TWI773274B - Pixel compensation method for OLED display panel, OLED display device, and information processing device - Google Patents

Pixel compensation method for OLED display panel, OLED display device, and information processing device Download PDF

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TWI773274B
TWI773274B TW110114981A TW110114981A TWI773274B TW I773274 B TWI773274 B TW I773274B TW 110114981 A TW110114981 A TW 110114981A TW 110114981 A TW110114981 A TW 110114981A TW I773274 B TWI773274 B TW I773274B
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pixel compensation
display data
input display
reflection area
pixel
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TW202242829A (en
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張華罡
王永剛
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大陸商北京集創北方科技股份有限公司
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Abstract

本發明主要揭示一種OLED顯示面板之畫素補償方法,係由一具一畫素補償單元的一顯示驅動晶片執行。在應用本發明之方法的情況下,該顯示驅動晶片在接收一輸入顯示數據後,其畫素補償單元可選擇執行第一畫素補償模式或第二畫素補償模式。執行所述第二畫素補償模式時,該畫素補償單元配合使用一行寄存器與一畫素補償算法而完成對於低反射區之輸入顯示數據的畫素補償處理,而不對高反射區之輸入顯示數據進行任何形式的畫素補償。依據本發明之設計,執行第二畫素補償模式時,係可依據所述低反射區之輸入顯示數據而適應性地設定一取樣畫素區塊的大小,如此係可增加補償精度及提升補償效果。The present invention mainly discloses a pixel compensation method of an OLED display panel, which is performed by a display driving chip having a pixel compensation unit. In the case of applying the method of the present invention, after the display driver chip receives an input display data, the pixel compensation unit of the display driver chip can choose to execute the first pixel compensation mode or the second pixel compensation mode. When executing the second pixel compensation mode, the pixel compensation unit uses a row of registers and a pixel compensation algorithm to complete the pixel compensation processing for the input display data in the low reflection area, but not for the input display in the high reflection area The data is subject to any form of pixel compensation. According to the design of the present invention, when the second pixel compensation mode is executed, the size of a sample pixel block can be adaptively set according to the input display data of the low-reflection area, which can increase the compensation accuracy and improve the compensation Effect.

Description

OLED顯示面板之畫素補償方法、OLED顯示裝置、及資訊處理裝置Pixel compensation method for OLED display panel, OLED display device, and information processing device

本發明係關於OLED顯示裝置之技術領域,尤指一種OLED顯示面板之畫素補償方法。The present invention relates to the technical field of OLED display devices, and more particularly, to a pixel compensation method for an OLED display panel.

已知,有機發光二極體(Organic Light-Emitting Diode, OLED)具有自發光特性、高亮度、高對比、廣視角、功率消耗、高反應速率等優點, 因此目前已被廣泛地應用於自發光顯示面板之製作,包括主動式OLED(即,AMOLED)顯示面板及主動式OLED(即,PMOLED)顯示面板。It is known that Organic Light-Emitting Diode (OLED) has the advantages of self-luminescence, high brightness, high contrast, wide viewing angle, power consumption, high reaction rate, etc., so it has been widely used in self-luminescence. The manufacture of display panels includes active OLED (ie, AMOLED) display panels and active OLED (ie, PMOLED) display panels.

圖1顯示習知的一種OLED顯示裝置的方塊圖。如圖1所示,該OLED顯示裝置1a主要包括一OLED顯示面板11a和一顯示驅動電路12a,其中,該顯示驅動電路12a包含至少一顯示驅動晶片與一時序控制器。圖2顯示習知的顯示驅動電路12a所包含之顯示驅動晶片的方塊圖。在智慧型手機的應用領域中,OLED顯示裝置1a被要求必須具有高幀率、反應速度更快、畫質更亮更清晰等性質。然而,利用有機材料製成的OLED顯示面板11a具有老化問題,從而使OLED顯示面板11a在使用一段時間後會出現殘像、顯示亮度不均等現象。為了解決這些問題,如圖2所示,顯示製造商在顯示驅動晶片121a之中設有一畫素補償單元1211a,其包含至少一種算法,包括Demura算法、老化補償算法(DBI)、三維色彩空間校正算法(3D-LUT)等,用以對顯示數據進行全域補償。FIG. 1 shows a block diagram of a conventional OLED display device. As shown in FIG. 1, the OLED display device 1a mainly includes an OLED display panel 11a and a display driving circuit 12a, wherein the display driving circuit 12a includes at least one display driving chip and a timing controller. FIG. 2 shows a block diagram of a display driving chip included in the conventional display driving circuit 12a. In the application field of smart phones, the OLED display device 1a is required to have properties such as high frame rate, faster response speed, brighter and clearer picture quality, and the like. However, the OLED display panel 11a made of organic materials has an aging problem, so that after a period of use, the OLED display panel 11a may have phenomena such as afterimages and uneven display brightness. In order to solve these problems, as shown in FIG. 2, the display manufacturer provides a pixel compensation unit 1211a in the display driver chip 121a, which includes at least one algorithm, including Demura algorithm, burn-in compensation algorithm (DBI), three-dimensional color space correction Algorithms (3D-LUT), etc., are used to perform global compensation on the display data.

