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Analytical Model on the Threshold Voltage of Charge-Trap-Based Hybrid Gate-Stack GaN MIS-HEMT

作者:Tianqi Pan, Bin Hou, Ling Yang, Jiale Du, Kaiwen Chen, Yifan Chen, Hailin Liu, Mei Wu, Meng Zhang, Hao Lu, Mao Jia, Xiaohua Ma, Yue Hao · 发表于:IEEE Transactions on Electron Devices · 年份:2026 · DOI:10.1109/ted.2026.3680860 · 被引用次数:1 · 研究领域:GaN-based semiconductor devices and materials、Silicon Carbide Semiconductor Technologies、Advanced Power Amplifier Design

In this article, we introduce a new analytical model for determining the threshold voltage (${V} {_{\text {TH}}}$) in charge-trap-based hybrid gate-stack enhancement-mode (E-mode) AlGaN/GaN MIS-high electron mobility transistors (HEMTs). The${V} {_{\text {TH}}}$expression is derived by simultaneously solving the potential balance and interfacial Gauss equations based on band and charge distribution analyses, with the stored charge in the charge-trapping layer (CTL) evaluated considering both Wentzel–Kramers–Brillouin (WKB)-based tunneling and thermally activated emission probabilities. The model examines how${V} {_{\text {TH}}}$depends on structural parameters across three CTL thickness regimes: thin, where CTL thickness has minimal effect, but the blocking layer thickness dominates; intermediate, where both CTL thickness and trapped charge influence${V} {_{\text {TH}}}$; and thick, where trapped charge is negligible and${V} {_{\text {TH}}}$decreases linearly with increasing CTL thickness. The model’s accuracy was validated by TCAD simulation, and the dependence of${V} {_{\text {TH}}}$on various initialization voltages and temperature was analyzed. The results offer valuable guidance for optimizing the structure and designing charge-trap-based hybrid gate-stack E-mode GaN MIS-HEMTs.