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Multi-objective optimization of ultra-flat magnetic components with a PCB-integrated core

机译:具有PCB集成磁芯的超扁磁部件的多目标优化

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In future applications, e.g. in ultra-flat OLED lamp drivers or flat screen power supplies, ultra-flat power systems are highly demanded. Therefore, the design and implementation of a PCB-integrated flyback transformer for a 1 mm thin PFC rectifier is under investigation. In this paper, an overview on several integration methods is given. It is shown that the PCB-integration of magnetic cores results in the required thickness of 1 mm and in a high energy density. Therefore, the design and the realization of ultra-flat magnetic components with PCB-integrated cores is detailed in this paper. The presented multi-objective design procedure determines the inductor and/or transformer setup optimal with respect to minimal losses and/or minimal footprint; for this purpose, the proposed design procedure considers all required electrical, magnetical, and geometrical parameters of the magnetic component. Furthermore, the design procedure accounts for anisotropic core loss behavior and includes an accurate reluctance model. Experimental results are used to verify the design procedure.
机译:在未来的应用中,例如在超扁平的OLED灯驱动器或平板电源中,高扁平电力系统受到高度要求。因此,正在研究1 mm薄PFC整流器的PCB集成反激变压器的设计和实现。本文给出了几种集成方法的概述。结果表明,磁芯的PCB集成导致所需的厚度为1mm,并且处于高能量密度。因此,本文详述了具有PCB集成芯的超扁磁性元件的设计和实现。所提出的多目标设计过程确定相对于最小损耗和/或最小占地面积的最佳电感器和/或变压器设置;为此目的,所提出的设计过程考虑了磁性部件的所有所需的电气,磁性和几何参数。此外,设计过程考虑各向异性核心损失行为,包括精确的磁阻模型。实验结果用于验证设计过程。

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