Integration of Ni-Cu-Zn and hexagonal ferrites into LTCC modules: Cofiring strategies and magnetic properties

被引:0
|
作者
Töpfer, J. [1 ]
Hesse, J. [1 ]
Bierlich, S. [1 ]
Barth, S. [2 ]
Capraro, B. [2 ]
Rabe, T. [3 ]
Nagib-Zadeh, H. [3 ]
Bartsch, H. [4 ]
机构
[1] Dept. SciTec, Univ. Applied Sciences Jena, C.-Zeiss-Promenade 2, Jena
[2] Fraunhofer Institute of Ceramic Technologies and Systems IKTS, M.-Faraday-Str. 1, Hermsdorf
[3] Federal Institute for Materials Research and Testing BAM, Unter den Eichen 87, Berlin
[4] Inst. Micro- and Nanotechnologies, Techn. Univ. Ilmenau, Am Helmholtzring 1, Ilmenau
来源
Funtai Oyobi Fummatsu Yakin/Journal of the Japan Society of Powder and Powder Metallurgy | 2014年 / 61卷
关键词
Cofiring; Ferrites; LTCC modules; Permeability;
D O I
10.2497/jjspm.61.S214
中图分类号
学科分类号
摘要
We have studied the integration of Ni-Cu-Zn ferrite spinels as well as substituted hexagonal Co2Y-and M-type ferrites into LTCC (Low Temperature Ceramic Co-firing) modules. The cofiring behavior and the magnetic properties of these materials were investigated and evaluated for multilayer applications. Ni-Cu-Zn ferrites exhibit permeabilities of μ = 300-500 for operating frequencies in the MHz range. Cu-substituted Y-type ferrites Ba2Co2-x-yZnxCuyFe12O22 in combination with sintering additives display sufficient shrinkage and densification at 900°C. A permeability of μ = 10 is observed; however, substituted Co2Y-type ferrites do not exhibit long-term stability at 900°C. Co/Ti-substituted M-type ferrites BaFe12-2yCoyTiyO19 (y = 1.2) with planar magneto-crystalline anisotropy exhibit excellent soft magnetic behavior. Using sintering additives, complete densification is reached at 900°C and a permeability of μ = 15 and a resonance frequency of larger than 1 GHz are observed. Integration of ferrite multilayer inductor components into LTCC modules using free and constrained cofiring technologies is demonstrated. © 2014, Journal of the Japan Society of Powder and Powder Metallurgy. All rights reserved.
引用
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页码:S214 / S217
页数:3
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