This application claims the priority of Chinese Patent Application No. 201610692714.2, entitled “AMOLED display drive method, drive circuit and display device”, filed on Aug. 19, 2016, the disclosure of which is incorporated herein by reference in its entirety.
The present invention relates to a display field, and more particularly relates to an AMOLED display drive method, an AMOLED drive circuit and an AMOLED display device.
Please refer to
Consequently, the stress of the A region is always larger than the stress of the B region. Therefore, after the image in the left picture of
The present invention provides an AMOLED display drive method, employed to drive an AMOLED display, wherein the AMOLED display drive method comprises:
detecting whether a gray scale of a preset region in the AMOLED display is larger than a preset gray scale, and detecting whether pixel amounts corresponded with a width and a length of the preset region are larger than preset pixel amounts;
calculating a condition that a threshold voltage of each drive thin film transistor of the preset region changes along with time in a preset duration as the gray scale of the preset region in the AMOLED display is larger than the preset gray scale, and both the pixel amounts corresponded with the width and the length of the preset region are larger than the preset pixel amounts;
compensating a data signal loaded to the thin film transistor according to the condition that the threshold voltage of the drive thin film transistor of the preset region changes along with time in the preset duration to make a variation of the data signal loaded to the drive thin film transistor along with time equal to a variation of the threshold voltage of the drive thin film transistor along with time;
using the data signal after being compensated to drive the AMOLED display.
As the gray scale of the preset region in the AMOLED display is smaller than or equal to the preset gray scale, or the amount corresponded with the width of the preset region is smaller than or equal to the preset pixel amount, or the amount corresponded with the length of the preset region is smaller than or equal to the preset pixel amount, the data signal is not required to be compensated, and the data signal is used to drive the AMOLED display.
The preset region is an arbitrary region in the AMOLD display.
The present invention further provides an AMOLED display drive circuit, employed to drive an AMOLED display, wherein the AMOLED display drive circuit comprises:
a detection unit, employed for detecting whether a gray scale of a preset region in the AMOLED display is larger than a preset gray scale, and detecting whether pixel amounts corresponded with a width and a length of the preset region are larger than preset pixel amounts;
a calculation unit, calculating a condition that a threshold voltage of a drive thin film transistor of the preset region changes along with time in a preset duration as the gray scale of the preset region in the AMOLED display is larger than the preset gray scale, and both the pixel amounts corresponded with the width and the length of the preset region are larger than the preset pixel amounts;
a compensation unit, employed for compensating a data signal loaded to the thin film transistor according to the condition that the threshold voltage of the drive thin film transistor of the preset region changes along with time in the preset duration to make a variation of the data signal loaded to the drive thin film transistor along with time equal to a variation of the threshold voltage of the drive thin film transistor along with time;
a drive unit, employed for using the data signal after being compensated to drive the AMOLED display.
As the gray scale of the preset region in the AMOLED display is smaller than or equal to the preset gray scale, or the amount corresponded with the width of the preset region is smaller than or equal to the preset pixel amount, or the amount corresponded with the length of the preset region is smaller than or equal to the preset pixel amount, the data signal is not required to be compensated by further employing the drive unit, and the data signal is used to drive the AMOLED display.
The preset region is an arbitrary region in the AMOLD display.
The present invention further provides an AMOLED display device, wherein the AMOLED display device comprises an AMOLED display drive circuit, and the AMOLED display drive circuit is employed to drive an AMOLED display, and the AMOLED display drive circuit comprises:
a detection unit, employed for detecting whether a gray scale of a preset region in the AMOLED display is larger than a preset gray scale, and detecting whether pixel amounts corresponded with a width and a length of the preset region are larger than preset pixel amounts;
a calculation unit, calculating a condition that a threshold voltage of each drive thin film transistor of the preset region changes along with time in a preset duration as the gray scale of the preset region in the AMOLED display is larger than the preset gray scale, and both the pixel amounts corresponded with the width and the length of the preset region are larger than the preset pixel amounts;
a compensation unit, employed for compensating a data signal loaded to the thin film transistor according to the condition that the threshold voltage of the drive thin film transistor of the preset region changes along with time in the preset duration to make a variation of the data signal loaded to the drive thin film transistor along with time equal to a variation of the threshold voltage of the drive thin film transistor along with time;
a drive unit, employed for using the data signal after being compensated to drive the AMOLED display.
As the gray scale of the preset region in the AMOLED display is smaller than or equal to the preset gray scale, or the amount corresponded with the width of the preset region is smaller than or equal to the preset pixel amount, or the amount corresponded with the length of the preset region is smaller than or equal to the preset pixel amount, the data signal is not required to be compensated, and the data signal is used to drive the AMOLED display.
