Abstract:
Disclosed herein is a mobile terminal including a first frame, a second frame, a slide frame movable with respect to the second frame in a first direction or a second direction, a flexible display including a third region bent to surround the second frame, and a rolling plate attached to a rear of the flexible display. The second frame includes a side portion at an end thereof facing in a third direction perpendicular to the first direction, and a slide rail formed on the side portion. The rolling plate includes a plurality of support bars extending in the third direction and arranged in the first direction, and a slide hook protruding from an end of each of the support bars and movably inserted into the slide rail. The terminal may maintain the display in a flat state by preventing the display from being separated when the second frame is moved.
Abstract:
Disclosed is a watch-type mobile terminal, and a watch-type mobile terminal system having the same. The watch-type mobile terminal includes: a terminal body configured to be mountable to a mounting device having a contact pin, and having a first case and a second case which form an inner space of the terminal body by being coupled to each other; a printed circuit board disposed at the inner space; and a coupling member configured to couple the first case and the second case to each other by passing through the printed circuit board, and electrically connected to the printed circuit board, wherein when the terminal body is mounted to the mounting device, the coupling member contacts the contact pin to thus electrically-connect the printed circuit board and the mounting device to each other.
Abstract:
A mobile terminal including a light guide plate; a plurality of light sources disposed on at least one side of the light guide plate; a display positioned on a front surface of the light guide plate; and a controller configured to control the display to operate in one of operation states including a first state, in which all of the plurality of light sources are activated such that an entire portion of the display is illuminated, and a second state, in which at least one light source corresponding to a partial portion of the display among the plurality of light sources is selectively activated such that the partial portion of the display is illuminated, perform an operation in accordance with a first touch input applied to the partial portion of the display in the second state, and not perform an operation in accordance with a second touch input applied to a remaining portion excluding the partial portion of the display in the second state.
Abstract:
A display panel comprising a light guide plate; a main light source configured to emit light from a first lateral surface of the light guide plate in a first direction; a sub-light source configured to emit light from a second lateral surface vertical to the first lateral surface of the light guide plate in a second direction perpendicular to the first direction; and a liquid crystal panel provided in a front surface of the light guide plate and configured to output image information.
Abstract:
There is disclosed a mobile terminal including a frame comprising a front surface in which a display unit is loaded, a window disposed on a front surface of the display unit; and a front case configured to cover a predetermined area of the window, wherein the window includes a first window layer comprising a front surface exposed outside, a second window layer larger than the first window layer and comprising a first area of a front surface disposed to face a rear surface of the first window layer and a rear surface facing a front surface of the display unit, and an optical clear adhesive (OCA) provided between the first window layer and the second window layer, and the front case covers a second area arranged around the first area of a front surface of the second window layer, to maintain transparency of a window arranged in a front surface thereof, with an improved rigidity, and to reduce damage to the window.
Abstract:
Disclosed is a video camera, including a body housing, a camera module mounted on a front side of the body housing, a camera cover selectively opening/closing the camera module, and a cover slider moving the camera cover slidably, the cover slider including a fixed frame fixed to the body housing, a slide rail coupled to the fixed frame, a slide frame moving along the slide rail, and a connecting part fastening the slide rail and the camera cover together.
Abstract:
Disclosed is a video camera, including a body, a camera module installed in the body, and a stand located under the body to support, the stand including a leg bracket coupled to the body, a first leg rotatably coupled to the leg bracket through a first hinge, and a second leg rotatably coupled to an end portion of the first leg through a second hinge, wherein an angle and height of the body are adjustable by adjusting angles of the first and second hinges. Accordingly, the video camera can be installed not only on a floor, but also on a monitor or a wall, thereby being easily installed in various places.
Abstract:
A display panel comprising a light guide plate; a main light source configured to emit light from a first lateral surface of the light guide plate in a first direction; a sub-light source configured to emit light from a second lateral surface vertical to the first lateral surface of the light guide plate in a second direction perpendicular to the first direction; and a liquid crystal panel provided in a front surface of the light guide plate and configured to output image information.
Abstract:
Provided is a mobile terminal including a graphic memory that includes multiple graphic memory areas in which different pieces of image data are stored, and that provides pieces of first image data that are stored in one or several graphic memory areas that are selected according to a control command; a display unit that is switchable between an activated state and an inactivated state, and to which an image that corresponds to the first image data is output, in the inactivated state; a controller that generates the control command, based on the size of the image, and that controls the display unit in such a manner that the image which corresponds to the first image data is output; and a power source unit that applies a power to a graphic memory area that is selected from among the multiple graphic memory areas, according to the control channel.
Abstract:
The present disclosure relates to a method for fabricating a rear cover glass and a flexible display device including a first body, a second body configured to be movable relative to the first body, a flexible display disposed on a front surface of the first body and a rear surface of the second body and configured such that a size of an area exposed to the front surface of the first body and a size of an area exposed to the rear surface of the second body vary as the first body and the second body are moved relative to each other, and a rear cover glass mounted on the second body and disposed to cover at least a part of the rear surface of the second body.