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The reduction of broadband crosstalk interference between multiple conductors in a backplane interconnect and its performance impact on gigabit digital communication signals.

机译:减少底板互连中多个导体之间的宽带串扰干扰及其对千兆位数字通信信号的性能影响。

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摘要

Crosstalk interference from signal transmission between transmission line conductors limits channel throughput as amplitude distortion in an experimental backplane connector. Shared return conductor microstrip connectors arranged in stacks have resonant frequencies that are determined largely by cavity dimensions of the return conductor geometries. If an input waveform to the connector excites these resonant frequencies, the resonant energy will couple to other signal conductors in the connector and will result in crosstalk interference. Lossy materials can be used to reduce the resonant crosstalk interference in connectors.;Quasi-conductor and magnetic absorber materials were used to reduce the resonant crosstalk in an experimental connector. Full-wave computer simulation was used to calculate connector S-parameters and was compared with measurement. Empirical equations were developed to relate experimental S-parameters of connector lossy material configurations with system bit-error-rate, channel Q, and eye pattern height at the data rate of 10.6Gbps.
机译:在实验背板连接器中,传输线导体之间信号传输产生的串扰干扰会限制通道吞吐量,因为幅度失真。布置在堆叠中的共享回路导体微带连接器具有谐振频率,该谐振频率主要由回路导体几何形状的腔尺寸确定。如果连接器的输入波形激发了这些谐振频率,则谐振能量将耦合到连接器中的其他信号导体,并会导致串扰。有损材料可用于减少连接器中的共振串扰。;准导体和磁吸收剂材料用于减少实验性连接器中的共振串扰。使用全波计算机仿真来计算连接器的S参数,并将其与测量结果进行比较。开发了经验公式,以将连接器有损耗材料配置的实验S参数与系统误码率,通道Q和眼图高度(在数据速率为10.6Gbps时)相关联。

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