(Mg1.0Zn0.0)TiO3+4wt%Bi2O3陶瓷在介质谐振器振荡电路中用作谐振器的表征

Lailatul Izza, F. U. Ermawati
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引用次数: 1

摘要

基于MgTiO3的陶瓷在微波频率的电信系统中具有潜在的应用,例如介电谐振器振荡器(DRO)电路中的谐振器。本文报道了(Mg1.0Zn0.0)TiO3+4wt%Bi2O3(简称MZT0+4wt%Bi2O3)陶瓷的制备结果,以评估其在DRO电路中用作谐振器的潜力。我们对其结构、微观结构和堆积密度进行了表征。通过球磨机将4wt%的Bi2O3添加到MZT0结晶粉末中。使用压模将研磨的粉末压实以获得颗粒。所有颗粒在1100ºC下烧结4、6和8小时。保持4和6小时的陶瓷结构分别由MgTiO3相(94.33±2.68)和(95.34±1.95)%摩尔组成,而其余相为TiO2。8小时陶瓷结构包含(96.11±2.94)%摩尔的MgTiO3,并伴有Mg2TiO5和TiO2。陶瓷的微观结构由平均直径为1.32-2.24μm的晶粒簇和孔隙组成。堆积密度随烧结保温时间的增加而减小。DRO表征记录了5.207、5.005和5.121GHz的谐振信号,功率接近0dBm,这表明MZT0+4wt%的Bi2O3陶瓷可以用作在微波频率下工作的DRO电路中的谐振器,特别是在5.0-5.2GHz下。
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Characterization of (Mg1.0Zn0.0)TiO3+4 wt%Bi2O3 Ceramics for Application as Resonator in Dielectric Resonator Oscillator Circuit
MgTiO3-based ceramics have potential applications in telecommunications systems at microwave frequencies, such as resonators in dielectric resonator oscillator (DRO) circuits. This paper reports the results of (Mg1.0Zn0.0)TiO3+4wt% Bi2O3 (abbreviated MZT0+4wt%Bi2O3) ceramic fabrication to assess its potential to be used as a resonator in the DRO circuit. We characterized its structure, microstructure, and bulk density. The addition of 4wt%Bi2O3 to MZT0 crystalline powder was carried out via ball-mill. The milled powder was compacted using a die press to obtain pellets. All pellets were sintered at 1100ºC for 4, 6, and 8 h. Ceramic structures of the 4 and 6 h holding time consists of MgTiO3 phase (94.33±2.68) and (95.34±1.95)% molar respectively, while the rest phase was TiO2. The 8-h ceramic structure comprises (96.11±2.94) % molar MgTiO3 accompanied by Mg2TiO5 and TiO2. The ceramics' microstructure consists of a cluster of grains with an average diameter of 1.32-2.24 μm and pores. Bulk density decreases with the increase of sintering holding time. The DRO characterization records a resonance signal each at 5.207, 5.005, and 5.121GHz with power approaching 0 dBm, suggesting that the MZT0+4wt%Bi2O3 ceramics can be used as a resonator in the DRO circuit working in microwave frequencies, especially at 5.0-5.2GHz.
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