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A 5nW Quasi-linear CMOS Hot-electron Injector for Self-powered Monitoring of Biomechanical Strain Variations

机译:5nW准线性CMOS热电子注入器用于自供电监测生物力学应变变化。

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摘要

Piezoelectricity-driven hot-electron injectors (p-HEI) are used for self-powered monitoring of mechanical activity in biomechanical implants and structures. Previously reported p-HEI devices operate by harvesting energy from a piezoelectric transducer to generate current and voltage references which are then used for initiating and controlling the process of hot-electron injection. As a result, the minimum energy required to activate the device is limited by the power requirements of the reference circuits. In this paper we present a p-HEI device that operates by directly exploiting the self-limiting capability of an energy transducer when driving the process of hot-electron injection in a pMOS floating-gate transistor. As a result, the p-HEI device can activate itself at input power levels less than 5 nW. Using a prototype fabricated in a 0.5-μm bulk CMOS process we validate the functionality of the proposed injector and show that for a fixed input power, its dynamics is quasi-linear with respect to time. The paper also presents measurement results using a cadaver phantom where the fabricated p-HEI device has been integrated with a piezoelectric transducer and is used for self-powered monitoring of mechanical activity.
机译:压电驱动的热电子注射器(p-HEI)用于对生物力学植入物和结构中的机械活动进行自供电监测。先前报道的p-HEI设备通过从压电换能器收集能量以产生电流和电压参考进行操作,然后将其用于启动和控制热电子注入过程。结果,激活设备所需的最小能量受到参考电路功率要求的限制。在本文中,我们介绍了一种p-HEI器件,该器件在驱动pMOS浮栅晶体管中的热电子注入过程时,可直接利用能量传感器的自限能力来工作。结果,p-HEI设备可以在小于5 nW的输入功率水平下激活自己。使用在0.5μm体CMOS工艺中制造的原型,我们验证了所建议的喷油器的功能,并表明对于固定的输入功率,其动力随时间呈准线性。该论文还介绍了使用尸体幻影的测量结果,其中,已制造的p-HEI设备已与压电换能器集成在一起,并用于自供电监视机械活动。

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