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Optical configuration acceleration on a new optically reconfigurable gate array very large scale integration using a negative logic implementation

机译:使用负逻辑实现在新型光学可重配置门阵列上进行大规模大规模集成的光学配置加速

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摘要

This paper presents a proposal of an optical configuration acceleration method applied to optically reconfigurable gate arrays (ORGAs) using a negative logic implementation. The gate array of an ORGA is reconfigured using a holographic memory. The reading time of a holographic memory depends on the number of bright bits included in a configuration context. The proposed optical configuration acceleration method can decrease the number of bright bits. As a result, the proposed optical configuration acceleration method can increase the reconfiguration frequency. In this paper, a fabricated ORGA very large scale integration that can support the optical configuration acceleration method is estimated. Consequently, this paper shows that the reconfiguration frequency of the proposed method is 1.97 times higher than those of conventional ORGA architectures with no increase of laser power.
机译:本文提出了一种采用负逻辑实现将光学配置加速方法应用于光学可重构门阵列(ORGA)的建议。 ORGA的门阵列使用全息存储器重新配置。全息存储器的读取时间取决于配置上下文中包含的亮位数。所提出的光学配置加速方法可以减少亮位数。结果,提出的光学配置加速方法可以增加重新配置频率。在本文中,估计了可以支持光学配置加速方法的人造ORGA超大规模集成。因此,本文表明,在不增加激光功率的情况下,所提出方法的重配置频率比传统ORGA体系结构的重配置频率高1.97倍。

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