光学高速对称多处理器链路实现

D. Kuchta, C. Baks, E. Mintarno, D. de Araujo, M. Cases
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引用次数: 5

摘要

配置为对称多处理器(SMP)系统的高端计算服务器依靠并行高速链路在处理器之间进行互连。随着每一代新处理器的出现,SMP链路的带宽都会增加。有线铜缆仍然是该应用的首选技术,但随着带宽的每一次增加,光纤互连成为更具竞争力的解决方案竞争者。为了尽早了解光纤在SMP应用中面临的问题,我们构建了全光和混合光两种类型的光链路,并在实际系统中对其进行了表征。从成本、尺寸、功耗、温升、电接口、延迟和误码率(BER)等方面对这些链路进行了评估。在这两种实现中,8路SMP系统都成功运行
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optical high speed symmetric multi-processor link implementation
High-end computing servers configured as symmetric multi-processor (SMP) systems rely on parallel high speed links for interconnection between the processors. With each new generation of processor, the bandwidth of the SMP link is increased. Wired copper cables are still the technology of choice for this application but with each increment in bandwidth, fiber optic interconnects become more competitive solution contenders. To obtain an early look at the issues facing fiber optics in the SMP application, two types of optical links, all-optical and hybrid-optical, were built and characterized in a real system. These links were evaluated in terms of cost, size, power dissipation, temperature rise, electrical interface, latency and bit error ratio (BER). In both implementations, an 8-way SMP system was successfully operated
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