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首页> 外文期刊>International Journal of Electrical and Computer Engineering >Maximum Radiated Emissions of Printed Circuit Board Using Analytical Methods
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Maximum Radiated Emissions of Printed Circuit Board Using Analytical Methods

机译:使用分析方法的印刷电路板的最大辐射发射

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摘要

The rapid progress of technology has imposed significant challenges on Printed Circuit Boards (PCB) designers. Once of those challenges is to satisfy the electromagnetic compatibility (EMC) compliance requirements. For that reason, EMC compliance must be considered earlier at the design stage for time and cost savings. Conventionally, full wave simulation is employed to check whether the designed PCB meets EMC standards or not. However, this method is not a suitable option since it requires intensive computational time and thus increasing the unit cost. This paper describes novel analytical models for estimating the radiated emissions (RE) of PCB. These models can be used to help the circuit designer to modify their circuit based on the maximum allowable RE comparing to the relevant EMC-RE standard limit. Although there are many RE sources on PCB, this paper focuses on the significant source of RE on PCB; namely PCB-traces. The trace geometry, termination impedance, dielectric type, etc. can be specified based on the maximum allowable emissions. The proposed models were verified by comparing the results of the proposed models with both simulation and experimental results. Good agreements were obtained between the analytically computed results and simulation/measurement results with accuracy of ±3dB.
机译:技术的飞速发展对印刷电路板(PCB)设计人员提出了重大挑战。这些挑战之一就是要满足电磁兼容性(EMC)的要求。因此,必须在设计阶段较早地考虑EMC兼容性,以节省时间和成本。传统上,采用全波仿真来检查设计的PCB是否符合EMC标准。但是,该方法不是合适的选择,因为它需要大量的计算时间,从而增加了单位成本。本文介绍了用于估算PCB辐射量(RE)的新颖分析模型。这些模型可用于帮助电路设计人员根据与相关EMC-RE标准限值相比的最大允许RE来修改其电路。尽管PCB上有很多RE来源,但本文重点关注PCB上的RE的重要来源。即PCB走线。可以根据最大允许发射来指定走线几何形状,终端阻抗,电介质类型等。通过将所提出的模型的结果与仿真和实验结果进行比较来验证所提出的模型。分析计算结果与模拟/测量结果之间取得了良好的一致性,精度为±3dB。

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