CN107741870A - The method that terminal, display screen and control display screen are shown - Google Patents
The method that terminal, display screen and control display screen are shown Download PDFInfo
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- CN107741870A CN107741870A CN201710928306.7A CN201710928306A CN107741870A CN 107741870 A CN107741870 A CN 107741870A CN 201710928306 A CN201710928306 A CN 201710928306A CN 107741870 A CN107741870 A CN 107741870A
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Abstract
This application discloses a kind of method that control display screen is shown, including:The first circular arc boost line and the second circular arc boost line are set in the close marginal position of display screen, first circular arc boost line is arranged at intervals with the second circular arc boost line, display screen is divided into complete viewing area, non-display area and transition viewing area by first, second circular arc boost line, and wherein transition viewing area includes multiple transition pixel units;The pixel aperture ratio for setting the transition pixel unit in transition viewing area is more than 0 aperture opening ratio for being less than pixel cell in complete viewing area.By the pixel cell brightness of above method setting transition viewing area, gradually increase smooth very well sawtooth sense can occur with improvement screen edge, optimize visual effect.The application also provides a kind of display screen by above method setting and the terminal including the display screen.
Description
Technical field
The application is related to field of structural design, is shown more particularly to a kind of terminal, display screen and control display screen
Method.
Background technology
With the development of science and technology, smart mobile phone update is more and more faster, while wearable electronic product becomes more next
It is more popular, such as intelligent wristwatch.According to traditional design concept, the shape design of watch is most of to be all intended to circular, class
It is circular or ellipse.But the shape of most of intelligent wristwatch is all to use square or class squared design at present, has lost biography
The taste of system.Because if the intelligent wristwatch that smart mobile phone or intelligent wristwatch are made to circular, similar round or ellipse is then difficult
Make us feeling bad sawtooth sense to overcome screen edge to occur, influence visual effect.
The content of the invention
The application provides the method that a kind of terminal, display screen and control display screen are shown, can improve screen edge and go out
The phenomenon of existing sawtooth sense.
The application use a technical scheme be:A kind of method that control display screen is shown is provided, comprised the following steps:
The first circular arc boost line and the second circular arc boost line, first circular arc are set in the close marginal position of display screen
Boost line is arranged at intervals with the second circular arc boost line, and display screen is divided into completely by the first, second circular arc boost line
Viewing area, non-display area and transition viewing area, the center of circle of the first, second circular arc boost line is positioned at the display completely
Area, show wherein forming transition with multiple transition pixel units that first circular arc auxiliary or the second circular arc boost line intersect
Show area, or multiple transition pixel units for intersecting with first circular arc auxiliary or the second circular arc boost line and be located at
Multiple transition pictures that are between the first, second circular arc viewing area and not intersecting with the described first or second circular arc boost line
Plain unit is collectively forming transition viewing area;
The pixel aperture ratio for setting the transition pixel unit in the transition viewing area is less than the complete viewing area more than 0
The aperture opening ratio of middle pixel cell.
The application also provides a kind of display screen, including:
Positioned at the complete viewing area of the display screen middle position, positioned at the display screen marginal position non-display area
And positioned at the viewing area completely and the transition viewing area of the non-display area;
The transition viewing area includes multiple transition pixel units, and plurality of adjacent transition pixel unit forms circular arc
Shape, and the aperture opening ratio method as described above of the transition element in the transition viewing area determines.
The application also provides a kind of terminal, and the terminal includes above-described display screen.
Above scheme by being located at middle complete viewing area and the shape between the non-display area at edge on a display screen
Into transition viewing area, the transition viewing area includes multiple transition pixel units, and the wherein aperture opening ratio of transition pixel unit is more than 0
Less than 1.By the pixel cell brightness of above method setting transition viewing area, gradually increase being capable of smooth very well and improvement screen
There is sawtooth sense in edge, optimizes visual effect.
