Abstract:
A processor of a wearable device is provided. The processor includes obtaining posture information of the wearable device in a space including the wearable device, based on classification information for selecting at least one feature point within pixels based on differences between pixels included in a first frames output from a first camera, identifying resolutions of each of a plurality of areas included in field-of-view (FoV) formed based on a display, based on the number of feature points obtained in each of the plurality of areas by the classification information, and changing resolution, among resolutions identified based on gaze information indicating gaze of user wearing the wearable device, corresponding to a first area, among a plurality of areas, to resolution larger than resolution corresponding to second area.
Abstract:
A polymer having a repeating unit represented by Formula 1:
wherein each of R1, R2, and R3 is independently selected from a substituted or unsubstituted C1-C6 chain-like saturated or unsaturated hydrocarbon group having 0 to 2 first heteroatoms or a substituted or unsubstituted C3-C6 cyclic saturated or unsaturated hydrocarbon group having 0 to 2 first heteroatoms, wherein at least one of R1, R2, and R3 is a hydrocarbon group substituted with a fluorine atom. R4 is a C1-C10 chain-like saturated or unsaturated hydrocarbon group having 0 to 2 second heteroatoms or a C3-C10 cyclic saturated or unsaturated hydrocarbon group having 0 to 2 second heteroatoms. R5 is a C1-C10 chain-like saturated or unsaturated hydrocarbon group having 1 to 6 third heteroatoms or a C3-C10 cyclic saturated or unsaturated hydrocarbon group having 1 to 6 third heteroatoms.
Abstract:
An electronic device is provided. The electronic device includes a frame structure, and the frame structure includes an outer metallic portion including a first metallic material and forming at least a portion of an outer surface of the electronic device, and an inner metallic portion including a second metallic material different from the first metallic material and laterally surrounded by the outer metallic portion, and a first inner polymeric portion isolated from the inner metallic portion and at least partially laterally surrounded by the outer metallic portion. The electronic device includes a wireless communication circuit electrically connected to a portion of the outer metallic portion.
Abstract:
A method of displaying a graphic user interface (GUI) by an electronic device is provided. The method includes displaying a first page from a plurality of pages and the GUI corresponding to the first page on a screen, displaying at least a part of the first page and at least a part of a second page adjacent to the first page from the plurality of pages based on a user input received in at least one of an area in which the first page is displayed and an area in which the GUI is displayed, and changing the displayed GUI according to a ratio between an area of at least the part of the displayed first page and an area of at least the part of the displayed second page.
Abstract:
A processor of a head-mounted display (HMD) device according to an embodiment controls a camera to obtain a first image of the outside of the HMD device. The processor detects a portion of the first image corresponding to an external HMD device. The processor receives information with respect to a body part covered by the external HMD device from the external HMD device through a communication circuit. The processor obtains a second image representing the body part by performing rendering on the body part based on the information. The processor displays the second image positioned in the portion of the first image and a composite image including the first image through at least one display.
Abstract:
A processor of an electronic device may be configured to display a first window having a first size via a display area of a flexible display of the electronic device. The processor may be configured to, while the first window having the first size is being displayed, identify a change in an angle between a first housing of the electronic device and a second housing of the electronic device via at least one sensor of the electronic device, wherein the change in the angle is greater than a threshold angle. The processor may be configured to maintain the display of the first window having the first size on the basis of the change in the angle performed for a first time period which is equal to a reference time or longer than the reference time. The processor may be configured to display, via the display area, the first window having a second size smaller than the first size and a second window related to the first window, on the basis of the change in the angle performed for a second time period which is shorter than the reference time.
Abstract:
According to an embodiment, a wearable device may display, based on contact on a second surface identified using a touch sensor, a visual object indicating a first position of the touch input on the second surface in a screen through a display. The wearable device may identify, in response to the touch input, a second position in the screen of a gaze identified based on an image obtained through a camera exposed outside at a portion of a first surface. The wearable device may provide, in response to the second position identified within a specified distance from the first position of the visual object, feedback with respect to the touch input. The wearable device may cease to provide the feedback in response to the second position identified outside from the first position by the specified distance.
Abstract:
An electronic device is disclosed. The electronic device comprises: a housing; and a pattern region formed on at least a portion of the surface of the housing. The pattern region includes a first edge, a second edge, and a first pattern formed between the first edge and the second edge. The first pattern includes a first floor portion, a first valley portion and a second valley portion which are positioned closer than the first floor portion to the inner space of the housing, and a first inclined surface extending from the first floor portion to the first valley portion and the second valley portion. The first floor portion may be formed in a first color, and the first inclined surface may be formed in a second color.
Abstract:
An electronic apparatus includes a communication interface, a memory, a microphone, a speaker, a touch screen display, and at least one processor. The electronic apparatus transmits voice input and identification information matched with the compatible information, to an external server in response to receiving a voice input for performing a task, to obtain state information of an executing application. The electronic apparatus stores the incompatible information matched with the identification information in the memory, receives action information, which is generated based on the voice input and the compatible information, and the compatible information from the external server, to obtain the incompatible information stored in the memory, using the identification information matched with the compatible information. The electronic apparatus performs the task based on the action information, and uses the obtained incompatible information when performing the task. The obtained state information includes compatible information, incompatible information, and identification information (ID).
Abstract:
An electronic device includes a sensor and a processor. The processor identifies whether a characteristic value measured from the sensor while acquiring a first image including a user's eye satisfies a designated condition. When the characteristic value satisfies the designated condition, the processor identifies a pupil position in the first image using a first scheme of extracting a feature point, based on matching with a designated pattern, acquires a second image including the user's eye, and identifies an amount of change in the second image with reference to the first image. When the amount of change in the second image is greater than or equal to a designated level, the processor calculates accuracy of the first scheme, and according to the calculated accuracy, identifies a pupil position in the second image using the first scheme, or a second scheme of extracting a feature point based on a trained network.