微型机器人推进力的产生利用基于半导体的无线电力传输线圈

Dongwook Kim, Jaehyoung Park, Bumjin Park, Seungyoung Ahn
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引用次数: 0

摘要

目前,各种各样的生物医学微型机器人已经被提出用于医疗和工业应用。为了最大限度地利用微型机器人,提出了一种通过无线传输供电的方法。然而,微型机器人的关键问题之一是小型化。在本文中,我们成功地展示了2.6毫米大小的微型机器人,利用无线电力传输系统同时产生推进力和传输电力。利用半导体工艺制作了一个几毫米大小的微型机器人,并用于实验。一个2.6mm × 2.6mm尺寸的螺旋线圈微型机器人已成功演示,速度为2.1mm/s。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microrobot propulsion force generation using semiconductor based wireless power transfer coils
Currently, various kinds of biomedical microrobots have been proposed for medical and industrial applications. In order to maximize the utilization of microrobots, a method of supplying electrical energy by wireless power transfer has been proposed. Nevertheless, one of the critical issues of microrobot is miniaturization. In this paper, we successfully demonstrated 2.6 mm sized microrobot using wireless power transfer system to produce the propulsion force and transfer electric power simultaneously. A micro robot with several millimeters was fabricated using a semiconductor process, which was used in experiments. A 2.6mm$\times 2.6$ mm sized spiral coil microrobot have been successfully demonstrated with 2.1mm/s.
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