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Electromechanical oscillators, parametric oscillators, and torsional resonators based on piezoresistive nanowires

机译:基于压阻纳米线的机电振荡器,参数振荡器和扭转谐振器

摘要

Doubly-clamped nanowire electromechanical resonators that can be used to generate parametric oscillations and feedback self-sustained oscillations. The nanowire electromechanical resonators can be made using conventional NEMS and CMOS fabrication methods. In very thin nanowire structures (sub-micron-meter in width), additive piezoresistance patterning and fabrication can be highly difficult and thus need to be avoided. This invention shows that, in piezoresistive nanowires with homogeneous material composition and symmetric structures, no conventional and additive piezoresistance loops are needed. Using AC and DC drive signals, and bias signals of controlled frequency and amplitude, output signals having a variety of frequencies can be obtained. Various examples of such resonators and their theory of operation are described.
机译:双钳位纳米线机电谐振器,可用于生成参数振荡并反馈自持振荡。可以使用常规的NEMS和CMOS制造方法来制造纳米线机电谐振器。在非常细的纳米线结构(宽度为亚微米)中,附加的压阻图案化和制造可能非常困难,因此需要避免。本发明表明,在具有均匀材料组成和对称结构的压阻纳米线中,不需要常规的和加性的压阻回路。使用交流和直流驱动信号以及频率和幅度受控的偏置信号,可以获得具有多种频率的输出信号。描述了这种谐振器的各种示例及其工作原理。

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