CN109949765A - A kind of picture element matrix driving method and display device - Google Patents
A kind of picture element matrix driving method and display device Download PDFInfo
- Publication number
- CN109949765A CN109949765A CN201711393113.2A CN201711393113A CN109949765A CN 109949765 A CN109949765 A CN 109949765A CN 201711393113 A CN201711393113 A CN 201711393113A CN 109949765 A CN109949765 A CN 109949765A
- Authority
- CN
- China
- Prior art keywords
- data
- pixel
- driving voltage
- voltage
- sub
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
- 239000011159 matrix material Substances 0.000 title claims abstract description 78
- 238000000034 method Methods 0.000 title claims abstract description 27
- 238000003491 array Methods 0.000 claims abstract description 9
- 241000023320 Luma <angiosperm> Species 0.000 claims description 63
- OSWPMRLSEDHDFF-UHFFFAOYSA-N methyl salicylate Chemical compound COC(=O)C1=CC=CC=C1O OSWPMRLSEDHDFF-UHFFFAOYSA-N 0.000 claims description 63
- 230000009466 transformation Effects 0.000 claims description 20
- 238000006243 chemical reaction Methods 0.000 claims description 9
- 230000005611 electricity Effects 0.000 claims description 7
- 230000000694 effects Effects 0.000 abstract description 8
- 210000004027 cell Anatomy 0.000 description 13
- 238000010586 diagram Methods 0.000 description 7
- 239000004973 liquid crystal related substance Substances 0.000 description 6
- 241001637516 Polygonia c-album Species 0.000 description 3
- 230000000007 visual effect Effects 0.000 description 3
- VXQQVDCKACIRQG-UHFFFAOYSA-N NNPP Chemical compound NNPP VXQQVDCKACIRQG-UHFFFAOYSA-N 0.000 description 2
- VMXJCRHCUWKQCB-UHFFFAOYSA-N NPNP Chemical compound NPNP VMXJCRHCUWKQCB-UHFFFAOYSA-N 0.000 description 2
- 238000004458 analytical method Methods 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 239000003086 colorant Substances 0.000 description 1
- 210000002858 crystal cell Anatomy 0.000 description 1
- 239000000463 material Substances 0.000 description 1
- 230000003068 static effect Effects 0.000 description 1
- 238000010408 sweeping Methods 0.000 description 1
Landscapes
- Control Of Indicators Other Than Cathode Ray Tubes (AREA)
Abstract
The invention discloses a kind of picture element matrix driving methods, picture element matrix includes multiple sub-pixels arranged in arrays, data line polarity is column inversion, the voltage being applied on the sub-pixel is primary along the reversion of data line direction every two sub-pixel polarity, and the voltage being applied on the sub-pixel is primary along the reversion of each sub-pixel polarity of scanning line direction;Wherein, which comprises image data is received, according to described image data acquisition raw pixel data;The first driving voltage and the second driving voltage are generated according to the raw pixel data;In a frame, first driving voltage or second driving voltage are loaded to the picture element matrix along data line direction.The invention avoids the bright concealed wires of crosstalk, improve display effect.
Description
Technical field
The invention belongs to picture element matrix display fields, and in particular to a kind of picture element matrix driving method and display device.
Background technique
VA type liquid crystal display panel is using relatively broad in current display product, and VA type panel is broadly divided into two at present
Kind, one kind is MVA (Multi-domain Vertical Alignment, multizone vertical arrangement) type, another is PVA
(Patterned Vertical Alignment, pattern vertical arrangement) type.MVA technical principle is that increase protrusion is more to be formed
A visible area.Liquid crystal molecule is not to be arranged vertically when static state completely, and liquid crystal molecule is at level after application of a voltage
Arrangement, such light can pass through each layer.PVA is then a kind of vertical adjustment technology of image, which is directly changed liquid crystal cells
Structure allows display efficiency that brightness output and the contrast that can be obtained better than MVA is substantially improved.
However, in existing 4-domain VA technology, with the adjustment of viewing visual angle, VA type liquid crystal display panel its
Structure is easy to produce the phenomenon that colour cast (color washout) under big visual angle, so that the image shown is easy distortion, it is special
It is not that the performance of personage's colour of skin can be biased to more light blue or brilliant white, referring to Fig. 1, with the increase (0 °, 45 °, 60 °) at visual angle
Color offset phenomenon is more serious, will receive the polar influence of sub-pixel under the arrangement mode of 4-domain, generates crosstalk, bright concealed wire
Problem, display effect are poor.
Summary of the invention
In order to solve the above-mentioned problems in the prior art, the present invention provides a kind of solution color offset phenomenons, are promoted aobvious
Show the picture element matrix driving method and display device of effect.The technical problem to be solved in the present invention is real by the following technical programs
It is existing:
A kind of picture element matrix driving method, the picture element matrix include multiple sub-pixels arranged in arrays, data line pole
Property be column inversion, it is primary along the reversion of data line direction every two sub-pixel polarity to be applied to voltage on the sub-pixel, and apply
The voltage being added on the sub-pixel is primary along the reversion of each sub-pixel polarity of scanning line direction;Wherein, which comprises
Image data is received, according to described image data acquisition raw pixel data;
The first driving voltage and the second driving voltage are generated according to the raw pixel data;
In a frame, first driving voltage or second driving voltage are loaded to the pixel along data line direction
Matrix.
Further, the first driving voltage is generated according to the raw pixel data and the second driving voltage includes:
The first luma data and the second luma data are obtained according to the raw pixel data;
According to first luma data and second luma data, generates and correspond to the of first luma data
One driving voltage, and the second driving voltage corresponding to second luma data.
