The present invention relates to a display device for displaying a plurality of images at the same time.
When a main content image of, e.g., television (TV) broadcasting and a sub-content image, such as a program listing, are displayed at the same time, it is usual to display the sub-content image in a blank area that is generated by scaling down the main content image, or to display the main content image and the sub-content image in overlapped relation (i.e., by replacing a part of the main content image with the sub-content image).
Assume here, for example, that an aspect ratio (horizontal size:vertical size in a viewing state) of a display portion is 16:9 and the main content image is displayed in accordance with HDTV broadcasting (aspect ratio of 16:9). In such a case, when only the main content image is displayed, the main content image is displayed at the aspect ratio of 16:9 by setting the vertical size of the main content image to be matched with that of the display portion. When the main content image and the sub-content image are both displayed at the same time, the sub-content image is displayed in a blank area that is generated by resizing the main content image (i.e., by reducing the vertical size of the main content image to be smaller than that of the display portion and displaying the main content image at the aspect ratio of 16:9). Alternatively, the sub-content image is displayed in overlapped relation to a part (e.g., a peripheral end portion) of the main content image without resizing the main content image.
Patent Literature 1 discloses a technique for, when a navigation image is to be scaled up in an instrument panel configured to display the navigation image and a speed meter image at the same time, both the images are displayed by enlarging only the horizontal size of the navigation image without changing the vertical size thereof such that the speed meter image is changed to the form having a smaller horizontal size.
PTL 1: Japanese Patent No. 4302764
The above-described related art has a problem that when the sub-content image is displayed in addition to the main content image, viewing of the main content image is impeded by resizing of the main content image or overlapped display of the sub-content image. Another problem resides in that an additional load is applied to a display device because of needing a process of resizing the main content image or a process of overlapping the sub-content image.
An object of the present invention is to propose a display device that is more convenient for users.
The present invention provides a display device including a display portion having an aspect ratio of (16+a):9 on an assumption that a is a positive number and the aspect ratio represents a ratio of horizontal size:vertical size, wherein the display device presents full display of a first image having the aspect ratio of 16:9 such that a vertical size of the first image is substantially equal to a vertical size of the display portion, while displaying a second image to be not overlapped with the first image.
The above-mentioned features can solve the problem that viewing of the first image is impeded by resizing of the first image or overlapped display of the second image.
According to the present invention, a display device being more convenient for users can be realized.
Embodiments of the present invention will be described below with reference to
The first image displayed in the main area MAR is, for example, a full HDTV (high-definition television broadcasting, also called hi-vision broadcasting) image having the aspect ratio of 16:9, or a One Seg (one segment receiving service for mobile devices) TV image having the same aspect ratio of 16:9 (see
The second image displayed in the sub-area SAR may be any image, such as a user interface (UI) image, a gazette image, an image supplied from an external network or an external device, or a television broadcasting image different from that displayed in the main area MAR. The aspect ratio, a resolution or an image source of the second image may also be optional. Furthermore, a plurality of content images may be displayed in the sub-area SAR.
In the television receiver of the present invention, since the first image having the aspect ratio of 16:9 is presented in full display such that the vertical size of the first image is substantially equal to the vertical size of the display portion, while the second image is displayed to be not overlapped with the first image, an advantage is obtained in that viewing of the first image is not impeded by the display of the second image. Another advantage is that a load applied to the television receiver is reduced because a process of resizing the first image or a process of overlapping the second image is no longer required. Still another advantage is that the arrangement of
In the television receiver, as illustrated in
Moreover, in the television receiver, a third image having the aspect ratio of (16+a):9 is presented in full display in the entire display portion (i.e., the main area MAR+the sub-area SAR) such that a vertical size of the third image is substantially equal to the vertical size of the display portion 1 (see
In the television receiver, since the image having a resolution not lower than that of the full HDTV image is displayed as it is in the main area MAR, a resolution in the main area MAR is desirably set to be not lower than that defined by 1080 (number of scan signal lines) in the vertical direction×1920 in the horizontal direction, as illustrated in
The source driver SD drives data signal lines of the liquid crystal panel LCP, and the gate driver GD drives scan signal lines of the liquid crystal panel LCP. The tuner receives television broadcasting.
The user input processing unit processes a user input and outputs a processing result to the main area control unit and the sub-area control unit. The main area control unit outputs image data for the main area to the display control unit, the image data corresponding to the processing result of the user input processing unit. The sub-area control unit outputs image data for the sub-area to the display control unit, the image data corresponding to the processing result of the user input processing unit.
The display control unit includes a timing controller. The display control unit receives the image data for the main area and the image data for the sub-area and controls a liquid crystal panel drive circuit including the gate driver GD and the source driver SD.
For example, when a user inputs an instruction of displaying an HDTV image under broadcasting in the main area MAR, the main area control unit having received the processing result from the user input processing unit takes in corresponding HDTV image data through the tuner and outputs the taken-in data to the display control unit.
