Abstract:
A liquid crystal display includes a light source unit, a first substrate provided on the light source unit, an electrode layer provided on the first substrate, a second substrate separate from the electrode layer, a polarizing plate provided on a surface of the second substrate, a liquid crystal layer disposed between the electrode layer and the second substrate, a reflecting unit provided on a surface of the first substrate; and a wire grid polarizer provided on an opposite surface of the first substrate.
Abstract:
An electronic device is provided. The electronic device includes a display, memory storing one or more computer programs, and one or more processors communicatively coupled to the display and the memory, wherein the one or more computer programs include computer-executable instructions that, when executed by the one or more processors, cause the electronic device to control the display to display a first screen in a first area of the display during a first state in which a second area among the first area and the second area of the display is not exposed to an outside of the electronic device, detect an event in a state in which the first screen is displayed in the first area, control, based on detection of the event, the display to display a first object corresponding to the event in a partial area of the first area, the first object being displayed in at least a part of the first screen, identify a first gesture input of a user in an area in which the first object is displayed, in a state in which an area ratio of a size of the first object to a size of the first area is equal to or greater than a designated ratio, and control, in response to the identification of the first gesture input, the electronic device to change a state of the display from the first state to a second state in which the first area and the second area of the display are exposed to the outside of the electronic device.
Abstract:
A method of designing a layout of an integrated circuit includes generating floorplan data by performing floorplan based on input data for the integrated circuit, searching for a path between a first point and a second point, which are specified, the searching based on the floorplan data, and positioning components of the layout based on a result of the searching. The searching for the path includes distinguishing based on the floorplan data a first region where routing is possible from a second region where the routing is not possible, receiving position data on the first point and the second point, and searching for a shortest path between the first point and the second point, on the first region.
Abstract:
A backlight unit for a three-dimensional (3D) image display includes a light guiding plate configured to guide light; a light source configured to emit the light to the light guiding plate; and a diffraction grating structure provided on a surface of the light guiding plate, the diffraction grating structure configured to diffract the light emitted from the surface of the light guiding plate, and including diffracting gratings having different heights.
Abstract:
A light-field display device includes a screen, a grating pixel array, and an image generator. The image generator outputs light including three-dimensional (3D) image information. The grating pixel array is configured to diffract the light including the 3D image information in multiple directions, thereby forming a 3D image. The image generator outputs the light having the 3D image information to the screen at a predetermined angle.
Abstract:
A double-sided glassless three-dimensional (3D) display apparatus including a backlight unit may include an light source unit configured to emit light to the front and the rear thereof by diffracting incident light, and first and second display devices configured to use the light emitted by the light source unit as light for a 3D image formation and to form the 3D image on both sides of the light source unit. The light source unit may include a light source portion configured to emit three lights that have three different respective wavelengths and a light guide panel configured to transmit the lights emitted by the light source portion to the first and second display devices.
Abstract:
A pattern structure includes a plurality of pattern structure units arranged on a same plane, where each of the plurality of pattern structure units includes a plurality of microstructures defined on a surface thereof and having a width of less than about 1 micrometer (μm); and a connection layer disposed between the plurality of pattern structure units and having a width of less than about 10 μm, where the connection layer connects the plurality of pattern structure units to each other.
Abstract:
An electronic device is provided. The electronic device includes a housing, a flexible display, one or more sensors including at least one biometric recognition sensor, memory storing one or more computer programs, and one or more processors communicatively coupled to the flexible display, the one or more sensors and the memory, wherein the one or more computer programs include computer-executable instructions that, when executed by the one or more processors, cause the electronic device to receive a first input for recognizing biometric information through the at least one biometric sensor, identify, in response to the first input, whether the first input is an input related to user authentication in a running application, perform, in response to the first input not being an input related to the user authentication in the running application, user authentication related to a state of the electronic device, based on success of the user authentication associated with the state of the electronic device, display, on the flexible display a user interface comprising at least one menu available for an execution request by receiving a second input while the first input is being held, and perform function corresponding to a menu selected using the user interface, based on the receiving of the second input while the first input is being held.
Abstract:
A light emitting device includes a metal reflective layer including a phase modulation surface on which oblong phase modulation elements are formed; a first electrode provided on the metal reflective layer; an organic emission layer that is provided on the first electrode and that emits light; and a second electrode provided on the organic emission layer, wherein the oblong phase modulation elements are arranged to form a geometric phase lens.
Abstract:
A light emitting device includes a first electrode; a white organic light emission structure provided on the first electrode; a second electrode provided on the white organic light emission structure; and a reflective layer provided on an opposite side of the first electrode from the white organic light emission structure and including a first reflective region, a second reflective region, and a third reflective region having different heights from one another and forming different separation distances from the second electrode. A plurality of recesses may be provided in at least one of the first reflective region, the second reflective region, and the third reflective region on a surface of the reflective layer, and thus the color purity of the light emitting device may be improved.