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Electronic control of elastomeric microfluidic circuits with shape memory actuators

机译:带有形状记忆执行器的弹性微流体电路的电子控制

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摘要

Recently, sophisticated fluidic circuits with hundreds of independent valves have been built by using multi-layer soft-lithography to mold elastomers. However, this shrinking of microfluidic circuits has not been matched by a corresponding miniaturization of the actuation and interfacing elements that control the circuits; while the fluidic circuits are small (~10–100 micron wide channels), the Medusa's head-like interface, consisting of external pneumatic solenoids and tubing or mechanical pins to control each independent valve, is larger by one to four orders of magnitude (mm to cm). Consequently, the dream of using large scale integration in microfluidics for portable, high throughput applications has been stymied. By combining multi-layer soft-lithography with shape memory alloys (SMA), we demonstrate electronically activated microfluidic components such as valves, pumps, latches and multiplexers, that are assembled on printed circuit boards (PCBs). Thus, high density, electronically controlled microfluidic chips can be integrated alongside standard opto-electronic components on a PCB. Furthermore, we introduce the idea of microfluidic states, which are combinations of valve states, and analogous to instruction sets of integrated circuit (IC) microprocessors. Microfluidic states may be represented in hardware or software, and we propose a control architecture that results in logarithmic reduction of external control lines. These developments bring us closer to building microfluidic circuits that resemble electronic ICs both physically, as well as in their abstract model.
机译:最近,通过使用多层软光刻技术来模制弹性体,已经建立了具有数百个独立阀的复杂流体回路。然而,微流体电路的这种收缩没有通过控制电路的致动和接口元件的相应的小型化来匹配。当流体回路很小(约10-100微米宽的通道)时,美杜莎的头状接口(由外部气动螺线管和管子或机械销组成,用于控制每个独立阀)大了一个到四个数量级(毫米)至厘米)。因此,对于在便携式,高通量应用中在微流体中使用大规模集成的梦想已成定局。通过将多层软光刻技术与形状记忆合金(SMA)结合使用,我们演示了电子激活的微流体组件,例如阀,泵,闩锁和多路复用器,它们组装在印刷电路板(PCB)上。因此,可以将高密度,电控微流控芯片与标准光电组件集成在PCB上。此外,我们介绍了微流体状态的概念,它是阀状态的组合,类似于集成电路(IC)微处理器的指令集。微流体状态可以用硬件或软件表示,我们提出了一种控制体系结构,该结构导致外部控制线的对数减少。这些发展使我们更接近于构建在物理上和抽象模型上都类似于电子IC的微流体电路。

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