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FEXT Analysis and its Mitigation Using Double-slit Complementary Split-Ring Resonators

机译:使用双缝互补开环谐振器进行FEXT分析及其缓解

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The operating speed of a digital signal and systems are in several GHz range to initiate faster response. Due to this high frequency and operating speed of the signals more and more signal integrity related issues may arise and these issues has to be solved for the better performance of the system. Now a day's integration and miniaturization of digital devices of printed circuit boards (PCBs) are the key features in high speed technology. The printed circuit boards traces are crowded in the design and creates magnetic coupling interference between them. These traces are considered as transmission lines which carrying signal and power between two more points. When current flows through the traces a magnetic field is always set up and interact with the neighboring conductor due to close proximity. The magnetic coupling is mutual and not possible to avoid it. In the result the signal gets affected which degrades the performance of the system to great extent. So, it is necessary to reduce the effect of mutual coupling to improve the performance of the system for its better signal integrity. The mitigation of mutual coupling effect is analyzed and suppression is achieved using metamaterial based complementary split-ring resonators. A new design of double-slit CSRR is used to reduce the crosstalk which is due to coupling. The FEXT analysis is carried out for the frequency range of 5 GHz to 10 GHz.
机译:数字信号和系统的运行速度在几个GHz范围内,以启动更快的响应。由于信号的这种高频率和工作速度,可能会出现越来越多的信号完整性相关问题,并且必须解决这些问题才能获得更好的系统性能。如今,印刷电路板(PCB)的数字设备的集成和小型化是高速技术的关键特征。印刷电路板走线在设计中很拥挤,并在它们之间产生磁耦合干扰。这些走线被认为是在另外两个点之间传输信号和功率的传输线。当电流流经走线时,由于紧密接近,始终会建立磁场并与相邻导体相互作用。磁耦合是相互的,不可能避免。结果,信号受到影响,这在很大程度上降低了系统的性能。因此,有必要降低相互耦合的影响,以改善系统的性能,以获得更好的信号完整性。分析了互耦效应的减轻,并使用了基于超材料的互补开口环谐振器来实现抑制。采用双缝CSRR的新设计来减少由于耦合引起的串扰。在5 GHz至10 GHz的频率范围内进行FEXT分析。

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