Developing intelligent micro-mechanisms

J. Nicoud, O. Matthey
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引用次数: 2

Abstract

Nowadays, MEMS and VLSI technologies produce sensors of increasing performance and functionality, microcontrollers generate an increasing amount of processing power in a small volume, and motors are getting as small as 1.9 mm in diameter. However, putting these elements together is still a challenge. For instance, one can buy or develop a very small video camera subset, but how to make it move using 2 motors of 5 mm in diameter, how to sense precisely the position and move as fast as the human eye, the constraints being a simple processor, a volume under 1 cubic inch, and a price compatible with mass distribution? Similar examples can be given for the medical and toy market. The 1 cm/sup 3/ robot contest is a good exercise for getting trained with miniature systems, and increase their intelligence. New approaches have to be taken in order to find efficient ideas for 3-D design, to solve the difficulty of machining and assembling miniature mechanical parts, to convert high speed motor rotation into the required movement, and to take care of the fragility of wires and the lack of really small connectors. Even software development and debugging need a new methodology. Fast prototyping is required in this field to test the new parts in real environments and to develop demonstrators that will convince about the feasibility of the product.
发展智能微机构
如今,MEMS和VLSI技术生产出性能和功能不断提高的传感器,微控制器在小体积中产生越来越多的处理能力,电机的直径也小到1.9毫米。然而,将这些元素组合在一起仍然是一个挑战。例如,人们可以购买或开发一个非常小的视频摄像机子集,但如何使用两个直径5毫米的马达使其移动,如何精确地感知位置并像人眼一样快速移动,限制是一个简单的处理器,体积小于1立方英寸,价格与质量分布兼容?医疗和玩具市场也有类似的例子。1厘米/sup 3/机器人比赛是一个很好的训练微型系统,提高他们的智力。为了找到3d设计的有效思路,为了解决加工和组装微型机械部件的困难,为了将高速电机旋转转换为所需的运动,为了照顾电线的脆弱性和缺乏真正小的连接器,必须采取新的方法。甚至软件开发和调试也需要一种新的方法。该领域需要快速原型设计,以便在真实环境中测试新部件,并开发能够说服产品可行性的演示品。
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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