采用变刚度弹簧调制机械共振的微机械有源放大器

Y. Heo, W. Lee, Young‐Ho Cho
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引用次数: 0

摘要

我们提出了利用机械共振中的载流子运动的微机械主动放大器,从而进行位移、力和能量的放大。载体运动由变刚度弹簧调制,其刚度变化与输入运动成正比。我们设计、制造并测试了两种类型的放大器A和B,包括两种不同的变刚度弹簧A和B,分别用于增加输出刚度变化和输出-输入刚度比。放大器A的位移增益为5.62,是放大器B的2.15倍;放大器B的力增益为10.0,是放大器A的1.26倍。实验验证了本装置能够同时放大位移和力,显示了高灵敏度传感和高力/远程驱动的潜在应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Micromechanical active amplifiers using the mechanical resonance modulated by variable stiffness springs
We present micromechanical active amplifiers using carrier motion in the mechanical resonance, thereby performing the amplification of displacement, force, and energy. The carrier motion is modulated by variable stiffness springs whose stiffness change is proportional to input motion. We design, fabricate, and test two types of the amplifiers A and B, including two different variable stiffness springs A and B, which are designed to increase output stiffness variation and output-to-input stiffness ratio, respectively. The displacement gain of amplifier A is 5.62, which is 2.15 times larger than that of the amplifier B. The force gain of the amplifier B is 10.0, which is 1.26 times larger than that of the amplifier A. We experimentally verify that the present devices are able to amplify both displacement and force simultaneously, showing potential applications of high-sensitive sensing and high-force/long-range actuation.
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