Abstract:
A liquid crystal display is described. The liquid crystal display includes a common voltage generation unit that swings first and second common voltages in opposite directions every a predetermined period of time using two voltage levels, a plurality of first longitudinal common lines that are formed parallel to data lines to supply the first common voltage input through first input units to first pixel common line patterns formed in first pixel units, and a plurality of second longitudinal common lines that are formed parallel to the data lines to supply the second common voltage input through second input units to second pixel common line patterns formed in second pixel units.
Abstract:
A plasma display panel is disclosed. The plasma display panel includes a front substrate, a rear substrate positioned opposite the front substrate, and a barrier rib that is positioned between the front substrate and the rear substrate to partition discharge cells. The barrier rib includes a transverse barrier rib and a longitudinal barrier rib crossing each other. Depressions are positioned to be spaced apart from each other at a barrier crossing of the transverse barrier rib and the longitudinal barrier rib.
Abstract:
A liquid crystal display is provided. In the liquid crystal display, a common line includes an edge common line that is formed in a non-display area outside a display area of a liquid crystal display panel to receive a common voltage through a plurality of input units, a plurality of pixel common line patterns that are formed along edges of each of subpixels to be electrically connected to one another, and a plurality of longitudinal common lines that is electrically connected to the edge common line to apply the common voltage to the pixel common line patterns. Each of the pixel common line patterns has a mesh structure and is connected to common electrodes of the subpixels. Each of the longitudinal common lines is formed between two horizontally adjacent pixels in a direction parallel to the data lines.
Abstract:
A plasma display panel is provided. The plasma display panel includes a front substrate, a rear substrate positioned opposite the front substrate, a barrier rib positioned between the front substrate and the rear substrate, and a seal layer positioned between the front substrate and the rear substrate. The seal layer includes a bead. An angle between the front substrate and the rear substrate in a disposition area of the seal layer ranges from 0.2° to 1.0°.
Abstract:
A plasma display panel is provided. The plasma display panel includes a front substrate including an upper dielectric layer, a rear substrate including a lower dielectric layer, and a seal layer between the front substrate and the rear substrate. A length of a longer side of the front substrate is longer than a length of a longer side of the rear substrate, and a length of a shorter side of the front substrate is shorter than a length of a shorter side of the rear substrate. An interval between an end of the front substrate and an end of the upper dielectric layer in a direction crossing the longer side of the front substrate is less than an interval between an end of the front substrate and an end of the upper dielectric layer in a direction crossing the shorter side of the front substrate.
Abstract:
A liquid crystal display is provided. In the liquid crystal display, a common line includes an edge common line that is formed in a non-display area outside a display area of a liquid crystal display panel to receive a common voltage through a plurality of input units, a plurality of pixel common line patterns that are formed along edges of each of subpixels to be electrically connected to one another, and a plurality of longitudinal common lines that is electrically connected to the edge common line to apply the common voltage to the pixel common line patterns. Each of the pixel common line patterns has a mesh structure and is connected to common electrodes of the subpixels. Each of the longitudinal common lines is formed between two horizontally adjacent pixels in a direction parallel to the data lines.
Abstract:
A plasma display panel is disclosed. The plasma display panel includes a front substrate, a rear substrate positioned to be opposite to the front substrate, a barrier rib positioned between the front substrate and the rear substrate, and a seal layer positioned between the front substrate and the rear substrate. The seal layer includes a plurality of beads, and a size of the bead is larger than a height of the barrier rib.
Abstract:
A liquid crystal display is described. The liquid crystal display includes a common voltage generation unit that swings first and second common voltages in opposite directions every a predetermined period of time using two voltage levels, a plurality of first longitudinal common lines that are formed parallel to data lines to supply the first common voltage input through first input units to first pixel common line patterns formed in first pixel units, and a plurality of second longitudinal common lines that are formed parallel to the data lines to supply the second common voltage input through second input units to second pixel common line patterns formed in second pixel units.
Abstract:
The present invention relates to a plasma display panel. The electrode structure of the plasma display panel according to an embodiment of the present invention has an electrode structure in which a second gap formed in a second region is smaller than a first gap formed in a first region. The plasma display panel according to an embodiment of the present invention can prevent a phenomenon in which a discharge is not generated due to a foreign substance adhered on surfaces of electrodes.
Abstract:
A liquid crystal display is provided. The liquid crystal display includes an edge common line receiving a common voltage through input sources, a plurality of pixel common line patterns that are formed in each of liquid crystal cells constituting each pixel and are electrically connected to one another, and a plurality of longitudinal common lines that are electrically connected to the edge common line to apply the common voltage to the pixel common line patterns. The pixel common line patterns are connected to common electrodes of the liquid crystal cells. Each of the longitudinal common lines is formed between two horizontally adjacent pixels in a direction parallel to data lines. The pixels includes a plurality of pixel units each including two vertically adjacent pixels, and two data lines and three gate lines are assigned to each of the pixel units.