DocumentCode :
3101560
Title :
An Analysis of a Double-layer Electromagnetic Shield for a Universal Contactless Battery Charging Platform
Author :
Liu, X. ; Hui, S.Y.R.
Author_Institution :
Dept. of Electron. Eng., City Univ. of Hong Kong
fYear :
2005
fDate :
16-16 June 2005
Firstpage :
1767
Lastpage :
1772
Abstract :
A patented double-layer planar structure is employed to shield the electromagnetic (EM) field at the bottom of a universal charging platform. The double-layer consists of a layer of soft ferromagnetic material and a layer of conductive material. Thin 4F1 ferrite plate and the copper sheet are used in this example. This shielding technique is analyzed with the extended transmission line theory. With the formulas presented, the shielding effectiveness (SE) of both single-layer shield and double-layer shield could be calculated out directly, without using finite-element software. A classical transmitting-receiving loop measurement has been carried out to evaluate the SE of single ferrite shield, single copper shield and double-layer shield respectively. Calculated and measured results in the working frequency range of the charging platform from 100 kHz to 500 kHz confirm that the double-layer shield has obviously better SE than single-layer shield and can achieve a SE above 40 dB, which is commonly accepted by the industry. Finally, the potential of this double-layer shielding technique for a wide range of power electronic applications is discussed
Keywords :
battery chargers; conducting materials; electromagnetic fields; electromagnetic shielding; ferromagnetic materials; soft magnetic materials; 100 to 500 kHz; 4F1 ferrite plate; conductive material; copper sheet; double-layer electromagnetic shield; double-layer planar structure; electromagnetic field; extended transmission line theory; shielding effectiveness; soft ferromagnetic material; transmitting-receiving loop measurement; universal contactless battery charging platform; Batteries; Conducting materials; Copper; Electromagnetic analysis; Electromagnetic fields; Electromagnetic shielding; Ferrites; Magnetic materials; Sheet materials; Transmission line theory;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Electronics Specialists Conference, 2005. PESC '05. IEEE 36th
Conference_Location :
Recife
Print_ISBN :
0-7803-9033-4
Type :
conf
DOI :
10.1109/PESC.2005.1581870
Filename :
1581870
Link To Document :
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