Abstract:
A plasma display panel is disclosed. The plasma display panel includes a front substrate, a rear substrate, a phosphor layer and a barrier rib between the front and rear substrates, and a discharge gas filled between the front and rear substrates. The phosphor layer includes a phosphor material and an additive material. The additive material includes at least one of magnesium oxide (MgO), zinc oxide (ZnO), silicon oxide (SiO2), titanium oxide (TiO2), yttrium oxide (Y2O3), aluminum oxide (Al2O3), lanthanum oxide (La2O3), europium oxide (EuO), cobalt oxide, iron oxide, or CNT (carbon nano tube). A pressure of the discharge gas lies substantially in a range between 400 torr and 500 torr.
Abstract translation:公开了一种等离子体显示面板。 等离子体显示面板包括前基板,后基板,荧光体层和前基板与后基板之间的隔壁,以及填充在前基板和后基板之间的放电气体。 磷光体层包括荧光体材料和添加剂材料。 添加剂材料包括氧化镁(MgO),氧化锌(ZnO),氧化硅(SiO 2),氧化钛(TiO 2),氧化钇(Y 2 O 3),氧化铝(Al 2 O 3),氧化镧(La 2 O 3) 氧化铕(EuO),氧化钴,氧化铁或CNT(碳纳米管)。 放电气体的压力基本上在400托和500托之间的范围内。
Abstract:
A plasma display panel is disclosed. The plasma display panel includes a front substrate, a rear substrate positioned opposite the front substrate, a barrier rib positioned between the front substrate and the rear substrate to partition a discharge cell, and a phosphor layer positioned in the discharge cell. The phosphor layer includes a phosphor material and an additive material. The discharge cell includes a red discharge cell, a green discharge cell, and a blue discharge cell. A width of the blue discharge cell is larger than a width of the red discharge cell based on a lower part of the barrier rib.
Abstract:
A plasma display device having a panel main body in which a pair of transparent substrates is arranged in opposition so as to form a discharge space between the substrates on at least a front side, barrier ribs are arranged on at least one of the substrates to divide the discharge space into a plurality of spaces, a group of electrodes is arranged on the substrates so as to generate discharge in the discharge space divided with the barrier ribs, and phosphor layers that emit by discharge are provided, in which the phosphor layers are equipped with a green phosphor layer including at least Zn2SiO4:Mn, a surface of Zn2SiO4:Mn is coated with aluminum oxide, and a ratio of an Al element to a Si element on the surface measured with an XPS apparatus is 0.6 to 4.0.
Abstract:
A plasma display device having a panel main body in which a pair of transparent substrates is arranged in opposition so as to form a discharge space between the substrates on at least a front side, barrier ribs are arranged on at least one of the substrates to divide the discharge space into a plurality of spaces, a group of electrodes is arranged on the substrates so as to generate discharge in the discharge space divided with the barrier ribs, and phosphor layers that emit by discharge are provided, in which the phosphor layers are equipped with a green phosphor layer including at least Zn2SiO4:Mn, a surface of Zn2SiO4:Mn is coated with magnesium oxide, and a ratio of an Mg element to a Si element on the surface measured with an XPS apparatus is 0.7 to 4.0.
Abstract:
A technology capable of preventing or suppressing a display defect in a PDP (detrimental effect due to local contamination of the display area caused by admixture of impurity gas at the time of introducing discharge gas) is provided. In a PDP, first barrier ribs and first phosphors formed between the first barrier ribs are provided so as to correspond to a display area. In a non-display area outside the display area, an air hole for evacuation from a discharge space and gas filling into the discharge space is provided in a part of an outer perimeter of the panel. Further, an area in which second phosphors having a property of absorbing impurity gas are formed is formed at a position between the display area and the air hole in a part of the non-display area, in particular, in a part of a dummy rib area.
Abstract:
A display device capable of realizing a desired color temperature is provided. Phosphor layers 5a, 5b and 5c, which are excited by ultraviolet radiation produced by discharge and emit red, green and blue visible light, are formed inside a red, green and blue gas discharge tube 1a, 1b, and 1c, respectively. The height Yc of the phosphor layer 5c with respect to a rear support body 20 is higher than the heights Ya and Yb of the phosphor layers 5a and 5b with respect to the rear support member 20, and establishes the relationship Yc>Ya=Yb. Therefore, the distance from the phosphor layer 5c to the opposite discharge surface on a front support body is shorter than those from the phosphor layers 5a and 5b, the visible light emitted from the display device 10 is shifted toward blue, that is, the color temperature increases.
Abstract translation:提供能够实现期望色温的显示装置。 分别在红色,绿色和蓝色的气体放电管1a,1b,1c内部分别形成由发射红色,绿色和蓝色可见光产生的紫外线辐射激发的荧光体层5a,5b,5c。 荧光体层5c相对于后支撑体20的高度Yc高于荧光体层5a和5b相对于后支撑构件20的高度Ya和Yb,并且建立关系Yc> Ya = Yb。 因此,从荧光体层5c到前支撑体上的相对的放电面的距离比从荧光体层5a,5b短的距离,从显示装置10射出的可见光向蓝色移动,即,颜色 温度升高。
Abstract:
A plasma display panel and a plasma display apparatus are disclosed. The plasma display panel includes a front substrate, a scan electrode and a sustain electrode positioned parallel to each other on the front substrate, an upper dielectric layer positioned on the scan electrode and the sustain electrode, a rear substrate positioned to be opposite to the front substrate, a barrier rib positioned between the front and rear substrates to partition a discharge cell, and a phosphor layer positioned inside the discharge cell. The upper dielectric layer includes a glass-based material and a first blue pigment. The phosphor layer includes a first phosphor layer emitting red light, a second phosphor layer emitting blue light, and a third phosphor layer emitting green light. The first phosphor layer includes a red pigment.
Abstract:
A plasma display panel and a plasma display apparatus are disclosed. The plasma display panel includes a front substrate on which a scan electrode and a sustain electrode are positioned parallel to each other, an upper dielectric layer positioned on the scan and sustain electrodes, a rear substrate on which an address electrode is positioned to intersect the scan and sustain electrodes, a lower dielectric layer positioned on the address electrode, a barrier rib that is positioned between the front substrate and the rear substrate and partitions a discharge cell, and a phosphor layer that is positioned inside the discharge cell and includes YVPO4:Eu. The scan electrode and the sustain electrode each having a single-layered structure.
Abstract:
A plasma display panel (PDP) including a first substrate, a second substrate, a plurality of discharge cells arranged between the first substrate, a plurality of electrodes, and a plurality of phosphor portions, the second substrate arranged to at least partially overlap with the first substrate, the plurality of phosphor portions including a first group of the plurality of phosphor portions arranged on the first substrate, and a second group of phosphor portions arranged on the second substrate.