Brief description of the drawings
In order to illustrate more clearly of the technical scheme in the embodiment of the present application, make required in being described below to embodiment
Accompanying drawing is briefly described, it should be apparent that, drawings in the following description are only some embodiments of the present application, for
For those of ordinary skill in the art, on the premise of not paying creative work, other can also be obtained according to these accompanying drawings
Accompanying drawing.
Fig. 1 is the schematic flow sheet for the embodiment of method one that the application control display screen is shown;
Fig. 2 is the part-structure schematic diagram of display screen in the embodiment of the application one;
Fig. 3 is the part-structure schematic diagram of display screen in another embodiment of the application;
Fig. 4 is the structural representation of display screen in the embodiment of the application one;
Fig. 5 is the structural representation of display screen in another embodiment of the application;
Fig. 6 is the effective structural representation of transition pixel unit in transition viewing area shown in Fig. 2;
Fig. 7 is that the display that a part for the display screen shown in Fig. 2 is presented by the control method of the embodiment of the application one is imitated
Fruit is schemed;
Fig. 8 is the structural representation of effective transition pixel unit in transition viewing area in another embodiment;
Fig. 9 is that the structure of effective transition pixel unit or transition pixel unit in transition viewing area in another embodiment is shown
It is intended to;
Figure 10 is the structural representation of the embodiment terminal of the application one.
Embodiment
Below in conjunction with the accompanying drawing in the embodiment of the present application, the technical scheme in the embodiment of the present application is carried out clear, complete
Site preparation describes.It is understood that specific embodiment described herein is only used for explaining the application, rather than the limit to the application
It is fixed.It also should be noted that for the ease of description, the part related to the application illustrate only in accompanying drawing and not all knot
Structure.Based on the embodiment in the application, what those of ordinary skill in the art were obtained under the premise of creative work is not made
Every other embodiment, belong to the scope of the application protection.
Term " first " in the application, " second ", " the 3rd " are only used for describing purpose, and it is not intended that instruction or dark
Show relative importance or the implicit quantity for indicating indicated technical characteristic.Thus, " first ", " second ", " are defined
At least one this feature can be expressed or be implicitly included to three " feature.In the description of the present application, " multiple " be meant that to
It is few two, such as two, three etc., unless otherwise specifically defined.The directional instruction of institute is (all in the embodiment of the present application
Such as up, down, left, right, before and after ...) it is only used for explaining the phase under a certain particular pose (as shown in drawings) between each part
To position relationship, motion conditions etc., if the particular pose changes, directionality instruction also correspondingly changes therewith
Become.In addition, term " comprising " and " having " and their any deformations, it is intended that cover non-exclusive include.Such as comprising
The step of process of series of steps or unit, method, system, product or equipment are not limited to list or unit, and
It is alternatively also to include the step of not listing or unit, or alternatively also includes for these processes, method, product or equipment
Intrinsic other steps or unit.
Referenced herein " embodiment " is it is meant that the special characteristic, structure or the characteristic that describe can wrap in conjunction with the embodiments
It is contained at least one embodiment of the application.Each position in the description occur the phrase might not each mean it is identical
Embodiment, nor the independent or alternative embodiment with other embodiments mutual exclusion.Those skilled in the art explicitly and
Implicitly understand, embodiment described herein can be combined with other embodiments.
Referring to Fig. 1, the schematic flow sheet of the embodiment of method one show for the application control display screen, this method including with
Lower step, referring also to Fig. 2, for the part-structure schematic diagram of display screen in the embodiment of the application one.
101:The first circular arc boost line 10 and the second circular arc boost line 10a are set in the close marginal position of display screen 100,
First circular arc boost line 10 and the second circular arc boost line 10a are arranged at intervals, and first, second circular arc boost line 10,10a are by display screen
It is divided into complete viewing area 20, non-display area 30 and transition viewing area 40, and first, second circular arc boost line 10,10a circle
The heart is located in complete viewing area 20.
