Abstract:
A commodity deposit device includes delivery box sets, and a control panel configured to control the plurality of delivery box sets, wherein each of the plurality of delivery box sets includes a plurality of delivery boxes stacked, the control panel includes a controller configured to control opening and closing of the plurality of delivery boxes, and a display configured to output storage status information of the plurality of delivery boxes, and each of the plurality of delivery boxes includes a cabinet with a storeroom defined therein, a door rotatably connected to the cabinet and configured to open and close the storeroom, a commodity information recognizer installed at one side of an inside of the storeroom and configured to recognize an encryption code indicated on a commodity received into the storeroom, and a door lock configured to lock or unlock the door in response to a command transmitted from the controller.
Abstract:
A method for controlling and managing a front door refrigerator using an application installed in a recording medium, according to an embodiment of the present invention, comprises: a step in which a user logs into a front door refrigerator control application installed in a recording medium including a mobile device, thereby allowing a main screen including menu display regions to be displayed on a display unit of the mobile device; and a step in which a storage information confirmation menu is selected from among a plurality of execution menus displayed in the menu display regions, wherein, when the storage information confirmation menu is selected, storage information of a product stored in the front door refrigerator is output to the display unit of the mobile device.
Abstract:
The present invention relates to a water soluble coating material comprising: a solubilizer containing an acrylic polymer or a glycol-based polymer; and molybdenum-containing inorganic particles, wherein the content of the inorganic particles is in the range of 7.5 to 50 parts by weight per 100 parts by weight of the polymer contained in the solubilizer.
Abstract:
A mobile terminal and controlling method thereof are disclosed, by which a prescribed function can be performed using a more intuitive gesture and voice input. The present invention includes a display unit, a microphone, a sensing unit configured to detect a gesture, and a controller configured to convert voice data, received based on the microphone, to a text in a first language, detect, using the sensing unit, a first gesture, and in response to detecting the first gesture, translate the text in the first language to text in a second language.
Abstract:
A mobile terminal including a body; a camera; a touchscreen provided to the front side of the body and having a plurality of corners; and a controller configured to operate the camera to capture an image upon reception of a first drag input applied to a first corner of the touchscreen and dragged to a center of the touchscreen.
Abstract:
A mobile terminal and controlling method thereof are disclosed, by which facilitating management of contents saved in a clipboard. The present invention includes a touchscreen, a clipboard memory, and a controller configured to control the touchscreen to display a screen associated with a first application, save, in the clipboard memory, content designated by a user displayed on the screen associated with the first application, and control the touchscreen to display the saved content together with a screen associated with a second application, in response to receiving a command to switch from displaying the screen associated with the first application to displaying the screen associated with the second application.
Abstract:
Disclosed is a mobile terminal using a display unit and a control method thereof. The mobile terminal includes a controller which displays first screen information corresponding to a first application on a first display region disposed on an inner surface when the mobile terminal is open, and converts the first screen information into second screen information when a folding event is generated. Further, the controller converts the first screen information or the second screen information into third screen information which is different from the second screen information when an angle between first and second regions of the first display region corresponding to the folding event is less than a reference value.
Abstract:
A portable electronic device including a flexible display unit; an elastically-deformable supporting member disposed below the flexible display unit and configured to be deformed together with the flexible display unit; a pressing member disposed below the supporting member and configured to change shape; and a controller electrically-connected to the pressing member and configured to control the pressing member to change shape and press against the pressing member to deform the supporting member together with the flexible display unit.
Abstract:
A refrigerator includes a main body defining a storage compartment, a door, an ice making device, a water tank disposed for supplying water into the ice making device, and an ice bin to receive and store ice pieces made in the ice making device. The ice making device includes an ice making tray having ice making chambers configured to be filled with water for making the ice pieces, and an ejector extending from an upper central portion of the ice making tray in a longitudinal direction of the ice making tray to pass through both ends of the ice making tray. The ejector is configured to be maintained in a fixed state during water supply, ice making, and ice separation processes, and the ice making tray is configured to rotate at an angle of about 360° in one direction with respect to the ejector.
Abstract:
Disclosed is a method for producing transition metal oxide fine particles having a size smaller than several micrometers (μm), and more preferably, having a size of several hundred nanometers (nm). To this end, the method for producing transition metal oxide fine particles of the present invention comprises dissolving a transition metal oxide in a strongly basic aqueous solution, and titrating same with a strongly acidic aqueous solution, thereby precipitating transition metal oxide fine particles.