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Cellular Automata-Based Reconfigurable Systems as Transitional Approach to Gigascale Electronic Architectures

机译:基于元胞自动机的可重构系统作为千兆电子架构的过渡方法

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摘要

Research in molecular electronics has but one motivation: to continue scaling electronic device densities along the Moore's law curve to the year 2050 or beyond. The result will be staggering, continuing to transform our lives as has the current evolution of microelectronics since their inception in the late 1950s. Designers of molecular computers will also undergo transformations in the way they design digital processing architectures, due to new constraints in what may be the most aggressive fabrication technologies ever conceived.
机译:分子电子学的研究只有一个动机:将摩尔定律曲线上的电子设备密度继续扩展到2050年或以后。自微电子在1950年代末问世以来,其结果将是惊人的,并将继续改变我们的生活,就像微电子的当前发展一样。由于可能成为有史以来最具侵略性的制造技术的新限制,分子计算机的设计人员还将在设计数字处理体系结构方面进行变革。

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