首页> 外文会议>International Conference on Electronic Packaging Technology >Synthesis of Ba{(Mg0.8Zn0.2)0.98Y0.021/3Ta2/3}O3microwave dielectric ceramics With La2O3-B2O3ZnO glass for LTCC application
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Synthesis of Ba{(Mg0.8Zn0.2)0.98Y0.021/3Ta2/3}O3microwave dielectric ceramics With La2O3-B2O3ZnO glass for LTCC application

机译:Ba {((Mg 0.8 Zn 0.2 0.98 Y 0.02 1/3 < / inf> Ta 2/3 } O 3 具有La 2 O 3 -B 2 O 3 ZnO玻璃

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Low-temperature co-fired ceramics (LTCC) technology plays an important role in passive integration and system-on-a-package (SOP). This Technology could co-fire active layers, substrates and electrodes together at a temperature under the fusion points of these prime components. The samples of Ba{[(Mg0.8Zn0.2)0.98Y0.02]1/3Ta2/3}O3(BMZYT) ceramics with 3 wt% La2O3-B2O3-ZnO(LBZ) glass-fluxed were synthesized by the conventional solid-state reaction. The effect of LBZ glasses on the sintering behavior, microstructure, phase composition and dielectric properties of BMZYT ceramics have been systematically studied. Different proportions of LBZ glass were added to BMZYT ceramics. With the LBZ addition has been increasing, there is no other phase generation. The sintering temperature of the glass-added BMZYT samples was lowered to 900°C compared with BMZYT which sintered at 1375°C. LBZ glass served as flux former and conduced to the reactive liquid-phase mechanism. A liquid phase generated by LBZ can greatly promote the densification. The BMZYT ceramics with 3 wt% LBZ sintered at 900°C for 6 h shows good microwave dielectric properties: εr=22.29, Q×f=11051 GHz (f=6.923GHz), and τf=5.69 ppm/°C.
机译:低温共烧陶瓷(LTCC)技术在无源集成和系统级封装(SOP)中起着重要作用。该技术可以在这些主要成分的融合点以下的温度下共同烧制活性层,基底和电极。 Ba {[(Mg 0.8 0.2 0.98 ÿ 0.02 ] 1/3 2/3 } O 3 (BMZYT)陶瓷具有3 wt%的La 2 Ø 3 -B 2 Ø 3 通过常规的固相反应合成了-ZnO(LBZ)玻璃助熔剂。已经系统地研究了LBZ玻璃对BMZYT陶瓷的烧结行为,微观结构,相组成和介电性能的影响。将不同比例的LBZ玻璃添加到BMZYT陶瓷中。随着LBZ的增加,没有其他相产生。与在1375°C烧结的BMZYT相比,添加玻璃的BMZYT样品的烧结温度降低至900°C。 LBZ玻璃用作助熔剂,并有助于反应性液相机理。 LBZ产生的液相可以极大地促进致密化。 LBZ为3 wt%的BMZYT陶瓷在900°C烧结6 h显示出良好的微波介电性能:ε r = 22.29,Q×f = 11051 GHz(f = 6.923GHz)和τ f = 5.69ppm /℃。

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