The present application claims priority from Japanese Patent Application JP 2012-188667 filed on Aug. 29, 2012, the content of which is hereby incorporated by reference into this application.
1. Field of the Invention
The present invention relates to a display device and more particularly relates to a liquid crystal display device allowing to maintain a contrast without increasing power consumption even under a light environment.
2. Description of the Related Art
In the liquid crystal display device, a TFT substrate on which pixels having pixel electrodes and thin film transistors (TFT) are arranged in a matrix and a counter substrate on which color filters and the like are formed at places corresponding to the pixel electrodes of the TFT substrate are arranged in opposition to each other, and a liquid crystal is nipped and held between the TFT substrate and the counter substrate. Then, an image is formed by controlling transmittance of light through liquid crystal molecules pixel by pixel.
Since the liquid crystal display device is made thin and light-weighted, it is used in a cell phone, a DSD (Digital Still Camera) and others. The cell phone and the DSC are frequently used in the light open air. When the cell phone or the like is to be used in the light open air, the contrast becomes a problem. If the brightness of backlight is increased in order to create a visible contrast, its power consumption will become a problem.
As related art taking measures to a relationship between the power consumption and the contrast, the followings may be given. (1) One system is such that the contrast of a light room is maintained by sensing the illuminance of outdoor light in an environment that a display is used without increasing the power consumption. That is, in this system, while when the outdoor light is light, the power of the backlight is increased, when the outdoor light is dark, the entire power consumption is saved by decreasing the power of the backlight. (2) Another system is such that the power of the backlight is decreased by combining it with backlight control on a menu screen or the like which is little in color information. However, also in this case, input image data is used as it is. (3) A further system is such that a white pixel (W) is added to a red pixel (R), a green pixel (G) and a blue pixel (B) so as to increase the luminance though the color purity is slightly sacrificed.
In addition to systems as mentioned above, a configuration that a first color filter which is excellent in color purity and a second color filter which is higher in transmittance than the first color filter are arranged side by side and the first color filter and the second color filter are separately controlled so as to flexibly cope with various external environments is described in Japanese Patent Application Laid-Open No. 2008-287068.
The related art (1) is of the system that outdoor light is sensed and the quantity of light of the backlight is adjusted in accordance with the outdoor light so sensed. However, an image signal which is supplied from the outside is used as it is. Therefore, when it frequently occurs that the display device is used under a high-illuminance environment, the power consumption of the backlight is increased. The related art (2) is of the system that it is allowed to reduce the power of the backlight on the screen which is little in color information such as a setting screen or the like. However, the image signal is supplied from the outside also in this case and since it is not the system configured such that the rate of the screen having little color information is positively increased, the reduction in power consumption of the backlight is limited. The related art (3) is of the system that as the pixels, the white pixel (W) and its sub pixels are arranged in addition to sub pixels of the red pixel (R), green pixel (G) and blue pixel (B). Therefore, the area of unit pixel is increased, and when a high-definition screen is to be obtained, there is a limit. Similarly, since the configuration disclosed in Japanese Patent Application Laid-Open No. 2008-287068 is of the type that the first color filter which is excellent in color purity and the second color filter which is higher than the first color filter in transmittance are arranged side by side in one pixel, there is a limit to definition enhancement that the pixel size is to be reduced.
The present invention aims to implement a liquid crystal display device which allows to maintain a required contrast of a screen even in outdoor or the like where the illuminance of outdoor light is high and allows to suppress an increase in the power consumption of the backlight. The present invention also aims to implement such a configuration as mentioned above simply by combining together sub pixels of the red pixel (R), green pixel (G) and blue pixel (B) and to implement the configuration by a configuration coping with a high-definition screen without increasing the area of unit pixel. Incidentally, in the following description, the red pixel (R) or the like will be called a red pixel (R) sub pixel or a red pixel (R) pixel in some cases.
