DocumentCode
1331419
Title
Characterizations of High Frequency Planar Transformer With a Novel Comb-Shaped Shield
Author
Junwei Lu ; Dawson, Francis
Author_Institution
Sch. of Eng., Griffith Univ., Brisbane, QLD, Australia
Volume
47
Issue
10
fYear
2011
Firstpage
4493
Lastpage
4496
Abstract
This paper presents a newly developed comb-shaped Faraday shield for high frequency (HF) planar transformers. High power density and small size planar transformers are widely used in switching mode power supplies (SMPS) as magnetically coupled devices. However, the intra-winding capacitance couples HF noise from the primary winding to the secondary winding. The coupling capacitance can cause serious common mode problems, and thus the design may not be electromagnetically compatible with the surrounding environment. The tradeoff between the leakage inductance and the coupling capacitance becomes problematic for high frequency applications. The coupling capacitance can be reduced either by increasing the separation distance between the primary and the secondary windings or by inserting a conventional Faraday shield. The former may cause the leakage inductance to increase and further increase the insertion losses, whereas the latter would result in a serious demagnetizing problem in a HF planar transformer. These problems can be resolved by using a novel comb-shaped Faraday shield.
Keywords
electromagnetic shielding; high-frequency transformers; power transformers; switched mode power supplies; transformer windings; comb-shaped Faraday shield; coupling capacitance; high frequency planar transformers; high power density transformers; leakage inductance; magnetically coupled devices; secondary windings; small size planar transformers; switching mode power supplies; Capacitance; Eddy currents; Hafnium; Inductance; Magnetic noise; Magnetic shielding; Windings; EMC; Electromagnetic shielding; comb-shaped Faraday shield; high frequency planar transformer;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.2011.2157664
Filename
6028064
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