首页> 外文会议>2012 9th France-Japan amp; 7th Europe-Asia Congress on Research and Education in Mechatronics, 2012 13th International Workshop on Mechatronics. >Fabrication of a micropellistor with MEMS-Based microhotpalte applying the Technology of Micro-fluidics digitalization
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Fabrication of a micropellistor with MEMS-Based microhotpalte applying the Technology of Micro-fluidics digitalization

机译:应用基于微流控数字化技术的基于MEMS的微热板制造微电阻

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The size of the microhotpaltes based on MEMS is micron-grade, typically rectangular membrane of 270μmχ70μm, in micropellistors. Coating catalytic materials on the microhotplate appeared to be an extremely critical step in practice. We report a promising approach for coating catalytic materials on the microhotplate of micropellistors in the paper. A catalytic material coating apparatus was established according to the Technology of Micro-Fluidics Digitalization. In this apparatus, the catalytic materials, finely dispersed A1203 suspension and platinum palladium catalyst, were ejected out a micro-nozzle by the pulse inertia force produced by a piezoelectric actuator. The micro-nozzle is fabricated by glass heat process and has the advantages of won't being corroded after being exposed in air for long time, won't pollute the chemical solution in it and being of low cost. The porous A1203 matrix thickness and the amount of catalyst can be controlled accurately in this apparatus. The micropellistor with original signal of 75mV was fabricated in this paper and 36m V was remained after aging treatment. The power consumption can remain 75mW as well.
机译:基于MEMS的微热板的尺寸为微米级,通常为微薄膜晶体管中的270μm×70μm的矩形膜。在实践中,在微孔板上涂覆催化材料似乎是极其关键的一步。我们在论文中报道了一种在微致动器的微热板上涂覆催化材料的有前途的方法。根据微流体数字化技术建立了催化材料涂覆设备。在该装置中,由压电体产生的脉冲惯性力将催化材料,细分散的A1 2 0 3 悬浮液和铂钯催化剂喷出微喷嘴。执行器。该微喷嘴采用玻璃热处理工艺制成,具有长期暴露在空气中不会被腐蚀,不会污染其中的化学溶液,成本低廉的优点。在该装置中,可以精确地控制多孔A1 2 0 3 的基质厚度和催化剂的量。制作了原始信号为75mV的微电阻,经过时效处理后仍保留了36mV。功耗也可以保持75mW。

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