Abstract:
An electronic device according to one embodiment includes: a housing including a through-hole; a printed circuit board; and a tray which moves to the outside of the through-hole according to movement in the first direction, or of which at least one portion is arranged on the printed circuit board according to movement in the second direction in order to be inserted into the through-hole, where the tray includes: a first accommodation hole for insertion of an external member penetrating the outer surface of the tray; and an elastic member which includes an insertion hole, and which can be deformed by the external member, and the tray is inserted into the insertion hole so as to be movable to the outside of the through-hole by movement in the first direction of the external member in contact with the elastic member.
Abstract:
An electronic device according to an embodiment of the disclosure may include: a housing; a waterproof member comprising a waterproof material disposed along a periphery of the housing on one surface of the housing; a window cover disposed to face the one surface of the housing; a display disposed between the window cover and the housing and including a bending part located at one end part of the electronic device; and a molding part extending along peripheries of the window cover and the display and disposed on one surface of the waterproof member, wherein at least a part of the molding part may be disposed in one direction toward an outside of the electronic device and in another direction opposite the one direction based on the bending part of the display.
Abstract:
An electronic device including a foldable housing including a first housing, a second housing, and a connection structure; a flexible display; a first plate including at least a portion disposed on a lower end of a first area of the display and a first periphery; a second plate including at least a portion disposed on a lower end of a second area of the display, and a second periphery; and a protection layer. When the electronic device is in an unfolded state, the first periphery and the second periphery are configured to be in contact with the display. When the electronic device pivots from the unfolded state to a folded state, the first periphery and the second periphery are configured to be spaced apart from the display, and the protection layer is configured to cover an area of the display exposed between the first periphery and the second periphery.
Abstract:
According to various embodiments, an electronic device includes: a housing; a support member which is disposed in the inner space of the housing, and which includes a first surface oriented in a first direction and a second surface oriented in a second direction that is opposite to the first surface; at least one pattern formed to have a length in a designated direction in at least a part of the first surface and/or the second surface of the support member; and a heat dissipation coating layer stacked on the first surface and/or the second surface on which the at least one pattern is formed, wherein the at least one pattern may include a plurality of recesses spaced apart from each other at designated intervals and formed on the first surface and/or the second surface.
Abstract:
A method and apparatus are provided of preventing addiction to an electronic device by the electronic device and/or a server. A method includes receiving, by the electronic device, a command to unlock the electronic device; playing an advertisement in response to the unlocking of the electronic device; and transmitting, to the server, subtraction point information based on the playing of the advertisement.
Abstract:
An electronic device includes a housing; a printed circuit board; a microphone substrate; a microphone; a flash; a cover, the cover having an opening at least partially aligned with the flash; a flash window facing the cover, the flash window including a first part at least partially accommodated in the opening and at least partially aligned with the flash in the first direction, and a second part extended from the first part and between the cover and the microphone substrate; and an audio input path configured to propagate a sound wave to the microphone, wherein the audio input path may include a space provided between the flash window and the cover, a gap provided between the first part and an inner wall of the opening and fluidly connected to the space, and a microphone hole in the second part and fluidly connected to the microphone and the space.
Abstract:
An electronic device is disclosed herein. The device includes a housing including a first opening formed in a surface thereof, a camera at least partially disposed in the housing, such that a lens of the camera is aligned with the first opening, a camera bracket including a flange structure disposed in the housing and spaced apart from the surface of the housing at a predetermined interval, a protruding structure extending from the flange structure into a space defined between the camera and an inner wall of the first opening to surround at least part of the camera, wherein the flange structure includes a first through-hole, and the protruding structure includes a recess, and wherein the protruding structure and the inner wall of the first opening form a microphone hole in communication with the recess and part of the first opening, an adhesive member disposed between the flange structure and an inner surface of the housing, the adhesive member including a passage, wherein one side of the passage is connected to the recess, and an opposite side of the passage is connected to the first through-hole, and a microphone element disposed in the housing and aligned with the first through-hole.
Abstract:
A semiconductor device includes a device isolation layer provided on a substrate, the device isolation layer defining first and second sub-active patterns, first and second gate electrodes crossing the first and second sub-active patterns, respectively, and an isolation structure provided on the device isolation layer between the first and second sub-active patterns. The first and second sub-active patterns extend in a first direction and are spaced apart from each other in the first direction. The device isolation layer includes a diffusion break region disposed between the first and second sub-active patterns. The isolation structure covers a top surface of the diffusion break region.
Abstract:
A method of controlling a plurality of electronic devices according to context of a user is provided. The method includes determining, by a computing device, context of the user, selecting, by the computing device based on the determined context, at least one modality to be considered when controlling the plurality of electronic devices, obtaining, by the computing device for each selected modality, a score map indicating an area affected by input and output of the plurality of electronic devices, calculating, by the computing device, a score for each selected modality by using the obtained score map, and controlling, by the computing device, operations of the plurality of electronic devices based on the calculated score, wherein the score may include a value indicating a degree of optimization of user experience in the determined context.
Abstract:
According to one embodiment of the present invention, an electronic device may include: a cover part, which forms an outer surface of the electronic device, and which includes a first cover member including a portion of an edge of the outer surface, and a second cover member including a second portion of the edge; a support member positioned inside the electronic device; and a first adhesive member, which includes a first adhesive part having a closed curve shape positioned between the cover part and the support member along the edge, and a second adhesive part extending from the first adhesive part and covering a boundary part along the boundary part between the first cover member and the second cover member. Other various embodiments are possible.