A 250M-2.5GHz Two-Stage Duty-Cycle Corrector with 10%-90% Correction Range and 3-Cycle Correction Latency for Mitigating Aging Effects

Zhiting Li, Lishuo Deng, Li Cai, Changwei Yan, Zhangrui Qian, Weiwei Shan · 2025

Clock duty-cycle distortion caused by aging effects, which induces circuit performance degradation, has become a significant concern in advanced processes. We propose a digital two-stage duty-cycle corrector (DCC) that directly corrects the duty-cycle distortion, using a duty-cycle adjuster (DCA) for coarse duty-cycle width modulation followed by a high-accuracy half-cycle delay line (HCDL) for 50% duty-cycle correction. The two-stage structure further extends the operating frequency and duty-cycle range, while achieving low correction latency through the elimination of external complex control by employing open-loop logic as compared with state-of-the-art (SOTA) works. Implemented in a 22nm ULVT CMOS process, measurement results show that it operates at a frequency range of 250M to 2.5GHz with an acceptable input duty-cycle range of 10% to 90%. It achieves a maximum duty-cycle correction error of 1.5% at 2.5GHz and correction latency of only three clock cycles. The maximum peak-to-peak jitter of the output clock is 13.25ps.

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