Abstract:
The present invention includes a user input unit, 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 pattern under the control of the controller, and a sensing unit configured to detect a plurality of recognition based events, wherein if at least one holography function corresponding to each of a plurality of the recognition based events is previously designated via the user input unit and a 1st event among a plurality of the recognition based events is detected via the sensing unit, the controller controls the 1st holography image to be outputted in accordance with a 1st holography function corresponding to the 1st event.
Abstract:
The present disclosure relates to a mobile terminal and a 3D object control method thereof for controlling the depth or rotation of a 3D object using a 3D manipulation portion displayed around the 3D object. According to the present invention, a circular- or ring-shaped 3D manipulation portion may be touched to intuitively control the rotation and enlargement/reduction of the 3D object, thereby providing usefulness and convenience for the user, capable of editing the 3D object while directly viewing the transformed form and depth of the 3D object.
Abstract:
A mobile terminal and controlling method thereof are disclosed, by which a content sharing between a mobile terminal and a call counterpart is facilitated in the course of making a phone call in-between. The present invention includes a wireless communication unit configured to perform a communication with an external terminal device while the external terminal is currently in a phone call with a call counterpart, a touchscreen configured to display a content list of contents to share with the call counterpart, and a controller to control the touchscreen, wherein in response to receiving a user input to request a sharing of at least one content in the content list, the controller to control a request, to the external terminal device, to share the sharing requested content with the call counterpart.
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; at least one first electrode on the emitter layer and electrically connected to the emitter layer; a passivation layer on the substrate, the passivation layer including a plurality of exposing portions to expose respective portions of the substrate; and an electrode conductive layer on the passivation layer, the electrode conductive layer including a plurality of second electrodes electrically connected to the respective plurality of exposing portions, wherein in each of the plurality of exposing portions, an area of an exposed surface of the substrate is greater than an area of a virtual interface that is coplanar with an interface between the substrate and the passivation layer and which is located over the exposed surface.
Abstract:
A mobile terminal including a display unit configured to display at least a first 3D object at a first 3D depth level and a second 3D object at a second 3D depth level that is different than the first 3D depth level; and a controller configured to receive a first selection action on the first 3D object and a second selection action on the second 3D object image, to convert the second 3D depth level of the second 3D object to match the first 3D depth level of the first 3D object based on the first and second selection actions, and to control the display unit to display the first and second 3D objects at the first 3D depth level.
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 mobile terminal including a wireless communication unit configured to wirelessly communicate with at least one other terminal; a touchscreen configured to display information and receive touch inputs; a sensor unit configured to detect a gravity characteristic of the mobile terminal; and a controller configured to output a user-settable gravity sensitivity threshold option for setting a gravity detected sensitivity of the sensor unit, to receive a selection signal indicating a selection of a first gravity sensitivity threshold, to determine the mobile terminal is in a state of falling when the detected gravity characteristic of the mobile terminal is less than or equal to the selected first gravity sensitivity threshold, and to automatically execute a predetermined function mapped to the determined falling state.
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 photovoltaic module comprises a solar cell module including a plurality of solar cells; an inverter to convert DC voltage supplied from the solar cell module into AC voltage and to output the AC voltage; and a screen to generate an electric field based on the AC voltage, the screen comprising multiple electrode patterns that can receive AC voltage and being separated from each other. Based on the above, for example, foreign substance such as dust, snow, ice, etc., on the front surface of a photovoltaic module may be removed.