Abstract:
A mobile terminal is switched into a specific battery power saving mode based upon a usage pattern of the terminal so as to control battery power saving items individually or by each group. A method for switching a battery power saving mode of the mobile terminal includes analyzing a usage pattern of the terminal, automatically switching the terminal mode into a power saving mode according to the analyzed usage pattern, and controlling a displayed screen with respect to each event in the switched power saving mode.
Abstract:
The present disclosure relates to a mobile terminal and control method thereof for allowing a touch input to a three-dimensional stereoscopic image. The method disclosed herein may include displaying a three-dimensional stereoscopic image including a plurality of objects, detecting the location of a detection target in a detection region corresponding to the three-dimensional stereoscopic image, selecting a first object based on the location of the detection target, moving the first object along the movement of the detection target in a state that the first object is selected, and generating at least one object between the first and the second object when a distance between the first and the second object is increased in one direction due to the movement of the first object.
Abstract:
Disclosed is a mobile terminal and a method for controlling the same. The mobile terminal includes a body having a wireless communication module, a display unit disposed on one surface of the body, displaying one or more icons thereon, and configured to have a touch input thereon, and a controller configured to compensate for a control command corresponding to a touch, based on at least one of a touch duration, a touch point and a change of the touch point, when the touch on the display unit is detected during a change of a position or a shape of the icon.
Abstract:
A mobile terminal including a touch pad; a first display unit including a transparent display; a second display unit including a non-transparent display disposed below the transparent display; and a controller configured to selectively control the first and second display units to operate in a dual-operation mode by controlling at least a portion of the first display unit to be transparent and not display information and controlling the second display unit to display information that can be viewed through the at least the portion of the first display unit that is transparent.
Abstract:
A mobile terminal and a method of controlling the mobile terminal are provided. The mobile terminal includes a display configured to display a display area including one or more items, and a controller configured to set one or more virtual areas adjacent to the display area, wherein the one or more virtual areas have different attributes from an attribute of the display area, and configured to change and display at least one item selected from the one or more items depending on an attribute of at least one virtual area of the one or more virtual areas.
Abstract:
A mobile terminal is switched into a specific battery power saving mode based upon a usage pattern of the terminal so as to control battery power saving items individually or by each group. A method for switching a battery power saving mode of the mobile terminal includes analyzing a usage pattern of the terminal, automatically switching the terminal mode into a power saving mode according to the analyzed usage pattern, and controlling a displayed screen with respect to each event in the switched power saving mode.
Abstract:
Disclosed are a mobile terminal and a method for controlling a 3D multi-angle view thereof. Multi-angle views of a 3D image captured by a plurality of cameras are displayed, switched (converted) and selected according to a touch input. And, a selected angle view of the 3D image undergoes a capturing or a recording. While appreciating different-angle views of a 3D image (broadcast image) captured by a plurality of cameras, a desired angle view of the 3D image may be played, recorded and stored with using a user interface. This may enhance a user's convenience.
Abstract:
A solar cell and a method of manufacturing the same are disclosed. The solar cell includes a substrate of a first conductive type having at least one via hole; an emitter layer only on at least a portion of the via hole and at least one selected from a group consisting of an incident surface and side surfaces of the substrate, the emitter layer having a second conductive type opposite the first conductive type; at least one first electrode on the incident surface, the first electrode being electrically connected to the emitter layer; a second electrode connected to an opposite surface to the incident surface; and at least one first electrode current collector on the opposite surface, the at least one first electrode current collector being insulated from the second electrode and being electrically connected to the at least one first electrode through the via hole.
Abstract:
A mobile terminal and an operation control method thereof are provided. The operation control method includes displaying a display screen including a first group of objects corresponding stereoscopic three-dimensional (3D) images and a second group of objects corresponding two-dimensional (2D) images on a display module; receiving a 3D indication input for distinguishing the first group of objects from the second group of objects; and displaying the first group of objects differently from the second group of objects in response to the received 3D indication input so that the first group of objects can be distinguished from the second group of objects. Since the objects corresponding to stereoscopic 3D images are displayed differently from the objects corresponding to 2D images, it is possible for a user to instantly determine whether an image corresponding to a given object is a stereoscopic 3D image or a 2D image.
Abstract:
A solar cell module is discussed. The solar cell module includes a plurality of solar cells each including a plurality of first current collectors and a plurality of second current collectors, a first protective layer positioned on incident surfaces of the solar cells, a transparent member positioned on the first protective layer, and a conductive pattern part positioned on non-incident surfaces of the plurality of solar cells. The conductive pattern part includes a first pattern having a plurality of first protrusions connected to first current collectors of one solar cell and a second pattern having a plurality of second protrusions connected to second current collectors of the one solar cell. The plurality of first current collectors and the plurality of second current collectors are positioned on a surface of each solar cell on which light is not incident.