The present invention relates to a display panel and a display device.
Liquid crystal display devices whose shape of a display region is formed into a non-rectangular shape, such as a circular shape, have hitherto been known. In such a liquid crystal display device, pixels located at a boundary portion between a display region of a curved shape and a non-display region include both a display region and a non-display region. Therefore, there are problems that smooth display cannot be achieved at the curved line portion, and the color balance is liable to be lost due to occurrence of coloring of a specific color in the pixels located at the boundary portion.
To solve such problems, in a liquid crystal display device described in JP 5112961B, pixels located at the boundary portion of the curved line portion are classified into three types (a normal picture element, an aperture ratio adjustment picture element, and a non-lighting picture element) according to the size of a non-display region included in each pixel, and the size of a light blocking portion to be provided in each pixel is adjusted according to the classification. Specifically, the normal picture element is configured such that the entire region thereof is lighted without providing a light blocking portion, the aperture ratio adjustment picture element is configured such that a partial region thereof is lighted by providing a light blocking portion in another partial region thereof, and the non-lighting picture element is configured to be in a non-lighting state by providing a light blocking portion in its entire region.
However, it is the case with the liquid crystal display device described in JP 5112961B that smooth display is not invariably achieved at the curved line portion, such as in a situation where the entire region of the non-lighting picture element is configured to be a non-lighting state despite the fact that the non-lighting picture element includes both the display region and the non-display region.
The one embodiment of the present invention is made in view of the circumstances as described above, and has an object to achieve smooth display of a shape of a peripheral portion of a display region while maintaining a satisfactory color balance, even even with a display region including a peripheral portion including a curved line portion.
(1) One embodiment of the present invention is a display panel including a plurality of display pixels arrayed in a surface of a substrate,
wherein a boundary between a display region and a non-display region has a shape including a curved line portion,
each of the plurality of display pixels includes colored pixels of n colors including different colored portions, and
in a case where a colored pixel being one of the colored pixels including the curved line portion and being located at an outermost end side in an array direction is defined as a display end pixel, the array direction being a direction in which the colored pixels are repeatedly arrayed with the colored pixels of the n colors being a unit,
a first light blocking portion is provided in line with a shape of the curved line portion in the display end pixel, and
a second light blocking portion having a shape and a size substantially the same as a shape and a size of the first light blocking portion is provided in each of the colored pixels of (n−1) colors consecutively arrayed next to the display end pixel toward the display region in the array direction.
(2) One embodiment of the present invention is the display panel, in addition to (1) described above, wherein the display end pixel includes display end pixels, and the first light blocking portion is provided in all of the display end pixels.
(3) One embodiment of the present invention is the display panel, in addition to (1) or (2) described above, wherein each of the plurality of display pixels includes the colored pixels of three colors including colored portions of red, green, and blue.
(4) One embodiment of the present invention is the display panel, in addition to (3) described above, wherein each of the plurality of display pixels includes the colored pixels of four colors further including a colored portion of white or yellow.
(5) One embodiment of the present invention is the display panel, in addition to any one of (1) to (4) described above, wherein each of the colored pixels has substantially the same shape and size.
(6) One embodiment of the present invention is the display panel, in addition to any one of (1) to (5) described above, wherein the first light blocking portion and the second light blocking portion are made of a light blocking material formed on the substrate.
(7) One embodiment of the present invention is the display panel, in addition to any one of (1) to (6) described above, wherein the display panel is a liquid crystal panel using liquid crystals.
(8) One embodiment of the present invention is a display device including: the display panel of any one of (1) to (7) described above; and an illumination device configured to emit light to be used for display to the display panel.
According to one embodiment of the present invention, smooth display of a shape of a peripheral portion of a display region can be achieved while maintaining a satisfactory color balance, even with a display region including a peripheral portion including a curved line portion.
A first embodiment of the present invention will be described with reference to
As illustrated in
In the above-described non-display region A2 on the straight line portion L1 side, an IC chip 12 and a flexible substrate 14 are mounted. The IC chip 12 is an electronic component for driving the liquid crystal panel 10. The flexible substrate 14 is a substrate for connecting a control substrate 16, which supplies various input signals from the outside to the IC chip 12, to the liquid crystal panel 10.
