ToPoliNano and fiction: Design Tools for Field-coupled Nanocomputing

U. Garlando, Marcel Walter, R. Wille, F. Riente, F. Sill, R. Drechsler
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引用次数: 3

Abstract

Field-coupled Nanocomputing (FCN) is a computing concept with several promising post-CMOS candidate implementations that offer tremendously low power dissipation and highest processing performance at the same time. Two of the manifold physical implementations are Quantum-dot Cellular Automata (QCA) and Nanomagnet Logic (NML). Both inherently come with domain-specific properties and design constraints that render established conventional design algorithms inapplicable. Accordingly, dedicated design tools for those technologies are required. This paper provides an overview of two leading examples of such tools, namely fiction and ToPoliNano. Both tools provide effective methods that cover aspects such as placement, routing, clocking, design rule checking, verification, and logical as well as physical simulation. By this, both freely available tools provide platforms for future research in the FCN domain.
拓扑纳米与虚构:场耦合纳米计算的设计工具
场耦合纳米计算(FCN)是一种计算概念,具有几种有前途的后cmos候选实现,同时提供极低的功耗和最高的处理性能。其中两种多种物理实现是量子点元胞自动机(QCA)和纳米磁体逻辑(NML)。两者都固有地带有特定于领域的属性和设计约束,使得已建立的传统设计算法不适用。因此,这些技术需要专门的设计工具。本文概述了这类工具的两个主要例子,即fiction和ToPoliNano。这两种工具都提供了有效的方法,涵盖了诸如放置、路由、时钟、设计规则检查、验证以及逻辑和物理模拟等方面。因此,这两个免费的工具为未来在FCN领域的研究提供了平台。
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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