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Model Development for Threshold Voltage Stability Dependent on High Temperature Operations in Wide-Bandgap GaN-Based HEMT Power Devices

机译:宽带隙GaN基HEMT功率器件中取决于高温操作的阈值电压稳定性的模型开发

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摘要

Temperature-dependent threshold voltage (Vth) stability is a significant issue in the practical application of semi-conductor power devices, especially when they are undergoing a repeated high-temperature operation condition. The Vth analytical model and its stability are dependent on high-temperature operations in wide-bandgap gallium nitride (GaN)-based high electron mobility transistor (HEMT) devices that were investigated in this work. The temperature effects on the physical parameters—such as barrier height, conduction band, and polarization charge—were analysed to understand the mechanism of Vth stability. The Vth analytical model under high-temperature operation was then proposed and developed to study the measurement temperatures and repeated rounds dependent on Vth stability. The validity of the model was verified by comparing the theoretical calculation data with the experimental measurement and technology computer-aided design (TCAD) simulation results. This work provides an effective theoretical reference on the Vth stability of power devices in practical, high-temperature applications.
机译:与温度有关的阈值电压(Vth)的稳定性在半导体功率器件的实际应用中是一个重要的问题,尤其是当它们经受反复的高温操作条件时。 Vth分析模型及其稳定性取决于在本研究中研究的基于宽带隙氮化镓(GaN)的高电子迁移率晶体管(HEMT)器件中的高温操作。分析了温度对物理参数(例如势垒高度,导带和极化电荷)的影响,以了解Vth稳定性的机制。然后提出并开发了高温操作下的Vth分析模型,以研究测量温度和取决于Vth稳定性的重复循环。通过将理论计算数据与实验测量和技术计算机辅助设计(TCAD)仿真结果进行比较,验证了模型的有效性。这项工作为功率器件在实际高温应用中的Vth稳定性提供了有效的理论参考。

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