Implementation of planar inverted-F structure for wireless charging radiator

A. Ridwan, Atik Charisma, M. R. Hidayat, E. Taryana, A. Munir
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引用次数: 5

Abstract

This paper presents the design of radiator for wireless charging application using meandering form technique of spiral shape. The proposed wireless charging radiator is designed on a 1.6mm thick FR4 epoxy dielectric substrate workable at the frequency of 13.5MHz. To improve the performance of radiator, the method of planar inverted-F structure is implemented by adding a short pin at the end of radiator. This method can enhance the value of S11 wherein simulation result of the radiator without planar inverted-F structure has S11 value of −13.27dB, while the radiator with planar inverted-F structure has S11 value of −37.73dB. Beside enhancing the value of S11, the use of planar inverted-F structure is reducible the overall size of radiator by cutting off the radiator strip up to 2.617m. Therefore, by implementing planar inverted-F structure the size of radiator is 240mm × 240mm with the length of radiator strip from the probe to the short pin as far as 5.993m.
无线充电散热器平面倒f结构的实现
本文采用螺旋形状的曲线形技术设计了无线充电用的散热器。所提出的无线充电散热器设计在工作频率为13.5MHz的1.6mm厚FR4环氧介电基片上。为了提高辐射体的性能,采用平面倒f型结构的方法,在辐射体末端增加一个短引脚。该方法可提高S11值,其中未采用平面倒f结构的散热器的仿真结果S11值为−13.27dB,采用平面倒f结构的散热器的仿真结果S11值为−37.73dB。在提高S11值的同时,采用平面倒f型结构,将散热器的散热器条切割至2.617m,减小了散热器的整体尺寸。因此,通过实现平面倒f型结构,散热器尺寸为240mm × 240mm,从探头到短针的辐射带长度为5.993m。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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