CN201159814Y - LCD cell matrix and LCD device including the same - Google Patents

LCD cell matrix and LCD device including the same Download PDF

Info

Publication number
CN201159814Y
CN201159814Y CNU200820055822XU CN200820055822U CN201159814Y CN 201159814 Y CN201159814 Y CN 201159814Y CN U200820055822X U CNU200820055822X U CN U200820055822XU CN 200820055822 U CN200820055822 U CN 200820055822U CN 201159814 Y CN201159814 Y CN 201159814Y
Authority
CN
China
Prior art keywords
line
film transistor
sweep trace
data
tft
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.)
Expired - Lifetime
Application number
CNU200820055822XU
Other languages
Chinese (zh)
Inventor
沈奇奇
朱云
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
SVA Group Co Ltd
Original Assignee
SVA Group Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by SVA Group Co Ltd filed Critical SVA Group Co Ltd
Priority to CNU200820055822XU priority Critical patent/CN201159814Y/en
Application granted granted Critical
Publication of CN201159814Y publication Critical patent/CN201159814Y/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Abstract

The utility model discloses a liquid crystal unit array and a LCD display device containing the liquid crystal unit array, which ensure the time of image data input and also save the cost of a second grate driver. The technique proposal is that the liquid crystal unit array includes a scanning line which provides scanning signal, a data line which provides data signal, a public line which provides public voltage, pixel electrodes, a first film transistor which responds to the scanning line of the present row, a second film transistor which responds to the next row scanning line and whose source receives the data signal, and a third film transistor which responds to scanning line of the present row and whose source is connected with the drain of the second film transistor. Wherein, the second film transistor and the third film transistor are used to provide data signal of the data line for the pixel electrodes of present row; the first film transistor is used to provide public voltage of the public line for next row pixel electrodes. The utility model is applied in the liquid crystal display device field.

