WO2019084981A1 - 一种显示面板和显示装置 - Google Patents

一种显示面板和显示装置 Download PDF

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Publication number
WO2019084981A1
WO2019084981A1 PCT/CN2017/109765 CN2017109765W WO2019084981A1 WO 2019084981 A1 WO2019084981 A1 WO 2019084981A1 CN 2017109765 W CN2017109765 W CN 2017109765W WO 2019084981 A1 WO2019084981 A1 WO 2019084981A1
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Prior art keywords
pixel
unit pixel
base unit
mating
base
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PCT/CN2017/109765
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English (en)
French (fr)
Inventor
何怀亮
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惠科股份有限公司
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Priority to US16/313,142 priority Critical patent/US11221530B2/en
Publication of WO2019084981A1 publication Critical patent/WO2019084981A1/zh

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    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
    • G02F1/00Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
    • G02F1/01Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour 
    • G02F1/13Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour  based on liquid crystals, e.g. single liquid crystal display cells
    • G02F1/133Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
    • G02F1/136Liquid crystal cells structurally associated with a semi-conducting layer or substrate, e.g. cells forming part of an integrated circuit
    • G02F1/1362Active matrix addressed cells
    • G02F1/136286Wiring, e.g. gate line, drain line
    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
    • G02F1/00Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
    • G02F1/01Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour 
    • G02F1/13Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour  based on liquid crystals, e.g. single liquid crystal display cells
    • G02F1/133Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
    • G02F1/1333Constructional arrangements; Manufacturing methods
    • G02F1/1343Electrodes
    • G02F1/134309Electrodes characterised by their geometrical arrangement
    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
    • G02F1/00Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
    • G02F1/01Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour 
    • G02F1/13Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour  based on liquid crystals, e.g. single liquid crystal display cells
    • G02F1/133Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
    • G02F1/136Liquid crystal cells structurally associated with a semi-conducting layer or substrate, e.g. cells forming part of an integrated circuit
    • G02F1/1362Active matrix addressed cells
    • G02F1/1368Active matrix addressed cells in which the switching element is a three-electrode device
    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
    • G02F2201/00Constructional arrangements not provided for in groups G02F1/00 - G02F7/00
    • G02F2201/52RGB geometrical arrangements
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2300/00Aspects of the constitution of display devices
    • G09G2300/04Structural and physical details of display devices
    • G09G2300/0421Structural details of the set of electrodes
    • G09G2300/0426Layout of electrodes and connections
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2300/00Aspects of the constitution of display devices
    • G09G2300/04Structural and physical details of display devices
    • G09G2300/0439Pixel structures
    • G09G2300/0452Details of colour pixel setup, e.g. pixel composed of a red, a blue and two green components
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2300/00Aspects of the constitution of display devices
    • G09G2300/04Structural and physical details of display devices
    • G09G2300/0439Pixel structures
    • G09G2300/0465Improved aperture ratio, e.g. by size reduction of the pixel circuit, e.g. for improving the pixel density or the maximum displayable luminance or brightness
    • 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
    • G09G3/3607Control 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 for displaying colours or for displaying grey scales with a specific pixel layout, e.g. using sub-pixels

Definitions

  • the present application relates to the field of display technologies, and in particular, to a display panel and a display device.
  • the liquid crystal display has many advantages such as thin body, power saving, no radiation, and has been widely used.
  • Most of the liquid crystal displays on the market are backlight type liquid crystal displays, which include a liquid crystal panel and a backlight module.
  • the working principle of the liquid crystal panel is to place liquid crystal molecules in two parallel glass substrates, and apply a driving voltage on the two glass substrates to control the rotation direction of the liquid crystal molecules to refract the light of the backlight module to generate a picture.
  • a thin film transistor liquid crystal display includes a liquid crystal panel including a color filter substrate (CF Substrate, also referred to as a color filter substrate), a thin film transistor array substrate (Thin Film Transistor Substrate, TFT Substrate), and a backlight module.
  • CF Substrate also referred to as a color filter substrate
  • Thin Film Transistor Substrate TFT Substrate
  • a backlight module In the mask, a transparent electrode is present on the opposite side of the substrate. A layer of liquid crystal molecules (Liquid Crystal, LC) is sandwiched between the two substrates.
  • the technical problem to be solved by the present application is to provide a display panel that reduces data lines and saves costs.
  • the present application also provides a display device.
  • a display panel the display surface
  • the board includes:
  • a scan line a plurality of the scan lines are arranged in parallel along a first direction of the display panel
  • each of the pixel areas being controlled by three adjacent scan lines and two adjacent ones of the data lines;
  • Each of the pixel regions includes a base sub-pixel and a mating sub-pixel
  • the base sub-pixel includes three base unit pixels
  • the data line corresponding to each of the pixel regions includes a first data line and a second data line.
  • the three base unit pixels are coupled to the first data line; the mating sub-pixel is coupled to the second data line; and the mating sub-pixel shares at least one scan line with one of the base unit pixels.
  • the basic sub-pixel includes three base unit pixels coupled to the first data line: a first base unit pixel, a second base unit pixel, and a third base unit pixel, the first base unit pixel and the The second base unit pixel and the third base unit pixel are sequentially arranged along the second direction.
  • the setting of the three basic unit pixels ensures the richness of the color, which is beneficial to the effectiveness of the three primary colors; the three basic unit pixels are arranged along the second direction, that is, the direction of the data line, and the three basic unit pixels are coupled with the first data line.
  • This orderly setting facilitates the realization of the connection function, and the process is simple, so as to avoid the complicated work of the display panel due to the complicated arrangement.
