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自由空间全局全息互连的实际速度限制:时间偏差、抖动和开启延迟。

Practical speed limits of free-space global holographic interconnects: time skew, jitter and turn-on delay.

作者信息

Morozov V N, Cathey W T

出版信息

Appl Opt. 1994 Mar 10;33(8):1380-90. doi: 10.1364/AO.33.001380.

Abstract

The speed limits imposed on free-space global interconnects are affected by factors that can be divided into three groups: geometric parameters of the optical system that determine the propagation time and time skew, emitter parameters (turn-on delay and timing jitter), and system requirements (fan-in in the detector and bit error rate). For 32 × 32 global interconnects, numerical estimations of light propagation time and timing skew are presented. Time delay and jitter in a diode laser are calculated. After evaluation of these parameters, the timing and synchronization methods (gate and strobe or time of flight) can be selected, and the ultimate clock frequency of the overall system can be determined. The decisive role of contrast ratio and fan-in in the detector plane in determining the practical modulation rate of the diode laser is discussed.

摘要

施加于自由空间全局互连的速度限制受多种因素影响,这些因素可分为三组:决定传播时间和时间偏差的光学系统几何参数、发射器参数(开启延迟和定时抖动)以及系统要求(探测器中的扇入和误码率)。对于32×32全局互连,给出了光传播时间和定时偏差的数值估计。计算了二极管激光器中的时间延迟和抖动。在评估这些参数之后,可以选择定时和同步方法(门控和选通或飞行时间),并确定整个系统的最终时钟频率。讨论了对比度和探测器平面中的扇入在确定二极管激光器实际调制速率方面的决定性作用。

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