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High-Precision Digital Microflow Controllers Using Fluidic Digital-to-Analog Converters Composed of Binary-Weighted Flow Resistors

机译:使用由二进制加权流阻组成的流体数模转换器的高精度数字微流控制器

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This paper presents digital microflow controllers (DMFC) where a fluidic digital-to-analog converter (DAC) is used to achieve high-linearity and fine-levels in flow-rate control for applications to precise biomedical dosing systems. The fluidic DAC, composed of binary-weighted flow resistance, is designed to control the flow-rate based on the ratio of the flow resistance to achieve finer flow-rate levels. The binary-weighted flow resistance has been specified by a serial or a parallel connection of an identical flow resistor to improve the linearity of the flow-rate control by making the flow-resistance ratio insensitive to the size errors of flow resistors in micromachining process. We have designed and fabricated three types of 4-digit DMFC: Prototype S and p with serial and the parallel combinations of an identical flow resistor and Prototype V with width-varied flow resistors. In the experimental study, we perform static DMFC tests at forward and backward flow conditions as well as dynamic DMFC tests at pulsating flow conditions. The present DMFC shows the nonlinearity of 5.0% and finer flow-rate levels of 16(2{sup}N) for 4(N) digital valves. From the measured flow-rate deviation due to micromachining errors, Prototype S and P show 27.2% and 27.6% of the deviation measured from Prototype V, respectively; thus, verifying that Prototype S and P are less sensitive to the micromachining errors than Prototype V.
机译:本文介绍了数字微流量控制器(DMFC),其中使用流体数模转换器(DAC)来实现高线性度和流量控制中的精细水平,以应用于精确的生物医学配料系统。由二进制加权流阻组成的流体DAC设计为基于流阻的比率来控制流率,以实现更精细的流率水平。二进制加权的流阻已通过相同流阻的串联或并联连接来指定,以通过使流阻比对微机械加工过程中流阻的尺寸误差不敏感来改善流率控制的线性。我们已经设计和制造了三种类型的4位DMFC:具有串行和并行组合的相同流量电阻器的原型S和p,以及具有可变宽度的流量电阻器的原型V。在实验研究中,我们在正向和反向流动条件下执行静态DMFC测试,在脉动流动条件下执行动态DMFC测试。当前的DMFC显示了4%(N)数字阀的5.0%的非线性和16(2 {sup} N)的更精细的流量水平。从由于微加工误差引起的测量流量偏差,原型S和P分别显示出与原型V相比测量的偏差的27.2%和27.6%;因此,验证原型S和P对原型加工误差的敏感度要小于原型V。

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