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Scalar permeability measurements of microwave ferrites using lumped circuit, coaxial line, and resonance techniques

机译:使用集总电路,同轴线和谐振技术测量微波铁氧体的标量磁导率

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Complex scalar permeability measurement results of microwave ferrites at frequencies from 1 Hz to 20 GHz are presented. Three different techniques were used to perform the measurements. The method chosen depended on frequency and magnetic loss. At low frequencies, 1-10/sup 5/ Hz, we applied lumped parameter circuit techniques. With this technique nonlinear permeability effects were measured. At higher frequencies, from 1 MHz up to gyromagnetic resonance, coaxial transmission line techniques were used. At frequencies above gyromagnetic resonance, a dielectric ring resonator technique was used. By combining all three methods, the real and imaginary parts of sample permeability, with magnetic loss factors that vary from 10/sup -5/ to 10/sup 2/, may be measured. In addition, nonlinear effects in ferrite materials and saturation magnetization may be evaluated.
机译:给出了频率范围为1 Hz至20 GHz的微波铁氧体的复标量磁导率测量结果。使用三种不同的技术来执行测量。选择的方法取决于频率和磁损耗。在低频(1-10 / sup 5 / Hz)下,我们应用了集总参数电路技术。用这种技术测量了非线性渗透率效应。在较高的频率(从1 MHz到陀螺共振)下,使用了同轴传输线技术。在高于回旋共振的频率处,使用了介电环共振器技术。通过组合所有三种方法,可以测量样品磁导率的实部和虚部,磁损耗因数从10 / sup -5 /到10 / sup 2 /不等。另外,可以评估铁氧体材料中的非线性效应和饱和磁化强度。

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