  • the data line is thus reduced by a factor of two, further reducing costs.
  • the mating sub-pixel includes three mating unit pixels coupled to the second data line: a first mating unit pixel, a second mating unit pixel, and a third mating unit pixel; a scan corresponding to each of the pixel regions
  • the line includes a first scan line, a second scan line, and a third scan line, the first mating unit pixel sharing the first scan line with the first base unit pixel, the second mating unit pixel and the The second base unit pixel shares the second scan line, and the third mating unit pixel shares the third scan line with the third base unit pixel.
  • the sub-pixel is divided into three unit pixels, and the three unit pixels of the basic sub-pixel share the scanning line, which can realize independent control while saving the data line, and is convenient for maintenance, which is beneficial to the long-term use of the display panel.
  • the first matching unit pixel, the second matching unit pixel, and the third cooperation unit The meta pixels are sequentially arranged in the second direction.
  • the three matching unit pixels are arranged along the second direction, that is, the direction of the data line, and the three matching unit pixels are coupled with the second data line, so that the orderly setting facilitates the realization of the connection function, the process is simple, and the complicated arrangement is avoided.
  • the display panel works properly.
  • the first base unit pixel, the second base unit pixel, the third base unit pixel, and the mating sub-pixel occupy an equal size in each of the pixel regions. At this time, the proportions occupied by the four in one pixel area are the same, and the arrangement only changes the width and height of the first base unit pixel, the second base unit pixel, the third base unit pixel, and the mating sub-pixel to some extent.
  • the first base unit pixel, the second base unit pixel, the third base unit pixel, and the mating sub-pixel adopt a rectangular shape.
  • the rectangular shape is simple and easy to lay out, while reducing the process difficulty and saving costs.
  • the first base unit pixel, the second base unit pixel, the third base unit pixel, and the mating sub-pixel occupy an equal size in each of the pixel regions, and the first base unit pixel and the second base unit
  • the pixel, the third base unit pixel and the first matching unit pixel, the second matching unit pixel, and the third matching unit pixel adopt a rectangular shape; the first matching unit pixel, the second matching unit pixel, and the third matching unit pixel are equal in size .
  • the proportions occupied by the four in one pixel area are the same, and the arrangement only changes the width and height of the first base unit pixel, the second base unit pixel, the third base unit pixel, and the mating sub-pixel to some extent.
  • the rectangular shape is simple and easy to lay out, while reducing the process difficulty and saving costs.
  • Three equally sized mating unit pixels facilitate placement in the pixel region with three equal sized base unit pixels.
  • the basic sub-pixel includes a first base unit pixel adopting a red unit pixel, a second base unit pixel of a green unit pixel, and a third base unit pixel of a blue unit pixel, and the mating sub-pixel adopts a white sub-pixel.
  • WRGB technology has the advantages of high light transmittance, high brightness, low energy consumption, etc., and is suitable for increasing display resolution and scanning frequency.
  • the basic sub-pixel includes a first base unit pixel adopting a red unit pixel, a second base unit pixel of a green unit pixel, and a third base unit pixel of a blue unit pixel, where the mating sub-pixel adopts a yellow sub-pixel .
  • YRGB makes the color richer and can better enhance the display taste. Give users a better sensory experience.
  • the present application also discloses a display device including a backlight module and a display panel as described above.
  • the matching sub-pixel is coupled to the second data line, and the matching sub-pixel shares at least one scan line with the basic unit pixel in one of the basic sub-pixels, thereby saving the data line.
  • the layout also reduces the use of the driver chip, reducing the cost while ensuring a high standard experience of display resolution and scanning frequency.
  • FIG. 1 is a schematic diagram of a pixel structure of a display panel according to an embodiment of the present application.
  • FIG. 2 is a schematic diagram of a pixel structure of a display panel according to an embodiment of the present application.
  • FIG. 3 is a schematic diagram of a pixel structure of a display panel according to an embodiment of the present application.
  • FIG. 4 is a schematic diagram of a pixel structure of a display panel according to an embodiment of the present application.
  • FIG. 5 is a schematic diagram of a pixel structure of a display panel according to an embodiment of the present application.
  • FIG. 6 is a schematic diagram of a pixel structure of a display device according to an embodiment of the present application.
  • FIG. 7 is a schematic diagram of a pixel structure of a display panel according to an embodiment of the present application.
  • FIG. 8 is a schematic diagram of a pixel structure of a display device according to an embodiment of the present application.
  • first and second are used for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated. Thus, features defining “first” and “second” may include one or more of the features either explicitly or implicitly.
  • a plurality means two or more unless otherwise stated.
  • the term “comprises” and its variations are intended to cover a non-exclusive inclusion.
  • connection In the description of the present application, it should be noted that the terms “installation”, “connected”, and “connected” are to be understood broadly, and may be fixed or detachable, for example, unless otherwise specifically defined and defined. Connected, or integrally connected; can be mechanical or electrical; can be directly connected, or indirectly connected through an intermediate medium, can be the internal communication of the two components.
  • Connected, or integrally connected can be mechanical or electrical; can be directly connected, or indirectly connected through an intermediate medium, can be the internal communication of the two components.
  • the specific meanings of the above terms in the present application can be understood in the specific circumstances for those skilled in the art.
