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Theory and Design of Tunable Full-Mode and Half-Mode Ferrite Waveguide Isolators

机译:可调谐全模式和半模式铁氧体波导隔离器的理论和设计

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Ferrite isolators are attractive due to their excellent isolation, low loss, good linearity, and high-power performance. However, these devices usually operate over a single-frequency band. Multiband applications are possible if the isolation bandwidth of an isolator can be tuned. This paper presents a tunable waveguide-based full-mode ferrite isolator as well as a more compact half-mode tunable isolator, both fabricated on yttrium-iron-garnet substrates. For the first time, theory and design guidelines for the center frequency, bandwidth, and tuning of the ferrite isolators' unidirectional magnetostatic surface wave (MSW) mode are presented. The proposed theoretical model reveals that the isolation bandwidth can exceed 100% if the magnetization-to-bias field ratio is higher than 8. Although the full-mode design is fabricated using a conventional subtractive technique, the half-mode design is implemented using inkjet printing technology. The full-mode isolator provides a maximum bandwidth of 45% and a peak isolator figure of merit (IFM) of over 65 dB at 7 GHz, whereas the half-mode design has a maximum bandwidth of 59% and a peak IFM of 76.7 dB at 7.5 GHz. The tuning of the center frequency is from 7 to 10.7 GHz for the full-mode and from 4.4 to 9.9 GHz for the half-mode design using magnetic field strengths up to 2500 and 2400 Oe, respectively. This paper demonstrates the versatility of ferrite isolators as tunable microwave devices for reconfigurable RF applications.
机译:铁氧体隔离器具有出色的隔离度,低损耗,良好的线性度和高功率性能,因此具有吸引力。但是,这些设备通常在单个频带上运行。如果可以调节隔离器的隔离带宽,则可以进行多频带应用。本文介绍了一种可调谐的基于波导的全模铁氧体隔离器以及更紧凑的半模可调谐隔离器,它们均在钇铁石榴石衬底上制造。首次提出了有关铁氧体隔离器的单向静磁表面波(MSW)模式的中心频率,带宽和调谐的理论和设计指南。拟议的理论模型表明,如果磁化/偏置磁场比大于8,则隔离带宽可以超过100%。尽管使用常规减法技术制造了全模设计,但使用喷墨技术实现了半模设计。印刷技术。全模式隔离器可提供最大带宽的45%,在7 GHz时的峰值隔离器品质因数(IFM)超过65 dB,而半模式设计的最大带宽为59%,峰值IFM为76.7 dB在7.5 GHz。对于全模式,使用分别高达2500和2400 Oe的磁场强度,中心频率的调谐范围是从7到10.7 GHz,对于半模式设计的范围是从4.4到9.9 GHz。本文展示了铁氧体隔离器作为可重构微波应用的可调谐微波设备的多功能性。

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