This Nonprovisional application claims priority under 35 U.S.C. § 119(a) on Patent Application No. 10-2004-0096621 filed in Republic of Korea on Nov. 23, 2004, the entire contents of which are hereby incorporated by reference.
1. Field of the Invention
The present invention relates to a plasma display panel, and more particularly, to a barrier rib structure of a plasma display panel.
2. Description of the Background Art
In general, in a plasma display panel, barrier ribs formed between a front panel and a rear panel constitute a unit cell and main discharge gas such as Neon (Ne), Helium (He), or mixed gas (Ne+He) of Neon and Helium and inert gas containing a small amount of Xenon fill each cell. When discharge is performed by a high frequency voltage, the inert gas generates vacuum ultraviolet rays and allows a phosphor formed between the barrier ribs to emit light, and thus an image is embodied. Such a plasma display panel is made to be thin and light, so that it is in the spotlight as a next generation display device.
As shown in
The front panel 100 performs reciprocal discharge in one discharge cell and comprises pairs of the scan electrode 102 and the sustain electrode 103 for sustaining light emitting of a cell, i.e., the scan electrode 102 and the sustain electrode 103 provided with a transparent electrode (a) made of a transparent ITO material and a bus electrode (b) made of a metal material. The scan electrode 102 and the sustain electrode 103 prevent a discharge current from flowing and are covered with a dielectric layer 104 for isolating the electrode pair, and a protective layer 105 evaporated with a magnesium oxide (MgO) is formed on an upper surface of the upper dielectric layer 104 to facilitate a discharge condition.
In the rear panel 110, stripe type barrier ribs 112 for forming a plurality of discharge spaces, i.e., discharge cells are disposed in parallel. Further, many address electrodes 113 for generating vacuum ultraviolet rays by performing address discharge are disposed in parallel to the barrier rib 112. A RGB phosphors 114 emitting visible rays for displaying an image upon address discharge are coated in the upper surface of the rear panel 110. A lower dielectric layer 115 for protecting the address electrode 113 is formed between the address electrode 113 and the phosphor 114.
Hereinafter, a barrier rib structure of a plasma display panel having such a structure will be described.
A conventional plasma display panel has several barrier rib structures. A stripe type barrier rib structure and a well type barrier rib structure as representative barrier rib structures among them will be described as follows.
In
In
In addition to the above structures, there are a triangle type barrier rib structure, a delta type barrier rib structure, and a waffle type barrier rib structure.
As an example, the waffle type barrier rib structure will be described.
Referring to
Contraction (a′) of the discharge cell (A) due to contraction (A′) of the barrier rib of the plasma display panel has a bad influence on reliability of the plasma display panel. That is, a defective pixel is generated on an effective surface in which an image of the plasma display panel is displayed and thus erroneous discharge occurs upon driving, so that reliability is deteriorated. An effective surface is an area expressing an image and comprises a dummy cell region as well as a discharge cell region for directly expressing an image.
Referring to
Therefore, a discharge cell is deformed due to contraction of a barrier rib upon firing of the barrier rib and a defective pixel is generated due to deformation of the discharge cell, so that reliability of the plasma display panel is deteriorated.
Accordingly, an object of the present invention is to solve at least the problems and disadvantages of the background art.
An object of the present invention is to provide a barrier rib structure of a plasma display panel which can prevent deformation of a discharge cell for expressing an image.
According to an aspect of the present invention, there is provided a plasma display panel comprising a main barrier rib formed on an effective surface of a panel to partition a discharge cell; and an auxiliary barrier rib which protrudes in at least one of a horizontal direction or a vertical direction from the effective surface of the panel and whose the tips are not connected to each other.
According to the present invention, deformation of a discharge cell is prevented by manufacturing a barrier rib in a different method upon manufacturing of a plasma display panel, so that it is possible to improve reliability of a plasma display panel.
The invention will be described in detail with reference to the following drawings in which like numerals refer to like elements.
Preferred embodiments of the present invention will be described in a more detailed manner with reference to the drawings.
Hereinafter, exemplary embodiments of the present invention will be described in detail with reference to the accompanying drawings.
First, the front panel manufacturing process arranged in a left side of
Next, a rear panel manufacturing process arranged in a right side of
The front panel and the rear panel thus manufactured are sealed to each other (300), thereby forming the plasma display panel (400).
In the manufacturing method of the plasma display panel according to the present invention, a manufacturing process of the rear panel will be described in detail with reference to
As described in
A paste (not shown) for a barrier rib having a predetermined thickness is formed on the dielectric layer 601. At this time, the paste for the barrier rib is formed with a printing method of using a black material or a coating method to reduce a reflection ratio by external light.
Thereafter, a dry film photo resist (hereinafter, referred to as “DFR”) 602 is formed through a lamination process on the paste for the barrier rib and a photo mask 604 is aligned on the DFR to illuminate light such as ultraviolet rays. At this time, the photo mask has a predetermined pattern which is extended and protruded by a predetermined length from an effective surface 603 of the panel.
In the DFR in which light is illuminated, an unhardened portion is cleaned through a developing process and a hardened paste is formed with a barrier rib 605 through a sandblasting method or an etching method.
Thereafter, a plastic working process is performed and a barrier rib structure after the plastic working process is shown in
Referring to
At this time, a length of the auxiliary barrier rib (D) is formed to be longer than a length (dB) of a unit discharge cell.
In addition, the auxiliary barrier rib (D) is formed on an ineffective surface of the plasma display panel not to have an influence on an image display characteristic of the plasma display panel. Here, the ineffective surface is an area in which an image is not displayed in the plasma display panel. For instance, the ineffective surface does not comprise a discharge cell.
As shown above, the auxiliary barrier rib (D) serves as a buffer which protects an influence of contraction (B′) so that it does not transmitted to the main barrier rib (E), preventing deformation of the main barrier rib (E).
The auxiliary barrier rib according to the present invention shown in
Because the tip of the auxiliary barrier rib may be more seriously deformed than other regions, the end portion of the auxiliary barrier rib may be made to be thicker than the other portion of the auxiliary barrier rib.
In addition, the present invention may be implemented to have different width and length of the auxiliary barrier. This will be described in detail.
As described above, the present invention is provided with the auxiliary barrier rib having a plurality of protrusions. The barrier rib structure of the plasma display panel according to the present invention can be implemented to have various widths and lengths of the protrusion.
As shown in
As shown in
In this case, the present invention may be embodied so that a width of the protrusion is smaller than that of the main barrier rib. For example, in
In the meantime, as shown in
As described above, the auxiliary barrier rib can be embodied in various forms and is made to prevent deformation of a discharge cell depending on various deformations which can generate during a plastic working process.
The plasma display panel comprising the barrier rib can sustain a specific shape of a discharge cell because it is not deformed at a high temperature during a plastic working process. Therefore, a discharge characteristic is not influenced by driving the plasma display panel. Hence, it is possible to improve reliability of the plasma display panel.
As described above, it will be obvious that the same may be varied in many ways. Such variations are not to be regarded as a departure from the spirit and scope of the invention, and all such modifications as would be obvious to one skilled in the art are intended to be comprised within he scope of the following claims.
Number | Date | Country | Kind |
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10-2004-0096621 | Nov 2004 | KR | national |
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20060125367 A1 | Jun 2006 | US |