The present disclosure relates to a display device.
In the related art, there has been known a liquid crystal display device including a liquid crystal display panel that includes n gate lines extending in a first direction, m+1 data lines extending in a second direction vertical to the first direction, and a large number of pixels that include m pixels in the first direction and n pixels in the second direction and are aligned in a matrix (for example, see Japanese Unexamined Patent Application Publication No. 2011-150371).
In Japanese Unexamined Patent Application Publication No. 2011-150371, each pixel includes a switching element and the switching elements are formed in a zigzag manner along the data lines. The first data line and the last data line are connected to each other. Display that seems to be performed by a dot inversion method is performed through driving by a column inversion method.
Japanese Unexamined Patent Application Publication No. 2011-150371 does not clearly describe the relationship between picture elements and colors, and has no description on a method for dealing with an increase in power consumption during monochromatic (RGB) display. Thus, in the liquid crystal display device described in Japanese Unexamined Patent Application Publication No. 2011-150371, there may be a case that power consumption and radiation noise are increased during monochromatic (RGB) display.
In view of the problem described above, the present disclosure is aimed at providing a display device capable of reducing power consumption and radiation noise during white, black, gray, or RGB (monochromatic) screen display, by making an output voltage waveform of a source driver change every vertical scanning period.
According to an aspect of the present disclosure, there is provided a display device including: a plurality of source lines extending in a first direction; and a plurality of gate lines extending in a second direction that intersects with the first direction. A plurality of switching elements are connected to one of the plurality of source lines. Each of the plurality of switching elements is connected to one of the plurality of gate lines. The plurality of switching elements connected to the source line are aligned in the first direction so as to be alternately located on one side and another side of the source line. A plurality of picture elements that include the plurality of switching elements connected to the source line correspond to the same color.
Now, a display device according to a first embodiment of the present disclosure is described.
In each drawing referred to below, components may be illustrated in different scales so that each component is easy to see.
In the example illustrated in
In other examples, the display device 100 may include a plurality of picture elements that are aligned in a matrix with any number of columns and rows other than the matrix with 8 columns and 15 rows.
In the example illustrated in
To the source line S1, source electrodes of the switching elements 5 of the picture elements 11R, 31R, 51R, and 71R are connected. Further, the picture elements 11R, 31R, 51R, and 71R, which include the switching elements 5 connected to the source line S1, correspond to the same color (red (R)).
To the source line S2, source electrodes of the switching elements 5 of the picture elements 11G, 21G, 31G, 41G, 51G, 61G, 71G, and 81G are connected. Specifically, the switching elements 5 of the picture elements 11G, 21G, 31G, 41G, 51G, 61G, 71G, and 81G connected to the source line S2 are aligned in the vertical direction. Further, the switching elements 5 of the picture elements 11G, 31G, 51G, and 71G are arranged on the right side of the source line S2, and the switching elements 5 of the picture elements 21G, 41G, 61G, and 81G are arranged on the left side of the source line S2. That is, the switching elements 5 of the picture elements 11G, 21G, 31G, 41G, 51G, 61G, 71G, and 81G connected to the source line S2 are aligned in the vertical direction so as to be alternately located on the right and left sides of the source line S2 one by one. Further, the picture elements 11G, 21G, 31G, 41G, 51G, 61G, 71G, and 81G, which include the switching elements 5 connected to the source line S2, correspond to the same color (green (G)).
To the source line S3, source electrodes of the switching elements 5 of the picture elements 11B, 21B, 31B, 41B, 51B, 61B, 71B, and 81B are connected. Specifically, the switching elements 5 of the picture elements 11B, 21B, 31B, 41B, 51B, 61B, 71B, and 81B connected to the source line S3 are aligned in the vertical direction. Further, the switching elements 5 of the picture elements 11B, 31B, 51B, and 71B are arranged on the right side of the source line S3, and the switching elements 5 of the picture elements 21B, 41B, 61B, and 81B are arranged on the left side of the source line S3. That is, the switching elements 5 of the picture elements 11B, 21B, 31B, 41B, 51B, 61B, 71B, and 81B connected to the source line S3 are aligned in the vertical direction so as to be alternately located on the right and left sides of the source line S3 one by one. Further, the picture elements 11B, 21B, 31B, 41B, 51B, 61B, 71B, and 81B, which include the switching elements 5 connected to the source line S3, correspond to the same color (blue (B)).
