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High-Performance Shuffle Motor Fabricated by Vertical Trench Isolation Technology

机译:垂直沟槽隔离技术制造的高性能洗牌电机

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摘要

Shuffle motors are electrostatic stepper micromotors that employ a built-in mechanical leverage to produce large output forces as well as high resolution displacements. These motors can generally move only over predefined paths that served as driving electrodes. Here, we present the design, modeling and experimental characterization of a novel shuffle motor that moves over an unpatterned, electrically grounded surface. By combining the novel design with an innovative micromachining method based on vertical trench isolation, we have greatly simplified the fabrication of the shuffle motors and significantly improved their overall performance characteristics and reliability. Depending on the propulsion voltage, our motor with external dimensions of 290 μm × 410 mm displays two distinct operational modes with adjustable step sizes varying respectively from 0.6 to 7 nm and from 49 to 62 nm. The prototype was driven up to a cycling frequency of 80 kHz, showing nearly linear dependence of its velocity with frequency and a maximum velocity of 3.6 mm/s. For driving voltages of 55 V, the device had a maximum travel range of ±70 μm and exhibited an output force of 1.7 mN, resulting in the highest force and power densities reported so far for an electrostatic micromotor. After five days of operation, it had traveled a cumulative distance of more than 1.5 km in 34 billion steps without noticeable deterioration in performance.
机译:洗牌电动机是静电步进微电动机,它利用内置的机械杠杆作用来产生较大的输出力以及高分辨率位移。这些电动机通常只能在用作驱动电极的预定路径上移动。在这里,我们介绍了在无图案的电气接地表面上移动的新型洗牌电机的设计,建模和实验特性。通过将新颖的设计与基于垂直沟槽隔离的创新微加工方法相结合,我们极大地简化了改组电机的制造过程,并显着提高了其整体性能特征和可靠性。根据推进电压,我们的外部尺寸为290μm×410 mm的电机显示两种不同的运行模式,其可调步长分别为0.6至7 nm和49至62 nm。原型被驱动到高达80 kHz的循环频率,显示出其速度与频率之间的线性关系,最大速度为3.6 mm / s。对于55 V的驱动电压,该器件的最大行程范围为±70μm,并且显示出1.7 mN的输出力,从而实现了迄今为止报告的静电微电机的最高力和功率密度。运行五天后,它以340亿步的速度累计行驶了超过1.5公里,而性能没有明显下降。

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