TWI385451B - Liquid crystal display (lcd) panel and manufacturing method thereof and liquid crystal display with lcd panel disclosed by the present invention - Google Patents
Liquid crystal display (lcd) panel and manufacturing method thereof and liquid crystal display with lcd panel disclosed by the present invention Download PDFInfo
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Description
本發明是關於一種液晶顯示器,且特別是有關於一種可以提升液晶顯示器之畫面品質與降低其整體消耗功率的液晶顯示面板及其製作方法。 The present invention relates to a liquid crystal display, and more particularly to a liquid crystal display panel capable of improving the picture quality of a liquid crystal display and reducing its overall power consumption, and a method of fabricating the same.
針對多媒體社會之急速進步,多半受惠於半導體元件或顯示裝置的飛躍性進步。就顯示器而言,具有高畫質、空間利用效率佳、低消耗功率、無輻射等優越特性之液晶液晶顯示器(Liquid Crystal Display)已逐漸成為市場之主流。而在此先值得一提的是,以現今液晶顯示器的驅動架構中,通常以交流模式共用電壓(AC mode common voltage)之驅動架構(例如為線反轉的驅動方式)驅動現有中、小尺寸的液晶顯示面板(LCD panel),而以直流模式共用電壓(DC mode common voltage)之驅動架構(例如為點反轉顯示技術)驅動現有較大尺寸的液晶顯示面板。 For the rapid advancement of the multimedia society, most of them benefit from the dramatic advancement of semiconductor components or display devices. As far as the display is concerned, a liquid crystal display (Liquid Crystal Display) having superior characteristics such as high image quality, good space utilization efficiency, low power consumption, and no radiation has gradually become the mainstream of the market. What is worth mentioning here is that in the drive architecture of today's liquid crystal displays, the drive mode of AC mode common voltage (for example, the drive mode of line reversal) is usually used to drive existing medium and small sizes. The LCD panel is driven by a DC mode common voltage driving structure (for example, dot inversion display technology) to drive an existing larger size liquid crystal display panel.
然而,若以交流模式共用電壓之驅動架構驅動現有中、小尺寸的液晶顯示面板時,雖可致使液晶顯示器整體的消耗功率降低,但是液晶顯示器最終所呈現的畫面品質並不會很精緻。另外,若以直流模式共用電壓之驅動架構驅動現有較大尺寸的液晶顯示面板時,雖然可改善液晶顯示器的畫面品質,但是液晶顯示器整體的消耗功率也會隨之增加。 However, if the driving structure of the AC mode shared voltage drives the existing medium and small size liquid crystal display panels, the overall power consumption of the liquid crystal display may be reduced, but the final picture quality of the liquid crystal display is not very delicate. In addition, when a conventional large-sized liquid crystal display panel is driven by a driving structure in which a DC mode is shared voltage, the picture quality of the liquid crystal display can be improved, but the overall power consumption of the liquid crystal display also increases.
有鑑於此,本發明的目的就是提供一種液晶顯示面板 及其製作方法與具有本發明所提出之液晶顯示面板的液晶顯示器,本發明所提出的液晶顯示面板主要是藉由將液晶顯示面板之對向基板製作成兩個圖案化共用電極,並且周期性地切換這兩個圖案化共用電極之電壓,如此在交流模式的共用電壓之驅動架構下,即可使液晶顯示器之畫面品質更精緻,且液晶顯示器整體的消耗功率也會下降。 In view of this, an object of the present invention is to provide a liquid crystal display panel The liquid crystal display panel of the present invention is mainly formed by forming the opposite substrate of the liquid crystal display panel into two patterned common electrodes, and periodically. The voltage of the two patterned common electrodes is switched, so that under the driving structure of the shared voltage of the AC mode, the picture quality of the liquid crystal display can be made more refined, and the overall power consumption of the liquid crystal display also decreases.
