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Reducing mutual inductance of wide signal busses through swizzling

机译:通过打扫减少宽信号总线的互感

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On-chip inductive coupling has been shown to depend on the distance wires ran in parallel. It has also been shown to depend on the distance separating an attacker and the victim. This has major effect on global signal busses in high performance microprocessors as they are usually routed as a bundle containing a large number of signals traveling for long distances. A solution has been proposed through a process known as swizzling, where the order of signal wires in the bus is continuously rearranged to move attackers and victims away from each other. This technique has the advantage of reducing the mutual inductance between neighboring wires with zero area or routing resource cost. In this paper, we show a formulation of the swizzling technique and report on some simulation results to highlight the resulting improvements.
机译:片上电感耦合已被证明取决于导线平行运行的距离。还显示出它取决于攻击者和受害者之间的距离。这对高性能微处理器中的全局信号总线有重大影响,因为它们通常以包含大量长距离传输信号的束的形式进行路由。已经提出了一种解决方案,该过程称为“喷流”,其中总线中信号线的顺序不断重新排列,以使攻击者和受害者相互远离。该技术的优点在于以零面积或布线资源成本降低了相邻导线之间的互感。在本文中,我们展示了模糊技术的公式化,并报告了一些仿真结果以突出显示由此产生的改进。

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