Abstract:
A mobile terminal and a method of controlling a mobile terminal are provided. A depth level of a stereoscopic graphic object using binocular parallax is controlled according to a user's usage pattern, and displaying of the stereoscopic graphic object is controlled according to various events such as various input signals.
Abstract:
A mobile terminal and a method for converting a display mode thereof are disclosed. The mobile terminal performs a first display action for three-dimensionally displaying a part of a image in a first zone of an entire display zone and two-dimensionally displaying the other part of the image in a second zone as a gesture externally input for conversion between two-dimensional display and three-dimensional display is recognized, and performs a second display action subsequently to the first display action for three-dimensionally displaying a part of the image in a third zone of the entire display zone and two-dimensionally displaying the other part of the image in a fourth zone.
Abstract:
A charge transferor of a solar cell, which collects and transfer charges generated from a semiconductor substrate, includes at least one electrode collecting the charges; and at least one collector transferring the charges collected by the at least one electrode, the at least one collector being included in at least one collector region on the substrate, wherein the at least one collector region in a first direction comprises at least one deletion portion where the at least one collector is not formed.
Abstract:
A mobile terminal capable of performing updating on an application and a control method thereof are disclosed. The mobile terminal includes: a checking unit configured to check status information of the mobile terminal in relation to updating of an application; a detection unit configured to detect an application in which an update event has occurred, on the basis of the status information of the mobile terminal; and a controlled configured to perform updating on the application detected by the detection unit.
Abstract:
A solar cell according to an embodiment of the invention includes a substrate configured to have a plurality of via holes and a first conductive type, an emitter layer placed in the substrate and configured to have a second conductive type opposite to the first conductive type, a plurality of first electrodes electrically coupled to the emitter layer, a plurality of current collectors electrically coupled to the first electrodes through the plurality of via holes, and a plurality of second electrodes electrically coupled to the substrate. The plurality of via holes includes at least two via holes having different angles.
Abstract:
A terminal and a method of controlling the terminal are provided. The method of controlling a terminal receives a touch input while performing real-time communication, and transmits the input data to another party's terminal. Therefore, while performing real-time communication with another party, an operation of user may be transmitted to another party's terminal. Further, after the operation of the user is transmitted to another party's terminal, operation of another party may be fed back from another party's terminal.
Abstract:
A solar cell and a solar cell module including a plurality of solar cells are discussed. The solar cell according to an embodiment includes a substrate of a first conductive type, an emitter layer of a second conductive type opposite the first conductive type disposed on the substrate, a plurality of first electrodes electrically connected to the emitter layer, a second electrode electrically connected to the substrate, a first current collector electrically connected to the plurality of first electrodes, and a second current collector electrically connected to the second electrode. The second current collector includes a plurality of second electrode current collectors electrically connected to the second electrode, and a current collector connector for connecting the plurality of second electrode current collectors to one another.
Abstract:
A mobile terminal and a method of controlling an image display thereof are disclosed. A display module for a mobile terminal as disclosed herein may include a display for displaying an image that includes one or more objects, a user input interface to receive an input to change the image between a 2D display and a 3D display, and a controller configured to change the displayed image between the 2D display and the 3D display based on the received input. The controller may control the display to sequentially display one or more intermediate images in order to gradually change an extent in which at least one of the one or more objects is perceived to protrude or recede into the display during the change in the displayed image.
Abstract:
A mobile terminal and controlling method thereof are disclosed, by which a holography user interface is provided. The present invention includes a controller, a holography storing medium configured to record an interference pattern generated by interference of light, a holography output module configured to output a 1st holography image attributed to diffraction between the light applied to the holography storing medium and the interference patter under the control of the controller, and a sensing unit configured to detect a plurality of notification signals, wherein if the sensing unit detects at least one of a plurality of the notification signals in the course of outputting the 1st holography image, the controller controls a 2nd holography image to be outputted together with the 1st holography image to indicate that the at least one notification signal is detected.
Abstract:
A mobile terminal and a method for controlling the operation of the same are provided. In the method, a screen including a preview image of a camera is displayed on a display module. Then, a preview window is set in a region of the screen and a predictive image of a three-dimensional (3D) stereoscopic image, which can be generated using images of a subject corresponding to the preview image, is displayed on the preview window. Thus, when images are captured to obtain a 3D stereoscopic image, the user can easily operate the camera using such a 3D stereoscopic image preview function.