Abstract:
An electronic device is disclosed that includes a housing, a universal serial bus (USB) connector exposed through one region of the housing, a wireless communication circuitry supporting short-range wireless communication, at least one processor electrically connected with the USB connector and the wireless communication circuitry, and a memory electrically connected with the processor. The memory stores instructions, when executed, causing the at least one processor to, while the USB connector is connected with a first external device and while the wireless communication circuitry performs wireless communication with a second external device, determine a wired communication state with the first external device through the USB connector and adjust a power saving scheme for the wireless communication based at least in part on the determined state. In addition, various embodiments recognized through the specification are possible.
Abstract:
An electronic device is provided. The electronic device outputs a user interface (UI) including at least one object, receives a pressure input of a specified level or more for selecting the object, verifies information associated with an object selected by the pressure input, outputs vibration feedback of a first frequency or first amplitude if the information associated with the object is less than a first criterion, and outputs vibration feedback of a second frequency relatively lower than the first frequency or second amplitude higher than the first amplitude if the information associated with the object is greater than or equal to the first criterion.
Abstract:
An electronic device includes a housing, a display, a touch sensor sensing a touch of an external object, a force sensor sensing pressure by the touch, and a processor that is electrically connected with the display. The touch sensor, the force sensor and a memory are electrically connected with the processor. The memory stores instructions that, when executed, cause the processor to activate at least part of the force sensor while the display is turned off, or while the display operates in a low-power mode, to perform a first function if pressure of a first level by the touch is sensed in the at least part of the force sensor. The processor also performs a second function associated with the first function if pressure of a second level by the touch is sensed in the force sensor while the first function is performed.
Abstract:
An electronic device is provided. The electronic device includes a first communication module configured to support a first communication method, a second communication module configured to support a second communication method, a memory configured to store data used for operations of the first communication module and the second communication module, and a processor electrically connected to the first communication module, the second communication module, and the memory.
Abstract:
An electronic device including a touch-enabled display module configured to display a plurality of windows according to a multi-window mode; and a control module configured to displaying on the touch screen a first application window and a second application window according to the multi-window mode, alter the first application window in response to a touchscreen input received via the touch-enabled display, and automatically alter the second application window in response to the alteration of the first application window.
Abstract:
An electronic device includes at least one wireless communication circuit positioned, and at least one processor operatively connected to the wireless communication circuit. The wireless communication circuit includes an omni-directional first wireless communication circuit capable of communicating at first frequency within a first coverage and a directional second wireless communication circuit capable of communicating at a second frequency higher than the first frequency, within a second coverage smaller than the first coverage. The processor is configured to obtain control information including data regarding a location of an external device, from the external device through the first wireless communication circuit, to set a beamforming attribute associated with the second wireless communication circuit, based on the data, and to establish a communication connection to the external device through the second wireless communication circuit, by using the beamforming attribute.
Abstract:
An electronic device for supporting a connection to a wireless router of an internet of things (IoT) device is provided. The electronic device includes a transceiver, a communication interface, a processor, and a memory. The processor connects a first external device by using a first service set identifier (SSID), receives first information about the first external device from the first external device, transmits at least part of the first information and second information about the electronic device to a second external device, forwards connection information from the second external device, which includes a second SSID for wireless connection between the first external device and the electronic device, or receives a transmission request of the connection information from the second external device and transmits the connection information to the first external device, and wirelessly connects to the first external device by using the connection information.
Abstract:
An electronic device includes a housing, a wireless communication circuit, a wired communication interface, a processor, and a memory. The memory stores instructions that, when executed, cause the processor to connect with an external device by using the wireless communication circuit or the wired communication interface, to receive first information to set the electronic device as an access point (AP) from the external device, to receive second information on another AP from the external device, to configure the electronic device by using the first information, and to wirelessly broadcast a signal by using the wireless communication circuit, to allow wireless devices to connect to the AP.
Abstract:
An electronic device including a touch-enabled display module configured to display a plurality of windows according to a multi-window mode; and a control module configured to displaying on the touch screen a first application window and a second application window according to the multi-window mode, alter the first application window in response to a touchscreen input received via the touch-enabled display, and automatically alter the second application window in response to the alteration of the first application window.