The above and/or other aspects of the present invention will become more apparent by describing in detail exemplary embodiments thereof, taken in conjunction with the accompanying drawings of which:
Reference will now be made in detail to exemplary embodiments of the present invention, examples of which are illustrated in the accompanying drawings, wherein like reference numerals refer to like elements throughout. The exemplary embodiments are described below so as to explain the present invention by referring to the figures.
As shown in
The signal input part 10 according to an exemplary embodiment of the present invention receives a video signal comprising a synchronizing signal and a color signal. The signal input part 10 may comprise a tuner (not shown) receiving a broadcasting signal comprising the video signal, and an external connection terminal (not shown) receiving the video signal from an external apparatus.
It is preferable, but not necessary, that the external connection terminal comprise connectors which have the capability to receive video signals of various types of formats. For example, the signal input part 10 comprises at least one of a D-Sub connector, a Composite Video Baseband Signal (CVBS) connector, an S-video connector, a composite connector and a component connector.
Hereinafter, the description will be given that the display apparatus according to the exemplary embodiments of the present invention receives and processes the composite video signal by way of example.
The signal processor 20 processes the video signal inputted through the signal input part 10 based on a control operation of the controller 40 to be described later, and outputs the processed video signal to the display part 30.
The signal processor 20 may comprise various functions corresponding to the format of the inputted video signal. For example, the functions may comprise a digital decoding function, a scaling function which adjusts a vertical frequency, a resolution, an aspect rate, etc. corresponding to an output standard of the display part 30 after receiving a digital video signal and/or an analog video signal and a predetermined format conversion function and so on.
As shown in
The A/D converter 25 processes the video signal based on a predetermined offset value and a predetermined gain value so as to display the processed video signal on the display part 30. The offset value and the gain value may be set by the controller 40, and a detailed explanation will be presented later.
The display part 30 displays the video signal processed in the signal processor 20, and may comprise various types such as a Liquid Crystal Display (LCD), a Plasma Display Panel (PDP) and so on.
The controller 40 compares an output black level of the processed video signal with a standard black level, and compensates the offset value of the signal processor 20 so as to make the output black level equal to the standard black level. The controller 40 comprises a CPU, a microcomputer, etc.
Hereinafter, the description will be given that the display apparatus according to the exemplary embodiment of the present invention is set up as 0 IRE (0 set up) by way of example.
Specifically, the controller 40 controls the A/D converter 25 of the signal processor 20 to process the video signal based on the predetermined offset value if the video signal is inputted through the signal input part 10. The predetermined offset value is a standard to determine whether the video signal has a value of 7.5 IRE or not, and may be set by the controller 40.
As shown in
As shown in
Furthermore, the controller 40 controls the A/D converter 25 to process the video signal corresponding to the part B and detects the processed output white level. Then, the controller 40 compares the output white level with the standard white level and sets the gain value so that the output white level is equal to the standard white level. In other words, if the output white level of the part B is lower than the standard white level, the controller 40 increases the gain value by ‘1’. Also, if the output white level of the part B is higher than the standard white level, the controller 40 decreases the gain value by ‘1’. The controller 40 repeats the foregoing steps.
The controller 40 controls the A/D converter 25 to process the video signal based on the predetermined offset and gain values. Then, the controller 40 compares the processed output black level with the standard black level so as to determine whether the video signal has the value of 7.5 IRE or not. In this case, the controller 40 controls the A/D converter 25 to process the video signal corresponding to the beginning of a color signal block and compares the processed output black level with the standard black level.
Herein, the controller 40 is described by referring to
The controller 40 sets a time block when the color signal block begins as a determining block (X). Then, the controller 40 determines whether the standard black level is equal to the output black level which is a data value outputted from the A/D converter 25 in the determining block. Here, if the output black level is equal to the standard black level, the black level is equal to the blank level so the video signal does not have the value of 7.5 IRE. Accordingly, the video signal is processed based on the predetermined offset value.
However, if the output black level is not equal to the standard black level, the inputted video signal has the value of 7.5 IRE so that the controller compensates the offset value. Then, the video signal is processed based on the compensated offset value.
Furthermore, the controller 40 compares the standard black level with the output black level of the determining block whenever a channel corresponding to the video signal inputted through the signal input part 10 is changed, the format of the video signal inputted from an external apparatus is changed, or a resolution is changed. Next, the controller 40 compensates the offset value of the A/D converter 25 based on the result of comparison.
According to the foregoing processes, it is determined whether the inputted video signal has a value of 7.5 IRE or not. Furthermore, because the video signal is processed according to the presence or absence of the video signal with a value of 7.5 IRE, the contrast ratio can be exactly reproduced and/or the image is not brighter or darker than normal.
As shown in
Then, if the video signal is inputted at operation S3, the video signal is processed based on the predetermined offset value of the A/D converter 25 at operation S5. As described above, the A/D converter 25 processes the video signal which corresponds to the time block when the color signal begins.
Next, the controller 40 determines whether the standard black level is equal to the output black level of the processed video signal at operation S7.
If the output black level is determined to be equal to the standard black level at operation S7, the video signal is processed and displayed according to the predetermined offset value at operation S13.
If the output black level is determined not to be equal to the standard black level at operation S7, the controller 40 compensates the offset value so that the output black level is equal to the standard black level at operation S9.
Then, the video signal is processed based on the compensated offset value at operation S11, and the processed video signal is displayed thereon at operation S13.
According to the foregoing operations, the present invention may determine whether the inputted video signal has a value of 7.5 IRE or not. Therefore, the contrast ratio can be exactly reproduced and the image is not brighter or darker because the video signal is processed according to the presence or absence of the video signal with a value of 7.5 IRE. Also, although the value of the IRE is not fixed, an image with a fixed brightness level can be displayed.
The display apparatus and control method thereof according to the exemplary embodiments of the present invention correctly determine whether or not the inputted video signal has a value of 7.5 IRE.
Also, the exemplary embodiments of the present invention provide the display apparatus and control method thereof in which the contrast ratio can be exactly reproduced and the image having a fixed brightness level is displayed because the video signal is processed according to the presence or absence of the video signal with a value of 7.5 IRE.
Although a few exemplary embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes may be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
| Number | Date | Country | Kind |
|---|---|---|---|
| 10-2006-0078036 | Aug 2006 | KR | national |