首页> 外文期刊>IEEE Transactions on Magnetics >Nonlinear Permeability Measurements for Nickel Zinc Ferrite and Nickel Zinc Ferrite/Barium Strontium Titanate Composites From 1 to 4 GHz
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Nonlinear Permeability Measurements for Nickel Zinc Ferrite and Nickel Zinc Ferrite/Barium Strontium Titanate Composites From 1 to 4 GHz

机译:镍铁素体的非线性渗透率测量和镍锌铁氧体/锶钛酸锶复合材料从1到4 GHz

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Nonlinear transmission lines (NLTLs), which exhibit permittivity as a function of electric field and/or permeability as a function of magnetic field strength, are of increasing importance for sharpening pulses to less than 100 ps and serving as radio frequency (RF) sources; however, NLTLs often are not easily modified to achieve different output parameters. One method under investigation involves combining nonlinear dielectric [barium strontium titanate (BST)] and/or magnetic [nickel zinc ferrite (NZF)] inclusions to tune the NLTL properties by adjusting the inclusion loading fractions. This article focuses on measuring the nonlinear permeability and magnetic loss tangent of composites comprising various volume loadings of NZF or NZF and BST inclusions encapsulated in a silicon matrix. We measured the relative permeability from 1 to 4 GHz using a coaxial airline while biasing the samples in an external dc magnetic field from 0 to 171 kA/m. The permeability decreased from 1 to 4 GHz for each volume fraction but increased with increasing magnetic field strength at low-magnetic field strengths with sufficient NZF volume loading. The magnetic loss tangent of the composites increased with increasing frequency and/or NZF volume fraction but was suppressed by increasing the external magnetic field strength. Adding BST to NZF composites did not cause a significant change in permeability compared to NZF alone, based on an analysis of variance (ANOVA) and multiple comparison test. These results elucidate the frequency dependence of NZF volume loading at microwave frequency and provide initial information for simulating NLTLs and examining more comprehensive RF system behavior.Y
机译:非线性传输线(NLTL),其作为电场和/或磁场强度的函数的函数表现出介电常数,对锐化脉冲的函数越来越重要,并用作射频(RF)源;但是,NLTL通常不容易修改以实现不同的输出参数。研究中的一种方法涉及将非线性介电[钛酸钡(BST)]和/或磁性α]和/或镍锌铁素体(NZF)]夹杂物组合通过调节包含负载级分来调谐NLT1性质。本文侧重于测量包含在硅基基质中包封的NZF或NZF的各种体积载荷和BST夹杂物的复合材料的非线性渗透性和磁性损耗。我们使用同轴航空公司测量从1到4 GHz的相对渗透率,同时将样品从0到171kA / m偏置在外部直流磁场中。对于每个体积分数,渗透率从1到4GHz降低,但随着具有足够的NZF体积负载的低磁场强度的磁场强度的增加而增加。随着频率和/或NZF体积分数的增加而增加,复合材料的磁损蚀成增加,但通过增加外部磁场强度抑制。基于对方差(ANOVA)和多个比较测试的分析,将BST与NZF复合材料添加到NZF复合材料并没有引起渗透率的显着变化。这些结果阐明了NZF体积加载在微波频率下的频率依赖性,并提供了模拟NLTL的初始信息,并检查更全面的RF系统行为.Y

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