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首页> 外文期刊>Journal of Lightwave Technology >Large Optical Backplane With Embedded Graded-Index Glass Waveguides and Fiber-Flex Termination
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Large Optical Backplane With Embedded Graded-Index Glass Waveguides and Fiber-Flex Termination

机译:大型光学背板,带有嵌入式渐变折射率玻璃波导和光纤弯曲终端

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摘要

Introduction of electro-optical circuit board (EOCB) technologies based on embedded glass waveguides in the system enclosure of current data storage, compute, or switch platforms will be instrumental in accommodating the prohibitive bandwidth densities projected in exascale data centers, access networks, and high-performance computing environments in future. The main focus of this paper is, therefore, on the realization of large EOCB backplanes (350 × 465) mm with passive dual-star interconnect topologies. The waveguides are embedded inside glass panels using a two-step thermal ion exchange process . The fabricated embedded waveguides are then characterized for propagation and coupling losses across different wavelength ranges and for different coupling arrangements. The fabrication process for these large panels is briefly explained accompanied by the lamination process of four separate glass panels. The connectivity between backplane and peripheral cards is addressed using fiber flex termination with two possible waveguide interfaces—actively assembled pluggable interface and passively assembled adhesive bonded interface. A demonstration platform is also finally reported and the viability evaluated for optical connectivity and system efficiency is tested for the whole system containing fiber flex termination.
机译:在当前数据存储,计算或交换平台的系统外壳中引入基于嵌入式玻璃波导的电光电路板(EOCB)技术,将有助于适应亿亿级数据中心,接入网和高数据中心的超高带宽密度未来的高性能计算环境。因此,本文的主要重点是采用无源双星互连拓扑结构实现大型EOCB背板(350×465)mm。使用两步热离子交换工艺将波导嵌入玻璃面板内。然后表征所制造的嵌入式波导在不同波长范围内的传播和耦合损耗以及不同的耦合布置。简要解释了这些大面板的制造过程,并附带了四个独立玻璃面板的层压过程。底板和外围卡之间的连接通过使用具有两个可能的波导接口的光纤挠性端接来解决—主动组装的可插拔接口和被动组装的粘合接口。最后还报告了一个演示平台,并对包含光纤弯曲终端的整个系统测试了评估光学连接性和系统效率的可行性。

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