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Jitter Tracking Bandwidth Optimization Using Active-Inductor-Based Bandpass Filtering in High-speed Forwarded Clock Transceivers

机译:高速转发时钟收发器中基于有源电感的带通滤波的抖动跟踪带宽优化

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摘要

Inter-chip input-output (I/O) communication bandwidth demand, which rapidly scaled with integrated circuit scaling, requires high performance I/O links to achieve a per pin data rate as high as multi-Gb/s. The design of high-speed links employing forwarded-clock architecture enables jitter tracking between data and clock from low to high frequencies. Considering the impact of clock to data skew, high frequency sampling clock jitter and data jitter become out of phase at receiver, which reduces the timing margin and limits the data rate. The jitter tracking bandwidth (JTB) between data and clock should be optimized to compensate the clock to data skew. System level analysis shows that the wide tunable range of JTB is needed to compensate different amounts of skews. The implementation of bandpass filtering on forwarded-clock path is able to control the JTB through the controlling of Q. This work introduces a method using bandpass filtering to optimize the JTB in high-speed forwarded-clock transceivers, followed by the implementation of active-inductor-based bandpass filter as clock receiver, which has advantages of low-voltage operation, low power as well as low area consumption. Simulation results shows that the designed filter provides controllable JTB over 40 - 600MHz. The bandpass filter is implemented in IBM 90nm CMOS process.
机译:芯片间输入输出(I / O)通信带宽需求随着集成电路的扩展而迅速扩展,它需要高性能的I / O链接,以实现每引脚的数据速率高达几Gb / s。采用前向时钟架构的高速链路设计可实现从低频到高频的数据和时钟之间的抖动跟踪。考虑到时钟对数据偏斜的影响,高频采样时钟抖动和数据抖动在接收器处变得异相,这减少了时序裕量并限制了数据速率。数据和时钟之间的抖动跟踪带宽(JTB)应该得到优化,以补偿时钟与数据偏斜之间的关系。系统级分析表明,需要JTB的可调范围很广,才能补偿不同数量的偏斜。在前向时钟路径上执行带通滤波能够通过控制Q来控制JTB。这项工作介绍了一种使用带通滤波来优化高速前向时钟收发器中的JTB的方法,然后实现了有源基于电感器的带通滤波器作为时钟接收器,具有低电压工作,低功耗和低面积消耗的优点。仿真结果表明,设计的滤波器可在40-600MHz范围内提供可控的JTB。带通滤波器是在IBM 90nm CMOS工艺中实现的。

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    Liu Yang;

  • 作者单位
  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 en_US
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