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首页> 外文期刊>IEEE Circuits & Devices >Pulling the plug on the current drain [threshold switching]
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Pulling the plug on the current drain [threshold switching]

机译:将插头拔出到电流消耗[阈值切换]

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摘要

Power management is one of the main challenges to continued development of large-scale integrated circuits. In particular, the offstate, or standby leakage, is becoming a significant fraction of total power consumption as gate dimensions continue to shrink. A review of the literature identified many possible solutions in the application of threshold-switching devices. This data has apparently never been summarized in one place, suggesting a need for this article. This article discusses the capabilities of classical amorphous semiconductor switches, and more recent advances in silicon, III-V materials, and organic semiconductors that all exhibit threshold-switching properties. Applications and future prospects for the development of more energy-efficient devices are discussed. The long-term vision is that conductors themselves can be engineered to dynamically sense and adapt their conductivity to active or passive states as required.
机译:电源管理是继续发展大规模集成电路的主要挑战之一。特别是,随着栅极尺寸的不断缩小,关闭状态或待机泄漏已成为总功耗的很大一部分。文献综述确定了阈值切换设备应用中的许多可能解决方案。显然,从未将这些数据汇总到一个地方,这表明需要本文。本文讨论了经典非晶半导体开关的功能,以及都具有阈值开关特性的硅,III-V材料和有机半导体的最新进展。讨论了开发更节能设备的应用和未来前景。从长远来看,导体本身可以进行工程设计,以根据需要动态地感应和调整其导电性,使其适应有源或无源状态。

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