基于hemm的多悬臂谐振传感器

I. Khmyrova, Elena Shestakova
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引用次数: 5

摘要

本文提出了一种基于微机械高电子迁移率晶体管(HEMT)的谐振传感器,该传感器采用多个悬浮谐振悬臂梁作为浮门,并建立了其解析和集总等效电路模型。提出的基于hemt的多悬臂谐振传感器可以实现静电驱动和电读出。悬臂梁的质量吸收导致其机械谐振频率的变化。这种悬臂梁的机械振荡由电激发来控制源极-漏极电流。因此,其谐振频移可以检测为源极漏极电流谐振峰的频移。每个悬臂梁和机电换能器的机械振荡由相应的电路元件表示。利用Is-Spice软件对多悬臂梁谐振传感器的等效电路进行了频率响应仿真。模拟结果表明,对于相同悬臂梁阵列,源漏电流增强,且在单一频率处有峰值。在多个不同悬臂梁的情况下,模拟的源漏电流在与悬臂梁的机械共振相对应的频率处显示出峰值,正如预期的那样。
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Multi-cantilever HEMT-based resonant sensor
In this paper resonant sensor based on micro-machined high-electron mobility transistor (HEMT) in which multiple suspended resonant cantilevers serve as floating gates is proposed and its analytical and lumped equivalent circuit models are developed. The proposed HEMT-based multi-cantilever resonant sensor enables electrostatic actuation and electrical readout. Mass absorption by a cantilever results in the change in its mechanical resonant frequency. Mechanical oscillations of such a cantilever excited electrically control the source-drain current. Thus, its resonant frequency shift can be detected as a frequency shift in the resonant peak of the source-drain current. Mechanical oscillations of each cantilever and electromechanical transducer are represented by relevant circuit components. The developed equivalent circuit of multi-cantilever resonant sensor was used to simulate its frequency response using Is-Spice software. The simulation reveals an enhanced source-drain current with a peak at a single frequency for the array of the identical cantilevers. In the case of multiple different cantilevers the simulated source-drain current reveals peaks at frequencies corresponding to mechanical resonances of the cantilevers, as expected.
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