To the source line S4, source electrodes of the switching elements 5 of the picture elements 12R, 21R, 32R, 41R, 52R, 61R, 72R, and 81R are connected. Specifically, the switching elements 5 of the picture elements 12R, 21R, 32R, 41R, 52R, 61R, 72R, and 81R connected to the source line S4 are aligned in the vertical direction. Further, the switching elements 5 of the picture elements 12R, 32R, 52R, and 72R are arranged on the right side of the source line S4, and the switching elements 5 of the picture elements 21R, 41R, 61R, and 81R are arranged on the left side of the source line S4. That is, the switching elements 5 of the picture elements 12R, 21R, 32R, 41R, 52R, 61R, 72R, and 81R connected to the source line S4 are aligned in the vertical direction so as to be alternately located on the right and left sides of the source line S4 one by one. Further, the picture elements 12R, 21R, 32R, 41R, 52R, 61R, 72R, and 81R, which include the switching elements 5 connected to the source line S4, correspond to the same color (red (R)).
To the source line S5, source electrodes of the switching elements 5 of the picture elements 12G, 22G, 32G, 42G, 52G, 62G, 72G, and 82G are connected. The source electrodes of the switching elements 5 of the picture elements 12G, 22G, 32G, 42G, 52G, 62G, 72G, and 82G are connected to the source line S5 in a manner similar to the way the source electrodes of the switching elements 5 of the picture elements 11G, 21G, 31G, 41G, 51G, 61G, 71G, and 81G are connected to the source line S2. Further, the picture elements 12G, 22G, 32G, 42G, 52G, 62G, 72G, and 82G, which include the switching elements 5 connected to the source line S5, correspond to the same color (green (G)).
To the source line S6, source electrodes of the switching elements 5 of the picture elements 12B, 22B, 32B, 42B, 52B, 62B, 72B, and 82B are connected. The source electrodes of the switching elements 5 of the picture elements 12B, 22B, 32B, 42B, 52B, 62B, 72B, and 82B are connected to the source line S6 in a manner similar to the way the source electrodes of the switching elements 5 of the picture elements 11B, 21B, 31B, 41B, 51B, 61B, 71B, and 81B are connected to the source line S3. Further, the picture elements 12B, 22B, 32B, 42B, 52B, 62B, 72B, and 82B, which include the switching elements 5 connected to the source line S6, correspond to the same color (blue (B)).
To the source line S7, source electrodes of the switching elements 5 of the picture elements 13R, 22R, 33R, 42R, 53R, 62R, 73R, and 82R are connected. The source electrodes of the switching elements 5 of the picture elements 13R, 22R, 33R, 42R, 53R, 62R, 73R, and 82R are connected to the source line S7 in a manner similar to the way the source electrodes of the switching elements 5 of the picture elements 12R, 21R, 32R, 41R, 52R, 61R, 72R, and 81R are connected to the source line S4. Further, the picture elements 13R, 22R, 33R, 42R, 53R, 62R, 73R, and 82R, which include the switching elements 5 connected to the source line S7, correspond to the same color (red (R)).
To the source line S8, source electrodes of the switching elements 5 of the picture elements 13G, 23G, 33G, 43G, 53G, 63G, 73G, and 83G are connected. The source electrodes of the switching elements 5 of the picture elements 13G, 23G, 33G, 43G, 53G, 63G, 73G, and 83G are connected to the source line S8 in a manner similar to the way the source electrodes of the switching elements 5 of the picture elements 11G, 21G, 31G, 41G, 51G, 61G, 71G, and 81G are connected to the source line S2. Further, the picture elements 13G, 23G, 33G, 43G, 53G, 63G, 73G, and 83G, which include the switching elements 5 connected to the source line S8, correspond to the same color (green (G)).
