Abstract:
A liquid crystal display apparatus is disclosed. A plurality of pixel electrodes are arranged on a display region of a substrate in a matrix form having a plurality of column lines and a plurality of row lines. Each of a plurality of thin film transistors has a first current electrode connected to a corresponding one of the plurality of pixel electrodes. Each of a plurality of data lines is arranged between odd column line and even column line of a pair of the plurality of column lines and is connected to second current electrodes of thin film transistors which are coupled to odd column line and even column line of the pair. Each of a plurality of first gate lines is connected to gate electrodes of odd thin film transistors which are coupled to one of the plurality of row lines. Each of a plurality of second gate lines is connected to gate electrodes of even thin film transistors which is coupled to the one of the plurality of row lines. A data driving circuit is provided for driving the data lines. At least two gate driving circuits having a first gate driving circuit and a second gate driving circuit are provided, wherein the first gate driving circuit is connected to the plurality of first gate lines and the second gate driving circuit is connected to the plurality of second gate lines.
Abstract:
A method of manufacturing a wafer level package is disclosed. The method may include stacking an insulation layer over a wafer substrate; processing a via hole in the insulation layer; forming a seed layer over the insulation layer; forming a plating resist, which is in a corresponding relationship with a redistribution pattern, over the seed layer; forming the redistribution pattern, which includes a terminal for external contact, by electroplating; and coupling a conductive ball to the terminal. As multiple redistribution layers can be formed using inexpensive PCB processes, the manufacturing costs can be reduced, and the stability and efficiency of the process can be increased.
Abstract:
A method of detecting a touch position and a touch panel for performing the method are disclosed. In the above-mentioned method, a plurality of scan signals is sequentially supplied to a plurality of first sensor lines arranged in a first direction. Then, at least one of the scan signals is analyzed based on touch events, which is transferred from the first sensor lines to a plurality of second sensor lines arranged in a second direction substantially across to the first direction, and then at least one of touch positions is detected. Therefore, a plurality of scan signals is sequentially applied to the first sensor lines in the first direction, so that a plurality of touch events is simultaneously detected so that a plurality of touch positions may be detected.
Abstract:
A method for displaying data items in a mobile terminal includes receiving a user search request, automatically identifying data items which individually comprise the search request, and displaying a distinct number in association with each of the identified data items, wherein each of the identified data items are individually selectable responsive to a corresponding number input by a user.
Abstract:
A display device includes driving apparatus having first, second, third, and fourth gate drivers. The first and second gate drivers are connected to gate lines and are positioned on one side of the display device side by side. The third and fourth gate drivers are connected to gate lines and are positioned on the other side of the display device side by side. The first and third gate drivers apply the gate signal to the same gate line, and the second and fourth gate drivers apply the gate signal to the same gate line.
Abstract:
An array substrate includes a transparent substrate, pixel electrodes, switching devices, a data line, a gate line and a light blocking pattern. The light blocking pattern corresponding to a storage electrode is disposed on the transparent substrate, and the light blocking pattern blocks a light leaked from a space between the pixel electrodes. The pixel electrodes are spaced apart from the light blocking pattern by a first distance. The data line is spaced apart from the light blocking pattern by a second distance, and the data line is disposed under a region between the pixel electrodes. The data line is electrically connected to the source electrode, and the data line has a first width. The gate line is electrically connected to the gate electrode to turn on/off the switching devices. Therefore, a black matrix is not required, thereby enhancing an aperture ratio.
Abstract:
Provided is a mobile terminal comprises a camera module including an image sensor having a two-dimensional pixel array in which the number of pixels in a row direction is equal to the number of pixels in a column direction; an image processing unit that converts an electrical signal output from the image sensor into image data; and a display unit that displays the image data output from the image processing unit.
Abstract:
A dual side display includes reflection and transmission pixels for displaying an image on both sides of the display. A reflection film provided in a reflection pixel region is extended up to a transmission storage capacitor formation region of a transmission pixel such that the aperture ratio of the reflection pixel is enhanced. An upper storage electrode connected to a transmission storage line is formed between the reflection film and a lower storage electrode of the transmission storage capacitor to prevent a coupling phenomenon between the reflection film and the lower storage electrode and a resulting signal distortion.
Abstract:
Embodiments of methods and systems of the application can transmit data (e.g., voice) using a wireless LAN and a Bluetooth. One system embodiment can include a terminal device, an AP (access point) for communicating with the terminal device according to a first (e.g., wireless LAN) protocol by using a first frequency band among multiple frequency bands of a prescribed frequency band (e.g., ISM frequency band) and a headset for communicating with the terminal device according to a second (e.g., Bluetooth) protocol by using at least one frequency band of remaining frequency bands by excepting the first frequency band.
Abstract:
A method of fabricating a LCD device comprises preparing a substrate having a plurality of LCD panel regions within main exposure regions, performing a main exposure process at the LCD panel regions to define a non-exposure region between the main exposure regions; and performing a sub exposure process at the non-exposure region formed between the main exposure regions.