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首页> 外文期刊>Journal of Electronic Materials >Low-Loss Magneto-Dielectric Materials: Approaches and Developments
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Low-Loss Magneto-Dielectric Materials: Approaches and Developments

机译:低损耗磁电介质材料:方法和发展

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Magneto-dielectric materials with matching permeability and permittivity have significant advantages for miniaturization and efficiency improvement of antennas. The main requirements for this kind of magneto-dielectric material include a high refractive index, matched permeability and permittivity, and low magnetic and dielectric losses at the application frequency. However, it is very difficult to meet these requirements simultaneously. This review presents the approaches and developments of magneto-dielectric materials of three types: spinel-based, hexagonal-based, and composite magneto-dielectric materials. It is proved that choosing the proper type of magneto-dielectric material is very important to obtain a higher refractive index and matched permeability and permittivity in the application frequency band. When the application frequency is low (less than 30 MHz), adopting composites of spinel ferrite and high-dielectric material is the best choice to improve the refractive index. When the application frequency is between 30 MHz and 100 MHz, it is better to choose spinel-based magneto-dielectric materials in consideration of both their relatively high refractive index and low losses. When the application frequency increases to 100 MHz to 500 MHz, hexagonal-based magneto-dielectric materials offer better performance. Finally, when the application frequency is beyond 500 MHz, to obtain matched permeability and permittivity, choosing composites of hexaferrite and an organic medium is recommended. Solutions for how to decrease magnetic and dielectric losses and expand the application frequency range are also discussed.
机译:具有匹配的磁导率和介电常数的磁电介质材料对于天线的小型化和效率提高具有明显的优势。这种磁电介质的主要要求包括高折射率,匹配的磁导率和介电常数以及在应用频率下的低磁损耗和介电损耗。但是,很难同时满足这些要求。这篇综述介绍了三种类型的磁电介质材料的方法和发展:尖晶石基,六方基和复合磁电介质材料。事实证明,选择合适类型的磁电介质材料对于在应用频带中获得更高的折射率以及匹配的磁导率和介电常数非常重要。当应用频率较低(小于30 MHz)时,采用尖晶石铁氧体和高介电材料的复合材料是提高折射率的最佳选择。当应用频率在30 MHz至100 MHz之间时,考虑到它们的相对较高的折射率和较低的损耗,最好选择基于尖晶石的磁电介质材料。当应用频率增加到100 MHz至500 MHz时,基于六角形的磁电介质材料将提供更好的性能。最后,当应用频率超过500 MHz时,为了获得匹配的磁导率和介电常数,建议选择六价铁氧体和有机介质的复合材料。还讨论了如何减少磁损耗和介电损耗并扩大应用频率范围的解决方案。

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