In the present embodiment, wherein the multiple transition pictures intersected with the first circular arc boost line 10 or the second circular arc boost line 10a
Plain unit 42 forms transition viewing area 40, and this situation corresponds between the first circular arc boost line 10 and the second circular arc boost line 10a
The less situation of gap ratio, for the ease of distinguishing the transition pixel that intersects with the first circular arc boost line 10 defined in the present embodiment
Unit is 42a, is 42b with the second circular arc boost line 10a transition pixel units intersected.In other embodiment, the first circular arc is auxiliary
Spacing between the circular arc boost line 10a of index contour 10 and second can also be bigger, in this case, the He of the first circular arc boost line 10
There is also do not intersect with the first circular arc boost line 10 or the second circular arc boost line 10a between second circular arc boost line 10a
Transition pixel unit 42c, as shown in Figure 3.Now transition viewing area 40 by with the first circular arc auxiliary 10 or the second circular arc boost line
Intersecting 10a multiple transition pixel unit 42a and 42b and between first, second circular arc boost line 10,10a and do not have
There are the multiple transition pixel unit 42c intersected with the first or second circular arc boost line 10,10a to be collectively forming.
Alternatively, in an embodiment, the first circular arc boost line 10 be arranged in parallel with the second circular arc boost line 10a.Other realities
Apply in example, the first circular arc boost line 10 and the second circular arc boost line 10a can also be not parallel relations, as long as can show
Increase a transition viewing area 40 between the non-display area 30 of screen 100 and completely viewing area 20.Corresponding to different implementation
Example, the spacing between first, second circular arc boost line 10,10a are any one numerical value in 1-3 times of pixel cell height.
Specifically, display screen 100 can be the display of mobile phone, video camera, Ipad, wrist-watch or other Intelligent worn devices
Screen.Corresponding different end product, display screen 100 can have different shapes, such as rectangle, circle, similar round, ellipse
Or other shapes.Wherein non-display area 30 is located at the marginal position of display screen 100, can be used for wiring etc. below.
Referring also to Fig. 4, by taking mobile phone or Ipad display screen as an example, the display screen 100 is rectangle, including four sides
Angle, and four corner locations include non-display area 30 and transition viewing area 40.Complete viewing area 20 is located in display screen 100
Between position, also occupies most of area of display screen 100, transition viewing area 40 is located at complete viewing area 20 and non-display area 30
Between.The viewing area of display screen 100 is made up of complete viewing area 20 and transition viewing area 40.Transition pixel unit 42 is with first
The circular arc boost line 10a of circular arc boost line 10 or second intersects, therefore the corner location of viewing area at least four of the display screen 100
Edge be arc-shaped.
Referring to Fig. 5, it is possible to understand that other embodiment in, such as circular wrist-watch, then the edge of whole viewing area is circle
Arcuation, i.e. transition viewing area 40, which enclose, is set as ring week, can be specifically circular or ellipse etc..
Specifically, the first circular arc boost line 10 and/or the second circular arc boost line are calculated according to below equation in an embodiment
10a radius:
L=R1/h;
R2=L × h;
Wherein R1 is the first circular arc boost line 10 or the second circular arc boost line 10a radius of target, and R2 is the first circular arc
The circular arc boost line 10a of boost line 10 or second real radius, h are the height of pixel cell in display screen, as shown in Figure 6.
Radius of target is the radius that user is proposed according to actual product shape.
102:The pixel aperture ratio of transition pixel unit 42 in setting transition viewing area 40 is less than complete viewing area more than 0
The aperture opening ratio of pixel cell in 20.
It should be noted that the aperture opening ratio of pixel cell is maximum for whole viewing area split shed rate in viewing area 20 completely
, and the aperture opening ratio of each pixel cell is equal in viewing area 20 completely.Due to being thing after all between pixel cell on hardware
Reason isolation, pixel cell density is higher, and effective photosensitive area of pixel cell is necessarily smaller, therefore in fact each pixel list
The aperture opening ratio of member can not possibly reach 100%.The aperture opening ratio of each pixel cell is 1 in viewing area 20 completely defined herein.
