WO2019056448A1 - 改善显示面板显示效果的方法和显示面板 - Google Patents

改善显示面板显示效果的方法和显示面板 Download PDF

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WO2019056448A1
WO2019056448A1 PCT/CN2017/107181 CN2017107181W WO2019056448A1 WO 2019056448 A1 WO2019056448 A1 WO 2019056448A1 CN 2017107181 W CN2017107181 W CN 2017107181W WO 2019056448 A1 WO2019056448 A1 WO 2019056448A1
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display panel
improving
external compensation
voltage
preset
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PCT/CN2017/107181
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English (en)
French (fr)
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何健
周明忠
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深圳市华星光电半导体显示技术有限公司
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Priority to US15/744,753 priority Critical patent/US10636358B2/en
Publication of WO2019056448A1 publication Critical patent/WO2019056448A1/zh

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    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G3/00Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes
    • G09G3/20Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters
    • G09G3/34Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters by control of light from an independent source
    • G09G3/3406Control of illumination source
    • G09G3/3413Details of control of colour illumination sources
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G3/00Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes
    • G09G3/20Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters
    • G09G3/34Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters by control of light from an independent source
    • G09G3/36Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters by control of light from an independent source using liquid crystals
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2320/00Control of display operating conditions
    • G09G2320/06Adjustment of display parameters
    • G09G2320/0613The adjustment depending on the type of the information to be displayed
    • G09G2320/062Adjustment of illumination source parameters

Definitions

  • the present invention relates to the field of liquid crystal display technology, and in particular to a method and a display panel for improving the display effect of a display panel.
  • OLED liquid crystal display devices are widely used in mobile phones, televisions, personal digital assistants, digital cameras, notebook computers, desktop computers, etc. due to their high image quality, power saving, thin body and wide application range. Electronic products have become the mainstream in display devices.
  • a pixel driving circuit common to OLEDs causes a threshold voltage Vth to drift due to the long-term operation of the transistor T2 in the saturation region, resulting in uneven brightness (mura) on the panel display.
  • a PWM (digital drive) method has been proposed.
  • the subfield cut mode is the currently used PWM drive mode.
  • the simplest structure is a 3T1C pixel circuit.
  • Data is a data driving signal
  • Gate1 is a charging scanning signal
  • control transistor T1 charges A point
  • Gate2 is a discharging scanning signal
  • control transistor T3 discharges point A.
  • Vini is the reference voltage and is approximately zero. Only two Gamma voltages are output at A, that is, two voltage levels of GM1 (brightest) and GM9 (darkest).
  • I-V equation the transistor current voltage I-V equation:
  • the PWM driving method can suppress the luminance unevenness of the OLED with respect to the analog voltage driving method.
  • FIG. 3 is a schematic diagram of PWM driving of an 8-bit subfield.
  • x axis is time
  • the y-axis is the scan time of the scan line.
  • a frame is equally cut into 8 subfields with the same time.
  • the gray level is 255
  • the brightness unevenness of the panel is already very serious.
  • the sub-field cut driving mode of the PWM driving circuit cannot eliminate the brightness unevenness in the gray level of the panel 255, and the brightness of the gray point 255 pixel point display.
  • the uneven phenomenon directly affects the pixel display effect of other gray scales, resulting in an actual display effect of the display panel is not ideal.
  • the technical problem to be solved by the present invention is to provide a method and a display panel for improving the display effect of the display panel, which can solve the problem that the PWM drive circuit cannot eliminate the brightness unevenness of the display panel in the gray scale 255.
  • a technical solution adopted by the present invention is to provide a method for improving the display effect of a display panel.
  • the display panel includes a PWM driving circuit and a storage unit, and the storage unit stores a PWM driving circuit corresponding to different gray levels.
  • the voltmeter is provided, wherein the method for improving the display effect of the display panel comprises: running the PWM driving circuit according to the preset voltmeter; obtaining the corresponding voltage when the gray scale is 255 from the preset voltmeter stored in the storage unit; External compensation, respectively obtaining gray scale 255 external compensation lookup table under different sub-pixels; introducing an external compensation lookup table into the storage unit, replacing data corresponding to the original gray level 255 in the preset voltmeter; when the pixel point data is gray scale 255, The corresponding voltage is obtained from the external compensation lookup table, and the PWM drive circuit is controlled to output a corresponding driving voltage.
