Claims
- 1. A surface discharge type plasma display panel comprising:a first substrate; a second substrate facing said first substrate in parallel, which provides a plurality of discharge spaces filled with discharge gas therebetween; a dielectric which is arranged on an opposing surface of said first substrate to said second substrate, abuts on said plurality of discharge spaces, and has a surface storing first and second wall charges in accordance with each of said plurality of discharge spaces; a plurality of barrier ribs of a first type which are arranged in parallel with each other on an opposing surface of said second substrate to said first substrate and have portions which reflect light of a visible-light area, each of said plurality of barrier ribs of the first type comprising a first side surface portion, a second side surface portion opposite to said first side surface portion, and a first top portion led to said first and second side surface portions; a barrier rib of a second type arranged on said opposing surface of said second substrate and intersecting with said plurality of barrier ribs of the first type; and phosphors provided on said opposing surface of said second substrate sandwiched between adjacent barrier ribs of the first type out of said plurality of barrier ribs of the first type, on said first side surface portion of one of said adjacent barrier ribs of the first type, and on said second side surface portion of the other of said adjacent barrier ribs of the first type, said phosphors emitting visible light in accordance with ultraviolet rays caused by discharge obtained by utilizing said first and second wall charges.
- 2. The surface discharge type plasma display panel according to claim 1, whereinsaid barrier rib of the second type has a portion which reflects said light of said visible-light area.
- 3. The surface discharge type plasma display panel according to claim 2, wherein said barrier rib of the second type comprises:a third side surface portion; a fourth side surface portion opposite to said third side surface portion; and a second top portion led to said third and fourth side surface portions, wherein said phosphors are further provided on said third and fourth side surface portions of said barrier rib of the second type.
- 4. The surface discharge type plasma display panel according to claim 3, whereinsaid first top portion of each of said plurality of barrier ribs of the first type is in contact with said dielectric; and each of said plurality of barrier ribs of the first type has a first height from said second substrate to said first top portion which is almost equal to a second height from said second substrate to said second top portion of said barrier rib of the second type.
- 5. The surface discharge type plasma display panel according to claim 3, whereinsaid first top portion of each of said plurality of barrier ribs of the first type is in contact with said dielectric; and a second height from said second substrate to said second top portion of said barrier rib of the second type is smaller than a first height from said second substrate to said first top portion of each of said plurality of barrier ribs of the first type.
- 6. The surface discharge type plasma display panel according to claim 5, whereinsaid phosphors are further provided on said second top portion of said barrier rib of the second type.
- 7. The surface discharge type plasma display panel according to claim 5, whereinsaid second height is set on the basis of a correlation between luminance of display light emitted from said first substrate to the outside, and an exhaust conductance corresponding to a flow path of gas specified by said adjacent barrier ribs of the first type, said second top portion of said barrier rib of the second type, and said dielectric.
- 8. The surface discharge type plasma display panel according to claim 7, whereinif a shape factor β determining said exhaust conductance is found by: β=(a·b)2/((a+b·L) said shape factor β satisfies an inequality as follows: 1.5E−4 mm2≦β<(Hmain·b)2/((Hmain+b)·L) where Hmain and Hsub are said first and second heights, respectively; L is a width of said barrier rib of the second type; b is a length of a first side of a quadrangle having the maximum area out of quadrangles inscribed in said flow path, on the side of said second top portion; and a is a length of a second side orthogonal to said first side, which is found by Hmain−Hsub).
- 9. The surface discharge type plasma display panel according to claim 5, whereinsaid second height is set on the basis of the minimum priming voltage at which priming discharge occur in all of said plurality of discharge spaces.
- 10. The surface discharge type plasma display panel according to claim 9, whereina discharge shape factor K is not less than 0.03 μm/Torr, if said discharge shape factor K is found by: K=(a·b)/(p·L) where L is a width of said barrier rib of the second type; a is a difference of height found by Hmain−Hsub) where Hmain and Hsub are said first and second heights, respectively; b is a gap between said first side surface portion of said one of said adjacent barrier ribs of the first type and said second side surface portion of said other of said adjacent barrier ribs of the first type; and p is pressure of said discharge gas.