Therefore, the transition pixel unit 42 of transition viewing area 40 is necessarily less than the aperture opening ratio of pixel cell in complete viewing area 20, non-
Setting aperture opening ratio to be more than 0 multiple transition pixel units 42 less than 1 between viewing area 30 and completely viewing area 20 is used as centre bright
Spend and cross, the phenomenon that sawtooth sense occurs in screen edge, the part application of display screen 100 can be substantially improved by arrangement above
The display effect presented after above control method is as shown in Figure 7.
With continued reference to Fig. 2:
In one embodiment, the first circular arc boost line 10 is by each transition pixel unit intersected with the first circular arc boost line 10
42a is divided into the Part I 422 close to complete viewing area 20 and the Part II 424 close to non-display area 30.If first
The first ratio that points 422 area accounts for transition pixel unit 42a is more than or equal to the first preset value and then defines this as transition element singly
First 42a is effective transition pixel unit, and it is invalid transition pixel unit otherwise to define transition pixel unit 42a, and with first
The aperture opening ratio of effective transition pixel unit 42a shown in ratio-dependent.
In the present embodiment, the first preset value is 20%.In other embodiment, the first preset value can also be 20%-40%
In any one numerical value.The area of Part I 422 accounts for this in each transition pixel unit 42a i.e. in transition viewing area 40
Any one numerical value that the ratio of the transition pixel unit 42a gross area is more than or equal in 20%-40% defines the transition picture
Plain unit 42a is valid pixel unit.
During one implements, the second circular arc boost line 10a is by each transition pixel unit intersected with the second circular arc boost line 10a
42b is divided into the Part III 422b close to the complete viewing area 20 and Part IV 424b close to non-display area 30, and with the
Area is larger in three parts 422b and Part IV 424b one and the accounting of transition pixel unit 42b itself gross areas are true
Fixed transition pixel unit 42b aperture opening ratio.Because the second circular arc boost line 10a is set adjacent to complete viewing area 20, therefore with
There is the aperture opening ratio of a pixel cell in pixel cell neighbouring transition pixel unit 42b intersecting second circular arc boost line 10a
For 1, the i.e. pixel cell in complete viewing area 20, therefore method as using can avoid and the second circular arc boost line
Transition pixel unit 42b aperture opening ratios intersecting 10a differ with aperture opening ratio 1 farther out, avoids aperture opening ratio between neighbouring pixel cell
There is the phenomenon of cataclysm.
Further, in the bigger embodiment of the spacing between first, second circular arc boost line 10,10a, such as Fig. 3
It is shown, between first, second circular arc boost line 10,10a include not with the first circular arc boost line 10 or the second circular arc boost line
Transition pixel unit 42c intersecting 10a.Transition pixel unit 42c aperture opening ratio is then set between same row and the first circular arc
The transition that the intersecting transition pixel unit 42a of boost line 10 aperture opening ratio and same row intersects with the second circular arc boost line 10a
Between pixel cell 42b aperture opening ratio.Multiple transition pixel units in transition viewing area 40 can be made using such setting
42 aperture opening ratio will not be too wide in the gap, and then the feelings of cataclysm occurs in the aperture opening ratio for avoiding the occurrence of adjacent transition pixel unit 42
Condition.If do not aided in same row between first, second circular arc boost line 10,10a including multiple with the first or second circular arc
Line 10,10a intersecting transition pixel unit 42c, then it is multiple between first, second circular arc boost line 10 of setting same row, 10a
The aperture opening ratio equal difference change for the transition pixel unit 42c not intersected with the first or second circular arc boost line 10,10a.
Further, in an embodiment, special circumstances, according to above method, if there is with the first circular arc boost line 10
Intersecting transition pixel unit 42a aperture opening ratio is more than the transition pixel unit that same row intersects with the second circular arc boost line 10a
The situation of 42b aperture opening ratio, then the transition pixel unit 42a intersected in this row with the first circular arc boost line 10 aperture opening ratio are same
Exchanged with the second circular arc boost line 10a transition pixel unit 42b intersected aperture opening ratio.As being located at the 6th row in the 11st row in Fig. 3
With the situation shown in eighth row.
