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Ga-, Y-, and Sc-substituted M-type ferrites for self-biasing circulators in LTCC microwave modules

机译:用于LTCC微波模块的自偏置循环器的Ga-,Y&和SC-替代的M型铁氧体

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The partial substitution of Fe 3 by diamagnetic Me 3 in BaMe x Fe 12- x O 19 with Me = Ga and Y (0 ≤ x ≤ 2) was studied. Samples were synthesized by the mixed-oxide route and their properties were compared to BaSc x Fe 12- x O 19 ferrites. It was shown by XRD that the hexagonal lattice parameters with x for Me = Ga and Sc vary continuously. For Me = Y no single-phase ferrites were obtained indicating that the solubility limit for Y in Ba ferrite is very limited. For Me = Ga and Sc, the saturation magnetization at room temperature is reduced with x. The coercivity as well as the ferromagnetic resonance frequency remain almost unchanged for Ga-substituted ferrites, whereas for Sc-substituted ferrites the coercivity and ferromagnetic resonance frequency decrease with x. Thick films of Sc-ferrite (x = 0.5) were screen-printed onto LTCC tape substrates and post-fired at 900°C. Application of a magnetic field during drying allows fabrication of textured ferrite layers. Alternatively, ferrite tapes and LTCC tapes were successfully co-fired at 900°C.
机译:用ME = Ga和y(0≤x≤2),在BAME X Fe 12-X O 19中通过抗磁Im 3进行Fe 3的部分取代。通过混合氧化物途径合成样品,将它们的性质与BasC x Fe 12-x O 19铁氧体进行比较。它由XRD表示,六角形晶格参数与X对ME = GA和SC不变。对于Me = Y,没有获得单相铁素物,表明Ba铁氧体中Y的溶解度极限非常有限。对于ME = GA和SC,用X减少室温下的饱和磁化。对于GA取代的铁氧体,矫顽力以及铁磁共振频率仍然不变,而对于SC-替代铁氧体,矫顽力和铁磁共振频率随X减小。将SC-铁素体的厚膜(x = 0.5)筛选到LTCC带基材上并在900℃下发射。磁场在干燥过程中的应用允许制造纹理的铁氧体层。或者,铁氧体磁带和LTCC胶带成功地在900℃下共用。

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