進行畫素補償時,如圖2所示,該畫素補償單元1211a係與一寄存器1212a配合以暫存由外部輸入的顯示數據。應可理解,當需要使用到一種以上的算法對顯示數據進行補償時,就需要使用更多的寄存器1212a容量來對算法所使用到的相關數據進行寄存。目前,顯示驅動晶片121a內係以SRAM作為所述寄存器1212a。可以想像的是,隨著必須進行寄存的數據越多,SRAM所需容量和面積也就越大,導致顯示驅動晶片的晶片面積(Chip size)無法被縮小,最終對製造商的晶片製造成本帶來負面效果。When performing pixel compensation, as shown in FIG. 2 , the pixel compensation unit 1211a cooperates with a register 1212a to temporarily store the display data input from the outside. It should be understood that when more than one algorithm needs to be used to compensate the display data, more capacity of the register 1212a needs to be used to register the relevant data used by the algorithm. Currently, the display driver chip 121a uses SRAM as the register 1212a. It is conceivable that with the more data that must be registered, the larger the capacity and area of the SRAM will be, so that the chip size of the display driver chip cannot be reduced, and ultimately the chip manufacturing cost of the manufacturer will be reduced. to negative effects.

由上述說明可知,本領域亟需一種新式的OLED顯示面板之畫素補償方法。It can be seen from the above description that there is an urgent need in the art for a new pixel compensation method for an OLED display panel.

本發明之主要目的在於提供一種OLED顯示面板之畫素補償方法,係由一具一畫素補償單元的一顯示驅動晶片執行。在應用本發明之方法的情況下,該顯示驅動晶片在接收一輸入顯示數據後,其畫素補償單元可選擇執行第一畫素補償模式或第二畫素補償模式。執行所述第二畫素補償模式時,該畫素補償單元配合使用一行寄存器與一畫素補償算法而完成對於低反射區之輸入顯示數據的畫素補償處理,而不對高反射區之輸入顯示數據進行任何形式的畫素補償。依據本發明之設計,執行第二畫素補償模式時,係可依據所述低反射區之輸入顯示數據而適應性地設定一取樣畫素區塊的大小,如此係可增加補償精度及提升補償效果。The main purpose of the present invention is to provide a pixel compensation method of an OLED display panel, which is performed by a display driving chip having a pixel compensation unit. In the case of applying the method of the present invention, after the display driver chip receives an input display data, the pixel compensation unit of the display driver chip can choose to execute the first pixel compensation mode or the second pixel compensation mode. When executing the second pixel compensation mode, the pixel compensation unit uses a row of registers and a pixel compensation algorithm to complete the pixel compensation processing for the input display data in the low reflection area, but not for the input display in the high reflection area The data is subject to any form of pixel compensation. According to the design of the present invention, when the second pixel compensation mode is executed, the size of a sample pixel block can be adaptively set according to the input display data of the low-reflection area, which can increase the compensation accuracy and improve the compensation Effect.

為達成上述目的,本發明提出所述OLED顯示面板之畫素補償方法,其係由具有一畫素補償單元的一顯示驅動晶片執行,且包括以下步驟:In order to achieve the above object, the present invention provides a pixel compensation method for the OLED display panel, which is performed by a display driver chip having a pixel compensation unit, and includes the following steps:

接收一輸入顯示數據,接著選擇執行一第一畫素補償模式或一第二畫素補償模式;receiving an input display data, and then selecting to execute a first pixel compensation mode or a second pixel compensation mode;

在選擇執行所述第一畫素補償模式的情況下,使該畫素補償單元配合使用一靜態隨機存取記憶體(SRAM)和一行寄存器(line buffer)而完成對於所述輸入顯示數據的畫素補償處理,從而產生一第一輸出顯示數據;以及When the first pixel compensation mode is selected to be executed, the pixel compensation unit is made to use a static random access memory (SRAM) and a line buffer to complete the rendering of the input display data. pixel compensation processing, thereby generating a first output display data; and

在選擇執行所述第二畫素補償模式的情況下,使該畫素補償單元僅使用該行寄存器(line buffer)而完成對於所述輸入顯示數據的畫素補償處理,從而產生一第二輸出顯示數據。When the second pixel compensation mode is selected to be executed, the pixel compensation unit only uses the line buffer to complete the pixel compensation process for the input display data, thereby generating a second output Display Data.

在一實施例中,所述輸入顯示數據包含一高反射區之輸入顯示數據與一低反射區之輸入顯示數據。In one embodiment, the input display data includes input display data for a high reflection area and input display data for a low reflection area.

在一實施例中, 執行所述第一畫素補償模式時,該畫素補償單元將所述高反射區之輸入顯示數據和所述低反射區之輸入顯示數據分別寄存在該靜態隨機存取記憶體和該行寄存器之中,而後分別採用一第一畫素補償算法和一第二畫素補償算法以完成所述高反射區之輸入顯示數據和所述低反射區之輸入顯示數據之畫素補償處理。In one embodiment, when the first pixel compensation mode is executed, the pixel compensation unit registers the input display data of the high reflection area and the input display data of the low reflection area in the SRAM respectively. In the memory and the row of registers, a first pixel compensation algorithm and a second pixel compensation algorithm are respectively used to complete the drawing of the input display data of the high reflection area and the input display data of the low reflection area. Element compensation processing.

在一實施例中, 執行所述第二畫素補償模式時,該畫素補償單元採用一畫素補償算法以完成所述低反射區之輸入顯示數據之畫素補償處理,而不對所述高反射區之輸入顯示數據進行畫素補償處理。In one embodiment, when the second pixel compensation mode is executed, the pixel compensation unit adopts a pixel compensation algorithm to complete the pixel compensation processing of the input display data of the low-reflection area, without compromising the high-reflection area. The input display data of the reflection area is processed by pixel compensation.

在一實施例中, 執行所述第二畫素補償模式時,該畫素補償單元被允許依據所述低反射區之輸入顯示數據而設定一取樣畫素區塊的大小。In one embodiment, when the second pixel compensation mode is executed, the pixel compensation unit is allowed to set the size of a sample pixel block according to the input display data of the low reflection area.