Further, the first luma data and the second luma data are obtained according to the raw pixel data, comprising:
The original pixel value of each location of pixels is obtained according to the raw pixel data, it will be every according to intended conversion mode
The original pixel value of a location of pixels is converted to the first luma data or the second luma data.
Further, the first driving voltage is generated according to the raw pixel data and the second driving voltage includes:
The initial data driving signal of each location of pixels is obtained according to the raw pixel data;
The first driving voltage and the second driving voltage are obtained according to the initial data driving signal.
Further, the first driving voltage and the second driving voltage are obtained according to the initial data driving signal, comprising:
The original gray-scale value and transformation rule of respective pixel position are obtained according to initial data driving signal;
The original gray-scale value of the respective pixel position is converted into the first driving voltage or according to the transformation rule
Two driving voltages.
Further, described to load first driving voltage or second drive along data line direction according to pre-defined rule
Voltage, which is moved, to the picture element matrix includes:
Along data line direction, first driving voltage or second driving voltage are alternately loaded every a scan line
To the picture element matrix;
Along scanning line direction, first driving voltage or second driving voltage are alternately loaded every two data lines
To the picture element matrix.
The present invention discloses a kind of display devices, including sequence controller, data drive unit, turntable driving list
Member, display panel are provided with picture element matrix on the display panel, and the picture element matrix includes multiple sub- pictures arranged in arrays
Element, data line polarity exchange a polarity along each column of scanning line direction, are applied to the voltage on the sub-pixel along data line
Every two sub-pixel polarity reversion in direction is primary, and the voltage being applied on the sub-pixel is along each height picture of scanning line direction
Plain polarity reversion is primary;The sequence controller connects the data drive unit, the scan drive cell, and the data are driven
Moving cell, the scan drive cell are all connected with the picture element matrix;
The sequence controller is used to form the first luma data and the second luma data according to the raw pixel data,
First luma data and second luma data are exported to the data drive unit;
The data drive unit is used to generate the first driving voltage according to first luma data, and according to described
Second luma data generates the second driving voltage;And in a frame, first driving voltage or institute are loaded along data line direction
The second driving voltage is stated to the picture element matrix.
Further, the sequence controller is specifically used for obtaining each location of pixels according to the raw pixel data
The original pixel value of each location of pixels is converted to the first luma data or second according to intended conversion mode by original pixel value
Luma data.
The present invention discloses another display devices, including sequence controller, data drive unit, turntable driving list
Member, display panel are provided with picture element matrix on the display panel, and the picture element matrix includes multiple sub- pictures arranged in arrays
Element, data line polarity exchange a polarity along each column of scanning line direction, are applied to the voltage on the sub-pixel along data line
Every two sub-pixel polarity reversion in direction is primary, and the voltage being applied on the sub-pixel is along each height picture of scanning line direction
Plain polarity reversion is primary;The sequence controller connects the data drive unit, the scan drive cell, and the data are driven
Moving cell, the scan drive cell are all connected with the picture element matrix;
The initial data that the sequence controller is used to obtain each location of pixels according to the raw pixel data drives
Signal;
The data drive unit is used to generate the first driving voltage and second according to the initial data driving signal and drive
Dynamic voltage;And in a frame, the data drive unit be also used to load along data line direction first driving voltage or
Second driving voltage is to the picture element matrix.
Further, the data drive unit is also used to obtain respective pixel position according to initial data driving signal
The original gray-scale value of the respective pixel position is converted to first according to the transformation rule by original gray-scale value and transformation rule
Driving voltage or the second driving voltage.
Compared with prior art, beneficial effects of the present invention:
Picture element matrix driving method of the invention is arranged in pairs or groups by reasonable high gray voltage with low gray scale voltage, and picture is made
The problems such as pixel in prime matrix is not influenced by polar, avoids crosstalk, bright concealed wire, improves display effect.
Detailed description of the invention
Fig. 1 is viewing angle in the prior art with grey scale change schematic diagram;
Fig. 2 is a kind of picture element matrix driving method flow chart provided in an embodiment of the present invention;
Fig. 3 is that a kind of picture element matrix polarity provided in an embodiment of the present invention loads schematic diagram;
Fig. 4 is that a kind of picture element matrix grayscale provided in an embodiment of the present invention loads schematic diagram;
Fig. 5 is a kind of subpixel area schematic diagram provided in an embodiment of the present invention;
Fig. 6 is the driving method schematic diagram in a specific embodiment of the invention;
Fig. 7 is the driving method schematic diagram in another embodiment of the present invention;
Fig. 8 is a kind of display device schematic diagram of the embodiment of the present invention.
Specific embodiment
Further detailed description is done to the present invention combined with specific embodiments below, but embodiments of the present invention are not limited to
This.
Embodiment one
Fig. 2 is please referred to, Fig. 2 is a kind of picture element matrix driving method flow chart provided in an embodiment of the present invention, the pixel
Matrix includes multiple sub-pixels arranged in arrays, and data line polarity exchanges a polarity along each column of scanning line direction, is applied
It is primary along the reversion of data line direction every two sub-pixel polarity in the voltage on the sub-pixel, and be applied on the sub-pixel
Voltage it is primary along the reversion of each sub-pixel polarity of scanning line direction;Wherein, which comprises
Image data is received, according to described image data acquisition raw pixel data;
The first luma data and the second luma data are obtained according to the raw pixel data;
According to first luma data and second luma data, generates and correspond to the of first luma data
One driving voltage, and the second driving voltage corresponding to second luma data;
In a frame, first driving voltage or second driving voltage are loaded to the pixel along data line direction
Matrix.
