Abstract:
An electroluminescence display device can include a substrate having a display area and a non-display area; a plurality of pixels in the display area, each including a light emitting diode having a pixel driving electrode, a light emitting layer and a common electrode, and an encapsulation layer on the light emitting diode, a through-hole in the display area, and a hole-trench between the pixels and the through-hole. Also, the hole-trench includes a bottom surface defined as a lowest surface of the hole-trench, an upper surface defined as an uppermost surface of a layer having an entrance of the hole-trench, and a sidewall defined as a side surface, and at least one of the light emitting layer and the common electrode disposed between the bottom surface of the hole-trench and the encapsulation layer, on the upper surface of the hole-trench, and disconnected at the sidewall of the hole-trench.
Abstract:
A display device and a testing method thereof are disclosed, in which a defect caused by an overflow of an organic film constituting an encapsulation film can be detected. The display device comprises a substrate including a display area where pixels are arranged, and a pad area including a plurality of pads formed outside the display area; an encapsulation film covering the display area, including at least one inorganic film and at least one organic film; a dam arranged between the display area and the pad area; and a conductive testing line arranged between the dam and the pad area and not electrically connected with another conductive line or electrode arranged on the substrate.
Abstract:
Disclosed is an organic light emitting display device that includes a foreign matter compensation layer on an inorganic layer. A passivation layer and a second inorganic layer are in direct contact with each other at the edge of the substrate. Accordingly, the number of interfaces between the inorganic layers is decreased. Thus, even if the organic light emitting display device is bent, a moisture permeation path, which may be unexpectedly formed, can be minimized.
Abstract:
An electroluminescence display device can include a substrate having a display area and a non-display area adjacent with the display area, where the display area includes a plurality of pixels for displaying images. The display device can further include a thin film transistor on the substrate, a light emitting diode electrically connected with the thin film transistor and including a pixel driving electrode, a light emitting layer and a common electrode. The display device can further include an encapsulation layer disposed on the light emitting diode, where the encapsulation layer can include a first inorganic layer, a second inorganic layer on the first inorganic layer, and an organic layer between the first inorganic layer and the second inorganic layer. The display device can further include a through-hole disposed in the display area and penetrating the substrate and the encapsulation layer.
Abstract:
The present disclosure relates to a foldable display apparatus. A foldable display includes: a display layer disposed on the top surface of a flexible substrate; an encapsulation layer covering the display layer; and a back plate disposed under the bottom surface of the flexible substrate, the back plate includes: a reference plane; a first folding plane disposed at one side of the reference plane; a second folding plane disposed at another side of the reference plane; a first bending part disposed between the reference plane and the first folding plane and having a first bending radius; and a second bending part disposed between the reference plane and the second folding plane and having a second bending radius, wherein the first folding plane is thinner than the reference plane.