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Study on the dynamic temperature feature of a ratiometric principle based digital angular sensor

机译:基于比例原理的数字角度传感器的动态温度特性研究

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The paper described a design of digital angular sensor with 180deg measurement range, based on ratiometric and capacitive measurement principle, and has a metallic and ungrounded rotor plate. Owing to its structure and measurement mechanism, the sensor has intrinsic reliability and can effectively restrain common mode disturbances, say, temperature, moisture, dust etc., without any additional compensator. Focusing on temperature field with rapid changing rate, experiments were carried out on the prototypes of the sensor. The results show that when the environmental temperature climbs sharply from -15degC up to +65degC at about 6degC /min rate, the maximal peak-peak temperature drift of the prototypes is 0.085%/10degC. During the whole experimental period, the maximal steady temperature drift is 0.07%/10degC and the standard uncertainty is less than 0.1%. In addition, for a wide-temperature-range experiment (-30degC~+80degC) with the same change in rate, the maximal peak-peak temperature drift is less than 0.2%/10degC. It goes without saying that its restraining-temperature-drift ability is better than that of mainstream products based on differential measurement principle.
机译:本文介绍了一种基于比例和电容测量原理的180度测量范围的数字角度传感器的设计,该传感器具有金属化且不接地的转子板。由于其结构和测量机制,该传感器具有固有的可靠性,可以有效地抑制共模干扰,例如温度,湿度,灰尘等,而无需任何额外的补偿器。着眼于快速变化的温度场,对传感器的原型进行了实验。结果表明,当环境温度以大约6degC / min的速率从-15degC急剧上升至+ 65degC时,原型的最大峰峰值温度漂移为0.085%/ 10degC。在整个实验期间,最大稳态温度漂移为0.07%/ 10degC,标准不确定度小于0.1%。另外,对于相同速率变化的宽温度范围实验(-30℃〜+ 80℃),最大峰-峰温度漂移小于0.2%/ 10degC。毋庸置疑,基于差动测量原理,其抑制温度漂移能力优于主流产品。

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