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首页> 外文期刊>International Journal of Thermophysics >Calibration by Comparison of Platinum Resistance Thermometers Using Slow Resistance Bridges
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Calibration by Comparison of Platinum Resistance Thermometers Using Slow Resistance Bridges

机译:使用慢电阻电桥通过比较铂电阻温度计进行校准

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摘要

Platinum resistance thermometers (PRTs) are calibrated at the highest level in fixed points, as specified in the International Temperature Scale of 1990 (ITS-90). However, in order to reduce cost and time, platinum resistance thermometers can also be calibrated by comparison. In the temperature range from −100 °C to 300 °C, it is possible to achieve uncertainties as small as 5 mK. A PRT is calibrated by comparison by comparing its resistance reading with the temperature reading of a reference thermometer, placed at the same temperature inside the temperature-controlled calibration medium. The reference thermometer is commonly also a resistance thermometer, so the intrinsic measurement problem is the simultaneous measurement of two resistances. Four methods that perform this measurement are presented in this article. A special emphasis is given to the measurement with slow bridges. Slow bridges are not able to produce a stable resistance reading within 20 s after the connection of the PRT, so they are often considered to be unsuitable for calibration by comparison of PRTs. To overcome this problem, a special method that directly measures the ratio between the reference PRT and PRT under calibration is presented and analyzed. The analysis and measurement results proved that this method and consequently the slow resistance bridges are capable of performing calibration by comparison of PRTs at least at the same level as the conventional methods.
机译:根据1990年国际温度标度(ITS-90)的规定,将铂电阻温度计(PRT)固定在最高点进行校准。但是,为了减少成本和时间,铂电阻温度计也可以通过比较进行校准。在-100°C至300°C的温度范围内,可以实现低至5 mK的不确定性。通过比较PRT,将其电阻读数与参考温度计的温度读数进行比较,从而对它进行校准,该参考温度计放置在温度受控的校准介质中的同一温度下。参考温度计通常也是电阻温度计,因此固有的测量问题是同时测量两个电阻。本文介绍了执行此测量的四种方法。特别强调了使用慢速电桥进行的测量。慢电桥在连接PRT后的20 s内不能产生稳定的电阻读数,因此通常认为它们不适合通过比较PRT进行校准。为了克服这个问题,提出并分析了一种直接测量参考PRT与校准后的PRT之比的特殊方法。分析和测量结果证明,该方法以及慢电阻桥能够通过比较PRT至少在与传统方法相同的水平上进行校准。

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