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首页> 外文期刊>Magnetics, IEEE Transactions on >Low Bias Field Hexagonal Y-Type Ferrite Phase Shifters at ${K}_{U}$ -Band
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Low Bias Field Hexagonal Y-Type Ferrite Phase Shifters at ${K}_{U}$ -Band

机译:具有$ {K} _ {U} $ -Band的低偏置场六角形Y型铁氧体移相器

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摘要

A microstrip line fabricated on a single crystal hexagonal $Y$-type ferrite substrate was utilized to achieve phase shifts of ${sim}$65 $^{circ}$/cm at ${K}_{U}$-band with an external bias field of only 100 Oe. This approach utilizes the rapid variation of the $Y$-type ferrite tensor permeability near the ferromagnetic antiresonance frequency. The magnetic and microwave properties of the substrate material were characterized by vibrating sample magnetometry and ferromagnetic resonance measurements. Numerical methods based on Galerkin''s approach adapted to spectral domain were utilized to model the performance of the device while taking into account the correct form of the tensor magnetic permeability of the anisotropic and gyromagnetic substrate material. Good agreement between the numerical results and experimental data was obtained. A miniature electromagnet, based on a Metglas™ laminated yoke to minimize demagnetizing fields, was fabricated. Phase shifts of 50$^{circ}$/cm were achieved with continuous drive currents of only 100 mA.
机译:利用在单晶六边形$ Y $型铁氧体衬底上制造的微带线,在$ {K} _ {U} $波段以$ {sim} $ 65 $ ^ {circ} $ / cm的相移实现了外部偏置场仅为100 Oe。这种方法利用了在铁磁反共振频率附近的$ Y $型铁氧体张量磁导率的快速变化。衬底材料的磁性和微波特性通过振动样品的磁力分析和铁磁共振测量来表征。考虑到各向异性和回旋磁性衬底材料的张量磁导率的正确形式,利用了基于Galerkin方法的适用于光谱域的数值方法来对设备的性能进行建模。数值结果与实验数据吻合良好。制造了一个基于Metglas™叠片式磁轭的微型电磁体,以最大程度地减小退磁场。在仅100 mA的连续驱动电流下实现了50 50 / cm的相移。

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