A High-Frequency and Low-Jitter DLL with Quadrature Error and Duty Cycle Corrections Based on Asynchronous Sampling

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초록

This paper presents a quadrature error and duty-cycle correction circuit based on an asynchronous sampling technique. Sampling the multi-phased clocks provides their phase and duty-cycle information, which are then utilized to compensate for the quadrature and duty-cycle errors. The intrinsic down-conversion operation of the proposed sampling approach enhances the correction accuracy by mitigating circuit mismatch effects. The quadrature-error corrector (QEC) and duty-cycle corrector (DCC) circuits receive control signals generated from the asynchronous phase detectors and correct the clock outputs accordingly. Combined with a delay-locked loop (DLL), the proposed design is fabricated in a 40-nm CMOS process, consumes 7.2 mW, and occupies 0.023 mm. It achieves 0.837-ps RMS jitter and 1.68∘ maximum phase error from multiple chip samples.

키워드

ClocksJitterDetectorsDelay linesCalibrationFrequency measurementPhase measurementClock generationdelay-locked loops (DLLs)duty-cycle error correctionmultiphase clockquadrature error correctionClocksDelay lock loopsError correctionJitterLocks (fasteners)Phase measurementSignal detectionPhase comparatorsClock generationDelay-locked loopsDuty cycle errorDuty-cycle error correctionErrors correctionFrequency measurementsMulti-phase clockPhase clocksQuadrature errorQuadrature error correction
제목
A High-Frequency and Low-Jitter DLL with Quadrature Error and Duty Cycle Corrections Based on Asynchronous Sampling
저자
Park, Gijin이동준Han, JaedukBae, Woorham
DOI
10.1109/LSSC.2023.3242902
발행일
2023-02
유형
Article
저널명
IEEE SOLID-STATE CIRCUITS LETTERS
6
페이지
41 ~ 44