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A CMOS 3.5 Gbps continuous-time adaptive cable equalizer with joint adaptation method of low-frequency gain and high-frequency boosting

机译:具有低频增益和高频增强的联合自适应方法的CMOS 3.5 Gbps连续时间自适应电缆均衡器

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This paper describes a high-speed CMOS adaptive cable equalizer with the joint adaptation method of low-frequency gain and high-frequency boosting. The adaptation method compares not only the high-frequency contents but also the low-frequency contents. By this joint adaptation method, the adaptation inaccuracy due to amplitude deviation can be reduced. The filter cell in the equalizer uses the variable-capacitor tuning and feed-forward common-mode-voltage biasing technique to achieve high bandwidth. The prototype chip is fabricated in a 0.18 /spl mu/m mixed-mode CMOS process. The realized active area is 0.48 mm/spl times/0.73 mm. The filter cell operates up to 5 Gbps and the adaptive equalizer operates up to 3.5 Gbps over a 15-m RG-58 coaxial cable with a 1.8 V supply and 80 mW power dissipation.
机译:本文介绍了一种采用低频增益和高频增强的联合自适应方法的高速CMOS自适应电缆均衡器。自适应方法不仅比较高频内容,而且比较低频内容。通过这种联合自适应方法,可以减少由于幅度偏差引起的自适应误差。均衡器中的滤波器单元使用可变电容器调谐和前馈共模电压偏置技术来实现高带宽。原型芯片采用0.18 / spl mu / m混合模式CMOS工艺制造。实现的有效面积为0.48 mm / spl倍/0.73 mm。滤波器单元在15米RG-58同轴电缆上以1.8 V电源供电,功耗为80 mW,最高可运行5 Gbps,而自适应均衡器最高可运行3.5 Gbps。

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