  • the display panel includes a PWM driving circuit and a storage unit, and the storage unit stores a PWM driving circuit corresponding to different gray levels.
  • the preset voltmeter improves the display effect of the display panel by: pre-acquiring an external compensation lookup table corresponding to the gray level 255 of each pixel in the display panel; introducing an external compensation lookup table into the storage unit, replacing the original gray scale in the preset voltmeter 255 corresponding data; running PWM drive based on the replaced data Circuit.
  • a technical solution adopted by the present invention is to provide a method for improving the display effect of a display panel.
  • the display panel includes a PWM driving circuit and a storage unit, and the storage unit stores a PWM driving circuit corresponding to different gray levels.
  • the voltmeter is provided, wherein the method for improving the display effect of the display panel comprises: running the PWM driving circuit according to the preset voltmeter; obtaining the corresponding voltage when the gray scale is 255 from the preset voltmeter stored in the storage unit; External compensation, respectively obtaining gray scale 255 external compensation lookup table under different sub-pixels; introducing an external compensation lookup table into the storage unit, replacing data corresponding to the original gray level 255 in the preset voltmeter; when the pixel point data is gray scale 255, The corresponding voltage is obtained from the external compensation lookup table, and the PWM drive circuit is controlled to output a corresponding driving voltage.
  • the present invention proposes a gray scale compensation method.
  • the PWM drive circuit gray scale 255 dark state voltage is fixed, the gray scale 0 corresponds to the voltage value, and the bright state voltage is not fixed, which is determined by the lookup table generated by the panel gray scale 255 by external compensation, and the PWM circuit outputs according to the external compensation lookup table.
  • the gray level 255 corresponds to the bright state voltage.
  • the invention combines the external compensation method to improve the display effect of the PWM digital driving, avoids the problem that the PWM circuit cannot eliminate the brightness unevenness of the display panel in the gray level 255, and improves the actual display effect of the display panel.
  • FIG. 1 is a circuit diagram of a conventional OLED pixel driving circuit
  • FIG. 2 is a circuit diagram of a conventional PWM driving circuit
  • FIG. 3 is a schematic diagram of a conventional PWM driving of an 8-bits subfield
  • FIG. 4 is a schematic flow chart of an embodiment of a method for improving display performance of a display panel according to the present invention.
  • FIG. 5 is a schematic structural view of an embodiment of a display panel of the present invention.
  • FIG. 4 is a schematic flow chart of an embodiment of a method for improving the display effect of the display panel of the present invention.
  • the method for improving the display effect of the display panel of the present embodiment includes the following steps:
  • S101 Acquire an external compensation lookup table corresponding to the gray level 255 of each pixel in the display panel in advance.
  • the display panel of the present invention is an OLED display panel.
  • the OLED display panel includes a PWM driving circuit and a storage unit, and the storage unit stores a preset voltmeter corresponding to different gray levels of the PWM driving circuit.
  • the present embodiment obtains an external compensation lookup table corresponding to the gray level 255 of each pixel in the display panel in advance.
  • the external compensation lookup table corresponding to the gray level 255 of each pixel in the display panel is obtained in advance by the following method.
  • the PWM driving circuit acquires a corresponding driving voltage when the same sub-pixel of the pixel is grayscale 255 from the preset voltmeter stored in the storage unit.
  • the preset voltmeter stores corresponding bright state voltages and dark state voltages when the sub-pixels of the pixel points are different gray scale values.
  • the driving voltage when each pixel point sub-pixel is a different gray scale value is the difference between the bright state voltage and the dark state voltage in the PWM driving circuit.
  • the dark state voltage is the voltage value corresponding to the gray scale 0, and the bright state voltage can be obtained from the preset voltage meter.
  • the PWM driving circuit outputs a driving voltage corresponding to the sub-pixel to the gray level 255 to each pixel, so that the display panel displays a screen.