The present invention has been made in order to overcome the above-mentioned disadvantages. That is, the color purity hardly influences the image quality and the brightness or contrast of the screen predominantly influences the image quality under an environment which is high in illuminance of outdoor light such as in outdoors. The present invention uses measures of sensing the illuminance of outdoor light, converting an image signal from the outside when the illuminance of outdoor light is high, intentionally mixing other colors into a predetermined color to increase the luminance of the screen so as to maintain the contrast of the screen even when the illuminance of outdoor light is high. Therefore, it becomes possible to increase the luminance of the screen while saving the power consumption of the backlight. The concrete measures are as follows.
(1) According to one embodiment of the present invention, there is provided, a driving method of liquid crystal display device, including a liquid crystal display panel in which a TFT substrate on which pixels having pixel electrodes and TFTs are arranged in a matrix and a counter substrate are arranged in opposition to each other, a liquid crystal is nipped and held between the TFT substrate and the counter substrate and on which an IC driver is loaded, wherein the pixels include a red pixel (R), a green pixel (G) and a blue pixel (B), under a normal environment, when red, green and blue displays are to be performed, the respective displays are performed singly by the red pixel (R), the green pixel (G) and the blue pixel (B) respectively, under a high-illuminance environment which is higher in outdoor light illuminance than the normal environment, when the red display is to be performed, the display is performed by shining the pixels other than the red pixel (R) simultaneously with shining of the red pixel, when the green display is to be performed, the display is performed by shining the pixels other than the green pixel (G) simultaneously with shining of the green pixel, and when the blue display is to be performed, the display is performed by shining the pixels other than the blue pixel (B) simultaneously with shining of the blue pixel.
(2) According to another embodiment of the present invention, there is provided, a driving method of liquid crystal display device, including a liquid crystal display panel in which a TFT substrate on which pixels having pixel electrodes and TFTs are arranged in a matrix and a counter substrate are arranged in opposition to each other, a liquid crystal is nipped and held between the TFT substrate and the counter substrate and on which an IC driver is loaded, wherein the pixels include a red pixel (R), a green pixel (G) and a blue pixel (B), under a normal environment, when red, green and blue displays are to be performed, image signal data input into the liquid crystal display panel is used, under a high-illuminance environment which is higher in outdoor light illuminance than the normal environment, an image signal input into the liquid crystal display panel is converted to form new luminance data and chromaticity data, under the high-illuminance environment, when the red display is to be performed, the display is performed by shining the pixels other than the red pixel (R) simultaneously with shining of the red pixel, when the green display is to be performed, the display is performed by shining the pixels other than the green pixel (G) simultaneously with shining of the green pixel, and when the blue display is to be performed, the display is performed by shining the pixels other than the blue pixel (G) simultaneously with shining of the blue pixel.
According to the present invention, under the high-illuminance environment, the luminance of the screen is increased by mixing other colors into a predetermined color also when a monochromatic image is to be displayed. Thus, since it is allowed to visibly confirm the screen by suppressing the power of the backlight even when the illuminance of outdoor light is high, such an advantage is attained that the power consumption is reduced. In addition, since it is allowed to implement enhancement of definition of the screen without increasing the sub pixels such as those of the white pixel (W), it is also allowed to cope with enhancement of definition of the screen.
The TFT substrate 100 is formed larger than the counter substrate 200 and a terminal part 150 for supplying power, an image signal, a scan signal and others to a liquid crystal display panel is formed on a portion by which the TFT substrate 100 is formed larger than the counter substrate 200. A not illustrated flexible wiring substrate is connected to the terminal part 150.
In addition, an IC driver 50 for driving a scan signal line 30, an image signal line 40 and others is disposed on the terminal part 150. The IC driver 50 is divided into three sections and an image signal drive circuit 52 is disposed in its central section and scan signal drive circuits 51 are disposed in its both side sections. In the present invention, a measure for converting luminance information (data) and chromaticity information (data) of an image signal supplied from the outside to prepare new luminance information and chromaticity information is loaded within the IC driver 50.
