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Large signal circuit model of parallel-plate ferroelectric varactors

机译:平行板铁电变容二极管的大信号电路模型

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摘要

A simple one port reflection method is proposed to measure the large signal permittivity and loss tangent of ferroelectric films. The microwave power levels are changed in the range from - 10 to 17 dBm at 0 V dc bias. Microwave power causes two effects: (ⅰ) generation of higher order harmonics due to the dielectric nonlinearities and (ⅱ) heating of the ferroelectric film. The harmonic generation is measured as loss since the instruments (network analyzer and LCR meter) do not detect the higher order harmonics. The heating, on the contrary, is found to cause a reduction of observed microwave losses and at higher microwave power becomes dominant, partly compensating for the loss increase caused by harmonic generation. The heating effect is substantially reduced if the applied microwave signal is pulsed. The results are used to extract parameters for a simplified large signal circuit model of the thin film parallel-plate ferroelectric varactors in the frequency range of 10-45 GHz. Only a limited number of measurements are used in modeling. The model is useful for zero bias mixer (up and down converter) and harmonic generator applications of ferroelectric varactors.
机译:提出了一种简单的单端口反射方法来测量铁电薄膜的大信号介电常数和损耗角正切。在0 V直流偏置下,微波功率水平在-10至17 dBm的范围内变化。微波功率产生两种影响:(ⅰ)由于介电非线性而产生的高次谐波,以及(ⅱ)铁电薄膜的发热。由于仪器(网络分析仪和LCR表)未检测到高次谐波,因此谐波的产生被测量为损耗。相反,发现加热导致观察到的微波损耗的减少,并且在较高的微波功率下占主导地位,部分补偿了由谐波产生引起的损耗增加。如果施加的微波信号是脉冲的,则加热效果会大大降低。结果用于提取参数,以简化频率范围为10-45 GHz的薄膜平行板铁电变容二极管的大信号电路模型。在建模中仅使用有限数量的测量。该模型可用于铁电变容二极管的零偏置混频器(上变频器和下变频器)和谐波发生器。

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