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Low temperature magnetic properties of Metglas 2714A and its potential use as core material for EMI filters

机译:Metglas 2714A的低温磁性能及其作为EMI滤波器核心材料的潜在用途

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摘要

Inductive filters to reduce electromagnetic interference (EMI) are commonly made by winding coils around a magnetic material with high permeability. This permeability should remain high at high frequencies, so that the impedance of the inductor made from it can be large to block off any high frequency EMI signals. Room temperature magnetic material like ferrite loses most of its permeability at low temperatures. Some low temperature materials like Cryoperm-10 are known to have high magnetic permeability. However, the permeability of all of them decreases to a low value at frequencies higher than a few hundred hertz due to eddy current shielding of the magnetic field. We have measured the complex relative permeability of Metglas 2714A (also known as Magnaperm) at 4.2 K, and found that its magnitude is larger than 10,000 at frequencies up to 100 kHz. We also measured the magnetization noise density from this material using a SQUID magnetometer. We find that the noise density agrees well with the predictions of the fluctuation dissipation theorem. This implies that low temperature inductors and transformers with predictable noise characteristics can be designed for applications where the lowest noise is not a limiting factor of performance. For very low noise applications, a common mode filter can be made with this material, where the two input leads to a pre-amplifier are wound as a pair around the material, so that any magnetization noise is cancelled out.
机译:减少电磁干扰(EMI)的电感滤波器通常是通过在高导磁率的磁性材料周围缠绕线圈来制成的。该导磁率在高频下应保持较高,以便由它制成的电感器的阻抗可以很大,以阻止任何高频EMI信号。室温磁性材料(如铁氧体)在低温下会丧失大部分磁导率。已知某些低温材料(例如Cryoperm-10)具有高磁导率。但是,由于磁场的涡流屏蔽,它们的导磁率在高于几百赫兹的频率下降低到一个较低的值。我们已经测量了Metglas 2714A(也称为Magnaperm)在4.2 K时的复数相对磁导率,发现在高达100 kHz的频率下,其幅值大于10,000。我们还使用SQUID磁力计测量了这种材料的磁化噪声密度。我们发现噪声密度与波动耗散定理的预测非常吻合。这意味着可以将具有可预测噪声特性的低温电感器和变压器设计用于最低噪声不是性能限制因素的应用。对于噪声极低的应用,可以用这种材料制成共模滤波器,其中通向前置放大器的两条输入导线成对缠绕在材料上,从而消除了任何磁化噪声。

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