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    • 3. 发明授权
    • Method of manufacturing display, and display
    • 显示方法和显示方式
    • US09070900B2
    • 2015-06-30
    • US12617334
    • 2009-11-12
    • Hiroshi TanakaKazuhito Hori
    • Hiroshi TanakaKazuhito Hori
    • G09F13/08H01L51/52
    • H01L51/5271H01L51/5237H01L51/524H01L51/5253H01L51/5259H01L51/5284
    • A method of manufacturing a display not needing a complicated post-process for forming a reflecting mirror film and allowing degradation in an organic light-emitting device to be prevented, and a display. The method of manufacturing a display includes the steps of: forming a plurality of organic light-emitting devices in a display region on a substrate to form a light-emitting panel; forming projection-shaped reflection elements corresponding to the plurality of organic light-emitting devices, respectively, on a base to form a reflector; forming an adhesive layer along an outer edge of the light-emitting panel; and bonding the light-emitting panel and the reflector together with the adhesive layer in a vacuum atmosphere, thereby to form a vacuum layer in a space between the light-emitting panel and the reflector.
    • 制造不需要用于形成反射镜膜的复杂后处理并且能够防止有机发光器件劣化的显示器的显示方法。 制造显示器的方法包括以下步骤:在衬底上的显示区域中形成多个有机发光器件,以形成发光面板; 在基座上分别形成与多个有机发光装置对应的突起状的反射体,形成反射体; 沿着所述发光面板的外缘形成粘合剂层; 并且在真空气氛中将发光面板和反射体与粘合剂层接合,从而在发光面板和反射体之间的空间中形成真空层。
    • 5. 发明授权
    • Liquid ejecting device and method of controlling liquid ejecting device
    • 液体喷射装置及液体喷射装置的控制方法
    • US08132880B2
    • 2012-03-13
    • US12265570
    • 2008-11-05
    • Ryoichi TanakaKazuhito HoriHirokazu Nunokawa
    • Ryoichi TanakaKazuhito HoriHirokazu Nunokawa
    • B41J29/38
    • B41J29/393B41J2/2132
    • A liquid ejecting device includes a nozzle group formed by aligning nozzles that eject a liquid, and a liquid ejecting head that ejects liquids from the nozzles based on ejection serial data that represents ejection or non-ejection of each nozzle of the nozzle group. The liquid ejecting head ejects a liquid to a landing target while the liquid ejecting head and the landing target are relatively moved in a second direction that is perpendicular to a first direction in which the nozzles are aligned. The liquid ejecting device further includes a meandering correction pattern forming unit that forms a meandering correction pattern along the second direction in a margin outside the regulated landing area of the landing target and a meandering correction pattern detecting unit that detects the meandering correction pattern formed in the landing target by the meandering correction pattern forming unit.
    • 液体喷射装置包括通过对准喷射液体的喷嘴形成的喷嘴组,以及基于表示喷嘴组的每个喷嘴的喷射或不喷射的喷射串行数据从喷嘴喷射液体的液体喷射头。 当液体喷射头和着陆靶相对于与喷嘴对准的第一方向垂直的第二方向相对移动时,液体喷射头将液体喷射到着陆目标。 液体喷射装置还包括蜿蜒曲线校正图形形成单元,该蜿蜒校正图案形成单元沿着着陆目标的调节着陆区域外侧的边界沿着第二方向形成曲折校正图案,以及曲折校正图案检测单元,其检测形成在 通过曲折校正图案形成单元着陆目标。
    • 6. 发明申请
    • COOLING DEVICE, HEAT SINK, AND ELECTRONIC APPARATUS
    • 冷却装置,散热器和电子装置
    • US20090262500A1
    • 2009-10-22
    • US11912538
    • 2006-04-04
    • Takuya MakinoHiroshi TakinoKazuhito HoriHiroichi Ishikawa
    • Takuya MakinoHiroshi TakinoKazuhito HoriHiroichi Ishikawa
    • H05K7/20F28F7/00F28D21/00
    • H01L23/4735F28D15/0266F28D2021/0029F28F1/32F28F3/02F28F2265/28H01L23/3672H01L2924/0002H01L2924/00
    • There are provided a cooling device and a heat sink that can effectively radiate heat generated by a heat source while reducing the volume of discharged gas to avoid noise, and an electronic apparatus in which the cooling device and the heat sink are mounted. A heat sink 3 includes cutouts 24a and 24b through which air serving as gas can be taken in from the outside and which are provided on a side where air discharged from first and second nozzles 6 and 7 serving as openings of a jet generating mechanism 2 is received. Therefore, the pressure near the cutouts is decreased by air flow discharged from the first and second nozzles 6 and 7, and outside air is taken in through the cutouts 24a and 24b. Consequently, more gas than gas discharged from the first and second nozzles 6 and 7 is discharged from an outlet of the heat sink. This can minimize the volume of jetted gas to avoid noise, and effectively radiate heat generated by a heat source.
    • 提供了一种冷却装置和散热器,其能够有效地辐射由热源产生的热量,同时减少排出的气体的体积以避免噪音;以及电子设备,其中安装有冷却装置和散热器。 散热器3包括切口24a和24b,通过该切口24a和24b,可以从外部吸入用作气体的空气,并且设置在从用作喷气发生机构2的开口的第一和第二喷嘴6和7排出的空气的一侧 收到了 因此,通过从第一和第二喷嘴6和7排出的空气流,切口附近的压力减小,并且外部空气通过切口24a和24b被吸入。 因此,比从第一和第二喷嘴6和7排出的气体多的气体从散热器的出口排出。 这样可以最大程度地减少喷射气体的体积,以避免噪音,并有效地辐射热源产生的热量。
    • 9. 发明授权
    • Mask pattern forming method and device, and method of producing optical disk
    • 掩模图案形成方法和装置以及制造光盘的方法
    • US07038992B1
    • 2006-05-02
    • US09652145
    • 2000-08-31
    • Kazuhito Hori
    • Kazuhito Hori
    • G11B1/00
    • G11B7/261G03F7/70383
    • A method of forming a mask pattern includes a formatting step for formatting authoring data in accordance with formats of specified media either by a fixed amount at a time or continuously. The authoring data is obtained by an authoring operation in which base information, such as image information or audio information, is edited. The method of forming a mask pattern also includes a mask pattern generating step in which basic pattern information is generated from basic signal pattern data necessary for various types of optical disks as a result of carrying out a pattern editing operation, and the basic pattern information is used to generate a mask pattern by carrying out a mask pattern generating operation. In the steps of a conventional method, it is necessary to carefully determine the conditions which allow disks produced after a plurality of later operations of the method have been carried out to satisfy standards. In addition, it is necessary to carefully observe at all times that these conditions are maintained during the long time required to produce the disks.
    • 形成掩模图案的方法包括格式化步骤,用于根据指定介质的格式一次一个固定量或连续格式化创作数据。 创作数据通过编辑操作获得,其中编辑诸如图像信息或音频信息的基本信息。 形成掩模图案的方法还包括掩模图案生成步骤,其中作为执行图案编辑操作的结果,从各种类型的光盘所需的基本信号图案数据生成基本图案信息,并且基本图案信息是 用于通过执行掩模图案生成操作来生成掩模图案。 在常规方法的步骤中,需要仔细地确定在方法的多个后续操作已经执行以满足标准之后允许生产的盘的条件。 此外,必须始终仔细观察在生产磁盘所需的长时间内维持这些条件。