Development of Self-oscillating Ultrasonic Micromotor

M. Kasuga, A. Iino, Kenji Suzuki, Makoto Suzuki, Susumu Kotanagi
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引用次数: 10

Abstract

We have focused on and developed an ultrasonic motor to be used as a microactuator in place of an electromagnetic motor. We have established a new ultrasonic motor principle which allows a self-oscillating circuit to be easily constructed and simplifies the drive circuit. We have also simplified the motor structure, which is easy to mass-produce and miniaturize. We applied this motor, with a diameter of 8 mm and a thickness of 4.5 mm, to a vibration alarm in a watch at a price similar to conventional watches. Additionally, we further miniaturized this motor to 4.5 mm in diameter and 2.5 mm in thickness and confirmed the possibility and effectiveness as a microactuator. This ultrasonic micromotor is expected to be a new drive source in a broad range of fields.
自振荡超声微电机的研制
我们专注并开发了一种超声波电机,用于代替电磁电机作为微致动器。我们建立了一种新的超声电机原理,使自振荡电路易于构造,并简化了驱动电路。我们还简化了电机结构,便于批量生产和小型化。我们将这种直径为8毫米,厚度为4.5毫米的电机应用于手表的振动报警器,其价格与传统手表相似。此外,我们进一步将该电机小型化至直径4.5 mm,厚度2.5 mm,并证实了作为微执行器的可能性和有效性。这种超声波微电机有望成为一种应用于广泛领域的新型驱动源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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