Abstract:
The disclosure provides a touch sensor layer and a display device. The display device includes a display module and a touch sensor layer. The display module includes a substrate. The touch sensor layer is disposed on the substrate and includes a plurality of touch sensor units defined by a plurality of first non-continuous conducting lines and a plurality of second non-continuous conducting lines cross over each other. A sensor electrode is defined by some of the plurality of touch sensor units connected together.
Abstract:
A method for forming a TFT includes providing a substrate, a gate electrode on the substrate, an electrically insulating layer on the substrate to totally cover the gate electrode, a channel layer on the electrically insulating layer, a first photoresist pattern on the channel layer, a metal layer on the electrically insulating layer, the channel layer and the first photoresist layer, and a second photoresist pattern on the metal layer. A middle portion of the metal layer is then removed to form a source electrode and a drain electrode and to expose the first photoresist pattern and a portion of the channel layer between the first and second photoresist patterns. The exposed portion of the channel layer is then processed to have its electrical conductivity be lowered to thereby reduce a hot-carrier effect of the channel layer.
Abstract:
A thin film transistor (TFT) array substrate of a liquid crystal display (LCD) panel includes a first substrate, a gate located on the first substrate, a gate insulation layer located on the first substrate and covers the gate and the first substrate, a source layer located on the gate insulation layer to correspond to the gate, an etching stopping layer located on the source layer, and a source and a drain located on the etching stopping layer. The etching stopping layer is made of color photoresist.
Abstract:
A thin film transistor includes a gate, a source, a drain, a channel layer, and a shielding layer. The shielding layer, the source, and the drain are located on a same layer. The shielding layer is located on the channel layer and is between the source and the drain to prevent light from being transmitted to the channel layer.
Abstract:
A display apparatus includes a display panel, a display driving module, a backlight module, and a backlight driving module. The backlight module includes a plurality of illumination units. The backlight driving module includes a driving circuit, a plurality of switch units, and a plurality of detecting units. Each of the switch units connects to exactly one of the illumination units, and each of the detecting units connects to exactly one of the illumination units and two of the illumination units simultaneously. When the illumination unit connected to the switch unit corresponding to the detecting unit is damaged, the detecting unit controls the connected switch unit to be turned off for cutting off an electrical connection between the driving circuit and the illumination unit corresponding to the connected switch unit, and the remaining illumination units continue to emit light.
Abstract:
A thin film transistor (TFT) includes a gate, a drain, a source, an insulating layer, a metal oxide layer, and an etch stopper layer. The metal oxide layer includes a source area, a drain area, and a channel area. The source is electrically coupled to the source area and the drain is electrically coupled to the drain area. Oxygen ions are implanted into the channel area via a surface treatment process to make an oxygen concentration of the channel area be greater than an oxygen concentration of each of the source area and the drain area.
Abstract:
The present invention provides an OLED panel. The OLED panel includes a substrate and a plurality of walls formed on the substrate. The substrate and the walls define a plurality of containing areas. Each of the containing areas is corresponding to each of a plurality of sub-pixels. The sub-pixels are separated from each other by the walls. Each of the sub-pixels includes one of emitting materials formed in one of the containing areas. At least one of the containing areas corresponding to the sub-pixel includes a first partition. The height of the first partition is lower than the walls.
Abstract:
A method manufactures a color filter including a transparent substrate, a black matrix and a resin layer having at least two colors of resin patterns. During an exposing process of the color filter, a particular photo mask is used to expose from a side of the transparent substrate adjacent to the black matrix. At a same time, the transparent substrate is exposed from another side of the transparent away from the black matrix without using the photomask.
Abstract:
Method for manufacturing a thin film transistor liquid crystal display is provided. A substrate is provided. A gate electrode, a source electrode, a drain electrode, and a passivation film are formed on the substrate in sequence. The passivation film has a contact hole to expose a part of the drain electrode. A conductive layer is formed by coating nano metal material on the passivation film and in the contract hole from which the drain electrode is exposed. A pixel electrode is formed by patterning the conductive layer.
Abstract:
A touch display panel is capable of operating under a display period or a touch sensitive period. The touch display panel includes a touch sensitive electrode layer, a common electrode layer, and a display driving structure sandwiched between the touch sensitive electrode layer and the common electrode layer. The display driving structure includes a plurality of first driving lines, a plurality of pixel electrodes, and a plurality of switch units respectively connected to a specified first driving line and a specified pixel electrode. A touch scan controlling signal is applied to the common electrode layer during the touch sensitive period, and a first compensated signal is applied to each of the first driving lines orderly in a first predetermined time interval, the common electrode layer cooperates with the touch sensitive electrode layer to detect touch operations on the touch display apparatus.