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    • 1. 发明授权
    • Touch panel
    • 触控面板
    • US08049127B2
    • 2011-11-01
    • US12260333
    • 2008-10-29
    • Nobuhiro YamaueKenji Inoue
    • Nobuhiro YamaueKenji Inoue
    • G06F3/041
    • G06F3/045
    • A touch panel has an upper board having an upper conductive layer, a lower board having a lower conductive layer, a pair of upper electrodes along the periphery of the upper conductive layer and having an upper electrode lead, a pair of lower electrodes along the periphery of the lower conductive layer and having a lower electrode lead, and a slit formed at the upper and lower conductive layers. One of the upper electrodes is formed along a side of the upper conductive layer, and the other of the upper electrodes is formed in a substantially U shape surrounding a whole periphery excluding the upper electrode lead. One of the lower electrodes is formed in a direction orthogonal to the side of the upper conductive layer, and the other of the lower electrodes is formed in a substantially U shape surrounding a whole periphery excluding the lower electrode lead.
    • 触摸面板具有上板,其具有上导电层,下板具有下导电层,沿着上导电层周围的一对上电极,具有上电极引线,沿着外周的一对下电极 的下导电层,并具有下电极引线,以及形成在上导电层和下导电层上的狭缝。 上电极中的一个沿着上导电层的一侧形成,并且另一个上电极形成为围绕除了上电极引线之外的整个周边的大致U形。 下电极中的一个形成在与上导电层的正交方向正交的方向上,而另一个下电极形成为围绕除了下电极引线之外的整个周边的大致U形状。
    • 2. 发明申请
    • TOUCH PANEL
    • 触控面板
    • US20090134001A1
    • 2009-05-28
    • US12260333
    • 2008-10-29
    • Nobuhiro YamaueKenji Inoue
    • Nobuhiro YamaueKenji Inoue
    • H01H1/10
    • G06F3/045
    • A touch panel has an optically transparent upper board having an upper conductive layer formed on its lower face, an optically transparent lower board having a lower conductive layer, which is formed on its upper face and faces to the upper conductive layer with a predetermined gap in between, a pair of upper electrodes extending along an outer periphery of the upper conductive layer and having an upper electrode lead, a pair of lower electrodes extending along an outer periphery of the lower conductive layer and having a lower electrode lead, and a slit in a predetermined shape formed at the upper conductive layer and the lower conductive layer. One of the pair of upper electrodes is formed along a side of the upper conductive layer, and the other of the pair of upper electrodes is formed in substantially U shape surrounding whole periphery excluding the upper electrode lead. One of the pair of lower electrodes is formed in a direction orthogonal to the side of the upper conductive layer, and the other of the pair of lower electrodes is formed in substantially U shape surrounding whole periphery excluding the lower electrode lead.
    • 触摸面板具有光学透明的上板,其上表面形成有上导电层,具有下导电层的光透明下板,其上表面形成有面向上导电层的预定间隙 一对上电极,其沿着上导电层的外周延伸并具有上电极引线;一对下电极,沿着下导电层的外周延伸并具有下电极引线;以及狭缝, 形成在上导电层和下导电层上的预定形状。 一对上电极中的一个沿着上导电层的一侧形成,并且一对上电极中的另一个形成为围绕除了上电极引线之外的整个周边的大致U形状。 一对下电极中的一个形成在与上导电层的正交方向正交的方向上,并且一对下电极中的另一个形成为围绕除了下电极引线之外的整个周边的大致U形状。
    • 6. 发明授权
    • Composite lens and method for manufacturing the same
    • 复合透镜及其制造方法
    • US08111470B2
    • 2012-02-07
    • US12304588
    • 2007-06-06
    • Yoshiyuki ShimizuToshiaki TakanoJun MurataKenji Inoue
    • Yoshiyuki ShimizuToshiaki TakanoJun MurataKenji Inoue
    • G02B3/08
    • G02B3/00B29D11/00009B29D11/00269B29D11/0073G02B3/08G02B5/1852G02B5/1876G02B7/02
    • The present invention relates to a composite lens and a method for manufacturing the same, particularly to a composite lens in which a second lens component is coupled to a first lens component at part of a first surface, and intends to improve optical characteristics. A composite lens (1) has a first lens component (10) and a second lens component (20). The first lens component (10) has a first surface including a first lens surface (13), a peripheral surface (15a) surrounding the first lens surface (13) and a ring surface (17a) included in the peripheral surface (15a) and surrounding the first lens surface (13), and a second lens surface (12) on the opposite side of the first lens surface (13). The second lens component (20) is coupled to the first lens component (10) at part of the first surface surrounded by the ring surface (17a). The ring surface (17a) is positioned on a portion of the first lens component protruding from a joint portion (14) between the first lens surface (13) and the peripheral surface (15a) in a first direction from the second lens surface (20) to the first lens surface (10) along an optical axis of the first lens component (10) and is exposed out of the second lens component (20).