Image data refers to that the digital signal being input in sequence controller TCON, image data input frame by frame, to this
Image data analyzing obtains raw pixel data, in a kind of existing technology, in the raw pixel data, that is, picture element matrix
Each sub-pixel is input to the pixel value of each sub-pixel by being input to TCON in the specific pixel value of the corresponding display of each frame
In image data directly determine, raw pixel data is not handled, such mode is led by the polar influence of sub- picture element
Sub- picture element polarity is caused to be easy to produce crosstalk, the negative effects such as bright concealed wire.
And in the present embodiment, by the way that raw pixel data is handled, obtain further first luma data and
Second luma data, and it is different from the pixel gray level of the second luma data to make the first luma data, so between different pixels or
It is loaded on corresponding sub-pixel between person's different frame according to certain arrangement pitch, this embodiment scheme can generate two groups not
With grayscale, respectively correspond different sub-pixels, can be avoided in this way the voltage that is loaded on sub-pixel by
The influence of polarity reversion, so as to avoid crosstalk, the generation of bright concealed wire.
In specific example, the first luma data is considered that high gray data, the second luma data are considered low ash order
According to corresponding, the voltage swing being input on sub-pixel is determined by grayscale, generates the corresponding high gray electricity of high gray data
Pressure, i.e. the first driving voltage;Corresponding low gray scale voltage, i.e. the second driving voltage with low luma data, it is worth mentioning at this point that, on
Stating high gray and low ash rank indicates the relative value of two groups of grayscale sizes, does not limit the size of its numerical value individually.
Fig. 3 is please referred to, data line polarity exchanges a polarity along each column of scanning line direction, and data line polarity is column inversion
Mode exchanges a polarity along each column of scanning line direction, and in the way of along data line inverted arrangement, sub-pixel polarity is along number
It is that 2 sub-pixels exchange a polarity according to line direction, sub-pixel polarity is that 1 sub-pixel exchanges primary pole along scanning line direction
Property.From the point of view of a certain column, continuous two sub-pixels polarity is identical, next continuous two sub-pixels polarity and upper two polarity
On the contrary, from the point of view of certain a line, the reversion of sub-pixel alternating polarity, and so on, on the whole, the electricity being applied on the sub-pixel
Pressure is primary along the reversion of data line direction every two sub-pixel polarity, and the voltage being applied on the sub-pixel is every along scanning line direction
One sub- pixel polarity inversion is primary, indicates that positive voltage, N indicate negative voltage with P in Fig. 3, and from the point of view of a certain column, reversal can
The NNPP or PPNN ... PPNN that is expressed as NNPP ..., from the point of view of certain a line, reversal is represented by PNPN ... PNPN or
NPNP…NPNP。
In a specific embodiment, the first luma data and the second gray number are obtained according to the raw pixel data
According to, comprising: the original pixel value of each location of pixels is obtained according to the raw pixel data, it will be every according to intended conversion mode
The original pixel value of a location of pixels is converted to the first luma data or the second luma data.
Rule according to the invention is corresponding to each location of pixels grayscale to be shown determine after, sequence controller is by the picture
The original gray-scale correspondence of plain position is adjusted to high gray or low ash rank, and the data-driven list that grayscale value adjusted is sent
Member, number driving unit export corresponding voltage according to the grayscale value.
For example, the original pixel value of location A is 128 grayscale, if above-mentioned rule according to the present invention, location A should export
High gray, i.e. H, by calculating, in this example, 128 H=138 grayscale value then exports 138 grayscale to location A, and data are driven
Moving cell receives 138 grayscale, and according to set transformation rule, the corresponding voltage 10V of 138 grayscale finally exports location A
The voltage signal of 10V.In general, height grayscale adjusting range corresponds to determination by the difference of the materials such as liquid crystal.
It for another example says, the original pixel value of B location is 128 grayscale, if above-mentioned rule according to the present invention, B location should
Low ash rank is exported, i.e. L, by calculating, in this example, 128 L=118 grayscale value then exports 118 grayscale, number to B location
118 grayscale are received according to driving unit, according to set transformation rule, 118 grayscale corresponding voltage 8V is finally defeated to B location
The voltage signal of 8V out.
It is in a specific embodiment, described that according to pre-defined rule, along data line direction, load corresponds to the first gray number
According to the first driving voltage or the second driving voltage corresponding to the second luma data include: to the picture element matrix
Along data line direction, first driving voltage or second driving voltage are alternately loaded every a scan line
To the picture element matrix;
Along scanning line direction, first driving voltage or second driving voltage are alternately loaded every two data lines
To the picture element matrix.
Picture element matrix is physically divided into multiple arranged in a matrix by a plurality of data line and scan line staggeredly communicated
Fritter, each fritter are a sub-pixel, are divided between adjacent sub-pixel by corresponding data line or scan line
It cuts.From the point of view of a certain column, different driving voltages is loaded between adjacent sub-pixel;Alternatively, from the point of view of with regard to certain a line, every two
Different driving voltages is loaded between pixel;It is alternately applied on sub-pixel according to above-mentioned relation.
Fig. 4 is please referred to, can refer to following example, from the point of view of certain a line, is loaded into continuous two sub-pixels gray scale voltage phase
Together, the continuous two sub-pixels gray scale voltage and upper two differences next loaded is loaded into sub-pixel from the point of view of certain a line
Gray scale voltage checker, and so on, it indicates that high gray voltage, L indicate low gray scale voltage with H in Fig. 4, comes from a certain column
It sees, reversal is represented by HLHL ... HLHL or LHLH ... LHLH, from the point of view of certain a line, reversal is represented by
HHLL ... HHLL or LLHH ... LLHH.
