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Reduction of differential-mode to common-mode conversion by means of analytic description in common-mode chokes used for an automotive communication bus system

机译:通过在汽车通信总线系统中使用的共模扼流圈中的解析描述,减少差模到共模转换

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The following study describes the attempt to reduce differential-mode to common-mode conversion of data-line common-mode chokes (cmcs) which are used in unshielded-twisted-pair automotive communication bus systems. conversion of a choke leads directly to emissions of the data line. furthermore, the emission within the information signal's frequency range varies depending on the signal conversion. for high speed bus systems like for example 100 mbit/s ethernet, this leads to a significant emission in case of state-of-the-art cmcs used nowadays. the study is based on measurement results, simulations and an analytic description of different cmcs. in the analytic description all important parameters of a choke contributing to the mode conversion are shown. these parameters are the length of connection lines (connection from the windings on the coil to the package) and the length difference between the connection lines, as well as the characteristic impedance of connection lines and the characteristic impedance difference between the connection lines. the study indicates that the conversion factor and the emission level decrease by 10 db when the length difference between the connection lines reduces from 4.8 to 0.2 mm. the overall result shows that the reduction of conversion factor is 25 db when all parameters introducing in this study are optimised. the theory described in this study can point out the mutual influence of parameters and the weighting or prioritisation of parameters. this means that it is possible to design cmcs with small conversion and hereby reduce the emissions of an unshielded-twisted-pair automotive communication bus system.
机译:以下研究描述了尝试减少在非屏蔽双绞线汽车通信总线系统中使用的数据线共模扼流圈(cmcs)的差模到共模转换的尝试。扼流圈的转换直接导致数据线的发射。此外,信息信号的频率范围内的发射根据信号转换而变化。对于高速总线系统(例如100 mbit / s以太网),在当今使用最先进的cmcs的情况下,这会导致大量发射。该研究基于测量结果,模拟和对不同cmcs的分析描述。在解析描述中,显示了有助于模式转换的扼流圈的所有重要参数。这些参数是连接线的长度(从线圈上的绕组到封装的连接)和连接线之间的长度差,以及连接线的特性阻抗和连接线之间的特性阻抗差。研究表明,当连接线之间的长度差从4.8毫米减小到0.2毫米时,转换系数和发射水平降低10 db。总体结果表明,优化本研究中引入的所有参数后,转换因子的减少量为25 db。本研究中描述的理论可以指出参数的相互影响以及参数的加权或优先级。这意味着可以设计出转换率低的cmcs,从而减少非屏蔽双绞线汽车通信总线系统的发射。

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