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  1. NTU Theses and Dissertations Repository
  2. 電機資訊學院
  3. 光電工程學研究所
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/74405
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor林晃巖(Hoangyan-Lin)
dc.contributor.authorYi Luen
dc.contributor.author盧奕zh_TW
dc.date.accessioned2021-06-17T08:34:01Z-
dc.date.available2024-08-18
dc.date.copyright2019-08-18
dc.date.issued2019
dc.date.submitted2019-08-10
dc.identifier.citation[1] 雷射照明技術將會是世界級、顛覆性的新一代照明技術,
https://kknews.cc/zh-tw/car/b29z5rm.html, July 2019
[2] 雷射照明能否顛覆LED的未來, https://ek21.com/news/2/50810/, July 2019
[3] 材料世界網, 雷射光在製造業之發展趨勢分析,
https://www.materialsnet.com.tw/DocView.aspx?id=32964, July 2019
[4] Martin Daniels, Stefan Hadrath, “Laser-Phosphor-Systems for Automotive Applications”, Design and Fabrication Congress 2017 (IODC, Freeform, OFT) © OSA 2017
[5] Jian Xu, Bingguo Liu, Zhiwen Liu, Yuxuan Gong, Baofu Hu, Jian Wang, Hui Li, Xinliang Wang, Baoli Du, “Design of laser-driven SiO2-YAG:Ce composite thick film: Facile synthesis, robust thermal performance, and application in solid-state laser lighting”, Optical Materials 75 (2018) 508-512
[6] Tsung-Xian Lee, Ching-Chia Chou, “Design of Optical Tapered Light-Pipe for Laser Excited Remote Phosphor Module”, Design and Fabrication Congress 2017 (IODC, Freeform, OFT) © OSA 2017
[7] Peng Zheng, Shuxing Li, Le Wang, Tian-Liang Zhou, Shihai You, Takashi Takeda, Naoto Hirosaki, and Rong-Jun Xie, “Unique Color Converter Architecture Enabling Phosphor-in-Glass(PiG) Films Suitable for High-Power and High-Luminance Laser-Driven White Lighting”, ACS Appl. Mater. Interfaces 2018, 10, 14930−14940
[8] Young Hyun Song, Eun Kyung Ji,, Byung Woo Jeong, Mong Kwon Jung, Eun Young Kim, Chul Woo Lee, Dae Ho Yoon, “Design of laser-driven high-efficiency Al2O3/YAG:Ce3t ceramic converter for automotive lighting: Fabrication, luminous emittance, and tunable color space”, Dyes and Pigments 139 (2017) 688e692
[9] Xuejie Zhang,, Jinbo Yu, Jing Wang, Bingfu Lei, Yingliang Liu, Yujin Cho, Rong-Jun Xie, Hong-Wu Zhang, Yurong Li, Zifeng Tian, Yi Li, and Qiang Su, “All-Inorganic Light Convertor Based on Phosphor-in-Glass Engineering for Next-Generation Modular High-Brightness White LEDs/LDs”, ACS Photonics 2017, 4, 986−995
[10] 李國珊,湯兆昇,激光是什麼,
http://www.hk-phy.org/articles/laser/laser.html#note, July 2019
[11] Laser, Wikipedia, https://zh.wikipedia.org/wiki/%E6%BF%80%E5%85%89
[12] 螢光(Fluorescence), 科學Online, 高瞻自然科學教學資平台,
http://highscope.ch.ntu.edu.tw/wordpress/?p=4328, July 2019
[13] 發光材料之放光機制,國立交通大學機構典藏,p.5-p.7,
https://ir.nctu.edu.tw/bitstream/11536/41245/2/581002.pdf
[14] 加速雷射光源商業化,中村修二創立 SoraaLaser 推特殊照明應用, Technews Available from: https://technews.tw/2016/02/26/soraa-soraalaser/, July 2019
[15] Light Intensity, Total-Smart Technology Co., Ltd.,
http://www.totalsmart.com.tw/tw/45-knowledge-base/403-si-cd#close, July 2019
[16] Luminous intensity, Wikipedia,
https://zh.wikipedia.org/wiki/%E5%8F%91%E5%85%89%E5%BC%BA%E5%BA%A6, July 2019
[17] 演色性, Gio Optoelectronics Corp.,
http://www.giotaiwan.com.tw/tw/knowledge_ra.html, July 2019
[18] 玻璃螢光片, Xin DA Optronic Co., Ltd., http://xinda-opt.com/bo-li-ying-guang-pian/, July 2019
[19] Pin-Che Huang, “Temperature and Thermal Stress Distributions on High Power Phosphor Doped Glass LED Modules”, p.20-p.22
[20] Pin-Che Huang, “Temperature and Thermal Stress Distributions on High Power Phosphor Doped Glass LED Modules”, p.22-p.24
[21] 鄒文正,螢光粉的光學特性
[22] Control Optics Taiwan Inc.,
https://www.control-optics.com/product/filters?lang=tw, July 2019
[23] 濾光片和濾色片, ttnet.net,
https://tw.ttnet.net/products/juugcq5ip22jhq5h.html, July 2019
[24] PLPT9 450D_E A01, Opto Semiconductors,
https://www.osram.com/ecat/Metal%20Can%C2%AE%20PLPT9%20450D_E%20A01/com/en/class_pim_web_catalog_103489/global/prd_pim_device_5583415/,July 2019
[25] Light Ports Integrating Sphere., http://www.lightports.com/, July 2019
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/74405-
dc.description.abstract在過去,LED固態照明技術改變了 21世紀的照明方式,雖然這些白光LED的發光效率都可以達150(lm/W)以上,但藍光LED仍然有一些顯著的性能限制,其中在高溫時的效率衰減現象限制了LED的發光功率,使得現今LED固態照明技術仍難以滿足高功率密度應用的需求。隨著高功率密度應用的需求的發展,雷射(LD)技術的研發越趨成熟,再加上雷射光在高電流密度下的表現與穩定度,相較於以往的LED照明,明顯表現優異許多。因此在本篇論文中希望能夠使用高電流密度之藍光雷射並搭配透鏡以及黃色螢光片以產生高亮度理想點光源,藉由不同濃度及厚度參數之螢光片,並搭配功率能量計量測可調變式之高電流密度藍光雷射之光瓦數、使用熱電耦量測溫度與時間之變化關係、使用紅外線熱影像儀(Fluke Ti32)量測螢光片之表面溫度、使用積分球量測頻譜及發光效率與量子效率和時間之關係,藉由以上方式在散熱與發光效率之間取得一平衡,並使用適合的螢光片以搭配後續的二次光學設計達到更進一步之應用。zh_TW
dc.description.abstractIn the past, LED solid-state lighting technology changed the way of 21st century lighting. Although these white LEDs can achieve efficiency of more than 150 (lm/W), but blue LED still has some significant performance limitations, including efficiency droop at high current density. The droop phenomenon limits the luminous power of the LED, making it difficult to meet the needs of high power density applications in today's LED solid state lighting technology.
