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Frequency division using a micromechanical resonance cascade

机译:使用微机械共振级联进行分频

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A coupled micromechanical resonator array demonstrates a mechanical realization of multi-stage frequency division. The mechanical structure consists of a set of N sequentially perpendicular microbeams that are connected by relatively weak elastic elements such that the system vibration modes are localized to individual microbeams and have natural frequencies with ratios close to 1:2:⋯:2. Conservative (passive) nonlinear inter-modal coupling provides the required energy transfer between modes and is achieved by finite deformation kinematics. When the highest frequency beam is excited, this arrangement promotes a cascade of subharmonic resonances that achieve frequency division of 2 at microbeam j for j = 1, …, N. Results are shown for a capacitively driven three-stage divider in which an input signal of 824 kHz is passively divided through three modal stages, producing signals at 412 kHz, 206 kHz, and 103 kHz. The system modes are characterized and used to delineate the range of AC input voltages and frequencies over which the cascade occurs. This narrow band frequency divider has simple design rules that are scalable to higher frequencies and can be extended to a larger number of modal stages.
机译:耦合的微机械谐振器阵列演示了多级分频的机械实现。机械结构由一组N个依次垂直的微束组成,这些微束通过相对较弱的弹性元件连接,从而使系统的振动模式局限于单个微束,并且固有频率的比率接近1:2:1 :: 2。保守(被动)非线性模态耦合提供了模态之间所需的能量传递,并通过有限变形运动学实现。当激发最高频率的光束时,这种安排促进了次谐波共振的级联,在j == 1,…,N的情况下,在微束j处实现了2的分频。示出了电容驱动的三级分频器的结果,其中输入信号824 kHz的频率被分为三个模态级,产生412 kHz,206 kHz和103 kHz的信号。系统模式的特征在于,用于描绘发生级联的交流输入电压和频率范围。该窄带分频器具有简单的设计规则,可以扩展到更高的频率,并且可以扩展到更多的模态级。

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