  • the display panel includes: scan lines, a plurality of the scan lines are arranged in parallel along a first direction of the display panel; data lines, a plurality of Data lines are arranged in parallel along a second direction of the display panel; pixel regions, each of the pixel regions being controlled by three adjacent data lines and two adjacent scan lines; each of the pixels
  • the area includes a base sub-pixel and a mating sub-pixel 2, the base sub-pixel including three base unit pixels, each of the pixel areas
  • Corresponding scan lines include a first scan line 31 and a second scan line 32, three of which are coupled to the first scan line 31; the mating sub-pixel 2 and the second scan line 32 Coupling; the mating sub-pixel 2 shares at least one data line with one of the base unit pixels.
  • the first direction is a horizontal direction as illustrated, and the second direction is a vertical direction.
  • the basic sub-pixel is coupled to the first scan line 31 in the pixel region
  • the sub-pixel 2 is coupled to the second scan line 32
  • the sub-pixel 2 is shared with at least one data line of the base unit pixel in one of the basic sub-pixels. It saves the layout of the data lines, reduces the use of the driver chip, and reduces the cost while ensuring a high standard experience of display resolution and scanning frequency.
  • the display panel includes: scan lines, a plurality of the scan lines are arranged in parallel along a first direction of the display panel; a data line, a plurality of The data lines are arranged in parallel along a second direction of the display panel; pixel regions, each of the pixel regions being controlled by three adjacent data lines and two adjacent scan lines; each of the The pixel area includes a basic sub-pixel and a mating sub-pixel 2, the basic sub-pixel includes three basic unit pixels, and the scan line corresponding to each of the pixel areas includes a first scan line 31 and a second scan line 32, three The base unit pixel is coupled to the first scan line 31; the mating sub-pixel 2 is coupled to the second scan line 32; and the mating sub-pixel 2 shares at least one data line with one of the base unit pixels .
  • the base sub-pixel is coupled to the first scan line 31 in the pixel region, and the sub-pixel 2 is coupled to the second scan line 32, and the sub-pixel 2 shares at least one data line with the base unit pixel in one of the basic sub-pixels, thereby saving data.
  • the layout of the line also reduces the use of the driver chip, reducing the cost while ensuring a high standard experience of display resolution and scanning frequency.
  • the basic sub-pixel includes three basic unit pixels coupled to the first scan line 31: a first base unit pixel 11, a second base unit pixel 12, and a third base unit pixel 13, the first The base unit pixel 11, the second base unit pixel 12, and the third base unit pixel 13 are sequentially arranged in the first direction.
  • the three basic unit pixels are arranged along the first direction, that is, the direction of the scanning line, and the three basic unit pixels are coupled with the first scanning line 31, so that the orderly setting facilitates the realization of the connection function, the process is simple, and the arrangement is complicated. Affect the normal operation of the display panel. Data line is more This is reduced by a quarter, further reducing costs.
  • the first base unit pixel 11, the second base unit pixel 12, the third base unit pixel 13, and the mating sub-pixel 2 occupy an equal size in each of the pixel regions. At this time, the proportions occupied by the four in one pixel area are the same, and the arrangement only changes the width of the first base unit pixel 11, the second base unit pixel 12, the third base unit pixel 13, and the mating sub-pixel 2 only to some extent. And height.
  • the first base unit pixel 11, the second base unit pixel 12, the third base unit pixel 13, and the mating sub-pixel 2 have a rectangular shape. The rectangular shape is simple and easy to lay out, while reducing the process difficulty and saving costs.
  • the scan line includes a first scan line 31, a second scan line 32, and a lower third scan line 33 adjacent to the second scan line 32, and the base sub-pixel is disposed at the first Between the scan line 31 and the second scan line 32, the mating sub-pixel 2 is disposed between the second scan line 32 and the third scan line 33.
  • the basic sub-pixel includes a first basic unit pixel 11 adopting a red unit pixel, a second basic unit pixel 12 of a green unit pixel, and a third basic unit pixel 13 of a blue unit pixel, and the matching sub-pixel 2 White subpixels are used.
  • WRGB technology has the advantages of high light transmittance, high brightness, low energy consumption, etc., and is suitable for increasing display resolution and scanning frequency.
  • the mating sub-pixel 2 adopts a yellow color sub-pixel. YRGB makes the color more abundant, can better enhance the display taste, and bring a better sensory experience to the user.
  • the display panel includes: scan lines, a plurality of the scan lines are arranged in parallel along a first direction of the display panel; a data line, a plurality of The data lines are arranged in parallel along a second direction of the display panel; pixel regions, each of the pixel regions being controlled by three adjacent data lines and two adjacent scan lines; each of the The pixel area includes a basic sub-pixel and a mating sub-pixel 2, the basic sub-pixel includes three basic unit pixels, and the scan line corresponding to each of the pixel areas includes a first scan line 31 and a second scan line 32, three The base unit pixel is coupled to the first scan line 31; the mating sub-pixel 2 is coupled to the second scan line 32; and the mating sub-pixel 2 shares at least one data line with one of the base unit pixels .
  • the base sub-pixel is coupled to the first scan line 31 in the pixel region, and the sub-pixel 2 is coupled to the second scan line 32.
  • the pixel 2 shares at least one data line with the basic unit pixel in one basic sub-pixel, which saves the layout of the data line, reduces the use of the driving chip, reduces the cost, and ensures a high standard experience of the display resolution and the scanning frequency.
  • the mating sub-pixel 2 includes three mating unit pixels coupled to the second scan line 32: a first mating unit pixel 21, a second mating unit pixel 22, and a third mating unit pixel 23;
  • the data line corresponding to the pixel area includes a first data line 41, a second data line 42, and a third data line 43, the first mating unit pixel 21 sharing the first data line 41 with the first base unit pixel 11.
