Display device
    1.
    发明公开
    Display device 失效
    显示设备

    公开(公告)号:EP0660366A1

    公开(公告)日:1995-06-28

    申请号:EP94120695.5

    申请日:1994-12-27

    IPC分类号: H01J29/86 H01J29/89

    CPC分类号: H01J29/868 H01J2229/8915

    摘要: On the outer surface of a glass face panel 1 of a display device, a first layer 2 of an electrically conductive transparent thin film having a high refractive index, and a second layer 3 and a third layer 4 having a low refractive index are deposited as an anti-reflection film. The first layer 2 is formed to have a thickness in a range of 10 --- 20 nm, whereby the surface of the anti-reflection film has a luminous reflectance of 1.5% or less, and a reflectance of 3% or less at a wavelength of 436 nm most prominent light of blue.

    摘要翻译: 在显示装置的玻璃面板1的外表面上,具有高折射率的导电透明薄膜的第一层2以及具有低折射率的第二层3和第三层4被沉积为 防反射膜。 第一层2形成为具有10〜20nm范围的厚度,从而防反射膜的表面具有1.5%或更小的光反射率,并且具有3%或更小的反射率 波长为436纳米最为突出的蓝光。

    A method for manufacturing an anti-reflection film of a display device
    2.
    发明公开
    A method for manufacturing an anti-reflection film of a display device 失效
    一种制造显示装置的抗反射膜的方法

    公开(公告)号:EP0834901A2

    公开(公告)日:1998-04-08

    申请号:EP97119904.7

    申请日:1994-11-27

    IPC分类号: H01J29/89

    CPC分类号: H01J29/868 H01J2229/8915

    摘要: A method for manufacturing an anti-reflection film of a display device comprises steps of forming a first layer (2) which is an electrically-conductive thin film having a first refractive index, and which is deposited on an outer surface of a glass face panel (1), forming a second layer (3) which is a thin film having a second refractive index lower than said first refractive index, and which is deposited on an outer surface of said first layer (2), and forming a third layer (4) which is deposited on said second layer (3), and which has a large number of concave regions (6) each surrounded by convex regions (5) on an exposed surface of said display device. According to the invention said first layer (2), said second layer (3) and said third layer (4) form said antireflection film which has a luminous reflectance of 1.5% or less, and a reflectance of 3% or less between the wavelength of 436 nm and 700 nm.

    摘要翻译: 一种用于制造显示装置的抗反射膜的方法包括以下步骤:形成第一层(2),该第一层(2)是具有第一折射率的导电薄膜并且沉积在玻璃面板的外表面上 (1)中,形成第二层(3),所述第二层(3)是具有低于所述第一折射率的第二折射率的薄膜并且沉积在所述第一层(2)的外表面上,并且形成第三层 4),其沉积在所述第二层(3)上,并且在所述显示装置的暴露表面上具有多个由凸起区域(5)围绕的凹形区域(6)。 根据本发明,所述第一层(2),所述第二层(3)和所述第三层(4)形成所述抗反射膜,其具有1.5%或更低的光反射率和3%或更低的波长 为436nm和700nm。

    Cathode-ray tube
    4.
    发明公开
    Cathode-ray tube 审中-公开
    阴极射线管

    公开(公告)号:EP1032019A2

    公开(公告)日:2000-08-30

    申请号:EP00103787.8

    申请日:2000-02-23

    发明人: Miura, Yasunori

    IPC分类号: H01J29/86 H01J29/89

    摘要: A surface treatment film (8) composed of a conductive film (3) with a surface resistance of 1 × 10 3 Ω/□ or more and an antireflection film (4) is provided on the surface of a glass panel (1). A ground electrode (6) is provided on the surface treatment film (8) so as to be electrically connected with the conductive film (3). The ground electrode (6) is grounded in a circuit manner. An area of the surface treatment film (8) covered with the ground electrode (6) is set at 500 mm 2 or more. Thus, even in the case where the conductive film (3) has a resistance of 1 × 10 3 Ω/□ or more, an effect of suppressing a leakage electric field to 1.0 V/m or less, which satisfies the TCO guideline, can be realized.

    摘要翻译: 在玻璃面板(1)的表面设置由表面电阻为1×103Ω/□以上的导电膜(3)和防反射膜(4)构成的表面处理膜(8)。 接地电极(6)设置在表面处理膜(8)上以与导电膜(3)电连接。 接地电极(6)以电路方式接地。 被接地电极(6)覆盖的表面处理膜(8)的面积为500mm 2以上。 因此,即使在导电膜(3)具有1×10 3Ω/□或更大的电阻的情况下,满足TCO准则的抑制漏电场至1.0V / m或更小的效果可以是 实现。

    A method for manufacturing an anti-reflection film of a display device
    5.
    发明公开
    A method for manufacturing an anti-reflection film of a display device 失效
    一种制造防反射膜的工序的显示装置

    公开(公告)号:EP0834901A3

    公开(公告)日:1998-09-30

    申请号:EP97119904.7

    申请日:1994-11-27

    IPC分类号: H01J29/89

    CPC分类号: H01J29/868 H01J2229/8915

    摘要: A method for manufacturing an anti-reflection film of a display device comprises steps of forming a first layer (2) which is an electrically-conductive thin film having a first refractive index, and which is deposited on an outer surface of a glass face panel (1), forming a second layer (3) which is a thin film having a second refractive index lower than said first refractive index, and which is deposited on an outer surface of said first layer (2), and forming a third layer (4) which is deposited on said second layer (3), and which has a large number of concave regions (6) each surrounded by convex regions (5) on an exposed surface of said display device. According to the invention said first layer (2), said second layer (3) and said third layer (4) form said antireflection film which has a luminous reflectance of 1.5% or less, and a reflectance of 3% or less between the wavelength of 436 nm and 700 nm.

    Color cathode ray tube and method for manufacturing the same
    6.
    发明公开
    Color cathode ray tube and method for manufacturing the same 有权
    一种彩色阴极射线管及其制造方法

    公开(公告)号:EP1024518A2

    公开(公告)日:2000-08-02

    申请号:EP00101257.4

    申请日:2000-01-26

    IPC分类号: H01J29/88

    CPC分类号: H01J29/88 H01J2229/882

    摘要: The present invention relates to a color cathode ray tube that reduces a leakage electric field and a maximum instantaneous current generated in a bulb at the time of electric discharge and provides a stable connection of conductive layers with different specific resistance. A first conductive layer is formed on the entire area of an inner wall of a funnel including a contact portion of a first spring supported by a shadow mask structure, an anode button and a contact portion of a second spring supported by a final electrode of an electron gun. A second conductive layer with a specific resistance lower than that of the first conductive layer is formed on the surface of the first conductive layer within the range extending from the anode button to the contact portion of the first spring. The contact portion of the first spring contacts the second conductive layer, thereby electrically connecting the shadow mask structure to the second conductive layer, and the contact portion of the second spring contacts the first conductive layer, thereby electrically connecting the final electrode to the first conductive layer.