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    • 1. 发明授权
    • Projector that automatically adjusts the projection parameters
    • 投影机自动调整投影参数
    • US06422704B1
    • 2002-07-23
    • US09344187
    • 1999-06-24
    • Takaaki GyotenMasahiro KawashimaSyunsuke Kimura
    • Takaaki GyotenMasahiro KawashimaSyunsuke Kimura
    • G03D2114
    • H04N17/04H04N9/317H04N9/3194
    • A projector 100 projects an image onto a screen 200 by having light from a light source 111 pass through light valves 108˜110 corresponding to RGB colors and a projection lens 101. A special pattern is displayed on the light valves 108˜110 so that an image of the special pattern is projected onto the screen 200. The projector includes a half mirror 112 that directs light, which has been reflected back off this image on the screen 200 and back through the light valves 108˜110, toward the collective lens 113, and a light detecting element 114 for detecting the intensity of the light collected by the collective lens 113. Based on the detected intensity, the microcomputer 116 automatically adjusts the projection parameters of the projector 100.
    • 投影仪100通过使来自光源111的光通过对应于RGB颜色的光阀108〜110和投影透镜101,将图像投影到屏幕200上。在光阀108〜110上显示特殊图案,使得 特殊图案的图像被投影到屏幕200上。投影仪包括半反射镜112,其将已经从屏幕200上反射回来的光反射回到通过光阀108〜110的光,朝向集体透镜113 以及用于检测由集体透镜113收集的光的强度的光检测元件114.基于检测到的强度,微型计算机116自动调节投影仪100的投影参数。
    • 3. 发明授权
    • Projector comprising a microcomputer for controlling zoom and focus adjustments utilizing pattern generation and calculation means
    • 投影仪包括用于利用图案生成和计算装置来控制变焦和焦点调整的微型计算机
    • US06592228B1
    • 2003-07-15
    • US09831467
    • 2001-05-09
    • Masahiro KawashimaTakaaki Gyoten
    • Masahiro KawashimaTakaaki Gyoten
    • G03B300
    • H04N9/317G03B21/005G03B21/11
    • A projector that can be easily set up and adjusted is disclosed. In accordance with a projection condition inputted into a microcomputer via a remote-controller, the microcomputer selects an optimum projection lens by referring to correlation data showing a relation among a projection lens, a projection display size, and an optimum projection distance. The microcomputer has a screen to indicate an optimum projection lens and projection distance that satisfy the inputted projection condition. The microcomputer calculates the amounts of zoom and focus adjustments to be made to the projection lens with reference to the correlation data so as to attain the projection display size and the microcomputer automatically drives the projection lens via a zoom driving unit and a focus driving unit.
    • 公开了一种可以容易地进行设置和调整的投影机。 根据通过遥控器输入到微计算机的投影条件,微计算机通过参考表示投影透镜,投影显示尺寸和最佳投影距离之间的关系的相关数据来选择最佳投影透镜。 微型计算机具有指示最佳投影透镜和满足输入投影条件的投影距离的屏幕。 微计算机根据相关数据来计算对投影透镜的变焦和调焦量,以获得投影显示尺寸,微型计算机通过变焦驱动单元和聚焦驱动单元自动驱动投影透镜。
    • 5. 发明申请
    • IMAGE-PROCESSING EQUIPMENTS, IMAGE-PROCESSING METHOD, PROGRAM, AND RECORDING MEDIUM
    • 图像处理设备,图像处理方法,程序和记录介质
    • US20090167193A1
    • 2009-07-02
    • US12299941
    • 2007-11-27
    • Masakazu OgasawaraTakaaki Gyoten
    • Masakazu OgasawaraTakaaki Gyoten
    • H05B37/02
    • H04N9/3123G03B21/2053G09G3/2014G09G3/3406G09G2360/145H04N9/3155
    • An image display apparatus which represents a grayscale by pulse-width modulation driving of a display element includes: a light source which illuminates the display element; a light source driving part which drives the light source; a photodetector which detects the emission intensity of light emitted from the light source; a sample-and-holder which obtains the emission intensity of the light source by the photodetector at a predetermined timing in a light emission period of the light source; and a compensation current generating part which (i) obtains the manner in which the emission intensity of the light source changes on the basis of a first sample value obtained at a first timing by the sample-and-holder and of a second sample value obtained at a second timing by the sample-and-holder or a predetermined target value of the emission intensity; and (ii) controls the light source driving part for compensating the emission intensity of the light source on the basis of the obtained manner in which the emission intensity changes.
