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Flow resistance for microfluidic logic operations

机译:微流逻辑运算的流阻

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摘要

Control of relative flow resistance is used for the actuation of both one- and two-input microfluidic "logical gates". By taking advantage of system nonlinearities and despite the linear response of laminar flows associated with these length scales, a number of operators including the NOT, AND, OR, XOR, NOR, and NAND are demonstrated. Because these gates can be actuated simultaneously they can be combined to form more complicated devices such as a half adder. This approach is therefore flexible and illustrates that any macro- or microscale technique that can alter flow resistance can be used as the basis of a fluid-based logical micro-operator.
机译:相对流阻的控制用于一输入和两输入微流体“逻辑门”的致动。通过利用系统非线性和尽管与这些长度尺度相关的层流的线性响应,仍演示了许多运算符,包括NOT,AND,OR,XOR,NOR和NAND。由于这些门可以同时启动,因此可以将它们组合起来以形成更复杂的设备,例如半加法器。因此,该方法具有灵活性,并说明可以改变流阻的任何宏观或微观技术都可以用作基于流体的逻辑微操作器的基础。

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