    • 复合透镜及其制造方法技术领域本发明涉及复合透镜及其制造方法,特别是涉及在第一表面的一部分将第二透镜部件与第一透镜部件连接的复合透镜,旨在提高光学特性。 复合透镜(1)具有第一透镜部件(10)和第二透镜部件(20)。 第一透镜部件(10)具有包括第一透镜表面(13),围绕第一透镜表面(13)的外周表面(15a)和包括在外围表面(15a)中的环表面(17a)的第一表面和 围绕第一透镜表面(13),以及在第一透镜表面(13)的相对侧上的第二透镜表面(12)。 第二透镜部件(20)在由环形表面(17a)包围的第一表面的一部分处联接到第一透镜部件(10)。 环形表面(17a)位于第一透镜部件的从第二透镜表面(20)的第一方向从第一透镜表面(13)和外周表面(15a)之间的接合部分(14)突出的部分上 )沿着第一透镜部件(10)的光轴移动到第一透镜表面(10),并且暴露在第二透镜部件(20)之外。
    • 8. 发明授权
    • Wet paper web transfer belt
    • 湿纸幅转印带
    • US07931780B2
    • 2011-04-26
    • US12084856
    • 2006-10-02
    • Kenji Inoue
    • Kenji Inoue
    • D21F3/02D21F2/00
    • D21F7/083D21F7/086Y10S162/901Y10T442/2484
    • A wet paper web transfer belt comprises a base body 30, a paper side layer 20, and a machine side layer 23. The paper side layer 20 is composed of a paper contacting side batt layer 21 made of hydrophilic fibers 41 and a base bode side batt layer 22 without the hydrophilic fibers 41, at least the paper contacting side batt layer 21 being impregnated with a high molecular weight elastic body 50 and at least a part of the hydrophilic fibers 41 being exposed on the surface of the paper contacting side batt layer 21. The water contained in the wet paper web remains within the paper contacting side batt layer 21 made of the hydrophilic fibers 41 with only a small amount of water moving into the base body side batt layer 22, thereby reducing dimensional changes of the belt. Further, since the water contained in the wet paper web remains within the hydrophilic fibers 41 exposed on the surface of the paper side layer 20, the belt is capable of transferring the wet paper web attached thereon while allowing smooth detachment when transferring it to the next process.
    • 湿纸幅转印带包括基体30,纸侧层20和机器侧层23.纸侧层20由由亲水性纤维41制成的纸接触侧毛层21和基底波纹侧 没有亲水性纤维41的毛层22,至少纸接触侧毛层21浸渍有高分子量弹性体50,并且至少一部分亲水性纤维41暴露在纸接触侧毛层的表面上 包含在湿纸幅中的水留在由亲水纤维41制成的纸接触侧毛层21内,只有少量的水移动到基体侧毛层22中,从而减小了带的尺寸变化。 此外,由于包含在湿纸幅中的水留在露出在纸侧层20的表面上的亲水性纤维41内,所以带能够传送附着在其上的湿纸,同时在将其转印到下一张纸时能够平滑地分离 处理。
    • 10. 发明授权
    • Video information processing apparatus and video information processing method
    • 视频信息处理装置和视频信息处理方法
    • US07502071B2
    • 2009-03-10
    • US10829196
    • 2004-04-22
    • Eiichi MatsuzakiKenji InoueTakashi Tsunoda
    • Eiichi MatsuzakiKenji InoueTakashi Tsunoda
    • H04N5/14H04N7/01H04N9/64H04N11/20
    • H04N7/012
    • A video information processing apparatus capable of accurately making a motion decision is provided. The apparatus stores interlaced video information for a plurality of fields, generates motion information on each of the pixels contained in a plurality of fields from at least one of the interlaced video information and stored video information, and generates motion information on an interpolation pixel from motion information on pixels contained in the same field as the interpolation pixel among the generated motion information on each of the pixels. The apparatus also generates motion information on the interpolation pixel from motion information on the pixels contained in fields previous and next to the interpolation pixel at the same position as the interpolation pixel, and determines the motion information on the interpolation pixel from the motion information on these pixels.
    • 提供能够准确地进行动作决定的视频信息处理装置。 该装置存储多个场的隔行视频信息,从隔行视频信息和存储的视频信息中的至少一个生成包含在多个场中的每个像素的运动信息,并且从运动生成关于插值像素的运动信息 关于包含在与每个像素上的所生成的运动信息中的内插像素相同的场中的像素的信息。 该装置还从与插入像素相同位置处的插值像素之前和之后的场中包含的像素的运动信息生成关于插值像素的运动信息,并根据这些运动信息确定关于插值像素的运动信息 像素。