用于传感应用的紧凑型外差NEMS振荡器

M. Sansa, Guillaume Gourlat, G. Jourdan, P. Villard, G. Sicard, S. Hentz
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引用次数: 5

摘要

我们提出了一种新的外差纳米机电(NEMS)自振荡器的拓扑结构,旨在为传感应用提供谐振器阵列的密集集成。该振荡器基于一种原始的测量方法,适用于开环和闭环操作,简化了电流下混设置。当在片上实现时,它将允许减少读出CMOS电路的尺寸和功耗。这是当今实际应用中NEMS振荡器集成密度的限制因素。本文分别从开环和闭环两方面对该方法进行了表征,并对其频率稳定性进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Compact heterodyne NEMS oscillator for sensing applications
We present a novel topology of heterodyne nanoelectromechanical (NEMS) self-oscillator, aimed at the dense integration of resonator arrays for sensing applications. This oscillator is based on an original measurement method, suitable for both open loop and closed loop operations, which simplifies current down-mixing set-ups. When implemented on-chip, it will allow the reduction of the size and power consumption of readout CMOS circuitry. This is today the limiting factor for the integration density of NEMS oscillators for real-life applications. Here we characterize this method in open-loop and closed-loop, and evaluate its frequency stability.
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