A Split-Gate 4H-SiC MOSFET with a Raised Central Implant and a Stepped Schottky Contact

To address the tradeoff between the gate oxide electric field and specific on-resistance in split-gate 4H-SiC MOSFETs, as well as the poor reverse recovery performance of the parasitic body diode, a split-gate MOSFET with a raised central implanted region and a stepped Schottky contact is proposed. The raised central P-type implanted region reduces its restriction on the JFET current path; the integrated Schottky contact improves the third-quadrant performance, while the stepped geometry reduces the electric field near the Schottky contact region. TCAD simulation results show that, with a raised height of 0.33 μm, the proposed device achieves a specific on-resistance of 4.69 mΩ·cm2 and a maximum gate oxide electric field of 2.93 MV/cm. The high-frequency figure of merit (HFOM) is reduced to 290.46 mΩ·nC, while the reverse recovery charge is reduced to 676.00 nC/cm2. Compared with a conventional Schottky contact, the stepped contact reduces the electric field at the critical contact location by 62.4%. These results demonstrate that the proposed device improves the conduction, gate-charge, and reverse recovery characteristics while maintaining its breakdown capability.

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Publication Details

Journal
Micromachines
Published
2026-09-30
DOI
https://doi.org/10.3390/mi17101151
Primary Topic
Silicon Carbide Semiconductor Technologies
Type
article
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article

A Split-Gate 4H-SiC MOSFET with a Raised Central Implant and a Stepped Schottky Contact

Kai Zheng, Yansheng Zou, Kai Xiao, Han Xu et al.
Micromachines
Silicon Carbide Semiconductor Technologies
article

A Split-Gate 4H-SiC MOSFET with a Raised Central Implant and a Stepped Schottky Contact

Kai Zheng, Yansheng Zou, Kai Xiao, Han Xu, Chaojun Ming, Shuming Tan, Qian Chen
article en

Abstract

To address the tradeoff between the gate oxide electric field and specific on-resistance in split-gate 4H-SiC MOSFETs, as well as the poor reverse recovery performance of the parasitic body diode, a split-gate MOSFET with a raised central implanted region and a stepped Schottky contact is proposed. The raised central P-type implanted region reduces its restriction on the JFET current path; the integrated Schottky contact improves the third-quadrant performance, while the stepped geometry reduces the electric field near the Schottky contact region. TCAD simulation results show that, with a raised height of 0.33 μm, the proposed device achieves a specific on-resistance of 4.69 mΩ·cm2 and a maximum gate oxide electric field of 2.93 MV/cm. The high-frequency figure of merit (HFOM) is reduced to 290.46 mΩ·nC, while the reverse recovery charge is reduced to 676.00 nC/cm2. Compared with a conventional Schottky contact, the stepped contact reduces the electric field at the critical contact location by 62.4%. These results demonstrate that the proposed device improves the conduction, gate-charge, and reverse recovery characteristics while maintaining its breakdown capability.

MicromachinesVol. 17(10)
Chongqing University (CN), Chongqing University of Science and Technology (CN), China Southern Power Grid (China) (CN)
Openalex Percentile: Top 22%
Silicon Carbide Semiconductor Technologies
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