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    • 112. 发明授权
    • Printing method
    • 印刷方式
    • US08974048B2
    • 2015-03-10
    • US13426279
    • 2012-03-21
    • Takamitsu KondoToru TakahashiHiroshi WadaKazuyoshi Tanase
    • Takamitsu KondoToru TakahashiHiroshi WadaKazuyoshi Tanase
    • C09D11/00C09D11/101B41J2/155B41J2/165
    • C09D11/101B41J2/155B41J2/16585
    • A printing method including: ejecting an ink which includes a designated compound is ejected from a first nozzle row which is relatively move in an intersection direction intersecting a direction along the nozzle row with respect to a medium, ejecting the ink while relatively moving in the intersection direction to the medium, from the end portion of a second nozzle row which is overlapped with the end portion of the first nozzle row in a direction along the nozzle row direction, wherein when nozzles of the nozzle rows which are partly overlapped with each other in a direction along the nozzle row share with each other to form a common dot line, the amount of ink ejected per unit area in the partly overlapping region is larger than the amount of ink ejected per unit area in a non-overlapping region.
    • 一种打印方法,包括:喷射包含指定化合物的油墨从相对于介质沿与喷嘴列的方向相交的交叉方向相对移动的第一喷嘴列喷出,同时在交叉点相对移动时喷射墨 从与第一喷嘴列的端部重叠的第二喷嘴列的沿着喷嘴行方向的方向的介质的方向,其中当喷嘴列的喷嘴彼此部分重叠时, 沿着喷嘴列的方向彼此共享以形成公共点线,部分重叠区域中每单位面积喷射的墨的量大于在非重叠区域中每单位面积喷射的墨的量。
    • 113. 发明授权
    • Printing apparatus and printing method
    • 印刷装置和印刷方法
    • US08820873B2
    • 2014-09-02
    • US13428432
    • 2012-03-23
    • Kazuyoshi TanaseToru TakahashiTakamitsu KondoHiroshi Wada
    • Kazuyoshi TanaseToru TakahashiTakamitsu KondoHiroshi Wada
    • B41J29/38B41J2/01B41J11/00B41M7/00
    • B41J11/002B41M7/00B41M7/0081
    • A printing apparatus: the medium-conveying part conveying the medium; the nozzles discharging ink droplets curable by light irradiation onto the medium; the light-irradiation part irradiating the medium with light; the medium-deforming part being arranged on the downstream side of the light-irradiation part, holding the medium from the front and back, and deforming the medium so that an irregular shape is formed in cross section; the controller performing an image-forming step, a light-irradiating step, and a medium-deforming step; in the image-forming step, the ink droplets being discharged by the nozzles to form an image on the surface of the medium; in the light-irradiating step, the ink droplets discharged onto the medium being irradiated with light by the light-irradiation part to cure the droplets; and in the medium-deforming step, the medium being released by the medium-conveying part after the medium is deformed by the medium-deforming part.
    • 印刷装置:传送介质的介质传送部分; 喷嘴将通过光照射固化的墨滴喷射到介质上; 光照射部分用光照射介质; 所述中等变形部分布置在所述光照射部分的下游侧,从所述前侧和后侧保持所述介质,并且使所述介质变形以使得形成横截面的不规则形状; 控制器执行图像形成步骤,光照射步骤和介质变形步骤; 在图像形成步骤中,墨滴被喷嘴排出以在介质的表面上形成图像; 在光照射步骤中,通过光照射部分将被喷射到介质上的墨水被光照射以固化液滴; 并且在中等变形步骤中,介质在介质由介质变形部变形之后由介质输送部分释放。
    • 118. 发明授权
    • Liquid crystal display and electronic apparatus
    • 液晶显示器和电子设备
    • US07746433B2
    • 2010-06-29
    • US12107952
    • 2008-04-23
    • Hiroshi Wada
    • Hiroshi Wada
    • G02F1/1333G02F1/1335
    • G02F1/133555G02F1/134363G02F2001/133638G02F2203/60G02F2413/09
    • A liquid crystal display includes an element substrate, pixel electrodes and a common electrode that are formed on the element substrate, a counter substrate, a liquid crystal layer that is formed between the counter substrate and the element substrate, first and second polarizing plates that are provided on an emitting side of display light and an opposite side, respectively, and a retardation film that is provided in a reflective region to be disposed between the liquid crystal layer and the first polarizing plate. Each pixel has a transmissive region where transmissive display light is emitted and a reflective region where reflective display light is emitted. The retardation of the retardation film has smaller temperature dependency than the retardation of the liquid crystal layer.
    • 液晶显示器包括形成在元件基板上的元件基板,像素电极和公共电极,对置基板,形成在对向基板和元件基板之间的液晶层,第一和第二偏振板 分别设置在显示光和相对侧的发射侧,以及设置在反射区域中以设置在液晶层和第一偏振片之间的延迟膜。 每个像素具有发射透射显示光的透射区域和发射反射显示光的反射区域。 延迟膜的延迟比液晶层的延迟具有更小的温度依赖性。
    • 120. 发明授权
    • Mach-Zehnder type semiconductor device and method of controlling the same
    • 马赫 - 曾德尔型半导体器件及其控制方法
    • US07606447B2
    • 2009-10-20
    • US11711749
    • 2007-02-28
    • Hiroshi Wada
    • Hiroshi Wada
    • G02F1/035
    • G02F1/225G02B6/12007G02F2001/212
    • A Mach-Zehnder type semiconductor device includes electrodes for injecting carriers into first and second branch waveguides so as to change reflection indexes of the first and second branch waveguides. The device further includes electrodes which are placed above either one of the first or second branch waveguides or both of the first or second branch waveguides so as to remove the carriers. The Mach-Zehnder type semiconductor device can adjust a phase difference between first and second split light transmitted through the first and second branch waveguides, respectively, even if the lengths of the first and second branch waveguides deviate from designed values. The Mach-Zehnder type semiconductor device also can suppress optical loss of the first and second light, and generate outgoing light without deterioration.
    • 马赫 - 曾德尔型半导体器件包括用于将载流子注入到第一和第二分支波导中以便改变第一和第二分支波导的反射指数的电极。 该器件还包括放置在第一或第二分支波导中的任一个或第一或第二分支波导两者之上的电极,以便移除载体。 即使第一和第二分支波导的长度偏离设计值,马赫 - 曾德尔型半导体器件也可以分别调节透过第一和第二分支波导的第一和第二分裂光之间的相位差。 马赫曾德尔型半导体器件还可以抑制第一和第二光的光学损失,并且产生出射光而不劣化。