Abstract:
A shoe care apparatus includes a main body, a care room provided in the main body and configured to accommodate shoes, a machine room in the main body and configured to accommodate a heat pump device including an evaporator and a condenser, and a blower fan configured to allow air circulating through the care room and the machine room to be blown. The show care apparatus further includes a first circulation passage through which air discharged from the care room is supplied to the care room by passing through the evaporator and the condenser and a second circulation passage through which air discharged from the care room is supplied to the care room by passing through the evaporator and bypassing the condenser. The shoe care apparatus also including a first damper configured to open and close the second circulation passage.
Abstract:
An electronic apparatus includes a housing; a first structure disposed inside the housing and includes a first surface; a second structure including a second surface facing the one surface of the housing; and a flexible printed circuit board (FPCB) structure disposed inside the housing. The FPCB structure includes: an FPCB including at least one coil; a thermally conductive first layer, including a first portion partially overlapping the FPCB and disposed between the FPCB and the second surface, and a second portion extending from the first portion and partially overlapping the first surface; a second layer having a higher elasticity and tensile strength than the first layer and includes a third portion at least partially overlapping the second portion, and a fourth portion extending from the third portion and at least partially overlapping the first portion; and a third layer disposed between the third portion and the first surface.
Abstract:
Provided is a foldable electronic device. The electronic device may include: a foldable housing including: a hinge structure; a first housing structure including a first surface, a second surface, and a first side surface; and a second housing structure including a third surface, a fourth surface, and a second side surface, and foldable with the first housing structure with the hinge structure, wherein, in a folded state, the first side surface and the second side surface are aligned; a flexible display; first side keys including a first sensing panel reflecting a change in force applied to the first side surface; second side keys including a second sensing panel reflecting a change in force applied to the second side surface; and a sensor generating a signal based on a change in the force detected by the first sensing panel or the second sensing panel. It is possible to provide other embodiments.
Abstract:
Disclosed is an electronic device. The electronic device includes a sidewall structure that forms a surface of the electronic device and that includes a key area formed on the surface of the electronic device. The electronic device also includes an internal frame that is formed inside the electronic device and faces an inner surface of the sidewall structure. The electronic device further includes a sensor assembly disposed between the internal frame and the sidewall structure, at least part of the sensor assembly is aligned with the key area. The sensor assembly includes a sensor that senses a force applied to the key area, based on displacement of an inner surface of the key area. The sensor assembly also includes a support member having one surface supported on the sensor and an opposite surface supported on the internal frame.
Abstract:
Disclosed is an ice making device that is able to selectively make ices having different transparencies from each other. The ice making device includes: an ice making chamber including an ice making container to accommodate ice making water therein; a cooler configured to supply cool air to the ice making chamber to cool the ice making water; an ice making fan configured to circulate the supplied cool air; an ice making heater configured to supply heat to the ice making water when the ice making water is cooled; and a controller configured to control at least one of the cooling unit, the ice making fan and the ice making heater to adjust a rate of change of temperature of the ice making container to generate one of two types of ice having different transparency. The ice making device may adjust the rate of change of temperature of the ice making container to have the transparency desired by a user.
Abstract:
An electronic device including an indicator is provided. The electronic device includes a first housing structure including a first face oriented in a first direction, a second face oriented in a second direction opposite the first direction, and a first side member at least partially surrounding a space between the first face and the second face, a second housing structure including a third face oriented in a third direction, a fourth face oriented in a fourth direction opposite the third direction, and a second side member at least partially surrounding a space between the third face and the fourth face, a hinge structure rotatably connecting the first housing structure and the second housing structure to each other, the hinge structure configured to provide a folding axis that is a rotating center of the first housing structure and the second housing structure, a flexible display extending from the first face to the third face across the hinge structure, a hinge case disposed between the first housing structure and the second housing structure to accommodate the hinge structure therein to conceal or protect the hinge structure, and one or more first light-emitting elements disposed on an outer face of the hinge case. The electronic device may be configured to transmit light emitted from the one or more first light-emitting elements to outside of the electronic device.
Abstract:
An electronic apparatus is provided. The electronic apparatus includes a memory configured to store computer executable instructions, an interface, a display, and a processor configured to, by executing the computer executable instructions control the display to display an image corresponding to a broadcasting content input through the interface, based on a mute interval being detected by analyzing an input signal, compare a signal before the mute interval with a signal after the mute interval and identify whether the signals before and after the mute interval are continuous, and identify an occurrence of a channel change event in which the broadcasting content is changed to another broadcasting content based on the identification.
Abstract:
An electronic device is provided that includes a communication module including a first sub-communication module performing a short-range wireless communication function, a second sub-communication module performing a wireless charging function, and a third sub-communication module performing a security payment function, a coil module including a first coil used for performing the short-range wireless communication function and a second coil used for performing the wireless charging function, a switch module including one or more switches that electrically connect the communication module with the coil module, and a processor that identifies whether a signal for requesting activation of the third sub-communication module is received, and if the request signal is received, electrically connects the third sub-communication module, the first coil, and the second coil through the switch module, and performs the security payment function by using the first coil and the second coil, which are connected with the third sub-communication module.
Abstract:
An electronic device according to an embodiment comprises: a first housing; a second housing including a front cover and a rear cover and configured to slide with respect to the first housing; a flexible display configured to slide into the first housing or out of the first housing in response to movement of the second housing; a printed circuit board; an air room configured to expand or contract in response to the movement of the second housing; a vent hole penetrating the second housing; and an air flow path configured to transfer, to the air room, air introduced from the vent hole or to transfer air in the air room to the vent hole based on the second housing moving.
Abstract:
A refrigerator includes: a body comprising a storage chamber; a door coupled to the body; a camera located on the body; and at least one processor operatively coupled to a memory and configured to execute one or more instructions stored in the memory, in which the one or more instructions cause the refrigerator to: based on detecting opening of the door, control the camera to capture the image of at least a part of the inside of the body and the door, identify, based on the image, whether at least one of a first area of the inside of the body included in the image or a first line included in the door included in the image satisfies a predetermined condition, and based on identifying that the predetermined condition is satisfied, store the image as an optimal door bin image.