  • the grayscale value of each pixel point sub-pixel on the screen is obtained, and the sub-pixel on the screen is externally compensated.
  • the driving voltage of the pixel is compensated according to the actual voltage of each pixel, so that the grayscale value of the pixel sub-pixel is 255, and the gray-scale 255 external compensation look-up table under the sub-pixel is obtained.
  • the sub-pixels of the pixels on the display panel are RGB three sub-pixels or RGBW four-sub-pixels.
  • the PWM driving circuit repeats step S401 to make the pixel point There are sub-pixels of gray scale 255, and a gray-scale 255 external compensation look-up table under different sub-pixels of each pixel is obtained.
  • the external compensation lookup table storing the compensated driving voltage when each pixel point sub-pixel is gray scale 255 is introduced into the storage unit, and the original gray scale 255 in the preset voltmeter is replaced by the external compensation lookup table. Corresponding data.
  • the storage unit may be a storage chip in the terminal, a hard disk, or a portable hard disk or other readable and writable storage tool such as a USB flash drive or an optical disk, or may be a server or the like.
  • the PWM driving circuit acquires data of each pixel point, and the driving circuit obtains the grayscale value of each pixel point sub-pixel from the data, and divides the grayscale value into 0 to 254 and 255.
  • the PWM driving circuit acquires the corresponding driving from the preset voltage table stored in the storage unit according to the pixel point of the sub-pixel dependent in the pixel point data and the actual grayscale value. Voltage.
  • the PWM driving circuit outputs a driving voltage corresponding to the actual grayscale value of the subpixel to each pixel, and the subpixel of each pixel displays a corresponding grayscale.
  • the PWM driving circuit acquires the corresponding driving voltage from the external compensation look-up table stored in the storage unit according to the pixel points of the sub-pixel dependent in the pixel point data.
  • the PWM driving circuit outputs a corresponding driving voltage, and the sub-pixels of each pixel point are gray scale 255.
  • the present invention proposes a gray scale compensation method.
  • the PWM drive circuit gray scale 255 dark state voltage is fixed, the gray scale 0 corresponds to the voltage value, and the bright state voltage is not fixed, which is determined by the lookup table generated by the panel gray scale 255 by external compensation, and the PWM circuit outputs according to the external compensation lookup table.
  • the gray level 255 corresponds to the bright state voltage.
  • the invention proposes a method combining external compensation to improve the display effect of the PWM digital driving, avoiding The PWM-free circuit cannot eliminate the uneven brightness of the display panel in the gray level 255, and improves the actual display effect of the display panel.
  • the present invention further provides a liquid crystal display panel.
  • the display panel 50 includes a PWM driving circuit 501 and a storage circuit 502 and a controller 503.
  • the controller 503 is electrically coupled to the PWM driving circuit 501 and the storage circuit 502, respectively.
  • the connection circuit 502 is configured to store a preset voltmeter corresponding to different gray levels of the PWM driving circuit 501.
  • the controller 503 is configured to obtain an external compensation lookup table corresponding to the gray level 255 of each pixel in the display panel 50 in advance; and introduce an external compensation lookup table into the storage circuit 502 to replace the data corresponding to the original gray level 255 in the preset voltage table;
  • the pixel data is gray scale 255
  • the corresponding voltage is obtained from the external compensation lookup table, and the PWM drive circuit 501 is controlled to output a corresponding driving voltage.
  • the display panel can implement the above-mentioned method for improving the display effect of the display panel.
  • FIG. 4 Please refer to FIG. 4 and related text descriptions, and details are not described herein again.
  • the external compensation lookup table when the pixel sub-pixel is gray scale 255 is determined by the panel type, wherein the R/G/B three sub-pixels of the RGB panel correspond to three external compensation look-up tables, and the R/G of the RGBW panel.
  • the /B/W four seed pixel corresponds to four external compensation lookup tables.
  • the driving method of the driving circuit is not limited to the subfield switching method, and various driving methods for PWM are applied.

