Abstract:
An electronic device is provided. The electronic device includes a communication module, a memory, a display, and a processor, wherein the processor may confirm a user input related to selection of an image corrected by using a first image processing scheme, transmit attribute information related to the first image processing scheme to an external electronic device through the communication module, based on the user input, receive, from the external electronic device through the communication module, the image corrected by using a second image processing scheme selected based on the attribute information in the external electronic device, and display, through the display, the image corrected by using the second image processing scheme.
Abstract:
Disclosed in the present invention is a device comprising: a housing including a first surface facing a first direction and a second surface facing a second direction; a transparent cover formed on at least a portion of the first surface of the housing; a display disposed between the transparent cover and the second surface; a sensor disposed between the display and the second surface; and a control circuit, electrically connected to the sensor, for controlling the sensor, wherein the display can comprise: a first region including a plurality of pixels capable of displaying color; and a second region aligned on at least a portion of the sensor such that light acquired from the outside of the electronic device passes through the sensor. The present invention can have various examples.
Abstract:
A portable communication device is provided for generating a panorama image. The portable communication device includes a touchscreen display; a fingerprint sensor; an image sensor; and a processor adapted to display, via the touchscreen display, a preview image obtained via the image sensor; receive, via the fingerprint sensor, a user input while the preview image is presented; and in response to the user input, generate a panorama image using the image sensor.
Abstract:
An electronic device may include a display, a camera module, a processor electrically coupled to the display and the camera module, and a memory electrically coupled to the processor. The memory may store instructions executed by the processor to monitor a state of the electronic device and control execution of a camera-related application based on at least one portion of a result of monitoring the state.
Abstract:
A control method of an electronic device is disclosed. The method includes receiving an input signal including a physiological signal of a subject to be examined through a sensor module of the electronic device, detecting an input operation based on at least the input signal, and acquiring an image through a camera module according to the input operation.
Abstract:
According to an embodiment, an electronic device may comprise: at least one lens, an image sensor aligned along an optical axis from the at least one lens, and an optical member comprising a prism and/or mirror disposed between the at least one lens and the image sensor on the optical axis. The optical member may include a first optical member including a first surface on which light passing through the at least one lens is configured to be incident, a second surface inclined with respect to the first surface, and a third surface inclined with respect to the first surface and the second surface, and a second optical member including a fourth surface though which light is configured to exit, a fifth surface inclined with respect to the fourth surface, and a sixth surface inclined with respect to the fourth surface and the fifth surface and configured to face the third surface.
Abstract:
An electronic device is provided. The electronic device includes a first imaging optical system including a first image sensor, and a second imaging optical system including a second image sensor, a reflective member, a first lens group, a second lens group, and a third lens group, the first, second, and third lens groups being sequentially arranged from the reflective member to the second image sensor, the second and third lens groups being configured to slide with respect to the first lens group, and the first and second imaging optical systems being configured to satisfy a conditional expression SSW/SST>2, where SSW denotes a size of the first image sensor and SST denotes a size of the second image sensor.
Abstract:
An electronic device includes: a display; a camera; and a processor is configured to execute the instructions to: based on receiving a request to photograph an image using the camera in a state in which the display is driven, set a priority of the display and the camera; identify a shutter speed included in camera driving information set in the camera and an off-duty time in a duty cycle set in the display; based on the priority of the camera being set higher than the priority of the display and the shutter speed being identified to be longer than the off-duty time, adjust at least one of display driving information of the display or the camera driving information of the camera; and control to photograph an image within an off-duty time that has changed based on the adjusted at least one of the display driving information or the camera driving information.
Abstract:
Provided are a head mounted display apparatus, an operating method thereof, and a storage medium. The head mounted display apparatus includes at least one display, at least one camera disposed on a back surface of the at least one display, and a controller, in which the controller is configured to obtain an image regarding both eyes of a user through the at least one camera, detect the both eyes of the user from the obtained image, measure an inter-pupillary distance (IPD) of the user based on the detected both eyes of the user, convert a picture based on the measured IPD, and display the converted picture on the at least one display.
Abstract:
According to an embodiment, an electronic device may include a first camera configured to obtain an image using light introduced through a first area of a display and a second camera configured to obtain an image using light introduced through a second area of the display, the display including the first area, the second area, and a third area other than the first area and the second area and at least one processor. The first area may include a first light emitting unit and a first line connecting the first light emitting unit and a first light emitting circuit disposed in the third area, the first line being arranged in a first direction. The second area may include a second light emitting unit and a second line connecting the second light emitting unit and a second light emitting circuit disposed in the third area, the second line being arranged in a second direction different from the first direction.