Development of a new type tactile sensor using micro electromagnetic coil for human robot

Xianhe Ding, K. Kuribayashi, T. Hashida
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引用次数: 10

Abstract

To realize an artificial finger sensing device for a human robot, a new tactile sensor has been developed. Generally the tactile sensor is required to have high reliability, size miniaturization, high sensitivity and wide frequency response. In view of these requirements, a micro electromagnetic coil was proposed as the main tactile component. The coil was a planar spiral thick structure for increasing sensitivity. Micromachining technology for the size miniaturization and for automatic assembling was applied to the micro coil fabrication. The coil, soft rubber and metal plate formed a new type tactile sensor. Ni micro coil of thickness 300 /spl mu/m and diameter 3 mm was fabricated. Using different soft rubber and metal plate, the sense and force characteristics of the tactile sensor were tested. The experimental results show that the microtactile sensor has high sensitivity and wide frequency response.
一种新型微型电磁线圈触觉传感器的研制
为实现人体机器人的人工手指传感装置,研制了一种新型触觉传感器。一般要求触觉传感器具有高可靠性、尺寸小型化、高灵敏度和宽频响等特点。针对这些要求,提出了一种微型电磁线圈作为主要的触觉元件。为提高灵敏度,线圈采用平面螺旋厚结构。将微型化和自动装配的微加工技术应用于微线圈的制造。该线圈、软橡胶和金属板构成了一种新型的触觉传感器。制备了厚度为300 /spl μ m、直径为3mm的Ni微线圈。采用不同的软橡胶和金属板,测试了触觉传感器的感觉特性和受力特性。实验结果表明,该微触觉传感器具有灵敏度高、频率响应宽的特点。
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