Abstract:
The display device according to the embodiment includes a substrate; a first assembly wiring and second assembly wiring alternately arranged on the substrate and spaced apart from each other; a first insulating layer disposed between the first assembly wiring and the second assembly wiring and having different first and second thicknesses; a planarization layer disposed on the first assembly wiring and the second assembly wiring and having a first opening; and a light emitting device disposed inside the first opening, wherein a first electrode overlaps the first assembly wiring and the second assembly wiring, wherein the first electrode is configured to be electrically connected to either the first assembly wiring or the second assembly wiring.
Abstract:
The display device according to the embodiment may include a substrate, a first planarization layer containing the first opening on the substrate, a first assembly wiring and a second assembly wiring arranged spaced apart from each other inside the first opening and on the first planarization layer, a second planarization layer covering a portion of the first assembly wiring and the second assembly wiring and including a second opening, a light emitting device disposed inside the second opening, wherein the first electrode overlaps the first assembly wiring and the second assembly wiring, and an insulation layer covering the first assembly wiring or second assembly wiring placed inside the first opening Insulation layer covering the first assembly wiring or second assembly wiring placed inside the first opening, and the first electrode is bonded to one of the first assembly wiring and the second assembly wiring.
Abstract:
The manufacturing method of the display device according to the embodiment includes a step of self-aligning the light emitting device inside the opening of the planarization layer overlapping the first assembly wiring and the second assembly wiring, a step of sequentially forming a conductive layer and an organic layer on a planarization layer and a light emitting device, a step of ashing the organic layer to remove the second part on the first part of the organic layer, and a step of forming a contact electrode by etching the conductive layer corresponding to the second part, wherein the contact electrode is in contact with the side of the first semiconductor layer below the light emitting device.
Abstract:
A display device and a method of manufacturing the same according to an embodiment include a substrate, first assembly wiring and second assembly wiring alternately arranged on the substrate and overlapping each other, an insulating layer disposed between the first assembly wiring and the second assembly wiring, a planarization layer disposed on the first assembly wiring and the second assembly wiring, and having a first opening, and a light emitting device disposed inside the first opening, wherein the first electrode overlaps the first assembly wiring and the second assembly wiring. And, the first electrode is bonded to one of the first assembly wiring and the second assembly wiring.
Abstract:
A flat panel display having a low reflective black matrix and a method for manufacturing the same are provided. The flat panel display includes a substrate having an open area and a non-open area; a hazy layer disposed in the non-open area on the inner surface of the substrate; a black matrix stacked on the hazy layer; a driving element disposed in the non-opening area; and a display element disposed in the open area and driven by the driving element.
Abstract:
Disclosed are a mobile terminal and controlling method thereof. The present invention includes a a display comprising at least one screen and configured to operate in either a first mode or a second mode and a controller, characterized in that the controller is further configured to detect a command to turn off the display, control the display to activate a first region of a screen, deactivate a second region of the at least one screen and display information related to an application on the activated first region in response to the command when the display is operated in the first mode, wherein the information comprises at least first information related to a parameter of a function performed by the application or second information related to progress of the function and control the display to deactivate the entire at least one screen in response to the command when the display is operated in the second mode.
Abstract:
A mobile terminal and controlling method thereof is provided. The mobile terminal includes a display having at least one screen and operating in either a first mode or a second mode and a controller detecting a command to turn off the display, controlling the display to activate a first region of a screen, deactivate a second region of the screen and display information related to an application on the activated first region in response to the command when the display is operated in the first mode, the information including at least first information related to a parameter of a function performed by the application or second information related to progress of the function and control the display to deactivate the entire screen in response to the command when the display is operated in the second mode.
Abstract:
A mobile terminal according to an embodiment of the present invention comprises: a display unit, a touch screen for sensing a drag and touch input; and a controller for controlling the operation of the mobile terminal, wherein the controller controls to display a 2D image of a first home screen on the display unit, senses a drag touch input from a first point to a second point on the first home screen, convert the 2D image of the first home screen to a 3D image and displays the 3D image.