  • the second mating unit pixel 22 shares the second data line 42 with the second base unit pixel 12, and the third mating unit pixel 23 shares the third data with the third base unit pixel 13.
  • Line 43 The sub-pixel 2 is divided into three unit pixels, and the three unit pixels of the basic sub-pixel share the data line, which can realize independent control while saving the data line, and is convenient for maintenance, and is beneficial to long-term use of the display panel.
  • the basic sub-pixel includes three basic unit pixels coupled to the first scan line 31: a first base unit pixel 11, a second base unit pixel 12, and a third base unit pixel 13, the first The base unit pixel 11, the second base unit pixel 12, and the third base unit pixel 13 are sequentially arranged in the first direction.
  • the first matching unit pixel 21, the second matching unit pixel 22, and the third matching unit pixel 23 are sequentially arranged along the first direction.
  • the unit pixels are arranged along the first direction, that is, the direction of the scanning line, and the three unit pixels are respectively coupled with the respective scanning lines, so that the orderly setting facilitates the realization of the connection function, the process is simple, and the display panel is prevented from being complicated due to the arrangement.
  • the data line is thus reduced by a quarter, further reducing costs.
  • the first base unit pixel 11, the second base unit pixel 12, the third base unit pixel 13, and the mating sub-pixel 2 occupy an equal size in each of the pixel regions, and the first base unit pixel
  • the second base unit pixel 12, the third base unit pixel 13 and the first mating unit pixel 21, the second mating unit pixel 22, and the third mating unit pixel 23 have a rectangular shape; the first mating unit pixel 21, the first The second matching unit pixel 22 and the third matching unit pixel 23 are equal in size.
  • the ratio of the four occupied in one pixel area is the same, and the arrangement only changes the first basic unit to some extent.
  • the rectangular shape is simple and easy to lay out, while reducing the process difficulty and saving costs.
  • Three equally sized mating unit pixels facilitate placement in the pixel region with three equal sized base unit pixels.
  • the scan line includes a first scan line 31, a second scan line 32, and a lower third scan line 33 adjacent to the second scan line 32, and the base sub-pixel is disposed at the first Between the scan line 31 and the second scan line 32, the mating sub-pixel 2 is disposed between the second scan line 32 and the third scan line 33.
  • the basic sub-pixel includes a first basic unit pixel 11 adopting a red unit pixel, a second basic unit pixel 12 of a green unit pixel, and a third basic unit pixel 13 of a blue unit pixel, and the matching sub-pixel 2 White subpixels are used.
  • WRGB technology has the advantages of high light transmittance, high brightness, low energy consumption, etc., and is suitable for increasing display resolution and scanning frequency.
  • the mating sub-pixel 2 adopts a yellow color sub-pixel. YRGB makes the color more abundant, can better enhance the display taste, and bring a better sensory experience to the user.
  • the display panel includes: scan lines, a plurality of the scan lines are arranged in parallel along a first direction of the display panel; a data line, a plurality of The data lines are arranged in parallel along a second direction of the display panel; pixel regions, each of the pixel regions being controlled by three adjacent scan lines and two adjacent data lines; each of the The pixel area includes a basic sub-pixel and a mating sub-pixel 2, the basic sub-pixel includes three basic unit pixels, and the data line corresponding to each of the pixel areas includes a first data line 41 and a second data line 42, three The base unit pixel is coupled to the first data line 41; the mating sub-pixel 2 is coupled to the second data line 42; the mating sub-pixel 2 shares at least one scan line with one of the base unit pixels .
  • the first direction is a horizontal direction as illustrated, and the second direction is a vertical direction.
  • the basic sub-pixel is coupled to the first data line 41 in the pixel region
  • the sub-pixel 2 is coupled to the second data line 42
  • the sub-pixel 2 is shared with at least one scan line of the base unit pixel in one of the basic sub-pixels. It saves the layout of the data lines, reduces the use of the driver chip, and reduces the cost while ensuring a high standard experience of display resolution and scanning frequency.
  • the display panel includes: scan lines, a plurality of the scan lines are arranged in parallel along a first direction of the display panel; a data line, a plurality of The data lines are arranged in parallel along a second direction of the display panel; pixel regions, each of the pixel regions being controlled by three adjacent scan lines and two adjacent data lines; each of the The pixel area includes a basic sub-pixel and a mating sub-pixel 2, the basic sub-pixel includes three basic unit pixels, and the data line corresponding to each of the pixel areas includes a first data line 41 and a second data line 42, three The base unit pixel is coupled to the first data line 41; the mating sub-pixel 2 is coupled to the second data line 42; the mating sub-pixel 2 shares at least one scan line with one of the base unit pixels .
  • the base sub-pixel is coupled to the first data line 41 in the pixel region, and the sub-pixel 2 is coupled to the second data line 42.
  • the sub-pixel 2 is shared with at least one scan line of the base unit pixel in the basic sub-pixel, thereby saving data.
  • the layout of the line also reduces the use of the driver chip, reducing the cost while ensuring a high standard experience of display resolution and scanning frequency.
  • the basic sub-pixel includes three base unit pixels coupled to the first data line 41: a first base unit pixel 11, a second base unit pixel 12, and a third base unit pixel 13, the first The base unit pixel 11, the second base unit pixel 12, and the third base unit pixel 13 are sequentially arranged in the second direction.
  • the three basic unit pixels are arranged along the second direction, that is, the direction of the data line, and the three basic unit pixels are coupled with the first data line 41, so that the orderly setting facilitates the realization of the connection function, the process is simple, and the complicated arrangement is avoided. Affect the normal operation of the display panel.
