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Eyeglasses-powered, contact lens-like platform with high power transfer efficiency

机译:眼镜驱动的类隐形眼镜平台,具有高功率传输效率

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We present a contact lens-like platform that is wirelessly powered by an external coil embedded in eyeglasses via magnetic resonance coupling at 13.56 MHz. The platform is composed of a transparent parylene film as a host substrate, an embedded spiral inductor as a power receiving coil, and metal interconnects for additional electronics. A multilayer thin-film parylene packaging process is used to meet the form factor of a contact lens. A 36 mu m-thick metal plating technique is employed on a parylene film to enhance the quality factor (Q) of the receiving coil (Q=27.3 at 13.56 MHz). The power transfer method and techniques to compensate for coil misalignment are demonstrated on a pig eye, achieving a power transfer efficiency of 17.5 % at a 20-mm powering distance. The effect of tissue on the coil and the power transfer efficiency is examined. The high power transfer efficiency along with the wearable prototype demonstrated herein make promising progress toward smart contact lens in ocular diagnostics.
机译:我们提出了一种类似于隐形眼镜的平台,该平台由嵌入眼镜中的外部线圈通过13.56 MHz的磁共振耦合无线供电。该平台由透明的聚对二甲苯薄膜作为主体基板,嵌入式螺旋电感器作为受电线圈以及用于其他电子设备的金属互连组成。多层薄膜聚对二甲苯包装工艺用于满足隐形眼镜的尺寸要求。在聚对二甲苯薄膜上采用36微米厚的金属电镀技术,以提高接收线圈的品质因数(Q)(在13.56 MHz下Q = 27.3)。在猪眼上演示了用于补偿线圈未对准的功率传输方法和技术,在20毫米的供电距离下实现了17.5%的功率传输效率。检查了组织对线圈的影响和功率传输效率。本文展示的高功率传输效率和可穿戴原型在眼部诊断领域朝着智能隐形眼镜取得了可喜的进展。

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