首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Modeling of a millimeter wave planar Schottky diode using both improved equivalent circuit model and 3D-EM model
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Modeling of a millimeter wave planar Schottky diode using both improved equivalent circuit model and 3D-EM model

机译:使用改进的等效电路模型和3D-EM模型对毫米波平面肖特基二极管进行建模

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摘要

In this paper, a planar Schottky varistor diode is studied and modeled by equivalent circuit method and three dimensional full wave electromagnetic (3D-EM) method, respectively. The diode's equivalent circuit is extracted from millimeter-wave small-signal S-parameter measurements. Since the package of the diode influences the electromagnetic field distribution at millimeter and sub-millimeter wavelengths, a 3D-EM model and an improved equivalent circuit model is applied to describe the field precisely. The simulated results of equivalent circuit, improved equivalent circuit and 3D-EM model are compared with the measured results. In addition, the effects caused by silver paste conductive adhesive are considered in 3D-EM model and improved equivalent circuit model. The results show that both the 3D-EM model and improved equivalent circuit model have good S-parameter consistency with measured results.
机译:本文分别用等效电路法和三维全波电磁(3D-EM)法对平面肖特基压敏二极管进行了研究和建模。从毫米波小信号S参数测量中提取出二极管的等效电路。由于二极管的封装会影响毫米波和亚毫米波波长下的电磁场分布,因此应用了3D-EM模型和改进的等效电路模型来精确描述磁场。将等效电路,改进的等效电路和3D-EM模型的仿真结果与测量结果进行了比较。此外,在3D-EM模型和改进的等效电路模型中考虑了由银浆导电胶引起的影响。结果表明,3D-EM模型和改进的等效电路模型都具有与测量结果良好的S参数一致性。

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