Further, in another embodiment, if included between first, second circular arc boost line 10,10a not with first
Or the transition pixel unit 42c that the second circular arc boost line 10,10a are intersecting, the then aperture opening ratio for limiting transition pixel unit 42c are big
The transition pixel unit 42a intersected in same row with the first circular arc boost line 10 aperture opening ratio, while be less than and the second circular arc
Transition pixel unit 42b intersecting boost line 10a aperture opening ratio.Alternatively, in the transition pixel unit 42c and same row with
The intersecting transition pixel unit 42a of one circular arc boost line 10 and the transition pixel unit intersected with the second circular arc boost line 10a
42b aperture opening ratio changes for equal difference.So setting preferably smooth sawtooth sense can occur with improvement screen edge, optimize vision
Effect.
Referring also to Fig. 6, in an embodiment, for effective transition pixel unit 42a in transition viewing area 40, with each
Transition pixel unit 42a is located at the first circular arc boost line 10 close to the area of non-display area 30, i.e. the position of Part II 424 is set
Black matrix is put, to reduce the aperture opening ratio of effective transition pixel unit 42.
Referring also to Fig. 8, in another embodiment, effective transition pixel unit 42a is intersected using 2 black matrix 50a to be blocked
Close to the part of non-display area 30, to reduce the aperture opening ratio of effective transition pixel unit 42a.
Referring also to Fig. 9, in another embodiment, effective transition pixel unit 42a, effective transition is blocked with black matrix 50b
Arbitrary portion area in pixel cell 42a.It is auxiliary that the area being blocked equal to effective transition pixel unit 42a is located at the first circular arc
Area of the index contour 10 close to non-display area 30.
Similarly, for the transition pixel unit 42b that intersects with the second circular arc boost line 10a and positioned at first, second circle
The transition pixel unit 42c not intersected between arc boost line 10,10a and with the first or second circular arc boost line 10,10a,
The arbitrary portion area blocked with black matrix 50b in transition pixel unit 42b (or 42c), the area being blocked can be used
It is equal to transition pixel unit 42b (or 42c) opening with the accounting of the transition pixel unit 42b (either 42c) gross area
Rate.
Display screen 100 or 100a are formed by above method, complete viewing area 20 and position among display screen 100
Transition viewing area 40 is formd between the non-display area 30 at edge.Include multiple transition pixel units in transition viewing area 40
42, make the brightness change of non-display area 30 to complete viewing area 20 have individual buffering, sawtooth occur with smooth and improvement screen edge
Sense, optimize visual effect.
The embodiment of the application one also provides a kind of display screen 100 or 100a, as shown in Figure 2-5, the display screen 100 or 100a
As described by various embodiments above, on the display screen 100 or 100a in transition viewing area 40 each transition pixel unit 42a whether be
Valid pixel unit, and set for the aperture opening ratio of transition pixel unit 42 by the method for above example introduction, this does not go to live in the household of one's in-laws on getting married
State.
Specifically, for display screen 100 or 100a that viewing area is arc-shaped, whole terminal is also made with arc-shaped side
The outward appearance of edge, now the display screen 100 of rectangle or 100a corners are corner cut or formation circular arc chamfering, to coordinate the shape of terminal
Shape.If the position that certain terminal is used to place display screen is sufficiently large, corner cut can not also be done to the corner of the display screen of rectangle
Or rounding processing.
Referring to Figure 10, the embodiment of the application one also provides a kind of terminal 300, and the terminal 300 includes above-mentioned display screen 100.
Specific terminal 300 can be with mobile phone, IPad, Intelligent worn device, digital audio & video players, electronic reader, portable game
Machine and vehicle electronic device, digital camera and printer etc..
Presently filed embodiment is the foregoing is only, not thereby limits the scope of the claims of the application, it is every to utilize this
The equivalent structure or equivalent flow conversion that application specification and accompanying drawing content are made, or directly or indirectly it is used in other correlations
Technical field, similarly it is included in the scope of patent protection of the application.
