Nondestructive evaluation of MEMS devices by laser confocal measurements

Xiaoming Wu, Ning-xin Zhang, T. Ren, Litian Liu
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引用次数: 2

Abstract

This paper proposes an innovative nondestructive evaluation (NDE) setup for MEMS mechanical deformation measurements. The setup is based on an active laser confocal displacement meter, and a computer controlled motor-driven 3-dimension (3D) stage. The out-of-plane measurement resolution of the scanning confocal setup is 0.1 /spl mu/m. The maximum measurement range is 0.3 mm out-of-plane and 60 mm/spl times/60 mm in plane, respectively. The principle of the measurement method is introduced briefly. A multilayer piezoelectric acoustic MEMS membrane was fabricated and measured by using this setup. The profile of membrane was estimated. Nonlinear response feature of the membrane to direct current bias voltage was observed. The residual stresses of individual layer of the membrane were estimated according to Stoney's theory. The test results gave quantificational description of MEMS membrane deformation, which can guide the optimal design of the acoustic devices. The laser confocal technique proved to be a valuable micro-NDE characterization tool.
激光共聚焦测量MEMS器件的无损评价
本文提出了一种用于MEMS机械变形测量的无损评估(NDE)装置。该装置是基于一个主动激光共焦位移计和一个计算机控制的电机驱动的三维(3D)舞台。扫描共聚焦装置的面外测量分辨率为0.1 /spl mu/m。最大测量范围分别为面外0.3 mm和面内60mm /spl次/ 60mm。简要介绍了该测量方法的原理。利用该装置制备了多层压电声MEMS膜,并对其进行了测量。对膜的轮廓进行了估计。观察了膜对直流偏置电压的非线性响应特征。根据Stoney理论估计了膜各层的残余应力。测试结果给出了MEMS薄膜变形的定量描述,可以指导声器件的优化设计。激光共聚焦技术被证明是一种有价值的微无损检测表征工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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