    • 通过显示元件的脉宽调制驱动来表示灰阶的图像显示装置包括:照亮显示元件的光源; 驱动光源的光源驱动部; 光检测器,其检测从光源发射的光的发射强度; 采样保持器,其在光源的发光期间中以预定的时刻由光电检测器获得光源的发光强度; 以及补偿电流产生部分,其(i)基于由所述采样和持有者在第一定时获得的第一样本值和获得的第二样本值来获得所述光源的发光强度变化的方式 在第二时间由采样持有者或发射强度的预定目标值; 以及(ii)基于所获得的发光强度变化的方式来控制用于补偿光源的发光强度的光源驱动部。
    • 6. 发明授权
    • Video projecting system
    • 视频投影系统
    • US06753923B2
    • 2004-06-22
    • US09940633
    • 2001-08-29
    • Takaaki Gyoten
    • Takaaki Gyoten
    • H04N5262
    • H04N9/3147
    • A video projecting system includes two video projectors. Each video projector has a scaling processing circuit that generates a scaled video signal from an incoming video signal, the scaled video signal representing a partial image of a predetermined size, a luminance adjustment circuit that generates from the scaled video signal from the scaling processing circuit an adjusted video signal representing the partial image having a reduced luminance in a predetermined region of the partial image, and a display device that generates a partial image based on the adjusted video signal which is outputted from the luminance adjustment circuit. The partial image generated by the display device is projected via an optical system onto a screen, so that respective partial images partially overlap each other, thereby creating one stitched image. Thus, a compact and inexpensive video projecting system which can eliminate the need of manual readjustment of a plurality of video projectors is provided.
    • 视频投影系统包括两台视频投影机。 每个视频投影仪具有缩放处理电路,其生成来自输入视频信号的缩放视频信号,缩放视频信号表示预定大小的部分图像,亮度调节电路,其从缩放处理电路的缩放视频信号生成 表示在部分图像的预定区域中具有降低的亮度的部分图像的调整后视频信号,以及基于从亮度调整电路输出的经调整的视频信号生成部分图像的显示装置。 由显示装置生成的部分图像经由光学系统投射到屏幕上,使得各部分图像部分地彼此重叠,从而形成一个缝合图像。 因此,提供了可以消除对多个视频投影仪的手动重新调整的需要的紧凑而廉价的视频投影系统。
    • 7. 发明授权
    • Projection image display device with switching luminance controller
    • 具有开关亮度控制器的投影图像显示装置
    • US08517541B2
    • 2013-08-27
    • US13049953
    • 2011-03-17
    • Takayuki KimotoTakaaki GyotenHiroshi Kitano
    • Takayuki KimotoTakaaki GyotenHiroshi Kitano
    • G03B21/20
    • G03B21/16
    • A projection image display device has a plurality of light sources, a phosphor layer that emits light through excitation by at least any one of the light sources, an optical section, a temperature detector, a light-source intensity controller, an amplitude controller, a luminance controller. The optical section determines an optical path of light emitted from the light sources and the phosphor layer. The temperature detector directly or indirectly detects temperature of the phosphor layer or of the periphery of the phosphor layer. The light-source intensity controller controls intensity of an excitation light source that excites the phosphor layer. The amplitude controller controls the amplitude of a projection image signal. The luminance controller controls luminance of projection images by switching the light-source intensity controller and the amplitude controller according to a detected temperature.
    • 投影图像显示装置具有多个光源,通过至少任一个光源的激发而发光的荧光体层,光学部,温度检测器,光源强度控制器,振幅控制器, 亮度控制器。 光学部分确定从光源和荧光体层发射的光的光路。 温度检测器直接或间接地检测荧光体层或荧光体层周围的温度。 光源强度控制器控制激发荧光体层的激发光源的强度。 幅度控制器控制投影图像信号的幅度。 亮度控制器通过根据检测到的温度切换光源强度控制器和振幅控制器来控制投影图像的亮度。