基於上述及其他目的,本發明提供一種液晶顯示面板,包括主動元件陣列基板、對向基板、液晶層,以及驅動電路。其中,主動元件陣列基板具有多數個以陣列方式排列而成的畫素單元,且這些畫素單元又分為第一群組的畫素單元及第二群組的畫素單元。對向基板具有第一圖案化共用電極及第二圖案化共用電極,其中第一圖案化共用電極與第二圖案化共用電極分別與該第一群組的畫素單元及該第二群組的畫素單元相對。 Based on the above and other objects, the present invention provides a liquid crystal display panel including an active device array substrate, a counter substrate, a liquid crystal layer, and a driving circuit. The active device array substrate has a plurality of pixel units arranged in an array, and the pixel units are further divided into a first group of pixel units and a second group of pixel units. The opposite substrate has a first patterned common electrode and a second patterned common electrode, wherein the first patterned common electrode and the second patterned common electrode are respectively associated with the first group of pixel units and the second group The pixel unit is relative.
另外,液晶層配置於主動元件陣列基板與對向基板之間,而驅動電路用以致使上述之第一圖案化共同電極與第二圖案化共用電極之電壓周期性地互換。其中,第一圖案化共同電極與第二圖案化共用電極之電壓僅需在一個畫面期間轉變一次。 In addition, the liquid crystal layer is disposed between the active device array substrate and the opposite substrate, and the driving circuit is configured to cause the voltages of the first patterned common electrode and the second patterned common electrode to be periodically exchanged. The voltage of the first patterned common electrode and the second patterned common electrode only needs to be changed once during one picture.
從另一觀點來看,本發明提供一種具有本發明所提出之液晶顯示面板的液晶顯示器。 From another point of view, the present invention provides a liquid crystal display having the liquid crystal display panel of the present invention.
再從另一觀點來看,本發明提供一種製作液晶顯示面板方法,其包括下列步驟:首先,提供一片主動元件陣列基板,其中此主動元件陣列基板具有多數個以陣列方式排 列而成的畫素單元,且這些畫素單元又分為第一群組的畫素單元及第二群組的畫素單元。 From another point of view, the present invention provides a method for fabricating a liquid crystal display panel, comprising the steps of: firstly, providing an active device array substrate, wherein the active device array substrate has a plurality of arrays arranged in an array The pixel units are listed, and the pixel units are further divided into a pixel unit of the first group and a pixel unit of the second group.
接著,提供一片對向基板,其中此對向基板具有第一圖案化共用電極及第二圖案化共用電極,且第一圖案化共用電極與第二圖案化共用電極分別與該第一群組的畫素單元及該第二群組的畫素單元相對。之後,將液晶層配置於主動元件陣列基板與對向基板之間。最後,提供一個驅動電路以致使上述之第一圖案化共同電極與第二圖案化共用電極的電壓周期性地互換。其中,第一圖案化共同電極與第二圖案化共用電極之電壓僅需在一個畫面期間轉變一次。 Next, a counter substrate is provided, wherein the opposite substrate has a first patterned common electrode and a second patterned common electrode, and the first patterned common electrode and the second patterned common electrode are respectively associated with the first group The pixel unit is opposite to the pixel unit of the second group. Thereafter, the liquid crystal layer is disposed between the active device array substrate and the counter substrate. Finally, a drive circuit is provided to cause the voltages of the first patterned common electrode and the second patterned common electrode to be periodically interchanged. The voltage of the first patterned common electrode and the second patterned common electrode only needs to be changed once during one picture.
在本發明的一實施例中,上述之第一群組的畫素單元包括所有奇數列的畫素單元,而上述第二群組的畫素單元則包括所有偶數列的畫素單元。而在如此狀態下,液晶顯示面板的驅動方式為列反轉。 In an embodiment of the invention, the first group of pixel units includes all odd columns of pixel units, and the second group of pixel units includes all even columns of pixel units. In this state, the driving mode of the liquid crystal display panel is column inversion.
