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Equivalent Circuit Model of Lumped Elements Retrieved from Measured S-Parameters of Microstrip Line in Frequency Range 0.5-5GHz

机译:从频率范围为0.5-5GHz的微带线测量的S参数检索的集总电压的等效电路模型

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Lumped elements always show a different frequency response from ideal ones when they work at higher frequencies such as microwave band, therefore they have to be modeled by equivalent circuits. To derive the circuit by experiments, we considered the lumped elements as a two-port network which was inserted into a microstrip transmission line for measurements. The network was first modeled as a general PI circuit first, and then finalized by the measured S-parameters. The method was applied to a surface-mounted device (SMD) resistor, a varactor diode, and a phototransistor working at the frequencies of 0.5-5 GHz. The derived circuit models were verified by their simulated S-parameters, which were in a very good agreement with the experiments. Our method provides a simple and effective way to build circuit models for lumped elements, which is helpful for their applications at microwave frequency. Specifically, our circuit model shows how the phototransistor changes its response under different illumination, which provides a way to use it in light-tunable devices.
机译:当它们在诸如微波频带的较高频率下工作时,集总元件始终从理想的元件上显示不同的频率响应,因此它们必须由等效电路建模。为了通过实验推导电路,我们认为将集成元件视为两个端口网络,该元件被插入微带传输线以进行测量。该网络首先将其建模为一般PI电路,然后通过测量的S参数完成。将该方法应用于表面上安装的装置(SMD)电阻器,变容二极管和在0.5-5GHz的频率下工作的光电晶体管。通过它们的模拟S参数验证了导出的电路模型,这与实验非常良好。我们的方法提供了一种简单有效的方法来构建集总元件的电路模型,这有助于它们在微波频率下的应用。具体而言,我们的电路模型显示了光电晶体管如何在不同的照明下改变其响应,这提供了在可光调设备中使用它的方法。

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