首页> 外文会议>Symposium on Mechanical Properties of Structural Films, Nov 15-16, 2000, Orlando, Florida >Side-by-Side Comparison of Passive MEMS Strain Test Structures under Residual Compression
【24h】

Side-by-Side Comparison of Passive MEMS Strain Test Structures under Residual Compression

机译:残余压缩下无源MEMS应变测试结构的并排比较

获取原文
获取原文并翻译 | 示例

摘要

Knowledge and control of residual strain is critical for device design in MEMS, and therefore it is important to establish standards for residual strain measurement. In this study, pointer, microring, bent-beam, and fixed-fixed beam test structures are used to evaluate residual strain both theoretically and experimentally. An equation that enables easier evaluation of bent-beam structures is derived. Also, a finite difference model that incorporates the non-idealities of fixed-fixed beams and determines an optimum fit to the measured deflection curve is presented. The model allows accurate residual strain evaluation of each buckled fixed-fixed beam. Experimentally, pointer structures were found to be susceptible to adhesion. Microrings, intended for residual tension assessment, also could not be evaluated because the residual strain was compressive. Bent-beam and fixed-fixed beams could both be evaluated. The main criterion for test structure effectiveness was taken to be the repeatability of residual strain on structures in close proximity; each should exhibit the same value. Using optical microscopy, the residual strain of bent-beams was determined with +- 13 με repeatability based on standarddeviation of adjacent structures of similar design. Using optical interferometry, the residual strain of fixed-fixed beams was determined with +- 2 μεrepeatability based on standard deviation for adjacent beams of different lengths. The strain values obtained from the two structures are in reasonably good agreement. Cantilevers were also evaluated to obtain film curvature values.
机译:残余应变的知识和控制对于MEMS中的器件设计至关重要,因此,建立残余应变测量标准至关重要。在这项研究中,使用指针,微环,弯曲梁和固定-固定梁测试结构来从理论上和实验上评估残余应变。推导了使弯梁结构更容易评估的方程式。此外,提出了一个有限差分模型,该模型结合了固定梁的非理想性,并确定了与测得的挠曲曲线的最佳拟合。该模型允许对每个弯曲的固定固定梁进行准确的残余应变评估。在实验中,发现指针结构易于粘附。用于残余张力评估的微环也无法评估,因为残余应变是压缩性的。弯曲梁和固定梁都可以评估。测试结构有效性的主要标准是在邻近结构上残余应变的可重复性。每个都应显示相同的值。使用光学显微镜,基于相似设计的相邻结构的标准偏差,以±13με的重复性确定弯曲梁的残余应变。使用光学干涉测量法,基于不同长度的相邻光束的标准偏差,以±2με重复性确定固定固定光束的残余应变。从这两个结构获得的应变值相当吻合。还评估悬臂以获得膜曲率值。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号