- 11. The surface discharge type plasma display panel according to claim 3, further comprising:a plurality of pairs of electrodes each consisting essentially of first and second display electrodes extending in parallel with each other along a first direction on said opposing surface of said first substrate and constituting a corresponding one of display lines, said plurality of pairs of electrodes covered by said dielectric, wherein said second substrate comprises a plurality of address electrodes each extending along a second direction orthogonal to said first direction and located between said adjacent barrier ribs of the first type; each of said plurality of discharge spaces is specified by a pair of electrodes out of said plurality of pairs of electrodes, and an address electrode arranged so as to be orthogonal to said pair of electrodes out of said plurality of address electrodes; each of said first and second display electrodes comprises a strip transparent conductive film, and a metal electrode provided on an area of an opposing surface of said strip transparent conductive film to said plurality of discharge spaces on the side of an adjacent display line out of said display lines; said barrier rib of the second type extends along said first direction; said plurality of barrier ribs of the first type extend along said second direction; said barrier rib of the second type is provided on a first area of said opposing surface of said second substrate, said first area facing said metal electrode of said first display electrode corresponding to a discharge space isolated from its adjacent discharge space by said barrier rib of the second type, out of said plurality of discharge spaces; and said third surface portion of said barrier rib of the second type is provided on a second area of said opposing surface of said second substrate, said second area facing said strip transparent conductive film of said first display electrode except where said metal electrode is formed.
- 12. The surface discharge type plasma display panel according to claim 11, whereinsaid barrier rib of the second type is provided on a third area of said opposing surface of said second substrate, said third area facing said metal electrode of said second display electrode corresponding to said adjacent discharge space; and said fourth side surface portion of said barrier rib of the second type is provided on a fourth area of said opposing surface of said second substrate, said fourth area facing said strip transparent conductive film of said second display electrode except where said metal electrode is formed.
- 13. The surface discharge type plasma display panel according to claim 3, further comprising:a second barrier rib of the second type formed in parallel with said barrier rib of the second type, between the jth unit luminescent area corresponding to the jth discharge space counted from the ith unit luminescent area along said opposed first and second side surface portions, and the (j+1)th unit luminescent area corresponding to the (j+1)th discharge space, on said opposing surface of said second substrate, where the ith unit luminescent area is an unit luminescent area corresponding to any one of said plurality of discharge spaces sandwitched between said adjacent barrier ribs of the first type and isolated by said barrier rib of the second type.
- 14. The surface discharge type plasma display panel, according to claim 13, whereinsaid phosphors are further provided on both side surface portions of said second barrier rib of the second type.
- 15. The surface discharge type plasma display panel according to claim 13, wherein:said second substrate comprises a plurality of address electrodes each extending along a second direction and located between said adjacent barrier ribs of the first type; said jth unit luminescent area corresponds to said (i+1)th unit luminescent area; said ith and (i+1)th unit luminescent areas are specified by: (a) a first display electrode common to said ith and (i+1)th unit luminescent areas, extending along a first direction orthogonal to said second direction on said opposing surface of said first substrate, extending over said ith and (i+1)th unit luminescent areas, and covered by said dielectric; (b) a second display electrode extending across said ith unit luminescent area along said first direction on said opposing surface of said first substrate and covered by said dielectric, which constitutes one display line in pair with said first display electrode; (c) another second display electrode extending across said (i+1)th unit luminescent area along said first direction on said opposing surface of said first substrate and covered by said dielectric, which constitutes another display line in pair with said first display electrode; and (d) said plurality of address electrodes; said barrier rib and second barrier rib of the second type both extend along said first direction; and said plurality of barrier ribs of the first type extend along said second direction.
- 16. The surface discharge type plasma display panel according to claim 15, further comprising:a third barrier rib of the second type provided between said ith and (i+1)th unit luminescent areas on said opposing surface of said second substrate, wherein said phosphors are further provided on both side surface portions of said third barrier rib of the second type.
