Abstract:
An active matrix electroluminescence display device and a method for fabricating the same, whereby damage caused by UV light rays during the fabrication process can be prevented, are disclosed. The active matrix electroluminescence display device includes a plurality of transistors formed on a substrate having an emissive area and a non-emissive area defined thereon, an insulating layer formed on the substrate and the thin film transistors, a metallic protective layer formed on the insulating layer of the non-emissive area, a first electrode formed on the insulating layer of the emissive area, an electroluminous layer formed on the first electrode, and a second electrode formed on the electroluminous layer.
Abstract:
Disclosed are an organic EL(electroluminescence) display panel and a fabrication method thereof. The auxiliary electrode is formed to alternate but be overlapped with the pattern of the first electrode with a predetermined area so as to increase the pixel area as much as the overlapped area. Therefore, the present invention improves an opening ratio of the organic EL device. And, the present invention requires no additional step of forming an insulating layer for increasing an opening ratio, thereby saving a product cost for the fabrication of the organic EL device as well as being advantageous in fabrication efficiency. The present invention includes a transparent substrate, a first electrode formed on the transparent substrate, an auxiliary electrode overlapped with the first electrode in part so as to be connected to the first electrode, an organic light-emitting layer formed on the first electrode at the pixel, and a second electrode formed on the organic light-emitting layer so as to cross with the first electrode.
Abstract:
An organic EL display device is disclosed, which is fabricated in a tape automated bonding (TAB) method. The organic EL display device includes a driving part; a display panel including a substrate, a plurality of first and second electrodes formed on the substrate in a matrix type; and first and second lines having different lengths for being alternately arranged, and respectively applying signals from the driving part to the first and second electrodes; and a connecting part including a third line for electrically connecting the first and second lines to the driving part.
Abstract:
A flat panel display device and fabrication method thereof are provided. The device includes a lower electrode area formed on a substrate and defining luminescent pixels, at least one auxiliary pattern formed on at least one edge area of the substrate so as to be separated from the lower electrode area, and an insulating layer formed on an area excluding the luminescent pixels so as to at least partially overlap with the at least one auxiliary pattern, thereby improving device performance and endurance by forming an insulating layer having a desirable shape.
Abstract:
A panel of an organic electro-luminescence (EL) device and a method for manufacturing the same is disclosed, in which it is possible to decrease a load in a scan driver (driving chip for the scan) and a pixel, thereby improving reliability of a driving driver and the device. Also, the number of the scan and data drivers (driving chip for the data) decreases, and the number of COF (chip on flexible printed circuit) bonding, chip bonding for connecting the driving chip to each electrode line, decreases, thereby decreasing a manufacturing price.
Abstract:
Flat display panel including a plurality of data lines arranged in one direction, a plurality of scan lines arranged perpendicular to the data lines, and luminous pixels at cross points of the data lines and the scan lines, wherein at least one scan line forms one group of scan lines, to form a plurality of groups of scan lines in total, luminous pixels on odd numbered groups of scan lines are connected to the first data line electrically, and luminous pixels on even numbered groups of scan lines are connected to the second data line electrically.
Abstract:
Disclosed is a thin film deposition apparatus for depositing a thin film on a display panel including a deposition source having a groove in one surface wherein the groove is filed with a thin film material to be deposited on the panel, a heater applying heat to the deposition source so as to sublimate the thin film material, and a mask loaded on the deposition source so as to cover the groove of the deposition source, the mask having a plurality of holes to adjust a deposition quantity of the thin film material deposited on the panel.
Abstract:
Organic EL device including a plurality of data electrode lines on a substrate, a plurality of scan electrode lines perpendicular to the data electrode lines, and an organic EL layer between the plurality of data electrode lines and the plurality of scan electrode lines, wherein each of the data electrode lines is patterned, and divided into three electrode lines, for scanning three pixel groups at a time.
Abstract:
Mask for fabricating a large sized display panel, wherein a main frame having a plurality of holes is fabricated, and sub-masks are fitted in the holes in the main frame relevant to a size, and forms of patterns to be fabricated, thereby eliminating sagging and shadowing, and being suitable for fabricating large sized, or mass production of panels.
Abstract:
An organic electroluminescence display panel and a method for fabricating the same are disclosed, wherein a line resistance is reduced and an adhesion between a glass substrate and a seal-cover is enhanced. The method includes forming an indium-tin-oxide strip being a transparent electrode, so as to apply an anode onto a glass substrate, forming a counter electrode in a grid form, so as to have a width smaller than that of the indium-tin-oxide strip, forming a first insulating layer and a barrier rib, serially forming an electroluminous layer and a cathode strip, and adhering a seal-cover to the glass substrate by using a sealant.