Abstract:
A liquid crystal display device includes a plurality of signal lines on a substrate, a plurality of pad electrodes on the substrate, each one of the plurality of pad electrodes connected to one of the plurality of signal lines, at least one insulating film on the plurality of pad electrodes, the at least one insulating film having a plurality of contact holes to expose portions of the pad electrodes, and a conductive film electrically connected to each of the plurality of pad electrodes through the contact holes.
Abstract:
A thin film transistor array substrate includes a gate line formed on a substrate, a data line formed on the substrate intersecting with the gate line to define a pixel region, a thin film transistor formed at the intersection of the gate line and the data line, the thin film transistor including gate electrode formed on the substrate, a gate insulating layer formed on the gate electrode and the substrate, a semiconductor layer formed on the gate insulating layer, an ohmic contact layer on the semiconductor layer, and a source electrode and a drain electrode on the ohmic contact layer, and a transparent electrode material within the pixel region and connected to the drain electrode of the thin film transistor, wherein the gate insulating layer includes a gate insulating pattern underlying the data line and the transparent electrode material, and covering the gate line.
Abstract:
A method for fabricating a liquid crystal display panel is provided. A thin film transistor array is formed on a lower substrate, and a color filter array is formed on an upper substrate. The thin film transistor array has gate lines, data lines, data pads, thin film transistors and pixel electrodes. After the upper substrate and lower substrates are bonded together and cut into cells, the gate pads and the data pads at ends of the gate lines and the data lines on the lower substrate of the bonded substrates are exposed.
Abstract:
A method of fabricating a liquid crystal display device includes forming a gate line, a gate pad, and a gate electrode on a first substrate, forming a gate insulating layer on the gate line, the gate electrode, and the gate pad, forming an active layer on the gate insulating layer, forming an ohmic contact layer on the active layer, forming a data line, a data pad, and source and drain electrodes on the ohmic contact layer, forming a pixel electrode contacting the drain electrode, forming a passivation layer on the substrate including the pixel electrode, forming a common electrode on a second substrate, attaching the first and second substrates such that the pixel electrode and the common electrode are facing into each other, injecting a liquid crystal material between the first and second substrates, and exposing the gate pad and the data pad without forming contact holes.