並且,本發明同時提供一種OLED顯示裝置,其包括至少一顯示驅動晶片和一OLED顯示面板,其中,該顯示驅動晶片具有一畫素補償單元,且用以執行一OLED顯示面板之畫素補償方法;所述OLED顯示面板之畫素補償方法包括以下步驟:Furthermore, the present invention also provides an OLED display device, which includes at least a display driver chip and an OLED display panel, wherein the display driver chip has a pixel compensation unit, and is used for executing a pixel compensation method for an OLED display panel ; The pixel compensation method of the OLED display panel comprises the following steps:

接收一輸入顯示數據,接著選擇執行一第一畫素補償模式或一第二畫素補償模式;receiving an input display data, and then selecting to execute a first pixel compensation mode or a second pixel compensation mode;

在選擇執行所述第一畫素補償模式的情況下,使該畫素補償單元配合使用一靜態隨機存取記憶體(SRAM)和一行寄存器(line buffer)而完成對於所述輸入顯示數據的畫素補償處理,從而產生一第一輸出顯示數據;以及When the first pixel compensation mode is selected to be executed, the pixel compensation unit is made to use a static random access memory (SRAM) and a line buffer to complete the rendering of the input display data. pixel compensation processing, thereby generating a first output display data; and

在選擇執行所述第二畫素補償模式的情況下,使該畫素補償單元僅使用該行寄存器(line buffer)而完成對於所述輸入顯示數據的畫素補償處理,從而產生一第二輸出顯示數據。When the second pixel compensation mode is selected to be executed, the pixel compensation unit only uses the line buffer to complete the pixel compensation process for the input display data, thereby generating a second output Display Data.

在一實施例中,所述輸入顯示數據包含一高反射區之輸入顯示數據與一低反射區之輸入顯示數據。In one embodiment, the input display data includes input display data for a high reflection area and input display data for a low reflection area.

在一實施例中, 執行所述第一畫素補償模式時,該畫素補償單元將所述高反射區之輸入顯示數據和所述低反射區之輸入顯示數據分別寄存在該靜態隨機存取記憶體和該行寄存器之中,而後分別採用一第一畫素補償算法和一第二畫素補償算法以完成所述高反射區之輸入顯示數據和所述低反射區之輸入顯示數據之畫素補償處理。In one embodiment, when the first pixel compensation mode is executed, the pixel compensation unit registers the input display data of the high reflection area and the input display data of the low reflection area in the SRAM respectively. In the memory and the row of registers, a first pixel compensation algorithm and a second pixel compensation algorithm are respectively used to complete the drawing of the input display data of the high reflection area and the input display data of the low reflection area. Element compensation processing.

在一實施例中, 執行所述第二畫素補償模式時,該畫素補償單元採用一畫素補償算法以完成所述低反射區之輸入顯示數據之畫素補償處理,而不對所述高反射區之輸入顯示數據進行畫素補償處理。In one embodiment, when the second pixel compensation mode is executed, the pixel compensation unit adopts a pixel compensation algorithm to complete the pixel compensation processing of the input display data of the low-reflection area, without compromising the high-reflection area. The input display data of the reflection area is processed by pixel compensation.

在一實施例中, 執行所述第二畫素補償模式時,該畫素補償單元被允許依據所述低反射區之輸入顯示數據而設定一取樣畫素區塊的大小。In one embodiment, when the second pixel compensation mode is executed, the pixel compensation unit is allowed to set the size of a sample pixel block according to the input display data of the low reflection area.

本發明同時提供一種資訊處理裝置,其具有如前所述本發明之OLED顯示裝置。The present invention also provides an information processing device having the OLED display device of the present invention as described above.

在一實施例中,該資訊處理裝置是選自於由智能手機、智能手錶、智能手環、平板電腦、筆記型電腦、一體式電腦、和門禁裝置所組成群組之中的一種電子裝置。In one embodiment, the information processing device is an electronic device selected from the group consisting of a smart phone, a smart watch, a smart bracelet, a tablet computer, a notebook computer, an all-in-one computer, and an access control device.

為使  貴審查委員能進一步瞭解本發明之結構、特徵、目的、與其優點,茲附以圖式及較佳具體實施例之詳細說明如後。In order to enable your examiners to further understand the structure, characteristics, purpose, and advantages of the present invention, drawings and detailed descriptions of preferred embodiments are attached as follows.

在開始說明本發明之一種OLED顯示面板之畫素補償方法之前,必須先介紹目前的OLED顯示面板之實際使用情況。熟悉OLED面板之設計與製作的工程師應知道,為了有效地提高OLED面板之發光效率和色純度,OLED面板內部設有微腔結構,係由高反射層與低反射層周期性交替排布而成。因此,可將對應高反射層與低反射層的顯示區塊稱為高反射區(H region)與低反射區(L region)。圖3顯示一OLED顯示面板在一彩色顯示模式下與一全灰階顯示模式下的正視圖。如圖3所示,若OLED面板在彩色顯示模式下後立即被切換至全灰階顯示模式,在沒有進行老化補償(例如:DBI補償)的情況下,低反射區無法百分百的顯示灰階,從而在OLED面板上留下殘影。Before starting to describe a pixel compensation method for an OLED display panel of the present invention, it is necessary to introduce the actual usage of the current OLED display panel. Engineers who are familiar with the design and production of OLED panels should know that in order to effectively improve the luminous efficiency and color purity of OLED panels, there are microcavity structures inside the OLED panels, which are formed by periodically alternating high-reflection layers and low-reflection layers. . Therefore, the display regions corresponding to the high-reflection layer and the low-reflection layer can be referred to as a high-reflection region (H region) and a low-reflection region (L region). FIG. 3 shows front views of an OLED display panel in a color display mode and a full grayscale display mode. As shown in Figure 3, if the OLED panel is switched to the full grayscale display mode immediately after being in the color display mode, the low-reflection area cannot display 100% grayscale without performing aging compensation (eg DBI compensation). step, leaving an afterimage on the OLED panel.

