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Application of Double Gate Ion Sensitive Field Effect Transistor for Detection of Fluid Flow Rate in Micro-channel

机译:双栅极离子敏感场效应晶体管在微通道中检测流体流速检测的应用

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In this work a micro flow sensor, using a double gate Ion Sensitive Field Effect Transistor (ISFET) and two metal electrodes, for fluid flow rate measurement in micro-channels were fabricated and demonstrated. By the channel fabrication the molds were patterned reversely on a silicon wafer using Deep Reactive Ion Etcher (DRIE). The double gate ISFET and two metal electrodes were placed on the mold in the distance 15 millimeters. The channels were formed using polydimethylsiloxane (PDMS) from the mold with the width 1000 and 2000 micrometer and the depth of 250 micrometer. After removing PDMS from the mold the channel was bonded with glass substrate by RF plasma technique. By the verification of flow sensors working range water and one mole of sodium nitrate solution were alternated in flow channel. The fluid flow rate were compared with the flow rate from weighing. It found from the comparison that the high deviation was found at low flow rate. Furthermore, the deviation depends also on the dimension of the flow channel.
机译:在该工作中,制造和说明,在使用双栅极离子敏感场效应晶体管(ISFET)和两个金属电极的微流量传感器的微流量传感器进行制造和说明。通过沟道制造,使用深反应离子蚀刻器(DRIE)在硅晶片上反向图案化模具。将双栅极IsFET和两个金属电极放置在距离15毫米的模具上。使用从模具的聚二甲基硅氧烷(PDMS)形成通道,宽度1000和2000微米,深度为250微米。在从模具中除去PDMS后,通过RF等离子体技术与玻璃基板粘合通道。通过验证流动传感器的工作范围水和一摩尔硝酸钠溶液在流动通道中交替。将流体流速与称量的流速进行比较。它从比较中发现高偏差以低流速发现。此外,偏差也取决于流动通道的尺寸。

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