This application claims priority from Korean Patent Application No. 10-2008-115261, filed on Nov. 19, 2008, in the Korean Intellectual Property Office, the disclosure of which is incorporated herein by reference in its entirety.
1. Field of the Invention
Apparatuses and methods consistent with the present invention relate to a display apparatus and a displaying method thereof, and more particularly, to a display apparatus which is capable of moving an area to which image quality improvement is applied a demo mode and a displaying method thereof.
2. Description of the Related Art
With the development of electronic technology, in particular, of semiconductor technology, many manufacturers of display apparatuses have invested time and money in improving image quality of the display apparatus such as a television.
As well as the technical improvement in the image quality of the display apparatus, a marketing strategy to stimulate customer's buying interests by showing a high quality image to the customers has been performed.
For example, a demo screen is displayed on a department store to show how image quality has been improved. A conventional demo screen is divided into a left screen on which a normal image, to which image quality improvement is not applied, is displayed and a right screen on which a high quality image, to which image quality improvement is applied, is displayed.
However, the conventional method to display the demo screen as described above is insufficient to stimulate the customer's buying interests.
Exemplary embodiments of the present invention overcome the above disadvantages and other disadvantages not described above. Also, the present invention is not required to overcome the disadvantages described above, and an exemplary embodiment of the present invention may not overcome any of the problems described above.
Exemplary embodiments of the present invention provide a display apparatus which is capable of moving a boundary between a first area to which image quality improvement is not applied and a second area to which image quality improvement is applied, and a displaying method thereof.
Consistent with an aspect of the present invention, a display apparatus comprises an image quality improvement unit which performs image quality improvement with respect to video signals, a display unit which displays general video signals and video signals of which image quality is improved by the image quality improvement unit, and a control unit which controls the display unit to move a boundary between a first area on which the general video signals are displayed and a second area on which the video signals of improved image quality are displayed in a specific pattern.
The display apparatus may further comprise a signal generation unit which generates a process enable signal to instruct whether to apply the video signal of improved image quality to each pixel on a screen, and transmits the process enable signal to the display unit.
The boundary may move periodically according to a specific pattern.
If the boundary moves in one direction according to a specific pattern, the boundary may move again in the direction opposite to the one direction.
The display apparatus may further comprise a user interface (UI) unit which provides a UI window to determine a moving direction of the boundary or a moving speed of the boundary.
The specific pattern may be at least one of a pattern in which the boundary moves in a horizontal direction on a display screen of the display unit, a pattern in which the boundary moves in a vertical direction on the display screen, a pattern in which the boundary moves from a specific point on the display screen to a point opposite the specific point, and a pattern in which the boundary rotates from a specific point on the display screen with a predetermined angle.
The display apparatus may further comprise an input unit which receives a command to switch a general screen mode and a demo screen mode in which the general video signals and the video signals of improved image quality coexist.
The input unit may receive a command to switch a movable demo screen mode in which the first area and the second area are displayed with the movable boundary and a still demo screen mode in which the first area and the second area are fixedly displayed.
Consistent with another aspect of the present invention, a displaying method of a display apparatus, comprises performing image quality improvement with respect to video signals, displaying general video signals and video signals of which image quality is improved on a display unit, and moving a boundary between a first area on which the general video signals are displayed and a second area on which the video signals of improved image quality are displayed in a specific pattern.
The displaying method may further comprise generating a process enable signal to instruct whether to apply the video signal of improved image quality to each pixel on a screen, and transmitting the process enable signal to the display unit.
The boundary may move periodically according to a specific pattern.
If the boundary moves in one direction according to a specific pattern, the boundary may move again in the direction opposite to the one direction.
The displaying method may further comprise providing a UI window to determine a moving direction of the boundary or a moving speed of the boundary.
The specific pattern may be at least one of a pattern in which the boundary moves in a horizontal direction on a display screen of the display unit, a pattern in which the boundary moves in a vertical direction on the display screen, a pattern in which the boundary moves from a specific point on the display screen to a point opposite the specific point, and a pattern in which the boundary rotates from a specific point on the display screen with a predetermined angle.
The displaying method may further comprise receiving a command to switch a general screen mode and a demo screen mode in which the general video signals and the video signals of improved image quality coexist.
The receiving operation may receive a command to switch a movable demo screen mode in which the first area and the second area are displayed with the movable boundary and a still demo screen mode in which the first area and the second area are fixedly displayed.
Additional and/or other aspects of the invention will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of the invention.
The above and/or other aspects of the present invention will be more apparent by describing certain exemplary embodiments of the present invention with reference to the accompanying drawings, in which:
Certain exemplary embodiments of the present invention will now be described in greater detail with reference to the accompanying drawings.
In the following description, same drawing reference numerals are used for the same elements even in different drawings. The matters defined in the description, such as detailed construction and elements, are provided to assist in a comprehensive understanding of the invention. Thus, it is apparent that the exemplary embodiments of the present invention can be carried out without those specifically defined matters. Also, well-known functions or constructions are not described in detail since they would obscure the invention with unnecessary detail.
The image quality improvement unit 110 performs image quality improvement on the video signals. Various operations of improving image quality such as detail enhancement (DE), contrast enhancement (CE), and interlaced to progressive conversion (IPC) may be performed.
The display unit 120 displays general video signals and video signals in which image quality has been improved by the image quality improvement unit 110. The general video signals refer to video signals to which image quality improvement is not applied.
The control unit 130 controls the display unit 120 to move a boundary between a first area on which general video signals are displayed and a second area on which video signals of improved image quality are displayed, in a specific pattern, i.e., in a specific motion.
