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Dual-mode NEMS self-oscillator for mass sensing

机译:用于质量传感的双模NEMS自激振荡器

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We report the first experimental demonstration of a heterodyne self-oscillator operating alternatively on the first and second flexural mode of a silicon NEMS resonator. This architecture features a downmixing scheme where the NEMS motion-induced piezoresitive signal at 25 MHz and 70 Mhz is shifted down to few tens of kHz thus reducing the bandwidth constraint on the electronics. In closed loop operation, the oscillator presents excellent frequency stability, identical to the one obtained in PLL operation. While monitoring successively the two modes of the oscillator, mass addition on the NEMS was simulated by electrostatically-induced frequency shifts. This self-oscillator scheme represents a compact and power saving architecture compatible with the readout of dense sensor arrays required in applications such as mass sensing.
机译:我们报告了外差自激振荡器在硅NEMS谐振器的第一和第二弯曲模式下交替运行的第一个实验演示。该体系结构具有缩混方案,其中在25 MHz和70 Mhz处的NEMS运动感应压阻信号下移至几十kHz,从而减小了电子器件的带宽限制。在闭环操作中,该振荡器具有出色的频率稳定性,与PLL操作中获得的频率稳定性相同。在连续监测振荡器的两种模式的同时,通过静电感应的频移模拟了NEMS上的质量增加。这种自激振荡器方案代表了一种紧凑且节能的架构,与诸如质量传感之类的应用中所需的密集传感器阵列的读出兼容。

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