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High speed interconnect crosstalk characterization for next generation servers

机译:下一代服务器的高速互连串扰特性

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High-speed server design is becoming challenging with the increase of data transfer rates in high-speed serial I/O interconnections. As the data rates go beyond 25 Gbps, the interference resulted from frequency dependent losses and reflection noises substantially deteriorates the channel bandwidth and even the system performance. The need to understand the effects caused by board layout, connectors, cables, transmitter and receiver packages and other parasitics is more important than ever. Modeling and analysis of such effects can mitigate the expensive alternate packaging options to achieve the same performance. This paper addresses the sensitivity of the routing imperfections on a channel for data rates up to 40 Gbps. The physical geometry of imperfections are tuned to achieve the desired margins, hence reducing the crosstalk on the overall performance of a system.
机译:随着高速串行I / O互连中数据传输速率的提高,高速服务器设计正变得充满挑战。当数据速率超过25 Gbps时,与频率有关的损耗和反射噪声所引起的干扰将大大降低通道带宽甚至系统性能。与以往相比,了解由电路板布局,连接器,电缆,发射器和接收器封装以及其他寄生效应引起的影响的重要性变得更加重要。对这些影响进行建模和分析可以减轻昂贵的替代包装选项的影响,以实现相同的性能。本文探讨了数据速率高达40 Gbps的通道上路由缺陷的敏感性。调整瑕疵的物理几何形状以获得所需的余量,从而减少系统总体性能的串扰。

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