  • the data line is thus reduced by a factor of two, further reducing costs.
  • the first base unit pixel 11, the second base unit pixel 12, the third base unit pixel 13, and the mating sub-pixel 2 occupy an equal size in each of the pixel regions. At this time, the proportions occupied by the four in one pixel area are the same, and the arrangement only changes the width of the first base unit pixel 11, the second base unit pixel 12, the third base unit pixel 13, and the mating sub-pixel 2 only to some extent. And height.
  • the first base unit pixel 11, the second base unit pixel 12, the third base unit pixel 13, and the mating sub-pixel 2 have a rectangular shape. The rectangular shape is simple and easy to lay out, while reducing the process difficulty and saving costs.
  • the data line includes a first data line 41, a second data line 42, and pictogram and second data. a third data line 43 on the right side adjacent to the line 42.
  • the base sub-pixel is disposed between the first data line 41 and the second data line 42.
  • the mating sub-pixel 2 is disposed in the Between the two data lines 42 and the third data line 43.
  • the basic sub-pixel includes a first basic unit pixel 11 adopting a red unit pixel, a second basic unit pixel 12 of a green unit pixel, and a third basic unit pixel 13 of a blue unit pixel, and the matching sub-pixel 2 White subpixels are used.
  • WRGB technology has the advantages of high light transmittance, high brightness, low energy consumption, etc., and is suitable for increasing display resolution and scanning frequency.
  • the mating sub-pixel 2 adopts a yellow color sub-pixel. YRGB makes the color more abundant, can better enhance the display taste, and bring a better sensory experience to the user.
  • the display panel includes: scan lines, a plurality of the scan lines are arranged in parallel along a first direction of the display panel; a data line, a plurality of The data lines are arranged in parallel along a second direction of the display panel; pixel regions, each of the pixel regions being controlled by three adjacent scan lines and two adjacent data lines; each of the The pixel area includes a basic sub-pixel and a mating sub-pixel 2, the basic sub-pixel includes three basic unit pixels, and the data line corresponding to each of the pixel areas includes a first data line 41 and a second data line 42, three The base unit pixel is coupled to the first data line 41; the mating sub-pixel 2 is coupled to the second data line 42; the mating sub-pixel 2 shares at least one scan line with one of the base unit pixels .
  • the base sub-pixel is coupled to the first data line 41 in the pixel region, and the sub-pixel 2 is coupled to the second data line 42.
  • the sub-pixel 2 is shared with at least one scan line of the base unit pixel in the basic sub-pixel, thereby saving data.
  • the layout of the line also reduces the use of the driver chip, reducing the cost while ensuring a high standard experience of display resolution and scanning frequency.
  • the mating sub-pixel 2 includes three mating unit pixels coupled to the second data line 42: a first mating unit pixel 21, a second mating unit pixel 22, and a third mating unit pixel 23;
  • the scan lines corresponding to the pixel regions include a first scan line 31, a second scan line 32, and a third scan line 33, and the first mating unit pixel 21 shares the first scan line 31 with the first base unit pixel 11.
  • the second matching unit pixel 22 shares the second scan line 32 with the second base unit pixel 12,
  • the third matching unit pixel 23 shares the third scan line 33 with the third base unit pixel 13 .
  • the sub-pixel 2 is divided into three unit pixels, and the scanning lines are shared by the three unit pixels of the basic sub-pixel, which can realize independent control while saving the data line, and is convenient for maintenance, which is beneficial to the long-term use of the display panel.
  • the basic sub-pixel includes three base unit pixels coupled to the first data line 41: a first base unit pixel 11, a second base unit pixel 12, and a third base unit pixel 13, the first The base unit pixel 11, the second base unit pixel 12, and the third base unit pixel 13 are sequentially arranged in the second direction.
  • the unit pixels are arranged along the second direction, that is, the direction of the data line, and the three unit pixels are respectively coupled with the respective data lines, so that the orderly setting facilitates the realization of the connection function, the process is simple, and the display panel is prevented from being complicated due to the arrangement. normal work.
  • the data line is thus reduced by a factor of two, further reducing costs.
  • the first base unit pixel 11, the second base unit pixel 12, the third base unit pixel 13, and the mating sub-pixel 2 occupy an equal size in each of the pixel regions, and the first base unit pixel 11
  • the second base unit pixel 12, the third base unit pixel 13 and the first mating unit pixel 21, the second mating unit pixel 22, and the third mating unit pixel 23 adopt a rectangular shape; the first mating unit pixel 21 and the second mating unit
  • the pixel 22 and the third matching unit pixel 23 are equal in size.
  • the proportions occupied by the four in one pixel area are the same, and the arrangement only changes the width of the first base unit pixel 11, the second base unit pixel 12, the third base unit pixel 13, and the mating sub-pixel 2 only to some extent. And height.
  • the rectangular shape is simple and easy to lay out, while reducing the process difficulty and saving costs.
  • Three equally sized mating unit pixels facilitate placement in the pixel region with three equal sized base unit pixels.
  • the data line includes a first data line 41, a second data line 42, and a third data line 43 on the right side adjacent to the second data line 42.
  • the base sub-pixel is disposed in the first between a data line 41 and the second data line 42, the mating sub-pixel 2 is disposed between the second data line 42 and the third data line 43.
  • the basic sub-pixel includes a first basic unit pixel 11 adopting a red unit pixel, a second base unit pixel 12 of a green unit pixel, and a third base unit pixel 13 of a blue unit pixel,
  • the mating sub-pixel 2 uses a white sub-pixel.
