Lu Kuo, Li Qingsong, Zhou Xin, Song Guoxiong, Wu Kai, Zhuo Ming, Wu Xuezhong, Xiao Dingbang
College of Intelligence Science and Technology, National University of Defense Technology, Changsha 410073, China.
Laboratory of Science and Technology on Integrated Logistics Support, National University of Defense Technology, Changsha 410073, China.
Micromachines (Basel). 2020 Apr 29;11(5):472. doi: 10.3390/mi11050472.
Capacitive micromechanical resonators share electrodes with the same bias voltage, resulting in the occurrence of electrostatic coupling between intrinsic modes. Unlike the traditional mechanical coupling, the electrostatic coupling is determined by the structural electric potential energy, and generally, it only occurs when the coupling modes operate in nonlinear regions. However, previous electrostatic coupling studies mainly focus on the stiffness softening region, with little attention on the opposite stiffness hardening condition. This paper presents a study on the electrostatic modal coupling effect in the stiffness hardening region. A novel capacitive micromechanical resonator with different modal nonlinearities is designed and fabricated. It is demonstrated that activating a cavity mode can shift the fundamental resonance of the manipulated mode by nearly 90 times its mechanical bandwidth. Moreover, the frequency shifting direction is found to be related to the manipulated mode's nonlinearity, while the frequency hopscotch is determined by the cavity mode's nonlinearity. The electrostatic coupling has been proven to be an efficient and tunable dynamical coupling with great potential for tuning the frequency in a wide range. The modal coupling theory displayed in this paper is suitable for most capacitive resonators and can be used to improve the resonator's performance.
电容式微机械谐振器共享具有相同偏置电压的电极,导致本征模式之间出现静电耦合。与传统的机械耦合不同,静电耦合由结构电势能决定,并且通常仅在耦合模式在非线性区域中运行时才会发生。然而,先前的静电耦合研究主要集中在刚度软化区域,很少关注相反的刚度硬化情况。本文提出了一项关于刚度硬化区域中静电模态耦合效应的研究。设计并制造了一种具有不同模态非线性的新型电容式微机械谐振器。结果表明,激活一个腔模可以使被操纵模式的基频共振偏移近90倍其机械带宽。此外,发现频率偏移方向与被操纵模式的非线性有关,而频率跳变则由腔模的非线性决定。静电耦合已被证明是一种高效且可调谐的动态耦合,具有在宽范围内调谐频率的巨大潜力。本文展示的模态耦合理论适用于大多数电容式谐振器,可用于提高谐振器的性能。