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The No.1 Weapon Against Crosstalk

机译:No.1武器对抗串扰

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摘要

IT'S BEEN SOME time since I've seen an article on crosstalk, so I decided to take the opportunity to walk through the subject in a soup-to-nuts overview for those in the PCB design community who may be interested in why crosstalk-savvy PCB designers and hardware engineers use various design rules for controlling crosstalk. In the process of doing so, we'll identify which design tweaks provide the most leverage for controlling far-end crosstalk. Crosstalk is unwanted noise generated between signals. It occurs when two or more nets on a PCB are coupled to each other electromagnetically, (even though conductively they are not connected at all). Such coupling can arise any time two nets run next to each other for any significant length. When a signal is driven on one of the lines, the electric and magnetic fields it generates cause an unexpected signal to also appear on the nearby line, as shown in FIGURE 1.
机译:自从我在串扰上看到一篇文章已经有一段时间了,所以我决定借此机会在汤坚果中穿过这个主题,概述,这些社区可能有兴趣为什么串扰 - 雄辩PCB设计师和硬件工程师使用各种设计规则来控制串扰。在这样做的过程中,我们将确定哪些设计调整为控制远端串扰提供最多的杠杆作用。串扰是在信号之间产生的不必要的噪音。当PCB上的两个或更多个网彼此电磁地耦合时发生,(即使导电)它们根本没有连接)。这种耦合可以在任何时间彼此运行的任何时间以任何重要的长度进行。当在其中一个线上被驱动信号时,它产生的电源和磁场会导致意外信号也出现在附近的线上,如图1所示。

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