The present application is based upon and claims priority from prior Japanese Patent Application No. 2009-212773, filed on Sep. 15, 2009, the entire contents of which are incorporated herein by reference.
1. Field
The present invention relates to an information processing apparatus and display method therefor having a media player function.
2. Description of the Related Art
The media player function has come to be used in electronic apparatus. The media player function is a function that allows an electronic apparatus to display, as a layer, contents of various media such as audio/video data (AV data). That is, the media player function allows an electronic apparatus to display AV data that is stored in an apparatus or device externally connected to the electronic apparatus in the same manner as AV data stored in a built-in HDD or the like.
For example, JP-A-2005-203900, which is directed to a data recording apparatus, describes a TV receiver that reproduces digital information recorded in a memory card and outputs resulting video and audio. Furthermore, electronic apparatus capable of handling plural kinds of recording media are known. However, those electronic apparatus are associated with a problem that to display a content such as a video image, a picture, or music the user is required to first recognize or become aware of a type of a subject recording medium and then select an application capable of activating the subject recording medium. This is inconvenient to the user.
A general configuration that implements the various features of the present invention will be described with reference to the drawings. The drawings and the associated descriptions are provided to illustrate embodiments of the invention and not to limit the scope of the invention.
An embodiment according to the present invention will be described in detail with reference to the accompanying drawings. The scope of the claimed invention should not be limited to the examples illustrated in the drawings and those described below.
A TV receiver according to an embodiment of the present invention will be hereinafter described with reference to
BS, CS, and terrestrial digital broadcast waves are received by an antenna 1 and resulting reception signals are supplied to the digital tuner 11. Likewise, terrestrial analog broadcast waves are received by the antenna 1 and resulting reception signals are supplied to the analog tuner 12. Each of the digital tuner 11 and the analog tuner 12 employs a phase-locked loop (PLL), and is used for tuning in to a desired broadcast signal by specifying reception parameters such as a center frequency and a bandwidth under the control of the microprocessor 10.
For example, in the case of the terrestrial digital broadcast in Japan, the broadcast reception signal selected by the digital tuner 11 is supplied to the digital demodulator 13 which is of an OFDM (orthogonal frequency division multiplexing) type and then to the TS decoder 15, whereby it is demodulated and decoded into a digital video signal and audio signal. The reception signal selected by the analog tuner 12 is supplied to the analog demodulator 14, where it is demodulated into an analog video signal and audio signal.
The TV receiver is also equipped with a signal processor 16, a graphic processor 17, an OSD (on-screen display) signal generator 18, a video processor 19, a display 20, an audio processor 21, speakers 22, a user interface panel 23, an IR receiver 24, a remote controller 25, a flash memory 26, a USB (universal serial bus) connector 27, a card connector 28, and a network communication interface 29. The signal processor 16 selectively performs various digital signals processing on the digital video signal and audio signal supplied form the TS decoder 15 and outputs resulting video signal and audio signal to the graphic processor 17 and the audio processor 21, respectively. Furthermore, the signal processor 16 selectively digitizes the analog video signal and audio signal supplied from the analog demodulator 14, performs given pieces of digital signal processing on resulting digital video signal and audio signal, and outputs resulting video signal and audio signal to the graphic processor 17 and the audio processor 21, respectively.
The graphic processor 17 selectively superimposes an OSD signal generated by the OSD signal generator 18 on the digital video signal that is output from the signal processor 16, and outputs a resulting video signal. The video processor 19 performs, on the digital video signal that is output from the graphic processor 17, conversions such as a size adjustment to make the digital video signal suitable for the display 20. The display 20 displays video corresponding to the video signal that is output from the video processor 19. The audio processor 21 performs, on the digital audio signal that is output from the signal processor 16, conversions such as a volume adjustment to make the digital audio signal suitable for the speakers 22. The speakers 22 reproduce audio corresponding to the audio signals that are output from the audio processor 21.
