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Energy and Latency Optimization in NEM Relay-Based Digital Circuits

机译:基于NEM继电器的数字电路中的能量和延迟优化

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Digital circuits based on nanoelectromechanical (NEM) relays hold out the potential of providing an energy efficiency unachievable by conventional CMOS technology. This paper presents a detailed analysis of the operating characteristics of fabricated curved cantilever NEM relays using a comprehensive physical model. The mode of energy distribution within the electrical and mechanical operational domains of the relay is described in detail and the energy saving achievable by the technique of body-biasing is quantified. The analysis further reveals that the latency in a relay can be much larger or much smaller than the nominal mechanical delay depending on the point of actuation in the oscillation of the beam that takes place after pull-out. The methods that can utilize this phenomenon to reduce the latency of relay-based circuits are discussed, thus addressing one of the biggest challenges in NEM relay-based design.
机译:基于纳米机电(NEM)继电器的数字电路具有提供传统CMOS技术无法实现的能效的潜力。本文使用综合的物理模型,对制造的弯曲悬臂NEM继电器的工作特性进行了详细分析。详细描述了继电器在电气和机械操作范围内的能量分配方式,并量化了通过车身偏置技术可实现的节能效果。该分析进一步揭示,继电器中的等待时间可以比标称机械延迟大得多或小得多,这取决于拉出后发生的光束振荡的驱动点。讨论了可以利用这种现象减少基于继电器的电路的等待时间的方法,从而解决了基于NEM继电器的设计中的最大挑战之一。

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