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A 1.25-12.5 Gbps Adaptive CTLE with Asynchronous Statistic Eye-Opening Monitor

机译:具有异步统计功能的1.25-12.5 Gbps自适应CTLE大开眼界的监视器

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摘要

The equalization of a large attenuation signal and multirate communication in high-speed serial interface is hard to balance. To overcome this difficulty, an adaptive equalization system with optimized eye-opening monitor is proposed. The designed eye-opening monitor is based on the asynchronous statistic eye diagram tracking algorithm, and the eye diagram is obtained by undersampling with the low-speed asynchronous clock. With the eye-opening monitor into the adaptive loop, an adaptive equalization system combined with continuous-time linear equalization (CTLE) is completed. And the inductor peaking technology is used to improve the capacity of compensation. With SMIC 28 nm CMOS process to achieve the overall design, the power consumption and core chip area are 12 mW @ 12.5 Gbps and 0.12 mm~2, respectively. And postsimulation results show that it can offer compensation from 6 to 21 dB for 1.25-12.5 Gbps range of receiving data, which achieves a large range of data rate and channel loss, and its power efficiency is 0.046 pJ/bit/dB for the worst case, which is better than most previous works.
机译:高速串行接口中的大衰减信号均衡和多速率通信很难平衡。为了克服这个困难,提出了一种具有优化的睁眼监控器的自适应均衡系统。设计的睁眼监控器基于异步统计眼图跟踪算法,通过低速异步时钟欠采样获得眼图。通过使监视器睁大眼睛进入自适应环路,完成了与连续时间线性均衡(CTLE)相结合的自适应均衡系统。电感峰值技术被用来提高补偿能力。采用SMIC 28 nm CMOS工艺实现总体设计,功耗和核心芯片面积分别为12.5 Gbps和12.5 Gbps时为12 mW,0.12 mm〜2。后仿真结果表明,对于1.25-12.5 Gbps的接收数据范围,它可以提供6至21 dB的补偿,从而实现了大范围的数据速率和信道损耗,最差的功率效率为0.046 pJ / bit / dB。情况,这比以前的大多数作品要好。

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  • 来源
    《Journal of electrical and computer engineering》 |2018年第2期|3095950.1-3095950.9|共9页
  • 作者单位

    Institute of Microelectronics of Chinese Academy of Sciences, Beitucheng West Road, Chaoyang District, Beijing 100029, China,University of Chinese Academy of Sciences, Yuquan Road, Shijingshan District, Beijing 100049, China;

    University of Chinese Academy of Sciences, Yuquan Road, Shijingshan District, Beijing 100049, China;

    Institute of Microelectronics of Chinese Academy of Sciences, Beitucheng West Road, Chaoyang District, Beijing 100029, China,University of Chinese Academy of Sciences, Yuquan Road, Shijingshan District, Beijing 100049, China;

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