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LEDs: Sources and Intrinsically Bandwidth-Limited Detectors

机译:LED:光源和本质上带宽受限的检测器

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摘要

The increasing demand for light emitting diodes (LEDs) is driven by a number of application categories, including display backlighting, communications, signage, and general illumination. Nowadays, they have also become attractive candidates as new photometric standards. In recent years, LEDs have started to be applied as wavelength-selective photo-detectors as well. Nevertheless, manufacturers’ datasheets are limited about LEDs used as sources in terms of degradation with operating time (aging) or shifting of the emission spectrum as a function of the forward current. On the contrary, as far as detection is concerned, information about spectral responsivity of LEDs is missing. We investigated, mainly from a radiometric point of view, more than 50 commercial LEDs of a wide variety of wavelength bands, ranging from ultraviolet (UV) to near infrared (NIR). Originally, the final aim was to find which LEDs could better work together as detector-emitter pairs for the creation of self-calibrating ground-viewing LED radiometers; however, the findings that we are sharing here following, have a general validity that could be exploited in several sensing applications.
机译:许多应用类别推动了对发光二极管(LED)的不断增长的需求,其中包括显示器背光,通信,标牌和普通照明。如今,它们也已成为新的光度标准的有吸引力的候选者。近年来,LED也开始被用作波长选择光电探测器。不过,制造商的数据表在用作LED的光源方面受工作时间(老化)的退化或发射频谱随正向电流变化的限制而受到限制。相反,就检测而言,缺少有关LED光谱响应度的信息。我们主要从放射学角度研究了50多种商业波段的LED,其波长范围从紫外线(UV)到近红外(NIR)。最初,最终目的是找到哪些LED可以更好地与检测器-发射器对协同工作,以创建自校准的地面观察LED辐射计。然而,我们在下面分享的发现具有普遍的有效性,可以在几种传感应用中加以利用。

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