Abstract:
A method for managing a playback of contents in an electronic device is provided. The method includes recognizing a major section of the contents, obtaining at least one of setup information related a network speed, data remaining amount and playback, and playback time of the contents, and deciding a playback policy of the contents based on at least one of the recognized major section and the obtained information.
Abstract:
An electronic device comprises a communication interface and at least one processor connected to the communication interface to control the electronic device. The at least one processor operates as a soft access point and, based on a channel being established with a user terminal device, scans for one or more access points near the electronic device; control the communication interface to transmit information related to the one or more access points obtained based on the scan to the user terminal device; receive information related to one of the one or more access points from the user terminal device via the communication interface; and control the communication interface to transmit a connection request to the one of the one or more access points on the basis of the information related to the one access point.
Abstract:
According to an embodiment, a wearable electronic device may include a camera, a display, a lens assembly configured to focus or guide light beams representing visual information output from the display, the lens assembly including a first lens configured to adjust a refractive index by receiving an electrical signal, at least one processor and memory storing instructions. According to an embodiment, the instructions, when executed by the at least one processor, may cause the wearable electronic device to control the display to output the light beams representing the visual information through the lens assembly. According to an embodiment, the instructions, when executed by the at least one processor, may cause the wearable electronic device to adjust a refractive index of a first area of the first lens corresponding to a first distance from an edge of the first lens to reduce blur of a first object displayed based on the first light beams passing through the first area of the first lens corresponding to the first distance from the edge of the first lens. According to an embodiment, the instructions, when executed by the at least one processor, may cause the wearable electronic device to adjust the refractive index of the second area of the first lens to a second value corresponding to a second distance, which is longer than the first distance, from the edge of the first lens. Various other embodiments may be possible.
Abstract:
An electronic device may include: a display panel in which a plurality of pixels arranged in a matrix; a first main gate line extending in a first direction and configured to be electrically connectible to a first pixel among the plurality of pixels; a second main gate line extending in the first direction and configured to be electrically connectible to a second pixel among the plurality of pixels, the second pixel being adjacent to the first pixel along a second direction intersecting the first direction; a first main source line extending in the second direction and configured to be electrically connectible to the first pixel; and a second main source line extending in the second direction and configured to be electrically connectible to a third pixel among the plurality of pixels, the third pixel being adjacent to the first pixel along the first direction.
Abstract:
An electronic device and method with data scaling is provided herein. The electronic device may include a computing device that includes an analog computing circuit, where the computing device may scale an input of the analog computing circuit using a first scaling factor and/or scale a weight of the analog computing circuit using a second scaling factor, where the input includes a plurality of input values within a preset input maximum range of values of the computing device, and the weight includes a plurality of weight values within a preset weight maximum range of values of the computing device, and rescale an output of the analog computing circuit based on the first scaling factor and/or the second scaling factor. The first and second scaling factors may respectively scale values of the input and the weight to exceed respective preset maximum ranges of values.
Abstract:
Disclosed are a device and method with memory request processing using an extension of a memory address space. An electronic device includes a host processor configured to generate a memory request and a memory address that is mapped to a target memory mode that is any one of available memory modes and is mapped to a physical memory address to which the memory request is to be applied, a memory controller configured to generate the physical memory address and a command according to the target memory mode mapped to the memory address based on the memory request and the memory address received from the host processor, and a memory configured to execute, at the physical memory address, the command received from the memory controller.
Abstract:
An electronic device includes a first camera module; a display for displaying an augmented reality content; a processor operatively connected to the first camera module and the display; and a memory operatively connected to the at least one processor and storing instructions and dominant eye correction information. The processor performs a dominant eye determination operation of a user of the electronic device identifying a first position of a first object during the dominant eye determination operation; identifies a second position of the first object by using the first camera module; recognizes, as a selected point, a point moved, by a first correction value determined on the basis of the dominant eye correction information, from a first reference point displayed on the augmented reality content during the dominant determination operation; and selects a second object on the augmented reality content corresponding to the selected point.
Abstract:
An electronic device according to various embodiments of the disclosure may include: a cover glass configured to protect a display; and a bracket, wherein the bracket includes: a first area in contact with the cover glass; and a second area extending from the first area, the first area includes a first surface layer to which a first texture and a first color are applied, the second area includes a second surface layer to which a second texture different from the first texture is applied, the first color is substantially the same color as the cover glass, and the first texture is substantially the same texture as the cover glass.
Abstract:
Disclosed is an electronic device including a camera module, a display that displays AR content or VR content, at least one processor operatively connected to the camera module and the display, and a memory operatively connected to the at least one processor and storing the AR content or VR content. The memory may store one or more instructions that, when executed, cause the at least one processor to obtain eye tracking data by using the camera module, to determine an eye fatigue level based on the eye tracking data, and to select one mode between a first mode for changing a setting of the display and a second mode for changing both the setting of the display and an output setting of the AR content or VR content, depending on the eye fatigue level. In addition, other various embodiments identified through the specification are also possible.
Abstract:
A method for manufacturing a cover member for electronic devices according to certain embodiments of the present disclosure may comprise: a step for forming a magnesium plate; a step for performing primary CNC processing on the magnesium plate using a predetermined cutting oil; a step for performing a primary pretreatment on the magnesium plate using chromate or micro arc oxidation (MAO); a step for performing a primary surface-treatment on the magnesium plate by bake-coating or electrodeposition coating; a step for performing secondary CNC processing on a first region of the magnesium plate using an alcohol-containing cutting oil; a washing and drying step; a step for performing a secondary pretreatment for preventing oxidation on the first region; and a step for performing a secondary surface-treatment on the first region by bake-coating or electrodeposition coating.