As illustrated in the cross-sectional view of
Next, a configuration inside the display region A1 in the array substrate 30 and the CF substrate 20 will be described. An operation mode of the liquid crystal panel 10 according to the present embodiment is a Fringe Field Switching (FFS) mode. As illustrated in
On the inner surface side (liquid crystal layer 18 side) of the glass substrate 20A constituting the CF substrate 20, as illustrated in
In the liquid crystal panel 10, a set of colored portions 22 of three colors of red (R), green (G), and blue (B) and their respective opposing three pixel electrodes 34 constitutes one display pixel 90. The display pixel 90 includes three colored pixels (subpixels) 92, i.e., a red pixel including a colored portion 22 for R, a green pixel including a colored portion 22 for G, and a blue pixel including a colored portion 22 for B. In other words, each display pixel 90 includes a plurality of colors (three colors) of colored pixels 92 including different colored portions 22. In the following description, a suffix R, G, or B is added to a reference sign as in “red pixel 92R”, “green pixel 92G”, or “blue pixel 92B” to distinguish the colors of the colored pixels, whereas such a suffix is not added as in “colored pixel 92” to make collective reference without distinguishing the colors.
As illustrated in
Incidentally, as illustrated in a liquid crystal panel 810 according to a first comparative example of
As illustrated in a liquid crystal panel 910 according to a second comparative example of
In view of this, in the present embodiment, as illustrated in
According to this configuration, regarding the display pixels 90 including the colored pixels 92 including the curved line portion L2, colored pixels 92 of three colors constituting the display pixel 90 are lighted in line with the shape of the display end pixel 94, and therefore the colored pixels 92 of the three colors have a lighting region of the same shape and the same size in their corresponding display pixel 90. As a result, also in the display pixel 90, the colored pixels 92 have an equal aperture ratio, and a satisfactory color balance can be maintained. Although the shape of the lighting region of each colored pixel 92 is arranged to match the shape of the lighting region of the display end pixel 94, the shape of the curved line portion of the display end pixel 94 matches the shape of the curved line portion L2. This enables smooth display of the shape of the peripheral portion (outline) of the display region A1.
The first light blocking portion 894 having a shape in line with the shape of the curved line portion L2 is provided in all of the display end pixels 94. This configuration prevents a situation that the entire region of some of the display end pixels 94 enters a non-lighting state, which is the case with JP 5112961B. As a result, smooth display of the shape of the peripheral portion (outline) of the display region A1 can be secured.
Note that the number of colors and the combination of the colored portions 22 of the display pixel 90 can be modified as appropriate within the range of n different colors (n: a natural number of 2 or greater). The above description takes an example of a case where n is 3 (n=3). However, for example, in a case where n is 4 (n=4) with another colored portion of white (W) or yellow (Y) being provided in addition to R, G, and B, each display pixel 90 includes four colors of colored pixels 92, and thus color reproducibility can be enhanced, for example.
The present invention is not limited to the embodiments described above and illustrated by the drawings, and embodiments such as those described below are also included within the technical scope of the present invention.
(1) The above embodiments illustrate one example of the shape of the display region. The shape, however, is not limited to the above shape as long as the shape includes a curved line. The non-display region is not limited to an outer peripheral portion. For example, in a case where the display region has a donut-like shape, both of an inner peripheral portion and an outer peripheral portion of the donut-like shape correspond to the non-display region, and the boundary between the display region and the non-display region exists both on the inner peripheral side and the outer peripheral side.
(2) Each of the above embodiments exemplifies a liquid crystal panel whose operation mode is an FFS mode. The operation mode, however, may be another operation mode, such as an in-plane switching (IPS) mode and a vertical alignment (VA) mode. The liquid crystal panel may also be provided with a touch panel function of detecting a position of user's input, based on a display image.
(3) Each of the above embodiments exemplifies a liquid crystal panel as the display panel. However, the present invention can also be applied to other types of display panels (such as an organic EL panel, a plasma display panel (PDP), an electrophoretic display panel (EPD), and a display panel of micro electro mechanical systems (MEMS)).
Number | Date | Country | |
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62818770 | Mar 2019 | US |