Picture element matrix driving method of the invention is arranged in pairs or groups by reasonable high gray voltage with low gray scale voltage, and picture is made
The problems such as pixel in prime matrix is not influenced by polar, avoids crosstalk, bright concealed wire, improves display effect.
Embodiment two
The embodiment of the present invention provides another picture element matrix driving method simultaneously, and the picture element matrix includes multiple in matrix
The sub-pixel of arrangement, data line polarity exchange a polarity, the electricity being applied on the sub-pixel along each column of scanning line direction
Pressure is primary along the reversion of data line direction every two sub-pixel polarity, and the voltage being applied on the sub-pixel is along scanning line direction
The reversion of each sub-pixel polarity is primary;Wherein, which comprises
Image data is received, according to described image data acquisition raw pixel data;
The initial data driving signal of each location of pixels is obtained according to the raw pixel data;
The first driving voltage and the second driving voltage are obtained according to the initial data driving signal;
In a frame, first driving voltage or second driving voltage are loaded to the pixel along data line direction
Matrix.
In a specific embodiment, the first driving voltage and second is obtained according to the initial data driving signal to drive
Dynamic voltage, comprising: the original gray-scale value and transformation rule of respective pixel position are obtained according to initial data driving signal, according to institute
It states transformation rule and the original gray-scale value of the respective pixel position is converted into the first driving voltage or the second driving voltage.
Sequence controller correspondence analysis original image of the invention analyzes the original gray-scale value of each location of pixels, and really
Original gray-scale value is adjusted to high gray H or low ash rank L by the fixed corresponding transformation rule in the position, the transformation rule, the present invention
Method grayscale conversion is carried out not directly in sequence controller, by the transformation rule of original gray-scale value and corresponding H or L send out
It is sent to data drive unit, according to original gray-scale value and corresponding H or L according to rule, directly output corresponds to data drive unit
Driving voltage.
For example, the original pixel value of location A is 128 grayscale under an embodiment, then to 128 ash of location A output
Rank should be H according to transformation rule location A, after driving circuit receives 128 grayscale, look in the grayscale corresponding voltage conversion table of H
To corresponding voltage 10V, finally to the drive voltage signal of location A output 10V.
The original pixel value for for another example saying B location is 128 grayscale, then exports 128 grayscale according to transformation rule B to B location
Position should be after L driving circuit receives 128 grayscale, in the grayscale of L to corresponding voltage 8V is found in reply pressure conversion table, most
Afterwards to the data signals of location A output 8V.
In a specific embodiment, along data line direction, first driving voltage is loaded every a scan line
Or second driving voltage is to the picture element matrix;
Along scanning line direction, first driving voltage or second driving voltage are loaded to institute every two data lines
State picture element matrix.
In the method, the corresponding one group of grayscale value of the raw pixel data of the present embodiment generates in data drive circuit
The corresponding initial data driving signal of the grayscale value, and the initial data driving signal is adjusted to two different driving electricity
Pressure, i.e. the first driving voltage or second driving voltage correspondence are exported, and in one in implementation, the present embodiment passes through utilization
Two groups of different gammas (gamma) drive the driving signal of sub-pixel to generate, and make one group of initial data driving signal in difference
Two groups of driving voltages are generated under the action of gamma, then realize drive control of the invention.In a kind of tool of this embodiment scheme
Under body is realized, Tcon exports one group of grayscale, generates two groups of gammas using data drive circuit, every group respectively corresponds the different sons of driving
Picture element, to reach technical effect same as embodiment one.
Embodiment three
In a specific embodiment, correspond to one of above scheme, for clearer displaying the solution of the present invention,
The picture element matrix includes several subpixel areas, and each subpixel area includes:
First sub-pixel;
Second sub-pixel, along adjacent first sub-pixel of scanning line direction;
Third sub-pixel, along adjacent second sub-pixel of scanning line direction;
4th sub-pixel, along the adjacent third sub-pixel of scanning line direction;
5th sub-pixel, along adjacent first sub-pixel in data line direction;
6th sub-pixel, along adjacent second sub-pixel in data line direction;
7th sub-pixel, along the adjacent third sub-pixel in data line direction;
8th sub-pixel, along adjacent 4th sub-pixel in data line direction;
First data line is electrically connected the 5th sub-pixel;
Second data line is electrically connected first sub-pixel, the 6th sub-pixel;
Third data line is electrically connected second sub-pixel, the 7th sub-pixel;
4th data line is electrically connected the third sub-pixel, the 8th sub-pixel;
5th data line is electrically connected the 4th sub-pixel.
Fig. 5 is please referred to, region represented by A is marked to be expressed as subpixel area, each subpixel area includes eight sons
Pixel is divided into two rows up and down, four sub-pixels of every row, wherein the first pixel A 1, the second pixel A 2, third pixel A 3, the 4th picture
Plain A4 in a line, the 5th pixel A 5, the 6th pixel A 6, the 7th pixel A 7, the 8th pixel A 8 face uplink next line.It is described
Picture element matrix is sequentially filled by several subpixel areas.First data line is connected to the 5th pixel A 5, and the second data line is connected to
First pixel A 1, the 6th pixel A 6, third data line are connected to the second pixel A 2, the 7th pixel A 7, and the 4th data line is connected to
Third pixel A 3, the 8th pixel A 8, the 5th data line are connected to the 4th pixel A 4.
