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Stabilization of the tilt motion during capillary self-alignment of rectangular chips

机译:矩形芯片的毛细自对准过程中倾斜运动的稳定

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摘要

Capillary self-alignment (CSA) has emerged as a convenient technique to assemble solid objects. In this technique a liquid droplet forces a mobile solid plate or chip to align with its counterpart on a solid substrate. It has been widely investigated for applications such as 3D microelectronics and assembly of optical components. It is now thought that it could be a solution for surface mounting and packaging technologies. For 3D microelectronics, where square or rectangular chips are used, it has been found that amongst the four displacement modes, i.e. shift, twist, lift and tilt, only the tilt mode was unstable (not restoring). In particular, tilting of a floating square or rectangular chip may trigger a direct contact between the plate and the pad that impedes alignment. In this text, an analysis of the tilt mode is first presented. Second, it is demonstrated that tilt can be stabilized by incorporating specific geometrical features such as lyophilic bands patterned on the substrate. (C) 2015 Elsevier B.V. All rights reserved.
机译:毛细管自对准(CSA)已经成为一种组装固体物体的便捷技术。在该技术中,液滴迫使移动的固体板或芯片与其在固体衬底上的对应物对齐。它已被广泛研究用于3D微电子学和光学组件组装等应用。现在认为这可能是表面安装和封装技术的解决方案。对于使用正方形或矩形芯片的3D微电子学,已经发现在四种位移模式中,即移位,扭曲,提升和倾斜,只有倾斜模式是不稳定的(不能恢复)。特别地,浮动的正方形或矩形芯片的倾斜可能触发板与垫之间的直接接触,从而阻碍对准。在本文中,首先介绍了倾斜模式。其次,证明了通过结合特定的几何特征(例如在基材上构图的亲液带)可以稳定倾斜。 (C)2015 Elsevier B.V.保留所有权利。

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