The Experts below are selected from a list of 306 Experts worldwide ranked by ideXlab platform

J.w. Kolar - One of the best experts on this subject based on the ideXlab platform.

  • Passive and Active Hybrid Integrated EMI Filters
    IEEE Transactions on Power Electronics, 2009
    Co-Authors: J. Biela, A. Wirthmueller, R. Waespe, M.l. Heldwein, Klaus Raggl, J.w. Kolar
    Abstract:

    Two new planar integrated electromagnetic interference (EMI) filter structures that reduce the filter volume and that are based on standard printed circuit board (PCB) process technology are presented in this paper. First, a passive integrated EMI filter is presented, which results in a volume reduction of 24% compared to the Discrete Solution. However, this filter requires a planar ferrite core for the common-mode inductor. In order to eliminate the ferrite core and reduce the filter volume further (-40% versus Discrete filter), a passive integrated structure is combined with an active EMI filtering circuit. The transfer function, the volume, and the losses of the Discrete and the two integrated filters, which are designed for a 600 W power-factor-corrected converter, are compared.

  • Passive and active hybrid integrated EMI filters
    Twenty-First Annual IEEE Applied Power Electronics Conference and Exposition 2006. APEC '06., 2006
    Co-Authors: J. Biela, A. Wirthmueller, R. Waespe, M.l. Heldwein, J.w. Kolar, E. Waffenschmidt
    Abstract:

    Two new planar integrated EMI filter structures which reduce the filter volume and which are based on standard PCB process technology are presented in this paper. First, a passive integrated EMI filter is presented, which results in a volume reduction of 25% compared to the Discrete Solution. However, this filter requires a planar ferrite core for the CM inductor. In order to eliminate the ferrite core and reduce the filter volume further (-40% vs. Discrete filter) a passive integrated structure is combined with an active EMI filtering circuit. The transfer function, the volume and the losses of the Discrete and the two integrated filters, which are designed for a 600W PFC converter, are compared.

J. Biela - One of the best experts on this subject based on the ideXlab platform.

  • Passive and Active Hybrid Integrated EMI Filters
    IEEE Transactions on Power Electronics, 2009
    Co-Authors: J. Biela, A. Wirthmueller, R. Waespe, M.l. Heldwein, Klaus Raggl, J.w. Kolar
    Abstract:

    Two new planar integrated electromagnetic interference (EMI) filter structures that reduce the filter volume and that are based on standard printed circuit board (PCB) process technology are presented in this paper. First, a passive integrated EMI filter is presented, which results in a volume reduction of 24% compared to the Discrete Solution. However, this filter requires a planar ferrite core for the common-mode inductor. In order to eliminate the ferrite core and reduce the filter volume further (-40% versus Discrete filter), a passive integrated structure is combined with an active EMI filtering circuit. The transfer function, the volume, and the losses of the Discrete and the two integrated filters, which are designed for a 600 W power-factor-corrected converter, are compared.

  • Passive and active hybrid integrated EMI filters
    Twenty-First Annual IEEE Applied Power Electronics Conference and Exposition 2006. APEC '06., 2006
    Co-Authors: J. Biela, A. Wirthmueller, R. Waespe, M.l. Heldwein, J.w. Kolar, E. Waffenschmidt
    Abstract:

    Two new planar integrated EMI filter structures which reduce the filter volume and which are based on standard PCB process technology are presented in this paper. First, a passive integrated EMI filter is presented, which results in a volume reduction of 25% compared to the Discrete Solution. However, this filter requires a planar ferrite core for the CM inductor. In order to eliminate the ferrite core and reduce the filter volume further (-40% vs. Discrete filter) a passive integrated structure is combined with an active EMI filtering circuit. The transfer function, the volume and the losses of the Discrete and the two integrated filters, which are designed for a 600W PFC converter, are compared.

M.l. Heldwein - One of the best experts on this subject based on the ideXlab platform.

  • Passive and Active Hybrid Integrated EMI Filters
    IEEE Transactions on Power Electronics, 2009
    Co-Authors: J. Biela, A. Wirthmueller, R. Waespe, M.l. Heldwein, Klaus Raggl, J.w. Kolar
    Abstract:

    Two new planar integrated electromagnetic interference (EMI) filter structures that reduce the filter volume and that are based on standard printed circuit board (PCB) process technology are presented in this paper. First, a passive integrated EMI filter is presented, which results in a volume reduction of 24% compared to the Discrete Solution. However, this filter requires a planar ferrite core for the common-mode inductor. In order to eliminate the ferrite core and reduce the filter volume further (-40% versus Discrete filter), a passive integrated structure is combined with an active EMI filtering circuit. The transfer function, the volume, and the losses of the Discrete and the two integrated filters, which are designed for a 600 W power-factor-corrected converter, are compared.

