Ambient Temperature-Gradient Compensated Low-Drift Thermopile Flow Sensor

Marcel Dijkstra, T. Lammerink, M. D. de Boer, R. Wiegerink, M. Elwenspoek
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引用次数: 11

Abstract

A highly-sensitive thermal flow sensor for liquid flow with nl-min-1 resolution has been realised. The sensor consists of freely-suspended silicon-rich silicon-nitride microchannels with integrated Al heater resistors and Al/poly-Si++ thermopiles. The influence of drift in the thin-film metal resistors is effectively eliminated by using thermopiles combined with an adequate measurement method, where the power in the heater resistors is controlled, e.g. constant-power calorimetric method or temperature balancing method. The special meandering layout of the microchannels and the placement of thermopile junctions increases sensitivity by summing the thermopile voltages due to convection by fluid flow, whereas the influence of ambient temperature gradients is compensated for.
环境温度梯度补偿低漂移热电堆流量传感器
实现了一种分辨率为1 -min-1的高灵敏度液体流量传感器。该传感器由自由悬浮的富硅氮化硅微通道和集成的铝加热电阻和铝/多晶硅热电堆组成。利用热电堆结合适当的测量方法,如恒功率量热法或温度平衡法,有效地消除了薄膜金属电阻器漂移的影响。微通道的特殊蜿蜒布局和热电堆结的放置通过将流体对流引起的热电堆电压相加来提高灵敏度,同时补偿了环境温度梯度的影响。
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