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A 20#x03BC;W 10MHz relaxation oscillator with adaptive bias and fast self-calibration in 40nm CMOS for micro-aerial robotics application

机译:20μW10MHz弛豫振荡器,具有自适应偏置并在40nm CMOS中具有快速自校准功能,适用于微型航空机器人应用

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Efficient actuation control of flapping-wing microrobots requires a low-power frequency reference with good absolute accuracy. To meet this requirement, we designed a fully-integrated 10MHz relaxation oscillator in a 40nm CMOS process. By adaptively biasing the continuous-time comparator, we are able to achieve a power consumption of 20μW, a 68% reduction to the conventional fixed bias design. A built-in self-calibration controller enables fast post-fabrication calibration of the clock frequency. Measurements show a frequency drift of 1.2% as the battery voltage changes from 3V to 4.1V.
机译:扑翼微型机器人的有效驱动控制需要具有良好绝对精度的低功率频率参考。为了满足这一要求,我们在40nm CMOS工艺中设计了一个完全集成的10MHz弛张振荡器。通过对连续时间比较器进行自适应偏置,我们能够实现20μW的功耗,与传统的固定偏置设计相比降低了68%。内置的自校准控制器可对时钟频率进行快速的制造后校准。测量显示,当电池电压从3V变为4.1V时,频率漂移为1.2%。

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