Abstract:
An electronic device is provided including a housing including a first plate, a second plate facing the first plate, and a side member between the first and second plate, a radio frequency (RF) circuit, a processor, a ground member, a first electric path connected between a first port of the RF circuit and a first point of a first conductive portion of the side member, a second electric path connected between a second port of the RF circuit and a first point of a second conductive portion of the side member, a third electric path connected between a second point of the first conductive portion and the ground member, a fourth electric path connected between a second point of the second conductive portion and the ground member, and a fifth electric path connected between one point of the second electric path and one point of the third electric path.
Abstract:
An electronic device and a method for controlling output through an external output device are provided. The electronic device includes a housing, a receptacle formed so as to receive one of a first external connector and a second external connector, and a circuit electrically coupled to the receptacle. The first external connector includes first, second, third, and fourth terminals. The second external connector includes first, second, third, and fourth terminals. The circuit is configured to detect whether one of the first and second external connectors is inserted into the receptacle, and, based on results of detection, provide an audio output to the first external connector in a first manner if the first external connector is inserted, and provide the audio output to the second external connector in a second manner different from the first manner if the second external connector is inserted.
Abstract:
An electronic device is provided. The electronic device includes a housing, an antenna radiating body including a conductive metal, a first member disposed within the housing and electrically connected to the antenna radiating body, a printed circuit board (PCB) disposed within the housing, a flexible connecting member disposed between at least a portion of the first member and at least a portion of a second member and including a conductive material, and a capacitor including a first conductive plate that contacts the second member or formed by a portion of the second member, a second conductive plate, separated from the first conductive plate and electrically connected to the PCB, and a dielectric layer inserted between the first conductive plate and the second conductive plate.
Abstract:
A head-mounted device may comprise: a display; memory comprising storage media storing instructions; and at least one processor comprising processing circuitry, wherein the instructions, when executed by the at least one processor individually or collectively, cause the head-mounted device to: provide content corresponding to a first space through the display based on a first safety zone corresponding to the first space; based on obtaining a request related to content corresponding to a second space, identify whether an execution condition of the second space is satisfied based on the first safety zone; display at least one affordance, related to a second safety zone corresponding to the second space, through the display based on the execution condition of the second space being not satisfied; and based on an input corresponding to the at least one affordance, provide the content corresponding to the second space, through the display, based on the second safety zone.
Abstract:
An electronic device according to an embodiment of the disclosure may include: two or more housings, a flexible display mounted to one or more housings among the two or more housings and configured to be expanded or reduced according to a sliding operation of one or more housings among the two or more housings, one or more sensors configured to acquire one or more pieces of temperature information from the electronic device, and at least one processor, comprising processing circuitry, operatively connected to the one or more sensors and the flexible display, wherein at least one processor, individually and/or collectively, is configured to: identify at least one of operation state information or one or more pieces of temperature information acquired from the electronic device, identify expanding state information of the flexible display, and control the electronic device to change a size of the flexible display by sliding the one or more housings based on at least one of the operation state information or the one or more pieces of temperature information.
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:
An electronic device is provided. The electronic device includes a heat generation source including a heat dissipation surface dissipating heat, a support member disposed on a lateral side of the heat dissipation surface and surrounding at least a part of the heat generation source, a heat dissipation member facing the heat dissipation surface of the heat generation source and disposed so as to cover an area in which the support member is disposed, a thermal interface material disposed between the upper part of the heat dissipation surface of a heat generation surface and the lower surface of the heat generation source, and supported by the support member, and an adhesive member disposed in the area in which the thermal interface material is supported by the support member between the thermal interface material and the heat dissipation member, and for coupling the thermal interface material and the heat dissipation member.
Abstract:
An electronic device, including a communication module configured to communicate with a pen input device which is attachable to the electronic device; a tilt sensor configured to sense information about a tilt of the electronic device; a memory configured to store instructions; and at least one processor operatively connected to the communication module, and configured to execute the instructions to: determine an attachment state of the pen input device with respect to the electronic device based on a wireless charging state of the pen input device, a tilt sensing value of the pen input device, and a tilt sensing value of the electronic device; and based on the attachment state, control a wireless charging current for charging the pen input device, and selectively display an attachment guide of the pen input device
Abstract:
According to an embodiment, an electronic device comprises: a housing comprising an opening; a cover for opening and closing the opening; and a link structure located inside the housing and connected to the cover, wherein the link structure may comprise: an actuator configured to output power based on the temperature sensed inside the housing; a first link configured to move in a first direction by means of the power; a second link having a resilient structure that, in response to the movement of the first link, is configured to transmit the power in a second direction perpendicular to the first direction and comprises a first spring and a second spring having different elastic forces; and a third link connected to the second link and the cover and configured to convert the cover from a closed state to an open state by transmitting the power in the first direction and a third direction perpendicular to the second direction.
Abstract:
An electronic device according to an embodiment of the disclosure includes a housing that includes a first plate, a second plate facing away from the first plate, and a side member surrounding a space between the first plate and the second plate and including a first conductive region and a second conductive region electrically separated from the first conductive region, a wireless communication circuitry that is disposed within the space, transmits/receives a first signal in a first frequency band ranging from 1.4 GHz to 6 GHz by using the first conductive region, and transmits/receives a second signal in a second frequency band ranging from 0.6 GHz to 1.4 GHz by using the second conductive region, and a GNSS receiver circuitry that is disposed within the space, receives a third signal in a third frequency band ranging from 1559 MHz to 1610 MHz by using the first conductive region, and receives a fourth signal in a fourth frequency band ranging from 1164 MHz to 1189 MHz by using the second conductive region. Moreover, various embodiment found through the present disclosure are possible.