An embodiment of the invention will be described in details with reference to the accompanying drawings. In the drawings, identical elements are basically denoted by the same reference symbols respectively and will not be described repeatedly.
With reference to
(Front Face of PDP)
In
A display area 110 inside the sealing area 203 is an area in which an image, which corresponds to a matrix of cells composed of groups of various kinds of electrodes and the like, is displayed. Outside the sealing area 203, there are provided extra areas that are used for electrical connection to an external drive circuit or other purposes. The front substrate 201 has an area 23a on both sides of
Further, the PDP 10 is fixed and held on a chassis that is disposed on a back of the PDP 10. A circuit portion, such as a drive circuit, disposed on the back of the chassis is electrically connected to the terminal portions of the electrodes of the PDP 10. In this way, the PDP apparatus (PDP module) is configured.
(Cross Section of PDP)
Next, a configuration of a cross section of the PDP 10 will be described with reference to
Discharge space 19 between the front substrate 201 and the back substrate 202 is sealed by the sealing area 203, which is formed and disposed in a second area 22 of a peripheral portion (frame) 120 of the PDP 10.
On an inner face (downward face in
(Premised Technique)
Now a configuration of a PDP of a premised technique will be described with reference to
For convenience, the address electrodes 13 is structurally classified into three parts: an electrode body 131, which lies in a first area 21 inside the sealing area 203, a leader 132, which lies in an second area 22 that partly overlaps the sealing area 203, and an electrode terminal portion 133, which lies on a third area 23 near an edge of the PDP. These parts are formed continuously using a conductive material. The electrode body 131 is a part that extends on a display area of the PDP. The electrode terminal portion 133 is a part that is electrically connected to a drive circuit side, and lies outside the sealing area 203 and extends up to a prescribed connecting position to outside near a side face of the PDP. The leader 132 is a part that electrically connects the electrode body 131 to the electrode terminal portion 133.
(Electrode Terminal Portion)
Now a structure of a vicinity of the electrode terminal portion 133 will be described as a distinctive structure of the PDP 10 with reference to
For convenience, the peripheral portion 120 of the PDP 10 is classified into the first area 21 to the third area 23. The first area 21 is an area near an end of the electrode body 131 in the display area 110. The third area 23 is an area at an edge of the PDP 10, in which the electrode terminal portion 133 is disposed. The second area 22 is an area between the first area 21 and the third area 23, partly overlaps the sealing area 203, and in which the leader 132 of the address electrodes 13 is disposed.
The address electrode 13 is structurally classified into four parts: the electrode body 131, which lies in the first area 21, the leader portion 132, which lies in the second area 22, the electrode terminal portion 133, which lies in the third area 23, and the conduction electrode portion 134, which is formed in the conduction hole 50. Further, the electrode terminal portion 133 is classified into a front electrode 133A, which lies on the front face (A) of the back glass substrate 2, and a back electrode 133B, which lies on the back face (B) of the back glass substrate 2.
As a conductive material to form an electrode pattern including the parts (131 to 134) of the address electrode 13, for example, a silver paste is used. Electrical contact between the parts (131 to 134) of the electrode pattern is secured.
The electrode body 131 extends straight in the display area 120 of the PDP 10. The electrode terminal portion 133 is electrically connected to the drive circuit side, lies outside the sealing area 203 and extends to a prescribed connecting position to outside near a side face of the PDP 10. The leader portion 132 partly overlaps the sealing area 203 and electrically connects the electrode body 131 to the electrode terminal portion 133.
On the back glass substrate 2, the electrode terminal portions 133 of the first group of the address electrodes 13 are formed as front electrodes 133A straight from the leader portions 132 up to a prescribed connecting position to outside near a side face of the PDP 10 on the front face (A), as with conventional PDPs. The electrode terminal portions 133 of the second group of the address electrodes 13 are formed as back electrodes 133B on the back face (B). Therefore, the second group of the address electrodes 13 are disposed so as to extend from the leader portions 132 on the front face (A) through the conduction electrode portion 134 in the conduction hole 50 up to the back face (B), then to be electrically connected to the back electrodes 133B, and further to extend up to a prescribed connecting position to outside.
