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Modular MEMS Design and Fabrication for an 80 x 80 Transparent Optical Cross-Connect Switch

机译:用于80 x 80透明光学交叉连接开关的模块化MEMS设计和制造

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摘要

The ability to transparently switch optical signals from one fiber to another without conversion to the electrical domain is a basic functionality that has a wide range of applications within the fiber optic industry. The so-called 3D-MEMS architecture has emerged as the preferred approach for building transparent, scalable systems with port-counts ranging from 16x16 to 1024x1024. The primary components of the 3D-MEMS architecture are fiber array, lens array, and MEMS mirror array. While a central theme in the MEMS industry is integration, we adopted a strategy of modularization. The key MEMS components, which include mirror array, ceramic substrate, and high-voltage drivers, were manufactured separately and then combined to yield a working product. Central to our modular approach was critical design parameter tolerancing to ensure manufacturability. Results from a large sampling of MEMS components and MEMS assemblies are presented to highlight manufacturability and performance.
机译:在不转换到电域的情况下将光信号从一根光纤透明切换到另一根光纤的能力是一项基本功能,在光纤行业中具有广泛的应用。所谓的3D-MEMS架构已成为构建透明,可扩展系统的首选方法,端口数范围从16x16到1024x1024。 3D-MEMS体系结构的主要组件是光纤阵列,透镜阵列和MEMS反射镜阵列。尽管MEMS行业的中心主题是集成,但我们采用了模块化策略。包括镜面阵列,陶瓷基板和高压驱动器在内的关键MEMS组件是分别制造的,然后组合在一起即可生产出有效的产品。我们模块化方法的核心是确保设计性的关键设计参数公差。展示了大量MEMS组件和MEMS组件的采样结果,以突出可制造性和性能。

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