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The Impact of Coating Materials in Coaxial Connectors on Passive Intermodulation

机译:同轴连接器中涂层材料对无源互调的影响

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Passive intermodulation (PIM) induced by coaxial connectors negatively impacts communication quality. The properties of the coating materials alter PIM performance. Accordingly, a better understanding of the influence of the coating materials for coaxial connectors on PIM is of substantial value. In the present work, the effects of coating materials on the PIM performance was investigated through experimental testing, simulation modeling, and analysis. A series of experimental tests were performed to evaluate the third-order intermodulation (IM3) power of selected connector samples with different coatings using a Passive Intermodulation Analyzer. Finite Element Analysis (FEA) simulations were conducted to quantitatively describe the effect of signal frequency, coating thickness, and material properties on the distribution of current density. Based on the results from simulations and the experimental testing, a behavior model describing the relationship of current density and PIM products power was developed and the model parameters for test samples were identified. This model provides an analysis tool for coaxial connector selection and low PIM connector design.
机译:同轴连接器引起的无源互调(PIM)对通信质量产生负面影响。涂料的性能会改变PIM性能。因此,更好地理解同轴连接器用涂料对PIM的影响具有重要价值。在目前的工作中,通过实验测试,模拟建模和分析研究了涂料对PIM性能的影响。使用无源互调分析仪进行了一系列实验测试,以评估具有不同涂层的所选连接器样品的三阶互调(IM3)功率。进行了有限元分析(FEA)仿真,以定量描述信号频率,涂层厚度和材料特性对电流密度分布的影响。根据仿真和实验测试的结果,建立了描述电流密度与PIM产品功率关系的行为模型,并确定了测试样品的模型参数。该模型为同轴连接器选择和低PIM连接器设计提供了一种分析工具。

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