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A Delay Locked Loop With a Feedback Edge Combiner of Duty-Cycle Corrector With a 20%–80% Input Duty Cycle for SDRAMs

机译:具有占空比校正器反馈边沿合并器的延迟锁定环,用于SDRAM的输入占空比为20%–80%

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A feedback edge combiner is proposed for the duty-cycle corrector (DCC) of a delay locked loop (DLL) to increase the range of allowed input duty cycle. The feedback edge combiner generates the rising edge of a DCC output at the rising edge of an input clock. It generates the falling edge of the DCC output at the rising edge of a feedback clock that is a half-period-delayed signal of the DCC output. A dual-delay-line digitally controlled delay line (DCDL) is used for seamless boundary switching. The chip area of the DCDL is reduced by around 46% by employing the architecture of two short coarse delay lines followed by a fine phase mixer (FPM) and a long coarse delay line in series instead of the architecture of two long coarse delay lines followed by an FPM. The measurements on the chip fabricated in the 65-nm CMOS show the allowed input duty cycle in the range from 20% to 80%; root-mean-square and peak-to-peak jitters of 2.69 and 14.0 ps, respectively, at 2 GHz and 1.2 V; and the operating frequency range from 0.12 to 2.0 GHz at 1.2 V. The measured power consumption is 3.3 mW/GHz at 1.2 V. The chip area is 0.059 mm .
机译:提出了一种反馈边沿组合器,用于延迟锁定环路(DLL)的占空比校正器(DCC),以增加允许的输入占空比范围。反馈边沿组合器在输入时钟的上升沿生成DCC输出的上升沿。它在反馈时钟的上升沿生成DCC输出的下降沿,该反馈时钟是DCC输出的半周期延迟信号。双延迟线数控延迟线(DCDL)用于无缝边界切换。通过采用两个短的粗延迟线,然后是细相位混频器(FPM)和一个长的粗延迟线串联的架构,而不是后面的两个长的粗延迟线的架构,DCDL的芯片面积减少了约46%通过FPM。在65纳米CMOS上制造的芯片上的测量结果显示,允许的输入占空比在20%至80%的范围内。 2 GHz和1.2 V时的均方根抖动和峰峰值抖动分别为2.69和14.0 ps;在1.2 V时的工作频率范围为0.12至2.0 GHz。在1.2 V时测得的功耗为3.3 mW / GHz。芯片面积为0.059 mm。

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