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Switchable polymer-based thin film coils as a power module for wireless neural interfaces

机译:可切换的基于聚合物的薄膜线圈作为无线神经接口的电源模块

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摘要

Reliable chronic operation of implantable medical devices such as the Utah Electrode Array (UEA) for neural interface requires elimination of transcutaneous wire connections for signal processing, powering and communication of the device. A wireless power source that allows integration with the UEA is therefore necessary. While (rechargeable) micro-batteries as well as biological micro-fuel cells are yet far from meeting the power density and lifetime requirements of an implantable neural interface device, inductive coupling between two coils is a promising approach to power such a device with highly restricted dimensions. The power receiving coils presented in this paper were designed to maximize the inductance and quality factor of the coils and microfabricated using polymer-based thin film technologies. A flexible configuration of stacked thin film coils allows parallel and serial switching, thereby allowing to tune the coil's resonance frequency. The electrical properties of the fabricated coils were characterized and their power transmission performance was investigated in laboratory condition.
机译:植入式医疗设备(如用于神经接口的犹他州电极阵列(UEA))的可靠长期运行需要消除用于信号处理,设备供电和通信的经皮线连接。因此,需要允许与UEA集成的无线电源。尽管(可充电)微电池以及生物微燃料电池仍远不能满足植入式神经接口设备的功率密度和寿命要求,但两个线圈之间的电感耦合是一种有前途的方法,可为这种设备提供严格的限制尺寸。本文介绍的受电线圈旨在最大程度地提高线圈的电感和品质因数,并使用基于聚合物的薄膜技术进行微加工。堆叠式薄膜线圈的灵活配置允许并行和串行切换,从而允许调谐线圈的谐振频率。表征了所制造线圈的电性能,并在实验室条件下研究了它们的功率传输性能。

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