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研究生: 張瑋淳
Wei-chung Chang
論文名稱: 高效率高準直背光模組設計
Design for a Highly Efficient and Collimated Backlight Module
指導教授: 孫文信
Wen-shing Sun
鄧敦建
Tun-chien Teng
口試委員:
學位類別: 碩士
Master
系所名稱: 理學院 - 光電科學與工程學系
Department of Optics and Photonics
畢業學年度: 100
語文別: 中文
論文頁數: 111
中文關鍵詞: 背光板背光模組高效率背光模組高準直背光模組導光板
外文關鍵詞: high efficiency backlight module, collimated backlight module, light guide, backlight module
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  •   本論文研究為高效率、高準直、高輝度且薄邊框的側入光式LED導光板模組設計。可應用於筆記型電腦(NoteBook)、平板電腦、i-pad、智慧型手機等小尺寸的3C產品,不但具有防窺功能,且在戶外不會因為外界光線過亮讓眼睛瞳孔縮小而顯得螢幕過暗的情形發生。
      本架構可將邊框的寬度縮減至2.5mm以下,可達到近乎無框的美觀效果,且導光板厚度壓在2.0mm,在高準直度的部分,將可視角縮減至半角7度以內,大幅提高能量使用效率。


    In this thesis, a novel edge-lit backlight module was proposed, which had high efficiency, collimation, luminance and a thin border. The module can be applied not only to small-sized or mobile product, but also to notebook or tablet PC. Furthermore, it can also provide special function such as anti-peep, sunlight readability. In architecture, this backlight module has very narrow border of 2.5 mm or below; a folded and piece-up light guide plate of 2.0 mm thickness. The FWHM of the output intensity of this module is less than 14
    degrees, and the on-axis luminance is up to 20000 nits.

    目 錄 摘要 I Abstract II 致謝 III 目 錄 IV 圖目錄 VI 表目錄 IX 第一章 序論 1 1-1 前言 1 1-2 背光模組簡介 1 1-3 背光模組元介介紹 3 1-4 研究動機與目的 8 1-5 論文架構 9 第二章 基本理論 10 2-1 幾何光學簡介 10 2-1-1 折射定律(Snell’s law) 10 2-1-2 Fresnel equation 11 2-2 介質表面的特性 13 2-2-1 透射(Transmission) 13 2-2-2 吸收(Absorption) 13 2-2-3 散射(Scattering) 13 2-3 光度學簡介 15 2-3-1 光通量(Luminous Flux) 17 2-3-2 照度(Illuminance) 17 2-3-3 強度(Luminous Intensity) 17 2-3-4 輝度(Luminance) 18 2-3-5 Lambertian Law 19 2-4 LightTools 術語定義 20 2-4-1 接收器座標定義 20 2-4-2 視場定義 22 2-4-3 標準差平均差定義 22 第三章 下層導光板設計 23 3-1 初步構想 23 3-2 光源規格 26 3-3 集光器設計 27 3-3-1 控制yz平面光線角度的集光器設計 27 3-3-2 控制xz平面光線角度分佈的集光器設計 32 3-4 混光長度選擇 38 3-5 轉折到上層的設計 45 第四章 上層導光板設計 46 4-1 初步微結構設定 46 4-2 微結構間距設計與控制 47 4-4 微結構角度設計與控制 68 4-5 結果與討論 70 第五章 結論與未來展望 73 參考文獻 74

    [1] Mahari Tjahjadi, Grant Hay, Dennsi J. Coyle, Eugene G. Olczak, Advances in LCD backlight film and plate technology, Information Display 10 (06) (2006)22–27.
    [2] J.-H. Ko, “Recent Research Trends in the Development of New Light Sources for the Backlight Unit of Liquid Crystal Display,” Asian J. Phys., vol. 14, pp. 231-237, 2005.
    [3] M. Anandan, “LCD Backlighting,” SID ’02 Seminar Lecture Notes, p. 169 (2002).
    [4] R. Lu, S. Gauza, and S. T. Wu, “LED-lit LCD TVs,” Mol. Cryst. Liq. Cryst., vol. 488, pp. 246–259, 2008.
    [5] F. C. Lin, L. Y. Liao, C. Y. Liao, Y. P. Huang, and H. P. D. Shieh, “Dynamic backlight gamma on high dynamic range LCD TVs,” J. Disp.Tech., vol. 4,no. 2, pp. 139–146, 2008.
    [6] C. C. Sun, I. Moreno, S. H. Chung, W. T. Chien, C. T. Hsieh, and T.H. Yang, “Direct LED backlight for large area LCD TVs: Brightness analysis,” in Proc. SPIE 6669, 2007, p. 666909.
    [7] LED there be light. Electrooptics.com. Retrieved on 2012-03-16.
    [8] LED Thermal Management. Lunaraccents.com. Retrieved on 2012-03-16.
    [9] "Nichia Unveils White LED with 150 lm/W Luminous Efficiency". Tech-On!. December 21, 2006. Retrieved 2007-08-13.
    [10] Ivan Moreno, Ulises Contreras (2007). "Color distribution from multicolor LED arrays". Optics Express 15 (6): 3607–18.
    [11] Ohno, Y. (2004). "Color rendering and luminous efficacy of white LED spectra". Proc. Of SPIE 5530: 89.
    [12] Byung-Yun Joo, Dong-Ho Shin” Design guidance of backlight optic for improvement of the brightness in the conventional edge-lit LCD backlight , Displays 31 (2010) 87–92.
    [13] 3M,LCD Optics.<http://solutions.3m.com/wps/portal/3M/>.
    [14] B.W. Lee, M.Y. Yu, J.H. Ko, Dependence of the gain factor of the Reflective polarizer on the configuration of optical sheets, Journal of Information Display 10 (1) (2009) 28–32.
    [15] K. Kalantar, S. Matsumoto, and T. Onishi, “Functional light-guide plate characterized by optical microdeflector and Nmicro-reflector for LCD backlight”, IEICE TRANS. ELECTRON., E84-C, 1637-1646 (2001).
    [16] Di Feng, Yingbai Yan, Xingpeng Yang, Guofan Jin and Shoushan Fan, “Novel integrated light-guide plate for liquid crystal display backlight”, J.Opt. A: Pure Appl. Opt., 7, 111–117 (2005).
    [17] Di Feng, Guofan Jin, Yingbai Yan, Shoushan Fan, “High quality light guide plates that can control the illumination angle based on microprism structures”, Applied Physics Letters, 85, 6016-6018 (2004).
    [18] 孫文信,幾何光學,國立中央大學光電科學與工程學系,2011
    [19] Cajori, Florian "A History of Physics in its Elementary Branches,Including the evolution of physical laboratories." MacMillan Company, New York 1899.
    [20] R. Feynman, Lectures in Physics, Vol, 1, 1963, pg. 30-1, Addison Wesley Publishing Company Reading, Mass.

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