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Instrumentation-related uncertainty of reflectance and transmittance measurements with a two-channel spectrophotometer

机译:与仪器相关的使用两通道分光光度计的反射率和透射率测量的不确定性

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摘要

Spectrophotometers are operated in numerous fields of science and industry for a variety of applications. In order to provide confidence for the measured data, analyzing the associated uncertainty is valuable. However, the uncertainty of the measurement results is often unknown or reduced to sample-related contributions. In this paper, we describe our approach for the systematic determination of the measurement uncertainty of the commercially available two-channel spectrophotometer Agilent Cary 5000 in accordance with the Guide to the expression of uncertainty in measurements. We focus on the instrumentation-related uncertainty contributions rather than the specific application and thus outline a general procedure which can be adapted for other instruments. Moreover, we discover a systematic signal deviation due to the inertia of the measurement amplifier and develop and apply a correction procedure. Thereby we increase the usable dynamic range of the instrument by more than one order of magnitude. We present methods for the quantification of the uncertainty contributions and combine them into an uncertainty budget for the device. © 2017 Author(s).
机译:分光光度计可在科学和工业的众多领域中运行,以实现各种应用。为了为测量数据提供置信度,分析相关的不确定性非常有价值。但是,测量结果的不确定性通常是未知的,或者减少到与样品有关的贡献。在本文中,我们将根据测量不确定度表示指南,介绍用于系统确定市售两通道分光光度计Agilent Cary 5000的测量不确定度的方法。我们专注于与仪器相关的不确定性贡献,而不是特定的应用,因此概述了可以适用于其他仪器的一般程序。此外,我们发现由于测量放大器的惯性导致的系统信号偏差,并开发并应用了校正程序。因此,我们将仪器的可用动态范围增加了一个数量级以上。我们提出了量化不确定性贡献的方法,并将它们组合为设备的不确定性预算。 ©2017作者。

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