Abstract:
An image device generates a plurality of multi-view output images on the basis of an input image, and outputs the plurality of generated output images. The plurality of output images are outputted in a direction opposite to the views of the output images. The plurality of outputted output images are projected towards a left eye and a right eye of a viewer of the image device such that the viewer can recognize three-dimensional images.
Abstract:
A three-dimensional (3D) display apparatus and method are provided. The 3D display apparatus may include a display screen configured to display each of a plurality of sub-images included in a single frame of a 3D image using a time-division multiplexing (TDM), a polarizer configured to polarize each of the displayed sub-images by changing a polarization direction using the TDM, in synchronization with the display screen, and microlens arrays arranged in a plurality of layers and configured to sequentially refract the polarized sub-images, respectively.
Abstract:
A backlight unit includes first light guide plates (LGPs) provided in a line shape, and second LGPs provided in a line shape and disposed between the first LGPs. The backlight unit may include a controller configured to control a plurality of light sources to provide a light to the first LGPs when a three-dimensional (3D) image is displayed on a display panel that receives the light from at least one of the first LGPs and the second LGPs, and to provide the light to the first LGPs and the second LGPs when a two-dimensional (2D) image is displayed on the display panel.
Abstract:
A display device includes a backlight unit. The backlight unit may include a first light guide plate (LGP) comprising a first optical material and a second optical material. The first LGP is configured to emit light guided through the second optical material toward a display panel using the first optical material. The backlight unit may include a second LGP disposed between the first LGP and the display panel. The second LGP is configured to emit light toward the display panel using a diffuser plate provided in a lower portion of the second LGP. The backlight unit may include light sources configured to provide, under control of a controller, light to the first LGP if a three-dimensional (3D) image is displayed on the display panel, and to provide light to the second LGP if a two-dimensional (2D) image is displayed on the display panel.
Abstract:
Provided are a capacitor and an electronic device including the same. The capacitor includes a first electrode layer, a second electrode layer, a dielectric layer disposed between the first electrode layer and the second electrode layer, and an interlayer disposed between the first electrode layer and the dielectric layer. The interlayer includes a first interface material, the first interface material includes at least one Group 13 element, and the at least one Group 13 element is not aluminum (Al).
Abstract:
Provided is a cleaner including: a main body; and a fan motor configured to generate a suction force inside the main body, wherein the fan motor includes: a motor configured to generate a rotational force; an impeller rotatable by the motor; and a diffuser configured to guide air discharged from the impeller, and wherein the main body includes: a body including a reduction part configured to reduce a maximum flow rate while maintaining an average flow rate of air discharged from the diffuser, and a body outlet configured to guide the air passed through the reduction part; and a filter with at least a portion disposed across the body outlet to filter out rubbish from the air discharged from the body outlet.
Abstract:
A vacuum cleaner comprises: a suction part for suctioning external air; a discharge part through which the sucked air is discharged to the outside; a frame along a flow path between the suction part and the discharge part; and a filter including a filter member which is supported by the frame and which separates dust from the suctioned air, wherein the filter member includes: a first filter part spaced from and to be parallel with an opening formed in the frame; a second filter part having one side supported by the frame and another side extended from the one side thereof toward the edge of the first filter part; and a bent part between the edge of the first filter part and the other side of the second filter part, and the thickness of the first filter part or the second filter part is different from the thickness of the bent part.
Abstract:
An electronic device is disclosed, including a window including a front surface facing an outer surface of the electronic device, a rear surface facing an opposite direction to the front surface, and a side surface extending from an edge of the front surface to an edge of the rear surface, a housing, in which the window is seated, a display disposed between the window and the housing. The housing includes a first surface covered by the window, a second surface extending from the first surface that is visible from an exterior of the electronic device, a conductive part and a nonconductive part, together defining the first surface and the second surface, wherein the first surface and the second surface of the housing have different levels of gloss.
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:
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.