圖4顯示一OLED顯示面板在一彩色顯示模式下與一全灰階顯示模式下的正視圖。如圖4所示,若OLED面板在彩色顯示模式下後立即被切換至全灰階顯示模式,在有進行老化補償(如DBI補償)的情況下,OLED面板可以百分百的全域顯示灰階,不會有殘影。FIG. 4 shows front views of an OLED display panel in a color display mode and a full grayscale display mode. As shown in Figure 4, if the OLED panel is switched to the full grayscale display mode immediately after being in the color display mode, with aging compensation (such as DBI compensation), the OLED panel can display grayscale in 100% of the entire area. , there will be no afterimage.

圖5顯示應用本發明之一種OLED顯示面板之畫素補償方法的一OLED顯示裝置的方塊圖。如圖5所示,該OLED顯示裝置1主要包括一OLED顯示面板11和一顯示驅動電路12,其中,該顯示驅動電路12包含至少一顯示驅動晶片與一時序控制器。圖6顯示包含於圖5所示的顯示驅動電路12之中的一顯示驅動晶片的方塊圖。如圖6所示,顯示驅動晶片121之中設有一畫素補償單元1211,其包含至少一種算法,包括且不限於Demura算法、老化補償算法(DBI)、三維色彩空間校正算法(3D-LUT)等,用以對顯示數據進行補償。進一步地,依據本發明之設計,該顯示驅動晶片121還包括:用以寄存高反射區之輸入顯示數據的SRAM 1212、用以寄存低反射區之輸入顯示數據的行寄存器 1213、以及用以儲存各種畫素補償算法所需之設定參數的快閃記憶體(flash)1214。5 shows a block diagram of an OLED display device applying a pixel compensation method for an OLED display panel of the present invention. As shown in FIG. 5 , the OLED display device 1 mainly includes an OLED display panel 11 and a display driving circuit 12 , wherein the display driving circuit 12 includes at least one display driving chip and a timing controller. FIG. 6 shows a block diagram of a display driver chip included in the display driver circuit 12 shown in FIG. 5 . As shown in FIG. 6 , a pixel compensation unit 1211 is provided in the display driver chip 121, which includes at least one algorithm, including but not limited to Demura algorithm, burn-in compensation algorithm (DBI), three-dimensional color space correction algorithm (3D-LUT) etc. to compensate the display data. Further, according to the design of the present invention, the display driver chip 121 further includes: an SRAM 1212 for registering the input display data of the high reflection area, a line register 1213 for registering the input display data of the low reflection area, and a storage A flash memory 1214 for setting parameters required by various pixel compensation algorithms.

圖7顯示本發明之一種OLED顯示面板之畫素補償方法的流程圖。如圖5、圖6與圖7所示,本發明之OLED顯示面板之畫素補償方法其係由具有一畫素補償單元1211的一顯示驅動晶片121執行,且包括以下方法流程首先執行步驟S1:接收一輸入顯示數據,且選擇執行一第一畫素補償模式或一第二畫素補償模式。繼續地,在步驟S2中,在選擇執行所述第一畫素補償模式的情況下,使該畫素補償單元1211配合一SRAM 1212而完成對於所述輸入顯示數據的畫素補償處理,從而產生一第一輸出顯示數據。FIG. 7 shows a flowchart of a pixel compensation method for an OLED display panel according to the present invention. As shown in FIG. 5 , FIG. 6 and FIG. 7 , the pixel compensation method of the OLED display panel of the present invention is performed by a display driver chip 121 having a pixel compensation unit 1211 , and includes the following method flow. First, step S1 is performed. : Receive an input display data, and select to execute a first pixel compensation mode or a second pixel compensation mode. Continuing, in step S2, when the first pixel compensation mode is selected to be executed, the pixel compensation unit 1211 cooperates with a SRAM 1212 to complete the pixel compensation process for the input display data, thereby generating A first output displays data.

圖8A顯示操作在一般模式下的顯示驅動晶片之方塊圖。依據本發明,所述第一畫素補償模式亦可稱為一般模式(Normal mode)。如圖8A,在一般模式下,畫素補償單元1211會先確認及區分所述輸入顯示數據包含之高反射區之輸入顯示數據和低反射區之輸入顯示數據;接著,將高反射區之輸入顯示數據和低反射區之輸入顯示數據分別寄存在SRAM 1212與行寄存器1213。繼續地,在自該快閃記憶體121中存取所需使用的設定參數後,該畫素補償單元1211採用一第一畫素補償算法和一第二畫素補償算法以分別完成所述高反射區之輸入顯示數據和所述低反射區之輸入顯示數據之畫素補償處理。在可行的實施例中,該第一畫素補償算法和該第二畫素補償算法可為相同或不同的畫素補償算法。如圖4所示,若OLED面板在彩色顯示模式下後立即被切換至全灰階顯示模式,在進行全域畫素補償(如DBI老化補償)的情況下,OLED面板可以百分百的全域顯示灰階,不會有殘影。FIG. 8A shows a block diagram of a display driver chip operating in a normal mode. According to the present invention, the first pixel compensation mode may also be referred to as a normal mode. As shown in FIG. 8A , in the normal mode, the pixel compensation unit 1211 will first confirm and distinguish the input display data of the high-reflection area and the input display data of the low-reflection area included in the input display data; then, the input display data of the high-reflection area will be The display data and the input display data of the low reflection area are registered in the SRAM 1212 and the line register 1213, respectively. Continuing, after accessing the required setting parameters from the flash memory 121, the pixel compensation unit 1211 adopts a first pixel compensation algorithm and a second pixel compensation algorithm to respectively complete the high Pixel compensation processing of the input display data of the reflection area and the input display data of the low reflection area. In a feasible embodiment, the first pixel compensation algorithm and the second pixel compensation algorithm may be the same or different pixel compensation algorithms. As shown in Figure 4, if the OLED panel is switched to the full grayscale display mode immediately after being in the color display mode, under the condition of global pixel compensation (such as DBI aging compensation), the OLED panel can display 100% of the global display. Grayscale, there will be no afterimage.

