Abstract:
A display device includes a first substrate, a flexible printed circuit, and a film. The flexible printed circuit is disposed on a first area of the first substrate. The film is disposed on the first substrate and the flexible printed circuit. The flexible printed circuit includes a second substrate, a pad area, and a dummy pad. The pad area comprises pads disposed on the second substrate. The pads extend in a first direction and are spaced apart from one another in a second direction crossing the first direction. The dummy pad is disposed on the second substrate. The dummy pad is spaced apart from the pad area.
Abstract:
A flexible display apparatus includes a main body, a rotation structure and a signal transfer portion. The main body includes a control circuit portion. The rotation structure includes a rotation body and a flexible display panel. The rotation body is capable of rotating about an axis extending in a first direction, and the flexible display panel is fixed to the rotation body. The signal transfer portion transfers a signal between the control circuit portion and the flexible display panel. A method of manufacturing the flexible display apparatus is also provided.
Abstract:
A flexible display apparatus includes a main body, a rotation structure and a signal transfer portion. The main body includes a control circuit portion. The rotation structure includes a rotation body and a flexible display panel. The rotation body is capable of rotating about an axis extending in a first direction, and the flexible display panel is fixed to the rotation body. The signal transfer portion transfers a signal between the control circuit portion and the flexible display panel. A method of manufacturing the flexible display apparatus is also provided.
Abstract:
A flexible touch sensing unit includes a substrate including a plane region and a bending region, a plurality of sensing electrodes disposed on the substrate, a plurality of sensing lines surrounding the plurality of sensing electrodes and electrically connected to the plurality of sensing electrodes, and a damage prevention layer disposed in the bending region. Cracks on the sensing electrodes and the sensing lines which are disposed in the bending region may be prevented by the damage prevention layer in the bending region. A resulting flexible display device using the flexible touch sensing unit may be thinner by omission of a flexibility enhancing layer.
Abstract:
Eyeglasses including a lens unit including a pair of lenses and a frame, a supporting unit supporting the lens unit, a camera mounted on the frame, a projector mounted on the frame and configured to project content on a screen, and a processor configured to control the camera and the projector. A method of controlling eyeglasses, including generating a first projector image to be projected on a screen by a projector mounted on the eyeglasses, obtaining a camera image from a camera mounted on the eyeglasses, and generating a first user input signal by analyzing the camera image.
Abstract:
A mobile device includes a flexible display panel, a supporting member at a back side of the flexible display panel, the supporting member supporting the flexible display panel, and an electro active polymer partially inserted in the supporting member, a shape of the electro active polymer being changed based on an input value inputted by a user.
Abstract:
A flexible display device and a method for controlling a display image are disclosed. In one aspect, the flexible display device includes a first display which has a flat shape and a second display which is disposed on either side of the first display and has a curved surface bent at a boundary between the first and second displays. The display further includes a controller which controls a screen of at least one of the first and second displays according to a user touch and/or a battery capacity.
Abstract:
An organic light emitting diode display is disclosed In one aspect, the display includes a display panel, a grid layer positioned on the display panel, wherein the grid layer includes a plurality of protrusions formed of a first protrusion and a second protrusion formed on a surface of the first protrusion, and a window positioned on the grid layer.
Abstract:
A mobile device according to example embodiments includes a display device including a flat display region having a flat shape and a curved display region having a curved shape, the curved display region being integrally formed with the flat display region, a sensing unit configured to detect a physical state of the mobile device, a context determining unit configured to determine a current context of the mobile device based on the physical state detected by the sensing unit, and to select one of the flat display region and the curved display region to be activated based on the current context, and a display controller configured to activate the selected one of the flat display region and the curved display region.
Abstract:
A flexible display device and a method for controlling a display image are disclosed. In one aspect, the flexible display device includes a first display which has a flat shape and a second display which is disposed on either side of the first display and has a curved surface bent at a boundary between the first and second displays. The display further includes a controller which controls a screen of at least one of the first and second displays according to a user touch and/or a battery capacity.