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Method for the Computer-Aided Schematic Design and Simulation of Hydrogel-Based Microfluidic Systems

机译:基于水凝胶的微流体系统的计算机辅助示意性设计和仿真方法

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We present an approach to the schematic design and time-dependent simulation of microfluidic systems that are composed of basic components, such as pumps, channels, mixing junctions, and valves. For the schematic capture and the simulation, the Cadence Virtuoso design framework is employed, with the components modeled by Verilog-AMS. The pressures and flow rates are calculated with the help of the hydraulic analogy between electronics and fluidics. Signal flow quantities are used to express the flow of chemical concentration. Our focus is on systems employing chemofluidic transistors, i.e., hydrogel-based microvalves that facilitate autonomous flow control without the need for an external control unit. Our approach also covers layout editing by the use of programmed cells. The utility of the approach is exemplified by the successful top-down design of a chemofluidic oscillator circuit and by the functionally correct simulation of a chemofluidic SR flip-flop.
机译:我们提出了一种方法,可以采用由基本部件组成的微流体系统的示意性设计和时间依赖性模拟,例如泵,通道,混合连接和阀门。对于原理图捕获和模拟,使用Cadence Virtuoso设计框架,由Verilog-AMS建模的组件。借助于电子和流体之间的液压模拟来计算压力和流速。信号流量用于表达化学浓度的流动。我们的重点是采用化学流体晶体管的系统,即,基于水凝胶的微型阀,其促进了自主流动控制而不需要外部控制单元。我们的方法还通过使用编程单元来涵盖布局编辑。该方法的效用是通过化学流体振荡器电路的成功自上而下设计和通过Chemof流体SR触发器的功能矫正模拟来举例说明。

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