Claims (13)
1. a kind of method that control display screen is shown, it is characterised in that comprise the following steps:
The first circular arc boost line and the second circular arc boost line, the first circular arc auxiliary are set in the close marginal position of display screen
Line is arranged at intervals with the second circular arc boost line, and display screen is divided into complete display by the first, second circular arc boost line
Area, non-display area and transition viewing area, and the center of circle of the first, second circular arc boost line is located at the complete viewing area,
The multiple transition pixel units wherein intersected with first circular arc auxiliary or the second circular arc boost line form transition and shown
Area, or with first circular arc auxiliary or multiple transition pixel units for intersecting of the second circular arc boost line and positioned at institute
State multiple transition pixels that are between first, second circular arc viewing area and not intersecting with the described first or second circular arc boost line
Unit is collectively forming transition viewing area;
The pixel aperture ratio for setting the transition pixel unit in the transition viewing area is more than 0 less than picture in the viewing area completely
The aperture opening ratio of plain unit.
2. it is according to claim 1 control display method, it is characterised in that the first circular arc boost line will it is each and
The intersecting transition pixel unit of the first circular arc boost line is divided into close to the Part I of viewing area completely and close
The Part II of the non-display area, if the first ratio that the area of the Part I accounts for the transition pixel unit is more than or equal to
First preset value then defines this as transition element unit is effective transition pixel unit, otherwise defines the transition pixel unit to be invalid
Transition pixel unit, and with the aperture opening ratio of effective transition pixel unit shown in the first ratio-dependent.
3. the method for control display according to claim 2, it is characterised in that first preset value is 20%-40%
In any one value.
4. it is according to claim 1 control display method, it is characterised in that the second circular arc boost line will it is each and
The intersecting transition pixel unit of the second circular arc boost line is divided into close to the Part III of viewing area completely and close
The Part IV of the non-display area, and with area in the Part III and Part IV larger one and the transition pixel
The accounting of unit itself gross area determines the aperture opening ratio of the transition pixel unit.
5. the method for control display according to claim 1, it is characterised in that if including not between described first, second
There is the transition pixel unit intersected with the described first or second circular arc boost line, then the aperture opening ratio for setting the transition pixel unit is situated between
In the aperture opening ratio and same row and the described second circle of the transition pixel unit that same row intersects with the first circular arc boost line
Between the aperture opening ratio of the intersecting transition pixel unit of arc boost line.
6. it is according to claim 1 control display method, it is characterised in that the first, second circular arc boost line it
Between spacing be any one numerical value in 1-3 times of pixel cell height.
7. the method for control display according to claim 1, it is characterised in that the first circular arc boost line and shown the
Two circular arc boost lines be arranged in parallel.
8. the method for control display according to claim 1, it is characterised in that
The radius of the first circular arc boost line and/or shown second circular arc boost line is calculated according to below equation:
L=R1/h;
R2=L × h;
Wherein R1 is the radius of target of the first circular arc boost line or the second circular arc boost line, and R2 is that first circular arc is auxiliary
The real radius of index contour or the second circular arc boost line, h are the height of pixel cell.
A kind of 9. display screen, it is characterised in that including:
Positioned at the complete viewing area of the display screen middle position, positioned at the display screen marginal position non-display area and
Positioned at the viewing area completely and the transition viewing area of the non-display area;
The transition viewing area includes multiple transition pixel units, and plurality of adjacent transition pixel unit forms arc-shaped,
And method of the aperture opening ratio of the transition element in the transition viewing area as described in claim any one of 1-8 determines.
10. display screen according to claim 9, it is characterised in that be more than the 0 transition picture for being less than 1 for aperture opening ratio
Plain unit, the arbitrary portion area in the transition pixel unit, the area being blocked and the transition are blocked with black matrix
The ratio of pixel cell itself gross area is equal to the aperture opening ratio of the transition pixel unit.
11. display screen according to claim 9, it is characterised in that the display screen is rectangle, and the corner of the rectangle
For corner cut or circular arc chamfering.
12. display screen according to claim 9, it is characterised in that the display screen is circular, similar round or ellipse.
13. a kind of terminal, it is characterised in that the terminal includes the display screen as described in claim any one of 9-12.
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