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    • 3. 发明授权
    • Camera having learning function
    • 相机具有学习功能
    • US5359385A
    • 1994-10-25
    • US2673
    • 1993-01-11
    • Tatsuya IshidaKoji HataKohtaro HayashiAkuhiko FujinoHiroshi OotsukaKatsuyuki Nanba
    • Tatsuya IshidaKoji HataKohtaro HayashiAkuhiko FujinoHiroshi OotsukaKatsuyuki Nanba
    • G03B7/091G03B7/28G03B17/00G03B17/20
    • G03B7/091
    • A camera having a learning function which automatically sets data for current photographing in accordance with a tendency of data set in the past (learned data) and takes a photograph in accordance with the data thus set. The camera comprises a light measuring section for measuring a brightness of an object for the photographing, a calculating section for calculating an exposure control value in accordance with the brightness of the object for the photographing, a first setting section for manually setting first data with which the exposure control value is to be corrected, a first correcting section for correcting the exposure control value in accordance with the first data, a second setting section for setting second data in accordance with first data set in the past by the first setting section, a second correcting section for correcting the exposure control value in accordance with the second data, and an exposure controlling section for executing exposure control in accordance with the exposure control value corrected by the first correcting section or the second correcting section.
    • 具有学习功能的相机,其根据过去设置的数据的趋势(学习数据)自动设置当前拍摄的数据,并根据如此设置的数据拍摄照片。 相机包括用于测量拍摄对象的亮度的光测量部分,用于根据拍摄对象的亮度计算曝光控制值的计算部分,用于手动设置第一数据的第一设置部分, 要修正曝光控制值,用于根据第一数据校正曝光控制值的第一校正部分,用于根据第一设置部分过去设置的第一数据设置第二数据的第二设置部分, 第二校正部分,用于根据第二数据校正曝光控制值;以及曝光控制部分,用于根据由第一校正部分或第二校正部分校正的曝光控制值执行曝光控制。
    • 5. 发明授权
    • Projection optical system and image projecting device
    • 投影光学系统和图像投影设备
    • US08696133B2
    • 2014-04-15
    • US13395617
    • 2009-09-11
    • Masayuki ImaokaKohtaro HayashiJun IshiharaYasumasa Sawai
    • Masayuki ImaokaKohtaro HayashiJun IshiharaYasumasa Sawai
    • G03B21/14
    • G02B27/26G02B5/04G02B27/283
    • A projection optical system (6) comprises a relay optical system (61), a PBS prism (71), and two projection lenses (81). The image light beam from a DMD (5) enters the PBS prism (71) via the relay optical system (61), is polarization-split there, and is directed to a screen by means of the two projection lenses (81). Displaying an image by means of the DMD (5) is controlled while the polarized states of the light beams produced by the polarization split by means of the PBS prism (71) are controlled. Thereby, a three-dimensionally viewable image and a high-resolution image created by pixel-offset can be projected. Since the relay optical system (61) is provided, the lens backs of the projection lenses (81) can be shortened, and the projection lenses (81) and further the projection optical system (6) can be made compact.
    • 投影光学系统(6)包括中继光学系统(61),PBS棱镜(71)和两个投影透镜(81)。 来自DMD(5)的图像光束经由中继光学系统(61)进入PBS棱镜(71),在其上被偏振分割,并且通过两个投影透镜(81)被引导到屏幕。 控制通过DMD(5)显示图像,同时控制通过PBS棱镜(71)进行偏振分割产生的光束的偏振状态。 因此,可以投影由像素偏移产生的三维可见图像和高分辨率图像。 由于设置了中继光学系统(61),所以可以缩短投影透镜(81)的透镜背面,并且可以使投影透镜(81)和投影光学系统(6)进一步小型化。
    • 6. 发明申请
    • Projection Optical System and Image Projecting Device
    • 投影光学系统和图像投影设备
    • US20120170000A1
    • 2012-07-05
    • US13395617
    • 2009-09-11
    • Masayuki ImaokaKohtaro HayashiJun IshiharaYasumasa Sawai
    • Masayuki ImaokaKohtaro HayashiJun IshiharaYasumasa Sawai
    • G03B21/14
    • G02B27/26G02B5/04G02B27/283
    • A projection optical system (6) comprises a relay optical system (61), a PBS prism (71), and two projection lenses (81). The image light beam from a DMD (5) enters the PBS prism (71) via the relay optical system (61), is polarization-split there, and is directed to a screen by means of the two projection lenses (81). Displaying an image by means of the DMD (5) is controlled while the polarized states of the light beams produced by the polarization split by means of the PBS prism (71) are controlled. Thereby, a three-dimensionally viewable image and a high-resolution image created by pixel-offset can be projected. Since the relay optical system (61) is provided, the lens backs of the projection lenses (81) can be shortened, and the projection lenses (81) and further the projection optical system (6) can be made compact.
    • 投影光学系统(6)包括中继光学系统(61),PBS棱镜(71)和两个投影透镜(81)。 来自DMD(5)的图像光束经由中继光学系统(61)进入PBS棱镜(71),在其上被偏振分割,并且通过两个投影透镜(81)被引导到屏幕。 控制通过DMD(5)显示图像,同时控制通过PBS棱镜(71)进行偏振分割产生的光束的偏振状态。 因此,可以投影由像素偏移产生的三维可见图像和高分辨率图像。 由于设置了中继光学系统(61),所以可以缩短投影透镜(81)的透镜背面,并且可以使投影透镜(81)和投影光学系统(6)进一步小型化。
    • 8. 发明授权
    • Projection optical system
    • 投影光学系统
    • US07524068B2
    • 2009-04-28
    • US11414777
    • 2006-04-28
    • Kohtaro HayashiMasayuki ImaokaYuichi AtarashiHiroshi Kibayashi
    • Kohtaro HayashiMasayuki ImaokaYuichi AtarashiHiroshi Kibayashi
    • G03B21/00G03B21/28
    • G03B21/10G02B17/0663G03B21/006G03B21/14G03B21/2053G03B21/28H04N5/7416H04N9/3141
    • A projection optical system that performs enlargement projection of an image on a display device surface formed of a plurality of pixels onto a screen surface, in which pixel shift by less than a pixel pitch is performed on the screen surface in a vertical direction, a horizontal direction, an oblique direction, or a vertical and horizontal directions, and in which conditional formulae (1) and (2) below are fulfilled over the entire image range: (1)|ΔRG|≦0.5 d and (2)|ΔBG|≦0.5 d, where d represents the amount of pixel shift (>0), ΔRG represents lateral chromatic aberration in the direction of pixel shift of colored light R having a wavelength of 640 nm with respect to colored light G having a wavelength of 546 nm, and ΔBG represents lateral chromatic aberration in the direction of pixel shift of colored light B having a wavelength of 450 nm with respect to the colored light G having a wavelength of 546 nm.
    • 一种投影光学系统,其将在由多个像素形成的显示装置表面上的图像放大投影到屏幕表面上,其中在屏幕表面上沿垂直方向执行像素偏移小于像素间距的水平,水平 方向,倾斜方向或垂直和水平方向,并且在整个图像范围内满足以下条件式(1)和(2):(1)|ΔRG| <= 0.5d和(2)| DeltaBG | <= 0.5d,其中d表示像素偏移量(> 0),ΔRG表示相对于具有波长为λ的彩色光G,具有640nm波长的有色光R的像素移动方向上的横向色差 546nm,并且DeltaBG表示相对于具有波长为546nm的有色光G,具有450nm波长的有色光B的像素移动方向上的横向色差。