The boundary refers to a contact area between the first area and the second area, for example, a line between the first area and the second area. In the case that the boundary moves in a horizontal direction as shown in
In
The display screen consists of a plurality of horizontal lines, each of which consists of a plurality of pixels. The plurality of horizontal lines are combined to form a single frame (scene). Also, a signal may be individually applied to each of the plurality of pixels on the display screen to improve image quality.
Referring to the portion “A”, the area to which image quality improvement is applied is enlarged in the right direction. At first, image quality improvement is applied to the first pixel of each horizontal line on the left, and after a predetermined time passes, image quality improvement is applied to the first pixel and the second pixel of each line on the left. Through such a process, the image quality improvement is applied to the entire screen with the boundary moving from the left to the right. After that, as in the portion “B”, the image quality improvement is applied in the opposite direction, i.e., from the right to the left. That is, the boundary between the first area to which the image quality improvement is not applied and the second area to which the image quality improvement is applied moves at predetermined time intervals so that the user can visually check whether image quality improvement has been applied or not.
The boundary between the first area on which general video signals are displayed and the second area on which video signals of improved image quality are displayed may periodically move according to a specific pattern. For example, in
Alternatively, after the image quality enhancement is applied to the entire display screen as the boundary moves from the left to the right as in the area “A”, the entire screen may be instantaneously changed to a state in which image quality improvement is not applied. The process of instantaneously changing the second area to the state in which the image quality improvement is not applied after the image quality improvement is applied from the left to the right is periodically repeated. That is, the boundary between the first area and the second area moves periodically according to a specific pattern.
The specific pattern, that is, various display patterns, will be described with reference to the drawings below.
The signal generation unit 140 generates a process enable signal to instruct whether to apply a video signal of improved image quality to each pixel on the display screen, and transmits the process enable signal to the display unit 120. More specifically, the signal generation unit 140 applies the process enable signal to each pixel of the display unit 120, thereby providing the video signal of the improved image quality to each pixel. The process enable signal may be individually applied to each pixel.
The UI unit 150 may provide a UI window to determine a moving direction of the boundary or a moving speed of the boundary. The UI unit 150 may be realized as an on screen demand (OSD) screen of the display apparatus 100 or may be realized as a pop-up window in the case of a digital TV.
For example, through the UI window of the UI unit 150, the boundary may be set to move from the left to the right or from the right to the left.
Also, for example, the image quality improvement may be applied from the left to the right in the unit of one pixel, two pixels, three pixels, and so on, every one second through the UI window of the UI unit 150. Alternatively, the image quality improvement may be applied from the left to the right in the unit of two pixels, four pixels, six pixels, and so on, every one second. Accordingly, the moving speed of the boundary between the first area and the second area can be determined.
The input unit 160 may receive a command to switch between a general screen mode and a demo screen mode in which general video signals and video signals of improved image quality coexist. The input unit 160 may be realized as a key input unit which is attached to one side of the display apparatus 100. Selecting a specific key of the input unit 160 allows switching between the general screen mode and the demo screen mode. The demo screen mode may include a general demo screen mode and a movable demo screen mode.
Also, the input unit 160 may receive a command to switch between the movable demo screen mode and the general demo screen mode. In the movable demo screen mode, the boundary between the first area and the second area is movable, and in the general demo screen mode, the first area and the second area are displayed in double windows occupying the same area. That is, if a command to switch to the general demo screen mode is input through the input unit 160 while the boundary between the first area and the second area is moving in a specific pattern, the screen is displayed in the general demo screen mode of double windows.
Hereinafter, how the boundary between the first area and the second area moves in a specific pattern will be described with reference to the drawings in detail.
It can be seen from
As shown in
As shown in
At the moment B shown in
Next, at the moment C, the second area to which image quality improvement is applied occupies more spaces than the first area to which image quality improvement is not applied. In this case, the length of each line which is occupied by the second area on the left of the reference point becomes smaller from the top to the bottom of the single frame. That is, as shown in the display pattern 701c of
At the moment D, the second area to which image quality improvement is applied occupies most of the single frame. In this case, it can be seen from
In the method described above, the display pattern in which the image quality improvement is applied as the boundary moves like a windshield wiper is provided.
In
In
The display patterns shown in
In the above, the lines on the left of the display screen are numbered from the leftmost line, such as the first line, the second line, and so on, and the lines on the right of the display screen are numbered from the rightmost line. Also, the lines on the upper portion of the display screen are numbered from the uppermost line such as the first line, the second line, and so on, and the lines on the lower portion of the display screen are numbered from the lowermost line.
After that, the controller 130 moves a boundary between the area on which the general video signals are displayed and the area on which the video signals of improved image quality are displayed in a specific pattern (S930).
Next, the display unit 120 displays general video signals and video signals of improved image quality (S1030).
In this case, the UI unit 150 may display a UI window through which a moving direction and a moving speed of the boundary between the area on which the general video signals are displayed and the area on which the video signals of improved image quality are displayed is set (S1040).
Next, the controller 130 moves the boundary between the area on which the video signals are displayed and the area on which the video signals of improved image quality are displayed in a specific pattern (S1050).
The foregoing exemplary embodiments and aspects are merely exemplary and are not to be construed as limiting the present invention. The present teaching can be readily applied to other types of apparatuses. Also, the description of the exemplary embodiments of the present invention is intended to be illustrative, and not to limit the scope of the claims, and many alternatives, modifications, and variations will be apparent to those skilled in the art.
Number | Date | Country | Kind |
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10-2008-115261 | Nov 2008 | KR | national |