Abstract:
A plasma display panel and method of driving the panel is disclosed. The plasma display panel includes a front substrate, a rear substrate that is positioned opposite to the front substrate and a phosphor layer positioned between the front substrate and the rear substrate. The phosphor layer includes particles of phosphor material and particles of oxide material. The oxide material particles are positioned in the phosphor layer in such a manner that illumination at the front surface from at least one phosphor material particle in the phosphor layer is unobstructed by the oxide material particles.
Abstract:
A plasma display apparatus that can reduce a manufacturing cost even while embodying a screen ratio of 16: 9 by adjusting the number of the third electrode formed in the rear substrate is provided. The plasma display apparatus comprises: a plasma display panel comprising an electrode; and a driver for supplying a driving signal to the electrode, the plasma display panel comprises: a front substrate; a rear substrate opposite to the front substrate; a barrier rib for partitioning a discharge cell between the front substrate and the rear substrate; first electrodes and second electrodes opposite to each other in the discharge cell; and third electrodes intersecting the first electrodes in the discharge cell, wherein the number of the third electrodes is 4095 in an active area in which an image is displayed, and the driver comprises a plurality of data drivers comprising channels connected to the third electrode, and 256 channels are formed in each of the data drivers.
Abstract:
The present disclosure relates to a rollable display device comprising: a roller; a display part on which the roller rolls and which comprises a display panel and a module cover adjoining and facing the display panel; a supporter fixed to an end portion of the display part; a link assembly comprising an upper link rotatably mounted on the supporter and a lower link connected to the upper link through a joint; and a motor assembly for rotating the lower link; wherein the module cover comprises a first skin and a second skin facing the first skin and having a buckling stress greater than that of the first skin, and the module cover is joined to the display panel so that the second skin thereof faces the display panel.
Abstract:
A plasma display panel and method of driving the panel is disclosed. The plasma display panel includes a front substrate, a rear substrate that is positioned opposite to the front substrate and a phosphor layer positioned between the front substrate and the rear substrate. The phosphor layer includes particles of phosphor material and particles of oxide material. The oxide material particles are positioned in the phosphor layer in such a manner that illumination at the front surface from at least one phosphor material particle in the phosphor layer is unobstructed by the oxide material particles.
Abstract:
A plasma display apparatus that can reduce a manufacturing cost even while embodying a screen ratio of 16: 9 by adjusting the number of the third electrode formed in the rear substrate is provided. The plasma display apparatus comprises: a plasma display panel comprising an electrode; and a driver for supplying a driving signal to the electrode, the plasma display panel comprises: a front substrate; a rear substrate opposite to the front substrate; a barrier rib for partitioning a discharge cell between the front substrate and the rear substrate; first electrodes and second electrodes opposite to each other in the discharge cell; and third electrodes intersecting the first electrodes in the discharge cell, wherein the number of the third electrodes is 4095 in an active area in which an image is displayed, and the driver comprises a plurality of data drivers comprising channels connected to the third electrode, and 256 channels are formed in each of the data drivers.