Abstract:
An array substrate includes a base substrate which includes a display area and a peripheral area adjacent to the display area, a plurality of fan-out lines arranged in the peripheral area to receive a driving signal from an exterior source, at least one fan-out line among the plurality of fan-out lines arranged on a different layer from a layer on which remaining fan-out lines of the plurality of fan-out lines are arranged, a plurality of signal lines arranged in the display area to receive the driving signal from the plurality of fan-out lines and a pixel array arranged in the display area to receive the driving signal from the plurality of signal lines.
Abstract:
A display device includes an insulating substrate, a switching TFT formed on the substrate that receives a data voltage and that includes a first semiconductor layer, a driving TFT formed on the substrate that includes a control terminal connected to an output terminal of the switching TFT and a second semiconductor layer including polysilicon and a halogen material, an insulating layer formed on the switching TFT and the driving TFT, a first electrode formed on the insulating layer and electrically connected to an output terminal of the driving TFT, an organic light emitting layer formed on the first electrode, and a second electrode formed on the organic light emitting layer.
Abstract:
A display substrate includes respective pluralities of gate lines, data lines, switching elements, storage lines, pixel electrodes, and an organic insulation layer. The gate lines and the data lines define a plurality of unit pixels. The storage lines are respectively formed adjacent to the respective drain electrodes of the respective switching elements of respective rows of the unit pixels. The organic insulation layer has a hole that is formed within the area of each of the unit pixels and that extends from a contact area formed at a portion of the corresponding drain electrode of the pixel to a portion corresponding to the storage line thereof. This arrangement enables the marginal area needed to prevent mismatch of the hole in the areas of the contact area and the storage line to be reduced, thereby increasing the aperture ratio of the display.
Abstract:
The present invention provides a liquid crystal display including a first insulation substrate, gate lines disposed on the first insulation substrate, data lines insulated from and crossing the gate lines, thin film transistors connected to the gate lines and the data lines, and pixel electrodes divided into a plurality of regions by first domain dividers and connected to the thin film transistors. The first domain dividers include a plurality of first notches and the width of each first domain dividers increases or decreases in a region between the first notches.
Abstract:
A thin film transistor substrate includes a base substrate, a gate electrode, a gate insulating layer, a surface treating layer, an active layer, a source electrode and a drain electrode. The gate electrode is formed on the base substrate. The gate insulating layer is formed on the base substrate to cover the gate electrode. The surface treating layer is formed on the gate insulating layer by treating the gate insulating layer with a nitrogen-containing gas to prevent leakage current. The active layer is formed on the surface treating layer to cover the gate electrode. The source electrode and the gate electrode that are spaced apart from each other by a predetermined distance are formed on the active layer.
Abstract:
A thin film transistor (TFT) substrate comprises: a plastic insulation substrate; a first silicon nitride layer with a first refractive index, formed one surface of the plastic insulation substrate; and a TFT comprising a second silicon nitride layer formed with a second refractive index smaller than the first refractive index on the first silicon nitride layer. Thus, the present invention provides a TFT substrate wherein there is reduced a problem in that thin films are lifted from a plastic insulation substrate.
Abstract:
A TFT array panel for an LCD includes a substrate, a first signal line and a second signal line that cross each other on the substrate, a TFT that is connected to the first signal line and the second signal line, and a pixel electrode that is connected to the TFT. Here, at least one of the two signal lines includes a first conductive layer containing molybdenum, a second conductive layer that is formed on the first conductive layer and contains copper, and a third conductive layer that is formed on the second conductive layer and contains a conductive oxide.