Radiation Tolerance of Color Configuration on an Optically Reconfigurable Gate Array

Takumi Fujimori, Minoru Watanabe
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引用次数: 1

Abstract

Currently, research of optically reconfigurable gate arrays (ORGAs), a type of multi-context field programmable gate arrays (FPGAs), has progressed rapidly. ORGAs offer important benefits of high-speed reconfiguration, numerous reconfiguration contexts, and robust configuration. Such ORGAs always consist of a single-wavelength laser array to address configuration contexts. However, for this architecture, concerns related to its package size often arise. The laser array is large because of the large space between lasers. For that reason, the ORGA also tends to be large. Therefore, we have introduced some-wavelength lasers inside a laser array of an ORGA to decrease the laser array size. Results show that the ORGA package can be smaller. However, the dependability of color configuration has never been discussed up to now. This paper therefore presents a demonstration of the radiation tolerance of color configuration on an optically reconfigurable gate array.
光可重构门阵列颜色结构的辐射容限
目前,光可重构门阵列(ORGAs)作为一种多环境现场可编程门阵列(fpga)的研究进展迅速。orga提供了高速重新配置、大量重新配置上下文和健壮配置等重要优点。这种orga总是由单波长激光阵列组成,以解决配置环境。然而,对于这种体系结构,与它的包大小相关的问题经常出现。由于激光器之间的间距很大,所以激光阵列很大。出于这个原因,组织也往往很大。因此,我们在ORGA的激光阵列中引入了一些波长激光器,以减小激光阵列的尺寸。结果表明,ORGA封装可以更小。然而,色彩配置的可靠性至今尚未得到讨论。因此,本文展示了光可重构门阵列上颜色配置的辐射容限。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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