To the source line S9, source electrodes of the switching elements 5 of the picture elements 13B, 23B, 33B, 43B, 53B, 63B, 73B, and 83B are connected. The source electrodes of the switching elements 5 of the picture elements 13B, 23B, 33B, 43B, 53B, 63B, 73B, and 83B are connected to the source line S9 in a manner similar to the way the source electrodes of the switching elements 5 of the picture elements 11B, 21B, 31B, 41B, 51B, 61B, 71B, and 81B are connected to the source line S3. Further, the picture elements 13B, 23B, 33B, 43B, 53B, 63B, 73B, and 83B, which include the switching elements 5 connected to the source line S9, correspond to the same color (blue (B)).
To the source line S10, source electrodes of the switching elements 5 of the picture elements 14R, 23R, 34R, 43R, 54R, 63R, 74R, and 83R are connected. The source electrodes of the switching elements 5 of the picture elements 14R, 23R, 34R, 43R, 54R, 63R, 74R, and 83R are connected to the source line S10 in a manner similar to the way the source electrodes of the switching elements 5 of the picture elements 12R, 21R, 32R, 41R, 52R, 61R, 72R, and 81R are connected to the source line S4. Further, the picture elements 14R, 23R, 34R, 43R, 54R, 63R, 74R, and 83R, which include the switching elements 5 connected to the source line S10, correspond to the same color (red (R)).
To the source line S11, source electrodes of the switching elements 5 of the picture elements 14G, 24G, 34G, 44G, 54G, 64G, 74G, and 84G are connected. The source electrodes of the switching elements 5 of the picture elements 14G, 24G, 34G, 44G, 54G, 64G, 74G, and 84G are connected to the source line S11 in a manner similar to the way the source electrodes of the switching elements 5 of the picture elements 11G, 21G, 31G, 41G, 51G, 61G, 71G, and 81G are connected to the source line S2. Further, the picture elements 14G, 24G, 34G, 44G, 54G, 64G, 74G, and 84G, which include the switching elements 5 connected to the source line S11, correspond to the same color (green (G)).
To the source line S12, source electrodes of the switching elements 5 of the picture elements 14B, 24B, 34B, 44B, 54B, 64B, 74B, and 84B are connected. The source electrodes of the switching elements 5 of the picture elements 14B, 24B, 34B, 44B, 54B, 64B, 74B, and 84B are connected to the source line S12 in a manner similar to the way the source electrodes of the switching elements 5 of the picture elements 11B, 21B, 31B, 41B, 51B, 61B, 71B, and 81B are connected to the source line S3. Further, the picture elements 14B, 24B, 34B, 44B, 54B, 64B, 74B, and 84B, which include the switching elements 5 connected to the source line S12, correspond to the same color (blue (B)).
To the source line S13, source electrodes of the switching elements 5 of the picture elements 15R, 24R, 35R, 44R, 55R, 64R, 75R, and 84R are connected. The source electrodes of the switching elements 5 of the picture elements 15R, 24R, 35R, 44R, 55R, 64R, 75R, and 84R are connected to the source line S13 in a manner similar to the way the source electrodes of the switching elements 5 of the picture elements 12R, 21R, 32R, 41R, 52R, 61R, 72R, and 81R are connected to the source line S4. Further, the picture elements 15R, 24R, 35R, 44R, 55R, 64R, 75R, and 84R, which include the switching elements 5 connected to the source line S13, correspond to the same color (red (R)).
