Abstract:
The present disclosure provides a display unit including: a flexible display formed to be elastically deformable; and a flexible portion comprising a flexible frame coupled to the rear surface of the flexible display, wherein the flexible frame is configured to have first holes repeatedly formed therethrough such that the flexible frame can be bent maximally to a first curvature; and a rigid portion disposed on at least one side of the flexible portion, wherein the flexible frame is made of a titanium material.
Abstract:
A mobile terminal is provided. The mobile terminal includes a front case, a flat panel having a front side facing the front case and a back side, a main printed circuit board supported by the back side of the flat panel, the main circuit printed circuit board having a back side, a battery having a first surface located at a first side thereof and a second surface located at a second side thereof, the battery being located at the back side of the main printed circuit board to form a separation gap between the first curved surface and the back side of the main printed circuit board and at least a portion of an electronic component being mounted on the main printed circuit board and extending into the separation gap. An apparatus for forming a curved battery for the mobile terminal is also provided.
Abstract:
A flexible display unit is disclosed including a flexible display, and a flexible frame coupled to the flexible display, the flexible frame including a first rigid portion, a second rigid portion, and a flexible portion located between the first and second rigid portions and configured to permit the frame to be bent, the flexible portion including a first region including a first plurality of holes having a first size, and a second region including a second plurality of holes having a second size, wherein the first size is greater than the second size, the first region is positioned closer to a center axis of the flexible frame than the second region, and an area of the first plurality of holes within a portion of the first region is greater than an area of the second plurality of holes within a portion of the second region having the same area.
Abstract:
A flexible frame for an electronic device is disclosed, the frame including a flexible portion located between a first rigid portion and a second rigid portion and configured to permit the frame to be bent, wherein the flexible portion includes a first region including a first plurality of holes having a first size, and a second region including a second plurality of holes having a second size, wherein the first size is greater than the second size, the first region is positioned closer to a center axis of the flexible frame than the second region, and an area of the first plurality of holes within a portion of the first region having a particular area is greater than an area of the second plurality of holes within a portion of the second region having the same particular area.
Abstract:
A mobile terminal includes first and second bodies rotatably coupled to each other, first and second display units formed on the first and second bodies, respectively, and a moving unit configured to allow the first and second bodies to rotate relative to each other between a folded configuration that one surfaces of the first and second bodies are overlaid by each other and an unfolded configuration that the first and second bodies are unfolded from each other, wherein the first and second display units are disposed on the other surfaces of the first and second bodies, respectively, to be externally exposed in the folded configuration, and wherein at least one of the first and second bodies relatively rotates with a rotation center thereof being moved by the moving unit such that the first and second display units form an obtuse angle with each other in the unfolded configuration.
Abstract:
Disclosed is a mobile terminal comprising a flexible display unit, which includes a deformation area that may be deformed to a folded state and an unfolded state by an external force; a body portion supporting one area of the flexible display unit on a front surface; a deformation support unit supporting the display unit, having a first living hinge unit corresponding to the deformation area; and a folding unit built in the body portion, guiding deformation of the display unit by means of the external force.