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Multiwavelength parallel optical interconnects for massively parallel processing

机译:用于大规模并行处理的多波长并行光互连

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摘要

We describe a multiwavelength, multifiber (parallel) optical interconnect based on multimode fiber ribbon cables with applications in massively parallel processing systems. By combining the benefits of parallel optics and coarse wavelength division multiplexing high aggregate throughputs are possible in a broadcast and select architecture that provides a single hop to all nodes. We identify the key components needed for such a system and report on our component development efforts for multiwavelength parallel optical interconnects. System components reported herein include a four-wavelength bit-parallel transmitter using a silicon optical bench and hybrid packaging, and two-port and three-port wavelength selective filter modules packaged to be compatible with mechanically transferable ferrule terminated ribbon cables. The transmitters were modulated up to 1.25 Gb/s with a bit-error rate better than 10/sup -12/ and no measurable power penalty due to multiple wavelength bit parallel operation. The filters exhibited insertion losses of between 1 and 2 dB and would support 10 nm spaced channels at -23-dB crosstalk.
机译:我们描述了基于多模光纤带电缆的多波长,多纤维(并联)光学互连,其在大量并行处理系统中具有应用。通过组合并行光学器件的好处和粗略波分复用的高聚合吞吐量在广播中可以进行,选择为所有节点提供单跳的架构。我们确定此类系统所需的关键组件和关于我们的组件开发工作的报告,用于多波长并行光学互连。本文报告的系统组件包括使用硅光学台阶和混合封装的四波长位并行发射器,以及包装的双端口和三端口波长选择性滤波器模块,以与机械可转印的套圈终止的带状电缆兼容。由于多个波长位并行操作,发射器被调制至1.25GB / s,比特误差率优于10 / sup -12 /且没有可测量的功率损失。过滤器表现出1至2 dB之间的插入损耗,并将在-23-dB串扰上支持10nm间隔的通道。

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