In a display area 10 in
In the present invention, in case of the normal illuminance of outdoor light, the area of 70% in color reproducibility is used. In the above-mentioned case, data of an image signal from the outside is used as it is. On the other hand, when the illuminance of outdoor light is high in outdoors or the like, the image signal from the outside is not used as it is and the image signal is used by converting it so as to increase the luminance of the screen.
That is, when the illuminance of outdoor light is high, the chromaticity hardly influences image quality and the contrast greatly influences the image quality. Therefore, in the present invention, the luminance data and chromaticity data of the image signal from the outside are converted so as to display the image by increasing the luminance. That is, a reproduction range of the chromaticity is limited to a triangular range indicated by the dotted line in
Specifically, for example, even in case of monochromatic display in red, another color, for example, light which is obtained through the green pixel is also mixed into it. In addition, even in case of monochromatic display in green, light which is obtained through the red pixel or the blue pixel is also mixed into it. Further, even in case of monochromatic display in blue, light which is obtained through the green pixel is also mixed into it. Therefore, although the color purity is reduced, it is allowed to increase the luminance. On the other hand, when the outside environment is high in illuminance, the color purity hardly influences the image quality, and the contrast, that is, the luminance of the screen influences the image quality predominantly. Therefore, it looks as if the image quality has been rather increased in human eyes. The present invention makes it possible to attain such an advantage as mentioned above without increasing the power consumption of the backlight.
The present invention has such a feature that the illuminance under the outside environment is sensed by a sensor, when the illuminance of outdoor light has become higher than a predetermined value, the image signal is converted, that is, the luminance data and chromaticity data thereof are converted so as to increase the luminance. Incidentally, a person may sense the illuminance of the outside environment in addition to sensing by the sensor and an instruction to convert the image signal data may be given according to the manual.
The column B of
The column C in
Although conversion of the luminance and the chromaticity is performed in the XYZ space, a component along the Y-axis functions as an index indicating the magnitude of the luminance. That is, to which extent the luminance is to be increased is determined and it is reflected in the Y component in the XYZ space. X component and Z component are determined corresponding to the Y component. In the column C, when P and P′ which are the vectors of the arbitrary pixel Ps are compared with each other, the component along the Y axis is larger in case of sRGB (50% in color reproducibility) than in case of sPGB (70% in color reproducibility). That is, the luminance is increased.
The column D indicates vectors when the unit vectors and the vectors of the arbitrary pixel which have been converted in the XYZ space in the column C have been again converted to those in the RGB luminance information space. In the column D, luminance data obtained when sRGB (50% in color reproducibility) has been adopted is reflected. The column E indicates to input data obtained by performing DA conversion on the luminance data which has been obtained in the column D into the liquid crystal display panel (LCD). In this case, it is supposed that the y characteristic is built into the IC driver loaded on the liquid crystal display panel.
As described above, the present invention has such a feature that the luminance data and the chromaticity data of the image signal which has been supplied from the outside are converted in the IC driver loaded on the liquid crystal display panel so as to suppress the color reproducibility to increase the luminance by an arbitrary amount.
[Embodiment 1]
On the other hand, under the high-illuminance environment, red, green and blue are respectively displayed not only by using the red pixel (R), the green pixel (G) and the blue pixel (B) but also by mixing other colors into the respective colors. Although the luminance is increased by the amount corresponding to mixture of other colors, the color purity is degraded accordingly. In
As described above, in sRGB (50% in color reproducibility), in case of the maximum luminances of red, green and blue, the luminances are increased by mixing a predetermined amount of green into red for red display, by mixing predetermined amounts of red and blue into green for green display, and mixing a predetermined amount of green into blue for blue display.
It is allowed to incorporate the measure of converting the image signal to suppress the color purity, thereby increasing the luminance as mentioned above into the IC driver illustrated in
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