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Mode Coupling and Nonlinear Resonances of MEMS Arch Resonators for Bandpass Filters

机译:带通滤波器的MEMS拱形谐振器的模式耦合和非线性谐振

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摘要

We experimentally demonstrate an exploitation of the nonlinear softening, hardening, and veering phenomena (near crossing), where the frequencies of two vibration modes get close to each other, to realize a bandpass filter of sharp roll off from the passband to the stopband. The concept is demonstrated based on an electrothermally tuned and electrostatically driven MEMS arch resonator operated in air. The in-plane resonator is fabricated from a silicon-on-insulator wafer with a deliberate curvature to form an arch shape. A DC current is applied through the resonator to induce heat and modulate its stiffness, and hence its resonance frequencies. We show that the first resonance frequency increases up to twice of the initial value while the third resonance frequency decreases until getting very close to the first resonance frequency. This leads to the phenomenon of veering, where both modes get coupled and exchange energy. We demonstrate that by driving both modes nonlinearly and electrostatically near the veering regime, such that the first and third modes exhibit softening and hardening behavior, respectively, sharp roll off from the passband to the stopband is achievable. We show a flat, wide, and tunable bandwidth and center frequency by controlling the electrothermal actuation voltage.
机译:我们通过实验证明了非线性软化,硬化和扭曲现象(近交)的利用,其中两种振动模式的频率彼此接近,从而实现了从通带到阻带的急剧衰减的带通滤波器。基于在空气中运行的电热调谐和静电驱动的MEMS拱形谐振器演示了该概念。平面内谐振器是由绝缘体上的硅晶片制成的,该晶片具有故意的曲率以形成弓形。直流电流通过谐振器施加,以感应热量并调节其刚度,从而调节其谐振频率。我们表明,第一谐振频率增加到初始值的两倍,而第三谐振频率减小直到非常接近第一谐振频率。这导致了转向现象,两种模式都耦合并交换能量。我们证明,通过在转向状态附近非线性地和静电地驱动两种模式,使得第一和第三模式分别表现出软化和硬化行为,可以实现从通带到阻带的急剧滚降。通过控制电热致动电压,我们显示出平坦,宽且可调的带宽和中心频率。

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