In a specific embodiment, first pixel A 1, the third pixel A 3, the 6th pixel are loaded into
Polarity of voltage on A6, the 8th pixel A 8 is identical, and be loaded into second pixel A 2, the 4th pixel A 4, institute
It is opposite to state the 5th pixel A 5, the polarity of voltage in the 7th pixel A 7.
Be loaded into first pixel A 1, second pixel A 2, the 7th pixel A 7, in the 8th pixel A 8
Voltage grayscale and be loaded into the third pixel A 3, the 4th pixel A 4, the 5th pixel A 5, in the 6th pixel A 6
Voltage grayscale it is different.
According to the above-mentioned matching relationship to the polarity of voltage being loaded on sub-pixel and voltage grayscale, one is shown specifically
Embodiment, in a frame, the first pixel A of Xiang Suoshu 1 load negative polarity high gray voltage, be represented by HN;To described
Two pixel As 2 load positive polarity high gray voltage, are represented by HP;The low gray scale voltage of negative polarity is loaded to the third pixel A 3,
It is represented by LN;To the low gray scale voltage of the 4th pixel A 4 load positive polarity, it is represented by LP;Add to the 5th pixel A 5
The low gray scale voltage of positive polarity is carried, LP is represented by;To the low gray scale voltage of the 6th pixel A 6 load negative polarity, it is represented by
LN;Positive polarity high gray voltage is loaded to the 7th pixel A 7, is represented by HP;Negative polarity is loaded to the 8th pixel A 8
High gray voltage, is represented by HN.
For the clearer above-mentioned voltage-drop loading relationship of description, referring to Fig. 6, from the point of view of a certain column, for every in arbitrarily arranging
The voltage relationship of a sub-pixel load is represented sequentially as: HN, LP, HP, LN, HN, LP, HP, LN ... are circuited sequentially or HP, LN,
HN, LP, HP, LN, HN, LP ... are circuited sequentially;From the point of view of certain a line, for the voltage relationship of sub-pixel each in any row load
Be represented sequentially as: HN, HP, LN, LP, HN, HP, LN, LP ... circuit sequentially or LP, LN, HP, HN, LP, LN, HP, HN ... successively
Circulation.
Alternatively, loading positive polarity high gray voltage to first pixel A 1, it is represented by HP;To second pixel A 2
Negative polarity high gray voltage is loaded, HN is represented by;To the low gray scale voltage of the third pixel A 3 load positive polarity, it is represented by
LP;To the low gray scale voltage of the 4th pixel A 4 load negative polarity, it is represented by LN;Negative polarity is loaded to the 5th pixel A 5
Low gray scale voltage, is represented by LN;To the low gray scale voltage of the 6th pixel A 6 load positive polarity, it is represented by LP;To described
7th pixel A 7 loads negative polarity high gray voltage, is represented by HN;To the 8th pixel A 8 load positive polarity high gray electricity
Pressure, is represented by HP.
For the clearer above-mentioned voltage-drop loading relationship of description, from the point of view of a certain column, for each sub-pixel in arbitrarily arranging
The voltage relationship of load is represented sequentially as: HP, LN, HP, LN, HN, LP, HP, LN ... are circuited sequentially or HN, LP, HP, LN, HN,
LP, HP, LN ... are circuited sequentially;From the point of view of certain a line, the voltage relationship of sub-pixel each in any row load is successively indicated
Are as follows: HP, HN, LP, LN, HP, HN, LP, LN ... are circuited sequentially or LN, LP, HN, HP, LN, LP, HN, HP ... are circuited sequentially.
In another embodiment, in a specific embodiment, first pixel A 1, the third are loaded into
Pixel A 3, the 5th pixel A 5, the polarity of voltage in the 7th pixel A 7 are identical, and be loaded into second pixel
A2, the 4th pixel A 4, the 6th pixel A 6, the polarity of voltage in the 8th pixel A 8 are on the contrary, and be loaded into described
First pixel A 1, second pixel A 2, the 7th pixel A 7, the voltage grayscale in the 8th pixel A 8 and it is loaded into institute
It is different to state third pixel A 3, the 4th pixel A 4, the 5th pixel A 5, the voltage grayscale in the 6th pixel A 6.This
Kind driving method can retrieve the gray scale voltage relationship being loaded into pixel according to examples detailed above, repeat no more again.
Example IV
Please together referring to Fig. 6 and Fig. 7, in optional one 4 × 4 regions, in first row, the 5th pixel A the 5, the 9th
Pixel A 9 is connected to the first data line, in secondary series, the first pixel A 1, the 6th pixel A 6, the tenth pixel A 10, the 13rd pixel
A13 is connected to the second data line, arranges in third, the second pixel A 2, the 7th pixel A 7, the 11st pixel A 11, the 14th pixel
A14 is connected to third data line, in the 4th column, third pixel A 3, the 8th pixel A 8, the 12nd pixel A 12, the 15th pixel
A15 is connected to the 4th data line, and in the 5th column, the 4th pixel A 4, the 16th pixel A 16 are connected to the 5th data line.