The preset region is an arbitrary region in the AMOLD display.
In comparison with prior art, in the AMOLED display drive method of the present invention, as the gray scale of the preset region in the AMOLED display is larger than the preset gray scale, and both the pixel amounts corresponded with the width and the length of the preset region are larger than the preset pixel amounts, the data signal loaded to the thin film transistor is compensated according to the condition that the threshold voltage of the drive thin film transistor of the preset region changes along with time in the preset duration to make a variation of the data signal loaded to the drive thin film transistor along with time equal to a variation of the threshold voltage of the drive thin film transistor along with time. Thus, the current flowing through the organic light emitting diode remains unchanged, and thus to achieve the technical effect of reducing the image sticking of the AMOLED display.
In order to more clearly illustrate the embodiments of the present invention or prior art, the following figures will be described in the embodiments are briefly introduced. It is obvious that the drawings are merely some embodiments of the present invention, those of ordinary skill in this field can obtain other figures according to these figures without paying the premise.
Embodiments of the present invention are described in detail with the technical matters, structural features, achieved objects, and effects with reference to the accompanying drawings as follows. It is clear that the described embodiments are part of embodiments of the present invention, but not all embodiments. Based on the embodiments of the present invention, all other embodiments to those of ordinary skill in the premise of no creative efforts obtained, should be considered within the scope of protection of the present invention.
Please refer to
The AMOLED display drive method further comprises the following steps but is not restricted thereto.
Step S110, detecting whether a gray scale of a preset region in the AMOLED display is larger than a preset gray scale, and detecting whether pixel amounts corresponded with a width and a length of the preset region are larger than preset pixel amounts. In one embodiment, the preset gray scale can be: as the AMOLED display is 8 bit, the preset gray scale is 160. In one embodiment, the preset pixel amount is equal to 15. In one embodiment, the preset region is an arbitrary region in the AMOLD display.
Step S120, calculating a condition that a threshold voltage of each drive thin film transistor of the preset region changes along with time in a preset duration as the gray scale of the preset region in the AMOLED display is larger than the preset gray scale, and both the pixel amounts corresponded with the width and the length of the preset region are larger than the preset pixel amounts. For each drive thin film transistor T2 in the preset region, the semi experience equation of the variation condition Vth(t) of the threshold voltage of the drive thin film transistor T2 along with time is shown by equation (1).
V
th(t)
=V
th,0+ΔVth(t) (equation 1)
and,
ΔVth(t)=A·exp(−EA/kT)·tβ(VGS−ηVDS−Vth,0)n (equation 2)
Wherein ΔVth(t) represents a variation of the threshold voltage of the drive thin film transistor T2 along with time. Thus, ΔVth(t) is a function of VGS, VDS and time.
For the particular manufacture process of the AMOLED display, both A and β are constants. The more excellent the manufacture process is, A is smaller and β is smaller, too. EA is the Activation Energy. For the particular manufacture process of the AMOLED display, EA is a constant.
V
th,0
:T
th in t=0, and η=VGS/(VGS+VDS)
wherein VGS is the voltage between the gate and the source of the drive thin film transistor T2; VDS is the voltage between the drain and the source of the drive thin film transistor T2. The equation that the current IOLED flowing through the organic light emitting diode OLED changes along with time is shown by equation (3).
wherein Ids,T2 means the current between the source and the drain of the drive thin film transistor T2; μn means the carrier mobility of the channel layer of the drive thin film transistor T2; Cox means the capacitance of the gate insulation layer unit area in the drive thin film transistor T2; W means the width of the channel layer of the drive thin film transistor T2; L means the length of the channel layer side of the drive thin film transistor T2; Vdata(f) means the variation condition that the data signal changes along with time.
Step S130, compensating a data signal loaded to the thin film transistor according to the condition that the threshold voltage of the drive thin film transistor of the preset region changes along with time in the preset duration to make a variation of the data signal loaded to the drive thin film transistor along with time equal to a variation of the threshold voltage of the drive thin film transistor along with time.
Specifically, the data signal loaded to each thin film transistor is compensated according to the condition that the threshold voltage of each drive thin film transistor of the preset region changes along with time in the preset duration to make the variation of the data signal loaded to each drive thin film transistor along with time equal to the variation of the threshold voltage of the drive thin film transistor along with time.
