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A robust and reliable stress-induced self-assembly supporting mechanism for optical devices

机译:用于光学设备的可靠可靠的应力感应自组装支撑机构

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摘要

The stress-induced supporting mechanism consisting of stress-induced bending beams and novel locking component used to assemble the micromachined optical devices has been realized. The tip deflection of the stress-induced bending beams has been exploited to lift up the micromachined devices. Based on the MUMPs platform, this study has successfully established an improved surface micromachining process (MUMPs-like process) to enhance the reliability of the stress-induced beams. According to the reliability test, the variation of the tip displacement is 1% and the variation of curvature is 1% after six months. Several tests relied on the BellCore standard are also achieved, the results reveal the reliability of dielectric film is much better than the metal film. Moreover, a novel locking component was also developed to accurately position the optical component and to prevent it from deviation as well. Experimental results elaborated the feasibility and stability of the novel locking component. With improved stress-induced beam and stronger locking component, the robust and reliable stress-induced self-assembly supporting mechanism for optical devices becomes available. To demonstrate the applications of the proposed mechanism, two optical devices were accomplished in this study as well.
机译:已经实现了由应力引起的弯曲梁和用于组装微机械光学装置的新颖的锁定部件组成的应力引起的支撑机构。应力引起的弯曲梁的尖端偏转已被用来提升微机械设备。基于MUMPs平台,本研究成功建立了一种改进的表面微加工工艺(类似MUMPs的工艺),以增强应力感应梁的可靠性。根据可靠性测试,六个月后,尖端位移的变化 1%,曲率变化 1%。还完成了一些基于BellCore标准的测试,结果表明介电膜的可靠性比金属膜好得多。此外,还开发了新颖的锁定组件以精确定位光学组件并防止其偏离。实验结果阐述了新型锁定组件的可行性和稳定性。通过改进的应力感应光束和更强的锁定组件,可提供用于光学设备的坚固可靠的应力感应自组装支撑机构。为了演示所提出的机制的应用,本研究中还完成了两个光学设备。

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