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Improved Photometric Standards and Calibration Procedures at NIST

机译:改善NIST的光度标准和校准程序

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NIST has recently established a detector-based luminous intensity unit (candela), which is derived from the NIST absolute cryogenic radiometer. Subsequently, the luminous flux unit (lumen) and the luminance unit (cd/m~(2)) have been established based on the detector-based candela, and now all the NIST photometric units are tied to the cryogenic radiometer. The illuminance unit is realized and maintained on five standard photometers. A large dynamic range of the standard photometers eliminates the need for maintaining many working standard lamps of various wattages. The luminous intensities (candela) of lamps are determined from the illuminances measured with these photometers and the distances measured with a linear encoder system. Transfer photometers and illuminance meters are calibrated by direct comparison with the standard photometers with no distance measurements involved. The total luminous flux unit is realized using an absolute integrating sphere method newly developed at NIST. The luminance unit is realized on an integrating sphere source, which is used for calibration of other luminance sources and luminance meters. These detector-based methods have made it possible to reduce the uncertainties of photometric calibrations and to provide more varieties of photometric calibration services at NIST.
机译:NIST最近建立了一种基于探测器的发光强度单元(Candela),其来自NIST绝对低温辐射计。随后,基于基于检测器的坎德拉建立了光通量单元(腔)和亮度单元(CD / M〜(2)),现在所有NIST光度单位都绑定到低温辐射计。照度单元实现并保持在五个标准光度计上。标准光度计的大型动态范围消除了维护各种功率的许多工作标准灯的需求。灯的发光强度(Candela)由用这些光度计和用线性编码器系统测量的距离测量的照度确定。通过直接比较与没有涉及距离测量的标准光度计进行校准转印光度计和照度仪。使用NIST新开发的绝对集成球体方法实现总光通量单元。亮度单元在集成球源上实现,用于校准其他亮度源和亮度仪表。这些基于探测器的方法使得可以降低光度校准的不确定性,并在NIST提供更多品种的光度校准服务。

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