Enhanced Breakdown Voltage in GaN HEMTs Using Step-Graded AlGaN Buffer Layers

In this work, step-graded AlGaN buffer layers were introduced into GaN high-electron-mobility transistors to enhance their off-state voltage-blocking capability without intentional deep-level buffer doping. Hall measurements showed increased two-dimensional electron gas sheet densities, while the electron mobilities remained above 1550 cm2/V·s. The fabricated devices exhibited similar threshold voltages near −18 V and comparable pulsed output current densities. At approximately 1000 V, sample B showed an average drain leakage-current reduction of approximately 27.5% relative to sample A. The average breakdown voltage increased from 1540 V for the conventional GaN-buffer device to 1814 V for the optimized step-graded AlGaN-buffer device, corresponding to an enhancement of approximately 17.8%. TCAD simulations show that the step-graded buffer introduces a multi-step electron-blocking barrier and enhances vertical carrier confinement. Under high-voltage off-state conditions, it also redistributes the drain-side electrostatic potential and suppresses electron penetration into the buffer. In addition, dislocation-related trapping may also contribute to the improved off-state blocking performance. These results demonstrate that step-graded AlGaN buffers offer an effective approach for improving the breakdown performance of GaN HEMTs while largely preserving their conduction capability.

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Publication Details

Journal
Micromachines
Published
2026-09-30
DOI
https://doi.org/10.3390/mi17101141
Primary Topic
GaN-based semiconductor devices and materials
Type
article
Field-Weighted Citation Impact
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Enhanced Breakdown Voltage in GaN HEMTs Using Step-Graded AlGaN Buffer Layers

苏华科, Yue Hao, Hongchang Tao, Xu Liu et al.
Micromachines
GaN-based semiconductor devices and materials
article

Enhanced Breakdown Voltage in GaN HEMTs Using Step-Graded AlGaN Buffer Layers

苏华科, Yue Hao, Hongchang Tao, Xu Liu, Junchun Bai, Jincheng ZHANG
article en

Abstract

In this work, step-graded AlGaN buffer layers were introduced into GaN high-electron-mobility transistors to enhance their off-state voltage-blocking capability without intentional deep-level buffer doping. Hall measurements showed increased two-dimensional electron gas sheet densities, while the electron mobilities remained above 1550 cm2/V·s. The fabricated devices exhibited similar threshold voltages near −18 V and comparable pulsed output current densities. At approximately 1000 V, sample B showed an average drain leakage-current reduction of approximately 27.5% relative to sample A. The average breakdown voltage increased from 1540 V for the conventional GaN-buffer device to 1814 V for the optimized step-graded AlGaN-buffer device, corresponding to an enhancement of approximately 17.8%. TCAD simulations show that the step-graded buffer introduces a multi-step electron-blocking barrier and enhances vertical carrier confinement. Under high-voltage off-state conditions, it also redistributes the drain-side electrostatic potential and suppresses electron penetration into the buffer. In addition, dislocation-related trapping may also contribute to the improved off-state blocking performance. These results demonstrate that step-graded AlGaN buffers offer an effective approach for improving the breakdown performance of GaN HEMTs while largely preserving their conduction capability.

MicromachinesVol. 17(10)
Xidian University (CN)
Affordable and clean energy
Openalex Percentile: Top 18%
GaN-based semiconductor devices and materials
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Enhanced Breakdown Voltage in GaN HEMTs Using Step-Graded AlGaN Buffer Layers — 苏华科, Yue Hao, et al. · Micromachines (2026) | TGRS Research Map | TGRS