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Transfer Function Analysis and Broadband Scalable Model for On-Chip Spiral Inductors

机译:片上螺旋电感的传递函数分析和宽带可扩展模型

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摘要

Recent models for on-chip spiral inductors have been extensively examined and compared by transfer function analysis. Through the calculation of the transfer functions for the models, including T-, ${hbox{1-}}pi$, and ${hbox{2-}}pi$ models, the pros and cons of equivalent circuit topology of each model are evaluated. It is found that the number of poles provided by a certain topology is a constant, while complex poles are responsible for the broadband fitting capacity of the model. The ${hbox{2-}}pi$ model has the most poles and the best broadband fitting capacity, while ${hbox{1-}}pi$ and T-models are better solutions considering both accuracy and efficiency. A novel broadband model combining the advantages of the physics-based circuit model and behavioral macro-model is proposed for accurately characterizing RF behaviors of spiral inductors. A number of inductors with various geometries have been fabricated to verify the model. Excellent agreements are obtained between the measured data and calculation from the proposed model up to 40 GHz. This modeling method is also applicable to other passive components such as transmission lines and transformers.
机译:片上螺旋电感器的最新模型已得到广泛研究,并通过传递函数分析进行了比较。通过计算模型的传递函数,包括T-, $ {hbox {1-}} pi $ ,和 $ {hbox {2-}} pi $ 模型,分别评估了每种模型的等效电路拓扑的优缺点。发现某种拓扑提供的极点数是一个常数,而复杂的极点负责模型的宽带拟合能力。 $ {hbox {2-}} pi $ 模型具有最大的极点和最佳的宽带拟合能力,而 $ {hbox {1-}} pi $ 。提出了一种新颖的宽带模型,该模型结合了基于物理的电路模型和行为宏模型的优点,可以准确地表征螺旋电感器的射频行为。已经制造出许多具有各种几何形状的电感器以验证模型。在高达40 GHz的拟议模型中,测量数据与计算之间获得了极好的协议。这种建模方法也适用于其他无源组件,例如传输线和变压器。

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