As being told from equation (3), for each drive thin film transistor in the preset region, the current IOLED(t) flowing through the organic light emitting diode OLED is relevant with the variation condition Vth(t) of the threshold voltage of the drive thin film transistor T2 along with time and the variation condition Vdata(t) of the data signal along with time. If the variation condition Vth(t) of the threshold voltage of the drive thin film transistor T2 along with time is equal to the variation condition Vdata(t) of the data signal along with time, i.e. ΔVth(t)=ΔVdata(t), the current IOLED flowing through the organic light emitting diode OLED stops changing along with time, and thus to achieve the technical effect of reducing the image sticking of the AMOLED display.
Step S140, using the data signal after being compensated to drive the AMOLED display.
The AMOLED display drive method further comprises the following steps.
Step I, as the gray scale of the preset region in the AMOLED display is smaller than or equal to the preset gray scale, or the amount corresponded with the width of the preset region is smaller than or equal to the preset pixel amount, or the amount corresponded with the length of the preset region is smaller than or equal to the preset pixel amount, the data signal is not required to be compensated, and the data signal is used to drive the AMOLED display.
In comparison with prior art, in the AMOLED display drive method of the present invention, as the gray scale of the preset region in the AMOLED display is larger than the preset gray scale, and both the pixel amounts corresponded with the width and the length of the preset region are larger than the preset pixel amounts, the data signal loaded to the thin film transistor is compensated according to the condition that the threshold voltage of the drive thin film transistor of the preset region changes along with time in the preset duration to make a variation of the data signal loaded to the drive thin film transistor along with time equal to a variation of the threshold voltage of the drive thin film transistor along with time. Thus, the current flowing through the organic light emitting diode remains unchanged, and thus to achieve the technical effect of reducing the image sticking of the AMOLED display.
The following is the description for the AMOLED display drive circuit of the present invention with combination of
The detection unit 110 is employed for detecting whether a gray scale of a preset region in the AMOLED display is larger than a preset gray scale, and detecting whether pixel amounts corresponded with a width and a length of the preset region are larger than preset pixel amounts. In one embodiment, the preset gray scale can be: as the AMOLED display is 8 bit, the preset gray scale is 160. In one embodiment, the preset pixel amount is equal to 15. In one embodiment, the preset region is an arbitrary region in the AMOLD display.
The calculation unit 120 calculates a condition that a threshold voltage of the drive thin film transistor of the preset region changes along with time in a preset duration as the gray scale of the preset region in the AMOLED display is larger than the preset gray scale, and both the pixel amounts corresponded with the width and the length of the preset region are larger than the preset pixel amounts. Specifically, please refer to the description in the Step S120 for that the calculation unit 120 calculates the condition that the threshold voltage of the drive thin film transistor of the preset region changes along with time in the preset duration. The repeated description is omitted here.
The compensation unit 130 is employed for compensating a data signal loaded to the thin film transistor according to the condition that the threshold voltage of the drive thin film transistor of the preset region changes along with time in the preset duration to make a variation of the data signal loaded to the drive thin film transistor along with time equal to a variation of the threshold voltage of the drive thin film transistor along with time. Specifically, as being told from equation (3), the current IOLED(t) flowing through the organic light emitting diode OLED is relevant with the variation condition Vth(t) of the threshold voltage of the drive thin film transistor T2 along with time and the variation condition Vdata(t) of the data signal along with time. If the variation condition Vth(t) of the threshold voltage of the drive thin film transistor T2 along with time is equal to the variation condition Vdata(t) of the data signal along with time, i.e. ΔVth(t)=ΔVdata(t), the current IOLED flowing through the organic light emitting diode OLED stops changing along with time, and thus to achieve the technical effect of reducing the image sticking of the AMOLED display. The drive unit 140 is employed for using the data signal after being compensated to drive the AMOLED display.
It can be understood that the detection unit 110, the calculation unit 120, the compensation unit 130 and the drive unit 140 are integrated inside the TCON.
In this embodiment, as the gray scale of the preset region in the AMOLED display is smaller than or equal to the preset gray scale, or the amount corresponded with the width of the preset region is smaller than or equal to the preset pixel amount, or the amount corresponded with the length of the preset region is smaller than or equal to the preset pixel amount, the data signal is not required to be compensated by further employing the drive unit 140, and the data signal is used to drive the AMOLED display.
Please refer to
Above are embodiments of the present invention, which does not limit the scope of the present invention. Any modifications, equivalent replacements or improvements within the spirit and principles of the embodiment described above should be covered by the protected scope of the invention.
Number | Date | Country | Kind |
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201610692714.2 | Aug 2016 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2016/097527 | 8/31/2016 | WO | 00 |