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高效宽范围可调谐微机电系统滤波器的设计与表征方法

Design and Characterization Methodology for Efficient Wide Range Tunable MEMS Filters.

作者信息

Goktas Hasan

机构信息

Department of Electrical and Electronic Engineering, Harran University;

出版信息

J Vis Exp. 2018 Feb 4(132):56371. doi: 10.3791/56371.

Abstract

Here, we demonstrate the advantages of the laser Doppler vibrometer (LDV) over conventional techniques (the network analyzer), as well as the techniques to create an application-based microelectromechanical systems (MEMS) filter and how to use it efficiently (i.e., tuning the tuning-capability and avoiding both failure and stiction). LDV enables crucial measurements that are impossible with the network analyzer, such as higher mode detection (highly sensitive biosensor application) and resonance measurement for very small devices (fast prototyping). Accordingly, LDV was used to characterize the frequency tuning range and resonance frequency at different modes of the MEMS filters built for this study. This wide range frequency tuning mechanism is based simply on Joule heating from the embedded heaters and relatively high thermal stress with respect to the temperature of a fixed-fixed beam. However, we demonstrate that another limitation of this method is the resulting high thermal stress, which can burn the devices. Further improvement was achieved and shown for the first time in this study, such that the tuning capability was increased by 32% through an increase in the applied DC bias voltage (25 V to 35 V) between the two adjacent beams. This important finding eliminates the need for the extra Joule heating at the wider frequency tuning range. Another possible failure is through stiction and requirement of structure optimization: We propose a simple and easy technique of low frequency square wave signal application that can successfully separate the beams and eliminates the need for the more sophisticated and complicated methods given in the literature. The above findings necessitate a design methodology, and so we also provide an application-based design.

摘要

在此,我们展示了激光多普勒振动计(LDV)相对于传统技术(网络分析仪)的优势,以及创建基于应用的微机电系统(MEMS)滤波器的技术及其有效使用方法(即调整调谐能力并避免故障和粘连)。LDV能够进行网络分析仪无法实现的关键测量,例如更高模式检测(高灵敏度生物传感器应用)以及非常小的器件的共振测量(快速原型制作)。因此,LDV被用于表征为本研究构建的MEMS滤波器在不同模式下的频率调谐范围和共振频率。这种宽范围频率调谐机制仅基于嵌入式加热器产生的焦耳热以及相对于固定固定梁温度的较高热应力。然而,我们证明该方法的另一个局限性是由此产生的高热应力,这可能会烧毁器件。在本研究中首次实现并展示了进一步的改进,即通过增加相邻两梁之间施加的直流偏置电压(从25 V增加到35 V),调谐能力提高了32%。这一重要发现消除了在更宽频率调谐范围内额外焦耳热的需求。另一种可能的故障是通过粘连以及结构优化的要求:我们提出了一种简单易行的低频方波信号施加技术,该技术可以成功分离梁,并且无需文献中给出的更复杂和繁琐的方法。上述发现需要一种设计方法,因此我们还提供了一种基于应用的设计。

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