Description

A kind of liquid crystal cell matrix and comprise the liquid crystal indicator of this matrix
Technical field
The utility model relates to a kind of liquid crystal indicator, relates in particular to a kind of liquid crystal indicator of eliminating the motion blur phenomenon that afterimage produced of previous frame.
Background technology
Liquid crystal has the characteristic of double refractive inde, and under different electric fields, has different arrangement modes.LCD utilizes liquid crystal light valve that transmittance is controlled, thus display image.The conventional liquid crystal structure comprises as shown in Figure 1: LCD panel 10, and it has gate drivers 20, is used to drive the sweep trace GL of LCD panel 10; Data driver 30 is used to drive the data line DL of LCD panel 10; And timing controller 40, be used for control gate driver 20 and data driver 30.
LCD panel 10 comprises a plurality of liquid crystal cell matrix, and each liquid crystal cell matrix contains thin film transistor (TFT) TFT, is used to drive this liquid crystal cells.Apply sweep signal on sweep trace GL, thin film transistor (TFT) TFT opens, and makes the data-signal of data line DL charge among the liquid crystal cells CLc and keeps this data-signal.Gate drivers 20 offers sweep trace GL according to the control signal from timing controller 40 successively with sweep signal.Data driver 30 is converted to digital data signal analog data signal and it is offered data line DL.Timing controller 40 provides control signal to gate drivers 20, data driver 30, and provides numerical data to data driver 30.
The liquid crystal display board component comprises a plurality of pixels (Pixel), and described pixel is connected in many display signal lines and with arranged.Display panels also comprises the array base palte of opposed facing lower panel and the colored filter substrate of top panel in addition, and is clipped in two liquid crystal layers between the substrate.
Gate lines G L1 extends parallel to each other on first direction to GLn, and data line DL1 extends parallel to each other on DLm is substantially perpendicular to second direction on the first direction.
In the equivalent circuit diagram synoptic diagram that display signal line and pixel are shown of Fig. 2, except gate line and data line, shows signal also comprises the storage electrode line VCom that is arranged essentially parallel to gate line.
Each pixel (Pixel) comprises pixel electrode, comprises the switching device that is connected in pixel electrode, many gate lines, and the first grid polar curve of these gate lines is connected in pixel electrode; And many data lines, these data lines intersect with gate line and transmit data voltage, one of these data lines are connected in switching device, and the memory capacitance Csta of storage electrode line VCom and Cstb, also have liquid crystal capacitance Clca and Clcb, memory capacitance and storage electrode line can be omitted as required.
Switching component in the pixel can be constructed with thin film transistor (TFT), each switching device is three port devices, and it has the control port that is connected in gate line, is connected in the input port of data line and is connected in liquid crystal capacitor and the output port of memory capacitance.
In order to realize colored demonstration, each pixel shows the primary colors of appointment uniquely, and by the different color of being combined to form of different primary colors, primary colors generally includes red green and blue.
Thereby gate drivers 20 is connected in gate line and will be applied on the gate line with the signal that is combined to form of grid cut-in voltage and gate off voltage.Grayscale voltage generator (not shown) produces the grayscale voltage collection corresponding to the pixel transmission rate, and grayscale voltage is applied in pixel capacitors.Data driver 30 is connected in the data line of LCD panel, thereby the grayscale voltage that two grayscale voltages of choosing gray-scale generator are concentrated imposes on pixel as data-signal, and data driver 30 is by selecting data voltage in the grayscale voltage of dividing reference gray level voltage and producing.
The display operation principle of traditional LCD is as follows.
Picture signal R, G that the signal controller handle receives from the outside and B and the input control signal that is used to control demonstration, these picture signals have been represented the monochrome information of each pixel, just specific GTG, input control signal generally comprises vertical synchronization and horizontal-drive signal, and data enable signal (DE), signal controller receives these signals and produces grid control signal and data controlling signal later on, and can pass to gate drivers 20 and data driver 30 respectively.
Grid control signal comprises and is used to represent the signal that a frame scan begins and is used for the signal that control gate line is opened the time.Data controlling signal comprises the horizontal start signal of the data transmission that is used to represent delegation's sub-pixel, is used for providing to pixel the load signal of charging voltage, and data clock signal and polarity inversion signal etc.Response is from the data controlling signal of signal controller, data driver 30 receives the view data that is used for one group of word pixel, and choose one of two gray scale voltage collection from the gray scale voltage generator, and therefrom choose the pairing gray scale voltage of view data, resulting voltage is applied on the relevant data line.
LCD is a sampling maintenance display device, and the problem of its existence is that the afterimage of previous frame has produced the motion blur phenomenon.In order to eliminate the motion blur phenomenon, the LCD of prior art has been used the driving method that inserts black data.A kind of method is by improving frame rate black data to be inserted between the frame, but this will shorten the time that view data charges into.Another kind method is that each liquid crystal cells increases a thin film transistor (TFT) TFT, by the switch of this thin film transistor (TFT) of second grid driver control TFT, thereby inserts black data.The advantage of this method is the time that has guaranteed that view data charges into, and shortcoming is the expense that has more the second grid driver, has increased cost.
Summary of the invention
The purpose of this utility model is to address the above problem, and a kind of liquid crystal cell matrix is provided, and has both guaranteed the time that view data charges into, and has saved the cost of second grid driver again.
Another purpose of the present utility model is to provide a kind of liquid crystal indicator, comprises above-mentioned liquid crystal cell matrix, has both guaranteed the time that view data charges into, and has saved the cost of second grid driver again.
The technical solution of the utility model is: the utility model proposes a kind of liquid crystal cell matrix, comprising:
The sweep trace of sweep signal is provided;
The data line of data-signal is provided;
The concentric line of common electric voltage is provided;
Pixel electrode;
The first film transistor is in response to the sweep trace of current line;
Second thin film transistor (TFT), in response to the sweep trace of next line, source electrode receives data-signal;
The 3rd thin film transistor (TFT), in response to the sweep trace of this current line, source electrode links to each other with the drain electrode of this second thin film transistor (TFT);
Wherein provide the data-signal of data line to the pixel electrode of current line, the common electric voltage of concentric line is provided to the pixel electrode of next line by the first film transistor by this second thin film transistor (TFT) and the 3rd thin film transistor (TFT).
Above-mentioned liquid crystal cell matrix, wherein, the transistorized grid of this first film is connected to the sweep trace of this current line, and source electrode is connected to this concentric line, and drain electrode is connected to the pixel electrode of this next line; The grid of this second thin film transistor (TFT) is connected to the sweep trace of this next line, and source electrode is connected to data line; The grid of the 3rd thin film transistor (TFT) is connected to the sweep trace of this current line, and drain electrode is connected to this pixel electrode.
