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Integrated Flexible Electronic Devices Based on Passive Alignment for Physiological Measurement

机译:基于无源对准的集成式柔性电子设备的生理测量

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摘要

This study proposes a simple method of fabricating flexible electronic devices using a metal template for passive alignment between chip components and an interconnect layer, which enabled efficient alignment with high accuracy. An electrocardiogram (ECG) sensor was fabricated using 20 µm thick polyimide (PI) film as a flexible substrate to demonstrate the feasibility of the proposed method. The interconnect layer was fabricated by a two-step photolithography process and evaporation. After applying solder paste, the metal template was placed on top of the interconnect layer. The metal template had rectangular holes at the same position as the chip components on the interconnect layer. Rectangular hole sizes were designed to account for alignment tolerance of the chips. Passive alignment was performed by simply inserting the components in the holes of the template, which resulted in accurate alignment with positional tolerance of less than 10 µm based on the structural design, suggesting that our method can efficiently perform chip mounting with precision. Furthermore, a fabricated flexible ECG sensor was easily attachable to the curved skin surface and able to measure ECG signals from a human subject. These results suggest that the proposed method can be used to fabricate epidermal sensors, which are mounted on the skin to measure various physiological signals.
机译:这项研究提出了一种简单的方法来制造柔性电子设备,该方法使用金属模板在芯片组件和互连层之间进行无源对准,从而能够以高精度进行有效对准。使用20 µm厚的聚酰亚胺(PI)膜作为柔性基板制造了一个心电图(ECG)传感器,以证明该方法的可行性。通过两步光刻工艺和蒸发来制造互连层。涂上焊膏后,将金属模板放在互连层的顶部。金属模板在与互连层上的芯片组件相同的位置处具有矩形孔。设计矩形孔尺寸以考虑切屑的对准公差。只需通过将组件插入模板的孔中即可进行被动对准,这基于结构设计可实现精确对准,并且位置公差小于10 µm,这表明我们的方法可以高效,高效地进行芯片安装。此外,所制造的柔性ECG传感器易于附接到弯曲的皮肤表面,并且能够测量来自人类对象的ECG信号。这些结果表明,所提出的方法可用于制造表皮传感器,将其安装在皮肤上以测量各种生理信号。

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