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High precision control of gap height for enhancing principal digital microfluidics operations

机译:间隙高度的高精度控制,以增强主要的数字微流体操作

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A variable gap size actuation (VGSA) mechanism is integrated into the digital microfluidic (DMF) system. The VGSA mechanism serves to optimize the aspect ratio during performing different microfluidic operations by changing the gap height between the top and bottom plates. This in effect will have a direct impact on the four main DMF operations including droplet transport, splitting, dispensing and merging as they are greatly affected by changing the aspect ratio. Experimental results demonstrate that the VGSA mechanism significantly enhances the principal DMF operations by retaining the appropriate gap height for each operation which is also dependent on droplets volumes when using fixed electrode size. Specifically, varying the gap height precisely between the two plates will enable us to transport the droplets more reliably, control the volume of the dispensed droplet, carry out splitting and merging more effectively, facilitate motion of residual droplets resulting from splitting or partial evaporation, enhance mixing at faster rates, achieve accurate positioning of droplets regardless of their volume, and minimize evaporation without complicating the DMF system with the use of a filler medium. The proposed mechanism is realized by accurate positioning of the top plate over the fixed bottom plate, instead of maintaining a fixed gap height during the operation. In this work, an experimental setup is constructed for the proof of concept to meet precise alignment requirements of the two parallel plates using a feedback-controlled positioning system. Three different methods viz., visual, capacitance-based and encoder values, are used to measure the gap height between the two plates precisely. For practical lab-on-chip devices, micro-actuators in conjunction with capacitance measurement feedback can be used to position the top plate during the operation. In this way, the proposed VGSA mechanism will introduce a mean for optimizing the parameters controlling the DMF operations.
机译:可变间隙尺寸驱动(VGSA)机制已集成到数字微流(DMF)系统中。 VGSA机制用于通过更改顶板和底板之间的间隙高度来在执行不同的微流体操作期间优化长宽比。实际上,这将直接影响四个主要的DMF操作,包括液滴传输,拆分,分配和合并,因为它们会受到更改长宽比的极大影响。实验结果表明,VGSA机制可通过为每个操作保留适当的间隙高度来显着增强DMF的主要操作,在使用固定电极尺寸时,间隙高度还取决于液滴的体积。具体来说,精确地改变两个板之间的间隙高度将使我们能够更可靠地传输液滴,控制分配的液滴的体积,更有效地进行分裂和合并,促进由分裂或部分蒸发导致的残余液滴运动,增强以更快的速度混合,无论液滴的体积如何均可实现精确的液滴定位,并最大限度地减少蒸发,而不会因使用填充介质而使DMF系统复杂化。所提出的机构是通过将顶板精确地定位在固定底板上来实现的,而不是在操作过程中保持固定的间隙高度。在这项工作中,构建了一个实验装置用于概念验证,使用反馈控制的定位系统满足两个平行板的精确对准要求。三种不同的方法,即视觉方法,基于电容的方法和编码器值,用于精确测量两个板之间的间隙高度。对于实际的芯片实验室设备,可以在操作过程中将微执行器与电容测量反馈一起用于放置顶板。这样,提出的VGSA机制将引入一种手段来优化控制DMF操作的参数。

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