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Implementation Polydimethylsiloxane based Stretchable conductive ink (SCI) for printable-stretchable electronic devices towards heterogeneous integration system

机译:实施基于聚二甲基硅氧烷的可拉伸导电油墨(SCI),用于可印刷,可拉伸的电子设备,实现异构集成系统

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摘要

Next generation electronics should be implementation on heterogeneous integration between sensor device with micro controller unit (MCU). Towards to robustness and high sensing performance, hybrid flexible printed electronic (HFPE) technology becoming an alternative for sensor fabrication compared to conventional silicon semiconductor processing photolithography technique. Thus in this paper, formulation on stretchable conductive ink (SCI) by implementing polydimethylsiloxane (PDMS) as a binder mixed with silver (Ag) flake was characterized. Resistance average between 0.6 - 98.9 with strecthability from 0% to 90%. Fabricated strechtable based temperature sensor showed the resistivity of circuit trace was average 0.7-1.6 Ohm.μm. This paper showed the capability implementation SCI as a circuit trace and heteregenously integration with multiple rigid components such as micro controller unit IC, LED IC, temperature sensor and cable connector as a simple temperature circuit system on TPU substrate.
机译:下一代电子设备应实现传感器设备与微控制器单元(MCU)之间的异构集成。为了达到鲁棒性和高感测性能,与传统的硅半导体处理光刻技术相比,混合柔性印刷电子(HFPE)技术已成为传感器制造的替代选择。因此,在本文中,通过将聚二甲基硅氧烷(PDMS)用作与银(Ag)薄片混合的粘合剂,对可拉伸导电油墨(SCI)上的配方进行了表征。电阻平均值在0.6-98.9之间,可穿透性从0%到90%。制成的基于可拉伸的温度传感器显示电路迹线的电阻率平均为0.7-1.6Ohm.μm。本文展示了将能力实现SCI作为电路迹线,并与TPU基板上的简单温度电路系统,与多个刚性组件(如微控制器单元IC,LED IC,温度传感器和电缆连接器)进行异构集成。

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