- 17. The surface discharge type plasma display panel according to claim 3, further comprisinga plurality of pairs of electrodes each consisting essentially of the first and second display electrodes extending in parallel with each other along a first direction on said opposing surface of said first substrate and constituting a corresponding one of display lines, said plurality of pairs of electrodes covered by said dielectric, wherein said second substrate comprises a plurality of address electrodes each extending along a second direction orthogonal to said first direction and located between said adjacent barrier ribs of the first type; each of said plurality of discharge spaces is specified by intersection of said plurality of pairs of electrodes and said plurality of address electrodes; said barrier rib of the second type has a plurality of barrier ribs; said plurality of barrier ribs extend along said first direction; said plurality of barrier ribs of the first type extend along said second direction; and each of said plurality of barrier ribs is provided for each of said plurality of discharge spaces.
- 18. A plasma display device comprising:a first substrate; a second substrate facing said first substrate in parallel, which provides plurality of discharge spaces filled with discharge gas therebetween; a plurality of pairs of electrodes each consisting essentially of first and second electrodes which extend in parallel with each other along a first direction on an opposing surface of said first substrate to said second substrate; a dielectric which is formed on said opposing surface of said first substrate, covers said plurality of pairs of electrodes, and has a surface storing first and second wall charges in accordance with each of said plurality of discharge spaces; a plurality of barrier ribs of a second type extending in parallel with each other along said first direction on an opposing surface of said second substrate to said first substrate; and a plurality of barrier ribs of a first type extending in parallel with each other along a second direction orthogonal to said first direction on said opposing surface of said second substrate to said first substrate, said plurality of barrier ribs of the first type intersecting with said plurality of barrier ribs of the second type; a plurality of phosphors each provided on said opposing surface of said second substrate surrounded by adjacent barrier ribs of the first type out of said plurality of barrier ribs of the first type and by adjacent barrier ribs of the second type out of said plurality of barrier ribs of the second type, and on opposite side surface portions of at least one out of both of said adjacent barrier ribs of the first type and said adjacent barrier ribs of the second type, each of said plurality of phosphors having portions emitting visible light in accordance with ultraviolet rays caused by discharge obtained by utilizing said first and second wall charges stored in said surface of said dielectric; wherein said second substrate comprises a plurality of third electrodes extending in parallel with each other along said second direction and located between said adjacent barrier ribs of the first type, and each of said plurality of discharge spaces is specified by one pair of electrodes of said plurality of pairs of electrodes, and a third electrode orthogonal to said pair of electrode out of said plurality of third electrodes, said plasma display device further comprising: a drive control circuit having a plurality of drivers each connected to said first and second electrodes of said plurality of pairs of electrodes, and said plurality of third electrodes, and each generating and outputting a driving signal to be applied to its corresponding electrode.
Priority Claims (1)
Number |
Date |
Country |
Kind |
10-014380 |
Jan 1998 |
JP |
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Parent Case Info
This application is a continuation application Ser. No. 09/116,950, filed on Jul. 17, 1998, the entire contents of which are hereby incorporated by reference and for which priority is claimed under 35 U.S.C. §120; and this application claims priority of Application. No. 10-014380 filed in Japan on Jan. 27, 1998 under 35 U.S.C. §119.
US Referenced Citations (5)
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Country |
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Jan 1991 |
JP |
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JP |
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Aug 1998 |
JP |
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Aug 1999 |
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Non-Patent Literature Citations (2)
Entry |
Fujii et al., “A Sandblast-Processed Color-PDP Phosphor Screen,” Dai Nippon Printing Co., Ltd., Central Research Institute (1992), IDY92-22, pp. 33-36, (with English translation, 6 pages). |
Wani, Koichi, “Color DC Plasma Displays,” Matsushita Electronics Corporation, Takatsuki Osaka 569-11, Japan, IDW'95, PDP-2, pp. 33-36. |
Continuations (1)
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Number |
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Parent |
09/116950 |
Jul 1998 |
US |
Child |
09/828137 |
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US |