Application of a rigorous nonlinear P-matrix method to the simulation of third order intermodulation in test devices and duplexers

M. Mayer, W. Ruile, John Johnson, J. Kiwitt, Romeo San Jose, E. Schmidhammer, I. Bleyl, K. Wagner, A. Mayer, E. Mayer
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引用次数: 13

Abstract

Recently a P-matrix and COM formalism was presented, which predicts third order intermodulation (IMD3) and triple beat with good accuracy and needs only a single nonlinearity constant. This formalism describes frequency dependence correctly. In this work the dependence of this nonlinearity constant on metalization ratio is investigated for aluminum metalization on LiTaO3 (YXl)/42°. By comparison to test devices the nonlinearity constant is shown to be largely independent of metalization ratio. The nonlinear effect, however, strongly depends on metalization ratio, which is well described by the model. The linearity of a duplexer is optimized by reduction of metalization ratio and redesign of Tx branch topology.
严格非线性p矩阵法在测试装置和双工器三阶互调仿真中的应用
最近提出了一种p -矩阵和COM形式,它可以预测三阶互调(IMD3)和三拍,精度很高,而且只需要一个非线性常数。这种形式正确地描述了频率相关性。本文研究了LiTaO3 (YXl)/42°上铝金属化过程中该非线性常数与金属化比的关系。通过与测试装置的比较,非线性常数在很大程度上与金属化比无关。然而,非线性效应在很大程度上取决于金属化率,模型很好地描述了这一点。通过降低金属化比和重新设计Tx支路拓扑来优化双工器的线性度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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