作者: K.F. Goser , C. Pacha , A. Kanstein , M.L. Rossmann
DOI: 10.1109/5.573741
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摘要: A large number of devices, a limitation wiring, and very low power dissipation density are design constraints future nanoelectronic circuits composed quantum-effect devices. Furthermore, functional integration, which is the possibility exploiting quantum effects to obtain function specific behavior, becomes core principle. This paper analyzes effect this technological progress on describes computational paradigms revealing novel features such as distributed storage, fault tolerance, self-organization, local processing. In particular, linear threshold networks, associative matrix, self-organizing feature maps, cellular arrays investigated from viewpoint their potential significance for nanoelectronics. Although these concepts have already been implemented using present technologies, intention give an impression usefulness system implementations with