  • Passive and active hybrid integrated EMI filters
    Twenty-First Annual IEEE Applied Power Electronics Conference and Exposition 2006. APEC '06., 2006
    Co-Authors: J. Biela, A. Wirthmueller, R. Waespe, M.l. Heldwein, J.w. Kolar, E. Waffenschmidt
    Abstract:

    Two new planar integrated EMI filter structures which reduce the filter volume and which are based on standard PCB process technology are presented in this paper. First, a passive integrated EMI filter is presented, which results in a volume reduction of 25% compared to the Discrete Solution. However, this filter requires a planar ferrite core for the CM inductor. In order to eliminate the ferrite core and reduce the filter volume further (-40% vs. Discrete filter) a passive integrated structure is combined with an active EMI filtering circuit. The transfer function, the volume and the losses of the Discrete and the two integrated filters, which are designed for a 600W PFC converter, are compared.

A. Wirthmueller - One of the best experts on this subject based on the ideXlab platform.

  • Passive and Active Hybrid Integrated EMI Filters
    IEEE Transactions on Power Electronics, 2009
    Co-Authors: J. Biela, A. Wirthmueller, R. Waespe, M.l. Heldwein, Klaus Raggl, J.w. Kolar
    Abstract:

    Two new planar integrated electromagnetic interference (EMI) filter structures that reduce the filter volume and that are based on standard printed circuit board (PCB) process technology are presented in this paper. First, a passive integrated EMI filter is presented, which results in a volume reduction of 24% compared to the Discrete Solution. However, this filter requires a planar ferrite core for the common-mode inductor. In order to eliminate the ferrite core and reduce the filter volume further (-40% versus Discrete filter), a passive integrated structure is combined with an active EMI filtering circuit. The transfer function, the volume, and the losses of the Discrete and the two integrated filters, which are designed for a 600 W power-factor-corrected converter, are compared.

  • Passive and active hybrid integrated EMI filters
    Twenty-First Annual IEEE Applied Power Electronics Conference and Exposition 2006. APEC '06., 2006
    Co-Authors: J. Biela, A. Wirthmueller, R. Waespe, M.l. Heldwein, J.w. Kolar, E. Waffenschmidt
    Abstract:

    Two new planar integrated EMI filter structures which reduce the filter volume and which are based on standard PCB process technology are presented in this paper. First, a passive integrated EMI filter is presented, which results in a volume reduction of 25% compared to the Discrete Solution. However, this filter requires a planar ferrite core for the CM inductor. In order to eliminate the ferrite core and reduce the filter volume further (-40% vs. Discrete filter) a passive integrated structure is combined with an active EMI filtering circuit. The transfer function, the volume and the losses of the Discrete and the two integrated filters, which are designed for a 600W PFC converter, are compared.

R. Waespe - One of the best experts on this subject based on the ideXlab platform.

  • Passive and Active Hybrid Integrated EMI Filters
    IEEE Transactions on Power Electronics, 2009
    Co-Authors: J. Biela, A. Wirthmueller, R. Waespe, M.l. Heldwein, Klaus Raggl, J.w. Kolar
    Abstract:

    Two new planar integrated electromagnetic interference (EMI) filter structures that reduce the filter volume and that are based on standard printed circuit board (PCB) process technology are presented in this paper. First, a passive integrated EMI filter is presented, which results in a volume reduction of 24% compared to the Discrete Solution. However, this filter requires a planar ferrite core for the common-mode inductor. In order to eliminate the ferrite core and reduce the filter volume further (-40% versus Discrete filter), a passive integrated structure is combined with an active EMI filtering circuit. The transfer function, the volume, and the losses of the Discrete and the two integrated filters, which are designed for a 600 W power-factor-corrected converter, are compared.

  • Passive and active hybrid integrated EMI filters
    Twenty-First Annual IEEE Applied Power Electronics Conference and Exposition 2006. APEC '06., 2006
    Co-Authors: J. Biela, A. Wirthmueller, R. Waespe, M.l. Heldwein, J.w. Kolar, E. Waffenschmidt
    Abstract:

    Two new planar integrated EMI filter structures which reduce the filter volume and which are based on standard PCB process technology are presented in this paper. First, a passive integrated EMI filter is presented, which results in a volume reduction of 25% compared to the Discrete Solution. However, this filter requires a planar ferrite core for the CM inductor. In order to eliminate the ferrite core and reduce the filter volume further (-40% vs. Discrete filter) a passive integrated structure is combined with an active EMI filtering circuit. The transfer function, the volume and the losses of the Discrete and the two integrated filters, which are designed for a 600W PFC converter, are compared.