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Crystal-less oscillator calibration using serial data as frequency reference

机译:使用串行数据作为频率基准的无晶振校准

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摘要

A frequency calibration method for a crystal-less current-controlled ring oscillator is presented. It uses a serial data signal from another chip as the frequency reference. The proposed calibration circuit is composed of the coarse calibration and the fine calibration circuit. The coarse calibration circuit controls a binary weighted biasing current source array, while the fine calibration circuit generates a pulse-width-modulation (PWM) signal to control a switched biasing current source. The duty cycle ratio of the PWM signal is obtained by measuring the frequency ratio error between the oscillator output and the reference signal. An auto-correlation-based method is proposed to calculate the frequency ratio error. The 8 MHz ring oscillator in together with the calibration circuit has been fabricated in a 0.13 μm CMOS process. Measured results on 24 chips show that the relative frequency error is reduced to 0.0239% (mean offset + 3σ) after calibration. The reported oscillator shows advantages in accuracy, power consumption and chip area.
机译:提出了一种无晶体电流控制环形振荡器的频率校准方法。它使用来自另一个芯片的串行数据信号作为频率参考。所提出的校准电路由粗略校准和精细校准电路组成。粗校准电路控制二进制加权偏置电流源阵列,而精校准电路生成脉冲宽度调制(PWM)信号以控制开关偏置电流源。通过测量振荡器输出和参考信号之间的频率比误差来获得PWM信号的占空比。提出了一种基于自相关的频率比误差计算方法。 8 MHz环形振荡器与校准电路一起以0.13μmCMOS工艺制造。在24个芯片上的测量结果表明,校准后相对频率误差降低到0.0239%(平均偏移+3σ)。报告的振荡器在精度,功耗和芯片面积方面显示出优势。

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