LIQUID CRYSTAL PROJECTOR

PROBLEM TO BE SOLVED: To make the best use of the merits of a three-plate type projector and a single-plate type projector and to mitigate the demerits of both of them by combining the characteristics of both of them. SOLUTION: Out of the light beams of each color component R, G and B emitted from a...

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1. Verfasser: MUROYA HIROAKI
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creator MUROYA HIROAKI
description PROBLEM TO BE SOLVED: To make the best use of the merits of a three-plate type projector and a single-plate type projector and to mitigate the demerits of both of them by combining the characteristics of both of them. SOLUTION: Out of the light beams of each color component R, G and B emitted from a three-color light source 100, the light beams R and G are made incident on a 1st liquid crystal display device 110 and respectively modulated by the device 110. Then, the light beam G is made incident on a 2nd liquid crystal display device 120 and modulated by the device 120. The device 110 is provided corresponding to two image pickup pixels on one lens surface 230A of a microlens 230 so as to guide the light beams of two color components R and B to each pixels. The device 120 is provided corresponding to one image pickup pixel on one lens surface 330A of a microlens 330 so as to guide the light beam of the color component G to the respective pixels. Thus, the two- plate type liquid crystal projector is constituted of the devices 110 and 120.
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SOLUTION: Out of the light beams of each color component R, G and B emitted from a three-color light source 100, the light beams R and G are made incident on a 1st liquid crystal display device 110 and respectively modulated by the device 110. Then, the light beam G is made incident on a 2nd liquid crystal display device 120 and modulated by the device 120. The device 110 is provided corresponding to two image pickup pixels on one lens surface 230A of a microlens 230 so as to guide the light beams of two color components R and B to each pixels. The device 120 is provided corresponding to one image pickup pixel on one lens surface 330A of a microlens 330 so as to guide the light beam of the color component G to the respective pixels. 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SOLUTION: Out of the light beams of each color component R, G and B emitted from a three-color light source 100, the light beams R and G are made incident on a 1st liquid crystal display device 110 and respectively modulated by the device 110. Then, the light beam G is made incident on a 2nd liquid crystal display device 120 and modulated by the device 120. The device 110 is provided corresponding to two image pickup pixels on one lens surface 230A of a microlens 230 so as to guide the light beams of two color components R and B to each pixels. The device 120 is provided corresponding to one image pickup pixel on one lens surface 330A of a microlens 330 so as to guide the light beam of the color component G to the respective pixels. 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subjects ACCESSORIES THEREFOR
APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USINGWAVES OTHER THAN OPTICAL WAVES
APPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FORPROJECTING OR VIEWING THEM
CINEMATOGRAPHY
DEVICES OR ARRANGEMENTS, THE OPTICAL OPERATION OF WHICH ISMODIFIED BY CHANGING THE OPTICAL PROPERTIES OF THE MEDIUM OF THEDEVICES OR ARRANGEMENTS FOR THE CONTROL OF THE INTENSITY,COLOUR, PHASE, POLARISATION OR DIRECTION OF LIGHT, e.g.SWITCHING, GATING, MODULATING OR DEMODULATING
ELECTROGRAPHY
FREQUENCY-CHANGING
HOLOGRAPHY
NON-LINEAR OPTICS
OPTICAL ANALOGUE/DIGITAL CONVERTERS
OPTICAL LOGIC ELEMENTS
OPTICS
PHOTOGRAPHY
PHYSICS
TECHNIQUES OR PROCEDURES FOR THE OPERATION THEREOF
title LIQUID CRYSTAL PROJECTOR
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