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An Overview - Advanced Packaging for Solid State Light Emitting Diode (SSLED) Lighting

机译:概述-固态发光二极管(SSLED)照明的高级封装

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Implementation of advanced packaging concepts in SSLED lighting has the potential to make a significant impact on worldwide energy and environmental concerns. In US Department of Energy studies (ref 1), it has been estimated that, on average, 2.1 quads of energy (the equivalent to 55 million tons of oil) could be saved annually by the implementation of Solid-State Lighting (SSL) nationwide. SSL uses solid-state Light Emitting Diodes (SSLEDs) for general illumination instead of traditional incandescent or fluorescent lighting sources. This paper will present an overview of the issues for current SSLED lighting technologies, and how advanced packaging and integration concepts can address these concerns.rnIn traditional lighting sources, the majority of electrical power is converted to radiant energy-visible light, IR and UV radiation and only a small fraction is converted to heat (~ 8 to 42%). However in SSLEDs, the electrical power is converted to visible light (~20%) and heat (~80%). Heat generated in Light Emitting Diodes (LEDs) has to be conducted away from the source or else the device junction temperature will rise. Without adequate thermal management, both the device performance and lifetime will be adversely affected by higher junction temperature.rnThe high cost of SSLED-based lamps is another major factor preventing the widespread use of SSLED lighting. Currently LED lamps cost 50 to 100 times more than traditional lights. Despite the considerably longer lifetime of a LED light, the average consumer is not willing to pay the higher upfront cost.rnThe key to addressing these concerns is having a packaging solution that will provide adequate thermal management at a lower price. In this paper, the current and advanced packaging solutions are presented.
机译:在SSLED照明中实施高级包装概念有可能对全球能源和环境问题产生重大影响。在美国能源部的研究中(参考文献1),据估计,全国范围内实施固态照明(SSL)每年平均可节省2.1倍的能源(相当于5500万吨的石油)。 。 SSL使用固态发光二极管(SSLED)进行常规照明,而不是传统的白炽灯或荧光灯光源。本文将概述当前SSLED照明技术的问题,以及先进的包装和集成概念如何解决这些问题。在传统的照明光源中,大部分电能都转换为辐射能见光,IR和UV辐射并且只有一小部分转化为热量(约8至42%)。但是,在SSLED中,电能会转换为可见光(〜20%)和热量(〜80%)。发光二极管(LED)产生的热量必须从源头传导走,否则器件结温将升高。如果没有适当的热管理,结温升高会严重影响器件的性能和寿命。rn基于SSLED的灯的高成本是阻止SSLED照明广泛使用的另一个主要因素。目前,LED灯的成本是传统灯的50至100倍。尽管LED灯的使用寿命大大延长,但普通消费者仍不愿支付较高的前期成本。解决这些问题的关键是拥有一种能够以较低的价格提供适当的热管理的封装解决方案。本文介绍了当前和高级的包装解决方案。

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