如圖7所示,在步驟S3之中,在選擇執行所述第二畫素補償模式的情況下,使該畫素補償單元僅使用該行寄存器(line buffer)而完成對於所述輸入顯示數據的畫素補償處理,從而產生一第二輸出顯示數據。圖8B顯示操作在L_alone模式下的顯示驅動晶片之方塊圖。依據本發明,所述第二畫素補償模式亦可稱為L_alone模式,亦即,只對輸入顯示數據所包含之低反射區之輸入顯示數據進行畫素補償。如圖8B,在L_alone模式下,畫素補償單元1211會將低反射區之輸入顯示數據寄存在該行寄存器內。繼續地,在自該快閃記憶體121中存取所需使用的設定參數後,該畫素補償單元1211採用一畫素補償算法完成所述低反射區之輸入顯示數據之畫素補償處理,而不對所述高反射區之輸入顯示數據進行任何的畫素補償處理。As shown in FIG. 7 , in step S3 , in the case where the second pixel compensation mode is selected to be executed, the pixel compensation unit only uses the line buffer to complete the processing of the input display data pixel compensation processing, thereby generating a second output display data. FIG. 8B shows a block diagram of a display driver chip operating in L_alone mode. According to the present invention, the second pixel compensation mode can also be called the L_alone mode, that is, pixel compensation is performed only on the input display data of the low-reflection region included in the input display data. As shown in FIG. 8B , in the L_alone mode, the pixel compensation unit 1211 will register the input display data of the low reflection area in the register of the row. Continuing, after accessing the required setting parameters from the flash memory 121, the pixel compensation unit 1211 adopts a pixel compensation algorithm to complete the pixel compensation processing of the input display data of the low reflection area, No pixel compensation processing is performed on the input display data of the high-reflection area.

圖9顯示一OLED顯示面板在一彩色顯示模式下與一全灰階顯示模式下的正視圖。如圖9所示,若圖5所示之OLED面板11在彩色顯示模式下後立即被切換至全灰階顯示模式,在採用L_alone模式完成低反射區之輸入顯示數據的畫素補償(如DBI老化補償)的情況下,與圖3所示之無進行老化補償下之全灰階顯示的OLED面板相比,應用本發明之畫素補償方法的OLED面板11所顯示的灰階畫面不會出現明顯的殘影。FIG. 9 shows front views of an OLED display panel in a color display mode and a full grayscale display mode. As shown in FIG. 9 , if the OLED panel 11 shown in FIG. 5 is switched to the full grayscale display mode immediately after being in the color display mode, the pixel compensation of the input display data in the low reflection area (such as DBI) is completed in the L_alone mode. In the case of aging compensation), compared with the OLED panel shown in FIG. 3 with full grayscale display without aging compensation, the grayscale image displayed by the OLED panel 11 using the pixel compensation method of the present invention does not appear. Obvious afterimage.

圖10顯示所述低反射區之輸入顯示數據而設定的複數個取樣畫素區塊之示意圖。重複說明的是,執行所述第二畫素補償模式(即,L_alone模式)時,該畫素補償單元1211將所述低反射區之輸入顯示數據寄存在該行寄存器1213,接著採用一畫素補償算法以完成所述低反射區之輸入顯示數據之畫素補償處理,而不對所述高反射區之輸入顯示數據進行畫素補償處理。換句話說,在L_alone模式下,畫素補償單元1211僅使用行寄存器1213與畫素補償算法完成低反射區之輸入顯示數據之畫素補償處理。因此,配合下表(1)所示,執行所述第二畫素補償模式時,該畫素補償單元被允許依據所接收到的低反射區之輸入顯示數據而設定一取樣畫素區塊的大小,從而彈性地完成各個取樣畫素區塊在行寄存器1213的寄存。 表(1) REG:L_alone_block Block_0 2×2 pixels Block_1 2×4 pixels Block_2 4×2 pixels Block_3 4×4 pixels ‧ ‧ ‧ ‧ ‧ ‧ FIG. 10 shows a schematic diagram of a plurality of sample pixel blocks set by inputting display data in the low reflection area. It is repeated that when the second pixel compensation mode (ie, L_alone mode) is executed, the pixel compensation unit 1211 registers the input display data of the low-reflection area in the line register 1213, and then uses one pixel The compensation algorithm is used to complete the pixel compensation processing of the input display data of the low reflection area without performing pixel compensation processing of the input display data of the high reflection area. In other words, in the L_alone mode, the pixel compensation unit 1211 only uses the line register 1213 and the pixel compensation algorithm to complete the pixel compensation processing of the input display data in the low reflection area. Therefore, according to the following table (1), when the second pixel compensation mode is executed, the pixel compensation unit is allowed to set a sampling pixel block according to the received input display data of the low-reflection area. size, so as to flexibly complete the registration of each sample pixel block in the row register 1213. Table 1) REG:L_alone_block Block_0 2×2 pixels Block_1 2×4 pixels Block_2 4×2 pixels Block_3 4×4 pixels ‧ ‧ ‧ ‧ ‧ ‧

