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A 1,632 Gate-Count Zero-Overhead Dynamic Optically Reconfigurable Gate Array VLSI

机译:1,632门数零开销动态光可重构门阵列VLSI

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摘要

A Zero-Overhead Dynamic Optically Reconfigurable Gate Array (ZO-DORGA), based on a concept using junction capacitance of photodiodes and load capacitance of gates constructing a gate array as configuration memory, has been proposed to realize a single instruction set computer that requires zero-overhead fast reconfiguration. To date, although the concept and architecture have been proposed and some simulation results of designs have been presented, a ZO-ORGA VLSI chip has never been fabricated. In this paper, the first 1,632 gate-count zero-overhead VLSI chip fabricated using 0.35 um CMOS process technology is presented. The 1,632 ZO-DORGA-VLSI is not only the first prototype VLSI chip; it is also the largest gate-count ORGA. Such a large gate count ORGA had never been fabricated until this study. The performance of ZO-DORGA-VLSI is clarified and discussed using experimental results.
机译:基于使用光电二极管的结电容和构造门阵列的门的负载电容作为配置存储器的概念,提出了一种零开销动态光学可重构门阵列(ZO-DORGA),以实现需要零的单指令集计算机-开销快速重新配置。迄今为止,尽管已经提出了概念和体系结构并给出了设计的一些仿真结果,但是从未制造过ZO-ORGA VLSI芯片。本文介绍了采用0.35 um CMOS工艺技术制造的首个1,632栅极计数零开销VLSI芯片。 1,632个ZO-DORGA-VLSI不仅是第一批原型VLSI芯片,而且还是第一批原型。它也是最大的门数ORGA。如此大的门数ORGA直到这项研究才被制造出来。使用实验结果阐明并讨论了ZO-DORGA-VLSI的性能。

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