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High Frequency of Micromechanical Resonator via Structural Modification

机译:通过结构改造的微机械谐振器的高频

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In this paper, it present an improvement over a simple free-free resonator via structural modification. Two modified designs have been considered and named as an Inverse-Pi and Inverse-T free-free beam micromechanical resonator, utilizing torsional-mode support springs. The operating range, according to the simulation is 90-130 MHz. This is a great improvement over its predecessor~2 whose operating frequency is 30-90 MHz. Three main design aspect of this resonator are the modified structural design, the support beam structure and the operation parameter, In the former, the relationship between the natural frequency and resonator beam thickness, width and length are found to be interrelated. For the supporting structure design, the length of the supporting beam is determined by lambda/4 based on torsional vibration studies. Finally, in the operation parameters, the pull down electrostatic force voltage of the transducer is determined. The experimental testing was done on an inverse-T structure and found that it conforms with the simulation result.
机译:在本文中,将其呈现在通过结构改变的简单自由 - 自由谐振器的改进。两个修改的设计已经考虑并命名为逆Pi和逆-T自由梁微机械谐振器,利用扭转模式支持弹簧。工作范围内,根据该模拟是90-130兆赫。这比其前身〜2,其工作频率为30-90 MHz的一大进步。该谐振器的三个主要设计方面是经修饰的结构设计,支撑梁结构和操作参数,在前者中,固有频率和谐振器光束的厚度,宽度和长度之间的关系被发现是相互关联的。用于支撑结构的设计,支撑梁的长度是基于扭转振动的研究由波长/ 4确定。最后,在操作参数中,下拉所述换能器的静电力的电压被确定。实验测试是在逆-T结构完成,并发现它与模拟结果一致。

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