The utility model has also proposed a kind of LCD, comprises a plurality of liquid crystal cell matrix, and those liquid crystal cell matrix are arranged with matrix form, and those liquid crystal cell matrix include:
The sweep trace of sweep signal is provided;
The data line of data-signal is provided;
The concentric line of common electric voltage is provided;
Pixel electrode;
The first film transistor is in response to the sweep trace of current line;
Second thin film transistor (TFT), in response to the sweep trace of next line, source electrode receives data-signal;
The 3rd thin film transistor (TFT), in response to the sweep trace of this current line, source electrode links to each other with the drain electrode of this second thin film transistor (TFT);
Wherein provide the data-signal of data line to the pixel electrode of current line, the common electric voltage of concentric line is provided to the pixel electrode of next line by the first film transistor by this second thin film transistor (TFT) and the 3rd thin film transistor (TFT).
Above-mentioned LCD, wherein, for each liquid crystal cell matrix, the transistorized grid of this first film wherein is connected to the sweep trace of this current line, and source electrode is connected to this concentric line, and drain electrode is connected to the pixel electrode of this next line; The grid of this second thin film transistor (TFT) is connected to the sweep trace of this next line, and source electrode is connected to data line; The grid of the 3rd thin film transistor (TFT) is connected to the sweep trace of this current line, and drain electrode is connected to this pixel electrode.
Above-mentioned LCD wherein, when sweep trace n and n+1 are applied high voltage simultaneously by one scan line signal, is positioned at the pixel electrode P of this sweep trace n nCharged into view data, be positioned at the pixel electrode P of this sweep trace n+1 N+1Charged into the common electric voltage data; When sweep trace n+1 and n+2 are applied high voltage simultaneously by this scanning-line signal, be positioned at the pixel electrode P of this sweep trace n+1 N+1Quilt is charged into view data and is remained to the moment that pulse next time arrives, and wherein n is a natural number.
Above-mentioned LCD wherein, when this scanning-line signal is applied to wherein sweep trace, begins to apply another scanning-line signal successively so that pixel electrode charges into the common electric voltage data successively from article one sweep trace.
The utility model contrast prior art has following beneficial effect: the utility model is by the second and the 3rd thin film transistor (TFT), control pixel electrode respectively and charge into view data and common electric voltage data, and can not shorten the time that pixel electrode charges into view data, do not increase cost thereby do not need to increase the second grid driver yet.The contrast prior art, the utility model provides the data-signal of data line by the second and the 3rd thin film transistor (TFT) to the capable pixel electrode of n, and the common electric voltage of concentric line is provided to the capable pixel electrode of n+1 by the first film transistor.
Description of drawings
Fig. 1 is the structural drawing of traditional LCD.
Fig. 2 is the structural drawing of the liquid crystal cell matrix of LCD of the present utility model.
Fig. 3 is the oscillogram of one scan line drive signal of the present utility model.
Fig. 4 is the oscillogram of another scan line driving signal of the present utility model.
Embodiment
The utility model will be further described below in conjunction with drawings and Examples.
Fig. 2 shows the structure of liquid crystal cell matrix of the present utility model.See also Fig. 2, liquid crystal cell matrix P1 comprises: the sweep trace G_n (n is a natural number) that sweep signal is provided; The data line D_n of data-signal is provided; The concentric line V-Com_n of common electric voltage is provided; Thin film transistor (TFT) TFT-n+1_1A grid is connected to sweep trace G_n, and source electrode is connected to concentric line V-Com_n, and drain electrode is connected to the pixel electrode of liquid crystal cell matrix P2, and thin film transistor (TFT) TFT-n+1_1A is in response to the n horizontal scanning line and provide common electric voltage to pixel electrode; Thin film transistor (TFT) TFT-n_1B grid is connected to sweep trace G_n, source electrode is connected to the drain electrode of thin film transistor (TFT) TFT-n_1C, drain electrode is connected to the pixel electrode of liquid crystal cell matrix P1, and thin film transistor (TFT) TFT-n_1B is in response to n bar sweep trace and provide data-signal to pixel electrode; Thin film transistor (TFT) TFT-n_1C grid is connected to sweep trace G_n+1, and source electrode is connected to data line D_n, and drain electrode is connected to the source electrode of thin film transistor (TFT) TFT-n_1B, and thin film transistor (TFT) TFT-n_1C receives data-signal in response to the n+1 horizontal scanning line and by source electrode.
Liquid crystal cell matrix P2 comprises: the sweep trace G_n+1 that sweep signal is provided; The data line D_n of data-signal is provided; The concentric line V-Com_n+1 of common electric voltage is provided; Thin film transistor (TFT) TFT-n+2_1A grid is connected to sweep trace G_n+1, and source electrode is connected to concentric line V-Com_n+1, and drain electrode is connected to the pixel electrode of liquid crystal cell matrix P3; Thin film transistor (TFT) TFT-n+1_1B grid is connected to sweep trace G_n+1, and source electrode is connected to the drain electrode of thin film transistor (TFT) TFT-n+1_1C, and drain electrode is connected to the pixel electrode of liquid crystal cell matrix P2; Thin film transistor (TFT) TFT-n+1_1C grid is connected to sweep trace G_n+2, and source electrode is connected to data line D_n, and drain electrode is connected to the source electrode of thin film transistor (TFT) TFT-n+1_1B.
As shown in Figure 2, these liquid crystal cell matrix P1, P2, P3 etc. constitute liquid crystal indicator with matrix-style, certainly other for example substrate etc. also be one of parts of liquid crystal indicator, other parts are identical with traditional liquid crystal indicator, therefore repeat no more.
The drive principle of liquid crystal indicator of the present utility model is described below in conjunction with Fig. 3 and Fig. 4.When applying as shown in Figure 3 high voltage for simultaneously sweep trace G_n, G_n+1, pixel electrode P1 is charged into view data, and pixel electrode P2 is charged into the common electric voltage data; But when applying as shown in Figure 3 high voltage for simultaneously sweep trace G_n+1, G_n+2, pixel electrode P2 is charged into view data immediately and is retained to the moment of scanning impulse arrival next time, it is very short that pixel electrode P2 is charged into the time of common electric voltage data, can't be discerned by human eye.
If display panels has m bar sweep trace (m is a natural number), (x is a positive integer when sweep signal shown in Figure 3 is applied to G_x bar sweep trace, concrete numerical value can be adjusted according to control signal), begin to apply successively as shown in Figure 4 sweep signal from article one sweep trace, pixel electrode is charged into the common electric voltage data successively like this.Specifically: when applying as shown in Figure 4 high voltage for sweep trace G_n, pixel electrode P2 is charged into the common electric voltage data; When applying as shown in Figure 4 high voltage for sweep trace G_n+1, pixel electrode P3 is charged into the common electric voltage data.
The foregoing description provides to those of ordinary skills and realizes or use of the present utility model; those of ordinary skills can be under the situation that does not break away from invention thought of the present utility model; the foregoing description is made various modifications or variation; thereby protection domain of the present utility model do not limit by the foregoing description, and should be the maximum magnitude that meets the inventive features that claims mention.

