Abstract:
An organic electro-luminescence display device includes a thin film transistor on a first substrate, where the thin film transistor has a drain region and a common electrode connected to the drain region. An organic electro-luminescence diode resides on a second substrate, where the organic electro-luminescence diode includes a spacer covered with a diode electrode. First and second sealant materials reside at a periphery of the first and second substrates, where the first sealant material surrounds the thin film transistor and the organic electro-luminescence diode, and the second sealant material surrounds an outer perimeter of the first sealant material. The first and second substrates are bonded together, such that the common electrode of the thin film transistor contacts the diode electrode of the organic electro-luminescence diode. The bonding process is carried out by sequentially sealing the first sealant material and the second sealant material.
Abstract:
A portable image capture device, program and method for controlling and managing data captured thereby. A device program residing on the portable image capture device generally associates data processing attributes with image files generated for image data captured by the portable image capture device. In some embodiments, the device program associates data processing attributes related to prompts for pre-defined image data with corresponding image files generated in response to the prompts. The device program, and attribute and prompt data therefor are created on a data processing system and are transferrable therefrom to the portable image capture device.
Abstract:
A portable image capture device, program and method for controlling and managing data captured thereby. A device program residing on the portable image capture device generally associates data processing attributes with image files generated for image data captured by the portable image capture device. In some embodiments, the device program associates data processing attributes related to prompts for pre-defined image data with corresponding image files generated in response to the prompts. The device program, and attribute and prompt data therefor are created on a data processing system and are transferrable therefrom to the portable image capture device.
Abstract:
An array substrate for a liquid crystal display (LCD) device includes a substrate including a display region and a non-display region, a driving circuit in the non-display region, at least a first thin film transistor (TFT) in the display region, a storage capacitor in the display region including a first storage electrode, a second storage electrode, and a third storage electrode, wherein the first storage electrode includes a first semiconductor layer and a counter electrode, and the third storage electrode includes a first transparent electrode pattern and a first metal pattern, a gate line and a data line crossing each other to define a pixel region in the display region, and a pixel electrode connected to the first TFT in the pixel region.
Abstract:
A shift register includes a first node controller disposed at one side of the non-display region, the first node controller controlling a signal state of a first node, at least one pull-up switching device disposed at the one side of the display region, the pull-up switching device outputting an output pulse according to the signal state of the corresponding first node and supplying it to a corresponding gate line, a second node controller disposed at the other side of the display region, the second node controller controlling a signal state of a second node, and a first pull-down switching device disposed at the other side of the display region, the first pull-down switching device outputting a discharging voltage according to the signal state of the second node and supplying it to the other side of the corresponding gate line.
Abstract:
A liquid crystal display includes: a color filter substrate; and a plurality of pixels formed in a matrix form on the color filter substrate, each pixel including a first red sub-pixel, a first green sub-pixel, a first blue sub-pixel, a pair of second red sub-pixel and third green sub-pixel, a pair of second green sub-pixel and third blue sub-pixel, and a pair of second blue sub-pixel and third red sub-pixel.
Abstract:
A tiled display device includes a combination of multiple display devices to form a larger tiled display device. The larger tiled display device minimizes the boundaries between in the multiple display devices to improve the active area of the display. A partition wall between display devices may be configured to reduce the distance between the combined display devices.
Abstract:
A top emission OLED includes a driving TFT including a channel region and source and drain electrodes. A power supply, a ground line, and a light emitting diode are electrically coupled to the TFT and an auxiliary electrode is electrically coupled to the ground line and to the source electrode of the driver transistor. The auxiliary electrode resides between the light emitting diode and the channel region of the driver transistor and is configured to shield the channel region of the driver transistor from an electric field generated by the light emitting diode.
Abstract:
A liquid crystal display device driven by a N-line inversion driving method, in which N odd horizontal lines and N even horizontal lines are alternately driven, wherein N is a natural number larger than 1, includes a liquid crystal panel including pixels, gate and data drivers providing gate driving signals and data signals to the pixels, a timing controller receiving control signals and video signals from an outer system and controlling the gate and data drivers according to the control signals, wherein the timing controller changes an order of the video signals every frame and supplies the video signals to the data driver, a frame memory unit connected to the timing controller and storing the video signals of each frame, and a common voltage generator providing a common voltage to the liquid crystal panel.
Abstract:
An LCD device includes plurality of gate lines and data lines crossing each other to define pixel regions on a substrate. A thin film transistor (TFT) resides at a crossing portion of the gate lines and the data lines and a pixel electrode is electrically connected with the TFT. The TFT includes a gate electrode, a gate insulation layer on the gate electrode and a semiconductor layer on the gate insulation layer. A portion of the data line and the semiconductor layer form a composite layer between adjacent pixel electrodes in which a line width of data line is the same as a line width of semiconductor layer. A method of fabricating the LCD device includes etching a passivation layer using a mask pattern and etching the semiconductor layer using the mask pattern and a portion of the data line as an etch mask to form the composite layer.