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  • Physics & Mathematics (AREA)
  • Computer Hardware Design (AREA)
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Abstract

一种改善显示面板(50)显示效果的方法和显示面板(50),该改善显示面板(50)显示效果的方法包括:预先获取显示面板(50)中每个像素点灰阶255对应的外部补偿查找表(S401);将外部补偿查找表引入存储单元,替换预设电压表中原灰阶255对应的数据(S402);根据替换后的数据运行PWM驱动电路(S403)。结合外部补偿的方法来改善PWM数字驱动的显示效果,避免PWM电路在灰阶255无法消除显示面板(50)亮度不均匀的问题,提升显示面板(50)的实际显示效果。

Description

改善显示面板显示效果的方法和显示面板 【技术领域】
本发明涉及液晶显示技术领域,特别是涉及改善显示面板显示效果的方法和显示面板。
【背景技术】
OLED液晶显示装置因具有高画质、省电、机身薄及应用范围广等优点,而被广泛的应用于手机、电视、个人数字助理、数字相机、笔记本电脑、台式计算机等各种消费性电子产品,成为显示装置中的主流。
如图1为OLED常见的像素驱动电路,由于晶体管T2长时间工作在饱和区会造成阈值电压Vth发生漂移,导致面板显示画面产生亮度不均匀(mura)。为改善亮度不均匀,PWM(数位驱动)方式被提出。子场等切方式是目前常用的PWM驱动方式。最简单结构为3T1C像素电路,如图2所示,Data为数据驱动信号,Gate1为充电扫描信号,控制晶体管T1对A点进行充电,Gate2为放电扫描信号,控制晶体管T3对A点进行放电,Vini为参考电压,约为零。A处仅输出两个Gamma电压,即GM1(最亮)和GM9(最暗)两个电压准位。按照晶体管电流电压I-V方程:
Ids,sat=k*(Vgs-Vth,T2)2=k*(VA-VB-Vth,T2)2
其中,Ids,sat为晶体管导通电流,k为本征导电因子,Vgs为晶体管栅源极电压,Vth,T2为晶体管T2的阈值电压,VA为A点电压,VB为B点电压。由于器件退化或者非一致性导致晶体管Vth的变化量ΔVth相对于(VA-VB)变化较小,因此相对模拟电压驱动方式,PWM驱动方式可抑制OLED的亮度不均匀问题。
但是,当图像为255灰阶时,面板的mura已经很严重了,PWM驱动方式无法消除255灰阶下的mura,导致液晶面板实际显示效果并不理想。如图3所示,图3为8bits子场等切的PWM驱动示意图。x轴为时 间,y轴为扫描线的扫描时间。一个帧被等切成8个时间相同的子场,通过控制PWM驱动电路充电与放电的时间实现像素点在不同子场点亮时间不同,像素点亮时间占空比为1/128、1/64、1/32、1/16、1/8、1/4、1/2、1进行驱动,使显示面板的灰阶不同。当灰阶255时,面板的亮度不均匀现象已经很严重了,PWM驱动电路的子场等切驱动方式无法消除该面板255灰阶下的亮度不均匀现象,灰阶255的像素点显示的亮度不均现象会直接影响其他灰阶的像素点显示效果,导致显示面板的实际显示效果并不理想。
【发明内容】
本发明主要解决的技术问题是提供一种改善显示面板显示效果的方法和显示面板,能够解决PWM驱动电路在灰阶255无法消除显示面板亮度不均匀现象的问题。
为解决上述技术问题,本发明采用的一个技术方案是:提供一种改善显示面板显示效果的方法,显示面板包括PWM驱动电路及存储单元,存储单元中存储有PWM驱动电路对应不同灰阶的预设电压表,其中,改善显示面板显示效果的方法包括:根据预设电压表运行PWM驱动电路;从存储单元存储的预设电压表获取灰阶255时的对应电压;对灰阶255显示画面做外部补偿,分别获取不同子像素下的灰阶255外部补偿查找表;将外部补偿查找表引入存储单元,替换预设电压表中原灰阶255对应的数据;当像素点数据为灰阶255时,从外部补偿查找表获取对应的电压,并控制所述PWM驱动电路输出对应的驱动电压。
