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A novel model for spiral inductor based on a unified CPW circuit model

机译:基于统一CPW电路模型的新型螺旋电感器模型

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A novel equivalent circuit model for a spiral inductor is proposed based on a unified coplanar waveguide (CPW) transmission line model. The spiral inductor can be treated as a network of several individual conductor paths. The individual conductor loss is similar to the loss in CPWs, which can be explained by the unified model. The coil current of the inductor induces an eddy current in the silicon substrate which is magnetically coupled with the metal line. The substrate eddy current loss and coupling with the spiral line are modeled by an RL ladder structure and mutual inductance. Single turn spiral inductors have been designed and fabricated on various resistivity substrates. A good agreement is obtained between the measurement and the equivalent circuit even above the self-resonance frequency. This work demonstrates that the performance of spiral inductors can be predicted and investigated by the proposed equivalent circuit.
机译:基于统一的共面波导(CPW)传输线模型,提出了一种新型的螺旋电感等效电路模型。可以将螺旋电感器视为几个独立导体路径的网络。单个导体的损耗类似于CPW中的损耗,这可以用统一模型来解释。电感器的线圈电流在与金属线磁耦合的硅基板中感应出涡电流。基板的涡流损耗和与螺旋线的耦合是通过RL梯形结构和互感建模的。已经在各种电阻率基板上设计和制造了单匝螺旋电感器。甚至在自谐振频率以上,测量值和等效电路之间也能获得良好的一致性。这项工作表明,螺旋电感的性能可以通过提出的等效电路进行预测和研究。

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