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    • 2. 发明申请
    • LIGHT SOURCE DEVICE HAVING WAVELENGTH CONVERSION AND SEPARATION MEANS, AND PROJECTOR
    • 具有波长转换和分离方式的光源器件和投影仪
    • US20110216105A1
    • 2011-09-08
    • US13108067
    • 2011-05-16
    • Shunji KAMIJIMA
    • Shunji KAMIJIMA
    • G09G5/10F21V9/00
    • H04N9/3161H04N9/3129
    • A light source device includes a light source unit emitting light of a first wavelength and a wavelength converting element converting light of the first wavelength into light of a second wavelength. An external mirror transmits light of the second wavelength toward an emission destination and reflects light of the first wavelength to resonate between the light source unit and the external mirror. A wavelength separating section transmits light converted from the first wavelength to the second wavelength while traveling from the external mirror to the light source unit and reflects light of the first wavelength in order to separate the different wavelength light. A turnback section reflects light of the second wavelength separated by the wavelength separating section toward the emission destination. In addition, the wavelength separating section reflects light of the first wavelength from the light source unit to travel toward the wavelength converting element.
    • 光源装置包括发射第一波长的光的光源单元和将第一波长的光转换为第二波长的光的波长转换元件。 外部反射镜将第二波长的光透射到发射目的地并且反射第一波长的光以在光源单元和外部反射镜之间谐振。 在从外部反射镜行进到光源单元的同时,波长分离部将从第一波长转换的光透射到第二波长,并且反射第一波长的光,以分离不同的波长的光。 折回部分将由波长分离部分分离的第二波长的光反射到发射目的地。 此外,波长分离部将来自光源单元的第一波长的光反射到波长转换元件。
    • 3. 发明申请
    • Light Source Device, Illuminating Device, Monitoring Apparatus, and Projector
    • 光源装置,照明装置,监视装置和投影仪
    • US20080159736A1
    • 2008-07-03
    • US11962737
    • 2007-12-21
    • Shunji KAMIJIMA
    • Shunji KAMIJIMA
    • H04B17/00H04B10/08
    • H04N9/3161H04N9/3129
    • A light source device includes: a light source unit emitting a light of a first wavelength; a wavelength converting element converting the light of the first wavelength into a light of a second wavelength different from the firs wavelength; an external resonator transmitting the light of the second wavelength emitted from the wavelength converting element to travel to a emission destination and reflecting the light of the first wavelength to resonate between the light source unit and the external resonator; a wavelength separating section transmitting the light converted from the first wavelength to the second wavelength in the course of traveling from the external resonator to the light source unit and reflecting the light of the first wavelength to separate the light of the first wavelength and the light of the second wavelength from each other; and a turnback section turning back the light of the second wavelength separated by the wavelength separating section toward the emission destination. Here, the wavelength separating section reflects the light of the first wavelength from the light source unit to travel toward the wavelength converting element.
    • 光源装置包括:发射第一波长的光的光源单元; 将第一波长的光转换为与第一波长不同的第二波长的光的波长转换元件; 外部谐振器,其将从所述波长转换元件发射的所述第二波长的光发射到发射目的地并反射所述第一波长的光以在所述光源单元和所述外部谐振器之间谐振; 在从外部谐振器行进到光源单元的过程中将从第一波长转换成第二波长的光透射到第二波长的波长分离部分,并且反射第一波长的光以将第一波长的光和 第二波长彼此; 以及折返部,其将由波长分离部分分离的第二波长的光朝向发射目的地转回。 这里,波长分离部将来自光源单元的第一波长的光反射到波长转换元件。
    • 9. 发明申请
    • LIQUID CRYSTAL DEVICE AND PROJECTOR
    • 液晶装置和投影仪
    • US20070182874A1
    • 2007-08-09
    • US11615525
    • 2006-12-22
    • Shunji KAMIJIMA
    • Shunji KAMIJIMA
    • G02F1/136
    • G02F1/136209G02F1/133526G02F2001/133567G02F2201/40G09G3/2092G09G3/3611G09G3/3614G09G3/3674G09G2310/0205G09G2360/18H04N9/3105
    • Provided is a liquid crystal device including: a plurality of data Lines and a plurality of scanning lines which cross each other; switching elements which are provided in correspondence with intersections between the data lines and the scanning lines; pixel electrodes connected to the switching elements; pixels configured in correspondence with the pixel electrodes; an image display region configured by the plurality of pixels; a first substrate having at least the switching elements; a second substrate which faces the first substrate; and liquid crystal interposed between the first substrate and the second substrate, wherein light incident from the first substrate is modulated by the liquid crystal, a light-shielding film is provided on a light incident side of at least the switching elements of the first substrate, and at least a portion corresponding to the image display region of the second substrate includes only a transparent layer which transmits light incident to the liquid crystal.
    • 提供一种液晶装置,包括:多个数据线和多条彼此交叉的扫描线; 开关元件,其与数据线和扫描线的交点对应地设置; 连接到开关元件的像素电极; 被配置为与像素电极对应的像素; 由所述多个像素构成的图像显示区域; 至少具有所述开关元件的第一基板; 面向所述第一基板的第二基板; 以及插入在第一基板和第二基板之间的液晶,其中从第一基板入射的光被液晶调制,在至少第一基板的开关元件的光入射侧设置有光屏蔽膜, 并且与第二基板的图像显示区域对应的至少一部分仅包括透射入射到液晶的光的透明层。
    • 10. 发明申请
    • ELECTROOPTICAL DEVICE, ELECTRONIC APPARATUS, AND PROJECTOR
    • 电子设备,电子设备和投影仪
    • US20070165147A1
    • 2007-07-19
    • US11617269
    • 2006-12-28
    • Shunji KAMIJIMATeiichiro NAKAMURA
    • Shunji KAMIJIMATeiichiro NAKAMURA
    • G02F1/1343
    • H01L27/1218G02F1/136213G02F2201/40H01L27/1255
    • An electrooptical device includes a substrate having pixel regions arranged in a matrix, pixel electrodes disposed in the pixel regions of the substrate, switching elements disposed between the pixel regions of the substrate and electrically connected to the pixel electrodes, capacitors disposed between the pixel regions of the substrate to hold electrical charge on the pixel electrodes, wiring disposed between the pixel regions of the substrate, and grooves disposed in a surface of the substrate so as to extend between the pixel regions thereof. The capacitors each include a first capacitor electrode, an insulating film, and a second capacitor electrode. The wiring includes data lines and scanning lines corresponding to the switching elements. The capacitors are at least partially disposed in the grooves.
    • 电光装置包括具有排列成矩阵的像素区域的基板,设置在基板的像素区域中的像素电极,设置在基板的像素区域之间并电连接到像素电极的开关元件,设置在像素电极的像素区域之间的电容器 所述基板在所述像素电极上保持电荷,布置在所述基板的像素区域之间的布线以及设置在所述基板的表面中的槽,以在其像素区域之间延伸。 电容器各自包括第一电容器电极,绝缘膜和第二电容器电极。 布线包括对应于开关元件的数据线和扫描线。 电容器至少部分地设置在凹槽中。