  • WRGB technology has the advantages of high light transmittance, high brightness, low energy consumption, etc., and is suitable for increasing display resolution and scanning frequency.
  • the mating sub-pixel 2 adopts a yellow color sub-pixel. YRGB makes the color more abundant, can better enhance the display taste, and bring a better sensory experience to the user.
  • the display device disclosed in the embodiment includes a backlight module and the display panel.
  • the material of the substrate may be glass, plastic or the like.
  • the display panel includes a liquid crystal panel, an OLED (Organic Light-Emitting Diode) panel, a curved panel, a plasma panel, etc.
  • the liquid crystal panel includes an array substrate (Thin Film Transistor Substrate, TFT Substrate) and a color filter substrate (CF Substrate), the array substrate is disposed opposite to the color filter substrate, and a liquid crystal and a spacer (PS) are disposed between the array substrate and the color filter substrate, and the array substrate A thin film transistor (TFT) is disposed on the color film substrate, and a color filter layer is disposed on the color filter substrate.
  • TFT Thin Film Transistor Substrate
  • CF Substrate color filter substrate
  • PS liquid crystal and a spacer
  • the color filter substrate may include a TFT array
  • the color film and the TFT array may be formed on the same substrate
  • the array substrate may include a color filter layer
  • the display panel of the present application may be a curved type panel.

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Abstract

一种显示面板和显示装置,显示面板包括:扫描线,多条扫描线沿显示面板的第一方向平行排列;数据线,多条数据线沿显示面板的第二方向平行排列;像素区,每个像素区由三条相邻的扫描线(31,32,33)和两条相邻的数据线(41,42)控制显示;每个像素区包括基础子像素和配合子像素(2),基础子像素包括三个基础单元像素(11,12,13),每个像素区对应的数据线包括第一数据线(41)和第二数据线(42),三个基础单元像素(11,12,13)与第一数据线(41)耦合;配合子像素(2)与第二数据线(42)耦合;配合子像素(2)至少与一个基础单元像素共用一条扫描线。

Description

一种显示面板和显示装置 【技术领域】
本申请涉及显示技术领域,尤其涉及一种显示面板和显示装置。
【背景技术】
液晶显示器具有机身薄、省电、无辐射等众多优点,得到了广泛的应用。现有市场上的液晶显示器大部分为背光型液晶显示器,其包括液晶面板及背光模组(backlightmodule)。液晶面板的工作原理是在两片平行的玻璃基板当中放置液晶分子,并在两片玻璃基板上施加驱动电压来控制液晶分子的旋转方向,以将背光模组的光线折射出来产生画面。
其中,薄膜晶体管液晶显示器(Thin Film Transistor-Liquid Crystal Display,TFT-LCD)由于具有低的功耗、优异的画面品质以及较高的生产良率等性能,目前已经逐渐占据了显示领域的主导地位。同样,薄膜晶体管液晶显示器包含液晶面板和背光模组,液晶面板包括彩膜基板(Color Filter Substrate,CF Substrate,也称彩色滤光片基板)、薄膜晶体管阵列基板(Thin Film Transistor Substrate,TFTSubstrate)和光罩(Mask),上述基板的相对内侧存在透明电极。两片基板之间夹一层液晶分子(LiquidCrystal,LC)。
然而随着显示器解析度与扫描频率不断的提高,数据线的使用数量不断增加,使得覆晶薄膜(Chip On Flex,or,Chip On Film,COF)在使用数量上的需求也提高,使得保证显示面板的一定显示品味的同时工序更繁复和成本更高。
【发明内容】
本申请所要解决的技术问题是提供一种减少数据线、节省成本的的显示面板。
此外,本申请还提供一种显示装置。
