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Characteristics of noise on printed circuit board traces induced by noise transmitted on external cables

机译:由外部电缆传输的噪声引起的印刷电路板上走线的噪声特性

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This study is for improving the noise immunity of electronic circuits on printed circuit boards (PCBs). The noise on the PCB traces is induced by external cables which are different from the PCB traces in length. This paper experimentally and analytically clarifies that large amounts of noise can be transferred from a noisy wire to a victim wire, even when the wires are of different length and loose coupling at a short-section. The reason why large amounts of noise are transferred is revealed that the base resonant frequency f/sub 0/ of the shorter wire's own can be the same as the multiple resonant frequency N/spl middot/f/sub 0/ (N=2,3,...) of the other wire's own. Further, according to the location and kinds of load such as ICs connected with the PCB trace, which is considered as a victim wire, the resonant frequency dominating the noise frequency is changed.
机译:这项研究是为了提高印刷电路板(PCB)上电子电路的抗干扰性。 PCB走线上的噪声是由与PCB走线长度不同的外部电缆引起的。本文通过实验和分析阐明,即使导线的长度不同且在短截面上的耦合较松散,也可以将大量噪声从嘈杂的导线传递到受害导线。揭示了传递大量噪声的原因是,短线自身的基本共振频率f / sub 0 /可以与多重共振频率N / spl middot / f / sub 0 /(N = 2, 3,...)的另一根电线。此外,根据负载的位置和种类(例如与PCB迹线相连的IC)(被视为受害导线),主导噪声频率的谐振频率会发生变化。

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