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    • 31. 发明授权
    • Apparatus and method for fabricating functional film
    • 功能膜制造装置及方法
    • US07459176B2
    • 2008-12-02
    • US10796276
    • 2004-03-10
    • Kazuaki Sakurada
    • Kazuaki Sakurada
    • B05D5/12
    • G02B5/201G02F1/1333G02F1/133514G02F1/167G02F2201/50H01J9/02H01J2211/44H01L27/3211H01L27/3244H01L27/3295H01L51/0004H01L51/56
    • A functional film fabrication method for fabricating a functional film on a base having a flat surface includes an installation step and an application step. In the installation step, a base is installed so that the flat surface is on top, and a droplet discharge head with a plurality of nozzles aligned in a first direction is arranged above the flat surface. In the application step, a functional film is fabricated on the flat surface by repeating a discharge step and a nozzle movement step. In the discharge step, droplets of a functional liquid are discharged from the nozzles onto the base. In the nozzle movement step, the nozzles are moved relative to the base in a second direction perpendicular to the first direction over a distance shorter than the distance between the nozzles in the first direction.
    • 在具有平坦表面的基底上制造功能膜的功能膜制造方法包括安装步骤和应用步骤。 在安装步骤中,安装基座使得平坦表面位于顶部,并且具有在第一方向上排列的多个喷嘴的液滴喷射头布置在平坦表面的上方。 在施加步骤中,通过重复排出步骤和喷嘴移动步骤在平坦表面上制造功能膜。 在放电步骤中,功能液体的液滴从喷嘴排出到基座上。 在喷嘴移动步骤中,喷嘴在垂直于第一方向的第二方向上比在第一方向上的喷嘴之间的距离短的距离相对于基座移动。
    • 32. 发明授权
    • Liquid crystal display device manufacturing method, liquid crystal display device manufactured with the liquid crystal display device manufacturing method, and liquid-crystal-display-device-mounted electronic device
    • 液晶显示装置的制造方法,利用液晶显示装置的制造方法制造的液晶显示装置以及液晶显示装置的电子装置
    • US07433013B2
    • 2008-10-07
    • US11006690
    • 2004-12-08
    • Yuji IwataKazuaki Sakurada
    • Yuji IwataKazuaki Sakurada
    • G02F1/13
    • G02F1/133351G02F2001/13415
    • A manufacturing method of a liquid crystal display device enables decreasing the fraction defective of a liquid crystal panel upon manufacturing the liquid crystal display device using the liquid crystal dropping model in a large-sized board. The manufacturing method of a liquid crystal display device includes a preliminary liquid crystal coating process, a film thickness measurement process, a liquid crystal discharge condition calculation process, and a liquid crystal coating process. The preliminary liquid crystal coating process scans a plurality of the cell forming areas of the sample board with a droplet discharge head in a predetermined scanning direction, and coats the liquid crystal with a predetermined discharge condition. The film thickness measurement process respectively measures the film thickness of the liquid crystal coated onto the plurality of the cell forming areas. The liquid crystal discharge condition calculation process calculates the liquid crystal discharge condition to discharge to the plurality of the cell forming areas from the droplet discharge head, based on the measuring result of film thickness. The liquid crystal coating process scans the plurality of the cell forming areas of the first motherboard with the droplet discharge head in the predetermined scanning direction, and coats the liquid crystal in accordance with the liquid crystal discharge condition calculated.
    • 液晶显示装置的制造方法能够在使用液晶显示装置的大型基板中使用液晶显示装置的情况下,能够降低液晶面板的分数不良。 液晶显示装置的制造方法包括预备液晶涂布工艺,膜厚测量处理,液晶放电条件计算处理和液晶涂布处理。 初步的液晶涂布工序以预定的扫描方向用液滴喷射头扫描样品板的多个单元形成区域,并以预定的放电条件涂布液晶。 膜厚测量过程分别测量涂覆在多个电池形成区域上的液晶的膜厚度。 液晶放电条件计算处理基于膜厚度的测量结果计算从液滴喷射头向多个电池形成区域排出的液晶放电条件。 液晶涂布工艺在预定扫描方向上用液滴喷射头扫描第一母板的多个单元形成区域,并根据计算出的液晶放电条件涂覆液晶。
    • 34. 发明申请
    • LIQUID EJECTING APPARATUS AND LIQUID EJECTING METHOD
    • 液体喷射装置和液体喷射方法
    • US20120086753A1
    • 2012-04-12
    • US13271017
    • 2011-10-11
    • Kazuaki Sakurada
    • Kazuaki Sakurada
    • B41J2/21
    • B41J2/2114B41J2/2103
    • A liquid ejecting apparatus including a group of first nozzle rows composed of a plurality of first nozzle rows and a group of second nozzle rows composed of a plurality of second nozzle rows, both the group of first nozzle rows and the group of second nozzle rows satisfying one of the following requirements (1) through (3): (1) a black nozzle row is included, (2) a yellow nozzle row, a magenta nozzle row and a cyan nozzle row are all included, and (3) the secondary color nozzle row for the secondary color made by mixing any two of yellow, magenta and cyan, and at least one of the nozzle row that ejects liquid of the remaining one of yellow, magenta and cyan and the secondary color nozzle row for the secondary color which includes the remaining one of yellow, magenta and cyan are included.
