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Emerging Reconfigurable Nanotechnologies: Can they support Future Electronics?

机译:新兴的可重构纳米技术:它们可以支持未来电子吗?

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Several emerging reconfigurable technologies have been explored in recent years offering device level runtime reconfigurability. These technologies offer the freedom to choose between p- and n-type functionality from a single transistor. In order to optimally utilize the feature-sets of these technologies, circuit designs and storage elements require novel design to complement the existing and future electronic requirements. An important aspect to sustain such endeavors is to supplement the existing design flow from the device level to the circuit level. This should be backed by a thorough evaluation so as to ascertain the feasibility of such explorations. Additionally, since these technologies offer runtime reconfigurability and often encapsulate more than one functions, hardware security features like polymorphic logic gates and on-chip key storage come naturally cheap with circuits based on these reconfigurable technologies. This paper presents innovative approaches devised for circuit designs harnessing the reconfigurable features of these nanotechnologies. New circuit design paradigms based on these nano devices will be discussed to brainstorm on exciting avenues for novel computing elements.
机译:近年来探讨了几项新兴的可重构技术,提供了设备级运行时重新配置性。这些技术提供了从单个晶体管的P型和N型功能之间进行选择的自由度。为了最佳地利用这些技术的特征集,电路设计和存储元件需要新颖的设计来补充现有和未来的电子需求。维持这种努力的一个重要方面是补充来自设备电平的现有设计流量到电路电平。这应该通过彻底的评估来支持,以确定此类探索的可行性。此外,由于这些技术提供了运行时重新配置性并经常封装多种功能,因此多态性逻辑门和片上键存储等硬件安全功能自然地与基于这些可重构技术的电路便宜。本文介绍了利用这些纳米技术可重新配置的电路设计的创新方法。基于这些纳米器件的新电路设计范例将讨论在令人兴奋的小说途径上进行头脑风暴,用于新颖的计算元件。

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