With the development of high-power density applications, the development of laser (LD) technology has become more mature, coupled with the performance and stability of laser light at high power, compared with the previous LED lighting, significantly better performance. Therefore, in this paper, it is desirable to be able to use high current density blue lasers with lenses and yellow phosphors to produce high-brightness, with different concentrations and thickness parameters of the phosphor.
We use power meter (Thorlabs PM100D), thermocoupler, infrared thermal imager (Fluke Ti32), and the integrating sphere for measuring the watt of high current density blue laser light parameters, the relationship between temperature and time, the luminance with the surface temperature of the phosphors, and the spectrum and the relationship between luminance efficiency and quantum efficiency with time, respectively. We choose a suitable phosphor to match the subsequent secondary optics design for further application.
en
dc.description.provenanceMade available in DSpace on 2021-06-17T08:34:01Z (GMT). No. of bitstreams: 1
ntu-108-R06941020-1.pdf: 7162468 bytes, checksum: 165f05ac5016b74817bf2ecb899d024e (MD5)
Previous issue date: 2019
en
dc.description.tableofcontents誌謝 i
中文摘要 ii
Abstract iii
目錄 iv
圖目錄 vii
表目錄 xvi
第一章 緒論 1
1.1 前言 1
1.2 研究動機 2
1.3 文獻探討 3
1.4 論文架構 9
第二章 實驗原理與架構 11
2.1 雷射簡介與發光原理 11
2.1.1 什麼是雷射? 11
2.1.2 雷射躍遷機制 11
2.1.3 雷射的組成 12
2.2 螢光發光原理 13
2.3 白光發光理論 15
2.4 光的相關單位定義 15
2.4.1 光與輻射(Light and Radiation) 16
2.4.2 光強度(Luminous Intensity,單位記號:I) 16
2.4.3 光照度(Illuminance,單位記號:E) 17
2.4.4 發光效率(Luminance Efficiency) 17
2.4.5 色溫(Color Temperature) 17
2.4.6 演色性指數(Color Rendering Index, CRI) 18
2.5 螢光片種類 18
2.6 熱傳遞理論 22
2.7 應力分析理論 22
2.8 濃度削減機制 22
2.9 實驗架設 23
第三章 實驗流程與量測 26
3.1 實驗流程圖 26
3.2 實驗材料 28
3.2.1 螢光片 28
3.2.2 濾波片 32
3.2.3 螢光片與濾波片的黏合 36
3.3 實驗儀器 38
3.3.1 雷射光源 38
3.3.2 功率能量計 39
3.3.3 熱電耦 40
3.3.4 紅外線熱像儀 41
3.3.5 積分球 42
3.3.5 量測治具 44
第四章 結果與討論 46
4.1 雷射光源的電壓電流關係 46
4.2 雷射光源的穩定性測試 46
4.3 螢光片的溫度耐受性測試 48
4.3.1 藍光雷射的位置選定 48
4.3.2 不同光瓦下的溫度與光譜 50
4.3.3 色座標(CIE) 174
4.4 積分球量測 176
第五章 結論與未來展望 187
5.1 結論 187
5.2 未來展望 191
參考文獻 193
dc.language.isozh-TW
dc.subject雷射zh_TW
dc.subject高電流密度zh_TW
dc.subject螢光片zh_TW
dc.subject高亮度白光zh_TW
dc.subjectHigh current densityen
dc.subjectLaseren
dc.subjectPhosphoren
dc.subjectHigh-brightness white lighten
dc.title基於螢光片特性分析與量測之高亮度雷射白光zh_TW
dc.titleHigh-brightness Laser White Light Based on Phosphor Characteristic Analysis and Measurementen
dc.typeThesis
dc.date.schoolyear107-2
dc.description.degree碩士
dc.contributor.oralexamcommittee崔智宣(Trigg-Tsui),饒智昇(Nelson-Jao)
dc.subject.keyword雷射,高電流密度,螢光片,高亮度白光,zh_TW
dc.subject.keywordLaser,High current density,Phosphor,High-brightness white light,en
dc.relation.page195
dc.identifier.doi10.6342/NTU201902612
dc.rights.note有償授權
dc.date.accepted2019-08-12
dc.contributor.author-college電機資訊學院zh_TW
dc.contributor.author-dept光電工程學研究所zh_TW
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