Abstract:
An optical layer may include a barrier. The barrier may include slits arranged in the barrier so that vertically neighboring slits from among the slits are connected to each other. The slits are configured to transmit light through the barrier.
Abstract:
The present disclosure relates to a sensor network, Machine Type Communication (MTC), Machine-to-Machine (M2M) communication, and technology for Internet of Things (IoT). The present disclosure may be applied to intelligent services based on the above technologies, such as smart home, smart building, smart city, smart car, connected car, health care, digital education, smart retail, security and safety services. A method for controlling contents and an electronic device thereof are provided. An operation method of an electronic device includes the operations of setting an access authority for one or more contents, if there is a request for an access of at least one application to the contents, resetting the access authority for the contents, and controlling the access by the application to the contents in accordance with the reset access authority of the application for the contents.
Abstract:
An image correcting method includes capturing projected images, generating first captured images based on the capturing, analyzing a number of pixels depending on color intensities of colors of the first captured images, and correcting the first captured images based on the analyzing.
Abstract:
A plate of a housing includes a plate layer including an inner surface defining a groove which extends in an extension direction, a cut surface directly extending from the groove, a first surface roughness of the cut surface, and a second surface roughness of the inner surface which is different from the first surface roughness. The plate layer is a remaining thickness of a preliminary plate cut to remove a thickness portion thereof, the groove is a portion of a recessed pattern of the preliminary plate which is defined by the thickness portion and the remaining thickness facing each other, and the cut surface which has the first surface roughness is an exposed surface of the remaining thickness of the preliminary plate cut along a direction intersecting the extension direction of the groove to remove the thickness portion of the preliminary plate.
Abstract:
A housing of an electronic device is disclosed. A housing of an electronic device according to various embodiments of the disclosure may include: a base material containing an aluminum alloy material; a barrier layer formed by anodizing the aluminum of the base material on a surface facing a first direction of the base material, the barrier layer having a thickness of 50 to 150 nanometers; a first porous film located in the first direction with respect to the barrier layer; and a second porous film formed between the first porous film and the barrier layer.
Abstract:
Provided is an electronic device including a display to output an image, a parallax optical element configured to provide light corresponding to the image to a plurality of viewpoints, an input interface configured to receive an input to calibrate the parallax optical element by a user who observes a pattern image from a reference viewpoint among the plurality of viewpoints, and a processor configured to output the pattern image generated by rendering a calibration pattern toward the reference viewpoint, adjust at least one of a pitch parameter, a slanted angle parameter, and a position offset parameter of the parallax optical element based on the input, and output, by the display, the pattern image adjusted by re-rendering the calibration pattern based on an adjusted parameter.
Abstract:
Provided are an image processing method and an image processing device. The image processing method includes generating an image based on viewpoint information of a user; rendering the image based on information about what is in front of the user; and outputting the rendered image using an optical element.
Abstract:
A method and apparatus for measuring a dynamic crosstalk are provided. The method may include: controlling a driver configured to cause a camera to have a dynamic movement; at either one or both of a left eye position and a right eye position of a user, capturing a stereo pattern image output through a three-dimensional (3D) display, by the camera while the camera is in the dynamic movement; and measuring the dynamic crosstalk occurring by the 3D display based on the stereo pattern image captured by the camera.
Abstract:
A head-up display (HUD) device includes a plurality of backlight units (BLUs); a base including a base plate and a base body, the base plate being configured to support the plurality of BLUs, and the base body protruding upward from the base plate; a head detachably connected to the base; a sheet of glass disposed on an upper side of the head; and a thin film transistor disposed on a top surface of the sheet of glass, wherein the head includes a material with a higher thermal conductivity than the base.
Abstract:
Disclosed is an electronic device including a storage storing contents, a display, and a processor configured to set one or more access authorities of one or more applications for accessing the contents stored in the storage while the one or more applications is installed, based on detecting at least one application of the one or more applications to access the contents, display, on the display, a message requesting changing at least one access authority of the at least one application of the one or more applications for accessing the contents, and based on an input associated with the message, change the at least one access authority of the at least one application of the one or more applications for accessing the contents.