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A pulse-operating electrostatic microactuator for bi-stable latching

机译:用于双稳态闩锁的脉冲操作静电微致动器

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摘要

We propose a novel microactuator with spade comb fingers designed for pulse-operating bi-stability. When the broad parts of the movable comb fingers are positioned facing the broad parts of the fixed comb fingers, the direction of electrostatic force is inward, like a conventional comb actuator. However, the spade comb fingers generate outward electrostatic force when the broad end part of each movable comb finger is positioned facing the narrow part of the fixed comb fingers. The proposed spade comb is combined with chevron-type springs to effectively operate the actuator in a bi-stable latching. For a driving input, a fast electrical pulse was applied to one driving electrode, and its operability was investigated in terms of voltage magnitude and duty time. Through an FEA (finite element analysis) and a numerical analysis, the dynamic characteristics were theoretically investigated including transient time response and operable bi-stability, which were compared with the experimental values. The bi-stable actuator was fabricated using a silicon-on-insulator (SOI) wafer, and successfully operated by a pulse voltage input of 55 V with a duty time of 0.32 ms.
机译:我们提出了一种具有铲形梳齿的新型微执行器,其设计用于脉冲操作双稳定性。当可移动梳齿的宽阔部分面对固定梳齿的宽阔部分时,静电力的方向便像传统的梳齿致动器一样向内。然而,当每个可动梳状指的宽端部面对固定梳状指的窄部定位时,铲形梳状指产生向外的静电力。提出的铲形梳子与人字形弹簧组合使用,可以在双稳态闩锁中有效地操作执行器。对于驱动输入,将一个快速电脉冲施加到一个驱动电极上,并根据电压幅度和占空比研究了其可操作性。通过有限元分析和数值分析,从理论上研究了包括瞬态时间响应和可操作的双稳态在内的动态特性,并与实验值进行了比较。双稳态执行器是使用绝缘体上硅(SOI)晶片制造的,并通过55 V的脉冲电压输入以0.32 ms的占空比成功运行。

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