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首页> 外文期刊>International journal of RF and microwave computer-aided engineering >Modeling and analysis of radio frequency connector degradation using time domain reflectometry technique
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Modeling and analysis of radio frequency connector degradation using time domain reflectometry technique

机译:使用时域反射技术的射频连接器劣化的建模与分析

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摘要

Radio frequency (RF) connectors play an important role in electronic and communication systems. Their reliability behavior directly affects the integrity of transmitted signals and degradation in the contact surface reduces reliability. In this work, a combination of experimental and theoretical analysis was used to investigate the effects of contact interface degradation in RF connectors using time domain reflectometry (TDR), and the TDR analysis technique had been employed to identify the faulty position. A series of experiments was conducted to measure the reflected voltages using a network analyzer for time domain analysis and the position of the degraded contact surface was identified. An equivalent circuit model was developed, and the failure mechanism analyzed. It was found that when the connector initially degrades, the inductive characteristics increase. As further degradation occurs, the inductive characteristic will decrease, and the resistance characteristics will become more significant. The simulation and experimental results show good consistency each other. The contact degradation process of RF connector and TDR variations under different degradation levels were performed from the perspective of the time domain.
机译:射频(RF)连接器在电子和通信系统中起重要作用。它们的可靠性行为直接影响透射信号的完整性,并且接触表面的劣化降低了可靠性。在这项工作中,使用时间域反射测量(TDR)来研究实验和理论分析的组合来研究RF连接器中接触界面劣化的影响,并采用TDR分析技术来识别故障位置。进行一系列实验以测量使用网络分析仪进行时间域分析的反射电压,并识别出降解接触表面的位置。开发了一种等效电路模型,并分析了故障机制。发现当连接器最初降低时,感应特性增加。随着发生进一步的降解,感应特性将减小,电阻特性变得更加重要。模拟和实验结果彼此显示出良好的一致性。从时域的角度来执行不同降解水平下的RF连接器和TDR变化的接触降解过程。

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  • 作者单位

    School of Electronic Engineering and the Beijing Key Laboratory of Work Safety Intelligent Monitoring Beijing University of Posts and Telecommunications Beijing China;

    School of Electronic Engineering and the Beijing Key Laboratory of Work Safety Intelligent Monitoring Beijing University of Posts and Telecommunications Beijing China;

    Center for Advanced and Extreme Environment Electronics (CAVE3) Auburn University Auburn University Alabama;

    Department of Materials Engineering Auburn University Auburn Alabama;

    School of Information and Communication Engineering Beijing University of Posts and Telecommunications Beijing China;

    Metrology Department China Academy of Information and Communications Technology Beijing China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    contact surface failure; RF connector; TDR (time domain reflectometry);

    机译:接触表面故障;RF连接器;TDR(时域反射区);

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