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首页> 外文期刊>International journal of antennas and propagation >Comparative Study of Crosstalk Reduction Techniques in RF Printed Circuit Board Using FDTD Method
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Comparative Study of Crosstalk Reduction Techniques in RF Printed Circuit Board Using FDTD Method

机译:FDTD法降低射频印制电路板串扰技术的比较研究

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摘要

Miniaturization of the feature size in modern electronic circuits results from placing interconnections in close proximity with a high packing density. As a result, coupling between the adjacent lines has increased significantly, causing crosstalk to become an important concern in high-performance circuit design. In certain applications, microstriplines may be used in printed circuit boards for propagating high-speed signals, rather than striplines. Here, the electromagnetic coupling effects are analyzed for various microstrip transmission line structures, namely, microstriplines with a guard trace, double stub microstriplines, and parallel serpentine microstriplines using the finite-difference time-domain method. The numerical results are compared with simulation results, where the variants are simulated using an Ansoft high-frequency structure simulator. The analysis and simulation results are experimentally validated by fabricating a prototype and establishing a good correspondence between them. Numerical results are compared with simulation and experimental results, showing that double stub microstriplines reduce the far end crosstalk by 7 dB and increase the near end crosstalk by about 2dB compared with the parallel microstriplines. Parallel serpentine microstriplines reduce the far end crosstalk by more than 10 dB and also reduce more than 15mV of peak far end crosstalk voltage, compared with parallel microstriplines.
机译:现代电子电路中特征尺寸的最小化是由于以高堆积密度将互连紧密放置而产生的。结果,相邻线之间的耦合大大增加,导致串扰成为高性能电路设计中的重要问题。在某些应用中,微带线可用于印刷电路板,而不是带状线,用于传播高速信号。在此,使用有限差分时域方法分析了各种微带传输线结构的电磁耦合效应,即具有保护迹线的微带线,双根微带线和平行蛇形微带线。将数值结果与仿真结果进行比较,在仿真结果中,使用Ansoft高频结构仿真器对变量进行仿真。分析和仿真结果通过制造原型并在它们之间建立良好的对应关系进行了实验验证。将数值结果与仿真和实验结果进行了比较,结果表明,与并行微带线相比,双截线微带线将远端串扰降低了7 dB,将近端串扰增加了约2dB。与平行微带线相比,平行的蛇形微带线将远端串扰降低了10 dB以上,并且峰值远端串扰电压降低了15mV以上。

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