Optical simulation for high efficiency LED
碩士 === 國立清華大學 === 電子工程研究所 === 94 === Light emitting diode (LED) has many advantages such as long lifetime, high efficiency and reliability, directional, insensitive to vibration and shocks, compact forms. In the recent years, high efficiency white LEDs have gained much interest because the replaceme...
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ndltd-TW-094NTHU54280402015-12-16T04:39:04Z http://ndltd.ncl.edu.tw/handle/19415140539461260431 Optical simulation for high efficiency LED 高效率發光二極體的光學模擬 Yu-Zong Shu 許裕宗 碩士 國立清華大學 電子工程研究所 94 Light emitting diode (LED) has many advantages such as long lifetime, high efficiency and reliability, directional, insensitive to vibration and shocks, compact forms. In the recent years, high efficiency white LEDs have gained much interest because the replacement of fluorescent lamps will be realized in the near future. Nowadays the high internal quantum efficiency of LED has already been obtained because of the matured growth of epitaxy technology. However, the light extraction efficiency of LED is always less than 40%. In addition, when LEDs are applied to various applications especially in the field of solid-state lighting, the far-field radiation patterns of LEDs becomes a very important issue. In order to enhance the light extraction efficiency of a flip chip LED, we design the different rough surface structures between the sapphire layer and GaN layer. The roughed surface structure can reduce the total internal reflection (TIR) inside the LED and increase the probability of light escape from the chip. In order to predict the far-field radiation patterns of LEDs, we also design the optical model for practical packaged LED. After the optical simulations, we can get a higher light extraction efficiency LED chip. We also can design the various form of LED packages for any kind of lighting applications. All of the optical models and simulations in this thesis are built by ray-tracing software (TracePro) Huey-Liang Hwang 黃惠良 2006 學位論文 ; thesis 51 en_US |
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碩士 === 國立清華大學 === 電子工程研究所 === 94 === Light emitting diode (LED) has many advantages such as long lifetime, high efficiency and reliability, directional, insensitive to vibration and shocks, compact forms. In the recent years, high efficiency white LEDs have gained much interest because the replacement of fluorescent lamps will be realized in the near future. Nowadays the high internal quantum efficiency of LED has already been obtained because of the matured growth of epitaxy technology. However, the light extraction efficiency of LED is always less than 40%. In addition, when LEDs are applied to various applications especially in the field of solid-state lighting, the far-field radiation patterns of LEDs becomes a very important issue.
In order to enhance the light extraction efficiency of a flip chip LED, we design the different rough surface structures between the sapphire layer and GaN layer. The roughed surface structure can reduce the total internal reflection (TIR) inside the LED and increase the probability of light escape from the chip. In order to predict the far-field radiation patterns of LEDs, we also design the optical model for practical packaged LED.
After the optical simulations, we can get a higher light extraction efficiency LED chip. We also can design the various form of LED packages for any kind of lighting applications. All of the optical models and simulations in this thesis are built by ray-tracing software (TracePro)
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author2 |
Huey-Liang Hwang |
author_facet |
Huey-Liang Hwang Yu-Zong Shu 許裕宗 |
author |
Yu-Zong Shu 許裕宗 |
spellingShingle |
Yu-Zong Shu 許裕宗 Optical simulation for high efficiency LED |
author_sort |
Yu-Zong Shu |
title |
Optical simulation for high efficiency LED |
title_short |
Optical simulation for high efficiency LED |
title_full |
Optical simulation for high efficiency LED |
title_fullStr |
Optical simulation for high efficiency LED |
title_full_unstemmed |
Optical simulation for high efficiency LED |
title_sort |
optical simulation for high efficiency led |
publishDate |
2006 |
url |
http://ndltd.ncl.edu.tw/handle/19415140539461260431 |
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