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Phosphor-free, color-mixed, and efficient illuminant: Multi-chip packaged LEDs for optimizing blue light hazard and non-visual biological effects

机译:无磷,色泽和高效的光源:多芯片封装LED,用于优化蓝光危险和非视觉生物效应

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Currently many evaluation models on the photobiological effects (PBE) of light sources do not consider the influence of age and luminance on the pupil diameter, which affects the light radiation intensity on the human retina. In this study, the pupil diameter is taken into consideration when evaluating the PBE of several light sources. Moreover, the correction factor M is proposed. The blue light hazard (BLH) efficacy and the circadian rhythm (CR) effects of the daylight at dusk, together with three indoor light sources with a correlated color temperature (CCT) of about 3000 K were evaluated by using a corrected evaluation model. The results show that an incandescent lamp is more photobiologically friendly for humans, despite being inefficient. Based on high wall-plug efficiency (WPE) GaN-based yellow (565 nm, 24.3%@20 A/cm(2)) and green (522 nm, 41.3%@20 A/cm(2)) LEDs on silicon substrate, incandescent-like spectrum and phosphor-free color-mixed white LEDs (CM-LEDs) with a general color rendering index (CRI) of 94, a CCT of 2866 K, and an efficiency of 131 lm/W were manufactured by mixing blue, cyan, green, yellow and red LEDs. The PBE evaluation results of such CM-LEDs are superior to those of an incandescent lamp. Moreover, blue light free and candlelight-toned LEDs with an efficiency of 120.3 lm/W, a general CRI of 84, a special CRI R9 of 93.3, and a CCT of 1810 K were fabricated by mixing yellow and red LEDs (R&Y-mixed LEDs). The R&Y-mixed LEDs show no blue light weighted quantities and have a weaker influence on the CR shift. They are photobiologically friendly for humans and suitable for nocturnal indoor and outdoor lighting environments.
机译:目前,光源的光生物效应(PBE)上的许多评估模型不考虑年龄和亮度对瞳孔直径的影响,这影响了人视网膜上的光辐射强度。在该研究中,在评估几个光源的PBE时考虑瞳孔直径。此外,提出了校正因子M.通过使用校正的评估模型,评估蓝色光危险(BLH)效果和白天的昼夜日光的功效和昼夜节律(CR)效应与具有相关颜色温度(CCT)的三个室内光源,得到约3000k的相关色温(CCT)。结果表明,尽管效率低,但白炽灯对人类更加光学友好。基于高壁塞效率(WPE)GaN基黄色(565nm,24.3%:2))和绿色(522nm,41.3%,2))LED上硅衬底,具有94,2866 k的一般显色指数(CRI)的白炽光谱和无磷颜色混合白光LED(CM-LED),CCT为2866 k,并通过混合蓝色制造131 LM / W的效率,青色,绿色,黄色和红色LED。这种CM-LED的PBE评估结果优于白炽灯。此外,通过混合黄色和红色LED,通过混合黄色和红色LED来制造具有120.3 LM / W的蓝光和烛光调谐的LED,效率为120.3Lm / W,常规CR9,CCT为93.3的CCT,CCT为1810 k(R&Y混合) LED)。 R&Y混合LED显示出没有蓝光加权量并且对CR转变有较弱的影响。它们对人类进行了光生物学友好,适用于夜间室内和室外照明环境。

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