聚类自由空间光互连最佳聚类参数的确定

M. Châteauneuf, A. Kirk
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引用次数: 2

摘要

平行自由空间平行光互连(FSOIs)在板对板和芯片对芯片级的高带宽互连方面具有巨大的潜力。最近关于将大型(1024)垂直腔面发射激光器(VCSEL)阵列集成到互补金属氧化物半导体(CMOS)的报道表明,在该技术中,大型平行互连应该是可能的。我们介绍了一种确定自由空间光互连的最佳簇尺寸的技术,该技术可以在给定的偏差容限程度下提供最大的通道密度。假设源为多模VCSEL(波长850 nm,模场直径6 /spl mu/m, M2因子1.93,VCSEL节距125 /spl mu/m)。用焦距为250 /spl μ m的微透镜准直。所需的互连距离导致最小焦距为8.5 mm(假设有一个中继块来路由光通道)。该技术将扩展到包括任意焦距和光源参数,通过合并射线像差的分析计算。这种方法有可能大大简化集群自由空间光互连的设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determination of the optimum cluster parameters for a clustered free-space optical interconnect
Parallel free-space parallel optical interconnects (FSOIs) have great potential for use as high bandwidth interconnects at the board-to-board and chip-to-chip levels Recent reports of the integration of large (1024) arrays of vertical-cavity surface-emitting laser (VCSEL) arrays to complementary metal-oxide semiconductor (CMOS) suggest that large parallel interconnects should be possible in this technology. We have introduced a technique to determine the optimum cluster dimensions for a free-space optical interconnect which deliver the maximum channel density for a given degree of misalignment tolerance. The sources are assumed to be multimode VCSELs (wavelength 850 nm, mode field diameter 6 /spl mu/m, M2 factor of 1.93 and VCSEL pitch 125 /spl mu/m). They are collimated by microlenses with a focal length of 250 /spl mu/m. The required interconnection distance results in a minilens focal length of 8.5 mm (assuming a single relay block to route the optical channels). This technique will be extended to cover arbitrary focal lengths and source parameters by incorporating an analytical calculation of ray aberrations. This approach has the potential to considerably simplify the design of clustered free-space optical interconnects.
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