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A Low-Cost Field-Programmable Pin-Constrained Digital Microfluidic Biochip

机译:低成本现场可编程的引脚受限数字微流控生物芯片

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摘要

This paper introduces a field-programmable pin-constrained digital microfluidic biochip (FPPC-DMFB), which offers general-purpose assay execution at a lower cost than general-purpose direct addressing DMFBs and highly optimized application-specific pin-constrained DMFBs. One of the key cost drivers for DMFBs is the number of printed circuit board (PCB) layers, onto which the device is mounted. We demonstrate a scalable single-layer PCB wiring scheme for several FPPC-DMFB variations, for PCB technology with orthogonal routing capacity of at least three; for PCB technology with orthogonal capacity of two, more PCB layers are required, but the FPPC-DMFB retains its cost advantage. These results offer new insights on the relationship between PCB layer count, pin count, and cost. Additionally, to reduce the execution time of assays on the FPPC-DMFB, we present efficient algorithms for droplet routing, with and without contamination removal via wash droplets.
机译:本文介绍了一种现场可编程的受引脚限制的数字微流控生物芯片(FPPC-DMFB),该芯片以比通用直接寻址DMFB和高度优化的特定于应用的受引脚限制的DMFB更低的成本提供了通用检测执行方法。 DMFB的主要成本驱动因素之一是设备安装在其上的印刷电路板(PCB)层数。我们演示了针对几种FPPC-DMFB变体的可扩展单层PCB布线方案,该方案用于正交布线容量至少为3的PCB技术。对于具有两个正交容量的PCB技术,需要更多的PCB层,但是FPPC-DMFB保留了其成本优势。这些结果为PCB层数,引脚数和成本之间的关系提供了新的见解。此外,为了减少在FPPC-DMFB上进行测定的时间,我们提出了有效的液滴路由算法,可以通过和不通过清洗液滴去除污染物。

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