摘要:
A liquid crystal display panel according includes a gate line and a data line crossing each other on a first substrate, a common electrode formed in parallel to the data line, a common line connected to the common electrode and arranged in parallel to the gate line, a gate insulating film formed between the gate and data lines to cover the gate line, the common line and the common electrode, a thin film transistor formed at a crossing part of the gate and data lines, a passivation film covering the thin film transistor, the data line and the gate insulating film, a pixel electrode connected to the thin film transistor, a spacer hole penetrating the gate insulating film and the passivation film, and at least one ball spacer formed in the spacer hole.
摘要:
A liquid crystal display (LCD) device and a method of manufacturing the same is disclosed, to improve the picture quality by preventing the movement of ball spacers from a non-pixel area to a pixel area, in which the method includes preparing a substrate including a pixel area and a non-pixel area; forming a well in a predetermined portion of the non-pixel area wherein forming the well includes coating an alignment layer on the substrate and excluding the alignment layer from a predetermined portion of the non-pixel area; and forming a ball spacer in the well using an ink-jet apparatus.
摘要:
A liquid crystal display (LCD) device and its fabrication method are disclosed. Specifically, a fabrication method in which polyhedral spacers are implemented on a substrate through an ink jet method are used for an LCD device. The spacers have the polyhedral shape to increase their contact area with two substrates, and include a surface processed layer for strengthening a bonding force in its bonding with an alignment film formed on the two substrates. The spacers have a polyhedral shape for maintaining the cell gap between the substrates.
摘要:
A liquid crystal display (LCD) device and its fabrication method are disclosed. Specifically, a fabrication method in which polyhedral spacers are implemented on a substrate through an ink jet method are used for an LCD device. The spacers have the polyhedral shape to increase their contact area with two substrates, and include a surface processed layer for strengthening a bonding force in its bonding with an alignment film formed on the two substrates. The spacers have a polyhedral shape for maintaining the cell gap between the substrates.
摘要:
This invention relates to a liquid crystal display panel adapted to minimize movement of a spacer, and a fabricating method thereof. A liquid crystal display panel according to an embodiment of the invention includes a black matrix formed on a first substrate and formed in a boundary between pixel areas for dividing the pixel areas; red, green, and blue color filters formed at the divided pixel areas; at least two holes adjacent to each other on the black matrix; at least one dam dividing the adjacent holes; and a spacer restricted within at least one of the at least two holes.
摘要:
A liquid crystal display (LCD) device and its fabrication method are disclosed. Specifically, a fabrication method in which polyhedral spacers are implemented on a substrate through an ink jet method are used for an LCD device. The spacers have the polyhedral shape to increase their contact area with two substrates, and include a surface processed layer for strengthening a bonding force in its bonding with an alignment film formed on the two substrates. The spacers have a polyhedral shape for maintaining the cell gap between the substrates.
摘要:
A method of controlling a mobile terminal and which includes displaying a first screen image on a touch screen of the mobile terminal as an idle background screen, receiving a touch and drag input operation being performed on the touch screen including the displayed first screen image, and displaying a second screen image corresponding to a direction of the touch and drag input operation, said second screen image corresponding to a new idle background screen.
摘要:
An in-plane switching liquid crystal display device including: first and second substrates; a gate line and data line arranged vertically and horizontally, respectively, on the first substrate and defining a pixel region; a thin film transistor (TFT) formed at a crossing of the gate line and the data line; common electrodes and pixel electrodes alternately disposed in the pixel region in a curvature form and generating an in-plane electric field; a common electrode connection line electrically connecting the common electrodes; a pixel electrode connection line electrically connecting pixel electrodes; a compensation electrode formed along at least one of the common electrode connection line and the pixel electrode connection line and compensating electric field; and a liquid crystal layer formed between the first and second substrates.
摘要:
An electrostatic discharge protection element, a liquid crystal display device having the same, and a manufacturing method. A first ESD organic TFT, a second ESD organic TFT, a third ESD organic TFT each have a gate electrode, a source electrode and a drain electrode in which the source electrode and drain electrode of the first and second ESD organic TFTs and the gate electrode of the third ESD organic TFT are electrically connected. The gate electrode and the source electrode of the first ESD organic TFT are electrically connected to a first array line and the gate electrode and the drain electrode of the second ESD organic TFT are electrically connected to a second array line. The source electrode of the third ESD organic TFT is electrically connected to a data line or a gate line and the drain of the third ESD organic TFT are electrically connected to a common voltage line.
摘要:
An electrostatic discharge protection element, a liquid crystal display device having the same, and a manufacturing method. A first ESD organic TFT, a second ESD organic TFT, a third ESD organic TFT each have a gate electrode, a source electrode and a drain electrode in which the source electrode and drain electrode of the first and second ESD organic TFTs and the gate electrode of the third ESD organic TFT are electrically connected. The gate electrode and the source electrode of the first ESD organic TFT are electrically connected to a first array line and the gate electrode and the drain electrode of the second ESD organic TFT are electrically connected to a second array line. The source electrode of the third ESD organic TFT is electrically connected to a data line or a gate line and the drain of the third ESD organic TFT are electrically connected to a common voltage line.