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Analyzing threshold pressure limitations in microfluidic transistors for self-regulated microfluidic circuits

机译:分析用于自调节微流路的微流晶体管的阈值压力限制

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摘要

This paper reveals a critical limitation in the electro-hydraulic analogy between a microfluidic membrane-valve (mu MV) and an electronic transistor. Unlike typical transistors that have similar on and off threshold voltages, in hydraulic mu MVs, the threshold pressures for opening and closing are significantly different and can change, even for the same mu MVs depending on overall circuit design and operation conditions. We explain, in particular, how the negative values of the closing threshold pressures significantly constrain operation of even simple hydraulic mu MV circuits such as autonomously switching two-valve microfluidic oscillators. These understandings have significant implications in designing self-regulated microfluidic devices
机译:本文揭示了在微流体膜阀(mu MV)和电子晶体管之间的电液模拟中的关键限制。与具有类似的开和关阈值电压的典型晶体管不同,在液压mu MV中,即使对于相同的mu MV,打开和关闭的阈值压力也明显不同并且可以改变,具体取决于整个电路设计和操作条件。我们特别说明了关闭阈值压力的负值如何显着限制甚至简单的液压mu MV回路(例如自动切换两阀微流体振荡器)的运行。这些理解对设计自调节微流控设备具有重要意义。

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