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A high-linear low-power temperature-to-frequency converter with high robustness

机译:具有高鲁棒性的高线性低功耗温度至频率转换器

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A low-power temperature sensor circuit, consisting of a proportional-to-absolute-temperature (PTAT) current generator and a slew-rate controlled relaxation oscillator, is implemented in 65nm CMOS for on-chip temperature measurement. The PTAT current and triangular relaxation oscillator, both based on matched switched-capacitor (SC) modules, conduct a high-linear temperature-to-frequency conversion (TFC). The triangular clamping voltages are generated by a differential bandgap reference (BGR), which employs low-threshold and regular-threshold diodes simultaneously, suppressing process deviations and ensuring TFC robust. The proposed design achieves a temperature inaccuracy of -1 ~ +0.2°C across 0°C to 80°C under ±10% supply and 3σ process variations, after one-point calibration. The average power dissipation of 900nW is observed from a 0.8V supply.
机译:在65nm CMOS中实现了一个低功耗温度传感器电路,该电路由一个按比例的绝对温度(PTAT)电流发生器和一个摆率受控的弛豫振荡器组成,用于片上温度测量。均基于匹配的开关电容器(SC)模块的PTAT电流和三角弛张振荡器,可进行高线性温度频率转换(TFC)。三角钳位电压由差分带隙基准(BGR)产生,该基准同时使用低阈值和规则阈值二极管,从而抑制了工艺偏差并确保了TFC的鲁棒性。一站式校准后,在±10%的电源电压和3σ的工艺变化下,建议的设计在0°C至80°C的温度范围内达到-1〜+ 0.2°C的温度误差。从0.8V电源可观察到900nW的平均功耗。

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