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Arrays of addressable high-speed optical microshutters

机译:可寻址的高速光学微型旋光器阵列

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This paper describes an optical MEMS based on an array of electrostatically actuated polysilicon microshutters [1]. Developed in the framework of an industrial project, they are integrated in a matrix of 602 elements that can be individually addressed and that constitute the core of an assembly for light switching. Despite severe specifications on the long-term functionality of this system, samples devices with several tens of millions of cycles have been demonstrated. The paper will focus on the technology, the design and the characteristics of these arrays. A large experimental work has allowed us to identify the main failure modes and the long-term behavior such as out of plane movement or in-use stiction. These phenomena will be discussed hereafter. We also report on possible improvements of the design that should solve the remaining limitations of the system.
机译:本文基于静电致动多晶硅微乳糖段[1]的阵列描述了光学MEM。在工业项目的框架中开发,它们以602个元素的矩阵集成在可以单独寻址的602元件,构成用于光切换的组件的核心。尽管对该系统的长期功能进行了严重规范,但已经证明具有多数量数百万个循环的样本器件。本文将专注于技术,设计和这些阵列的特性。允许我们识别主要的故障模式和长期行为,例如超出平面运动或使用内稳定性。以下将讨论这些现象。我们还报告了可能改进设计,应解决系统的其余限制。

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