DocumentCode :
1685780
Title :
Application of structural winding capacitance cancellation for integrated EMI filters by embedding conductive layers
Author :
Chen, Rengang ; van Wyk, J.D. ; Wang, Shuo ; Odendaal, W.G.
Author_Institution :
Dept. of Electr. & Comput. Eng., Virginia Polytech. Inst. & State Univ., USA
Volume :
4
fYear :
2004
Firstpage :
2679
Abstract :
Discrete EMI filters have been used for power electronics converters to attenuate switching noise and meet EMI standards for many years. Because of the unavoidable structural parasitic parameters of the discrete filter components, such as equivalent parallel capacitance (EPC) of inductors and equivalent series inductance (ESL) of capacitors, the effective frequency range of the discrete filter is normally limited. Aiming at improving high frequency performance and reducing size and profile, the integrated EMI filter structure has been proposed based on advanced integration and packaging technologies. Some improvements have been made but further progress is limited by EPCs of the filter inductors, which is restricted by dimension, size and physical structure. In this paper, a new structural winding capacitance cancellation method for inductors is proposed. Other than trying to reduce EPCs, a conductive ground layer is embedded in the planar inductor windings and the structural capacitance between the inductor winding and this embedded layer is utilized to cancel the parasitic winding capacitance. In order to obtain the best cancellation effect, the structural winding capacitance model of the planar spiral winding structure is given and the equivalent circuit is derived. The design methodology of the layout and area of the embedded ground layer is presented. Applying this method, an improved integrated EMI filter is designed and constructed. The experimental results show that the embedded conductive layer can effectively cancel the parasitic winding capacitance, hence ideal inductor characteristics can be obtained. With the help of this embedded conductive layer, the improved EMI filter has much smaller volume and profile and much better characteristics over a wide frequency range, compared to the former integrated EMI filter and the discrete EMI filter.
Keywords :
capacitance; electromagnetic interference; equivalent circuits; inductors; interference filters; noise; power convertors; switching convertors; windings; EMI standards; capacitor; discrete EMI filter; embedded conductive ground layer; equivalent circuit; equivalent parallel capacitance; equivalent series inductance; high frequency performance; inductor; integrated EMI filter; packaging technology; parasitic parameter; power electronics converter; spiral winding; switching noise attenuation; winding capacitance cancellation; Capacitors; Electromagnetic interference; Filters; Frequency; Inductance; Inductors; Noise cancellation; Parasitic capacitance; Power electronics; Switching converters;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Industry Applications Conference, 2004. 39th IAS Annual Meeting. Conference Record of the 2004 IEEE
ISSN :
0197-2618
Print_ISBN :
0-7803-8486-5
Type :
conf
DOI :
10.1109/IAS.2004.1348853
Filename :
1348853
Link To Document :
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