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Radiator for Wireless Charging Application Based on Electromagnetic Coupling Resonant

机译:基于电磁耦合谐振的无线充电散热器

摘要

This paper presents the design and characterizationof radiator for wireless charging application. The radiator isdesigned based on electromagnetic coupling resonant using amicrostrip patch in spiral shape to work at operating frequencyaround 10MHz with the dimension of patch deployment of 50mm× 60mm. The design process includes characterizations of variedpatch length and of gap separation between 2 stacked radiators toachieve the optimum performance. After obtaining the optimumdesign, the radiator is deployed on a side of FR4 Epoxy dielectricsubstrate with the thickness of 0.8mm, whilst the other sideis applied for a groundplane. The realized radiator is thenmeasured experimentally to obtain its characteristic responsesto be compared with the design results. From numerical characterization,the radiator works at operating frequency of 10MHzwith S11 value of -29.79dB and S21 value of -1.62dB. Whilstfrom experimental characterization, the operating frequency offabricated radiator is 9.21MHz with values of S11 and S21 of-20.22dB and -2.72dB, respectively.
机译:本文介绍了用于无线充电应用的散热器的设计和特性。该辐射器基于电磁耦合共振设计,使用螺旋形微带贴片设计,以10MHz左右的工作频率工作,贴片部署尺寸为50mm x 60mm。设计过程包括表征贴片长度变化以及两个堆叠式散热器之间的间隙间距以实现最佳性能的特征。在获得最佳设计之后,将辐射器部署在FR4环氧树脂电介质基板的一侧,其厚度为0.8mm,而另一侧则用于接地板。然后对已实现的散热器进行实验测量,以获得其特性响应,并与设计结果进行比较。从数值特性来看,辐射器工作在10MHz的工作频率下,S11值为-29.79dB,S21值为-1.62dB。从实验特性来看,装配式散热器的工作频率为9.21MHz,S11和S21的值分别为-20.22dB和-2.72dB。

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