在本發明的另一實施例中,上述之第一群組的畫素單元包括所有奇數列之畫素單元中的奇數個畫素單元與所有偶數列之畫素單元中的偶數個畫素單元,而上述第二群組的畫素單元則包括所有奇數列之畫素單元中的偶數個畫素單元與所有偶數列之畫素單元中的奇數個畫素單元。而在如此狀態下,液晶顯示面板的驅動方式為點反轉。 In another embodiment of the present invention, the pixel unit of the first group includes an odd number of pixel units in all odd-numbered pixel units and an even number of pixel units in all even-numbered pixel units. And the pixel unit of the second group includes an even number of pixel units in all odd-numbered pixel units and an odd number of pixel units in all even-numbered pixel units. In this state, the driving mode of the liquid crystal display panel is dot inversion.
本發明所提供的液晶顯示面板及其製作方法可以應用在現今的液晶顯示器中,且本發明所提供的液晶顯示面板及其製作方法因為藉由將液晶顯示面板之對向基板製作成 兩個圖案化共用電極,並且周期性地切換這兩個圖案化共用電極之電壓。藉此,在交流模式共用電壓之驅動架構下,可以使液晶顯示面板達到採用直流模式共用電壓之驅動架構下所能達到的效果,而液晶顯示器最終所呈現的畫面品質也會更精緻。此外,液晶顯示器整體的消耗功率亦會比先前技術之液晶顯示面板採用交流模式共用電壓之驅動架構下減少許多。 The liquid crystal display panel provided by the present invention and the manufacturing method thereof can be applied to the present liquid crystal display, and the liquid crystal display panel provided by the present invention and the manufacturing method thereof are formed by using the opposite substrate of the liquid crystal display panel. The two common electrodes are patterned and the voltages of the two patterned common electrodes are periodically switched. Therefore, under the driving mode of the AC mode shared voltage, the liquid crystal display panel can achieve the effect that can be achieved under the driving structure of the DC mode shared voltage, and the final picture quality of the liquid crystal display is also more refined. In addition, the overall power consumption of the liquid crystal display is also much lower than that of the prior art liquid crystal display panel using the AC mode shared voltage.
為讓本發明之上述和其他目的、特徵和優點能更明顯易懂,下文特舉本發明之較佳實施例,並配合所附圖式,作詳細說明如下。 The above and other objects, features and advantages of the present invention will become more <RTIgt;
本發明所欲達成的技術功效是為提升液晶顯示器最終所呈現的畫面品質與降低其整體的消耗功率。而以下內容將係針對本案之技術特徵與所欲達成之功效做一詳加描述,以提供給該發明相關領域之技術人員參詳。 The technical effect to be achieved by the present invention is to improve the picture quality finally presented by the liquid crystal display and reduce the overall power consumption thereof. The following content will be described in detail for the technical features of the present invention and the effects to be achieved, and will be provided to the technical personnel of the relevant fields of the invention.
圖1繪示為本發明一實施例的液晶顯示器100之方塊圖。請參照圖1,液晶顯示器100包括液晶顯示面板101、閘極驅動器103,以及源極驅動器105。圖2繪示為本發明一實施例的液晶顯示面板101之示意圖。請合併參照圖1及圖2,於本實施例中,閘極驅動器103依據時序控制器(Tcon,未繪示)所提供的基本時序CPV,而利用其M條閘極配線依序輸出掃描訊號(scan signal),以對應的開啟液晶顯示面板101內的每一列畫素單元R。源極驅動器107依據時序控制器所提供的影像資料VD,而對應的輸出資料 電壓(data voltage)至液晶顯示面板101內被閘極驅動器103開啟的每一列畫素單元R。 FIG. 1 is a block diagram of a liquid crystal display 100 according to an embodiment of the invention. Referring to FIG. 1, the liquid crystal display 100 includes a liquid crystal display panel 101, a gate driver 103, and a source driver 105. FIG. 2 is a schematic diagram of a liquid crystal display panel 101 according to an embodiment of the invention. Referring to FIG. 1 and FIG. 2 together, in the embodiment, the gate driver 103 sequentially outputs the scan signals by using the M gate wirings according to the basic timing CPV provided by the timing controller (Tcon, not shown). (scan signal), correspondingly open each column of pixel units R in the liquid crystal display panel 101. The source driver 107 according to the image data VD provided by the timing controller, and corresponding output data A data voltage is supplied to each column of pixel units R in the liquid crystal display panel 101 that is turned on by the gate driver 103.
