Differential Fowler-Nordheim Tunneling Dynamical System for Attojoule Sensing and Recording.

Darshit Mehta, Barani Raman, Shantanu Chakrabartty
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引用次数: 1

Abstract

Dynamical systems that evolve unidirectionally with respect to time provide a natural mechanism for implementing a time-domain, near-zero-threshold energy rectifier. In this paper we implement such a dynamical system using a pair of differential, leaky floating-gates and demonstrate that the circuit can sense and record signals of interest while compensating for environmental variations. A Fowler-Nordheim (FN) tunneling current has been used to implement the leakage process, which we experimentally show can be modulated by signals at energy levels below femtojoules. At this level of energy, the proposed FN-system could be self-powered using different types of biopotential energy sources like intra-cellular potentials, a feature that was not possible with previously reported recorders. Furthermore, the degree of modulation is shown to be a function of the input intensity as well as time-of-occurrence, which opens up the possibility of using reconstruction techniques to reconstruct the input signal from measurement of multiple sensing devices. Using devices fabricated in a 0.5 μm standard CMOS process, we demonstrate recording of 6 mV events with retention capability lasting over 30 minutes.

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用于焦耳传感和记录的差分Fowler-Nordheim隧道动力系统。
相对于时间单向演化的动力系统为实现时域、接近零阈值的能量整流器提供了一种自然机制。在本文中,我们使用一对差分漏动门实现了这样一个动态系统,并证明了该电路可以在补偿环境变化的同时感知和记录感兴趣的信号。Fowler-Nordheim (FN)隧穿电流用于实现泄漏过程,实验表明可以通过飞焦耳以下能级的信号进行调制。在这种能量水平上,所提出的fn系统可以使用不同类型的生物势能源(如细胞内电位)自供电,这是以前报道的记录仪无法实现的功能。此外,调制程度显示为输入强度和发生时间的函数,这开辟了使用重建技术从多个传感设备的测量中重建输入信号的可能性。利用0.5 μm标准CMOS工艺制造的器件,我们展示了6 mV事件的记录,保持能力持续超过30分钟。
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