Abstract:
A refrigerator may include a body including a first insulating panel having a first coupler and a second insulating panel having a second coupler, wherein the first coupler and second coupler are coupled together, a compartment inside the body, a door to open and close the compartment, and a cooling device to cool the compartment, wherein the first insulating panel, first coupler, second insulating panel, and second coupler are configured so that, to couple the first coupler and second coupler together, the first insulating panel and first coupler are movable in a first direction toward the second insulating panel and second coupler so that the first coupler and second coupler become engaged, and, after the first coupler and second coupler are engaged, the first insulating panel and first coupler are movable in a second direction perpendicular to the first direction so that the first coupler and second coupler become coupled.
Abstract:
Provided are a capacitor and a semiconductor device including the same. The capacitor includes a first electrode, a dielectric layer over the first electrode, a second electrode between the first electrode and the dielectric layer, and a third electrode over the dielectric layer and in contact with the dielectric layer such that the dielectric layer is between the second electrode and the third electrode. A thermal expansion coefficient of the first electrode may be greater than a thermal expansion coefficient of the dielectric layer, and a work function of the second electrode may be higher than a work function of the first electrode.
Abstract:
A docking station including a docking unit providing a traveling path for a robotic vacuum cleaner, having a mounted mopping cloth, that enters the docking unit; a mopping cloth separator disposed on the docking unit and configured to automatically separate the mounted mopping cloth from the robotic vacuum cleaner while the robotic vacuum cleaner is at a first position along the traveling path; and a mopping cloth coupler disposed on the docking unit and configured so that, after the mounted mopping cloth is separated from the robotic vacuum cleaner, and the robotic vacuum cleaner thereafter moves to a second position along the traveling path, the mopping cloth coupler supplies a mopping cloth to be mounted to the robotic vacuum cleaner from below the traveling path while the robotic vacuum cleaner is at the second position.
Abstract:
A docking station for a cleaner including a docking unit including an upper surface forming a travel route along a first direction for a robot cleaner to move upon to enter the docking station; and a floorcloth separator including a protrusion, and configured so that the protrusion protrudes from a predetermined area of the upper surface of the docking unit such that a free end of the protrusion is defined along a second direction different from the first direction, and while a robot cleaner with a floorcloth attached thereto travels on the travel route along the first direction, at least a portion of the protrusion is inserted between the robot cleaner and the attached floorcloth to separate the attached floorcloth from the robot cleaner.
Abstract:
An electronic device including a shielding structure is provided. The electronic device includes a housing, a first board disposed in an inner space of the housing and including a first electrical element and a first ground layer, a second board disposed in the inner space to be spaced apart from the first board and including a second electrical element, and an interposer disposed between the first board and the second board so as to electrically connect the first board and the second board to each other. The second board includes a first surface facing the first board, a second surface facing away from the first surface, insulating layers disposed between the first surface and the second surface, first slits formed at a predetermined interval in a first conductive area disposed in a first insulating layer among the insulating layers, and second slits formed at a predetermined interval in a second conductive area disposed in a second insulating layer between the first insulating layer and the second surface. The first slits are disposed at a position where the plurality of first slits do not overlap the plurality of second slits in case the second board is viewed from above.
Abstract:
A secure element (SE) coupled to a system-on-chip (SoC) includes an internal memory, virtual secure direct memory access (DMA) circuitry configured to perform a secure operation using an external memory connected to the SoC in association with the internal memory, and SE interface circuitry configured to output secure data and a write request generated by the virtual secure DMA circuitry to the SoC, the secure data being stored in the external memory.
Abstract:
The present disclosure relates to a 5G or pre-5G communication system to be provided to support a higher data transfer rate beyond a 4G communication system such as LTE. The present invention relates to a method and device which detects performance degradation of a cell in relation to wireless communication and analyzes the degraded performance. More specifically, an analysis device for analyzing performance degradation of a cell in a wireless communication system according to an embodiment of the present invention comprises: a data retrieval unit for acquiring, from a cell, first data measured through wireless communication of the cell, a compression/decompression unit for acquiring second data by applying the first data to a particular model in which reference data related to an indicator for the performance of wireless communication is set, and a performance degradation determination unit for determining whether the performance of the cell is degraded, based on third data derived from the difference between the first data and the second data, wherein the compression/decompression unit acquires the second data by compressing and decompressing the first data according to the reference data.
Abstract:
A method for setting a password for operating an application of a user device is provided. The method includes requesting the user device to input a password of the application, and requesting the user device to select device binding information of the user device to associate with the password. The device binding information is obtained from one or more of contact information, a photo, an e-mail, a file, or an address.
Abstract:
An electronic device may include thin antennas disposed proximate a rear or front surface. An antenna structure may be disposed at a portion of a first surface or a second surface of a non-metal structure within the device, and is electrically connected to the metal structure. The antenna structure may comprise: a first bonding layer attached to a portion of the first surface or the second surface, where an opening is formed in the first bonding layer at a location of the metal structure; a antenna element pattern arranged on the first bonding layer and electrically connected to the metal structure through the opening; a second bonding layer arranged on the antenna element pattern; and an insulation layer arranged on the second bonding layer.