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首页> 外文期刊>IEEE Journal of Solid-State Circuits >A VCO Based Highly Digital Temperature Sensor With 0.034 °C/mV Supply Sensitivity
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A VCO Based Highly Digital Temperature Sensor With 0.034 °C/mV Supply Sensitivity

机译:基于VCO的高数字温度传感器,电源灵敏度为0.034°C / mV

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摘要

A self-referenced VCO-based temperature sensor with reduced supply sensitivity is presented. The proposed sensor converts temperature information to frequency and then into digital bits. A novel sensing technique is proposed in which temperature information is acquired by evaluating the ratio of the output frequencies of two ring oscillators, designed to have different temperature sensitivities, thus avoiding the need for an external frequency reference. Reduced supply sensitivity is achieved by employing the voltage dependence of junction capacitance, thus avoiding the overhead of a voltage regulator. Fabricated in a 65 nm CMOS process, the prototype can operate with supply voltages ranging from 0.85 V to 1.1 V. It achieves supply sensitivity of 0.034 °C/mV and an inaccuracy of ±0.9 °C and ±2.3 °C from 0 to 100 °C after 2-point calibration, with and without static nonlinearity correction, respectively. The proposed sensor achieves 0.3 °C resolution, and a resolution FoM of 0.3 nJK2. The prototype occupies a die area of 0.004 mm2.
机译:提出了一种自参考基于VCO的,具有降低的电源灵敏度的温度传感器。建议的传感器将温度信息转换为频率,然后转换为数字位。提出了一种新颖的感测技术,其中通过评估两个环形振荡器的输出频率之比来获取温度信息,该环形振荡器被设计为具有不同的温度灵敏度,从而无需外部频率基准。通过利用结电容的电压依赖性来实现降低的电源灵敏度,从而避免了稳压器的开销。该原型采用65 nm CMOS工艺制造,可以在0.85 V至1.1 V的电源电压范围内工作。它的电源灵敏度为0.034°C / mV,0至100时的精度为±0.9°C和±2.3°C。两点校准后的°C,分别带有和不带有静态非线性校正。提出的传感器可实现0.3°C的分辨率,分辨率FoM为0.3 nJK2。该原型的模具面积为0.004 mm2。

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