二维CMOS热气泡加速度计的新方法

Yin-Ting Yang, Shu-Jung Chen, Wei-Te Lin, Wei-Hong Tu, Chun-An Huang, Wen-Ling Liu, Chih-Hsiung Shen
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引用次数: 4

摘要

提出了一种新型的热气泡微机械加速度计,它具有固体热导率低、灵敏度高的优点。利用我们提出的微链接结构,一个新的加速度计与一个微型加热器,两对热电堆漂浮在一个蚀刻腔。微加热器以膜为中心,另外两对热电堆相互交叉。加热器和热电堆之间采用微链接的网状结构连接,增强了结构,大大减少了从加热器到热电堆热结的固体热流。此外,样品采用中芯公司提供的TSMC 0.35 mum 2P4M CMOS工艺制备,结构坚固,质量均匀。我们的设计被证明是足够的商业批量生产。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A New Approach of 2D CMOS Thermal-Bubble-Based Accelerometer
A novel thermal-bubble-based micromachined accelerometer with advantages of low solid thermal conductance and high sensitivity is presented in this paper. With our proposed micro-link structure, a new accelerometer was built with a micro heater, two pairs of thermopiles which were floating over an etched cavity. The micro-heater is centered on the membrane and two pairs of thermopiles besides are crossed with each other. The heater and the thermopiles are connected by network structure of micro-links, which enhance the structure and greatly reduce the solid heat flow from the heater to the hot junctions of thermopiles. Furthermore, the samples are fabricated by TSMC 0.35 mum 2P4M CMOS process which is provided by CIC with outstanding strong structures and uniform quality. Our design is proved to be adequate for commercial batch production.
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