Abstract:
An electronic device and a power control method of an electronic device are provided. The electronic device may include: a communication circuit including a first circuit configured to perform first communication and a second circuit configured to perform second communication; a processor electrically connected to the communication circuit; and a memory electrically connected to the processor, wherein, the memory stores instructions that, when executed, cause the processor to perform operations comprising: controlling the first circuit to operate according to a first power control mode associated with the first communication, and controlling the second circuit to operate according to a second power control mode associated with the second communication when the first communication and the second communication are concurrently performed through the first circuit and the second circuit; identifying a first sleep period during which the first circuit operates in a sleep mode according to the first power control mode, and a second sleep period during which the second circuit operates in the sleep mode according to the second power control mode; and controlling the communication circuit to operate in a deep sleep mode in which the communication circuit operates with power that is less than or equal to a predetermined power in a period where the first sleep period and the second sleep period coincide.
Abstract:
An electronic device is provided that includes a touch screen display; a pressure sensor; at least one processor configured to receive a user input for performing a function for a selected period of time after execution of at least one application program, to detect a pressure regarding the touch screen display for the selected period of time using the pressure sensor, and to execute at least one selected from pausing the execution of the function, resuming the same, and restarting the same at least partially on the basis of the detected pressure when a selected pressure level is detected by the pressure sensor for the selected period of time.
Abstract:
An electronic device according to various embodiments includes a housing; a user interface; a wireless communication circuit disposed in the housing; a wired communication interface exposed through the housing; a processor disposed in the housing and electrically connected to the user interface, the wireless communication circuit, and the wired communication interface; and a memory disposed in the housing and electrically connected to the processor, wherein the memory stores instructions that, when executed by the processor, cause the electronic device to establish a first communication channel with an external electronic device including a storage using the wireless communication circuit and/or the wired communication interface so that the electronic device operates as a device and the external electronic device operates as a host, to exchange information with the external electronic device through the first communication channel, and to establish a second communication channel with the external electronic device using the wireless communication circuit so that the electronic device operates as a host and the external electronic device operates as a device.
Abstract:
A method and apparatus for controlling a screen in an electronic device are provided. The method includes displaying a pop-up window in a display area, disposed over another application displayed in the display area. If a movement of the pop-up window is detected, and a portion of the pop-up window reaches a predefined area of the display area, the pop-up window is removed from the display portion. A selectable icon is displayed allowing a user to redisplay the pop-up window or alter an operational state of the pop-up window.
Abstract:
An apparatus and a method of controlling screens in a device are provided. The apparatus includes a display configured to include a first screen and a second screen overlapped over the first screen, and a controller configured to control display of partial information of the first screen hidden by the second screen to be viewable by changing an attribute of the second screen, upon detecting a gesture on the second screen while information is being displayed separately on the first and second screens.
Abstract:
A system, devices and method are disclosed herein. The system may include a network interface, a memory, the two devices and a processor, which implements the method. The method may include receiving by a first device a location of a second device through the network interface, retrieving by the second device a plurality of media related to the received location, transmitting by the second device the plurality of media to the first device through the network interface, in response to receiving a selection of one of the plurality of media, transmit, through the network interface, transmitting by the first device control information for controlling a particular UAV selected from the plurality of UAVs based on corresponding with the selected one of the plurality of media to the second device.
Abstract:
An electronic device and a power control method of an electronic device are provided. The electronic device may include: a communication circuit including a first circuit configured to perform first communication and a second circuit configured to perform second communication; a processor electrically connected to the communication circuit; and a memory electrically connected to the processor, wherein, the memory stores instructions that, when executed, cause the processor to perform operations comprising: controlling the first circuit to operate according to a first power control mode associated with the first communication, and controlling the second circuit to operate according to a second power control mode associated with the second communication when the first communication and the second communication are concurrently performed through the first circuit and the second circuit; identifying a first sleep period during which the first circuit operates in a sleep mode according to the first power control mode, and a second sleep period during which the second circuit operates in the sleep mode according to the second power control mode; and controlling the communication circuit to operate in a deep sleep mode in which the communication circuit operates with power that is less than or equal to a predetermined power in a period where the first sleep period and the second sleep period coincide.
Abstract:
An electronic device and a control method of the electronic device are provided. The control method includes acquiring second device information on a second electronic device connected to the first electronic device, and determining a first application corresponding to a combination of the first electronic device and the second electronic device based on first device information on the first electronic device and the second device information.
Abstract:
An electronic device and a control method for configuring a multi-vision screen using a relative position between electronic devices are provided. The control method includes interacting with at least one other electronic device, capturing a first image and receiving, from the at least one other electronic device, a second image captured by the at least one other electronic device, determining relative positions of the electronic device and the at least one other electronic device by comparing the first image with the second image, and configuring a multi-vision screen using the display of the electronic device and the display of the at least one other electronic device based on the determined relative positions and controlling output of a content image on the multi-vision screen.
Abstract:
An electronic device includes a display for detecting touch input, and at least one processor for recognizing a type of an auxiliary input device placed on the display. A method for utilizing the electronic device includes detecting via a touch screen a type of an auxiliary input device placed on a display based on a configuration of at least one or more conductors on the auxiliary input device, detecting an input event generated by the auxiliary input device, and executing via a processor at least one function of an executing program corresponding to the detected input event.