The first moment in a frame loads scanning signal on the first horizontal scanning line, and loads on the second data line
The corresponding voltage of HN loads the corresponding voltage of HP to the second pixel A 2, the 4th data line on third data line to the first pixel A 1
The upper corresponding voltage of LN that loads loads the corresponding voltage of LP to the 4th pixel A 4, successively on the 5th data line to third pixel A 3
Analogize;
At subsequent time (i.e. the second moment), scanning signal is loaded to the second horizontal scanning line, and is added on the first data line
The corresponding voltage of LP is carried to the 5th pixel A 5, loads the corresponding voltage of LN to the 6th pixel A 6, third data on the second data line
The corresponding voltage of HP is loaded on line to the 7th pixel A 7, loads the corresponding voltage of HN to the 8th pixel A 8 on the 4th data line;
At subsequent time (i.e. third moment), scanning signal is loaded to third horizontal scanning line, and is added on the first data line
The corresponding voltage of HP is carried to the 9th pixel A 9, loads the corresponding voltage of HN to the tenth pixel A 10, third data on the second data line
The corresponding voltage of LP is loaded on line to the 11st pixel A 11, loads the corresponding voltage of LN to the 12nd pixel on the 4th data line
A12;
At subsequent time (i.e. the 4th moment), scanning signal is loaded to fourth line scan line, and is added on the second data line
The corresponding voltage of LN is carried to the 13rd pixel A 13, the corresponding voltage of LP is loaded on third data line to the 14th pixel A 14, the
The corresponding voltage of HN is loaded on four data lines to the 15th pixel A 15, loads the corresponding voltage of HP to the tenth on the 5th data line
Six pixel As 16.The program list 4 × 4 in the case of voltage-drop loading situation, other sub-pixels and other moment are according to above-mentioned rule
Then successively carry out the load of corresponding voltage.
Using above embodiment of the invention, pass through positive and negative polar voltages of load alternately and high and low gray scale voltage
To picture element matrix, side visibility can be improved, influence the pixel in picture element matrix by polar, improve crosstalk, bright
The problems such as concealed wire, improves display effect.
Embodiment five
Fig. 8 is please referred to, present invention simultaneously provides a kind of display device, for executing method as described in the present invention, including
Sequence controller 81, data drive unit 82, scan drive cell 83, display panel 84 are provided on the display panel 84
Picture element matrix 85, the picture element matrix 85 include multiple sub-pixels arranged in arrays, and data line polarity is every along scanning line direction
An one column polarity of exchange is applied to the voltage on the sub-pixel along data line direction every two sub-pixel polarity reversion one
It is secondary, and the voltage being applied on the sub-pixel is primary along the reversion of each sub-pixel polarity of scanning line direction;The timing control
Device 81 processed connects the data drive unit 82, the scan drive cell 83, and the data drive unit 82, the scanning are driven
Moving cell 83 is all connected with the picture element matrix 85;
The sequence controller 81 is used to form the first luma data and the second gray number according to the raw pixel data
According to exporting first luma data and second luma data to the data drive unit 82;
The data drive unit 82 is used to generate the first driving voltage according to first luma data, and according to institute
It states the second luma data and generates the second driving voltage;
The scan drive cell 83 is for loading scanning signal to the picture element matrix 85;
And in a frame, the data drive unit 82, which is also used to load along data line direction, corresponds to first ash
First driving voltage of order evidence or the second driving voltage corresponding to second luma data are to the picture element matrix 85.
In a specific embodiment, the sequence controller 81 is specifically used for being obtained according to the raw pixel data
The original pixel value of each location of pixels is converted to first according to intended conversion mode by the original pixel value of each location of pixels
Luma data or the second luma data.
Include multiple data lines, multi-strip scanning line on display panel 84, and is connected to the multiple of data line and surface sweeping line
Sub-pixel, sub-pixel rearrange picture element matrix 85, timing control along data line direction and along scanning line direction on a display panel
Device 81 processed from the rGB data signal of external input image,
Sequence controller 81 from outside can input red image data R, green image data G blue image data B or
The image data of other colors, and corresponding raw pixel data, and above-mentioned rule according to the present invention are generated according to image data
Make the corresponding two groups of grayscale of raw pixel data, high gray data and low luma data.Data drive circuit utilizes fixed gamma
Corresponding high gray voltage and low gray scale voltage are exported after converting respectively to high gray data and low luma data.Data-driven list
The specific output operation of control according to the above method of the present invention of member 82, according to timing corresponding selection output high gray, low ash rank,
The output of positive voltage, negative voltage.
In another executive mode, display device includes sequence controller 81, data drive unit 82, turntable driving list
First 83, display panel 84 are provided with picture element matrix 85 on the display panel 84, and it is in matrix that the picture element matrix 85, which includes multiple,
The sub-pixel of arrangement, data line polarity exchange a polarity, the electricity being applied on the sub-pixel along each column of scanning line direction
Pressure is primary along the reversion of data line direction every two sub-pixel polarity, and the voltage being applied on the sub-pixel is along scanning line direction
The reversion of each sub-pixel polarity is primary;The sequence controller 81 connects the data drive unit 82, the turntable driving
Unit 83, the data drive unit 82, the scan drive cell 83 are all connected with the picture element matrix 85;
The initial data that the sequence controller 81 is used to obtain each location of pixels according to the raw pixel data is driven
Dynamic signal;
The data drive unit 82 is used to generate the first driving voltage and second according to the initial data driving signal
Driving voltage;
The scan drive cell 83 is for loading scanning signal to the picture element matrix 85;
And in a frame, the data drive unit 82 is also used to load first driving voltage along data line direction
Or second driving voltage is to the picture element matrix 85.
In a specific embodiment, the data drive unit 82 is also used to be obtained according to initial data driving signal
The original gray-scale value and transformation rule of respective pixel position, according to the transformation rule by the original ash of the respective pixel position
Rank value is converted to the first driving voltage or the second driving voltage.
