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Pressure driven digital logic in PDMS based microfluidic devices fabricated by multilayer soft lithography

机译:多层软光刻技术在基于PDMS的微流体器件中的压力驱动数字逻辑

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摘要

Advances in microfluidics now allow an unprecedented level of parallelization and integration of biochemical reactions. However, one challenge still faced by the field has been the complexity and cost of the control hardware: one external pressure signal has been required for each independently actuated set of valves on chip. Using a simple post-modification to the multilayer soft lithography fabrication process, we present a new implementation of digital fluidic logic fully analogous to electronic logic with significant performance advances over the previous implementations. We demonstrate a novel normally closed static gain valve capable of modulating pressure signals in a fashion analogous to an electronic transistor. We utilize these valves to build complex fluidic logic circuits capable of arbitrary control of flows by processing binary input signals (pressure (1) and atmosphere (0)). We demonstrate logic gates and devices including NOT, NAND and NOR gates, bistable flip-flops, gated flip-flops (latches), oscillators, self-driven peristaltic pumps, delay flip-flops, and a 12-bit shift register built using static gain valves. This fluidic logic shows cascade-ability, feedback, programmability, bi-stability, and autonomous control capability. This implementation of fluidic logic yields significantly smaller devices, higher clock rates, simple designs, easy fabrication, and integration into MSL microfluidics.
机译:现在,微流体技术的进步使生化反应的平行化和整合达到了前所未有的水平。然而,该领域仍然面临的挑战是控制硬件的复杂性和成本:对于芯片上的每个独立致动的阀组,都需要一个外部压力信号。使用对多层软光刻制造工艺的简单后修改,我们展示了一种完全类似于电子逻辑的数字流体逻辑的新实现,其性能比以前的实现有了很大的进步。我们演示了一种新颖的常闭静态增益阀,该阀能够以类似于电子晶体管的方式调制压力信号。我们利用这些阀来构建复杂的流体逻辑回路,通过处理二进制输入信号(压力(1)和大气(0))可以任意控制流量。我们演示了逻辑门和器件,包括非,与非或非门,双稳态触发器,门控触发器(锁存器),振荡器,自驱动蠕动泵,延迟触发器以及使用静态构建的12位移位寄存器增益阀。这种流体逻辑显示了级联能力,反馈,可编程性,双稳定性和自主控制能力。射流逻辑的这种实现产生了体积大大减小的设备,更高的时钟速率,简单的设计,容易的制造以及与MSL微流体的集成。

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