A fully integrated three-axis thermal accelerometer

C. S. Silva, J. Pontes, J. Viana, L. Rocha, J. Gaspar
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引用次数: 3

Abstract

A combined fabrication process using polymer and silicon planar microtechnologies is presented here and used for the fabrication of a fully-integrated three-axis thermal accelerometer. The use of polymers (polystyrene and polyimide) with low thermal conductivities improves the overall power consumption of the thermal accelerometer and enables a simple and low-cost fabrication process. The accelerometer is composed of 4 polystyrene microinjected structural microparts (two identical top parts and two identical central parts) and three polyimide membranes (two identical z-axis membranes and a central membrane). The microinjected parts provide the mechanical support for the active elements that are placed on the membranes (the heater and the temperature sensors). Fabricated microparts and membranes are presented and measurements performed on central membranes are used to characterize the heater. Experimental results reveal that a power of 58 mW is required to increase the temperature in the heater to 580K.
一个完全集成的三轴热加速度计
本文提出了一种利用聚合物和硅平面微技术的组合制造工艺,并将其用于制造全集成三轴热加速度计。使用导热系数低的聚合物(聚苯乙烯和聚酰亚胺)提高了热加速度计的整体功耗,并实现了简单和低成本的制造工艺。加速度计由4个聚苯乙烯微注射结构微部件(两个相同的顶部和两个相同的中心部件)和3个聚酰亚胺膜(两个相同的z轴膜和一个中心膜)组成。微注射部件为放置在膜上的活性元件(加热器和温度传感器)提供机械支持。制备的微部件和膜提出和测量执行的中心膜是用来表征加热器。实验结果表明,将加热器的温度提高到580K需要58 mW的功率。
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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