1. Field of the Invention
The present invention relates to a flat display, and more particularly to a display panel.
2. Description of the Prior Art
LCDs (liquid crystal displays) have many merits such as their thin shell, low power consumption, no radiation, etc., so they are widely used. Nowadays, backlight LCDs are commonly used in the market. A backlight LCD comprises a shell, an LCD panel installed in the shell, and a backlight module installed in the shell. The working principle of the LCD panel is as follows: Liquid crystal molecules are injected between two glass substrates. The glass substrates are arranged in parallel. The alignment of the liquid crystal molecules changes depending on the power-on and power-off status to refract a light beam from the backlight module. A color image is produced through the pixels disposed in the glass substrates.
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Take an LCD panel comprising a TFT which only comprises a red subpixel R, a green subpixel G, and a blue subpixel B for example. The horizontal arrangement of the subpixels corresponds to “one scan line (Gate) three data line (Data) drive,” which is called 1G3D Mode for short (as
The 3G1D panel is driven by means of progressive scanning. As
The risk of showing a one-color image is that the data line is easily overloaded. This causes subpixels to be abnormally charged and results in color shift. Please refer to
The present invention is to provide a display panel for efficiently presenting color shift caused by an overloaded data line and for enhancing the display effect of the LCD panel.
According to the present invention, a display panel comprises a plurality of primary pixel units. Each of the plurality of primary pixel units comprises two primary pixels arranged horizontally, each of the primary pixels comprising a plurality of subpixels arranged vertically and comprising different colors, and arrangements of the plurality of subpixels with different colors of the adjacent primary pixels being different.
Furthermore, the plurality of subpixels are three in quantity, and the three subpixels are a red subpixel, a green subpixel, and a blue subpixel.
Furthermore, the two primary pixels are a first primary pixel and a second primary pixel, and the plurality of subpixels of the first primary pixel are the red subpixel, the green subpixel, and the blue subpixel arranged from top to bottom.
Furthermore, the plurality of subpixels of the second primary pixel are the red subpixel, the blue subpixel, and the green subpixel arranged from top to bottom.
Furthermore, the plurality of subpixels of the second primary pixel are the green subpixel, the red subpixel, and the blue subpixel arranged from top to bottom.
Furthermore, the plurality of subpixels of the second primary pixel are the blue subpixel, the green subpixel, and the red subpixel arranged from top to bottom.
Furthermore, the plurality of subpixels are four in quantity, and the four subpixels are a red subpixel, a green subpixel, a blue subpixel, and a white subpixel.
Furthermore, the two primary pixels are a third primary pixel and a fourth primary pixel, and an arrangement of the plurality of subpixels of the third primary pixel is the red subpixel, the green subpixel, the blue subpixel, and the white subpixel from top to bottom.
Furthermore, the plurality of subpixels of the fourth primary pixel are a white subpixel, a blue subpixel, a green subpixel, and a red subpixel arranged from top to bottom.
Furthermore, the display panel is a liquid crystal display panel.
According to the present invention, a display panel comprises a plurality of primary pixel units. Each of the plurality of primary pixel units comprises two primary pixels arranged horizontally, each of the primary pixels comprising a plurality of subpixels arranged vertically and comprising different colors, and arrangements of the plurality of subpixels with different colors of the adjacent primary pixels being different. The display panel is a liquid crystal display panel. The plurality of subpixels are three in quantity, and the three subpixels are a red subpixel, a green subpixel, and a blue subpixel.
Furthermore, the two primary pixels are a first primary pixel and a second primary pixel, and the plurality of subpixels of the first primary pixel are the red subpixel, the green subpixel, and the blue subpixel arranged from top to bottom.
Furthermore, the plurality of subpixels of the second primary pixel are the red subpixel, the blue subpixel, and the green subpixel arranged from top to bottom.
Furthermore, the plurality of subpixels of the second primary pixel are the green subpixel, the red subpixel, and the blue subpixel arranged from top to bottom.
Furthermore, the plurality of subpixels of the second primary pixel are the blue subpixel, the green subpixel, and the red subpixel arranged from top to bottom.
In the present invention, the subpixels which two adjacent primary pixels comprise are arranged in different orders. The subpixels have different colors. The result of the arrangement is neutralization of the adjacent primary pixels, and the neutral effect is “red with white tone.” So color shift caused by the overloaded data line is prevented, which effectively improves color shift occurring in the 3G1D LCD panel and enhances the display effect of the LCD panel. These are the advantages of the present invention.
These and other objectives of the present invention will become apparent to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various figures and drawings.
The present invention is described in detail in conjunction with the accompanying drawings and embodiments.
Please refer to
In this embodiment of the present invention, the display panel is a 3G1D LCD panel. The plurality of subpixels are three in quantity, that is, a red subpixel R, a green subpixel G, and a blue subpixel B. The primary pixels are a first primary pixel and a second primary pixel. The plurality of subpixels of the first primary pixel are the red subpixel R, the green subpixel G, and the blue subpixel B arranged from top to bottom. The plurality of subpixels of the second primary pixel are the red subpixel R, the blue subpixel B, and the green subpixel G arranged from top to bottom.
Take a one-color image in red (255, 0, 0) for example.
As for the red subpixel R, the green subpixel G, and the blue subpixel B of the first primary pixel, the red subpixel R is not fully charged, the green subpixel G is slightly falsely charged, and the blue subpixel B is not charged at all. The real display effect is “red with yellow tone” (normally). As for the red subpixel R, the blue subpixel B, and the green subpixel G of the second primary pixel, the red subpixel R is not fully charged, the blue subpixel B is slightly falsely charged, and the green subpixel G is not charged at all. The real display effect is “red with purple tone.”
In this way, the neutral effect is “red with white tone” for the two adjacent primary pixels. It means that color specification does not change and that saturation is lowered. Human eyes are more sensitive to color specification than to saturation. Because of this reason, color shift occurred in the 3G1D LCD panel is effectively improved.
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In sum, the subpixels which two adjacent primary pixels comprise are arranged in different orders. The subpixels have different colors. The result of the arrangement is neutralization of the two adjacent primary pixels. The neutral effect is “red with white tone.” In this way, color shift caused by the overloaded data line is prevented, which effectively improves color shift occurring in the 3G1D LCD panel and enhances the display effect of the LCD panel.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.
Number | Date | Country | Kind |
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2013 1 0739598 | Dec 2013 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2014/071045 | 1/22/2014 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
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WO2015/096252 | 7/2/2015 | WO | A |
Number | Name | Date | Kind |
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20130069918 | Hou | Mar 2013 | A1 |
20140160186 | Oh | Jun 2014 | A1 |
20140209932 | Huang | Jul 2014 | A1 |
Number | Date | Country |
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201859285 | Jun 2011 | CN |
102243827 | Nov 2011 | CN |
103149759 | Jun 2013 | CN |
103185995 | Jul 2013 | CN |
103185996 | Jul 2013 | CN |
2004317726 | Nov 2004 | JP |
Number | Date | Country | |
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20150185532 A1 | Jul 2015 | US |