时域反射法在MMIC无源元件建模中的应用

C. Beccari, A. Ferrero, U. Pisani
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引用次数: 0

摘要

最近,利用网络分析仪的时域设备,结合网络综合工具,对s参数测量集中的不连续点进行了实验建模,从而使仪器能够直接校准到被测设备的端口。该技术被证明在不连续性的情况下非常有用,在未知设备之前,不能通过通常的校准方法隔离,因此,由于网络合成只处理频域信息,因此不可能优化模型的参数,因为它们受到不连续性引起的误差的影响。本文描述了一种分离被测装置的响应并推导其完整模型的方法;当它达到一个合理的精度时,它会给出一个拓扑,这是一个很好的起点,可以用于在宽频带上获得更好的匹配的其他优化例程。这可以通过优化已添加其他电路元件的第一进路拓扑来实现,以便考虑特别是在较高频率下的二阶效应。将该技术应用于MMIC中无源离散元件的建模和表征。实验结果表明了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Time Domain Reflectometry Applied to MMIC Passive Component Modeling
The time domain facilities of a network analyzer, combined with the tools of network synthesis, were recently used for experimental modeling of discontinuities in an S-parameter measurement set, so as to allow the instrument calibration directly to the ports of the device under test. The technique proved to be very useful in those cases where the discontinuities, that lie before the unknown device, cannot be isolated by the usual calibration methods, and therefore, since network synthesis deals only with frequency domain information, it is impossible to optimize the model's parameters, since they are affected by errors due to discontinuities. This paper describes a procedure which allows to isolate the response of the device under test, and to derive its complete model; when it to reach a reasonable accuracy it gives anyway a topology, which is a good starting point for other optimization routines that can be used for obtaining a better match, on a broad frequency band. This can be accomplished by optimzing the first approach topology to which other circuit elements have been added, so as to take into account second order effects especially at the higher frequencies. The technique was applied to model and characterize passive discrete components used in MMIC. The experimental results show the validity of the approach.
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