Abstract:
A communication method and an electronic device for supporting the same are provided. The communication method includes forming a group for communication with at least one external electronic device, receiving location information from the at least one external electronic device, selecting at least one of the at least one external electronic device to communicate with, based on a motion of the electronic device, and communicating with the at least one selected external electronic device.
Abstract:
An method for releasing a lock of an electronic device including a touch screen and an electronic device using the same is provided. The electronic device includes a touch screen display and a processor configured to receive two or more touch inputs in a locked state of the electronic device and to release the locked state when the two or more touch inputs coincide with a pattern stored in advance. The processor is further configured to receive a first touch input through the display in the locked state of the electronic device, receive a second touch input through the display after receiving the first touch input, determine whether the second touch input is within a selected region with respect to one or more imaginary axes passing through a position of the first touch input, and determine whether the second touch input coincides at least partly with the stored pattern, based on whether the second touch input is within the selected region.
Abstract:
An electronic device is provided and includes a housing, and a display module disposed on a front surface of the housing and including a display panel, a conductive pattern, and a digitizer panel disposed under the display panel; a digitizer circuit connected to the digitizer panel; and a processor electrically connected to the display module and the digitizer circuit. The digitizer circuit may be configured to recognize a first signal generated as the first cover of a cover device including a cover coil approaches the digitizer panel; and recognize a second signal generated as a pen input device approaches the digitizer panel. The processor may be configured to control the display module in response to recognition of the first signal and the second signal.
Abstract:
An electronic device may be configured to obtain a real space image using a camera, identify an external object from the obtained real space image, determine an object of interest among the identified external object based on a focus mode of the electronic device, and arrange a virtual object corresponding to the determined object of interest in a virtual space.
Abstract:
An electronic device is provided. The electronic device includes a housing which forms at least a part of an exterior of the electronic device, an antenna module which is disposed in the housing and includes a first surface facing one surface of the housing and a second surface facing the opposite direction of the first surface, the antenna module including an antenna array disposed on the first surface, a wireless communication circuit electrically connected with the antenna module, an insulation layer which is disposed between the first surface of the antenna module and one surface of the housing, and first pads which are disposed in a first area of the insulation layer that corresponds to the first surface of the antenna module, wherein each of the first pads has a first shape in which at least a part of an area overlapping the antenna array is removed, and wherein the wireless communication circuit feeds power to the antenna array, thereby transmitting and/or receiving a signal of a designated frequency band.
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:
At least one processor included in an electronic device can acquire first motion data about the motion of the electronic device through at least one motion sensor, acquire second motion data about a motion of an external device through a connector included in the electronic device, determine, on the basis of the first motion data and the second motion data, the folding angle between the electronic device and the external device connected to the electronic device, and determine, on the basis of the determined folding angle, an input mode that sets whether to display a user interface on a display or whether to block an input signal received through the connector. Various other embodiments identified through the specification are possible.
Abstract:
An electronic device is provided, which can include a flexible display, a rolling actuator for expanding or reducing the flexible display, a wireless communication circuit, and a processor. The processor can receive, via the wireless communication circuit, a message from an external device, and in response to receiving the message, drive the first rolling actuator, expand the flexible display by a first length in a first direction, and display a first UI including a plurality of content, in a first region of the flexible display expanded by the first length.
Abstract:
An electronic device includes a processor; a first camera module comprising a camera including a first lens assembly having a first field of view (FOV) and a second camera module comprising a camera spaced apart a first camera module and including a second lens assembly having a second FOV narrower than the first FOV; wherein the first camera module includes an image sensor and a filter including a glass plate spaced apart the image sensor and disposed on the image sensor, and a layer disposed on the glass plate and configured to absorb a portion of infrared light among the light transmitted through the first lens assembly, wherein the processor is configured to obtain depth information about on the subject located within the second FOV based on data about the light passing through the filter, which is obtained through the image sensor.
Abstract:
According to one aspect of the disclosure an electronic device comprises a foldable housing including: a hinge structure, a first housing structure connected to the hinge structure, and including a first face and a second face opposite the first face, and a second housing structure connected to the hinge structure and including a third face and a fourth face opposite the third face, the second housing structure being configured to be rotated about the hinge structure; a flexible display extending over the first face and over the third face; at least one sensor disposed within the foldable housing, and configured to sense an angle formed between the first face and the third face; a first haptic actuator disposed within the first housing structure; a second haptic actuator disposed within the second housing structure; at least one processor disposed within the first housing structure or the second housing structure, and operatively connected to the flexible display, the at least one sensor, the first haptic actuator, and the second haptic actuator. The at least one processor may detect a folding state of the foldable housing using the at least one sensor, and independently control the first haptic actuator and the second haptic actuator based on at least part of the detected folding state.