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首页> 外文期刊>Applied optics >2 Gbit/s 0.5 (mu)m complementary metal-oxide semiconductor optical transceiver with event-driven dynamic power-on capability
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2 Gbit/s 0.5 (mu)m complementary metal-oxide semiconductor optical transceiver with event-driven dynamic power-on capability

机译:具有事件驱动的动态加电功能的2 Gbit / s 0.5μm互补金属氧化物半导体光收发器

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摘要

A 2 Gb/s 0.5 (mu)m complementary metal-oxide semiconductor optical transceiver designed for board- or backplane level power-efficient interconnections is presented. The transceiver supports optical wake-on-link (OWL), an event-driven dynamic power-on technique. Depending on external events, the transceiver resides in either the active mode or the sleep mode and switches accordingly. The active-to-sleep transition shuts off the normal, gigabit link and turns on dedicated circuits to establish a low-power (approx1.8 mW), low data rate (less than 100 Mbits/s) link. In contrast the normal, gigabit link consumes over 100 mW. Similarly the sleep-to-active transition shuts off the low-power link and turns on the normal, gigabit link. The low-power link, sharing the same optical channel with the normal, gigabit link, is used to achieve transmitter/receiver pair power-on synchronization and greatly reduces the power consumption of the transceiver. A free-space optical platform was built to evaluate the transceiver performance. The experiment successfully demonstrated the event-driven dynamic power-on operation. To our knowledge, this is the first time a dynamic power-on scheme has been implemented for optical interconnects. The areas of the circuits that implement the low-power link are approximately one-tenth of the areas of the gigabit link circuits.
机译:提出了一种设计用于板级或背板级节能互连的2 Gb / s 0.5μm互补金属氧化物半导体光收发器。该收发器支持一种事件驱动的动态开机技术,即光链路唤醒(OWL)。根据外部事件,收发器处于活动模式或睡眠模式,并进行相应的切换。从主动到睡眠的过渡会关闭正常的千兆链路,并打开专用电路以建立低功率(约1.8 mW),低数据速率(小于100 Mbits / s)的链路。相反,普通的千兆链路功耗超过100 mW。同样,从睡眠到活动的转换会关闭低功耗链路,并打开正常的千兆链路。与正常的千兆链路共享同一光通道的低功率链路用于实现发射器/接收器对上电同步,并大大降低了收发器的功耗。建立了自由空间光学平台来评估收发器性能。实验成功演示了事件驱动的动态开机操作。据我们所知,这是首次为光互连实现动态加电方案。实现低功率链路的电路面积约为千兆链路电路面积的十分之一。

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