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具有超低功耗的突发模式光学标签处理器。

Burst-mode optical label processor with ultralow power consumption.

作者信息

Ibrahim Salah, Nakahara Tatsushi, Ishikawa Hiroshi, Takahashi Ryo

出版信息

Opt Express. 2016 Apr 4;24(7):6985-95. doi: 10.1364/OE.24.006985.

DOI:10.1364/OE.24.006985
PMID:27136992
Abstract

A novel label processor subsystem for 100-Gbps (25-Gbps × 4λs) burst-mode optical packets is developed, in which a highly energy-efficient method is pursued for extracting and interfacing the ultrafast packet-label to a CMOS-based processor where label recognition takes place. The method involves performing serial-to-parallel conversion for the label bits on a bit-by-bit basis by using an optoelectronic converter that is operated with a set of optical triggers generated in a burst-mode manner upon packet arrival. Here we present three key achievements that enabled a significant reduction in the total power consumption and latency of the whole subsystem; 1) based on a novel operation mechanism for providing amplification with bit-level selectivity, an optical trigger pulse generator, that consumes power for a very short duration upon packet arrival, is proposed and experimentally demonstrated, 2) the energy of optical triggers needed by the optoelectronic serial-to-parallel converter is reduced by utilizing a negative-polarity signal while employing an enhanced conversion scheme entitled the discharge-or-hold scheme, 3) the necessary optical trigger energy is further cut down by half by coupling the triggers through the chip's backside, whereas a novel lens-free packaging method is developed to enable a low-cost alignment process that works with simple visual observation.

摘要

开发了一种用于100 Gbps(25 Gbps×4λs)突发模式光分组的新型标签处理器子系统,其中追求一种高能效方法,用于将超快速分组标签提取并连接到基于CMOS的处理器,在该处理器中进行标签识别。该方法包括通过使用光电子转换器逐位对标签位进行串并转换,该光电子转换器由分组到达时以突发模式生成的一组光触发信号驱动。在此,我们展示了三项关键成果,这些成果显著降低了整个子系统的总功耗和延迟:1)基于一种用于提供位级选择性放大的新型操作机制,提出并通过实验证明了一种光触发脉冲发生器,该发生器在分组到达时仅在非常短的持续时间内消耗功率;2)在采用名为放电或保持方案的增强转换方案时,通过利用负极性信号降低了光电子串并转换器所需的光触发能量;3)通过将触发信号通过芯片背面耦合,所需的光触发能量进一步减少一半,同时开发了一种新型无透镜封装方法,以实现基于简单视觉观察的低成本对准过程。

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