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Half-massive ceramics for antenna downsizing: improvement of a smart magneto-dielectric material with matching permeability and permittivity, and with enhanced low-loss frequency range

机译:用于天线尺寸缩小的半质量陶瓷:改进了具有匹配的磁导率和介电常数以及增强的低损耗频率范围的智能磁电介质材料

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Complex permeability and permittivity of NiZnCoFeO half-ceramic ferrites (porosity ~50%), obtained from various annealing temperature T (500°C, 800°C, 900°C), are measured and compared. Their characteristic impedance Z, magnetic and dielectric loss tangents are presented. Bandwidth BW and radiation efficiency η values of patch antennas are obtained through numerical simulations and compact formulations. The value of the annealing temperature used for the substrates determines those of BW and η. BW and η are themselves used as criteria to decide which one among the various substrates is proper to be used at given frequency. It is concluded that whereas the sample annealed at 500°C is far to meet the required properties in reason of detrimental magnetic losses, the half massive ceramics got after annealing at T=800°C and 900°C show appropriate performances for further applications. The electromagnetic properties of half ceramics materials sound to be very competitive at frequencies up to 0.8GHz.
机译:测量并比较了从各种退火温度T(500°C,800°C,900°C)获得的NiZnCoFeO半陶瓷铁氧体的复磁导率和介电常数(孔隙率〜50%)。给出了它们的特性阻抗Z,磁损耗和介电损耗正切。贴片天线的带宽BW和辐射效率η值是通过数值模拟和紧凑公式得出的。用于基板的退火温度的值确定了BW和η的那些。 BW和η本身用作确定在给定频率下适合使用各种基板中哪种基板的标准。结论是,尽管在500°C退火的样品由于有害的磁损耗而远远不能满足要求的性能,但在T = 800°C和900°C的温度退火后得到的半块状陶瓷显示出适合进一步应用的性能。半陶瓷材料的电磁特性在高达0.8GHz的频率上具有极强的竞争力。

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