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首页> 外文期刊>IEEE sensors journal >Modeling and Simulation of Ultrahigh Sensitive AlGaN/AlN/GaN HEMT-Based Hydrogen Gas Detector With Low Detection Limit
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Modeling and Simulation of Ultrahigh Sensitive AlGaN/AlN/GaN HEMT-Based Hydrogen Gas Detector With Low Detection Limit

机译:低检测极限超高敏感ALGAN / ALN / ALN / ALN / ALN / ALN氢气探测器的建模与仿真

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摘要

Presented through this work is a steady state analytical model of the GaN HEMT based gas detector. GaN with high chemical and thermal stability provides promises for detectors in hazardous environments. However, HEMT sensor resolution must be improved to develop high precision gas sensors for automotive and space applications. The proposed model aids in systematical study of the sensor performance and prediction of sensitivities. The linear relation of threshold voltage shift at thermal equilibrium is used in predicting the sensor response. Numerical model for the reaction rates and the electrical dipole at the adsorption sites at the surface and metal/semiconductor interface have been developed and the sensor performance is analyzed for various gas concentrations. The validation of the model has been achieved through surface and interfacial charge adsorption-based gate electrode work function, Schottky barrier, 2DEG and threshold voltage deduction using MATLAB and SILVACO ATLAS TCAD. Further the applicability of g(d)(channel conductance) as gas sensing metric is also presented. With high ID and gd percentile sensitivities of 118.5% and 92% for 10 ppm hydrogen concentration. The sensor shows capability for detection in sub-ppm levels by exhibiting a response of 0.043% for 0.01ppm (10 ppb) hydrogen concentration. The detection limit of the sensor (1% sensitivity) presented here is 169 ppb and the device current increases by 34.2 mu A for 1ppb hydrogen concentration.
机译:通过这项工作呈现,是GaN Hemt基汽油检测器的稳态分析模型。具有高化学和热稳定性的GaN提供了危险环境中的探测器的承诺。然而,必须改进HEMT传感器分辨率以开发用于汽车和空间应用的高精度气体传感器。所提出的模型辅助系统研究传感器性能和敏感性预测。热平衡时阈值电压偏移的线性关系用于预测传感器响应。已经开发了用于反应速率的数值模型和表面和金属/半导体界面的吸附位点处的电偶极子,分析了传感器性能,用于各种气体浓度。使用Matlab和Silvaco Atlas TCAD实现了通过表面和界面电荷吸附的栅电极功函数,肖特基屏障,2deg和阈值电压扣除来实现该模型的验证。此外,还提出了G(d)(通道电导)作为气体传感度量的适用性。高ID和GD百分位敏感性为118.5%和92%,持续10ppm氢浓度。传感器通过表现出0.043%的响应为0.01ppm(10ppb)氢浓度,显示出在亚ppm水平中检测的能力。这里呈现的传感器(1%灵敏度)的检测极限是169ppb,并且器件电流增加34.2μma,用于1ppb氢浓度。

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