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Comparison of Core Technologies Applied to Power Inductors

机译:应用于功率电感器的核心技术比较

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This work evaluates and compares electrical and thermal behavior of magnetic material technologies applied to power inductors. The objective is to identify materials that have the highest volumetric power density and efficiency. The nonidealities caused by variations in magnetic permeability increase design complexity, and knowing the thermal, electrical and magnetic relations in project parameters is essential. Inductor designs for MPP, HF, Sendust, Kool $mathrm{M}mu$ MAX and P ferrite materials are evaluated and compared over a span of operating points (frequency and current ripple). Results present the relationship between volume, current density, copper losses and core losses, pointing the specific ranges each material is recommended at. Design procedure is described, and discussions relate performance to cost.
机译:这项工作评估并比较了应用于功率电感器的磁性材料技术的电学和热学行为。目的是确定具有最高体积功率密度和效率的材料。由磁导率变化引起的非理想性会增加设计复杂性,因此了解项目参数中的热,电和磁关系至关重要。在工作点范围内(频率和电流纹波),评估并比较了MPP,HF,Sendust,Koolmathrm {M} mu $ MAX和P铁氧体材料的电感器设计。结果显示了体积,电流密度,铜损和铁损之间的关系,指出了每种材料的推荐范围。描述了设计程序,并讨论了性能与成本之间的关系。

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