The microprocessor 10 receives operation command supplied from the user interface panel 23 or operation command transmitted from the remote controller 25 and received by the IR receiver 24, and controls individual components in such a manner that the content of the operation is reflected therein. The user interface panel (keyboard) 23 and the remote controller 25 correspond to an operation module that functions as a user interface. As shown in
The USB connector 27 is provided for connection of various USB devices. The card connector 28 is provided for connection of various media cards. The network communication interface 29 is connected to the Internet directly or via a LAN (local area network). Where time information is to be acquired from broadcast waves, the microprocessor 10 captures it from a signal received by the antenna 1. Where basic data such as time information, weather information, and fortune-telling information are to be acquired over a network, the microprocessor 10 captures those data from the network communication interface 29.
BGM (preinstalled BGM) and various kinds of registration information to be used for reproduction of the BGM may be stored in the flash memory 26 (nonvolatile memory) in advance, that is, at the shipment stage of the TV receiver, by the manufacturer side.
Video image, picture, or musical data can be read via the USB connector 27 or the card connector 28 from an external USB device (memory or the like) or memory card that is connected to it.
To realize a photo viewer function, a photo frame function, for example, the microprocessor 10 is configured so as to be able to perform a control for capturing one or plural photo images that are held as files in a USB memory connected to the USB connector 27 or a media card connected to the card connector 28 and displaying each photo image on the display 20 after causing the signal processor 16, the graphic processor 17, and the video processor 19 to process it.
The auto start function is activated automatically for an insertion-detected device and does not require the user to select a device. And no device selection screen is displayed unlike in the case of an ordinary menu that is displayed when the main menu key 50, the quick menu key 51, or the like is operated. This is an important feature of the embodiment.
The screen of
Elements relating to the above transition flowchart are as follows:
<Display Mode>
Switching is made between display modes by the green key in the normal list screen. The display modes are all display and folder display.
The folder display mode is employed in the initial state.
Sorting is performed when the red key is operated. File name order, latest-first order, oldest-first order are provided as items of the content sorting.
The file name order is employed in the initial state.
<Selective Playback>
The selective playback is a manner of playback in which only selected video image contents in the same directory are played back.
In the embodiment, the media player function of digital television is provided with the auto start function which utilizes device insertion detection and a list of applications that can be activated for a detected device is displayed. As a result, the time and labor that are taken to activate an application desired by the user can be saved.
When a list of video image contents stored in a connected device is displayed, a preview of a content indicated by the cursor is performed. As a result, the details of each content can be recognized even if it is not played back in a full screen mode. This facilitates a content search.
The media player function of the embodiment is provided with the selective playback function which enables playback of only contents that are desired by the user without the need for storing them in the TV receiver. As a result, the time and labor of storage and deletion of contents can be saved.
The embodiment has the following features:
1. The auto start function which utilizes device insertion detection is provided as a method for activating the media player function. All applications relating to an insertion-detected device are displayed in a selection screen and an application desired by the user is activated.
2. In the media player function, a preview area is provided in a screen for display of a list of video image contents stored in an external connection device and a content is preview-displayed there.
3. The media player function is provided with the selective playback function which enables playback of only contents that are desired by the user without the need for storing them in the TV receiver.
Although the embodiment according to the present invention has been described above, the present invention is not limited to the above-mentioned embodiments but can be variously modified. Constituent components disclosed in the aforementioned embodiment may be combined suitably to form various modifications. For example, some of all constituent components disclosed in the embodiment may be removed, replaced, or may be appropriately combined with other components.
Additional advantages and modifications will readily occur to those skilled in the art. Therefore, the invention in its broader aspects is not limited to the specific details and representative embodiments shown and described herein. Accordingly, various modifications may be made without departing from the spirit or scope of the general inventive concept as defined by the appended claims and their equivalents.
Number | Date | Country | Kind |
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2009-212773 | Sep 2009 | JP | national |