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首页> 外文期刊>IEEE Journal of Solid-State Circuits >A 0.18-Μm CMOS 3.5-gb/s continuous-time adaptive cable equalizer using enhanced low-frequency gain control method
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A 0.18-Μm CMOS 3.5-gb/s continuous-time adaptive cable equalizer using enhanced low-frequency gain control method

机译:采用增强型低频增益控制方法的0.18μmCMOS 3.5gb / s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 using an enhanced low-frequency gain control method. The additional low-frequency gain control loop enables the use of an open-loop equalizing filter, which alleviates the speed bottleneck of the conventional adaptation method. In addition, combined adaptation of low-frequency gain and high-frequency boosting improves the adaptation accuracy while supporting high-frequency operation. The open-loop equalizing filter incorporates a merged-path topology and offers infinite input impedance, which are suitable for higher frequency operation and cascaded design. This equalizing filter controls its common-mode output voltage level in a feedforward manner, thereby improving bandwidth. A prototype chip was fabricated in 0.18-Μm four-metal mixed-mode CMOS technology. The realized active area is 0.48×0.73 mm2. The prototype adaptive equalizer operates up to 3.5 Gb/s over a 15-m RG-58 coaxial cable with 1.8-V supply and dissipates 80 mW. Moreover, the equalizing filter in manual adjustment mode operates up to 5 Gb/s over a 15-m RG-58 coaxial cable.
机译:本文介绍了一种使用增强型低频增益控制方法的高速CMOS自适应电缆均衡器。附加的低频增益控制环路可使用开环均衡滤波器,从而减轻了传统自适应方法的速度瓶颈。此外,低频增益和高频增强相结合的自适应功能可在支持高频操作的同时提高自适应精度。开环均衡滤波器采用合并路径拓扑结构,并提供无限的输入阻抗,适用于更高频率的操作和级联设计。该均衡滤波器以前馈方式控制其共模输出电压电平,从而提高了带宽。用0.18μm的四金属混合模式CMOS技术制造原型芯片。实现的有效面积为0.48×0.73 mm2。原型自适应均衡器在具有1.8V电源的15米RG-58同轴电缆上的最高工作速度为3.5 Gb / s,耗散80 mW。此外,手动调整模式下的均衡滤波器在15米RG-58同轴电缆上的最高工作速度为5 Gb / s。

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