首页> 外文会议>Nano/Micro Engineered and Molecular Systems (NEMS), 2012 7th IEEE International Conference on >Reduction of AC resistance in MEMS intraocular foil coils using microfabricated planar Litz structure
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Reduction of AC resistance in MEMS intraocular foil coils using microfabricated planar Litz structure

机译:使用微加工平面Litz结构降低MEMS眼内箔线圈中的AC电阻

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The next-generation implantable high-power prosthetic devices, such as retinal prostheses, will be powered by inductively coupled coils of high efficiency. However, the use of high-frequency power carriers almost always induces significant AC resistance due to skin and proximity effects, which limits the overall coupling efficiency. Inspired by the widely used round Litz wire, planar coils with planar Litz structures were investigated on the printed circuit board (PCB) and showed the reduced AC resistances in some specific frequency ranges. Herein, various planar Litz structures were introduced into previous MEMS foil coils, which have been proved to be superior over the conventional planar counterparts. The experimental results provided by the aforementioned prototypes showed a reduction of AC resistance up to 13.3% compared to a solid foil coil. A microfabrication process, which combines a single layer metal deposition and patterning with a post folding step, was developed to construct the planar Litz structure.
机译:下一代植入式高功率假体设备(例如视网膜假体)将由高效感应耦合线圈供电。但是,由于皮肤和邻近效应,高频功率载波的使用几乎总是会引起很大的交流电阻,从而限制了整体耦合效率。受到广泛使用的圆形李兹线的启发,在印刷电路板(PCB)上研究了具有平面Litz结构的平面线圈,结果表明在某些特定频率范围内交流电阻降低了。在此,将各种平面的Litz结构引入到以前的MEMS箔线圈中,事实证明它们优于传统的平面对应结构。前述原型提供的实验结果表明,与实心箔线圈相比,交流电阻降低了13.3%。开发了一种微加工工艺,该工艺将单层金属沉积和图案化与后折叠步骤相结合,以构造平面Litz结构。

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