1. Field of the invention
The invention relates to a display apparatus and, more specifically, to a plasma display apparatus.
2. Description of the prior art
A plasma display panel (PDP) has many advantages such as high lightness, high efficiency, high contrast, high writing speed, and low cost. Thus, it is one of the current mainstream technologies of large-sized digital flat display panels.
As shown in
In general, the front plate 12 includes one first glass substrate 121, a plurality of transparent electrodes 122, a plurality of auxiliary electrodes 123, a transparent dielectric layer 124, and one first protective layer 125. The back plate 14 includes one second glass substrate 141, a plurality of address electrodes 142, one dielectric layer 143, and one second protective layer 144. The shadow mask 16 includes a plurality of barrier ribs 161 and a plurality of color phosphors 162. In this example, the marks 162A, 162B, and 162C represent red, green, and blue phosphors respectively.
Each of the independent spaces containing the color phosphors. 162 among the barrier ribs 161 can be seen as one luminous cell. One red luminous cell, one green luminous cell, and one blue luminous cell can construct one pixel of the plasma display panel 10. These luminous cells are filled with a mixture of noble gases such as He, Ne, Xe, etc.
The transparent electrode 122 in the front plate 12 and the address electrode 142 in the back plate 14 can cooperate to generate high voltage electricity. In this way, the gases in all luminous cells will be triggered to discharge and radiate ultraviolet rays. The ultraviolet rays will excite these color phosphors 162 to generate visible lights of red, green, and blue. By controlling the transparent electrode 122 in the front plate 12 and the address electrode 142 in the back plate 14, the control circuit (not shown in the figure) of the plasma display panel 10 can decide whether the luminous cells radiate and what their radiation strength is. The beams radiated by these luminous cells can further constitute images including various colors.
In practical applications, these transparent electrodes 122 are usually conductible ITO or SnO2 plated on the first glass substrate 121. The effect of the auxiliary electrodes 123 is to reduce the resistance of the transparent electrodes 122. The transparent dielectric layer 124 and the dielectric layer 143 are also called dielectric layers. They can store charges and achieve memory effect to keep images. The material of the first protective layer 125 and the second protective layer 144 is generally MgO. Its function is to prevent the wearing out of the electrodes.
Referring to
A scope of the invention is to provide a method for improving the lighting efficiency of a plasma display panel (PDP). According to the invention, a preferred embodiment is a plasma display panel including a front plate, a back plate, a shadow mask, and a discharge destructive film. The shadow mask is located between the front plate and the back plate. The discharge destructive film is formed in a predetermined pattern between the shadow mask and the back plate. The discharge destructive film can increase the firing voltages of some parts of the back plate. By doing so, the discharge distance between the front plate and the back plate is increased. Therefore, the luminous efficiency of the plasma display panel will be improved.
The advantage and spirit of the invention may be understood by the following recitations together with the appended drawings.
The invention provides a plasma display panel (PDP) with high luminous efficiency.
According to the invention, a preferred embodiment is a plasma display panel. Referring to
In the embodiment, the front plate 32 includes a first glass substrate 321, a plurality of transparent electrodes 322, a plurality of auxiliary electrodes 323, a transparent dielectric layer 324, and a first protective layer 325. The back plate 34 includes a second glass substrate 341, a plurality of address electrodes 342, a dielectric layer 343, and a second protective layer 344. The shadow mask 36 includes a plurality of barrier ribs 361 and a plurality of color phosphors 362. The red, green, and blue phosphors are respectively represented by the marks 362A, 362B, and 362C. As those skilled in the art know, the devices included by the above mentioned front plate 32, back plate 34, and shadow mask 36 can have some differences in different plasma display panels. Therefore, the devices included by the front plate 32, back plate 34, and shadow mask 36, according to the invention, are not necessarily the same as those shown in
Referring to
Besides, when the discharge occurs, there are two discharge regions in each of the luminous cells in the back plate according to the invention. This will make the distribution of the ultraviolet rays generated by the discharge phenomenon more uniform. In this way, the ultraviolet ray absorptivity of the color phosphors in the luminous cells will increase. It will also further improve the lightness of the plasma display panel.
With the above example and explanation, the features and spirits of the invention will be hopefully well described. Those skilled in the art will readily observe that numerous modifications and alterations of the device may be made while retaining the teaching of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.
Number | Date | Country | Kind |
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095130545 | Aug 2006 | TW | national |