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Non-Contact Measurement Method for High Frequency Impedance of Load at the End of Wire Harness

机译:线束末端负载高频阻抗的非接触式测量方法

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To avoid a trial and error adjustment for designing EMI filters, clarifying load impedance of operating condition, i.e., dynamic impedance of equipment is very useful. Therefore the need to a non-contact measurement method of the impedance connected to a wire harness is increasing rapidly. A measurement method using a network analyzer with two current probes was previously proposed. However, it was confirmed only up to 30 MHz. Many radio equipment operate above 30 MHz such as FM receivers and GPS receivers installed in vehicles. So increasing the measurement frequency is necessary in the auto industry. At first, we tried to expand the applicable frequency to 100 MHz, i.e., FM band. In this study, we applied the transmission line theory using the non-contact measurement method. Furthermore, in order to use the theory, the characteristic impedance and phase constant of the wire harness are required. So we made an additional measurement to estimate them. As a result, the load impedance was measured with a 10% error up to 100 MHz and the validity of the newly proposed measurement method was confirmed experimentally. Accordingly the possibility of an appropriate EMI filter design in the FM band was found.
机译:为避免针对设计EMI滤波器的试验和错误调整,澄清操作条件的负载阻抗,即设备的动态阻抗非常有用。因此,需要对连接到线束的阻抗的不接触式测量方法正在迅速增加。先前提出了使用具有两个电流探针的网络分析仪的测量方法。但是,它仅确认了高达30 MHz。许多无线电设备操作以上30 MHz,例如安装在车辆中的FM接收器和GPS接收器。因此,在汽车行业中需要增加测量频率。首先,我们试图将适用的频率扩展到100 MHz,即FM频段。在这项研究中,我们使用非接触式测量方法应用了传输线理论。此外,为了使用该理论,需要有线线束的特征阻抗和相位常数。所以我们额外的测量估计它们。结果,用10%误差测量负载阻抗,高达100 MHz,实验证实了新提出的测量方法的有效性。因此,找到了FM频带中适当的EMI滤波器设计的可能性。

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