    • 一种液体喷射装置,包括由多个第一喷嘴列组成的一组第一喷嘴列和由多个第二喷嘴列组成的一组第二喷嘴列,第一喷嘴列组和第二喷嘴列组都满足 以下要求(1)至(3)中的一个:(1)包括黑色喷嘴列,(2)黄色喷嘴列,品红色喷嘴列和青色喷嘴列都包括在内,(3)二次 用于通过混合黄色,​​品红色和青色中的任何两种制成的二次颜色的彩色喷嘴列,以及喷射黄色,品红色和青色中的剩余部分的液体的喷嘴列中的至少一个和用于次级颜色的次要颜色喷嘴列 其中包括黄色,品红色和青色中的剩余部分。
    • 35. 发明授权
    • Electrooptical manufacturing apparatus, electrooptical apparatus, and electronic device
    • 电光制造装置,电光装置和电子装置
    • US07518702B2
    • 2009-04-14
    • US10778317
    • 2004-02-17
    • Kazuaki Sakurada
    • Kazuaki Sakurada
    • G02F1/1339
    • G02F1/1341
    • An electrooptical manufacturing apparatus is provided for manufacturing an electrooptical apparatus with an improved liquid crystal display quality. The apparatus basically includes a dam-forming section or apparatus, a droplet-ejecting section or apparatus, a seal-forming section or apparatus and a pressure applying section or apparatus. The dam-forming section is configured and arranged to form a dam that defines a liquid crystal area on the internal surface of a first substrate. The droplet-ejecting section is configured and arranged to eject and drop a specific amount of liquid crystal inside the dam. The seal-forming section is configured and arranged to form a seal that is disposed on the external periphery of the dam for sealing a second substrate disposed opposite the first substrate. The pressure applying section is configured and arranged to superpose and press in a vacuum atmosphere the second substrate onto the seal formed on the first substrate.
    • 提供一种电光制造装置,用于制造具有改进的液晶显示质量的电光装置。 该装置基本上包括坝形成部分或装置,液滴喷射部分或装置,密封形成部分或装置以及压力施加部分或装置。 坝形成部分被构造和布置成形成限定第一基板的内表面上的液晶区域的坝。 液滴喷射部被构造和布置成在坝内弹出和滴落特定量的液晶。 密封形成部被构造和布置成形成密封件,该密封件设置在坝的外周上,用于密封与第一基板相对设置的第二基板。 压力施加部构造和布置成将第二基板在真空气氛中叠加并压在形成在第一基板上的密封件上。
    • 36. 发明授权
    • Thin-film coating apparatus
    • 薄膜涂装设备
    • US07335604B2
    • 2008-02-26
    • US10365537
    • 2003-02-13
    • Kazuaki Sakurada
    • Kazuaki Sakurada
    • H01L21/469H01L21/31
    • B05B12/122B05B13/0447B05B17/0607H01L51/0004Y02P80/30
    • To provide a thin-film forming device and a thin-film forming method, a liquid crystal display and a device and method for manufacturing the same, and a thin-film structure and a device and method for manufacturing the same, in which material losses are reduced by using a droplet ejection head, and in addition, the thickness of the entire film can be made uniform. The invention can include a thin-film forming device that is a device for forming a thin film by applying a coating solution onto a substrate, the coating solution containing a solvent and a film-forming material dissolved or dispersed therein. Also an ejection mechanism having a droplet ejection head for ejecting the coating solution onto the substrate, a moving mechanism capable of relatively moving the positions of the droplet ejection head and the substrate, and a control unit for controlling at least one of the ejection mechanism and the moving mechanism can be provided for the thin-film forming device. In addition, a solvent vapor supply mechanism for supplying the solvent vapor to the vicinity of the coating solution applied onto the substrate can also be provided for the thin-film forming device.
    • 为了提供薄膜形成装置和薄膜形成方法,液晶显示器及其制造方法及其制造方法,以及薄膜结构及其制造方法,其中材料损耗 通过使用液滴喷射头来减少,并且还可以使整个膜的厚度均匀。 本发明可以包括薄膜形成装置,其是通过将涂布溶液涂布在基材上而形成薄膜的装置,所述涂布溶液含有溶解或分散在其中的成膜材料。 另外,具有用于将涂布液喷射到基板上的液滴喷射头的喷射机构,能够相对移动液滴喷射头和基板的位置的移动机构,以及用于控制喷射机构和/ 可以为薄膜形成装置提供移动机构。 此外,也可以为薄膜形成装置提供用于将溶剂蒸气供给到涂布在基板上的涂布溶液附近的溶剂蒸气供给机构。