液晶顯示面板101包括主動元件陣列基板201、對向基板203、液晶層(未繪示),以及驅動電路205,其中液晶層配置於主動元件陣列基板201與對向基板203之間。主動元件陣列基板201具有多數個以陣列方式排列而成的畫素單元201a,且每一個畫素單元201a分別配置於多數條掃描線SL和多數條資料線DL的交會處,而這些畫素單元201a又分為第一群組的畫素單元及第二群組的畫素單元。 The liquid crystal display panel 101 includes an active device array substrate 201, a counter substrate 203, a liquid crystal layer (not shown), and a driving circuit 205, wherein the liquid crystal layer is disposed between the active device array substrate 201 and the opposite substrate 203. The active device array substrate 201 has a plurality of pixel units 201a arranged in an array, and each of the pixel units 201a is disposed at an intersection of a plurality of scanning lines SL and a plurality of data lines DL, and these pixel units 201a is further divided into a pixel unit of the first group and a pixel unit of the second group.
對向基板203具有第一圖案化共用電極CP1及第二圖案化共用電極CP2,其中第一圖案化共用電極CP1與第二圖案化共用電極CP2分別與第一群組的畫素單元及第二群組的畫素單元相對。驅動電路205用以致使第一圖案化共同電極CP1與第二圖案化共用電極CP2之電壓周期性地互換。 The opposite substrate 203 has a first patterned common electrode CP1 and a second patterned common electrode CP2, wherein the first patterned common electrode CP1 and the second patterned common electrode CP2 are respectively associated with the first group of pixel elements and the second group The pixel units of the group are relative. The driving circuit 205 is configured to cause the voltages of the first patterned common electrode CP1 and the second patterned common electrode CP2 to be periodically interchanged.
於本實施例中,上述之第一群組的畫素單元包括所有奇數列的畫素單元,而上述第二群組的畫素單元包括所有偶數列的畫素單元。而在如此狀態下,當液晶顯示面板101採用交流模式共用電壓之驅動架構時,使用者僅需在一個畫面(frame)期間,將第一圖案化共同電極CP1與第二圖案化共用電極CP2之電壓轉變一次即可達到列反轉(row inversion)的驅動方式。如此將有別於習知技術中,當液晶顯示面板採用交流模式共用電壓之驅動架構時,使用者需在一個畫面期間,將提供至對向基板之共用電極的共用電 壓(Vcom)之電壓轉變多次(每一列畫素單元皆需轉變一次)才能達到列反轉的驅動方式。 In this embodiment, the first group of pixel units includes all odd columns of pixel units, and the second group of pixel units includes all even columns of pixel units. In this state, when the liquid crystal display panel 101 adopts the driving mode of the AC mode shared voltage, the user only needs to use the first patterned common electrode CP1 and the second patterned common electrode CP2 during one frame. A column inversion drive can be achieved by a voltage transition once. This will be different from the prior art. When the liquid crystal display panel adopts the AC mode shared voltage driving structure, the user needs to provide the common electrode to the common electrode of the opposite substrate during one screen period. The voltage (Vcom) voltage is changed multiple times (each column of pixels needs to be changed once) to achieve the column inversion driving mode.
故依據上述可知,本實施例僅需在一個畫面期間,將第一圖案化共同電極CP1與第二圖案化共用電極CP2之電壓轉變一次即可,所以可推知的是,本實施例之液晶顯示器100整體的消耗功率會減少許多。 Therefore, according to the above, the voltage of the first patterned common electrode CP1 and the second patterned common electrode CP2 can be changed once in one screen, so it can be inferred that the liquid crystal display of the embodiment The overall power consumption of 100 will be reduced a lot.