執行L_alone模式時,如圖10所示,若低反射層區域(L region)大,則可以將取樣畫素區塊的大小(即,block size)設為較大數值,以確保行寄存器1213足夠使用。相反地,若L region小,則可以將block size設為較小數值,如此可以增加補償精細度且提升補償效果。When L_alone mode is executed, as shown in FIG. 10 , if the L region is large, the size of the sample pixel block (ie, block size) can be set to a larger value to ensure that the line register 1213 is sufficient use. Conversely, if the L region is small, the block size can be set to a small value, which can increase the compensation precision and improve the compensation effect.

如此,上述已完整且清楚地說明本發明之一種OLED顯示面板之畫素補償方法;並且,經由上述可得知本發明具有下列之優點:In this way, the above has completely and clearly described a pixel compensation method for an OLED display panel of the present invention; and from the above, it can be known that the present invention has the following advantages:

(1)本發明揭示一種OLED顯示面板之畫素補償方法,係由一具一畫素補償單元的一顯示驅動晶片執行。在應用本發明之方法的情況下,該顯示驅動晶片在接收一輸入顯示數據後,其畫素補償單元可選擇執行第一畫素補償模式或第二畫素補償模式。執行所述第二畫素補償模式時,該畫素補償單元配合使用一行寄存器與一畫素補償算法而完成對於低反射區之輸入顯示數據的畫素補償處理,而不對高反射區之輸入顯示數據進行任何形式的畫素補償。依據本發明之設計,執行第二畫素補償模式時,係可依據所述低反射區之輸入顯示數據而適應性地設定一取樣畫素區塊的大小,如此係可增加補償精度及提升補償效果。(1) The present invention discloses a pixel compensation method for an OLED display panel, which is performed by a display driver chip having a pixel compensation unit. In the case of applying the method of the present invention, after the display driver chip receives an input display data, the pixel compensation unit of the display driver chip can choose to execute the first pixel compensation mode or the second pixel compensation mode. When executing the second pixel compensation mode, the pixel compensation unit uses a row of registers and a pixel compensation algorithm to complete the pixel compensation processing for the input display data in the low reflection area, but not for the input display in the high reflection area The data is subject to any form of pixel compensation. According to the design of the present invention, when the second pixel compensation mode is executed, the size of a sample pixel block can be adaptively set according to the input display data of the low-reflection area, which can increase the compensation accuracy and improve the compensation Effect.

(2)本發明同時提供一種OLED顯示裝置,其包括至少一顯示驅動晶片和一OLED顯示面板,且該顯示驅動晶片用以執行前述本發明之一種OLED顯示面板之畫素補償方法。(2) The present invention also provides an OLED display device, which includes at least one display driver chip and an OLED display panel, and the display driver chip is used to perform the aforementioned pixel compensation method for an OLED display panel of the present invention.

(3)本發明同時提供一種資訊處理裝置,其具有如前所述本發明之OLED顯示裝置。並且,該資訊處理裝置是選自於由智能手機、智能手錶、智能手環、平板電腦、筆記型電腦、一體式電腦、和門禁裝置所組成群組之中的一種電子裝置。(3) The present invention also provides an information processing device having the OLED display device of the present invention as described above. Moreover, the information processing device is an electronic device selected from the group consisting of smart phones, smart watches, smart bracelets, tablet computers, notebook computers, all-in-one computers, and access control devices.

必須加以強調的是,前述本案所揭示者乃為較佳實施例,舉凡局部之變更或修飾而源於本案之技術思想而為熟習該項技藝之人所易於推知者,俱不脫本案之專利權範疇。It must be emphasized that the above-mentioned disclosure in this case is a preferred embodiment, and any partial changes or modifications originating from the technical ideas of this case and easily inferred by those who are familiar with the art are within the scope of the patent of this case. category of rights.

綜上所陳,本案無論目的、手段與功效,皆顯示其迥異於習知技術,且其首先發明合於實用,確實符合發明之專利要件,懇請  貴審查委員明察,並早日賜予專利俾嘉惠社會,是為至禱。To sum up, regardless of the purpose, means and effect of this case, it shows that it is completely different from the conventional technology, and its first invention is practical, and it does meet the patent requirements of the invention. Society is to pray for the best.

1a:OLED顯示裝置 11a:OLED顯示面板 12a:顯示驅動電路 1:OLED顯示裝置 11:OLED顯示面板 12:顯示驅動電路 121:顯示驅動晶片 1211:畫素補償單元 1212:SRAM 1213:行寄存器 1214:快閃記憶體 S1:接收一輸入顯示數據,接著選擇執行一第一畫素補償模式或一第二畫素補償模式 S2:在選擇執行所述第一畫素補償模式的情況下,使該畫素補償單元配合使用一SRAM和一行寄存器而完成對於所述輸入顯示數據的畫素補償處理,從而產生一第一輸出顯示數據 S3:在選擇執行所述第二畫素補償模式的情況下,使該畫素補償單元僅使用該行寄存器而完成對於所述輸入顯示數據的畫素補償處理,從而產生一第二輸出顯示數據 1a: OLED display device 11a: OLED display panel 12a: Display driver circuit 1: OLED display device 11: OLED display panel 12: Display driver circuit 121: Display driver chip 1211: pixel compensation unit 1212:SRAM 1213: line register 1214: Flash memory S1: Receive an input display data, and then select to execute a first pixel compensation mode or a second pixel compensation mode S2: In the case of selecting and executing the first pixel compensation mode, make the pixel compensation unit use an SRAM and a row of registers to complete the pixel compensation processing for the input display data, thereby generating a first output Display Data S3: In the case where the second pixel compensation mode is selected to be executed, the pixel compensation unit only uses the row register to complete the pixel compensation processing for the input display data, thereby generating a second output display data

