Abstract:
A method or device for displaying visual content to provide part of an image with other devices, the method comprising receiving location data representative of the display location of at least one user device within a zone; determining, responsive to the received location data by the at least one user device, visual content for display by each user device; and transmitting to the user device(s) data representative of the visual content for display.
Abstract:
An anamorphic display device is provided. The anamorphic device includes a secondary display configured to be detachably coupled to a computing device including a primary display; and a non-transitory device operatively coupled to the primary and secondary displays and having instructions thereon that are configured, when executed, to render an anamorphic image on at least one of the primary and secondary displays so as to create, in combination, a three-dimensional effect from a point of view facing the primary and secondary displays.
Abstract:
A display apparatus includes: a signal receiver configured to receive a video signal from an external first display apparatus; a signal processor configured to process the video signal received in the signal receiver; a display configured to display an image based on the video signal processed by the signal processor; and a controller configured to control the signal processor so that the display does not display an image based on a first frame of the video signal including a first on-screen-display (OSD) menu generated by the first display apparatus and to display an image based on a second frame of the video signal excluding the first OSD menu.
Abstract:
The present invention relates to calibration of display devices by a system achieving white luminescence balance in video wall display systems. The present invention more particularly relates to a video wall system having a multitude of image display devices, each image display device receiving video transmission to generate and display a certain dedicated portion of a video content by which the video content is displayable in the form of a combined screen, said video wall system further comprising a control station controlling the operation thereof in data communication with each image display device of the video wall system.
Abstract:
디스플레이 장치가 개시된다. 상기 디스플레이 장치는, 콘텐트(content)가 저장되는 메모리; 상기 콘텐트의 적어도 일부가 출력되는 디스플레이 패널; 상기 디스플레이 장치의 측면에 배치되는 복수의 접점 구조(contact points); 및 상기 메모리, 상기 디스플레이 패널, 및 상기 복수의 접점 구조와 전기적으로 연결되는 제어 회로를 포함할 수 있다.
Abstract:
A display apparatus, which has an input port and an output port for connection with at least one among a plurality of display apparatuses that constitute a video wall, and easily updates setting information by exchanging the setting information with a display apparatus connected by the input port and designated as a master display apparatus and a display apparatus connected by the output port and designated as a slave display apparatus, and a control method thereof. Thus, the setting information for the plurality of display apparatus connected together can be synchronized much easily.
Abstract:
The present invention relates to a system and method for operating a video wall display system which comprises a plurality of display devices in connection with a control unit that process source files to be displayed on a plurality of image display devices. More particularly, the present invention relates to a video wall system having a multitude of image display devices with a serial video transmission line between adjacent image display devices of the video wall system, the plurality of image display devices being in connection with each other through the serial video transmission line transferring an image or video signal to an adjacent image display device by means of at least one input and output connector of each image display device, the video wall system further comprising a control station controlling the operation thereof and the control station in data communication with each image display device.
Abstract:
A tileable display panel includes an array of display pixels including central display pixels near a center of the array having a center pixel pitch and perimeter display pixels along a perimeter of the array. A perimeter region surrounds the array. The perimeter region includes a first side that is joinable to a second side of another instance of the tileable display panel to form a multi-panel display. The perimeter region has a width that is greater than at least half the center pixel pitch such that a gap between adjacent perimeter display pixels of the tileable display panel and the other instance of the tileable display panel when forming the multi-panel display is greater than the center pixel pitch. The gap is visually masked by increasing a characteristic of the perimeter display pixels adjacent to the gap relative to the same characteristic of the central display pixels.
Abstract:
An immersive display system is disclosed that includes screens configured to mitigate reduction in conrast ratio due at least in part to peripheral light incident on the screens. The immersive display system includes at least two screens and at least two projector systems. The screens have a multi-layered structure configured to selectively reflect light in a tailored polarization state. Adjacent screens can be configured to selectively reflect light in orthogonal polarization states. The projector systems can be configured to project video onto their respective screens with light in a suitable polarization state. The screens can be further configured to selectively reflect light within a plurality of tailored spectral bands, the spectral bands being different for respective screens.
Abstract:
An immersive display system is disclosed that includes screens configured to mitigate reduction in contrast ratio due at least in part to peripheral light incident on the screens. The immersive display system includes at least two screens and at least two projector systems. The screens have a multi-layered structure configured to selectively reflect light in narrow wavelength bands. Each screen is configured to strongly diffusely reflect light in narrow wavelength bands that are different from the wavelength bands reflected by other screens in the immersive display system. Projector systems can be configured to provide light to associated screens in the narrow wavelength bands reflected by those screens.