A 0.98 pJ/Cycle 3.7 ppm Long-Term Stability Frequency-Locked Oscillator with Switched-Capacitor and Switched-Resistor Techniques

Yun-Sheng Hsieh, Bo Li, Kuang-Wei Cheng
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Abstract

This work presents an energy-efficient on-chip resistive frequency-locked oscillator (RFLO) for achieving superb temperature and frequency stabilities. The resistive frequency-locked oscillator outperforms the power consumption and the temperature coefficient (TC) compared to the conventional relaxation oscillator. Frequency dividers are utilized in the feedback loop to reduce the reference current and clock power consumption. Moreover, switched-capacitor and switched-resistor techniques are both exploited to accomplish low area and low power consumption. This work was fabricated in TSMC $0.180\ \mu\mathrm{m}$ process. The prototype operates at 200 kHz and achieves a 23.5 ppm/°C of TC across the temperature range from −40°C to 90°C and a line sensitivity of 0.44 %/V. Consuming 196 nW at 1 V supply voltage, it can reach a 0.98 pJ/cycle of energy efficiency.
采用开关电容和开关电阻技术的0.98 pJ/Cycle 3.7 ppm长期稳定锁频振荡器
这项工作提出了一种节能的片上电阻锁频振荡器(RFLO),可实现极好的温度和频率稳定性。与传统的弛豫振荡器相比,电阻式锁频振荡器的功耗和温度系数(TC)都有所提高。在反馈回路中使用分频器来降低参考电流和时钟功耗。此外,开关电容和开关电阻技术都可以实现低面积和低功耗。本作品采用TSMC $0.180\ \mu\ mathm {m}$工艺制作。该样机工作频率为200 kHz,在- 40°C至90°C的温度范围内实现了23.5 ppm/°C的TC,线路灵敏度为0.44% /V。在1v电源电压下消耗196nw,能量效率可达0.98 pJ/循环。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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