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    • 1. 发明申请
    • METHOD FOR PRODUCING PLASMA DISPLAY PANEL
    • 生产等离子显示面板的方法
    • US20110171871A1
    • 2011-07-14
    • US13004361
    • 2011-01-11
    • Hiroyoshi SekiguchiYasuhiro AsaidaTakayuki AshidaTomohiro Okumura
    • Hiroyoshi SekiguchiYasuhiro AsaidaTakayuki AshidaTomohiro Okumura
    • H01J9/20
    • H01J9/38H01J9/261H01J11/12
    • A method for producing a plasma display panel includes: (i) providing a front panel and a rear panel, the front panel being a panel wherein an electrode A, a dielectric layer A and a protective layer are formed on a substrate A, and the rear panel being a panel wherein an electrode B, a dielectric layer B, a barrier rib and a phosphor layer are formed on a substrate B; (ii) supplying a glass frit material onto a peripheral region of the substrate A or B to form a glass frit sealing member; (iii) opposing the front and rear panels with each other such that the glass frit sealing member is interposed therebetween; and (iv) heating the opposed front and rear panels to reach a softening point of the glass frit sealing member or a higher temperature than the softening point, while supplying a cleaning gas into a space formed between the opposed front and rear panels. Prior to the heating of step (iv), a gas is introduced into a space formed between the opposed front and rear panels, or a gas is exhausted from a space formed between the opposed front and rear panels.
    • 一种等离子体显示面板的制造方法包括:(i)提供前面板和后面板,前面板是在基板A上形成有电极A,电介质层A和保护层的面板, 后面板是在基板B上形成电极B,电介质层B,隔壁和荧光体层的面板; (ii)将玻璃料材料供应到基板A或B的周边区域上以形成玻璃料密封件; (iii)使所述前面板和所述后面板彼此相对,使得所述玻璃料密封构件插入其间; 以及(iv)将相对的前后板加热到达玻璃料密封件的软化点或比软化点高的温度,同时将清洁气体供应到形成在相对的前板和后板之间的空间中。 在步骤(iv)的加热之前,将气体引入形成在相对的前后面板之间的空间中,或者从形成在相对的前后面板之间的空间排出气体。
    • 2. 发明授权
    • Method for producing plasma display panel
    • 等离子体显示面板的制造方法
    • US08113899B2
    • 2012-02-14
    • US12502369
    • 2009-07-14
    • Tomohiro OkumuraRyuichi MuraiTakahiro TakisawaHiroyoshi SekiguchiTakayuki AshidaYoshihiro Sakaguchi
    • Tomohiro OkumuraRyuichi MuraiTakahiro TakisawaHiroyoshi SekiguchiTakayuki AshidaYoshihiro Sakaguchi
    • H01J9/24
    • H01J11/12H01J9/261
    • A method for producing a plasma display panel, the method comprising the steps of: (i) preparing a front panel and a rear panel, the front panel being a panel wherein an electrode A, a dielectric layer A and a protective layer are formed on a substrate A, and the rear panel being a panel wherein an electrode B, a dielectric layer B, a partition wall and a phosphor layer are formed on a substrate B; (ii) applying a glass frit material onto a peripheral region of the substrate A or B, and then opposing the front and rear panels with each other such that the glass frit material is interposed therebetween; (iii) supplying a gas into a space formed between the opposed front and rear panels from a direction lateral to the opposed front and rear panels, under such a condition that the front and rear panels are heated; and (iv) melting the glass frit material to cause the front and rear panels to be sealed.
    • 一种等离子体显示面板的制造方法,其特征在于,包括以下步骤:(i)前面板和后面板的制作,前面板为面板,其中,电极A,电介质层A和保护层形成在 基板A,后面板是在基板B上形成电极B,电介质层B,分隔壁和荧光体层的面板; (ii)将玻璃料材料施加到基板A或B的周边区域上,然后使前后板彼此相对,使得玻璃料材料插入其间; (iii)在前后板被加热的条件下,从相对的前板和后板的横向方向将气体供给到形成在相对的前板和后板之间的空间中; 和(iv)熔化玻璃料材料以使前面板和后面板被密封。
    • 9. 发明申请
    • ATTACHED MATTER DETECTOR, AND ATTACHED MATTER DETECTION METHOD
    • 附带事项检测器和附件事件检测方法
    • US20140247357A1
    • 2014-09-04
    • US14352197
    • 2012-11-27
    • Hiroyoshi Sekiguchi
    • Hiroyoshi Sekiguchi
    • H04N7/18H04N5/225
    • H04N7/183B60S1/0844G01N21/4738G01N2021/4792G01N2201/0696H04N5/225
    • An attached matter detector includes: a light source that emits light to a transparent member; imaging device that receives light emitted from the light source and reflected by an attached matter on the transparent member, and consecutively images an image of the attached matter at a predetermined imaging frequency; and an attached matter detection processor that detects the attached matter based on an image imaged by the imaging device, wherein the light source emits light that flickers at a drive frequency different from the imaging frequency, and the imaging device receives the reflected light via an optical filter that selects and transmits the reflected light, and the attached matter detection processor detects a beat on an image generated by a difference between the imaging frequency and the drive frequency, and identifies an image region where the beat is detected as an attached matter image region.
    • 附着物检测器包括:向透明构件发射光的光源; 成像装置,其接收从所述光源发射并由所述透明构件上的附着物反射的光,并以预定的成像频率连续地对所述附着物的图像进行成像; 以及附着物检测处理器,其基于由所述成像装置成像的图像检测所述附着物,其中所述光源发射以与所述摄像频率不同的驱动频率闪烁的光,并且所述成像装置经由光学器件接收所述反射光 滤光器,其选择并透射反射光,并且附着物检测处理器检测由成像频率和驱动频率之间的差异产生的图像上的拍子,并且识别拍摄拍摄的图像区域作为附着图像区域 。