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首页> 外文期刊>Journal of Applied Physics >Electrical microfluidic pressure gauge for elastomer microelectromechanical systems
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Electrical microfluidic pressure gauge for elastomer microelectromechanical systems

机译:用于弹性体微机电系统的电动微流体压力计

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摘要

We report on an electrical microfluidic pressure gauge. A polydimethylsiloxane microvalve closes at a characteristic applied pressure determined by the material's properties and the valve's dimensions. Hence, when the same pressure is applied to all valves of a heterogeneous valve array, some valves close while others remain open. The state of the array is combined with knowledge of the respective characteristic closing pressures of the individual valves to yield an estimate of the applied pressure. The state of each valve is obtained by electrical measurements, since the electrical resistance of the respective underlying fluid-filled channel increases by at least two orders of magnitude as the valve closes and its insulating elastomer material interrupts the electrical circuit. The overall system functions as a pressure gauge with electrical readout. This device would be a critical component in active pressure-regulation loops in future integrated microfluidic systems.
机译:我们报告了一个电动微流体压力计。聚二甲基硅氧烷微阀在由材料特性和阀门尺寸决定的特征施加压力下关闭。因此,当相同的压力施加于异构阀阵列的所有阀时,一些阀关闭而另一些阀保持打开。阵列的状态与各个阀的相应特性关闭压力的知识相结合,以得出所施加压力的估计值。每个阀的状态通过电气测量获得,因为当阀关闭且其绝缘弹性体材料中断电路时,相应的下方填充流体的通道的电阻会增加至少两个数量级。整个系统用作带电子读数的压力表。该设备将成为未来集成微流体系统中主动压力调节回路的关键组件。

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