Abstract:
A display device includes a display panel, a panel driving circuit, and a control circuit. The panel driving circuit receives image data and converts the image data into output driving voltages for the display panel. The image data include original red image data, original green image data, and original blue image data. When the display device enters an eye protection mode for protecting eyes of a user, the original blue image data is modified by the panel driving circuit to reduce the gray levels of the original blue image data.
Abstract:
A manufacturing method of a thin film transistor includes hard-baking and etching processes for a stop layer. Two through holes are exposed and developed in a photoresistor layer, in which a distance between the two through holes is substantially equal to the channel length of the thin film transistor. Further, the etching stop layer is dry-etched to obtain the thin film transistor having an expected channel length.
Abstract:
A thin film transistor includes a gate electrode, a gate insulating layer, a channel layer, an etching stop layer, two contact holes, a source, and a drain. The gate insulating layer covers the gate electrode. The channel layer is arranged on the gate insulating layer corresponding to the gate electrode. The etching stop layer covers the channel layer and includes an organic stop layer and a hard mask layer, the hard mask layer is located on a surface of the organic stop layer opposite to the channel layer to enhance a hardness of the organic stop layer. The two contact holes pass through the etching stop layer. The source connects to the channel via one contact hole, and the drain connects to the channel via the other contact hole.
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:
An apparatus for compensating an image of a display, includes a light incident surface, a light emitting surface, and a plurality of light guiding channels. An area of the light emitting surface is greater than an area of the light incident surface. The plurality of light guiding channels is independent from each other, each light guiding channel extends from the light incident surface to the light emitting surface, and light from the light incident surface is extended to the light emitting surface by the light guiding channels. The present invention further discloses a method for manufacturing the same.
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 display includes a display panel, an image compensating portion, and a backlight module. The display panel includes a main display region and a periphery display region outside the main display region. The image compensating portion corresponding to the periphery display region includes a plurality of light guiding channels. The backlight module provides lights to the display panel. The backlight module comprises a plurality of first light collecting module. The first light collecting module focuses lights emitted from a first direction on a first light collecting axis parallel with an axis of the light guiding channel. The first direction is perpendicular to a first plane parallel with the display panel.
Abstract:
A display device with a color conversion layer providing predetermined colors for full-color display. The color conversion layer includes a plurality of color conversion units. Each color conversion unit includes a quantum dot film. The color conversion unit is configured to receive light beams and converts the light beams to primary colors to emit. Each color conversion unit defines a plurality of areas, and each primary color corresponds to one of the areas of the color conversion unit.
Abstract:
An organic light emitting device includes a substrate and an organic compound layer sandwiched between a pair of electrodes composed of an anode and a cathode. The organic compound layer includes at least two active layers. A melting point of each of the two active layers gradually decreases along a direction from the anode to the cathode.
Abstract:
A thin film transistor (TFT) array substrate includes a first substrate, a plurality of TFTs formed on the first substrate, a color filter layer covered on the TFTs, and a plurality of pixel electrodes corresponding to the TFTs. The color filter layer is directly formed on the TFTs. The color filter layer includes a plurality of photoresist units. Each of the pixel electrodes is to electrically connected to a drain of the TFT via an opening.