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Design of an optical interconnect for photonic backplane applications

机译:用于光子背板应用的光互连设计

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A compact alignment-tolerant interconnect has been developed for use within a prototype modulator-based free-space photonic backplane. The interconnect design encompasses several unique features. Microlens arrays are used, and several beams share each microlens by clustering the optical input-output in a small field about the optical axis of each lens. For simplifying the layout, the optical input and output of each smart-pixel array are clustered separately, thereby allowing a Fourier plane patterned-mirror array to be used in the beam-combination optics. This allows a suitable balance between high interconnection densities and reasonable optical relay distances between adjacent boards to be achieved. The primary advantages of this scheme are the simplicity of the optical design and its alignability, making it ideally suited for high-density interconnection applications. (C) 1998 Optical Society of America. [References: 19]
机译:已经开发出一种紧凑的耐对准误差的互连,可用于基于原型调制器的自由空间光子底板。互连设计包含几个独特的功能。使用微透镜阵列,并且通过将光学输入-输出聚集在围绕每个透镜的光轴的小视野中,几个光束共享每个微透镜。为了简化布局,每个智能像素阵列的光学输入和输出分别进行聚类,从而使傅里叶平面图案化反射镜阵列可用于光束组合光学器件。这允许在高互连密度和相邻板之间的合理的光中继距离之间实现适当的平衡。该方案的主要优点是光学设计的简单性及其可对准性,使其非常适合于高密度互连应用。 (C)1998年美国眼镜学会。 [参考:19]

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