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A Practical Method to Determine Intrinsic Complex Permeabilities and Permittivities for Mn-Zn Ferrites

机译:确定Mn-Zn铁氧体固有复合磁导率和介电常数的实用方法

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Mn-Zn ferrite cores present high permeability within the kilohertz-to-megahertz frequency range. They also present high permittivities within the same frequency range. High permeabilities lead to significant permittivity measurement errors when the conventional two-parallel-electrode method is used. In contrast, high permittivities result in the deviations of measured permeabilities from their intrinsic values. This paper presents a field-circuit coupled method to study each of these two phenomena by examining a ferrite toroid with rectangular cross section. The same toroid is used to construct an inductor and a capacitor, respectively. Analytical expressions for electric and magnetic fields in, and complex power supplied to the inductor and capacitor are formulated. Results are obtained, which show that the measured permeabilities and permittivities for Mn-Zn ferrites deviate from their intrinsic values significantly. A Newton-Raphson method is then introduced to determine the intrinsic permeabilities and permittivities based on their measured values.
机译:Mn-Zn铁氧体磁芯在千赫兹至兆赫兹的频率范围内具有高磁导率。它们还在相同的频率范围内呈现出高介电常数。当使用常规的两平行电极方法时,高磁导率导致明显的介电常数测量误差。相反,高介电常数导致测得的渗透率与其固有值存在偏差。本文提出了一种场-电路耦合方法,通过检查矩形截面的铁氧体环形线圈来研究这两种现象。相同的环形分别用于构造电感器和电容器。公式化了其中的电场和磁场以及供应给电感器和电容器的复功率的解析表达式。结果表明,测得的锰锌铁氧体的磁导率和介电常数明显偏离其固有值。然后引入牛顿-拉夫森法,以基于其测量值确定固有渗透率和介电常数。

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