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VCSEL-based optical links in burst-mode slow optical power ramp-up and how to achieve ultra-short wake-up times

机译:突发模式下基于VCSEL的光链路的光功率缓慢上升以及如何实现超短唤醒时间

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摘要

Optical links in datacentres operate mainly in burst mode. The utilisation might be as low as 10%, i.e. most of the time the link is idle, but still consumes power. It would therefore be desirable to put these links into a low-power sleep mode during idle signal by reducing the bias, and to operate the electronics and laser only when data is actually being transmitted. The laser is typically implemented with vertical cavity surface-emitting lasers (VCSELs). VCSELs should not be biased below their threshold current as otherwise an extensive turn-on delay will be incurred. A significant wake-up time is still observed in VCSELs even if the bias is not reduced during idle and only logic zeros are transmitted. With reduced bias, an unacceptable wake-up time is observed. The authors present measured data and propose a high-amplitude wake-up pulse at the beginning of the data burst, to significantly speed up the wake-up time. Measurements show the effectiveness of this pulse.
机译:数据中心的光链路主要在突发模式下运行。利用率可能低至10%,即大多数情况下链路空闲时仍会消耗功率。因此,希望通过减小偏置在空闲信号期间将这些链路置于低功率睡眠模式,并且仅在实际传输数据时才操作电子设备和激光器。通常用垂直腔表面发射激光器(VCSEL)来实现该激光器。 VCSEL的偏置电流不应低于其阈值电流,否则会引起较大的导通延迟。即使在空闲期间不降低偏置并且仅发送逻辑零,在VCSEL中仍会观察到明显的唤醒时间。偏置减小时,观察到不可接受的唤醒时间。作者提出了测量数据,并在数据脉冲串开始时提出了一个高幅度唤醒脉冲,以显着加快唤醒时间。测量表明该脉冲的有效性。

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