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A Practical Method to Measure Electrical AC Conductivity of MnZn Ferrites Using Conventional Toroids

机译:一种使用常规环形线圈测量MnZn铁氧体交流电导率的实用方法

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In this paper, a new method to construct ac electrical properties from impedance measurements using conventional ring core specimens is proposed. Different coaxial cartridges are developed allowing four-wire measurements with an automatic compensation of the test-leads. To achieve optimum results, the specific material parameters are reconstructed from the measured impedances by means of an analytical solution of Maxwell's equations for the toroidal sample geometry. Hence inhomogeneous electromagnetic fields due to occurring eddy currents and displacement currents are considered up to the megahertz range. To investigate the influence of the temperature on the electrical properties, the temperature-resistant cartridges can be transferred into a heating cabinet—specific results are finally exemplified for different MnZn ferrite materials.
机译:在本文中,提出了一种使用常规环形铁芯样本通过阻抗测量来构建交流电特性的新方法。开发了不同的同轴墨盒,可进行四线测量,并自动补偿测试导线。为了获得最佳结果,通过对环形样品几何形状的麦克斯韦方程组的解析解,可以从测量的阻抗中重建特定的材料参数。因此,由于发生涡流和位移电流而产生的不均匀电磁场被认为高达兆赫兹范围。为了研究温度对电性能的影响,可以将耐高温的滤芯转移到加热柜中,最后以不同的MnZn铁氧体材料为例来说明具体结果。

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