Abstract:
A wearable electronic device is provided. The wearable electronic device includes at least one sensor, a display, and at least one processor including processing circuitry, and memory storing instructions that, when executed by the at least one processor, cause the wearable electronic device to detect a plurality of objects included in a first field of view (FOV), capable of detecting through the at least one sensor, of the wearable electronic device, recognize a type of a first object among the plurality of objects, identify whether the first object is a real object or a virtual object, determine a first risk level of the first object, based on the recognized type of the first object and whether the first object is the real object or the virtual object, determine a first distance related to the first object, based on the first risk level of the first object, and provide feedback based on the first risk level of the first object, based on the distance between the first object and a user's body being less than or equal to the first distance.
Abstract:
According to various embodiments, an electronic device may include a display and a processor, wherein the processor is configured to control the display to display a first screen for configuring first data, control the display to display a second screen associated with the first data while displaying the first screen, receive, through the second screen, a first user input for changing a value of the first data displayed on the first screen from a first value to a second value, and after receiving the first user input, control the display to display, through the first screen, an animation which continuously displays values between the first value and the second value. Other embodiments may be possible.
Abstract:
Various embodiments of the disclosure provide a method and apparatus for providing a vibration in an electronic device. According to various embodiments of the disclosure, an electronic device may include a memory including instructions stored therein, and at least one processor, wherein the at least one processor coupled to the memory is configured to execute the stored instructions for detecting an event for a user's input related to a direction, identifying a vibration pattern having directivity, in response to the detected event, and providing a vibration having directivity by driving the one or more vibration devices, based on the vibration pattern.
Abstract:
A method of displaying a nearby point of interest (POI) using augmented reality and an electronic device thereof. An operation method of an electronic device includes: acquiring a preview video; acquiring location information of the electronic device; acquiring information on at least one POI located in a vicinity; selecting a focus POI among at least one POI; determining first information to be provided to a user for general POIs; determining second information including more information than the first information to be provided to the user for the focus POI; determining a location on a screen on which the preview video in which the information on the at least one POI is to be displayed; and displaying the first information or the second information on the location on the screen on which the determined preview video of all or some of the at least one POI is provided.
Abstract:
An electronic device is provided for processing line data. The electronic device includes a plurality of photo diodes disposed based on a plurality of lines; a buffer configured to at least part of image frame data acquired at the photo diodes; and a processor configured to acquire an image based on first image data acquired by processing first partial data stored in the buffer using a first image signal processor (ISP) and second image data acquired by processing second partial data stored in the buffer using a second ISP, wherein the first partial data and the second partial data correspond to a first interval and a second interval, respectively, which are distinguished in the lines.
Abstract:
An electronic device according to an embodiment of the present disclosure may include a display, a camera module comprising a camera, a memory, and a processor connected electrically to the display, the camera module, and the memory. The memory can store instructions which when executed by the processor cause the electronic device to perform a set shutter input method comprising, moving a lens of the camera module to a first location if the set shutter input method is a predetermined shutter input method, moving the lens of the camera module to a second location if the set shutter input method is not the predetermined shutter input method, receiving a shutter input, and capturing an image using the camera module in response to the received shutter input.
Abstract:
According to aspects of the disclosure, a method is provided for use in an electronic device, comprising: capturing one or more image frames by using at least one image sensor of the electronic device; displaying, on a display, a first image that is generated by performing a first-type Digital Image Stabilization (DIS1) based on at least some of the image frames; and storing, in a memory, a second image generated by performing a second-type Digital Image Stabilization (DIS2) based on at least some of the image frames.
Abstract:
An image processing apparatus and method for regulating viewing image output of the image processor which processes motion and still images in a time divisional manner are provided. The image processing apparatus includes an image processor processing the viewing and still images in a time divisional manner, a timing manager storing the viewing image processed by the image processor temporarily and outputting the viewing image at a preset time of a frame period, and a controller controlling, in response to a capture request, the image processor to process the still image at a residual part of a current frame to be at a beginning part of a next frame and to process the buffered viewing image to be at the residual part of the next frame, wherein the residual part of the next frame is a part which remains after processing the still image completely.
Abstract:
A mobile device having a camera control system and a method of controlling a camera are provided. The camera control system determines a specific brightness value from at least one of a brightness value of a subject and a surrounding brightness value, and performs a camera setting to adjust exposure time and gain according to the determined specific brightness value.