with an improved JTE dose window was achieved in a 6.5 kV SiC PiN diode with a p-type epitaxial layer using an optimized edge termination. Since the etching profile and charge balance critically affect the electric field distribution in high voltage structures, the effects of single and double etched structures were first investigated, followed by the optimization of SZ-JTE and RA-JTE. To further improve the edge termination characteristics, a Hybrid-JTE incorporating MFZ-JTE was developed based on the optimized RA-JTE structure. The optimized Hybrid-JTE achieved a breakdown voltage of 9.2 kV and exhibited enhanced tolerance to JTE dose variation.

The Transactions of The Korean Institute of Electrical EngineersVol. 75(9)
Affordable and clean energy
Openalex Percentile: Top 22%
Silicon Carbide Semiconductor Technologies
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