半导体封装介质层导电细线的直接图像化

Jung Shin Lee, Jung-Woo Cho, S. Park, Seungdon Lee, Hyun-Yong Lee, Daniel Min Woo Rhee
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引用次数: 0

摘要

采用喷墨印刷,可以通过适当的承印物润湿性来获得细导电线。我们研究了使用MOD墨水形成明确线条所需的表面条件。我们通过数值分析寻找润湿性的组合来实现目标线宽。数值方法采用点阵玻尔兹曼方法(LBM)。分析了微液滴在润湿性对比中的运动行为。此外,目前的研究还考虑了水滴的蒸发。根据基材的接触角和湿润带来观察墨滴的行为。还讨论了非均匀润湿性的影响。最后,根据数值分析得到的信息,我们将其应用于制作细导线的实验中。基材接触角不宜超疏油,此处蒸发效应小。如果是亲油的,由于液滴宽度的超调较大,基材的润湿性应适中。另一方面,要通过亲油性获得动力,润湿带必须具有较高的亲油性。在实验中,将MOD墨水沉积在试样上,使导线宽度分别为$5\mu\ mathm {m}$和$8\mu\ mathm {m}$。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Direct Patterning of Conductive Fine Line in Dielectric Layer for Semiconductor Package
Using inkjet printing, fine conductive lines could be obtained through a combination of suitable substrate wettability. we performed study on what surface conditions are necessary to form a well-defined line using MOD ink. We searched for a combination of wettability to achieve the target line width through numerical analysis. Lattice Boltzmann method (LBM) was used for the numerical technique. The behavior of micro droplets moving on the wettability contrast was analyzed. In addition, the evaporation of water droplet is considered in current study. The behavior of the ink droplet was observed according to the contact angle of the substrate and wetting band. Effect of non-uniform wettability also discussed. And finally, based on the information obtained from numerical analysis, we applied it to the experiment to make fine conductive lines. Contact angle of substrate should not be super-oleophobic, where the evaporation effect is small. And if oleophilic, since the overshoot of the droplet width was large, the wettability of the substrate should be moderate. On the other hand, to obtain driving force through oleophilicity, the wetting band must have high oleophilicity. In the experiment, MOD ink was deposited to specimen to make conductive line $5\mu\mathrm{m}$ and $8\mu\mathrm{m}$ widths.
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