Abstract:
In a television, which can be connected to a portable information terminal, it is possible to display video based on the data of a multimedia file stored on a storage medium even in cases where there is no built-in decoder. In cases where a TV itself does not possess a decoder which can decode the data of a multimedia file selected by the user from the multimedia files stored on the USB memory, the CPU of the TV transmits to a smartphone the data of the selected multimedia file and a decoding request command to request that the data be decoded, thus receiving a video signal and/or an audio signal obtained by various types of decoders of the smartphone. Consequently, the CPU of the TV can output video and/or audio to a display unit and a speaker on the basis of the data of the selected multimedia file.
Abstract:
A moving image display apparatus includes a display unit which sequentially displays an image pattern in the form of a moving image on a display screen, a storage unit which stores area sectional information and display format information, wherein the area sectional information defines predetermined divided areas corresponding to the image pattern among a plurality of divided areas into which the display screen is divided, and the display format information defines display formats of the divided areas defined by the area sectional information in a time sequential manner, and a display control unit which controls to display the predetermined divided areas corresponding to the image pattern in accordance with the display formats defined by the display format information.
Abstract:
There is provided an information processing device that includes a communication portion, a detection portion and a display control portion. The communication portion communicates with an external device. The detection portion detects a posture of the information processing device. The display control portion controls display on a display screen based on one of a display format that is determined based on posture information indicating the posture of the information processing device detected by the detection portion and external posture information indicating a posture of the external device that is received by the communication portion, and a display format based on display switch information indicating a display format that is received by the communication portion.
Abstract:
A device source provides an ability to decompose a graphical display into multiple data streams (i.e., different layers). The multiple data streams may include multimedia data streams, operating system (OS) desktop data streams, and mouse data streams. The multiple data streams may be encoded and transmitted independently by the device source to a wireless display device.
Abstract:
Disclosed are a display apparatus and a control method of the same. The display apparatus includes: a display unit, an image processing unit; an image receiving unit which receives an image from an image source; and a controller which controls the image processing unit to crop the image such that an aspect ratio of the received image becomes a preset reference aspect ratio and scale the cropped image in correspondence to a resolution of the display unit. With this configuration, an image with no distortion can be displayed.
Abstract:
One embodiment of the present invention sets forth a method, which includes the steps of generating a first rendered image associated with a first application, independently generating a second rendered image associated with a second application, applying a first set of blending weights to the first rendered image to establish a first weighted image, applying a second set of blending weights to the second rendered image to establish a second weighted image, and blending the first weighted image and the second weighted image before scanning out a blended result to a first display device.
Abstract:
A method for dynamically adjusting a frame buffer resolution, the method comprising calculating a target scaling factor based upon a calculated average frame rate and incrementally changing a current scaling factor to reach the target scaling factor. The method includes calculating the target scaling factor based upon the average frame rate and a current scaling factor. The method includes adjusting a resolution of a frame of data rendered to the frame buffer according to the current scaling factor.
Abstract:
Electrophoretic displays (EPDs) and methods for controlling EPDs are disclosed herein. An embodiment of an EPD includes a first operating format, wherein pixels on at least one area of the EPD are driven individually. The EPD has a second operating format, wherein a plurality of pixels constituting at least one area of the EPD are driven simultaneously. Both the first operating format and the second operating format are performable simultaneously on the EPD.
Abstract:
An image displaying apparatus and an image processing apparatus are provided. The image displaying apparatus comprises a signal receiver unit, a signal processor unit, a display unit, a signal output unit, and a control unit. The signal receiver unit receives a broadcast signal or a signal provided from a signal source. The signal processor unit processes the received signal. The display unit displays the processed signal. The signal output unit comprises an output terminal configured to output the received signal, and a signal converter configured to convert the processed signal. The control unit controls the signal, provided from the signal receiver unit, to be outputted to the external device by using the signal output unit.