Sequence controller 81 generates corresponding raw pixel data from external input image data, and according to image data,
And export initial data driving signal to data drive circuit, since data drive circuit has received only original gray-scale value and right
H the or L transformation rule answered, data drive circuit by the corresponding high gray voltage for generating high gamma of two groups of different gammas with it is low
The low gray scale voltage of gamma.Data drive unit 82 controls specific output operation according to the above method of the present invention, according to not
The signal output of same timing corresponding selection output high gray or low ash rank, positive voltage or negative voltage.
The above content is a further detailed description of the present invention in conjunction with specific preferred embodiments, and it cannot be said that
Specific implementation of the invention is only limited to these instructions.For those of ordinary skill in the art to which the present invention belongs, exist
Under the premise of not departing from present inventive concept, a number of simple deductions or replacements can also be made, all shall be regarded as belonging to of the invention
Protection scope.
Claims (10)
1. a kind of picture element matrix driving method, the picture element matrix includes multiple sub-pixels arranged in arrays, which is characterized in that
Data line polarity is column inversion, is applied to the voltage on the sub-pixel along data line direction every two sub-pixel polarity reversion one
It is secondary, and the voltage being applied on the sub-pixel is primary along the reversion of each sub-pixel polarity of scanning line direction;Wherein, the side
Method includes:
Image data is received, according to described image data acquisition raw pixel data;
The first driving voltage and the second driving voltage are generated according to the raw pixel data;
In a frame, first driving voltage or second driving voltage are loaded to the pixel square along data line direction
Battle array.
2. picture element matrix driving method according to claim 1, which is characterized in that generated according to the raw pixel data
First driving voltage and the second driving voltage include:
The first luma data and the second luma data are obtained according to the raw pixel data;
According to first luma data and second luma data, the first drive for corresponding to first luma data is generated
Dynamic voltage, and the second driving voltage corresponding to second luma data.
3. picture element matrix driving method according to claim 2, which is characterized in that obtained according to the raw pixel data
First luma data and the second luma data, comprising:
The original pixel value of each location of pixels is obtained according to the raw pixel data, according to intended conversion mode by each picture
The original pixel value of plain position is converted to the first luma data or the second luma data.
4. picture element matrix driving method according to claim 1, which is characterized in that generated according to the raw pixel data
First driving voltage and the second driving voltage include:
The initial data driving signal of each location of pixels is obtained according to the raw pixel data;
The first driving voltage and the second driving voltage are obtained according to the initial data driving signal.
5. picture element matrix driving method according to claim 4, which is characterized in that according to the initial data driving signal
Obtain the first driving voltage and the second driving voltage, comprising:
The original gray-scale value and transformation rule of respective pixel position are obtained according to initial data driving signal;
The original gray-scale value of the respective pixel position is converted into the first driving voltage or the second drive according to the transformation rule
Dynamic voltage.
6. picture element matrix driving method according to claim 1-5, which is characterized in that described according to pre-defined rule
Loading first driving voltage or second driving voltage to the picture element matrix along data line direction includes:
Along data line direction, first driving voltage or second driving voltage alternately are loaded to institute every a scan line
State picture element matrix;
Along scanning line direction, first driving voltage or second driving voltage alternately are loaded to institute every two data lines
State picture element matrix.
7. a kind of display device, including sequence controller, data drive unit, scan drive cell, display panel, feature exist
In being provided with picture element matrix on the display panel, the picture element matrix includes multiple sub-pixels arranged in arrays, data line
Polarity exchanges a polarity along each column of scanning line direction, is applied to the voltage on the sub-pixel along data line direction every two
The reversion of sub-pixel polarity is primary, and the voltage being applied on the sub-pixel is inverted along each sub-pixel polarity of scanning line direction
Once;The sequence controller connects the data drive unit, the scan drive cell, the data drive unit, institute
It states scan drive cell and is all connected with the picture element matrix;
The sequence controller is used to form the first luma data and the second luma data according to the raw pixel data, by institute
It states the first luma data and second luma data is exported to the data drive unit;
The data drive unit is used to generate the first driving voltage according to first luma data, and according to described second
Luma data generates the second driving voltage;And in a frame, first driving voltage or described the are loaded along data line direction
Two driving voltages are to the picture element matrix.
8. display device according to claim 7, which is characterized in that the sequence controller is specifically used for according to the original
Beginning pixel data obtains the original pixel value of each location of pixels, according to intended conversion mode by the original image of each location of pixels
Plain value is converted to the first luma data or the second luma data.
9. a kind of display device, including sequence controller, data drive unit, scan drive cell, display panel, feature exist
In being provided with picture element matrix on the display panel, the picture element matrix includes multiple sub-pixels arranged in arrays, data line
Polarity exchanges a polarity along each column of scanning line direction, is applied to the voltage on the sub-pixel along data line direction every two
The reversion of sub-pixel polarity is primary, and the voltage being applied on the sub-pixel is inverted along each sub-pixel polarity of scanning line direction
Once;The sequence controller connects the data drive unit, the scan drive cell, the data drive unit, institute
It states scan drive cell and is all connected with the picture element matrix;
The sequence controller is used to obtain the initial data driving signal of each location of pixels according to the raw pixel data;
The data drive unit is used to generate the first driving voltage and the second driving electricity according to the initial data driving signal
Pressure;And in a frame, the data drive unit is also used to load first driving voltage or described along data line direction
Second driving voltage is to the picture element matrix.