此外,圖3繪示為本發明另一實施例的液晶顯示面板300之示意圖。請合併參照圖1~圖3,本實施例之液晶顯示面板300與液晶顯示面板101之最大不同處是在於:本實施例之第一群組的畫素單元包括所有奇數列之畫素單元中的奇數個畫素單元201a與所有偶數列之畫素單元中的偶數個畫素單元201a,而第二群組的畫素單元則包括所有奇數列之畫素單元中的偶數個畫素單元201a與所有偶數列之畫素單元中的奇數個畫素單元201a。 In addition, FIG. 3 is a schematic diagram of a liquid crystal display panel 300 according to another embodiment of the present invention. Referring to FIG. 1 to FIG. 3, the maximum difference between the liquid crystal display panel 300 and the liquid crystal display panel 101 of the present embodiment is that the pixel unit of the first group of the embodiment includes all the odd-numbered pixels in the pixel unit. The odd-numbered pixel units 201a and the even-numbered pixel units 201a of all even-numbered pixel units, and the second group of pixel units include even-numbered pixel units 201a of all odd-numbered pixel units An odd number of pixel units 201a in all pixel units of even columns.
而在如此狀態下,當液晶顯示面板300採用交流模式共用電壓之驅動架構時,使用者亦僅需在一個畫面(frame)期間,將第一圖案化共同電極CP1與第二圖案化共用電極CP2之電壓轉變一次即可達到點反轉(dot inversion)的驅動方式。如此,本實施例之液晶顯示面板300將可致使液晶顯示器100整體的消耗功率與上一實施例之液晶顯示器100相同,但因其可達到點反轉的驅動方式,故液晶顯示器100最終所呈現的畫面品質較佳。 In this state, when the liquid crystal display panel 300 adopts the driving mode of the AC mode shared voltage, the user only needs to have the first patterned common electrode CP1 and the second patterned common electrode CP2 during one frame. The voltage is changed once to achieve dot inversion driving. As such, the liquid crystal display panel 300 of the present embodiment can cause the overall power consumption of the liquid crystal display device 100 to be the same as that of the liquid crystal display device 100 of the previous embodiment. However, since the dot-reversal driving mode can be achieved, the liquid crystal display device 100 is finally rendered. The picture quality is better.
而為了要達到上述液晶顯示面板101與液晶顯示面板300所能達到的技術功效,以下將再舉出一種製作液晶顯 示面板方法。圖4繪示為依照本發明一實施例之製作液晶顯示面板方法的流程圖。請參照圖4,本實施例之製作液晶顯示面板方法400包括下列步驟:首先,如步驟S401所述,提供一片主動元件陣列基板,其中此主動元件陣列基板具有多數個以陣列方式排列而成的畫素單元,且這些畫素單元又分為第一群組的畫素單元及第二群組的畫素單元。 In order to achieve the technical effects that the liquid crystal display panel 101 and the liquid crystal display panel 300 can achieve, a liquid crystal display will be further described below. Panel method. 4 is a flow chart of a method of fabricating a liquid crystal display panel according to an embodiment of the invention. Referring to FIG. 4, the method 400 for fabricating a liquid crystal display panel of the present embodiment includes the following steps. First, as described in step S401, an active device array substrate is provided, wherein the active device array substrate has a plurality of arrays arranged in an array. A pixel unit, and the pixel units are further divided into a pixel unit of the first group and a pixel unit of the second group.