As another example, when a user inputs an instruction of displaying an HDTV image, recorded on a recording medium (e.g., a hard disk), in the main area MAR, the main area control unit having received the processing result from the user input processing unit takes in HDTV image data, recorded on the recording medium, through the communication unit and outputs the taken-in data to the display control unit.
As still another example, when a user inputs an instruction of displaying an HDTV image residing on a network in the main area MAR, the main area control unit having received the processing result from the user input processing unit takes in HDTV image data on the network through the communication unit and outputs the taken-in data to the display control unit.
As still another example, when a user inputs an instruction of displaying an HDTV image, captured by a video camera (another device), in the main area MAR, the main area control unit having received the processing result from the user input processing unit takes in HDTV image data, captured by the video camera, through the communication unit and outputs the taken-in data to the display control unit.
As still another example, when a user inputs an instruction of displaying a Twitter image in the sub-area SAR, the sub-area control unit having received the processing result from the user input processing unit takes in Twitter image data on the network through the communication unit and outputs the taken-in data to the display control unit.
As still another example, when a user inputs an instruction of displaying a TV telephone image in the sub-area SAR, the sub-area control unit having received the processing result from the user input processing unit takes in TV telephone image data from a TV telephone line through the communication unit and outputs the taken-in data to the display control unit.
As still another example, when a user inputs an instruction of displaying an HDTV image under broadcasting in the sub-area SAR, the sub-area control unit having received the processing result from the user input processing unit takes in corresponding HDTV image data through the tuner and outputs the taken-in data to the display control unit.
The data signal lines and the scan signal lines of the liquid crystal panel LCP may be arranged as follows. For example, as illustrated in
As illustrated in
Furthermore, as illustrated in
By combining the configuration of
As illustrated in
In the television receiver of the present invention, as illustrated in
A display device of the present invention includes a display portion having an aspect ratio of (16+a):9 on an assumption that a is a positive number and the aspect ratio represents a ratio of horizontal size:vertical size, and presents full display of a first image having the aspect ratio of 16:9 such that a vertical size of the first image is substantially equal to a vertical size of the display portion, while displaying a second image to be not overlapped with the first image.
With the above-described feature, it is possible to solve the problem that viewing of the first image is impeded by resizing of the first image or overlapped display of the second image.
In the display device, a display size of the first image may be set fixed regardless of whether or not the second image is displayed.
In the display device, the first image may be displayed such that one of vertical edges of the first image is aligned with one of vertical edges of the display portion.
In the display device, the first image may have a resolution not lower than that of high-definition television (HDTV) broadcasting.
In the display device, a third image having the aspect ratio of (16+a):9 may be presented in full display such that a vertical size of the third image is substantially equal to the vertical size of the display portion.
In the display device, a=5 may be set.
In the display device, the first image may be an image of high-definition television (HDTV) broadcasting, or an image of One Seg broadcasting.
In the display device, the scan signal lines may extend in the horizontal direction, and the data signal lines may extend in the vertical direction.
In the display device, the second image may include a plurality of content images.
In the display device, the second image may be a user interface image.
In the display device, the display portion may include a first area having the aspect ratio of 16:9 and a second area having the aspect ratio of a:9 and not overlapping with the first area. The display portion and the first and second areas may have equal vertical sizes. The first image may be displayed in the first area, and the second image may be displayed in the second area.
In the display device, a pixel structure may be different between the first area and the second area.
In the display device, a driving method may be different between the first area and the second area.
The display device may further include a first sensor disposed in the first area and a second sensor disposed in the second area, the first and second sensor being separately controlled.
In the display device, the display portion may be constituted by a liquid crystal panel.
The display device may further include a first backlight corresponding to the first area and a second backlight corresponding to the second area, the first and second backlights being separately controlled.
In the display device, a horizontal display position of the first image and a horizontal display position of the second image may be set in accordance with a user's instruction (for example, as illustrated in
In such a case, as illustrated in
The television receiver of the present invention includes the display device described above.
In a control method for a display device, according to the present invention, the display device including a display portion having an aspect ratio of (16+a):9 on an assumption that a is a positive number and the aspect ratio represents a ratio of horizontal size:vertical size, full display of a first image having the aspect ratio of 16:9 is presented such that a vertical size of the first image is substantially equal to a vertical size of the display portion, while a second image is displayed to be not overlapped with the first image.
It is to be noted that the present invention is not limited to the above-described embodiments, and that modifications obtained by modifying the above-described embodiments as required on the basis of technical common knowledge and combinations of those modifications are also involved in the scope of embodiments of the present invention.
The display device of the present invention is suitably applied to a television receiver, for example.
1 display portion
MAR main area
SAR sub-area
LCP liquid crystal panel
BL backlight
SD source driver
GD gate driver
SEN sensor for user input
Number | Date | Country | Kind |
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2010-294106 | Dec 2010 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2011/080108 | 12/26/2011 | WO | 00 | 6/26/2013 |