基于耦合慢波结构的延迟线

Y. Pchelnikov, D. Nyce
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引用次数: 1

摘要

介绍了一种获取电磁信号延时的新方法。结果表明,阻抗导体之间的正磁耦合和正电耦合使延时增大。还表明,延迟时间的增加是在没有额外衰减的情况下获得的。这允许在延迟时间内减少数倍的电磁损耗。对具有“螺旋”和“蜿蜒”模式的耦合阻抗导体的电磁延迟线进行了近似分析,得到了波减速因子、波阻抗和衰减因子的非常简单的表达式。测量结果证实了分析的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Delay Lines Based on Coupled Slow-Wave Structures
A novel method to obtain an electromagnetic signal delay is described. It is shown that the positive magnetic and electric coupling between impedance conductors produces an increase in the time delay. It is also shown that the increase in delay time is obtained without additional attenuation. This allows a reduction in electromagnetic losses, by a factor of several times, for a delay time. An approximate analysis of electromagnetic delay lines based on coupled impedance conductors with "spiral" and "meander" patterns allowed obtaining very simple expressions for the wave deceleration factor, wave impedance, and attenuation factor. The results of the analysis are confirmed by the results of measurements.
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