为解决上述技术问题,本发明采用的另一个技术方案是:提供一种改善显示面板显示效果的方法,显示面板包括PWM驱动电路及存储单元,存储单元中存储有PWM驱动电路对应不同灰阶的预设电压表,改善显示面板显示效果的方法包括:预先获取显示面板中每个像素点灰阶255对应的外部补偿查找表;将外部补偿查找表引入存储单元,替换预设电压表中原灰阶255对应的数据;根据替换后的数据运行PWM驱动 电路。
为解决上述技术问题,本发明采用的一个技术方案是:提供一种改善显示面板显示效果的方法,显示面板包括PWM驱动电路及存储单元,存储单元中存储有PWM驱动电路对应不同灰阶的预设电压表,其中,改善显示面板显示效果的方法包括:根据预设电压表运行PWM驱动电路;从存储单元存储的预设电压表获取灰阶255时的对应电压;对灰阶255显示画面做外部补偿,分别获取不同子像素下的灰阶255外部补偿查找表;将外部补偿查找表引入存储单元,替换预设电压表中原灰阶255对应的数据;当像素点数据为灰阶255时,从外部补偿查找表获取对应的电压,并控制所述PWM驱动电路输出对应的驱动电压。
本发明的有益效果是:区别于现有技术的情况,本发明提出一种灰阶补偿方法。PWM驱动电路灰阶255暗态电压固定,为灰阶0对应电压值,而亮态电压并不固定,由面板的灰阶255经外部补偿产生的查找表决定,PWM电路根据外部补偿查找表输出灰阶255对应的亮态电压。本发明结合外部补偿的方法来改善PWM数字驱动的显示效果,避免PWM电路在灰阶255无法消除显示面板亮度不均匀现象的问题,提升显示面板的实际显示效果。
【附图说明】
图1是现有的OLED像素驱动电路图;
图2是现有的PWM驱动电路图;
图3是现有的8bits子场等切的PWM驱动示意图;
图4是本发明改善显示面板显示效果的方法一实施方式的流程示意图;
图5是本发明显示面板一实施方式的结构示意图。
【具体实施方式】
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术 人员在没有做出创造性劳动前提下所获得的所有其他实施例,均属于本发明保护的范围。
请参阅图4,图4是本发明改善显示面板显示效果的方法一实施方式的流程示意图。本实施方式的改善显示面板显示效果的方法包括如下步骤:
S101:预先获取所述显示面板中每个像素点灰阶255对应的外部补偿查找表。
在一个具体的实施例中,本发明的显示面板为0LED显示面板。OLED显示面板包括PWM驱动电路及存储单元,该存储单元中存储有PWM驱动电路对应不同灰阶的预设电压表。
前述已提及,当图像为255灰阶时,面板的mura已经很严重了,PWM驱动方式无法消除255灰阶下的mura,导致液晶面板实际显示效果并不理想。为消除该面板255灰阶下的亮度不均匀现象,本实施方式预先获取显示面板中每个像素点灰阶255对应的外部补偿查找表。
在一个具体的实施方式中,预先获取显示面板中每个像素点灰阶255对应的外部补偿查找表是通过以下方法实现的。
PWM驱动电路从存储单元存储的预设电压表获取像素点的相同子像素为灰阶255时的对应驱动电压。其中,预设电压表存储各像素点子像素为不同灰阶值时的对应亮态电压和暗态电压。各像素点子像素为不同灰阶值时的驱动电压是PWM驱动电路中亮态电压减去暗态电压的差值。其中,暗态电压为灰阶0对应的电压值,亮态电压可从预设电压表获得。PWM驱动电路向各像素点输出该子像素为灰阶255时对应的驱动电压,使显示面板显示画面。获取该画面上各像素点子像素的灰阶值,对该画面上的子像素进行外部补偿。根据各像素点的实际电压对像素点的驱动电压进行补偿,使像素点子像素的灰阶值为255,获取像素点该子像素下的灰阶255外部补偿查找表。
