等离子体显示面板及其制造方法

    公开(公告)号:CN101916704A

    公开(公告)日:2010-12-15

    申请号:CN201010157259.9

    申请日:2005-10-05

    CPC classification number: H01J11/12 H01J1/74 H01J9/20 H01J11/42

    Abstract: 本发明提供一种PDP和能够简单地制造该PDP的制造方法,即使提高针对放电气体中的总压力的Xe分压比例,在初始化期间可稳定地产生弱放电,降低放电开始电压,抑制初始化亮点的产生,提高图像质量,并且,抑制发光效率的降低,抑制亮度的降低,提高亮度。本发明的PDP具有在前面面板域背面面板之间开设有放电空间的状态下对置配置的结构。并且,在背面面板的放电空间侧的区域形成有荧光体层,在其表面的部分区域上形成作为高γ部的荧光体保护膜。荧光体保护膜由二次电子发射系数γ比构成荧光体层的荧光体材料高的材料构成。荧光体层的表面的一部分被荧光体保护膜覆盖,其他部分为面对放电空间的状态。

    等离子体显示板
    2.
    发明授权

    公开(公告)号:CN101165838B

    公开(公告)日:2012-06-20

    申请号:CN200710002783.7

    申请日:2007-01-30

    Inventor: 裵钟运

    Abstract: 提供了一种等离子体显示板。所述等离子体显示板包括基板、形成在基板上的荧光体层以及用于分隔基板上的荧光体层的障壁。所述荧光体层具有红荧光体层、绿荧光体层和蓝荧光体层。在其上不显示图像的基板的哑区域中,沿障壁之间的放电单元形成的红荧光体层、绿荧光体层和蓝荧光体层的起点中的至少一个与沿障壁之间的放电单元形成的其余荧光体层的起点不同。

    4.
    发明专利
    未知

    公开(公告)号:DE69832056D1

    公开(公告)日:2005-12-01

    申请号:DE69832056

    申请日:1998-03-25

    Inventor: DRUMM M

    Abstract: A method for forming a conductively coated matrix structure for separating rows and columns of sub-pixels on the faceplate of a flat panel display device. In one embodiment, the present invention deposits a photoresistive material over the interior surface of a faceplate having a non-conductive matrix structure formed thereon. The photoresistive material is deposited into sub-pixel regions separated by the matrix structure. The photoresistive material is dried and exposed in the sub-pixel regions. After unexposed photoresistive material is removed, a layer of aluminum is evaporated over the interior surface of the faceplate such that the matrix structure and the exposed layer of photoresistive material in the sub-pixel regions is coated with a conductive layer of aluminum. Next, the present invention applies an etchant to the exposed photoresistive material disposed in the sub-pixel regions. The etchant removes the exposed photoresistive material and the overlying conductive layer of aluminum from the sub-pixel regions such that the conductive layer of aluminum remains only on the matrix structure, and does not cover the sub-pixel regions.

    Gripping multi-level structure
    7.
    发明专利

    公开(公告)号:AU7903401A

    公开(公告)日:2002-02-13

    申请号:AU7903401

    申请日:2001-07-26

    Abstract: A multi-level matrix structure for frictionally retaining a support structure within a flat panel display device. In one embodiment, the present invention is comprised of a multi-level matrix structure. The multi-level matrix structure of the present embodiment is comprised of a first multi-layered structure disposed on an inner surface of a faceplate of a flat panel display device. The multi-level matrix structure of the present embodiment is further comprised of a plurality of substantially parallel spaced apart ridges. In this embodiment, the plurality of substantially parallel spaced apart ridges overlie the first multi-layered structure. Additionally, in this embodiment, the plurality of substantially parallel spaced apart ridges include contact portions for frictionally retaining a support structure in a first direction at a desired location within the flat panel display device.

    Black matrix with conductive coating

    公开(公告)号:HK1024199A1

    公开(公告)日:2000-10-05

    申请号:HK00103389

    申请日:2000-06-03

    Inventor: DRUMM PAUL M

    Abstract: A method for forming a conductively coated matrix structure for separating rows and columns of sub-pixels on the faceplate of a flat panel display device. In one embodiment, the present invention deposits a photoresistive material over the interior surface of a faceplate having a non-conductive matrix structure formed thereon. The photoresistive material is deposited into sub-pixel regions separated by the matrix structure. The photoresistive material is dried and exposed in the sub-pixel regions. After unexposed photoresistive material is removed, a layer of aluminum is evaporated over the interior surface of the faceplate such that the matrix structure and the exposed layer of photoresistive material in the sub-pixel regions is coated with a conductive layer of aluminum. Next, the present invention applies an etchant to the exposed photoresistive material disposed in the sub-pixel regions. The etchant removes the exposed photoresistive material and the overlying conductive layer of aluminum from the sub-pixel regions such that the conductive layer of aluminum remains only on the matrix structure, and does not cover the sub-pixel regions.

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