接著,如步驟S402所述,提供一片對向基板,其中此對向基板具有第一圖案化共用電極及第二圖案化共用電極,且第一圖案化共用電極與第二圖案化共用電極分別與第一群組的畫素單元及第二群組的畫素單元相對。之後,如步驟S403所述,將液晶層配置於主動元件陣列基板與對向基板之間。最後,如步驟S404所述,提供一個驅動電路以致使上述之第一圖案化共同電極與第二圖案化共用電極的電壓周期性地互換。 Next, as shown in step S402, a counter substrate is provided, wherein the opposite substrate has a first patterned common electrode and a second patterned common electrode, and the first patterned common electrode and the second patterned common electrode respectively The pixel units of the first group are opposite to the pixel units of the second group. Thereafter, as described in step S403, the liquid crystal layer is disposed between the active device array substrate and the opposite substrate. Finally, as described in step S404, a driving circuit is provided to cause the voltages of the first patterned common electrode and the second patterned common electrode to be periodically interchanged.
於本實施例中,當第一群組的畫素單元包括所有奇數列的畫素單元,而上述第二群組的畫素單元則包括所有偶數列的畫素單元。而在如此狀態下,即可達到上述實施例之液晶顯示面板101所能達到的技術功效。 In this embodiment, the pixel units of the first group include all odd-numbered columns of pixel units, and the second group of pixel units include all even-numbered pixel units. In this state, the technical effects that the liquid crystal display panel 101 of the above embodiment can achieve can be achieved.
此外,當第一群組的畫素單元包括所有奇數列之畫素單元中的奇數個畫素單元與所有偶數列之畫素單元中的偶數個畫素單元,而第二群組的畫素單元則包括所有奇數列之畫素單元中的偶數個畫素單元與所有偶數列之畫素單元中的奇數個畫素單元。而在如此狀態下,即可達到上述實 施例之液晶顯示面板300所能達到的技術功效。 In addition, when the pixel unit of the first group includes an odd number of pixel units in all odd-numbered pixel units and an even number of pixel units in all even-numbered pixel units, and the second group of pixels The unit then includes an even number of pixel units in all odd-numbered pixel units and an odd number of pixel units in all even-numbered pixel units. In this state, the above can be achieved. The technical effect that the liquid crystal display panel 300 of the embodiment can achieve.
綜上所述,本發明所提供的液晶顯示面板可以應用在現今的液晶顯示器中。而依據上述的實施例,本發明至少包含下列優點: In summary, the liquid crystal display panel provided by the present invention can be applied to today's liquid crystal displays. According to the above embodiments, the present invention at least includes the following advantages:
1.當液晶顯示面板採用交流模式共用電壓之驅動架構時,可以讓液晶顯示器整體的消耗功率比先前技術之液晶顯示面板在交流模式共用電壓之驅動架構下再下降更多。 1. When the liquid crystal display panel adopts the AC mode shared voltage driving structure, the overall power consumption of the liquid crystal display can be further reduced under the driving structure of the prior art liquid crystal display panel in the AC mode shared voltage.
2.當液晶顯示面板採用交流模式共用電壓之驅動架構時,可使液晶顯示器達到直流模式共用電壓之驅動架構下所能達到的效果,藉此而使得液晶顯示器之畫面品質更精緻。 2. When the liquid crystal display panel adopts the driving mode of the AC mode shared voltage, the liquid crystal display can achieve the effect that can be achieved under the driving structure of the DC mode shared voltage, thereby making the picture quality of the liquid crystal display more refined.
雖然本發明已以較佳實施例揭露如上,然其並非用以限定本發明,任何熟習此技藝者,在不脫離本發明之精神和範圍內,當可作些許之更動與潤飾,因此本發明之保護範圍當視後附之申請專利範圍所界定者為準。 While the present invention has been described in its preferred embodiments, the present invention is not intended to limit the invention, and the present invention may be modified and modified without departing from the spirit and scope of the invention. The scope of protection is subject to the definition of the scope of the patent application.
