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首页> 外文期刊>Sensors and materials >Implementation of Six-axis Inertial Measurement Unit on a Stretchable Platform Using 'Cut-and-Paste' Method for Biomedical Applications
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Implementation of Six-axis Inertial Measurement Unit on a Stretchable Platform Using 'Cut-and-Paste' Method for Biomedical Applications

机译:使用“切割粘贴”方法在伸展平台上实现六轴惯性测量单元的生物医学应用方法

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摘要

Wearable devices that can process and transmit signals from the human body have the potential to provide valuable biometric data for mobile health (mHealth) and human-machine interface (HMI). Among recent advancements in flexible and stretchable electronics, epidermal electronic devices have shown major breakthroughs in wearable device research fields. Epidermal systems, such as tattoo-and patch-type stretchable systems, have conformity to the human skin, which can be deformed with the skin without detachment for fracture. In this paper, the implementation of a six-axis inertial measurement unit (IMU) on a stretchable platform for applications in wearable electronics is presented. The proposed device is implemented using circuit elements on a patchlike substrate to collect accurate data from the human body. To achieve flexible and stretchable characteristics of the device, a serpentine interconnection is adopted between the circuit elements. Instead of a microfabrication process, a low-cost, dry, and freeform "cut-and-paste" method that uses a thin metal sheet and a cutting tool to fabricate complex serpentine interconnections is used to fabricate the substrate. The performance characteristics of the IMU using the proposed method are demonstrated for future application in highly accurate biosensors.
机译:可穿戴设备可以处理和传输来自人体的信号有可能为移动健康(MHealth)和人机界面(HMI)提供有价值的生物识别数据。在柔性和可伸缩电子的最新进步中,表皮电子器件在可穿戴设备研究领域中显示出主要突破。表皮系统,如纹身和贴片型拉伸系统,对人体皮肤一致,可以与皮肤变形而没有裂缝的脱离。本文介绍了在可穿戴电子设备中的可拉伸平台上的六轴惯性测量单元(IMU)的实现。所提出的装置在贴片衬底上使用电路元件来实现,以从人体收集精确的数据。为了实现装置的灵活和可拉伸的特性,在电路元件之间采用了蛇形互连。代替微型制作过程,使用薄金属板和切削工具制造复杂的蛇形互连的低成本,干燥和自由形式的“切割和粘贴”方法用于制造基板。使用所提出的方法的IMU的性能特征被证明在高度准确的生物传感器中的未来应用。

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