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首页> 外文期刊>Circuits, Devices & Systems, IET >0.97 mW/Gb/s, 4 Gb/s CMOS clock and data recovery IC with dynamic voltage scaling
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0.97 mW/Gb/s, 4 Gb/s CMOS clock and data recovery IC with dynamic voltage scaling

机译:具有动态电压缩放功能的0.97 mW / Gb / s,4 Gb / s CMOS时钟和数据恢复IC

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摘要

This paper presents a low-power complementary metal-oxide-semiconductor (CMOS) clock and data recovery (CDR) integrated circuit (IC) with dynamic voltage scaling (DVS) technique. When DVS is adopted, the power efficiency can be improved by selecting the low supply voltage as possible for a given bit rate. However, the supply voltage generated from a switching regulator such as a buck converter has the ripple voltage at the switching frequency so that the CDR performance may be degraded accordingly. Thus, in this study, the analysis on the relationship among the ripple voltage, the switching frequency and the jitter tolerance (JTOL) is carried out and the appropriate ripple voltage and switching frequency of the buck converter are chosen based on the analysis. Moreover, low supply voltage circuit techniques are carefully utilised for the design of the low-power CDR IC. The CDR IC, implemented in a 0.11 μm CMOS process, shows the power efficiency of 0.97 mW/Gb/s at 4 Gb/s including the buck converter. When 4 Gb/s 231-1 pseudorandom binary sequence is used, the measured bit error rate is better than 10-12, the measured JTOL is 0.3 UIpp and the measured jitter of the recovered clock is 6.1 psrms.
机译:本文介绍了一种采用动态电压缩放(DVS)技术的低功耗互补金属氧化物半导体(CMOS)时钟和数据恢复(CDR)集成电路(IC)。当采用DVS时,通过为给定的比特率选择尽可能低的电源电压,可以提高电源效率。然而,从诸如降压转换器之类的开关调节器产生的电源电压在开关频率处具有波纹电压,使得CDR性能可能相应地下降。因此,在本研究中,对纹波电压,开关频率和抖动容限(JTOL)之间的关系进行了分析,并在此基础上选择了降压转换器的合适纹波电压和开关频率。而且,低电源电压电路技术被仔细地用于低功率CDR IC的设计。以0.11μmCMOS工艺实现的CDR IC(包括降压转换器)在4 Gb / s时的功率效率为0.97 mW / Gb / s。当使用4 Gb / s 231-1伪随机二进制序列时,测得的误码率优于10-12,测得的JTOL为0.3 UIpp,测得的恢复时钟抖动为6.1 psrms。

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