Abstract:
Disclosed is a liquid crystal display having an improved characteristic of viewing angle by modifying a pixel electrode and a common electrode construction respectively. In a liquid crystal display, upper and lower substrates are opposed to each other and spaced from each other by a predetermined distance. A liquid crystal layer is interposed between the upper and the lower substrates. A pixel electrode is formed at a portion of an inner surface of the lower substrate corresponding to a pixel area, and the pixel electrode has an uneven surface including first convex portions and first concave portions. A common electrode is formed at a portion of an inner surface of the upper substrate corresponding to the pixel electrode, so as to form an electric field together with the pixel electrode. The common electrode has an uneven surface including second convex portions and second concave portions.
Abstract:
A method of fabricating a thin film transistor includes the steps of forming an active layer on an insulating substrate; forming an insulating layer and a first metal layer on the active layer; forming a photoresist pattern for forming a gate electrode on the metal layer; etching the metal layer and the insulating layer by using the photoresist pattern as a mask, and respectively forming a gate electrode and a gate insulating layer to expose a part of the active layer; forming an amorphous silicon layer on the resultant whole surface of the substrate; forming a second metal layer on the amorphous silicon layer; patterning the second metal layer and the amorphous silicon layer by a photolithographic process to form an offset layer and a source/drain electrode; and carrying out a lift-off process to remove the photoresist pattern, and exposing the surface on the gate electrode.
Abstract:
An array substrate for a multi-vision liquid crystal display device includes a display region; and first to fourth non-display regions surrounding the display region, wherein the first and second non-display regions are opposite to each other and each include a data pad portion connected to a data line, and the third and fourth non-display regions are opposite to each other and each include a gate pad portion connected to a gate line, and wherein the display region is divided into two or four active regions with a seam region between the adjacent active regions, and the seam region has a first width.
Abstract:
A liquid crystal display module is disclosed, which facilitates to improve luminance of a liquid crystal panel by enhancing a light transmittance, the liquid crystal display module comprising a liquid crystal panel with plural unit pixels, wherein each unit pixel includes red(R), green(G), blue(B), and white(W) sub-pixels, for converting incident light into colored light; a light source for supplying light to the liquid crystal panel; a light-guiding plate for changing a horizontal direction of incident light from the light source into a vertical direction; and a polarizing plate including a polarization area for polarizing the light outgoing from the liquid crystal panel, and a hole for transmitting the light therethrough.
Abstract:
Disclosed is a liquid crystal display module that improves luminance of a liquid crystal panel by enhancing a light transmittance. The liquid crystal display module comprises a liquid crystal panel with plural unit pixels for converting incident light into colored light, wherein each unit pixel includes red (R), green (G), blue (B), and white (W) sub-pixels; a light source for supplying light to the liquid crystal panel; an optical member for guiding light emitted from the light source toward a frontal direction of the liquid crystal panel; and a polarizing means including a polarization area for polarizing the light outgoing from the liquid crystal panel, and a hole for transmitting the light therethrough.
Abstract:
A display device includes a liquid crystal display panel that varies a phase of polarized light via liquid crystal molecules, and having first and second polarizing plates respectively disposed on opposite sides of the liquid crystal display panel; a first light guide plate including a surface having a plurality of recessed patterns, to reflect light input through a side surface of the first light guide plate, and to output two-dimensional light towards the liquid crystal display panel; and a second light guide plate including a surface having a plurality of recessed patterns, the plurality of recessed patterns of the second guide plate facing the plurality of recessed patterns of the first light guide plate.
Abstract:
Disclosed is an LCD with improved image retention for increased reliability and screen quality. The LCD includes lower and upper substrates provided with predetermined patterns, respectively, and positioned to face each other with a predetermined distance; a liquid crystal layer interposed between the lower and upper substrates; and alignment layers positioned between the lower substrate and the liquid crystal layer and the upper substrate and the liquid crystal layer, respectively, to determine the initial arrangement of liquid crystals. The alignment layers have bubbles formed therein to reduce the capacitance generated by the alignment layers and the difference in level of the lower substrate for improved image retention.
Abstract:
A transport stream, apparatus and method provide a value added service during a channel changing period in a digital multimedia broadcasting system, and a broadcast receiver. The transport stream includes program data configured by one or more broadcast programs and additional information corresponding to the broadcast programs; program map tables (PMTs) having detailed information of the broadcast programs and service information of the additional information; and a program association table (PAT) having packet identifiers of the PMTs corresponding to the broadcast programs.
Abstract:
A gap filler for transmitting satellite broadcasting data received from a broadcasting satellite to a mobile receiver in a satellite broadcasting system is provided and method thereof. In the gap filler, a satellite tuner demodulates the received satellite broadcasting signal and outputs the demodulated satellite broadcasting signal, a frame constructer forms frames by modulating the demodulated satellite broadcasting signal, and inserting a gap filler ID into a control channel frame, and a radio processor transmits the frames received from the frame constructer at a radio frequency.
Abstract:
A transparent display device for enhancing optical transmissivity in a transparent mode, is discussed. The transparent display device may include a liquid crystal panel; a light source disposed at one side of a lower portion of the liquid crystal panel to emit light; a first polarizing plate for polarizing the light emitted from the light source; a light guide plate disposed at a lower portion of the liquid crystal panel to totally reflect the light polarized to an axis by the first polarizing plate to a lateral surface thereof and supply to the liquid crystal panel, and transmit natural light entered from a lower direction therethrough; and a second polarizing plate disposed at an upper portion of the liquid crystal panel to control the amount of polarized light passing through the liquid crystal panel.