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Very low loss ceramic dielectric resonator materials

机译:低损耗陶瓷介电共振器材料

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The huge increase in the use of microwave communications places severe constraints on the operating performance of the microwave filters. Dielectric resonators are a very attractive option as they can be prepared with very low dielectric loss, moderately high dielectric constant and a low temperature coefficient of the resonant frequency. In filters they possess very low intermodulation products and are capable of handling high power. Certain dielectric oxide single crystals display very low loss at microwave frequencies and on cooling the loss is generally observed to drop. The Q of sapphire at 10 GHz exceeds 10~7 at low temperatures of around 10K. However, single crystals are expensive and the purpose of this research is to explore inexpensive, sintered polycrystalline alternatives. By very careful attention to purity, processing and microstructure Q values approaching those of single crystals have been achieved. The loss of polycrystalline ceramics of Al_2O_3, Ba(Mg_(1/3)Ta_(2/3))O_3 (BMT) and Zr_(0.875)Sn_(0.25)Ti_(0.875)O_4 (ZTS) has been studied. Alumina, Al_2O_3 has been studied as a model material for dielectric loss. Theory predicts that the loss in single crystal sapphire should follow a T~5 dependence. However at low temperatures the loss is dominated by extrinsic losses due to crystal imperfection, residual dopant atom, dislocations and other lattice defects and the T~5 dependence does not hold. In polycrystalline alumina the intrinsic loss is immediately masked by these extrinsic losses, even at room temperature, and a simple T dependence is observed. Results on polycrystalline alumina show that a Q of > 5x10~4 at 10 GHz and at room temperature are possible and Q's well in excess of 10~5 at 10 GHz and 77 K can be achieved.
机译:微波通信的使用量的巨大增加严重限制了微波滤波器的运行性能。介电谐振器是非常有吸引力的选择,因为它们可以制备成具有非常低的介电损耗,适度高的介电常数和低的谐振频率温度系数。在滤波器中,它们具有非常低的互调产物,并且能够处理高功率。某些介电氧化物单晶在微波频率下显示出非常低的损耗,并且通常在冷却时观察到损耗下降。在10K左右的低温下,10 GHz的蓝宝石Q值超过10〜7。但是,单晶价格昂贵,本研究的目的是探索廉价的烧结多晶替代品。通过非常小心地关注纯度,已获得接近单晶的加工和微结构Q值。研究了Al_2O_3,Ba(Mg_(1/3)Ta_(2/3))O_3(BMT)和Zr_(0.875)Sn_(0.25)Ti_(0.875)O_4(ZTS)的多晶陶瓷的损耗。已经研究了氧化铝Al_2O_3作为介电损耗的模型材料。理论预测,单晶蓝宝石的损耗应遵循T〜5依赖性。然而,在低温下,由于晶体缺陷,残留的掺杂原子,位错和其他晶格缺陷而导致的外在损耗占主导地位,并且T〜5依赖性不成立。在多晶氧化铝中,即使在室温下,固有损耗也立即被这些外部损耗所掩盖,并且观察到简单的T依赖性。在多晶氧化铝上的结果表明,在10 GHz和室温下Q> 5x10〜4是可能的,并且在10 GHz和77 K时Q可以超过10〜5。

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