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Airgap fringing flux reduction in inductors using open-circuit copper screens

机译:使用开路铜屏减少电感器中的气隙边缘通量

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摘要

In a gapped inductor, airgap fringing flux induces eddy currents in coil conductors in the vicinity of the airgap, producing unwanted power loss and heat in the coil. An open-circuit copper screen placed around the airgap of a ferrite core is shown to reduce the fringing flux around the airgap. The reduction in fringing flux is shown by experiment to reduce the power loss, in the inductor winding, associated with eddy currents induced by airgap fringing flux, and practical results compare favourably with presented finite-element results. The reduction in coil losses reduces the cooling requirement for the inductor, or alternatively, allows an increase in the thermal rating of the inductor.
机译:在有间隙的电感器中,气隙边缘通量在气隙附近的线圈导体中感应出涡流,从而在线圈中产生不必要的功率损耗和热量。示出了围绕铁氧体磁芯的气隙放置的开路铜屏,以减少围绕气隙的边缘通量。实验表明,减少边缘磁通量可减少电感绕组中的功率损耗,从而减少与气隙边缘磁通量引起的涡流相关联,实际结果与所提出的有限元结果相比具有优势。线圈损耗的减少减少了对电感器的冷却要求,或者允许增加电感器的热额定值。

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