摘要:
An organic light emitting diode (OLED) display includes a substrate defined with a plurality of pixel areas, a heating circuit structure disposed on the substrate, and a plurality of OLEDs corresponding to each pixel area. The heating circuit structure includes two conductive lines not connected to each other, a plurality of heating lines electrically connected to the two conductive lines and covering portions of each pixel areas, and a ground electrode.
摘要:
A top emission organic light emitting display with a reflective layer therein is provided. The reflective layer, a first electrode, an organic layer, and a transparent second electrode are subsequently formed on the substrate. When a bias voltage is applied to the first electrode and the transparent second electrode, the organic layer emits radiation. The reflective layer reflects radiation from the organic layer toward the transparent second electrode, and therefore the emission efficiency of the OLED increases.
摘要:
An active matrix organic electro-luminescence device array comprising first sub-pixel regions and second sub-pixel regions defined by scan lines and data lines is provided. Each first sub-pixel region has a first light emitting device, a first control unit and a second control unit therein while each second sub-pixel region has a second light emitting device therein. The first control unit is electrically connected to the first light emitting device for driving the first light emitting device. The second control unit is electrically connected to the second light emitting device for driving the second light emitting device. The second light emitting device having poor light emitting efficiency per unit area is disposed in the second sub-pixel region for increasing its light emitting area so that the first and second light emitting devices may have uniform brightness when drive with the same driving current.
摘要:
A driving device for an active matrix OLED display is disclosed, wherein a pixel electrode is directly contact the substrate, and the pixel electrode is connected electrically to the drain of the thin-film transistor through a drain electrode. Such a device decreases a leakage current and increases emission efficiency. A method of manufacturing the driving device is also disclosed.
摘要:
A light-emitting device and the fabrication method thereof. A substrate is provided. A plurality of active elements are formed on the substrate, defining a plurality of pixel areas. A color filter is formed on the pixel areas. The surface of the color filter is planarized to reduce roughness. An electrode is formed on the color filter. An light-emitting layer is formed on the electrode. A second electrode is formed on the light-emitting layer.
摘要:
A mirror liquid crystal display. A plurality of pixel regions, each includes a transparent region and a non-transparent region. A plurality of mirror electrode layers are formed on the corresponding non-transparent regions, with the mirror electrodes connected with each other. A plurality of transmissive electrode layers on the corresponding transparent regions are isolated from the mirror electrode layers. A voltage is coupled to the mirror electrode layers to control liquid crystals over the non-transparent region.
摘要:
This invention relates to a method for fabricating a color filter by using the theory of surface tension. The surface tension is very small when hydrophobic material is on hydrophobic surface and the surface tension is very large when hydrophobic material is on hydrophilic surface. It avoids to blurry with the printed hydrophobic color materials and can get fine color filter with excellent color reappearance when the surface of pixel area is a hydrophobic surface and the surface of non-pixel area is a hydrophilic surface. This invention comprises: forming a dielectric layer on substrate; forming a plurality of scan lines and a plurality of data lines on substrate to define a plurality of pixel areas and a non-pixel area; forming a hydrophobic surface on the plurality of pixel areas; forming a hydrophilic surface on the non-pixel area; and using ink-jet printing method to print the hydrophobic color materials on the plurality of areas.
摘要:
The present invention provides a structure of a resistor comprising: a substrate having an interfacial layer thereon; a resistor trench formed in the interfacial layer; at least a work function metal layer covering the surface of the resistor trench; at least two metal bulks located at two ends of the resistor trench and adjacent to the work function metal layer; and a filler formed between the two metal bulks inside the resistor trench, wherein the metal bulks are direct in contact with the filler.
摘要:
An electronic device display may have a color filter layer, a thin-film-transistor layer, and a layer of liquid crystal material. The display may have a display cover layer such as a layer of glass or plastic. Adhesive may be used to attach the upper polarizer to the display cover layer. The thin-film transistor layer may have a substrate with upper and lower surfaces. Thin-film-transistor circuitry may be formed on the upper surface. A display driver integrated circuit may be mounted to the lower surface or a flexible printed circuit and may be coupled to the thin-film-transistor circuitry using wire bonding wires. Through vias that are formed through the thin-film-transistor layer substrate may be used in coupling the thin-film-transistor circuitry to the display driver integrated circuit.
摘要:
Disclosed embodiments relate to signal routings for use in a display device. The display device may include a liquid crystal display (LCD) panel having multiple pixels arranged in rows and columns. Each of the pixels includes a pixel electrode and a thin-film transistor (TFT). The LCD may include a conductive signal routing portion having a first metallic layer, a second metallic layer formed directly on the first metallic layer, and a third metallic layer formed directly on the second metallic layer. The first metallic layer may include a contact terminal. The second metallic layer when combined with the third metallic layers may decrease the resistance of the third metallic layer.