在上述实施方式中,显示面板上像素点的子像素为RGB三种子像素或RGBW四种子像素。
在上述实施方式中,PWM驱动电路重复步骤S401,使像素点的所 有子像素为灰阶255,获取各像素点不同子像素下的灰阶255外部补偿查找表。
S402:将所述外部补偿查找表引入所述存储单元,替换预设电压表中原灰阶255对应的数据。
在一个具体的实施方式中,将存储有各像素点子像素为灰阶255时的补偿后驱动电压的外部补偿查找表引入存储单元,并以该外部补偿查找表替换预设电压表中原灰阶255对应的数据。
在上述实施方式中,存储单元可以是终端中的存储芯片、硬盘或者是移动硬盘或者优盘、光盘等其他可读写存储的工具,还可以是服务器等等。
S403:运行PWM驱动电路。
在一个具体的实施方式中,PWM驱动电路获取各像素点的数据,驱动电路从该数据中得到各像素点子像素的灰阶值,并将其分为灰阶值0~254和255。
当获取的像素点数据中子像素为灰阶0~254时,PWM驱动电路根据像素点数据中该子像素从属的像素点和实际灰阶值从存储单元存储的预设电压表获取对应的驱动电压。
PWM驱动电路向各像素点输出该子像素实际灰阶值对应的驱动电压,各像素点的子像素显示相应的灰阶。
当获取的像素点数据中子像素为灰阶255时,PWM驱动电路根据像素点数据中该子像素从属的像素点从存储单元存储的外部补偿查找表获取对应的驱动电压。
PWM驱动电路输出对应的驱动电压,各像素点的子像素为灰阶255。
本发明的有益效果是:区别于现有技术的情况,本发明提出一种灰阶补偿方法。PWM驱动电路灰阶255暗态电压固定,为灰阶0对应电压值,而亮态电压并不固定,由面板的灰阶255经外部补偿产生的查找表决定,PWM电路根据外部补偿查找表输出灰阶255对应的亮态电压。本发明提出结合外部补偿的方法来改善PWM数字驱动的显示效果,避 免PWM电路在灰阶255无法消除显示面板亮度不均匀现象的问题,提升显示面板的实际显示效果。
本发明还提供一种液晶显示面板,具体地,如图5所示,显示面板50包括PWM驱动电路501及存储电路502以及控制器503,控制器503分别与PWM驱动电路501以及存储电路502电连接,存储电路502用于存储PWM驱动电路501对应不同灰阶的预设电压表,
控制器503用于预先获取显示面板50中每个像素点灰阶255对应的外部补偿查找表;将外部补偿查找表引入存储电路502,替换预设电压表中原灰阶255对应的数据;还用于在像素点数据为灰阶255时,从外部补偿查找表获取对应的电压,并控制PWM驱动电路501输出对应的驱动电压。
该显示面板能够实现上述改善显示面板显示效果的方法,具体地请参阅图4及其相关文字描述,在此不再赘述。
在上述实施方式中,像素点子像素为灰阶255时的外部补偿查找表由面板类型决定,其中RGB面板的R/G/B三种子像素对应三个外部补偿查找表,RGBW面板的R/G/B/W四种子像素对应四个外部补偿查找表。本发明的改善显示面板显示效果的方法中驱动电路的驱动方式不限于子场等切方式,适用与PWM的各种驱动方法。
以上所述仅为本发明的实施方式,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。

Claims (20)

  1. 一种改善显示面板显示效果的方法,所述显示面板包括PWM驱动电路及存储单元,所述存储单元中存储有所述PWM驱动电路对应不同灰阶的预设电压表,其中,所述方法包括:
    根据预设电压表运行所述PWM驱动电路;
    从存储单元存储的预设电压表获取灰阶255时的对应电压;
    对灰阶255显示画面做外部补偿,分别获取不同子像素下的灰阶255外部补偿查找表;
    将所述外部补偿查找表引入所述存储单元,替换预设电压表中原灰阶255对应的数据;
    当像素点数据为灰阶255时,从外部补偿查找表获取对应的电压,并控制所述PWM驱动电路输出对应的驱动电压。
  2. 根据权利要求1所述的改善显示面板显示效果的方法,其中,所述外部补偿查找表包括灰阶255对应的亮态电压值。
