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    • 45. 发明申请
    • MANUFACTURING METHOD FOR DISPLAY DEVICE
    • 用于显示装置的制造方法
    • US20100252599A1
    • 2010-10-07
    • US12748659
    • 2010-03-29
    • Yasushi NakanoSusumu Sasaki
    • Yasushi NakanoSusumu Sasaki
    • B26F3/00
    • B26F3/002G02F1/133305G02F1/133351Y10T225/12
    • The present invention provides a manufacturing method for a display device according to which an unused portion can be cut out without damaging the surface having an electrode terminal. The manufacturing method is for a display device having at least one display region formed between a first substrate on which an electrode terminal is formed and a second substrate made of a resin, and has the steps of creating a scribe line on the second substrate and pasting a columnar body of revolution of which the round surface is made of an elastic body and adhesive to the outer surface of the second substrate so that the second substrate is bent as the body of revolution rolls over the second substrate, which is thus cut along the scribe line.
    • 本发明提供了一种用于显示装置的制造方法,根据该方法可以切割未使用部分而不损坏具有电极端子的表面。 该制造方法是用于具有形成在其上形成有电极端子的第一基板和由树脂制成的第二基板之间的至少一个显示区域的显示装置,并且具有在第二基板上形成划线的步骤和粘贴 圆柱体的旋转圆形表面由弹性体制成并且粘合到第二基底的外表面,使得第二基底随着旋转体的滚动而在第二基底上滚动,所述第二基底沿着沿着 划线
    • 46. 发明授权
    • Ink-jet recording apparatus
    • 喷墨记录装置
    • US07794045B2
    • 2010-09-14
    • US11845709
    • 2007-08-27
    • Yasushi Nakano
    • Yasushi Nakano
    • B41J2/165
    • B41J11/06B41J11/0065
    • An ink-jet recording apparatus capable of high-quality recording without smudging recording media and the interior of the recording apparatus even when a frameless recording operation using reactive ink that coheres with each other when mixed together is performed. The ink-jet recording apparatus includes a recording head having a first nozzle array and a second nozzle array, and an ink absorbent facing the nozzle arrays. The first nozzle array discharges a first ink, and the second nozzle array discharges a second ink. The first and second ink is a reactive ink that coheres with each other when mixed together. During the frameless recording operation on a front edge of the recording medium, some of the first and second ink discharged from the respective nozzle arrays of the recording head adheres to the front edge, and some of the ink adheres to separate positions on the ink absorbent.
    • 即使当使用混合在一起时彼此相互结合的反应性墨水的无框架记录操作进行时,也能够进行高质量的记录而不会使记录介质污染和记录装置的内部。 喷墨记录装置包括具有第一喷嘴阵列和第二喷嘴阵列的记录头和面向喷嘴阵列的墨吸收体。 第一喷嘴阵列排出第一墨,第二喷嘴阵列排出第二墨。 第一和第二墨是当混合在一起时彼此粘合的反应性墨。 在记录介质的前边缘的无框式记录操作期间,从记录头的相应喷嘴阵列排出的一些第一和第二墨水粘附到前边缘,并且一些墨粘附到吸墨剂上的分离位置 。
    • 48. 发明申请
    • SCINTILLATOR PANEL AND RADIATION FLAT PANEL DETECTOR
    • 扫描面板和辐射平板检测器
    • US20100116992A1
    • 2010-05-13
    • US12530545
    • 2008-02-22
    • Shinji KudoYasushi Nakano
    • Shinji KudoYasushi Nakano
    • G01T1/20C09K11/61
    • G21K4/00G21K2004/10
    • There are provided a scintillator panel excellent in productivity and exhibiting enhanced emission-extracting efficiency and sharpness, resulting in reduced deterioration in sharpness between planar light-receiving element, and a radiation flat panel detector. The scintillator panel comprises a scintillator plate, wherein the scintillator plate comprises a protective layer comprising the first protective film provided on the side of the scintillator layer and the second protective film provided on the side of the substrate opposite the scintillator layer and the protective layer has a lug which is a sealed portion of the first protective film and the second protective film, and the length of the lug of the protective layer is represented by a specific expression, the first protective film is not adhered to the scintillator layer and the scintillator plate is provided as a constituent element for a radiation flat panel detector without being physicochemically adhered to the surface of a planar light receiving element.
    • 提供了生产率优异并且显示增强的排放提取效率和清晰度的闪烁体面板,导致平面光接收元件和辐射平板检测器之间的清晰度的降低。 闪烁体面板包括闪烁体板,其中闪烁体板包括保护层,该保护层包括设置在闪烁体层侧的第一保护膜和设置在与闪烁体层相对的基板一侧上的第二保护膜,并且保护层具有 作为第一保护膜和第二保护膜的密封部分的凸耳和保护层的凸耳的长度由具体表达来表示,第一保护膜不粘附到闪烁体层和闪烁体板 被提供作为辐射平板检测器的构成元件,而不被物理化学地粘附到平面光接收元件的表面。
    • 49. 发明申请
    • DISPLACEMENT SENSOR
    • 位移传感器
    • US20100072987A1
    • 2010-03-25
    • US12443745
    • 2007-10-02
    • Yasushi NakanoHiroshi AkaseDaiju Kaneshiro
    • Yasushi NakanoHiroshi AkaseDaiju Kaneshiro
    • G01B7/14
    • G01D5/2291G01D5/2046
    • A displacement sensor includes a primary coil (2), secondary coils (4a, 4b), and a movable magnetic core (6) movable with displacement of an object to be measured to cause voltages generated in the secondary coils (4a, 4b) to vary. The secondary coils (4a, 4b) are differentially interconnected. A polyphase signal generating unit (10) generates two-phase component signals having different phases, from a differentially combined output voltage of the secondary coils (4a, 4b). Full-wave rectifying units (16, 18) rectify the polyphase component signals, the rectified polyphase component signals are combined in a combiner (22), and the combiner output is applied to a low-pass filter (24).
    • 位移传感器包括初级线圈(2),次级线圈(4a,4b)和可移动的磁芯(6),可移动的被测物体的位移使得在次级线圈(4a,4b)中产生的电压 变化。 次级线圈(4a,4b)是差分互连的。 多相信号发生单元(10)从次级线圈(4a,4b)的差分组合输出电压产生具有不同相位的两相分量信号。 全波整流单元(16,18)对多相分量信号进行整流,整流多相分量信号组合在组合器(22)中,组合器输出被施加到低通滤波器(24)。