圖1為習知的一種OLED顯示裝置的方塊圖; 圖2為習知的一顯示驅動電路所包含的一顯示驅動晶片的方塊圖; 圖3為一OLED顯示面板在一彩色顯示模式下與一全灰階顯示模式下的正視圖; 圖4為一OLED顯示面板在一彩色顯示模式下與一全灰階顯示模式下的正視圖; 圖5為應用本發明之一種OLED顯示面板之畫素補償方法的一OLED顯示裝置的方塊圖; 圖6為包含於圖5所示的顯示驅動電路之中的一顯示驅動晶片的方塊圖; 圖7為本發明之一種OLED顯示面板之畫素補償方法的流程圖; 圖8A為操作在一般模式下的顯示驅動晶片之方塊圖; 圖8B為操作在L_alone模式下的顯示驅動晶片之方塊圖; 圖9為一OLED顯示面板在一彩色顯示模式下與一全灰階顯示模式下的正視圖;以及 圖10為依據所述低反射區之輸入顯示數據而設定的複數個取樣畫素區塊之示意圖。 1 is a block diagram of a conventional OLED display device; 2 is a block diagram of a display driver chip included in a conventional display driver circuit; 3 is a front view of an OLED display panel in a color display mode and a full grayscale display mode; 4 is a front view of an OLED display panel in a color display mode and a full grayscale display mode; 5 is a block diagram of an OLED display device applying a pixel compensation method for an OLED display panel of the present invention; 6 is a block diagram of a display driver chip included in the display driver circuit shown in FIG. 5; 7 is a flowchart of a pixel compensation method for an OLED display panel according to the present invention; 8A is a block diagram of a display driver chip operating in a normal mode; 8B is a block diagram of a display driver chip operating in L_alone mode; 9 is a front view of an OLED display panel in a color display mode and a full grayscale display mode; and FIG. 10 is a schematic diagram of a plurality of sample pixel blocks set according to the input display data of the low reflection area.

S1:接收一輸入顯示數據,接著選擇執行一第一畫素補償模式或一第二畫素補償模式 S1: Receive an input display data, and then select to execute a first pixel compensation mode or a second pixel compensation mode

S2:在選擇執行所述第一畫素補償模式的情況下,使該畫素補償單元配合使用一SRAM和一行寄存器而完成對於所述輸入顯示數據的畫素補償處理,從而產生一第一輸出顯示數據 S2: In the case of selecting and executing the first pixel compensation mode, make the pixel compensation unit use an SRAM and a row of registers to complete the pixel compensation processing for the input display data, thereby generating a first output Display Data

S3:在選擇執行所述第二畫素補償模式的情況下,使該畫素補償單元僅使用該行寄存器而完成對於所述輸入顯示數據的畫素補償處理,從而產生一第二輸出顯示數據 S3: In the case where the second pixel compensation mode is selected to be executed, the pixel compensation unit only uses the row register to complete the pixel compensation processing for the input display data, thereby generating a second output display data

Claims (10)

