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:
A display system includes a display alignment tracker configured to track the position of a first signal and the position of a second signal. The display alignment tracker optically multiplexes a portion of a first signal and of the second signal into a combined optical signal and measures a differential between the first signal and the second signal. A system for rendering optical signals on a head-mounted display, comprising: a first waveguide configured to guide a first signal therethrough; a second waveguide configured to guide a second signal therethrough; an optical multiplexer in optical communication with the first and second waveguides and configured to combine at least a portion of the first signal and of the second signal; and an optical sensor in optical communication with the optical multiplexer and configured to receive a combined optical signal including at least a portion of the first and of the second signal.
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:
An electronic device is provided. The electronic device includes a foldable housing including a first housing part that includes a first surface and a second surface facing opposite to the first surface, a second housing part including a first surface that faces the first surface of the first housing part when the housing is folded in a first direction and a second surface that faces the second surface of the first housing part when the housing is folded in a second direction. The electronic device includes a first display, a second display disposed, a first sensor disposed in the first housing part, a second sensor disposed in the second housing part, and a processor that is configured to identify an angle between the first housing part and the second housing part using the first sensor and the second sensor and execute at least one action of the electronic device based on the identified angle.
Abstract:
A wearable device suitable for being worn by a user, said wearable device comprising a proximity sensor configured to detect a proximity parameter representative of a distance between said wearable device and another wearable device; a transceiver configured to send proximity information pertaining to said detected proximity parameter to a processing unit and to receive from said processing unit visual output generated based on said proximity information; and a display layer configured to display said visual output.
Abstract:
Embodiments are disclosed that relate to electrostatic communication among displays. For example, one disclosed embodiment provides a multi-touch display comprising a display stack having a display surface and one or more side surfaces bounding the display surface, a touch sensing layer comprising a plurality of transmit electrodes positioned opposite a plurality of receive electrodes, the touch sensing layer spanning the display surface and bending to extend along at least a portion of the one or more side surfaces of the display, and a controller configured to suppress driving the plurality of transmit electrodes of the touch sensing layer for an interval, and during that interval, receive configuration information from a transmit electrode of a touch sensing layer in a side surface of an adjacent display.
Abstract:
Mechanisms are described for sensing and compensating for the misalignment of multiple displays that are cooperating to present an image. A unitary viewing area is determined across the multiple displays that includes a portion of the first display and a portion of the second display based on a location of a linear component of a single user input applied to both displays, such as a hovering gesture provided by a user's finger. The unitary viewing area is determined in such a way that the portion of the image presented on the first display is horizontally aligned with the portion of the image presented on the second display within the viewing area. In this way, the image appears continuous to the viewer across the displays, regardless of the misalignment of the user devices.
Abstract:
A computing device is described. The computing device a processor, a bus coupled to the processor, a graphics display device, coupled to the bus, to display graphics data, an interactive display device, coupled to the bus, to display bitmap image data and a manager module to manage the bitmap image data and transmit the bitmap image data to the interactive display device.
Abstract:
The methods enable display of a data object over two display apparatuses on the fly by operatively connecting two independent content processing devices together. Each device is arranged for rendering a subset of a dataset representing a data object. When shown by display devices fed by each of the content processing devices, display of the subsets result in display of at least part of the data object in a contiguous way over the joint display area provided by the display devices. Furthermore, it enables interactive control of the way the data object is displayed over a display area provided by the first display apparatus controlled by the first content processing device and the second display apparatus controlled by the second content processing device. The method may be extended to more than two screens. The devices may operate in a master-slave configuration or in a peer-to-peer configuration, with or without a central server.