Testing of droplet-based microelectrofluidic systems

Fei Su, S. Ozev, K. Chakrabarty
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引用次数: 94

Abstract

Composite microsystems that integrate mechanical and fluidic components are fast emerging as the next generation of system-on-chip designs. As these systems become widespread in safety-critical biomedical applications, dependability emerges as a critical performance parameter. In this paper, we present a costeffective concurrent test methodology for droplet-based microelectrofluidic systems. We present a classification of catastrophic and parametric faults in such systems and show how faults can be detected by electrostatically controlling and tracking droplet motion. We then present tolerance analysis based on Monte-Carlo simulations to characterize the impact of parameter variations on system performance. To the best of our knowledge, this constitutes the first attempt to define a fault model and to develop a test methodology for droplet-based microelectrofluidic systems.
基于液滴的微电流体系统测试
集成了机械和流体元件的复合微系统正迅速成为下一代片上系统设计。随着这些系统在安全关键型生物医学应用中的广泛应用,可靠性成为一个关键的性能参数。在本文中,我们提出了一种具有成本效益的基于液滴的微电流体系统并行测试方法。我们提出了这种系统中灾难性和参数性故障的分类,并展示了如何通过静电控制和跟踪液滴运动来检测故障。然后,我们提出了基于蒙特卡罗模拟的容差分析,以表征参数变化对系统性能的影响。据我们所知,这是第一次尝试定义故障模型并开发基于液滴的微电流体系统的测试方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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