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Exploitation of optical interconnects in future server architectures

机译:在未来的服务器架构中开发光互连

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Optical fiber links have become ubiquitous for links at the metropolitan and wide area distance scales, and have become common alternatives to electrical links in local area networks and cluster networks. As optical technology improves and link frequencies continue to increase, optical links will be increasingly considered for shorter, higher-bandwidth links such as I/O, memory, and system bus links. For these links closer to processors, issues such as packaging, power dissipation, and components cost assume increasing importance along with link bandwidth and link distance. Also, as optical links move steadily closer to the processors, we may see significant differences in how servers, particularly high-end servers, are designed and packaged to exploit the unique characteristics of optical interconnects. This paper reviews the various levels of a server interconnect hierarchy and the current status of optical interconnect technology for these different levels. The potential impacts of optical interconnect technology on future server designs are also reviewed.
机译:光纤链路已经成为城域和广域距离尺度上无处不在的链路,并且已成为局域网和集群网络中电链路的常见替代方案。随着光学技术的进步和链路频率的不断提高,将越来越多地考虑将光链路用于更短,带宽更高的链路,例如I / O,内存和系统总线链路。对于更靠近处理器的这些链路,诸如封装,功耗和组件成本之类的问题随着链路带宽和链路距离的增加而变得越来越重要。另外,随着光链路逐渐靠近处理器,我们可能会看到在服务器(尤其是高端服务器)的设计和封装方式上有很大的不同,以利用光互连的独特特性。本文回顾了服务器互连层次结构的各个级别以及这些不同级别的光学互连技术的现状。还回顾了光互连技术对未来服务器设计的潜在影响。

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