Abstract:
A plasma display device is provided with a drive circuit board, which is arranged on a chassis member holding a plasma display panel, connected to an electrode terminal section of a display electrode through a flexible wiring board and applies a drive voltage to the display electrode; and a plurality of data drivers, which are arranged on a lower end section of the chassis member in proximity to an electrode terminal section of a data electrode, connected to the electrode terminal section through the flexible wiring board and apply a drive voltage to the data electrode. The plasma display panel forms a base film on the dielectric layer covering the display electrode, and a plurality of crystal grains composed of a metal oxide are adhered on the base film so that the crystal grains are distributed over the entire surface of the base film.
Abstract:
A plasma display device comprises a plasma display panel in which a plurality of discharge cells are formed and a driving circuit for applying a driving voltage to a display electrode of the plasma display panel. One field comprises a plurality of sub-fields each having a writing period during which a discharge cell to be discharged is selected and a sustaining period during which a sustained discharge is performed in the discharge cell selected in the writing period. The plasma display panel is constructed in such a way that a base film is formed on a dielectric layer covering the display electrode and a plurality of crystalline particles made of a metal oxide are attached to the base film so as to be distributed over the entire surface. The driving circuit is constructed so that a voltage having a pulse width of 1 &mgr;s or less is applied to a data electrode during the writing period.
Abstract:
Disclosed is a plasma display panel comprising a front plate wherein a dielectric layer is so formed as to cover a display electrode formed on a front glass substrate and a protective layer is formed on the dielectric layer, and a back plate so arranged as to face the front plate so that a discharge space is formed therebetween. The back plate is provided with an address electrode lying in the direction intersecting the display electrode and a partition wall which divides the discharge space. The protective layer is obtained by forming a base film on the dielectric layer, and having agglomerated particles, wherein a plurality of crystal particles composed of a metal oxide are agglomerated, adhere to the base film in such a manner that the agglomerated particles are distributed all over the base film. The number of the agglomerated particles adhering the base film is set at not less than 45 but not more than 350 per 10,000 μm2 of the base film.
Abstract:
A plasma display panel is provided with a front substrate (2) which has a dielectric layer (8) formed to cover a display electrode (6) formed on a front glass substrate (3) and has a protection layer (9) formed on the dielectric layer (8); and a rear substrate, which is arranged to face the front substrate (2) so as to form a discharge space and to form an address electrode in a direction that intersects the display electrode (6), and is provided with barrier ribs which partition the discharge space. In the protection layer (9), a base film (91) is formed on the dielectric layer (8), and agglomerated grains (92) composed of a plurality of agglomerated crystal grains formed by firing a precursor of a metal oxide are adhered so that the grains are distributed over the entire surface of the base film (91).
Abstract:
A plasma display panel is provided with a front substrate which has a dielectric layer formed to cover a display electrode formed on a front glass substrate, and has a protection layer formed on the dielectric layer; and a rear substrate, which is arranged to face the front substrate so as to form a discharge space and to form an address electrode in a direction intersecting the display electrode and is provided with barrier ribs which partition the discharge space. The protection layer is configured by adhering a plurality of crystal grains composed of a metal oxide such that the crystal grains are distributed over the entire surface of the base film with a covering ratio of 1% or more but not more than 15%.
Abstract:
Disclosed is a plasma display panel comprising a front panel, which forms a dielectric layer in a manner to cover display electrodes formed on a front glass substrate and which has a protective layer formed over the dielectric layer, and a back panel which is arranged to face the front panel so as to form a discharge space and to form address electrodes in a direction to intersect the display electrodes, and which has a partition for defining the discharge space. The protective layer is constituted to form a surface film over the dielectric layer and to adhere and distribute aggregated grains formed by aggregation of a plurality of crystal grains made of a metal oxide over the entire surface. The aggregated grains are made such that the distribution of the peak intensity values of the spectrum of the wavelength range of 200 nm to 300 nm in a cathode luminescence is contained within 240 % of the accumulated average value.
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 a mixture of Zn 2 SiO 4 : Mn and (Y, Gd)BO 3 : Tb, the surface of the Zn 2 SiO 4 : Mn is coated with aluminum oxide, and the ratio of the Al element to the Si element on the surface measured with an XPS apparatus is 0.6 to 7.0.