Abstract:
A method and apparatuses for device control performed by a first device to control services provided by a service providing device is provided. The method includes connecting, through out-of-band communication, to a second device that includes identification information related to the service providing device, receiving, through the out-of-band communication, the identification information related to the service providing device from the second device, executing at least one application related to the identification information, and connecting, through in-band communication, to the service providing device using the identification information, and controlling, from the first device, services provided by the service providing device.
Abstract:
A semiconductor package may be composed of a variety of different types of semiconductor chips of different sizes and support structures stacked within the semiconductor package. Semiconductor chips having a larger chip size may be stacked above smaller semiconductor chips. Smaller chips may be included in a layer of the semiconductor package along with a support structure which may assist supporting upper semiconductor chips, such as during a wire bonding process connecting bonding wires to chip pads of the semiconductor chips above the support structure. Use of different thicknesses of die attach film may allow for a further reduction in height of the semiconductor package. When implemented as a package housing a memory controller, DRAM semiconductor chips and non-volatile memory chips, locating the memory controller in a lower layer of the semiconductor package facilitates usage of the package substrate as a redistribution layer to provide communications between the memory controller and the DRAM and non-volatile memory chips.
Abstract:
The display apparatus includes: a display; a decoder which decodes an image in unit of a MCU; a scaler which scales the decoded image; a memory which stores the scaled image; and a controller which controls the display to display the scaled image, sets an RAU structure of the image, and further stores in the memory image information corresponding to the RAU structure. Thus, even if a decoded and scaled image is zoomed in, the quality of the zoomed image may be maintained at a high level.
Abstract:
A display apparatus, a connectable external peripheral device and a method of displaying an image are disclosed. The display apparatus includes a display unit; an image processor which first processes an image signal according to a preset first image processing operation, and secondly processes the first processed image signal processed according to the first image processing operation, and outputs the processed image signal to the display unit. The display apparatus further includes a peripheral device connector, to which an external peripheral device is connected that processes the image signal processed by the first image processing operation. The second image processing operation is performed in the external peripheral device. The image processor transmitting to the external peripheral device the first processed image signal in response to the external peripheral device being connected to the peripheral device connector.
Abstract:
A display apparatus is provided. The display apparatus is configured to control at least one external device to which an identification marker is attached. The display apparatus also includes an imaging sensor configured to obtain an image of the at least one external device, and a communicator configured to perform communication with at least one of a server and the at least one external device. The display apparatus also includes a processor configured to transmit identification information obtained from an identification marker included in the image, and in response to control information for controlling the at least one external device being received from the server or the at least one external device, control the display to match and display an object for controlling the at least one external device with an external device image based on the control information.
Abstract:
A method of processing a graphics command may include: receiving the graphics command from an apparatus that executes an application; selecting at least one shader included in the graphics command to be processed by a graphics processor; creating a shader program using the selected at least one shader; searching for a shader program corresponding to the created shader program from among one or more previously compiled shader programs; and outputting a found shader program.
Abstract:
A display apparatus for post-processing the image of the contents, an image post-processor and a method for post-processing the image of the contents are disclosed. The display apparatus includes a communicator which communicates with a server, a display which displays contents received from the server, and a controller which determines an image post-processing method for elements of the contents based on source information of the contents and predetermined condition information, renders the elements which are post-processed according to the determined image post-processing method, and controls the display to display the contents generated after the rendering. Accordingly, the display apparatus can selectively implement image post-processing for the elements of the contents.
Abstract:
A semiconductor package may be composed of a variety of different types of semiconductor chips of different sizes and support structures stacked within the semiconductor package. Semiconductor chips having a larger chip size may be stacked above smaller semiconductor chips. Smaller chips may be included in a layer of the semiconductor package along with a support structure which may assist supporting upper semiconductor chips, such as during a wire bonding process connecting bonding wires to chip pads of the semiconductor chips above the support structure. Use of different thicknesses of die attach film may allow for a further reduction in height of the semiconductor package. When implemented as a package housing a memory controller, DRAM semiconductor chips and non-volatile memory chips, locating the memory controller in a lower layer of the semiconductor package facilitates usage of the package substrate as a redistribution layer to provide communications between the memory controller and the DRAM and non-volatile memory chips.
Abstract:
An image processing apparatus is provided including: a plurality of buffers, a first buffer from a among the plurality of buffers storing a first frame; and a controller configured to obtain frame information of a second frame, which includes second object information about a second object added in the second frame and second object location information indicating a second object area that is an area of the second object in the second frame, detect a duplicate area in the first frame, copy the duplicate area stored in the first buffer to a second buffer from among the plurality of buffers, and draw the second object in the second buffer based on the frame information.
Abstract:
A display apparatus and a method for displaying a highlight thereof are provided. The method for displaying a highlight on a display apparatus includes determining a shape and a size of a menu item selected by a user, determining a plurality of source images to be used to generate a highlight with respect to the menu item according to whether the highlight has symmetry based on the shape of the menu item, and generating the highlight with respect to the menu item by magnifying a size of the plurality of source images according to the size of the menu item and displaying the generated highlight.