  3. 据权利要求1所述的改善显示面板显示效果的方法,其中,所述预设电压表中暗态电压值为灰阶0对应的电压值。
  4. 根据权利要求1所述的改善显示面板显示效果的方法,其中,所述将所述外部补偿查找表引入所述存储单元,替换预设电压表中原灰阶255对应的数据的步骤之后还包括:
    当像素点数据为灰阶0~254时,根据获取的像素点数据从预设电压表获取对应的电压;
    控制所述PWM驱动电路输出对应的驱动电压。
  5. 根据权利要求1所述的改善显示面板显示效果的方法,其中,所述显示面板为OLED显示面板。
  6. 根据权利要求1所述的改善显示面板显示效果的方法,其中,所述像素点包括RGB子像素。
  7. 根据权利要求1所述的改善显示面板显示效果的方法,其中,所述像素点包括RGBW子像素。
  8. 一种改善显示面板显示效果的方法,所述显示面板包括PWM驱动电路及存储单元,所述存储单元中存储有所述PWM驱动电路对应不同灰阶的预设电压表,其中,所述方法包括:
    预先获取所述显示面板中每个像素点灰阶255对应的外部补偿查找表;
    将所述外部补偿查找表引入所述存储单元,替换预设电压表中原灰阶255对应的数据;
    根据替换后的数据运行PWM驱动电路。
  9. 根据权利要求8所述的改善显示面板显示效果的方法,其中,所述外部补偿查找表包括灰阶255对应的亮态电压值。
  10. 据权利要求8所述的改善显示面板显示效果的方法,其中,所述预设电压表中暗态电压值为灰阶0对应的电压值。
  11. 根据权利要求8所述的改善显示面板显示效果的方法,其中,所述预先获取所述显示面板中每个像素点灰阶255对应的外部补偿查找表的步骤具体包括:
    根据所述预设电压表运行所述PWM驱动电路;
    从存储器存储的预设电压表获取灰阶255时的对应电压;
    对灰阶255显示画面做外部补偿,分别获取不同子像素下的灰阶255外部补偿查找表。
  12. 根据权利要求8所述的改善显示面板显示效果的方法,其中,所述根据替换后的数据运行PWM驱动电路的步骤之后还包括:
    当像素点数据为灰阶0~254时,根据获取的像素点数据从预设电压表获取对应的电压,并控制所述PWM驱动电路输出对应的驱动电压。
  13. 根据权利要求8所述的改善显示面板显示效果的方法,其中,所述根据替换后的数据运行PWM驱动电路的步骤具体包括:
    当像素点数据为灰阶255时,从外部补偿查找表获取对应的电压,并控制所述PWM驱动电路输出对应的驱动电压。
  14. 根据权利要求8所述的改善显示面板显示效果的方法,其中,所述显示面板为OLED显示面板。
  15. 根据权利要求8所述的改善显示面板显示效果的方法,其中,所述像素点包括RGB子像素。
  16. 根据权利要求8所述的改善显示面板显示效果的方法,其中,所述像素点包括RGBW子像素。
  17. 一种显示面板,其中,所述显示面板包括PWM驱动电路及存储电路以及控制器,所述控制器分别与所述PWM驱动电路以及所述存储电路电连接,所述存储电路用于存储所述PWM驱动电路对应不同灰阶的预设电压表,
    所述控制器用于预先获取所述显示面板中每个像素点灰阶255对应的外部补偿查找表;将所述外部补偿查找表引入所述存储电路,替换预设电压表中原灰阶255对应的数据;还用于在像素点数据为灰阶255时,从外部补偿查找表获取对应的电压,并控制所述PWM驱动电路输出对应的驱动电压。
  18. 根据权利要求17所述的显示面板,其中,所述显示面板为OLED显示面板。
  19. 根据权利要求17所述的显示面板,其中,所述所述像素点包括RGB子像素。
  20. 根据权利要求17所述的显示面板,其中,所述像素点包括RGBW子像素。
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