本申请的目的是通过以下技术方案来实现的:一种显示面板,所述显示面 板包括:
扫描线,多条所述扫描线沿所述显示面板的第一方向平行排列;
数据线,多条所述数据线沿所述显示面板的第二方向平行排列;
像素区,每个所述像素区由三条相邻的所述扫描线和两条相邻的所述数据线控制显示;
每个所述像素区包括基础子像素和配合子像素,所述基础子像素包括三个基础单元像素,每个所述像素区对应的所述数据线包括第一数据线和第二数据线,三个所述基础单元像素与所述第一数据线耦合;所述配合子像素与所述第二数据线耦合;所述配合子像素至少与一个所述基础单元像素共用一条扫描线。
其中,所述基础子像素包括三个与所述第一数据线耦合的基础单元像素:第一基础单元像素、第二基础单元像素、第三基础单元像素,所述第一基础单元像素、所述第二基础单元像素、所述第三基础单元像素依次沿所述第二方向排布。三个基础单元像素的设置保证色彩的丰富,有利于三原色的效力实现;三个基础单元像素沿着第二方向即数据线所在方向排布,结合三个基础单元像素与第一数据线耦合,这样有序设置方便连接功能的实现,工序简洁,避免因排布繁复影响显示面板的正常工作。数据线更因此减少二分之一,进一步降低成本。
其中,所述配合子像素包括三个与所述第二数据线耦合的配合单元像素:第一配合单元像素、第二配合单元像素、第三配合单元像素;每个所述像素区对应的扫描线包括第一扫描线、第二扫描线和第三扫描线,所述第一配合单元像素与所述第一基础单元像素共用所述第一扫描线,所述第二配合单元像素与所述第二基础单元像素共用所述第二扫描线,所述第三配合单元像素与所述第三基础单元像素共用所述第三扫描线。配合子像素分为三个单元像素分别于基础子像素的三个单元像素共用扫描线,在节省数据线的同时能实现各自的独立控制,便于检修,利于显示面板的长期使用。
其中,所述第一配合单元像素、所述第二配合单元像素、所述第三配合单 元像素依次沿所述第二方向排布。三个配合单元像素沿着第二方向即数据线所在方向排布,结合三个配合单元像素与第二数据线耦合,这样有序设置方便连接功能的实现,工序简洁,避免因排布繁复影响显示面板的正常工作。
其中,所述第一基础单元像素、第二基础单元像素、第三基础单元像素和配合子像素在每个所述像素区内占有相等的大小。此时四者在一个像素区内占用的比例一致,排布只在一定程度上改变了第一基础单元像素、第二基础单元像素、第三基础单元像素和配合子像素的宽度和高度。
其中,所述第一基础单元像素、第二基础单元像素、第三基础单元像素和配合子像素采用矩形形状。矩形形状简单易布局,同时降低工艺难度,节省成本。
其中,所述第一基础单元像素、第二基础单元像素、第三基础单元像素和配合子像素在每个所述像素区内占有相等的大小,所述第一基础单元像素、第二基础单元像素、第三基础单元像素和第一配合单元像素、第二配合单元像素、第三配合单元像素采用矩形形状;所述第一配合单元像素、第二配合单元像素和第三配合单元像素大小相等。此时四者在一个像素区内占用的比例一致,排布只在一定程度上改变了第一基础单元像素、第二基础单元像素、第三基础单元像素和配合子像素的宽度和高度。矩形形状简单易布局,同时降低工艺难度,节省成本。三个相等大小的配合单元像素便于与三个相等大小的基础单元像素在像素区内排布连接。
其中,所述基础子像素包括采用红色单元像素的第一基础单元像素、绿色单元像素的第二基础单元像素、蓝色单元像素的第三基础单元像素,所述配合子像素采用白色子像素。WRGB技术具有透光率高、高亮度、低能耗等优势,很适于不断提高的显示器解析度与扫描频率。
其中,所述基础子像素包括采用红色单元像素的第一基础单元像素、绿色单元像素的第二基础单元像素、蓝色单元像素的第三基础单元像素,所述配合子像素采用黄色色子像素。YRGB使得色彩更丰富,能更好的提升显示品味, 给用户带来更佳的感官体验。
根据本申请的又一个方面,本申请还公开了一种显示装置,所述显示装置包括背光模组和如上所述的显示面板。
本申请由于在像素区内基础子像素与第一数据线耦合,配合子像素与第二数据线耦合,配合子像素至少与一个基础子像素中的基础单元像素共用一条扫描线,节省了数据线的布设,也减少了驱动芯片的使用,降低成本的同时保证显示器解析度与扫描频率的高标准体验。
【附图说明】
所包括的附图用来提供对本申请实施例的进一步的理解,其构成了说明书的一部分,用于例示本申请的实施方式,并与文字描述一起来阐释本申请的原理。显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。在附图中:
图1是本申请实施例一种显示面板的像素结构示意图;
图2是本申请实施例一种显示面板的像素结构示意图;
图3是本申请实施例一种显示面板的像素结构示意图;
图4是本申请实施例一种显示面板的像素结构示意图;
图5是本申请实施例一种显示面板的像素结构示意图;
图6是本申请实施例一种显示装置的像素结构示意图;
图7是本申请实施例一种显示面板的像素结构示意图;
图8是本申请实施例一种显示装置的像素结构示意图。
【具体实施方式】
这里所公开的具体结构和功能细节仅仅是代表性的,并且是用于描述本申请的示例性实施例的目的。但是本申请可以通过许多替换形式来具体实现,并 且不应当被解释成仅仅受限于这里所阐述的实施例。
在本申请的描述中,需要理解的是,术语“中心”、“横向”、“上”、“下”、“左”、“右”、“竖直”、“水平”、“顶”、“底”、“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本申请的限制。此外,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征。在本申请的描述中,除非另有说明,“多个”的含义是两个或两个以上。另外,术语“包括”及其任何变形,意图在于覆盖不排他的包含。
在本申请的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本申请中的具体含义。