To the source line S14, source electrodes of the switching elements 5 of the picture elements 15G, 25G, 35G, 45G, 55G, 65G, 75G, and 85G are connected. The source electrodes of the switching elements 5 of the picture elements 15G, 25G, 35G, 45G, 55G, 65G, 75G, and 85G are connected to the source line S14 in a manner similar to the way the source electrodes of the switching elements 5 of the picture elements 11G, 21G, 31G, 41G, 51G, 61G, 71G, and 81G are connected to the source line S2. Further, the picture elements 15G, 25G, 35G, 45G, 55G, 65G, 75G, and 85G, which include the switching elements 5 connected to the source line S14, correspond to the same color (green (G)).
To the source line S15, source electrodes of the switching elements 5 of the picture elements 15B, 25B, 35B, 45B, 55B, 65B, 75B, and 85B are connected. The source electrodes of the switching elements 5 of the picture elements 15B, 25B, 35B, 45B, 55B, 65B, 75B, and 85B are connected to the source line S15 in a manner similar to the way the source electrodes of the switching elements 5 of the picture elements 11B, 21B, 31B, 41B, 51B, 61B, 71B, and 81B are connected to the source line S3. Further, the picture elements 15B, 25B, 35B, 45B, 55B, 65B, 75B, and 85B, which include the switching elements 5 connected to the source line S15, correspond to the same color (blue (B)).
To the source line S16, source electrodes of the switching elements 5 of the picture elements 25R, 45R, 65R, and 85R are connected. Further, the picture elements 25R, 45R, 65R, and 85R, which include the switching elements 5 connected to the source line S16, correspond to the same color (red (R)).
In the example illustrated in
The picture elements 13R, 22R, 33R, 42R, 53R, and 62R, which include the switching elements 5 connected to the source line S7, have the negative (−) polarity, that is, the same polarity. The picture elements 13G, 23G, 33G, 43G, 53G, and 63G, which include the switching elements 5 connected to the source line S8, have the positive (+) polarity, that is, the same polarity. The picture elements 13B, 23B, 33B, 43B, 53B, and 63B, which include the switching elements 5 connected to the source line S9, have the negative (−) polarity, that is, the same polarity.
The picture elements 23R, 43R, and 63R, which include the switching elements 5 connected to the source line S10, have the positive (+) polarity, that is, the same polarity.
In the example illustrated in
In the example illustrated in
Further, in the example illustrated in
In the examples illustrated in
In the examples illustrated in
In the display device 100 according to the first embodiment, the output voltage waveform of the source driver 4 changes every vertical scanning period (1V) during white, black, gray, or RGB screen display. Thus, the display device 100 can reduce power consumption and radiation noise compared to a case where the output voltage waveform of the source driver 4 changes every horizontal scanning period (1H).
Further, in the display device 100 according to the first embodiment, as illustrated in
Now, a display device according to a second embodiment of the present disclosure is described.
A display device 100 according to the second embodiment has the same configuration as the above-mentioned display device 100 according to the first embodiment except for the following points. Thus, the display device 100 according to the second embodiment can provide the same effects as the above-mentioned display device 100 according to the first embodiment, except for the following points.
In the display device 100 according to the first embodiment, as illustrated in
Meanwhile, in the display device 100 according to the second embodiment, as illustrated in
Specifically, in the display device 100 according to the second embodiment, like the display device 100 according to the first embodiment, the switching elements 5 of the picture elements 12G, 22G, 32G, 42G, 52G, and 62G connected to the source line S5 are aligned in the vertical direction.
In the display device 100 according to the second embodiment, unlike the display device 100 according to the first embodiment, the switching elements 5 of the picture elements 12G, 22G, 52G, and 62G are arranged on the right side of the source line S5, and the switching elements 5 of the picture elements 32G and 42G are arranged on the left side of the source line S5. That is, the switching elements 5 of the picture elements 12G, 22G, 32G, 42G, 52G, and 62G connected to the source line S5 are aligned in the vertical direction so that the switching elements 5 are alternately located two at a time on the right and left sides of the source line S5.