一種OLED顯示面板之畫素補償方法,其係由具有一畫素補償單元的一顯示驅動晶片執行,且包括以下步驟: 接收一輸入顯示數據,接著選擇執行一第一畫素補償模式或一第二畫素補償模式; 在選擇執行所述第一畫素補償模式的情況下,使該畫素補償單元配合使用一靜態隨機存取記憶體和一行寄存器完成對於所述輸入顯示數據的畫素補償處理,從而產生一第一輸出顯示數據;以及 在選擇執行所述第二畫素補償模式的情況下,使該畫素補償單元僅使用該行寄存器完成對於所述輸入顯示數據的畫素補償處理,從而產生一第二輸出顯示數據。 A pixel compensation method for an OLED display panel is performed by a display driving chip having a pixel compensation unit, and includes the following steps: receiving an input display data, and then selecting to execute a first pixel compensation mode or a second pixel compensation mode; In the case of selecting to execute the first pixel compensation mode, the pixel compensation unit is made to use a static random access memory and a row of registers to complete the pixel compensation process for the input display data, thereby generating a first pixel compensation unit. an output display data; and When the second pixel compensation mode is selected to be executed, the pixel compensation unit only uses the row register to complete the pixel compensation process for the input display data, thereby generating a second output display data. 如請求項1所述之OLED顯示面板之畫素補償方法,其中,所述輸入顯示數據包含一高反射區之輸入顯示數據與一低反射區之輸入顯示數據。The pixel compensation method for an OLED display panel according to claim 1, wherein the input display data includes input display data in a high reflection area and input display data in a low reflection area. 如請求項2所述之OLED顯示面板之畫素補償方法,其中,執行所述第一畫素補償模式時,該畫素補償單元將所述高反射區之輸入顯示數據和所述低反射區之輸入顯示數據分別寄存在該靜態隨機存取記憶體內和該行寄存器,而後分別採用一第一畫素補償算法和一第二畫素補償算法以完成所述高反射區之輸入顯示數據和所述低反射區之輸入顯示數據之畫素補償處理。The pixel compensation method for an OLED display panel according to claim 2, wherein, when the first pixel compensation mode is executed, the pixel compensation unit combines the input display data of the high-reflection area with the low-reflection area The input display data are respectively stored in the static random access memory and the row register, and then a first pixel compensation algorithm and a second pixel compensation algorithm are respectively used to complete the input display data and all of the high reflection area. The pixel compensation processing of the input display data in the low reflection area. 如請求項2所述之OLED顯示面板之畫素補償方法,其中,執行所述第二畫素補償模式時,該畫素補償單元採用一畫素補償算法以完成所述低反射區之輸入顯示數據之畫素補償處理,而不對所述高反射區之輸入顯示數據進行畫素補償處理。The pixel compensation method for an OLED display panel according to claim 2, wherein when the second pixel compensation mode is executed, the pixel compensation unit adopts a pixel compensation algorithm to complete the input display of the low reflection area The pixel compensation processing of the data is performed, and the pixel compensation processing is not performed on the input display data of the high reflection area. 如請求項4所述之OLED顯示面板之畫素補償方法,其中,執行所述第二畫素補償模式時,該畫素補償單元被允許依據所述低反射區之輸入顯示數據而設定一取樣畫素區塊的大小。The pixel compensation method for an OLED display panel according to claim 4, wherein when the second pixel compensation mode is executed, the pixel compensation unit is allowed to set a sample according to the input display data of the low reflection area The size of the pixel block. 一種OLED顯示裝置,其包括至少一顯示驅動晶片和一OLED顯示面板,其中,該顯示驅動晶片具有一畫素補償單元,且用以執行一OLED顯示面板之畫素補償方法;所述OLED顯示面板之畫素補償方法包括以下步驟: 接收一輸入顯示數據,接著選擇執行一第一畫素補償模式或一第二畫素補償模式; 在選擇執行所述第一畫素補償模式的情況下,使該畫素補償單元配合使用一靜態隨機存取記憶體和一行寄存器而完成對於所述輸入顯示數據的畫素補償處理,從而產生一第一輸出顯示數據;以及 在選擇執行所述第二畫素補償模式的情況下,使該畫素補償單元僅使用該行寄存器而完成對於所述輸入顯示數據的畫素補償處理,從而產生一第二輸出顯示數據。 An OLED display device includes at least one display driver chip and an OLED display panel, wherein the display driver chip has a pixel compensation unit and is used for performing a pixel compensation method for an OLED display panel; the OLED display panel The pixel compensation method includes the following steps: receiving an input display data, and then selecting to execute a first pixel compensation mode or a second pixel compensation mode; When the first pixel compensation mode is selected to be executed, the pixel compensation unit is made to use a static random access memory and a row of registers to complete the pixel compensation process for the input display data, thereby generating a the first output display data; and When the second pixel compensation mode is selected to be executed, the pixel compensation unit only uses the row register to complete the pixel compensation process for the input display data, thereby generating a second output display data. 如請求項6所述之OLED顯示裝置,其中,所述輸入顯示數據包含一高反射區之輸入顯示數據與一低反射區之輸入顯示數據;執行所述第一畫素補償模式時,該畫素補償單元將所述高反射區之輸入顯示數據和所述低反射區之輸入顯示數據分別寄存在該靜態隨機存取記憶體和該行寄存器之中,而後分別採用一第一畫素補償算法和一第二畫素補償算法以完成所述高反射區之輸入顯示數據和所述低反射區之輸入顯示數據之畫素補償處理。The OLED display device according to claim 6, wherein the input display data includes input display data of a high reflection area and input display data of a low reflection area; when the first pixel compensation mode is executed, the image The pixel compensation unit registers the input display data of the high reflection area and the input display data of the low reflection area in the static random access memory and the line register respectively, and then adopts a first pixel compensation algorithm respectively and a second pixel compensation algorithm to complete the pixel compensation processing of the input display data of the high reflection area and the input display data of the low reflection area. 如請求項6所述之OLED顯示裝置,其中,所述輸入顯示數據包含一高反射區之輸入顯示數據與一低反射區之輸入顯示數據;執行所述第二畫素補償模式時,該畫素補償單元採用一畫素補償算法以完成所述低反射區之輸入顯示數據之畫素補償處理,而不對所述高反射區之輸入顯示數據進行畫素補償處理。The OLED display device according to claim 6, wherein the input display data includes input display data of a high reflection area and input display data of a low reflection area; when the second pixel compensation mode is executed, the image The pixel compensation unit adopts a pixel compensation algorithm to complete the pixel compensation processing of the input display data in the low reflection area, but does not perform pixel compensation processing on the input display data in the high reflection area. 如請求項8所述之OLED顯示裝置,其中,執行所述第二畫素補償模式時,該畫素補償單元被允許依據所述低反射區之輸入顯示數據而設定一取樣畫素區塊的大小。The OLED display device of claim 8, wherein, when the second pixel compensation mode is executed, the pixel compensation unit is allowed to set the size of a sample pixel block according to the input display data of the low reflection area. size. 一種資訊處理裝置,其具有如請求項6至請求項9中任一項所述之OLED顯示裝置。An information processing device having the OLED display device according to any one of claim 6 to claim 9.
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TW201430804A (en) * 2013-01-24 2014-08-01 Samsung Display Co Ltd Organic light emitting display device and driving method thereof
CN104183212A (en) * 2013-05-24 2014-12-03 三星显示有限公司 Compensation unit and organic light emitting display including the same

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TW201430804A (en) * 2013-01-24 2014-08-01 Samsung Display Co Ltd Organic light emitting display device and driving method thereof
CN104183212A (en) * 2013-05-24 2014-12-03 三星显示有限公司 Compensation unit and organic light emitting display including the same

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