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Miniaturized thermal flow sensor with planar-integrated sensor structures on semicircular surface channels

机译:在半圆形表面通道上具有平面集成传感器结构的小型热流量传感器

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A calorimetric miniaturized flow sensor was realized with a linear sensor response measured for water flow up to flow rates in the order of 300 nl min(-1). A versatile technological concept is used to realize a sensor with a thermally isolated freely suspended silicon-rich silicon-nitride microchannel directly below the substrate surface. The microchannel concept allows for the planar integration of sensor structures in close proximity to the fluid, while chemical-resistant fluidic connections can be made directly on top of the microchannel, without introducing large dead-volumes. The realized flow sensor consists of a microchannel with low hydraulic resistance and 4.5 nl total fluid volume. A pressure driven flow setup was used to force water through the microchannel, measuring output sensitivity in the order of 0.2 mu V/(nl min(-1)) for flows up to 300 nl min(-1). The measured sensor output is in close agreement with results obtained from both a detailed and an approximate numerical model of the sensor. (C) 2008 Published by Elsevier B.V.
机译:量热小型流量传感器实现了线性传感器响应,可测量直至流量达300 nl min(-1)的水流。使用一种通用的技术概念来实现一种传感器,该传感器在衬底表面正下方具有一个热隔离的,自由悬浮的,自由悬浮的富硅氮化硅微通道。微通道概念允许传感器结构在平面上紧密集成在流体附近,而耐化学性的流体连接可以直接在微通道顶部进行,而不会引入大的死体积。所实现的流量传感器包括一个具有低水力阻力和4.5 nl总流体体积的微通道。压力驱动的流量设置用于迫使水通过微通道,对于高达300 nl min(-1)的流量,测量输出灵敏度的顺序为0.2μV /(nl min(-1))。测得的传感器输出与从传感器的详细模型和近似数值模型获得的结果非常一致。 (C)2008由Elsevier B.V.发布

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