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Multimode and Single-mode Fibers for Data Center and High-Performance Computing Applications

机译:适用于数据中心和高性能计算应用的多模和单模光纤

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Data center (DC) and high performance computing (HPC) applications have traditionally used a combination of copper, multimode fiber and single-mode fiber interconnects with relative percentages that depend on factors such as the line rate, reach and connectivity costs. The balance between these transmission media has increasingly shifted towards optical fiber due to the reach constraints of copper at data rates of 10 Gb/s and higher. The percentage of single-mode fiber deployed in the DC has also grown slightly since 2014, coinciding with the emergence of mega DCs with extended distance needs beyond 100 m. This trend will likely continue in the next few years as DCs expand their capacity from 100G to 400G, increase the physical size of their facilities and begin to utilize silicon-photonics transceiver technology. However there is a still a need for the low-cost and high-density connectivity, and this is sustaining the deployment of multimode fiber for links ≤ 100 m. In this paper, we discuss options for single-mode and multimode fibers in DCs and HPCs and introduce a reduced diameter multimode fiber concept which provides intra-and inter-rack connectivity as well as compatibility with silicon-photonic transceivers operating at 1310 nm. We also discuss the trade-offs between single-mode fiber attributes such as bend-insensitivity, attenuation and mode field diameter and their roles in capacity and connectivity in data centers.
机译:传统上,数据中心(DC)和高性能计算(HPC)应用程序使用铜缆,多模光纤和单模光纤互连的组合,其相对百分比取决于线路速率,覆盖范围和连接成本等因素。由于铜在10 Gb / s或更高数据速率下的覆盖范围限制,这些传输介质之间的平衡已越来越趋向于光纤。自2014年以来,部署在DC中的单模光纤的百分比也略有增长,这与大型DC的出现相距不远,而这些DC的距离需求超过100 m。随着DC将容量从100G扩展到400G,增加其设备的物理尺寸并开始利用硅光子收发器技术,这种趋势可能会在未来几年内继续。但是,仍然需要低成本和高密度的连接,并且这在多于100 m的链路上维持了多模光纤的部署。在本文中,我们讨论了DC和HPC中单模和多模光纤的选项,并介绍了直径减小的多模光纤概念,该概念提供了机架内和机架间的连接以及与工作在1310 nm的硅光子收发器的兼容性。我们还将讨论单模光纤属性(例如弯曲不敏感度,衰减和模场直径)之间的权衡,以及它们在数据中心的容量和连接性中的作用。

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