静磁波滤波器的微波电路模型

S. Stitzer
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引用次数: 1

摘要

建立了静磁波(MSW)滤波器的微波电路模型。在所考虑的电路中,许多外延生长的YIG薄膜的薄条被耦合到一个公共输入歧管。每个条带受到不同的偏置场,从而产生不同的通带频率。每个YIG条带都有自己单独的输出传感器。换能器的复杂辐射阻抗考虑了YIG带开口端的反射。YIG通道被建模为具有频率相关阻抗等于MSW辐射电阻的传输线。三次凌日纹波被准确预测。讨论了采用外部匹配电路和金属薄膜在YIG上抑制三过境纹波的效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A microwave circuit model for a magnetostatic wave filter
A microwave circuit model for magnetostatic-wave (MSW) filters has been developed. In the circuit considered, a number of thin strips of epitaxially grown YIG films are coupled to a common input manifold. Each strip is subjected to a different bias field, thereby producing a different passband frequency. Each YIG strip has its own separate output transducer. The complex radiation impedance of the transducers takes into account the reflection from the open end of the YIG strip. The YIG channel is modeled as a transmission line with frequency-dependent impedance equal to the MSW radiation resistance. Triple transit ripple is accurately predicted. The effects of using external matching circuits and thin metal films applied to the YIG for triple transit ripple suppression are discussed.<>
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