Abstract:
A foldable display device having an excellent folding characteristic without image quality deterioration on a folding portion is provided. The foldable display device includes a flexible display panel and a cover window positioned outside the flexible display panel and protecting the flexible display panel from an external impact, wherein the cover window includes a folding region where concave grooves are formed.
Abstract:
A display mirror assembly for a vehicle is disclosed. The assembly comprises a display device defining a display surface having a display perimeter elongated along a length. The display device is in communication with a primary PCB. The primary PCB comprises a first side and an opposing second side. The first side is directed toward the display device. The assembly also comprises a heat sink in connection with the second side of the primary PCB and extending substantially coextensive with the length display perimeter.
Abstract:
The present invention discloses a lighting module using an organic light emitting device (OLED) and particularly, a lighting module using the OLED which stably couples a power supply terminal to an electrode pad which is formed on a glass substrate of an OLED illumination plate.
Abstract:
The present invention provides a flexible display and a method for preparing the same. The method comprises the steps of: providing a first substrate; forming a bonding agent layer on a first surface of the first substrate; providing a second substrate; attaching the surface of the first substrate, on which the bonding agent layer is formed, to the second substrate, wherein the adhesive force between the bonding agent layer and the second substrate is lower than 5 N/20 mm-wide bonding agent layer; forming a display device body on a second surface of the first substrate; and peeling off the first substrate, on which the display device body is formed, from the second substrate, and obtaining the flexible display.
Abstract:
A connecting device for connecting a substrate unit and a chip unit includes a first flexible connection unit having at least one first wire extending from a first end to a second end on a surface of the substrate unit, and a rigid connection unit having at least one second conductive wire for electrically connecting to the first conductive wire. The chip unit is sequentially and electrically connected to the substrate unit first via the rigid connection unit and then via the flexible connection unit.
Abstract:
A display device includes a printed circuit board (“PCB”), a ground pad disposed on the PCB, a display panel including an upper substrate and a lower substrate, a touch sensor including a touch pattern directly disposed on an upper surface of the upper substrate, a main flexible PCB including a touch line which connects the upper substrate and the PCB to each other to transmit a touch signal generated from the touch sensor to the PCB, an upper ground pattern disposed on the upper substrate, and an upper ground line which connects the upper ground pattern and the ground pad to each other through the main flexible PCB.
Abstract:
A light-emitting device having the quality of an image high in homogeneity is provided. A printed wiring board (second substrate) (107) is provided facing a substrate (first substrate) (101) that has a luminous element (102) formed thereon. A PWB side wiring (second group of wirings) (110) on the printed wiring board (107) is electrically connected to element side wirings (first group of wirings) (103, 104) by anisotropic conductive films (105a, 105b). At this point, because a low resistant copper foil is used to form the PWB side wiring (110), a voltage drop of the element side wirings (103, 104) and a delay of a signal can be reduced. Accordingly, the homogeneity of the quality of an image is improved, and the operating speed of a driver circuit portion is enhanced.
Abstract:
A display device and a smart watch are disclosed. In one aspect, the display device includes a front display panel configured to display a front image in a front direction and having an edge at the perimeter that is curved. The display device also includes a side display panel that is curved and configured to display a side image in a side direction conforming to the edge of the front display panel. The display device further includes a driver circuit board connected to the front and side display panels and configured to respectively apply first and second signals, corresponding to image data, to the front and side display panels.
Abstract:
An array substrate including a display area and a non-display area surrounding the display area. The non-display area includes a pad portion including one or more first pads that each have a parallelogram shape.
Abstract:
According to embodiments of the disclosure, an electronic device package may include a wire layer and a rigid element. The wire layer includes a first surface and a second surface opposite to each other, and the second surface of the wire layer has at least one coarse structure. A portion of the second surface having the coarse structure has a greater roughness than another portion of the second surface. The rigid element is disposed on the first surface of the wire layer, wherein a stiffness of the rigid element is greater than a stiffness of the wire layer and a projection area of the coarse structure on the first surface of the wire layer overlaps an edge of the rigid element.