100‧‧‧液晶顯示器 100‧‧‧LCD display
101、300‧‧‧液晶顯示面板 101, 300‧‧‧ LCD panel
103‧‧‧閘極驅動器 103‧‧‧gate driver
105‧‧‧源極驅動器 105‧‧‧Source Driver
201‧‧‧主動元件陣列基板 201‧‧‧Active component array substrate
201a‧‧‧畫素單元 201a‧‧‧ pixel unit
203、301‧‧‧對向基板 203, 301‧‧‧ opposite substrate
205‧‧‧驅動電路 205‧‧‧ drive circuit
R‧‧‧列畫素單元 R‧‧‧ column pixel unit
CPV‧‧‧基本時序 CPV‧‧‧Basic Timing
VD‧‧‧影像資料 VD‧‧‧ image data
SL‧‧‧掃描線 SL‧‧‧ scan line
DL‧‧‧資料線 DL‧‧‧ data line
CP1‧‧‧第一圖案化共用電極 CP1‧‧‧first patterned common electrode
CP2‧‧‧第二圖案化共用電極 CP2‧‧‧Second patterned common electrode
S401~S404‧‧‧本發明一實施例之製作液晶顯示面板方法的流程圖各步驟 S401~S404‧‧‧ steps of the flow chart of the method for fabricating a liquid crystal display panel according to an embodiment of the present invention
圖1繪示為本發明一實施例的液晶顯示器之方塊圖。 1 is a block diagram of a liquid crystal display according to an embodiment of the invention.
圖2繪示為本發明一實施例的液晶顯示面板之示意圖。 2 is a schematic view of a liquid crystal display panel according to an embodiment of the invention.
圖3繪示為本發明另一實施例的液晶顯示面板之示意圖。 3 is a schematic view of a liquid crystal display panel according to another embodiment of the present invention.
圖4繪示為依照本發明一實施例之製作液晶顯示面板方法的流程圖。 4 is a flow chart of a method of fabricating a liquid crystal display panel according to an embodiment of the invention.
300‧‧‧液晶顯示面 300‧‧‧LCD display
201‧‧‧主動元件陣列基板 201‧‧‧Active component array substrate
201a‧‧‧畫素單元 201a‧‧‧ pixel unit
205‧‧‧驅動電路 205‧‧‧ drive circuit
301‧‧‧對向基板 301‧‧‧ opposite substrate
R‧‧‧列畫素單元 R‧‧‧ column pixel unit
SL‧‧‧掃描線 SL‧‧‧ scan line
DL‧‧‧資料線 DL‧‧‧ data line
CP1‧‧‧第一圖案化共用電極 CP1‧‧‧first patterned common electrode
CP2‧‧‧第二圖案化共用電極 CP2‧‧‧Second patterned common electrode
Claims (16)
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TWI484466B (en) * | 2013-05-24 | 2015-05-11 | Au Optronics Corp | Driving method of display panel |
US11011094B1 (en) | 2020-10-16 | 2021-05-18 | Giantplus Technology Co., Ltd | Display device with low power consumption and polarity inversion |
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TW200409076A (en) * | 2002-11-20 | 2004-06-01 | Mitsubishi Electric Corp | Image display device |
TW200519827A (en) * | 2003-11-13 | 2005-06-16 | Seiko Epson Corp | Driving method for optoelectronic device, optoelectronic device, and electronic equipment |
US20070247410A1 (en) * | 2006-04-24 | 2007-10-25 | Seiko Epson Corporation | Liquid crystal device, control circuit therefor, and electronic apparatus |
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TW200409076A (en) * | 2002-11-20 | 2004-06-01 | Mitsubishi Electric Corp | Image display device |
TW200519827A (en) * | 2003-11-13 | 2005-06-16 | Seiko Epson Corp | Driving method for optoelectronic device, optoelectronic device, and electronic equipment |
US20070247410A1 (en) * | 2006-04-24 | 2007-10-25 | Seiko Epson Corporation | Liquid crystal device, control circuit therefor, and electronic apparatus |
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TWI484466B (en) * | 2013-05-24 | 2015-05-11 | Au Optronics Corp | Driving method of display panel |
US9400566B2 (en) | 2013-05-24 | 2016-07-26 | Au Optronics Corp. | Driving method for display panel |
US11011094B1 (en) | 2020-10-16 | 2021-05-18 | Giantplus Technology Co., Ltd | Display device with low power consumption and polarity inversion |
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