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    • 5. 发明申请
    • Fluorescent screen with metal back, and method of producing the same
    • 具有金属背的荧光屏及其制造方法
    • US20070034324A1
    • 2007-02-15
    • US10551758
    • 2004-03-31
    • Masayuki YoshiiTakeo ItoHajime TanakaYasinori GamoMasaki InamuraTomoko Nakazawa
    • Masayuki YoshiiTakeo ItoHajime TanakaYasinori GamoMasaki InamuraTomoko Nakazawa
    • B44C1/17B32B37/12
    • H01J9/221H01J29/28
    • A method for forming a metal back-attached phosphor screen comprises forming a phosphor layer on an inner surface of a face plate, transferring a metal film, and heating and pressing the metal film transferred onto the phosphor layer by a press roller. The transferring includes disposing a transfer film having at least a base film, a metal film and an adhesive-agent layer on the phosphor layer so that the metal film contacts the phosphor layer via an adhesive agent, heating and pressing by a transfer roller to let the metal film adhere thereto, and peeling the base film Both the temperatures of the pressing sections of the transfer roller and press roller are 150 to 240° C. and both the pressing rates are 1.0 to 6.0 meter/minute. A metal back-attached phosphor screen exhibiting an excellent adhesiveness between the phosphor layer and a metal back layer and a superior withstand voltage characteristic can be formed with a good process yield.
    • 形成金属后附荧光屏的方法包括在面板的内表面上形成荧光体层,转移金属膜,并通过压辊加热和压制转移到荧光体层上的金属膜。 转印包括在荧光体层上设置至少具有底膜,金属膜和粘合剂层的转印膜,使得金属膜经由粘合剂与荧光体层接触,通过转印辊进行加热和压制以使 金属膜粘附到基片上,转印辊和加压辊的压制部分的温度均为150-240℃,并且两种压制速度都是1.0至6.0米/分钟。 可以以良好的加工成品率形成具有优异的荧光体层与金属背层之间的粘合性的金属背面附着荧光体屏以及优异的耐电压特性。
    • 6. 发明申请
    • Electron source device and display
    • 电子源装置和显示器
    • US20060138664A1
    • 2006-06-29
    • US10536269
    • 2003-11-25
    • Takeo ItoHidemi MatsudaMasaaki InamuraHajime TanakaKazuo Sakai
    • Takeo ItoHidemi MatsudaMasaaki InamuraHajime TanakaKazuo Sakai
    • H01L23/48
    • H01J31/127B82Y10/00H01J1/312H01J9/022H01J2201/3125
    • An electron source device includes a porous layer (for example, porous alumina layer) which is composed of an insulator and has many microscopic holes provided in a direction perpendicular to a main surface, and first and second conductor layers placed on both sides of the porous layer, and is characterized in that the current density I/S is 1 μA/cm2 or higher when a direct-current voltage is applied between the second conductor layer and the fist conductor layer while using the second conductor layer as an anode. In this case, S represents the overlapping area of the first conductor layer, the second conductor layer and the porous layer. Consequently, an electron source device having a high electron emission ability and a long life even when the degree of vacuum is low can be obtained at low cost, and hence, a display having a high luminous efficiency and high reliability can be realized.
    • 电子源装置包括由绝缘体构成的多孔层(例如,多孔氧化铝层),在与主表面垂直的方向上具有许多微小的孔,以及设置在多孔层的两侧的第一和第二导体层 并且其特征在于当在第二导体层和第一导体层之间施加直流电压时,电流密度I / S为1μA/ cm 2以上,同时使用第二导体层 导体层作为阳极。 在这种情况下,S表示第一导体层,第二导体层和多孔层的重叠面积。 因此,可以以低成本获得具有高电子发射能力和长寿命的电子源器件,因此可以实现具有高发光效率和高可靠性的显示器。