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    • 2. 发明授权
    • Method of manufacturing optical device which overlies optical operation regions
    • 制造光学器件的方法,覆盖光学操作区域
    • US06533631B2
    • 2003-03-18
    • US10002973
    • 2001-10-26
    • Nobutoshi AsaiYoshinari MatsudaRyota OdakeYoshio Suzuki
    • Nobutoshi AsaiYoshinari MatsudaRyota OdakeYoshio Suzuki
    • H01J900
    • H01L27/3288H01L27/3211H01L27/3293H01L51/5243H01L51/525H01L51/5253
    • An optical device used as an image panel which is allowed to be arranged together with the adjacent one on a display without a gap put therebetween and which is improved to form a stacked body including organic layers without damaging the surface of an already-formed organic layer by a vapor-deposition mask, and to provide a method of manufacturing the optical device. Metal bumps are provided on stripes of transparent electrodes arranged on a glass substrate in such a manner as to be located in non-optical operation regions, and are led on the back surface of the organic EL device. The metal bumps function as spacers upon vapor-deposition of the organic layer or the like, to prevent the contact of a vapor-deposition mask with an already-formed film surface, and are led on the back surface of the organic EL device together with metal electrodes and are connected to an electronic part mounted on the back surface side of the organic EL device.
    • 一种用作图像面板的光学装置,其被允许与显示器一起布置在显示器上而没有间隙,并且其被改进以形成包括有机层的层叠体,而不损坏已形成的有机层的表面 通过气相沉积掩模,并提供一种制造光学器件的方法。 金属凸块设置在布置在玻璃基板上的透明电极条上,以便位于非光学操作区域中,并被引导到有机EL器件的背面。 金属凸块在气相沉积有机层等时用作间隔物,以防止气相沉积掩模与已经形成的膜表面接触,并且与有机EL器件的背面一起被引导到 金属电极并连接到安装在有机EL器件的背面侧的电子部件。
    • 3. 发明授权
    • Optical device with conductive projections in non-optical operation regions
    • 在非光学操作区域具有导电突起的光学器件
    • US06448710B1
    • 2002-09-10
    • US09398768
    • 1999-09-17
    • Nobutoshi AsaiYoshinari MatsudaRyota OdakeYoshio Suzuki
    • Nobutoshi AsaiYoshinari MatsudaRyota OdakeYoshio Suzuki
    • H01J162
    • H01L27/3288H01L27/3211H01L27/3293H01L51/5243H01L51/525H01L51/5253
    • An optical device used as an image panel which is allowed to be arranged together with the adjacent one on a display without a gap put therebetween and which is improved to form a stacked body including organic layers without damaging the surface of an already-formed organic layer by a vapor-deposition mask, and a method of manufacturing the optical device. Metal bumps are provided on stripes of transparent electrodes arranged on a glass substrate in such a manner as to be located in non-optical operation regions, and are led on the back surface of the organic EL device. The metal bumps function as spacers upon vapor-deposition of the organic layer or the like, to prevent the contact of a vapor-deposition mask with an already-formed film surface, and are led on the back surface of the organic EL device together with metal electrodes and are connected to an electronic part mounted on the back surface side of the organic EL device.
    • 一种用作图像面板的光学装置,其被允许与显示器一起布置在显示器上而没有间隙,并且其被改进以形成包括有机层的层叠体,而不损坏已形成的有机层的表面 通过气相沉积掩模,以及制造该光学器件的方法。 金属凸块设置在布置在玻璃基板上的透明电极条上,以便位于非光学操作区域中,并被引导到有机EL器件的背面。 金属凸块在气相沉积有机层等时用作间隔物,以防止气相沉积掩模与已经形成的膜表面接触,并且与有机EL器件的背面一起被引导到 金属电极并连接到安装在有机EL器件的背面侧的电子部件。
    • 5. 发明授权
    • Direct-view-type display apparatus
    • 直视式显示装置
    • US06603270B2
    • 2003-08-05
    • US09829735
    • 2001-04-10
    • Yoshio SuzukiYoshinari Matsuda
    • Yoshio SuzukiYoshinari Matsuda
    • G09G310
    • H01L27/3293H01L27/3288
    • An organic EL display, wherein fabrication is simplified, manufacturing cost is reduced, periodicity with which pixels are arrayed is maintained, picture quality is prevented from deteriorating due to a boundary between transparent substrates, and high resolution is realized. A plurality of organic thin-film EL elements (2) are formed on a single transparent substrate (1). Circuit substrates (5) in which driver circuits (6) for supplying signals to signal and scanning electrodes of the elements (2) are mounted are bonded to the elements (2). The circuit substrate has an end-sealing property and through-holes bored opposite the signal and scanning electrodes. The through-holes are covered by a conductive, end-sealing material. Signals are supplied from the driver circuit (6) to the signal and scanning electrodes through the conductive material. A portion of the organic EL element which is not bonded to the circuit substrate is covered by an end-sealing material.
    • 一种有机EL显示器,其中制造简化,制造成本降低,维持像素排列的周期性,防止图像质量由于透明基板之间的边界而劣化,并且实现了高分辨率。 在单个透明基板(1)上形成多个有机薄膜EL元件(2)。 其中安装用于向元件(2)的信号和扫描电极提供信号的驱动电路(6)的电路基板(5)被接合到元件(2)。 电路基板具有端部密封特性和与信号和扫描电极相对的钻孔。 通孔被导电的端密封材料覆盖。 信号从驱动电路(6)通过导电材料提供给信号和扫描电极。 未结合到电路基板的有机EL元件的一部分被端部密封材料覆盖。
    • 10. 发明授权
    • Three-dimensional image display apparatus
    • 三维图像显示装置
    • US08220929B2
    • 2012-07-17
    • US12476837
    • 2009-06-02
    • Tetsuyuki MiyawakiKyohei IwamotoYoshio Suzuki
    • Tetsuyuki MiyawakiKyohei IwamotoYoshio Suzuki
    • G03B21/00G02B27/22G02B27/24H04N13/04
    • G02B27/46G02B27/22G06E3/003
    • A three-dimensional image display apparatus includes a light source and an optical system including a light modulation unit having pixels for generating a two-dimensional image by modulating light from the light source by the respective pixels and emitting a spatial frequency in the generated two-dimensional image along a diffraction angle corresponding to diffraction orders generated from the respective pixels, a Fourier transform image formation unit for performing Fourier transform on the spatial frequency in the two-dimensional image to generate Fourier transform images corresponding to the diffraction orders, a Fourier transform image selection unit for selecting a Fourier transform image corresponding to a desired diffraction order among the Fourier transform images, and a conjugate image formation unit for forming a conjugate image of the selected Fourier transform image, and further includes a semi-transmissive mirror for changing a light ray travelling direction emitted from the optical system.
    • 一种三维图像显示装置,包括光源和光学系统,该光学系统包括具有像素的光调制单元,所述像素用于通过对来自所述光源的各个像素调制光而产生二维图像,并且在所生成的二维图像中发射空间频率, 对应于从各个像素产生的衍射级的衍射角的三维图像;傅里叶变换图像形成单元,用于对二维图像中的空间频率执行傅立叶变换,以生成与衍射级相对应的傅立叶变换图像;傅里叶变换 图像选择单元,用于在傅里叶变换图像中选择与期望的衍射级相对应的傅立叶变换图像,以及共轭图像形成单元,用于形成所选择的傅立叶变换图像的共轭图像,并且还包括半透射镜, 从t发射的光线行进方向 他的光学系统。