Claims (6)

1, a kind of liquid crystal cell matrix is characterized in that, comprising:
The sweep trace of sweep signal is provided;
The data line of data-signal is provided;
The concentric line of common electric voltage is provided;
Pixel electrode;
The first film transistor is in response to the sweep trace of current line;
Second thin film transistor (TFT), in response to the sweep trace of next line, source electrode receives data-signal;
The 3rd thin film transistor (TFT), in response to the sweep trace of this current line, source electrode links to each other with the drain electrode of this second thin film transistor (TFT);
Wherein provide the data-signal of data line to the pixel electrode of current line, the common electric voltage of concentric line is provided to the pixel electrode of next line by the first film transistor by this second thin film transistor (TFT) and the 3rd thin film transistor (TFT).
2, liquid crystal cell matrix according to claim 1 is characterized in that, the transistorized grid of this first film is connected to the sweep trace of this current line, and source electrode is connected to this concentric line, and drain electrode is connected to the pixel electrode of this next line; The grid of this second thin film transistor (TFT) is connected to the sweep trace of this next line, and source electrode is connected to data line; The grid of the 3rd thin film transistor (TFT) is connected to the sweep trace of this current line, and drain electrode is connected to this pixel electrode.
3, a kind of LCD is characterized in that, comprises a plurality of liquid crystal cell matrix, and those liquid crystal cell matrix are arranged with matrix form, and those liquid crystal cell matrix include:
The sweep trace of sweep signal is provided;
The data line of data-signal is provided;
The concentric line of common electric voltage is provided;
Pixel electrode;
The first film transistor is in response to the sweep trace of current line;
Second thin film transistor (TFT), in response to the sweep trace of next line, source electrode receives data-signal;
The 3rd thin film transistor (TFT), in response to the sweep trace of this current line, source electrode links to each other with the drain electrode of this second thin film transistor (TFT);
Wherein provide the data-signal of data line to the pixel electrode of current line, the common electric voltage of concentric line is provided to the pixel electrode of next line by the first film transistor by this second thin film transistor (TFT) and the 3rd thin film transistor (TFT).
4, LCD according to claim 3 is characterized in that, for each liquid crystal cell matrix, the transistorized grid of this first film wherein is connected to the sweep trace of this current line, and source electrode is connected to this concentric line, and drain electrode is connected to the pixel electrode of this next line; The grid of this second thin film transistor (TFT) is connected to the sweep trace of this next line, and source electrode is connected to data line; The grid of the 3rd thin film transistor (TFT) is connected to the sweep trace of this current line, and drain electrode is connected to this pixel electrode.
5, LCD according to claim 4 is characterized in that, when sweep trace n and n+1 are applied high voltage simultaneously by one scan line signal, is positioned at the pixel electrode P of this sweep trace n nCharged into view data, be positioned at the pixel electrode P of this sweep trace n+1 N+1Charged into the common electric voltage data; When sweep trace n+1 and n+2 are applied high voltage simultaneously by this scanning-line signal, be positioned at the pixel electrode P of this sweep trace n+1 N+1Quilt is charged into view data and is remained to the moment that pulse next time arrives, and wherein n is a natural number.
6, LCD according to claim 5 is characterized in that, when this scanning-line signal is applied to wherein sweep trace, begins to apply another scanning-line signal successively so that pixel electrode charges into the common electric voltage data successively from article one sweep trace.
CNU200820055822XU 2008-02-29 2008-02-29 LCD cell matrix and LCD device including the same Expired - Lifetime CN201159814Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNU200820055822XU CN201159814Y (en) 2008-02-29 2008-02-29 LCD cell matrix and LCD device including the same

