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PRACTICAL LIMITS OF MEASUREMENT UNCERTAINTIES IN CALIBRATION OF STANDARD PLATINUM RESISTANCE THERMOMETERS BY COMPARISON

机译:相比之下,标准铂电阻温度计校准测量不确定性的实际限制

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Usually, SPRTs are calibrated at fixed points, but due to the high cost of a primary realization of physical quantities and time needed for the calibration at fixed points, it can be reasonable to calibrate them by comparison at the highest level. The calibration by comparison is a technique most widely used to calibrate measuring instruments, not only in industry but also in many secondary calibration laboratories. Calibration procedures of a typical secondary laboratory are based on the use of transfer standards, which are usually calibrated in a primary laboratory, thus providing traceability to (inter)national standards through a process of dissemination of a unit with an associated uncertainty. The aim of the paper is to show that temperature calibrations by comparison, in the range from -95 deg C up to 300 deg C, can result in a calibration uncertainty (k(velence)2) of 0,005 deg C, which is sufficiently low for many industrial applications and secondary calibration laboratories.
机译:通常,SPRT以固定点校准,但由于在固定点校准的校准所需的物理量和时间的主要实现的高成本,因此可以合理地通过在最高水平上进行比较来校准它们。相比之下的校准是一种最广泛用于校准测量仪器的技术,不仅在工业中,而且在许多二级校准实验室中。典型的次级实验室的校准程序基于转移标准的使用,这些转移标准通常在主要实验室中校准,从而通过传播具有相关不确定性的单位的过程来提供可追溯性(互联)国家标准。本文的目的是表明,通过比较的温度校准,在-95℃至300℃的范围内,可以导致0.005℃的校准不确定性(k(柔软)2),这足够低对于许多工业应用和二级校准实验室。

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