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Enhancing Continuous Switching Stability of β-Ga2O3 SBDs through Epitaxial Surface Condition and Edge Termination Optimizations
會議論文

Enhancing Continuous Switching Stability of β-Ga2O3 SBDs through Epitaxial Surface Condition and Edge Termination Optimizations

Haoran Wang, Chi-Rui Hwang, Po-Yen Huang, Yeke Liu, Shawn Shuo-Hung Hsu 和 Roy King-Yuen Wong
Proceedings of the International Symposium on Power Semiconductor Devices & ICs, 頁碼.365-368
Proceedings of the International Symposium on Power Semiconductor Devices & ICs, IEEE
International Symposium on Power Semiconductor Devices and IC's (Kumamoto-Jo Hall, Kumamoto, Japan, 01/06/2025–05/06/2025)
01/06/2025
Web of Science ID: WOS:001569348600092

摘要

Edge termination Surface optimization Gallium oxide Schottky barrier Dynamic Stability
This study addresses the stability issue of beta-Ga2O3 Schottky barrier diodes (SBDs) under continuous switching stress. By optimizing epitaxial surface conditions and implementing Nitrogen-implanted edge termination (ET), devices exhibit enhanced static and dynamic stability. Static results reveal the reverse voltage of > 1 kV (at 0.01 A/cm(2)) and a Baliga figure of merit (BFOM) of over 169 MW/cm(2). A continuous switching stress test was conducted, which is intended to provide guidance on system-level implications, demonstrating negligible turn-on voltage (V-on) shift (< 50 mV) and current collapse (< 0.8%) under stress voltage (V-stress)of -300 V (125 degrees C), attributed to the reduced surface oxygen vacancies (52% lower) and suppressed electric field crowding by ET. X-ray photoelectron spectra (XPS) depth profile reveals a reduction of interface NiOx TCAD simulations confirm the relocation of peak electric fields to the bulk, mitigating surfacerelated V-on shift. This paper figures out the key factors for enhancing static and dynamic performance of beta-Ga2O3 SBDs in high temperature high-voltage power switching applications.

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