10. display device according to claim 9, which is characterized in that the data drive unit is also used to according to original
Data drive signal obtains the original gray-scale value and transformation rule of respective pixel position, according to the transformation rule by the correspondence
The original gray-scale value of location of pixels is converted to the first driving voltage or the second driving voltage.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201711393113.2A CN109949765B (en) | 2017-12-21 | 2017-12-21 | Pixel matrix driving method and display device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201711393113.2A CN109949765B (en) | 2017-12-21 | 2017-12-21 | Pixel matrix driving method and display device |
Publications (2)
Publication Number | Publication Date |
---|---|
CN109949765A true CN109949765A (en) | 2019-06-28 |
CN109949765B CN109949765B (en) | 2022-09-16 |
Family
ID=67005053
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201711393113.2A Active CN109949765B (en) | 2017-12-21 | 2017-12-21 | Pixel matrix driving method and display device |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN109949765B (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112086079A (en) * | 2020-09-18 | 2020-12-15 | Tcl华星光电技术有限公司 | Display panel and driving method thereof |
CN114613338A (en) * | 2020-12-08 | 2022-06-10 | 咸阳彩虹光电科技有限公司 | Pixel data improving method, pixel matrix driving device and display |
Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US20100265235A1 (en) * | 2009-04-20 | 2010-10-21 | Apple Inc. | Staggered line inversion and power reduction system and method for lcd panels |
CN101963728A (en) * | 2009-07-24 | 2011-02-02 | 瀚宇彩晶股份有限公司 | Liquid crystal display device with a light guide plate |
CN102460556A (en) * | 2009-06-11 | 2012-05-16 | 夏普株式会社 | Liquid crystal display device having a plurality of pixel electrodes |
CN104166289A (en) * | 2014-08-29 | 2014-11-26 | 南京中电熊猫液晶显示科技有限公司 | TFT-LCD array substrate and manufacturing method thereof |
CN104620309A (en) * | 2012-09-13 | 2015-05-13 | 夏普株式会社 | Liquid crystal display device |
CN107301851A (en) * | 2017-08-03 | 2017-10-27 | 深圳市华星光电技术有限公司 | Liquid crystal display panel and the liquid crystal display device with liquid crystal display panel |
-
2017
- 2017-12-21 CN CN201711393113.2A patent/CN109949765B/en active Active
Patent Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US20100265235A1 (en) * | 2009-04-20 | 2010-10-21 | Apple Inc. | Staggered line inversion and power reduction system and method for lcd panels |
CN102460556A (en) * | 2009-06-11 | 2012-05-16 | 夏普株式会社 | Liquid crystal display device having a plurality of pixel electrodes |
CN101963728A (en) * | 2009-07-24 | 2011-02-02 | 瀚宇彩晶股份有限公司 | Liquid crystal display device with a light guide plate |
CN104620309A (en) * | 2012-09-13 | 2015-05-13 | 夏普株式会社 | Liquid crystal display device |
CN104166289A (en) * | 2014-08-29 | 2014-11-26 | 南京中电熊猫液晶显示科技有限公司 | TFT-LCD array substrate and manufacturing method thereof |
CN107301851A (en) * | 2017-08-03 | 2017-10-27 | 深圳市华星光电技术有限公司 | Liquid crystal display panel and the liquid crystal display device with liquid crystal display panel |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112086079A (en) * | 2020-09-18 | 2020-12-15 | Tcl华星光电技术有限公司 | Display panel and driving method thereof |
CN114613338A (en) * | 2020-12-08 | 2022-06-10 | 咸阳彩虹光电科技有限公司 | Pixel data improving method, pixel matrix driving device and display |
Also Published As
Publication number | Publication date |
---|---|
CN109949765B (en) | 2022-09-16 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
TWI598864B (en) | Display device | |
TWI595467B (en) | Display device | |
CN106023819B (en) | The driving method of dot structure, array substrate, display device and display device | |
CN107886923B (en) | Display panel driving method and display device | |
CN106652951A (en) | Array substrate and liquid crystal display | |
CN106531072B (en) | A kind of display base plate, display panel, display device and pixel rendering method | |
CN106057164A (en) | RGBW four primary color panel driving framework | |
CN107978287B (en) | Display panel driving method and display device | |
US11017709B2 (en) | Driving method for pixel matrix and display device | |
CN103995374A (en) | Display panel and display device | |
CN109949766A (en) | A kind of picture element matrix driving method and display device | |
CN106023918B (en) | Liquid crystal display and its data driver | |
JP6632119B2 (en) | Transflective liquid crystal panel | |
CN105938283A (en) | Hsd liquid crystal display panel and liquid crystal display device | |
US20170092175A1 (en) | Pixel array and driving method thereof and display panel | |
CN103021297B (en) | Display panels and liquid crystal display thereof | |
US12112716B2 (en) | Method for driving pixel matrix and display device | |
CN110223645A (en) | A kind of picture element matrix driving method and display device | |
CN107863082B (en) | Display panel driving method and display device | |
CN109949761A (en) | A kind of picture element matrix driving method and display device | |
CN109949764A (en) | A kind of picture element matrix driving method and display device | |
CN109949760A (en) | A kind of picture element matrix driving method and display device | |
CN109949765A (en) | A kind of picture element matrix driving method and display device | |
CN109949762A (en) | A kind of picture element matrix driving method and display device | |
CN109949763A (en) | A kind of picture element matrix driving method and display device |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
PB01 | Publication | ||
PB01 | Publication | ||
SE01 | Entry into force of request for substantive examination | ||
SE01 | Entry into force of request for substantive examination | ||
GR01 | Patent grant | ||
GR01 | Patent grant |