Abstract:
An apparatus and a method for interacting with a mobile telephone are provided. A remote control unit receives a user command and transmits it to a TV system which recognizes the user command as a telephone function command and transmits the function command to the mobile telephone if the TV system is set to Telephone Mode. The TV system may also output data received from the mobile telephone in response to the transmitted function command. Thus, a user may interact with a mobile telephone using an interactive TV system by displaying text/image data received from the telephone and by inputting various telephone function commands using a remote control unit. Upon receiving a function command from the TV system, the mobile telephone generates output data in response to the function command and transmits itto the TV system. A display unit of the TV system displays the text/image data, and a speaker outputs the sound data. As a result, a user may conveniently interact with a mobile telephone using a display unit and a speaker of an interactive TV system with a remote control unit.
Abstract:
The present disclosure relates to a robot mechanism for nondestructive aging evaluation of a cable. The robot mechanism includes at least two inspection modules, and a coupler disposed between the at least two inspection modules and connected to each of the inspection modules to adjust a separation between the inspection modules. Each of the inspection modules approaches a cable and automatically inspects an aged state of the cable. The robot mechanism automatically measures an aged state of a cable in a nondestructive manner and establishes a database of cable aging, so that normal operation of the cable can be ensured through stable management of the cable by evaluating a replacement time and the aged state of the cable based on the database.
Abstract:
A nondestructive inspection method of testing insulators using frequency resonance function that can inspect an anomaly of an insulator by vibrating the insulator with a force having the characteristic of white noise, measuring the change in motion of the insulator according to the vibration and calculating the frequency resonance function of the insulator is disclosed.
Abstract:
A device for receiving broadcast signal is disclosed. More specifically, the device includes an user interface (132) configured to provide at least one command signal for selecting a data broadcast signal which has been selected by a user and for selecting an audio, a controller (100) configured to provide control signals according to the command signal inputted via the user interface (132), a tuner (102) configured to synchronize at least one transmit stream (TS) of the selected data broadcast channel according to the control signal, a TS unit (104) configured to convert the at least one TS into at least one of a plurality of audible signals for video, a plurality of audible audio signals for data, a plurality of displayable video signals, and a plurality of displayable data signals (200), an audio switch configured to output any one of the plurality of audible audio signals for video or the plurality of audible audio signals for data according to the control signal, a display module (138) configured to display at least one of the video and the data on a same screen, and at least one speaker (137) configured to output audible audio outputted from the audio switch.
Abstract:
A nondestructive inspection method of testing insulators using frequency resonance function that can inspect an anomaly of an insulator by vibrating the insulator with a force having the characteristic of white noise, measuring the change in motion of the insulator according to the vibration and calculating the frequency resonance function of the insulator is disclosed.
Abstract:
An operating method of an image display apparatus includes displaying a screen on a display and displaying a thumbnail image screen in response to a command to display an input image list. The thumbnail-image list includes a plurality of groups of thumbnail images that respectively correspond to a plurality of input image signals on the display. Each thumbnail-image group includes one or more thumbnail images that represent different points of time in a corresponding input image signal.
Abstract:
A method of operating an image display apparatus includes generating a thumbnail image based on an input signal, detecting an error in the thumbnail image, and displaying the thumbnail image if no error is detected in the thumbnail image.
Abstract:
A method of a union remote controller and a union remote controller information providing system and a method for operating the same is disclosed, in which various electronic apparatuses are controlled just by downloading simple remote controller information regardless of whether an electronic apparatus is on the market, kinds, manufacture companies, and model names. The union remote controller includes a data base for storing remote controller information correspondingly to manufacture companies and models; and a server for operating an Internet site which obtains remote controller information provided from manufacture companies of each electronic apparatus, stores them in a data base, and provides remote controller information according to a user's request. Since it is possible to control multiple electronic apparatuses with one remote controller, and it is also possible to control products which will be on the market later by simply downloading data, there is no temporal and economical inconvenience for a user to maintain a number of remote controllers.
Abstract:
An apparatus for processing images includes a de-multiplexer, a first decoder, a thumbnail generator and an encoder. The de-multiplexer receives a data stream, the de-multiplexer de-multiplexing a video signal and a channel information from the data stream. A first decoder decodes the video signal to provide a decoded video signal including at least one of Predicted frame, (P-frame), Intra frame (I-frame) or Bi-directional frame (B-frame). The thumbnail generator is coupled to the first decoder, and the thumbnail generator generates at least one of a still picture thumbnail or a moving picture thumbnail based on the decoded video signal. The still picture thumbnail and the moving picture thumbnail have at least one of a smaller resolution or a smaller data size than the decoded video signal. The encoder is coupled to the thumbnail generator and the de-multiplexer. The encoder encodes one of still picture thumbnail and the moving picture thumbnail with the channel information to provide a thumbnail data stream, which is used for providing the thumbnails of moving picture and/or still picture on a display.
Abstract:
The present disclosure relates to a robot mechanism for nondestructive aging evaluation of a cable. The robot mechanism includes at least two inspection modules, and a coupler disposed between the at least two inspection modules and connected to each of the inspection modules to adjust a separation between the inspection modules. Each of the inspection modules approaches a cable and automatically inspects an aged state of the cable. The robot mechanism automatically measures an aged state of a cable in a nondestructive manner and establishes a database of cable aging, so that normal operation of the cable can be ensured through stable management of the cable by evaluating a replacement time and the aged state of the cable based on the database.