Further, in the display device 100 according to the second embodiment, like the display device 100 according to the first embodiment, the picture elements 12G, 22G, 32G, 42G, 52G, and 62G, which include the switching elements 5 connected to the source line S5, correspond to the same color (green (G)).
Further, in the display device 100 according to the second embodiment, as illustrated in
The switching elements 5 of the picture elements 13R, 23R, 32R, 42R, 53R, and 63R connected to the source line S7 are aligned in the vertical direction so that the switching elements 5 are alternately located two at a time on the right and left sides of the source line S7.
The switching elements 5 of the picture elements 13G, 23G, 33G, 43G, 53G, and 63G connected to the source line S8 are aligned in the vertical direction so that the switching elements 5 are alternately located two at a time on the right and left sides of the source line S8.
The switching elements 5 of the picture elements 13B, 23B, 33B, 43B, 53B, and 63B connected to the source line S9 are aligned in the vertical direction so that the switching elements 5 are alternately located two at a time on the right and left sides of the source line S9.
Further, in the display device 100 according to the second embodiment, as illustrated in
Specifically, on the left side of the source line S5, the picture elements 12R, 22R, 32G, 42G, 52R, and 62R are aligned in the vertical direction. The color of the color filters of the picture elements 12R and 22R is red (R), and the color of the color filters of the picture elements 32G and 42G, which are aligned on the lower side of the picture elements 12R and 22R, is green (G), which is different from red (R). The color of the color filters of the picture elements 52R and 62R, which are aligned on the lower side of the picture elements 32G and 42G, is red (R), which is different from green (G).
On the right side of the source line S5 (the left side of the source line S6), the picture elements 12G, 22G, 32B, 42B, 52G, and 62G are aligned in the vertical direction. The color of the color filters of the picture elements 12G and 22G is green (G), and the color of the color filters of the picture elements 32B and 42B, which are aligned on the lower side of the picture elements 12G and 22G, is blue (B), which is different from green (G). The color of the color filters of the picture elements 52G and 62G, which are aligned on the lower side of the picture elements 32B and 42B, is green (G), which is different from blue (B).
On the right side of the source line S6 (the left side of the source line S7), the picture elements 12B, 22B, 32R, 42R, 52B, and 62B are aligned in the vertical direction. The color of the color filters of the picture elements 12B and 22B is blue (B), and the color of the color filters of the picture elements 32R and 42R, which are aligned on the lower side of the picture elements 12B and 22B, is red (R), which is different from blue (B). The color of the color filters of the picture elements 52B and 62B, which are aligned on the lower side of the picture elements 32R and 42R, is blue (B), which is different from red (R).
On the right side of the source line S7 (the left side of the source line S8), the picture elements 13R, 23R, 33G, 43G, 53R, and 63R are aligned in the vertical direction. The color of the color filters of the picture elements 13R and 23R is red (R), and the color of the color filters of the picture elements 33G and 43G, which are aligned on the lower side of the picture elements 13R and 23R, is green (G), which is different from red (R). The color of the color filters of the picture elements 53R and 63R, which are aligned on the lower side of the picture elements 33G and 43G, is red (R), which is different from green (G).
On the right side of the source line S8 (the left side of the source line S9), the picture elements 13G, 23G, 33B, 43B, 53G, and 63G are aligned in the vertical direction. The color of the color filters of the picture elements 13G and 23G is green (G), and the color of the color filters of the picture elements 33B and 43B, which are aligned on the lower side of the picture elements 13G and 23G, is blue (B), which is different from green (G). The color of the color filters of the picture elements 53G and 63G, which are aligned on the lower side of the picture elements 33B and 43B, is green (G), which is different from blue (B).
On the right side of the source line S9 (the left side of the source line S10), the picture elements 13B, 23B, 33R, 43R, 53B, and 63B are aligned in the vertical direction. The color of the color filters of the picture elements 13B and 23B is blue (B), and the color of the color filters of the picture elements 33R and 43R, which are aligned on the lower side of the picture elements 13B and 23B, is red (R), which is different from blue (B). The color of the color filters of the picture elements 53B and 63B, which are aligned on the lower side of the picture elements 33R and 43R, is blue (B), which is different from red (R).