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNU200820055822XU CN201159814Y (en) 2008-02-29 2008-02-29 LCD cell matrix and LCD device including the same

Publications (1)

Publication Number Publication Date
CN201159814Y true CN201159814Y (en) 2008-12-03

Family

ID=40110399

Family Applications (1)

Application Number Title Priority Date Filing Date
CNU200820055822XU Expired - Lifetime CN201159814Y (en) 2008-02-29 2008-02-29 LCD cell matrix and LCD device including the same

Country Status (1)

Country Link
CN (1) CN201159814Y (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2017054263A1 (en) * 2015-09-30 2017-04-06 深圳市华星光电技术有限公司 Liquid crystal display panel and drive method therefor
CN106950768A (en) * 2017-03-03 2017-07-14 深圳市华星光电技术有限公司 Pixel cell and its driving method

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2017054263A1 (en) * 2015-09-30 2017-04-06 深圳市华星光电技术有限公司 Liquid crystal display panel and drive method therefor
US10152929B2 (en) 2015-09-30 2018-12-11 Shenzhen China Star Optoelectronics Technology Co., Ltd Liquid crystal panels and the driving method thereof
CN106950768A (en) * 2017-03-03 2017-07-14 深圳市华星光电技术有限公司 Pixel cell and its driving method
CN106950768B (en) * 2017-03-03 2019-12-24 深圳市华星光电技术有限公司 Pixel unit and driving method thereof

Similar Documents

Publication Publication Date Title
CN101196629B (en) Liquid crystal display and driving method thereof
CN100520903C (en) Liquid crystal display and driving method thereof
JP5419321B2 (en) Display device
US9715861B2 (en) Display device having unit pixel defined by even number of adjacent sub-pixels
CN101308271B (en) Liquid crystal panel, LCD display device and its drive method
CN101233556B (en) Display device, its drive circuit, and drive method
CN100511403C (en) Liquid crystal display device and method for driving same
CN101401148B (en) Active matrix type liquid crystal display device and its drive method
JP4891682B2 (en) Liquid crystal display device and driving method thereof
CN102053413B (en) Display device
CN103377629B (en) Liquid crystal display and frame rate control method thereof
CN101216645A (en) Low color error liquid crystal display and its driving method
KR20090014448A (en) Device and method for driving electrophoretic display
CN106340279A (en) Driving method and device of display panel and display device
CN106652932A (en) Liquid crystal display and driving method thereof
CN102498509A (en) Pixel circuit and display device
KR20100129666A (en) Liquid crystal display
KR100389027B1 (en) Liquid Crystal Display and Driving Method Thereof
CN100594412C (en) Liquid crystal display apparatus and drive method thereof
CN101882430B (en) Method for driving liquid crystal display device
CN100593749C (en) LCD unit matrix and LCD device embodying the matrix
KR20070039759A (en) Liquid crystal display
CN101261411B (en) LCD unit matrix and LCD device embodying the matrix
US20120098816A1 (en) Liquid Crystal Display and Driving Method Thereof
CN201159814Y (en) LCD cell matrix and LCD device including the same

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20081203

Effective date of abandoning: 20080229