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首页> 外文期刊>Solid-State Circuits, IEEE Journal of >A Thermistor-Based Temperature Sensor for a Real-Time Clock With src='/images/tex/993.gif' alt='pm'> 2 ppm Frequency Stability
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A Thermistor-Based Temperature Sensor for a Real-Time Clock With src='/images/tex/993.gif' alt='pm'> 2 ppm Frequency Stability

机译:基于热敏电阻的实时时钟温度传感器,其 src =“ / images / tex / 993.gif” alt =“ pm”> 2 ppm频率稳定性

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摘要

This paper describes the design of a temperature sensor based on integrated poly-silicon thermistors. The thermistors are incorporated in a Wien-bridge RC filter, which, in turn, is embedded in a frequency-locked loop. The loop's output frequency is then determined by the filter's temperature-dependent phase shift, thus realizing an energy-efficient and high resolution temperature sensor. After a 3-point calibration, the sensor achieves an inaccuracy of less than (min-max) from to 85 . This translates into a frequency stability of better than 2ppm from to 85 when the sensor is used to temperature compensate the quartz-crystal oscillator of a 32 kHz real-time clock. The 0.09 sensor also achieves 2.8mK (rms) resolution in a 32 ms conversion time while dissipating only 31 .
机译:本文介绍了基于集成多晶硅热敏电阻的温度传感器的设计。热敏电阻内置在Wien桥RC滤波器中,该滤波器又嵌入在锁频环路中。然后,由滤波器的温度相关相移确定环路的输出频率,从而实现了节能高效的高分辨率温度传感器。经过3点校准后,传感器的误差小于(-max)到(85)之间。当使用传感器对32 kHz实时时钟的石英晶体振荡器进行温度补偿时,这将使频率稳定性从到85优于2ppm。 0.09传感器还可以在32 ms的转换时间内实现2.8mK(rms)分辨率,而仅消耗31。

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