Further, in the display device 100 according to the second embodiment, as illustrated in
The picture elements 13R, 23R, 32R, 42R, 53R, and 63R, which include the switching elements 5 connected to the source line S7, have the negative (−) polarity, that is, the same polarity. The picture elements 13G, 23G, 33G, 43G, 53G, and 63G, which include the switching elements 5 connected to the source line S8, have the positive (+) polarity, that is, the same polarity. The picture elements 13B, 23B, 33B, 43B, 53B, and 63B, which include the switching elements 5 connected to the source line S9, have the negative (−) polarity, that is, the same polarity.
The picture elements 33R and 43R, which include the switching elements 5 connected to the source line S10, have the positive (+) polarity, that is, the same polarity.
Now, a display device according to a third embodiment of the present disclosure is described.
A display device 100 according to the third embodiment has the same configuration as the above-mentioned display device 100 according to the first embodiment except for the following points. Thus, the display device 100 according to the third embodiment can provide the same effects as the above-mentioned display device 100 according to the first embodiment, except for the following points.
In the display device 100 according to the first embodiment, as illustrated in
Meanwhile, in the display device 100 according to the third embodiment, as illustrated in
Specifically, in the display device 100 according to the third embodiment, as illustrated in
The right-end picture element 15B of the plurality of picture elements 11R to 15R, 11G to 15G, and 11B to 15B, which include the plurality of switching elements 5 connected to the gate line G1, is arranged on the right side of the right-end picture element 25B of the plurality of picture elements 21R to 25R, 21G to 25G, and 21B to 25B, which include the plurality of switching elements 5 connected to the gate line G2.
The left-end picture element 21R of the plurality of picture elements 21R to 25R, 21G to 25G, and 21B to 25B, which include the plurality of switching elements 5 connected to the gate line G2, is arranged on the left side of the left-end picture element 31R of the plurality of picture elements 31R to 35R, 31G to 35G, and 31B to 35B, which include the plurality of switching elements 5 connected to the gate line G3 that is arranged on the opposite side of the gate line G1 with respect to the gate line G2 and is adjacent to the gate line G2.
The right-end picture element 25B of the plurality of picture elements 21R to 25R, 21G to 25G, and 21B to 25B, which include the plurality of switching elements 5 connected to the gate line G2, is arranged on the left side of the right-end picture element 35B of the plurality of picture elements 31R to 35R, 31G to 35G, and 31B to 35B, which include the plurality of switching elements 5 connected to the gate line G3.
In the display device 100 according to the first embodiment, as illustrated in
Meanwhile, in the display device 100 according to the third embodiment, as illustrated in
Further, in the display device 100 according to the first embodiment, as illustrated in
Meanwhile, in the display device 100 according to the third embodiment, as illustrated in
In the first comparative example, dot inversion driving is performed. As illustrated in
In the second comparative example, source line inversion (column inversion) driving is performed. As illustrated in
In the third comparative example, Z inversion driving is performed. As illustrated in
The exemplary embodiments according to the present disclosure have been described so far with reference to the accompanying drawings, but as a matter of course, the present disclosure is not limited to the examples. It is apparent that those skilled in the art can conceive various modifications or variations within the scope of the technical idea described in the claims, and it is understood that those modifications and variations also naturally fall within the technical scope of the present disclosure.
The present disclosure contains subject matter related to that disclosed in Japanese Priority Patent Application JP 2017-195894 filed in the Japan Patent Office on Oct. 6, 2017, the entire contents of which are hereby incorporated by reference.
It should be understood by those skilled in the art that various modifications, combinations, sub-combinations and alterations may occur depending on design requirements and other factors insofar as they are within the scope of the appended claims or the equivalents thereof.
Number | Date | Country | Kind |
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2017-195894 | Oct 2017 | JP | national |