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Unusual Effects Measured Under DC Bias Conditions on MnZn Ferrite Material

机译:直流偏置条件下对MnZn铁氧体材料的异常影响

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摘要

Switch mode power supplies are the predominant form through which power conversion is currently implemented in electronic equipment. Within such power supplies, ferrite cored magnetic components are commonly placed under dc bias conditions which, due to magnetomechanical effects, can result in higher than expected core losses. This paper presents measurements that show the impact of magnetomechanical effects on the losses of a MnZn ferrite core material under low ac excitation and high dc bias conditions. The measurements are made using an accurate measurement circuit, and the results show the impact on losses of magnetomechanical resonance. In addition distorted, figure-eight shaped $Bhbox{-}H$ loops are measured, which are also believed to manifest from magnetomechanical interactions. These $Bhbox{-}H$ loops show that, on a transient basis, magnetomechanical interactions may take place in a manner that is not only lossless, but returns energy back to the excitation supply.
机译:开关电源是当前在电子设备中实现电源转换的主要形式。在此类电源中,铁氧体磁芯磁性元件通常置于直流偏置条件下,由于磁机械效应,其可能导致高于预期的铁芯损耗。本文提出的测量结果表明,在低交流激励和高直流偏置条件下,磁机械效应对MnZn铁氧体磁心材料损耗的影响。使用精确的测量电路进行测量,结果显示出对磁机械共振损耗的影响。此外,还测量了失真的,八字形的$ Bhbox {-} H $回路,据信这也从磁机械相互作用中体现出来。这些$ Bhbox {-} H $循环表明,在瞬变的基础上,磁机械相互作用不仅可以无损地发生,而且可以将能量返回到励磁电源。

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