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A novel illumination system design for application in the integrated screen 3D display  

Lin, Chu-Hsun (Electronics and Opto-Electronics Research Laboratories, Industrial Technology Research Institute)
Lin, Chun-Chuan (Electronics and Opto-Electronics Research Laboratories, Industrial Technology Research Institute)
Lo, Hsin-Hsiang (Electronics and Opto-Electronics Research Laboratories, Industrial Technology Research Institute)
Chung, Shuang-Chao (Electronics and Opto-Electronics Research Laboratories, Industrial Technology Research Institute)
Chen, Tian-Yuan (Electronics and Opto-Electronics Research Laboratories, Industrial Technology Research Institute)
Wang, Chy-Lin (Electronics and Opto-Electronics Research Laboratories, Industrial Technology Research Institute)
Publication Information
Abstract
A mini-projector prototype employing a LED light source, a nontelecentric structure, and an LCOS panel for application in the integrated 3D display was fabricated. A seamless image was obtained by tilting an array of mini-projectors. Seamless quality was created by the excellent uniformity of the projection intensity on the mini-projector's screen, which was simulated as 98.34%. Great uniformity can be realized by optimizing the design of the light source and the optics configuration, which is the key to such realization.
Keywords
illumination system; mini-projector; 3D display; integrated screen;
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1 Edward H. Stupp, Matthew S. Brennesholtz, Projection Displays, John Wiley & Sons Ltd (1999).
2 Jonathan D. Scheuch, Modeling of constant irradiance illumination system, Proc. SPIE 3428, 22 (1998)
3 Marcel P. Krijn, Bart A. Salters, and Oscar H. Willemsen, LED-based mini-projectors, Proc. SPIE 6196, 619602 (2006)
4 Mark Bennahmias and Tomasz Jannson, Ray tracing analysis of display illumination systems Proc. SPIE 5801, 105 (2005)
5 H Zou, "Single-panel LCOS color projector with LED light sources", SID'05, p.1698, (2005).
6 B L Zhang, "Three-dimensional optical modeling and optimizations of color filter liquid-crystal-on-silicon micro displays", J. Appl. Phys. vol. 98, 123103 (2005)   DOI   ScienceOn
7 Wei Lu, Peifu Gu, and Mo Shen, A novel LED illumination system used in hand-held projector, Proc. SPIE 5638, 103 (2005)
8 Huseyin Murat, Dieter Cuypers, Herbert De Smet, Youri Meuret, Bart Van Giel, Lawrence Bogaert, and Hugo Thienpont, Two liquid crystal on silicon panel projector with efficient light-emitting diode illumination engine Opt. Eng. 46, 124002 (2007)   DOI   ScienceOn
9 H C Huang, "Color filter liquid-crystal-on-silicon micro displays", SID'05, p.880 (2005).
10 G. Harbers, C.G.A. Hoelen, High Performance LCD Backlighting using High Intensity Red, Green and Blue Light Emitting Diodes, SID Intl Symp Digest Tech Papers, 702-706 (2001).
11 Bart Van Giel, Youri Meuret, Lawrence Bogaert, and Hugo Thienpont, Optical design of a compact illumination system for LED projection displays, Proc. SPIE 7001, 70010H (2008)
12 Kyoung-Rok Kim, Hyunsurk Kim, and Hyeongchae Kim, High efficient illumination system utilizing light-guide and white light LED for document scanner application Proc. SPIE 7059, 70590H (2008)
13 Bart Van Giel, Youri Meuret, Lawrence Bogaert, and Hugo
14 G. Harbers, M. Keuper, S. Paolini, Performance of High Power LED Illuminators in Color Sequential, Projection Displays, Proc IDW 03.
15 Edward H. Stupp, Matthew S. Brennesholtz, "Projection Displays", John Wiley & Sons Ltd (1999).
16 Yankun Zhen, Zi Ye, and Feihong Yu, Ultrahigh-performance lamp illumination system with compound parabolic retroreflector for a single liquid-crystal-on-silicon panel display Opt. Eng. 46, 054001 (2007)   DOI   ScienceOn
17 Thienpont, Optical design of a compact illumination system for LED projection displays, Proc. SPIE 7001, 70010H (2008)