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 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.
Abstract:
A solar cell and a method of manufacturing the same are disclosed. The solar cell includes a substrate of a first conductive type; an emitter layer of a second conductive type opposite the first conductive type on the substrate; a first electrode electrically connected to the emitter layer; a passivation layer on the substrate; a second electrode conductive layer on the passivation layer, the second electrode conductive layer including at least one second electrode electrically connected to the substrate through the passivation layer; and a second electrode current collector electrically connected to the second electrode conductive layer.
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 of a second conductive type opposite the first conductive type on the substrate, a first conductor electrically connected to the emitter layer, a second conductor electrically connected to the first conductor through the via hole, and a third conductor electrically connected to the substrate. The third conductor is electrically separated from the second conductor. A portion of the first conductor and a portion of the second conductor are positioned inside the via hole.
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 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 of a second conductive type opposite the first conductive type formed in the substrate, at least one first electrode formed on the emitter layer, at least one current collector positioned opposite the at least one first electrode with the substrate interposed between the at least one first electrode and the at least one current collector and is electrically connected to the at least one first electrode through the at least one via hole, and a second electrode that is spaced apart from the at least one current collector and is electrically connected to the substrate. A plurality of uneven portions are formed in the at least one via hole.
Abstract:
Provided is a battery electrolyte comprising an electrolyte salt, an electrolyte solvent and a compound producing chemical reaction products with the exception of water through a chemical reaction with an acid (H+), and a secondary battery comprising the same. The battery electrolyte according to the present invention can achieve improved high-temperature storage characteristics and the life characteristics of the battery, by using a compound decreasing a concentration of HX (X=F, Cl, Br or I) through a chemical reaction with HX (X=F, Cl, Br or I) which is present in the battery and therefore causes deterioration of the battery performance.