參考文獻 |
[1] "經濟部能源局,2012年能源產業技術白皮書第三章 http://web3.moeaboe.gov.tw/."
[2] H. J. Round, "A note on carborundum," Electrical world, vol. 49, p. 309, 1907.
[3] N. Holonyak and S. F. Bevacqua, "COHERENT (VISIBLE) LIGHT EMISSION FROM Ga(As1−xPx) JUNCTIONS," Applied Physics Letters, vol. 1, pp. 82-83, 1962.
[4] J. W. Allen, M. E. Moncaster, and J. Starkiewicz, "Electroluminescent devices using carrier injection in gallium phosphide," Solid-State Electronics, vol. 6, pp. 95-102, 3// 1963.
[5] H. Grimmeiss and H. Scholz, "Efficiency of recombination radiation in GaP," Physics Letters, vol. 8, pp. 233-235, 1964.
[6] C. Nuese, J. Tietjen, J. Gannon, and H. Gossenberger, "Optimization of Electroluminescent Efficiencies for Vapor‐Grown GaAs1− x P x Diodes," Journal of The Electrochemical Society, vol. 116, pp. 248-253, 1969.
[7] S. Nakamura, T. Mukai, M. Senoh, and N. Iwasa, "Thermal annealing effects on p-type Mg-doped GaN films," Japanese Journal of Applied Physics, vol. 31, p. L139, 1992.
[8] S. Nakamura, M. Senoh, N. Iwasa, and S.-i. Nagahama, "High-brightness InGaN blue, green and yellow light-emitting diodes with quantum well structures," JAPANESE JOURNAL OF APPLIED PHYSICS PART 2 LETTERS, vol. 34, pp. L797-L797, 1995.
[9] 許世杰, "節能照明技術-淺談發光二極體," 科學月刊, vol. 532期, 04 2014.
[10] "Cree. http://www.cree.com/LED-Components-and-Modules/Products/XLamp/Discrete-Directional/XLamp-XML2."
[11] 陳憬憲, "穩態紅外線LED封裝熱阻量測," 碩士, 光電科學研究所, 國立中央大學, 桃園縣, 2010.
[12] J. M. Herrin and D. Deming, "Thermal conductivity of US coals," Journal of Geophysical Research: Solid Earth (1978–2012), vol. 101, pp. 25381-25386, 1996.
[13] H. Rezaei, R. Gupta, G. Bryant, J. Hart, G. Liu, C. Bailey, et al., "Thermal conductivity of coal ash and slags and models used," Fuel, vol. 79, pp. 1697-1710, 2000.
[14] F. Wall, P. S. Martin, and G. Harbers, "High-power LED package requirements," in Optical Science and Technology, SPIE′s 48th Annual Meeting, 2004, pp. 85-92.
[15] T. L. Bergman and F. P. Incropera, Introduction to Heat Transfer: Wiley, 2011.
[16] 中華民國國家標準, "CNS15498(發光二極體模組之熱阻量測法)," 台灣, 中華民國一百年.
[17] 中華民國國家標準, "CNS15248(發光二極體元件之熱阻量測法)," 台灣, 中華民國九十八年.
[18] T. Maruyama, T. Kurita, S. Kozaki, K. Andou, S. Farjami, and H. Kubo, "Innovation in producing crane rail fishplate using Fe–Mn–Si–Cr based shape memory alloy," Materials Science and Technology, vol. 24, pp. 908-912, 2008.
[19] H. Tsai and H. Hocheng, "Prediction of a thermally induced concave ground surface of the workpiece in surface grinding," Journal of materials processing technology, vol. 122, pp. 148-159, 2002.
[20] M. Song and R. Kovacevic, "Thermal modeling of friction stir welding in a moving coordinate system and its validation," International Journal of Machine Tools and Manufacture, vol. 43, pp. 605-615, 2003. |