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Ferrite-Coupled Line Circulator Simulations For Application at X-Band Frequency

机译:铁氧体耦合行环行器在X频带频率下的仿真

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We have designed and simulated a circulator circuit in which the magnetization aligns along the plane of an yttrium iron garnet (YIG) film. For an X-band frequency (8-12 GHz) circulator we have utilized a YIG slab (~200 mum thick) with saturation magnetization (4piMS ) and ferrimagnetic resonance (FMR) linewidth (DeltaH) of ~139.26 kA/m and 10 Oe, respectively. Broadband circulator operation was realized for frequencies above FMR, f=5 GHz. The applied FMR field was 79.58 kA/m. The Ansoft HFSS software suite was used to simulate the circulator response. The insertion loss S21 and the isolation S12 were calculated to be ~0.9 dB and ~-52 dB, respectively, with ~15% bandwidth at the center frequency of 10.1 GHz. We believe that this in-plane circulator design may enable high performance with significant volume and weight reduction
机译:我们设计并模拟了一种循环器电路,其中磁化强度沿着钇铁石榴石(YIG)薄膜的平面排列。对于X波段频率(8-12 GHz)循环器,我们使用了YIG平板(约200微米厚),其饱和磁化强度(4piMS)和亚铁磁共振(FMR)线宽(DeltaH)为139.26 kA / m和10 Oe , 分别。宽带循环器的工作是针对高于FMR(f = 5 GHz)的频率实现的。施加的FMR场为79.58 kA / m。 Ansoft HFSS软件套件用于模拟循环器响应。计算出的插入损耗S21和隔离度S12分别为〜0.9 dB和〜-52 dB,在中心频率10.1 GHz处具有〜15%的带宽。我们相信,这种面内循环器设计可以在显着减少体积和减轻重量的情况下实现高性能

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