Abstract:
An electronic device and method are disclosed, including a communication interface adapted to allow communicative coupling with a plurality of electronic devices, and a processor, implementing the method, which includes: identifying an application to be executed in the first electronic device, selecting candidate devices from the plurality of electronic devices having at least one function associated with execution of the application, selecting a second electronic device from among the candidate devices based a factor including at least one of: status information of each of the candidate devices, position information of each of the candidate devices in relation to at least one of a user or the first electronic device, and at least one property of data associated with the at least one function of the candidate devices, and executing the application in the first electronic device utilizing the at least one function of the second electronic device.
Abstract:
An apparatus and a method for controlling a display of a mobile device are provided. The method includes identifying a resolution of video data to be displayed in a video display mode, retrieving brightness control data corresponding to the identified resolution from a memory unit that stores a plurality of values of the brightness control data each of which corresponds to each of a plurality of resolution values, and sending the retrieved brightness control data to a display unit to display the video data with specific brightness determined based on the brightness control data.
Abstract:
A method for controlling functions according to a distance measurement between electronic devices and an electronic device implementing the same are disclosed. The method includes transmitting a sound transmission command from a first electronic device to a second electronic device; measuring a distance between the first electronic device and the second electronic device by identifying sound information and reception of sound transmitted from the second electronic device to the first electronic device; and comparing the measured distance and a predetermined user area, and deciding performance of a predefined function corresponding to the user area in the first electronic device.
Abstract:
A method, performed by an electronic device, of transmitting a mobile edge application, includes obtaining information related to an execution environment of at least one pre-installed mobile edge application, receiving an installation request for a new mobile edge application, determining a mobile edge computing host for installing the new mobile edge application, based on the information related to the execution environment and the requirement information related to an execution environment of the new mobile edge application, and transmitting the new mobile edge application to the determined mobile edge computing host.
Abstract:
Provided is a method, performed by a source edge data network, of providing a service in a wireless communication system includes identifying a target edge data network and a handover terminal handed over to the target edge data network among a plurality of terminals provided with the service from the source edge data network; transmitting information about the identified target edge data network to a server; synchronizing status information of an application for providing the service with the target edge data network; and synchronizing user information for each of the plurality of terminals with the target edge data network.
Abstract:
An augmented reality device may comprise a display, at least one sensor, a communication circuit, and at least one processor operatively connected with the display, the at least one sensor, and the communication circuit. The at least one processor may be configured to identify a first user input specifying a shared area for outputting shared content to be output on at least one other augmented reality device, transmit information about the shared area to a server through the communication circuit, based on the first user input, identify whether the shared area and a personal area for outputting personal content overlap, based on information obtained through the at least one sensor, control the display to output the shared content in the shared area and the personal content in the personal area, based on identifying that the shared area and the personal area do not overlap, and control the display to output the shared content in the shared area and the personal content in an area not overlapping the shared area, based on identifying that the shared area and the personal area overlap.
Abstract:
An electronic device according to various embodiments comprises a communication module, a sensor module, a wireless charging antenna, a wireless charging module connected to the wireless charging antenna, and at least one processor, wherein the at least one processor may be configured to: receive a signal related to wireless charging from an external device through the communication module; check information indicating the degree of proximity between at least a part of a human body and the electronic device by using the sensor module at least on the basis of the signal; transmit, to the external device, data for adjusting wireless power to be output by the external device at least on the basis of the information; and receive the adjusted wireless power from the external device through the wireless charging module.
Abstract:
Various embodiments of the present invention relate to wireless power transfer (WPT). An electronic device comprises a battery, a charging circuit for controlling a charging state of the battery, a coil, a wireless power transfer circuit electrically connected to the coil, and a control circuit, wherein the control circuit may be configured to: check a state related to charging of the battery; transfer a wireless charging parameter related to generation or modification of a power signal for transferring to an external electronic device via the coil, which is determined at least on the basis of the state related to charging of the battery; receive a response signal corresponding to the transfer of the wireless charging parameter from the external electronic device; generate, on the basis of the response signal, a power signal corresponding to the amount of wireless transmission power determined at least on the basis of the response signal by using the wireless power transfer circuit; and transfer the power signal to the external electronic device through the coil. In addition, various embodiments are possible.
Abstract:
An electronic device is provided. The electronic device includes a rollable display. The electronic device may include a main bracket configured to support the first portion of the rollable display, a roller member disposed in the first direction from the main bracket and arranged in a third direction perpendicular to the first direction, at least one folding support member disposed between the main bracket and the roller member and configured to support the second portion of the rollable display, a circuit board disposed to overlap at least a portion of the main bracket, at least one electronic component disposed adjacent to the roller member, and a FPCB configured to electrically connecting the main circuit board and the electronic component, wherein the FPCB is disposed to pass through the folding support member and extends from a portion of the circuit board to a portion of the electronic component.
Abstract:
Electronic device and method for driving electronic device. The electronic device includes battery, power management integrated circuit (PMIC) configured to control charging status of battery, coil, wireless power circuit electrically connected to coil, communication circuit electrically connected to coil, and processor, wherein processor is configured to, when the wireless power circuit is in a transmission (Tx) mode, transmit a wireless power signal through the coil by using the wireless power circuit, and transmit a signal obtained by frequency shift keying (FSK)-modulating a transmission device parameter by using the communication circuit, to an external electronic device through the coil, and when the wireless power circuit is in a reception (Rx) mode, receive wireless power by using the wireless power circuit to charge the battery, and transmit a signal obtained by amplitude shift keying (ASK)-modulating a reception device parameter by using the communication circuit, to the external electronic device through the coil.