As shown in
According to the above-mentioned configuration, it is possible to cope with reduced pitches between the adjacent electrode terminal portions 133 due to a high definition of the PDP 10. Even if migration occurs in the electrode terminal portion 133, it is possible to prevent a short circuit between the electrode terminal portions 133.
(Manufacturing Method)
As a method for manufacturing the PDP 10, a manufacturing method regarding the configurations as shown in
(1) To begin with, the conduction hole 50 is formed in the back substrate 2. By machining (for example, lathe type minute hole processing machine), one conduction hole 50 is formed every two electrode terminal portions 133 of the address electrodes 13 to be formed, from an edge of the PDP 10. In other words, the conduction hole 50 is formed in positions near ends of the leaders 132 outside the sealing area 203, corresponding to the second group of electrodes in this embodiment, which are even-numbered ones. While the conduction hole 50 is provided near a electrical connection between the leader portion 132 and the electrode terminal portion 133 in this example, it can be provided in another position.
A diameter of the conduction hole 50 is, for example, 50 μm or more to 500 μm or less. In forming the conduction hole 50, peripheral portions of the conduction holes 50 are processed to form the taper shape portion 51 in order to strengthen electric contact between the electrode parts to be formed later, or the like.
(2) Next, the conduction electrode portion 134 is formed in the conduction hole 50 by a method such as embedding a conductive material in the hole. The conduction electrode portion 134 electrically connects the leader portion 132 and the electrode terminal portion 133.
(3) Then, as the front electrodes 133A on the front face (A) and the back electrodes 133B on the back face (B), the electrode terminal portions 133 are formed by a method such as screen printing or photosensitive printing plus photolithography, using, for example, a silver paste as a conductive material. The electrode body 131 is also formed as have heretofore been formed.
By carrying out the above-mentioned steps (2) and (3), an electrode pattern with electrical contact between the parts (131 to 134) for the address electrodes 13 is formed. As a conductive material that makes up the electrode pattern, a single-element metal material, which contains one of silver, gold, aluminum, copper, nickel, platinum, palladium, and chromium, or a multi-element metal material, which contains at least one of the above-mentioned elements, or a metal glass paste material, which contains the above-mentioned metal material and a glass ingredient, is used.
(4) Subsequently, the electrode pattern is subjected to calcining, and then the structure as shown in
Note that, in the above-mentioned manufacturing method, formation of the electrode terminal portions 133 (133A and 133B) or the like and formation of the conduction electrode portions 134 into the conduction holes 50 are carried out in the separate steps, but may be carried out in the same step. For example, after forming the leader portion 132 of the front face (A), the front electrode 133A, or the like, and the conduction electrode portion 134 in one step, formation of the back electrode 133B on the back face (B) and electric contact may be carried out in another step.
(Connecting Portion)
Further, for example, as a material of a plate (a part other than structures such as electrode, dielectric layer, and partition wall) mainly constituting a substrate (back substrate 202) in which the conduction hole 50 is to be formed, an insulating material composed of any one of a ceramic, a polymeric material, and a metal, which meets panel requirement characteristics (requirements such as electrical insulation, strength, transparency of a display window) may be used. In other words, the substrate may be formed with any material other than a conventional glass, as long as it meets the panel requirement characteristics. In this case, the conduction hole 50 is more easily formed than when a substrate made of glass is used.
While the invention made by the inventor has been described concretely based the embodiment, the invention is not limited to the embodiment. As a matter of course, various modifications can be made to the invention without departing from the spirit and scope of the invention.
The present invention is applicable to a PDP including an electrode terminal portion.
Number | Date | Country | Kind |
---|---|---|---|
JP2006-205574 | Jul 2006 | JP | national |