Abstract:
An electronic device is disclosed herein, including a first face oriented in a first direction, the first face formed having a curvature and disposed as to be visible from an exterior of the electronic device, a body including a second face oriented towards a second direction opposite to the first direction, the second face visible from the exterior, and a display module visible when viewing the first face, the display module including a flexible display disposed under a window, and the window including a central visible area formed in a substantially rectangular shape including first, second, third and fourth visible areas disposed adjacent to four respective edges of the central visible area.
Abstract:
An electronic device includes a housing including a first surface, a second surface, and a third surface defining an internal space of the housing, a touch screen display interposed between the first surface and the second surface, and a sensor module disposed under the touch screen display and including a light emitting unit and a light receiving unit, wherein the third surface includes a plurality of through holes each including optical structures, wherein a portion of light emitted from the light emitting unit is guided to an exterior of the electronic device through a first optical structure of a first through hole, and wherein at least a portion of light introduced from the exterior of the electronic device is guided to the light receiving unit on a second optical structure of a second through hole.
Abstract:
An electronic device is provided. The electronic device includes a camera configured to obtain an image, an input buffer configured to store the image, an encoder implemented with hardware, and configured to encode an image output from the input buffer, at least one memory, and a processor configured to electrically connect with the camera, the input buffer, the encoder, and the at least one memory. The processor is configured to generate an encoding parameter based on a characteristic of the encoder receiving the encoding parameter and to provide the encoding parameter to the encoder.
Abstract:
An electronic device is disclosed herein, including a first face oriented in a first direction, the first face formed having a curvature and disposed as to be visible from an exterior of the electronic device, a body including a second face oriented towards a second direction opposite to the first direction, the second face visible from the exterior, and a display module visible when viewing the first face, the display module including a flexible display disposed under a window, and the window including a central visible area formed in a substantially rectangular shape including first, second, third and fourth visible areas disposed adjacent to four respective edges of the central visible area.
Abstract:
An electronic device is disclosed. The electronic device may include a front display and a rear display, a touch panel to sense a user input, a camera disposed on a rear surface of the electronic device, and at least one processor. The at least one processor may output an image, which is obtained by the camera in a first shooting mode, to the rear display, output the image, which is obtained by the camera in a second shooting mode, to the front display, and control the camera in response to the user input sensed to the front display. Moreover, various embodiment found through the disclosure are possible.
Abstract:
Presented herein is a method of processing an image. The method includes obtaining a scale ratio for an original image, obtaining coefficient information based on the scale ratio, applying data conversion and scaling of the original image base on using the coefficient information to at least some of the original image, and generating image processed data corresponding to the scale ratio.
Abstract:
An electronic device is provided. The electronic device includes a housing including a first surface facing a first direction, a second surface facing a second direction opposite to the first direction, and a side surface extending between and along a perimeter of the first surface and the second surface, a cover glass corresponding to at least the first surface, a display panel disposed under the cover glass and including an active area exposed through the cover glass, an inactive area surrounding the active area, and a printed circuit board connection portion connected to one end of the inactive area, wherein at least one opening or at least one cutaway portion is formed in the display panel, and a camera module disposed in a space formed by the at least one opening or the at least one cutaway portion and exposed through the cover glass.
Abstract:
An electronic device and method for providing sound user interface is provided. The electronic device includes a display circuit configured to display at least one object, an audio circuit configured to reproduce sound, and a processor electrically connected to the display circuit and the audio circuit. The processor is configured to configure virtual space coordinates for the at least one object, match a sound source to the at least one object, set a sound effect for the sound source based on the virtual space coordinates, and reproduce the sound source using the set sound effect.
Abstract:
An electronic device is provided. The electronic device includes a housing including a window disposed in at least a partial area of the housing and forming at least a portion of an outer surface of the electronic device, a touch screen display including an active area and a non-active area and accommodated in the housing such that at least a portion of the touch screen display is visually exposed through the window, at least one processor accommodated in the housing and electrically connected to the touch screen display, a memory accommodated in the housing and electrically connected to the at least one processor, and an optical layer disposed between the touch screen display and the window. A portion of a surface area of the optical layer that faces the active area of the touch screen display is formed in a bumpy structure.