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首页> 外文期刊>ACS Omega >Thermodynamic Studies of β-Ga2O3 Nanomembrane Field-Effect Transistors on a Sapphire Substrate
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Thermodynamic Studies of β-Ga2O3 Nanomembrane Field-Effect Transistors on a Sapphire Substrate

机译:蓝宝石衬底上β-Ga 2 O 3 纳米膜场效应晶体管的热力学研究

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The self-heating effect is a severe issue for high-power semiconductor devices, which degrades the electron mobility and saturation velocity, and also affects the device reliability. On applying an ultrafast and high-resolution thermoreflectance imaging technique, the direct self-heating effect and surface temperature increase phenomenon are observed on novel top-gate β-Ga_(2)O_(3) on insulator field-effect transistors. Here, we demonstrate that by utilizing a higher thermal conductivity sapphire substrate rather than a SiO_(2)/Si substrate, the temperature rise above room temperature of β-Ga_(2)O_(3) on the insulator field-effect transistor can be reduced by a factor of 3 and thereby the self-heating effect is significantly reduced. Both thermoreflectance characterization and simulation verify that the thermal resistance on the sapphire substrate is less than 1/3 of that on the SiO_(2)/Si substrate. Therefore, maximum drain current density of 535 mA/mm is achieved on the sapphire substrate, which is 70% higher than that on the SiO_(2)/Si substrate due to reduced self-heating. Integration of β-Ga_(2)O_(3) channel on a higher thermal conductivity substrate opens a new route to address the low thermal conductivity issue of β-Ga_(2)O_(3) for power electronics applications.
机译:对于高功率半导体器件,自热效应是一个严重的问题,它会降低电子迁移率和饱和速度,并影响器件的可靠性。应用超快速高分辨率热反射成像技术,在绝缘体场效应晶体管上的新型顶栅β-Ga_(2)O_(3)上观察到直接自热效应和表面温度升高现象。在这里,我们证明,通过使用更高导热率的蓝宝石衬底而不是SiO_(2)/ Si衬底,绝缘体场效应晶体管上的β-Ga_(2)O_(3)室温以上的温度升高可以达到降低了三分之一,因此自热效应显着降低。热反射特性和仿真均验证了蓝宝石衬底上的热阻小于SiO_(2)/ Si衬底上的热阻的1/3。因此,在蓝宝石衬底上实现了535 mA / mm的最大漏极电流密度,由于降低了自身发热,该密度比SiO_(2)/ Si衬底上的最大漏极电流密度高70%。在更高导热率的基板上集成β-Ga_(2)O_(3)通道为解决电力电子应用中β-Ga_(2)O_(3)的低导热率问题开辟了一条新途径。

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