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Solid-gap wine-glass mode disks VB-FET resonators applied to biomass sensing

机译:固体间隙酒杯模式磁盘VB-FET谐振器应用于生物质感测

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The working principle of an electromechanical resonator for mass sensing applications is based on monitoring the characteristic resonance frequency downshift due to the particles attachment on the surface of the device. Solid-Gap Vibrating-Body Field Effect Transistor (VB-FET) resonators offer an interesting solution for extreme biomass sensing due to their high motional current at resonance, their compatibility with Complementary Metal-Oxide-Semiconductor (CMOS) circuits, high reproducibility of characteristics and the possibility to have exploitable values of the quality factor (Q-factor) in air and liquid operation. In this work a detailed micromechanical analysis of VB-FET disk resonators is carried out, considering geometrical design parameters, geometrical variability, motional resistance for air and solid-gaps, Q-factor and variable particle-resonator sensing cases, permitting quantitative discussions on their suitability for biosensing. (C) 2015 Elsevier B.V. All rights reserved.
机译:用于质量传感应用的机电谐振器的工作原理是基于监视由于设备表面上的颗粒附着而导致的特性谐振频率下移。固体隙振动体场效应晶体管(VB-FET)谐振器由于在谐振时具有很高的运动电流,与互补金属氧化物半导体(CMOS)电路的兼容性以及特性的高再现性,因此为极端生物质感测提供了有趣的解决方案以及在空气和液体操作中具有可利用的品质因数(Q系数)值的可能性。在这项工作中,对VB-FET磁盘谐振器进行了详细的微机械分析,其中考虑了几何设计参数,几何可变性,空气和固体间隙的运动阻力,Q因子和可变粒子谐振器感应情况,从而允许对其进行定量讨论。适用于生物传感。 (C)2015 Elsevier B.V.保留所有权利。

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