这里所使用的术语仅仅是为了描述具体实施例而不意图限制示例性实施例。除非上下文明确地另有所指,否则这里所使用的单数形式“一个”、“一项”还意图包括复数。还应当理解的是,这里所使用的术语“包括”和/或“包含”规定所陈述的特征、整数、步骤、操作、单元和/或组件的存在,而不排除存在或添加一个或更多其他特征、整数、步骤、操作、单元、组件和/或其组合。
下面结合附图和较佳的实施例对本申请作进一步详细说明。
作为本申请的一个实施例,如图1-2所示,所述显示面板包括:扫描线,多条所述扫描线沿所述显示面板的第一方向平行排列;数据线,多条所述数据线沿所述显示面板的第二方向平行排列;像素区,每个所述像素区由三条相邻的所述数据线和两条相邻的所述扫描线控制显示;每个所述像素区包括基础子像素和配合子像素2,所述基础子像素包括三个基础单元像素,每个所述像素区 对应的所述扫描线包括第一扫描线31和第二扫描线32,三个所述基础单元像素与所述第一扫描线31耦合;所述配合子像素2与所述第二扫描线32耦合;所述配合子像素2至少与一个所述基础单元像素共用一条数据线。其中,第一方向为如图示的水平方向,第二方向为竖直方向。本申请由于在像素区内基础子像素与第一扫描线31耦合,配合子像素2与第二扫描线32耦合,配合子像素2至少与一个基础子像素中的基础单元像素共用一条数据线,节省了数据线的布设,也减少了驱动芯片的使用,降低成本的同时保证显示器解析度与扫描频率的高标准体验。
作为本申请的又一个实施例,如图1-2所示,所述显示面板包括:扫描线,多条所述扫描线沿所述显示面板的第一方向平行排列;数据线,多条所述数据线沿所述显示面板的第二方向平行排列;像素区,每个所述像素区由三条相邻的所述数据线和两条相邻的所述扫描线控制显示;每个所述像素区包括基础子像素和配合子像素2,所述基础子像素包括三个基础单元像素,每个所述像素区对应的所述扫描线包括第一扫描线31和第二扫描线32,三个所述基础单元像素与所述第一扫描线31耦合;所述配合子像素2与所述第二扫描线32耦合;所述配合子像素2至少与一个所述基础单元像素共用一条数据线。在像素区内基础子像素与第一扫描线31耦合,配合子像素2与第二扫描线32耦合,配合子像素2至少与一个基础子像素中的基础单元像素共用一条数据线,节省了数据线的布设,也减少了驱动芯片的使用,降低成本的同时保证显示器解析度与扫描频率的高标准体验。
具体的,所述基础子像素包括三个与所述第一扫描线31耦合的基础单元像素:第一基础单元像素11、第二基础单元像素12、第三基础单元像素13,所述第一基础单元像素11、所述第二基础单元像素12、所述第三基础单元像素13依次沿所述第一方向排布。三个基础单元像素沿着第一方向即扫描线所在方向排布,结合三个基础单元像素与第一扫描线31耦合,这样有序设置方便连接功能的实现,工序简洁,避免因排布繁复影响显示面板的正常工作。数据线更因 此减少四分之一,进一步降低成本。所述第一基础单元像素11、第二基础单元像素12、第三基础单元像素13和配合子像素2在每个所述像素区内占有相等的大小。此时四者在一个像素区内占用的比例一致,排布只在一定程度上改变了第一基础单元像素11、第二基础单元像素12、第三基础单元像素13和配合子像素2的宽度和高度。所述第一基础单元像素11、第二基础单元像素12、第三基础单元像素13和配合子像素2采用矩形形状。矩形形状简单易布局,同时降低工艺难度,节省成本。
具体的,所述扫描线包括第一扫描线31、第二扫描线32和图示与第二扫描线32相邻的下方的第三扫描线33,所述基础子像素设置在所述第一扫描线31和所述第二扫描线32之间,所述配合子像素2设置在所述第二扫描线32和所述第三扫描线33之间。
具体的,所述基础子像素包括采用红色单元像素的第一基础单元像素11、绿色单元像素的第二基础单元像素12、蓝色单元像素的第三基础单元像素13,所述配合子像素2采用白色子像素。WRGB技术具有透光率高、高亮度、低能耗等优势,很适于不断提高的显示器解析度与扫描频率。或者,所述配合子像素2采用黄色色子像素。YRGB使得色彩更丰富,能更好的提升显示品味,给用户带来更佳的感官体验。
作为本申请的又一个实施例,如图3-4所示,所述显示面板包括:扫描线,多条所述扫描线沿所述显示面板的第一方向平行排列;数据线,多条所述数据线沿所述显示面板的第二方向平行排列;像素区,每个所述像素区由三条相邻的所述数据线和两条相邻的所述扫描线控制显示;每个所述像素区包括基础子像素和配合子像素2,所述基础子像素包括三个基础单元像素,每个所述像素区对应的所述扫描线包括第一扫描线31和第二扫描线32,三个所述基础单元像素与所述第一扫描线31耦合;所述配合子像素2与所述第二扫描线32耦合;所述配合子像素2至少与一个所述基础单元像素共用一条数据线。在像素区内基础子像素与第一扫描线31耦合,配合子像素2与第二扫描线32耦合,配合子 像素2至少与一个基础子像素中的基础单元像素共用一条数据线,节省了数据线的布设,也减少了驱动芯片的使用,降低成本的同时保证显示器解析度与扫描频率的高标准体验。
其中,所述配合子像素2包括三个与所述第二扫描线32耦合的配合单元像素:第一配合单元像素21、第二配合单元像素22、第三配合单元像素23;每个所述像素区对应的数据线包括第一数据线41、第二数据线42和第三数据线43,所述第一配合单元像素21与所述第一基础单元像素11共用所述第一数据线41,所述第二配合单元像素22与所述第二基础单元像素12共用所述第二数据线42,所述第三配合单元像素23与所述第三基础单元像素13共用所述第三数据线43。配合子像素2分为三个单元像素分别于基础子像素的三个单元像素共用数据线,在节省数据线的同时能实现各自的独立控制,便于检修,利于显示面板的长期使用。
具体的,所述基础子像素包括三个与所述第一扫描线31耦合的基础单元像素:第一基础单元像素11、第二基础单元像素12、第三基础单元像素13,所述第一基础单元像素11、所述第二基础单元像素12、所述第三基础单元像素13依次沿所述第一方向排布。所述第一配合单元像素21、所述第二配合单元像素22、所述第三配合单元像素23依次沿所述第一方向排布。单元像素沿着第一方向即扫描线所在方向排布,结合各自三个单元像素分别与各自的扫描线耦合,这样有序设置方便连接功能的实现,工序简洁,避免因排布繁复影响显示面板的正常工作。数据线更因此减少四分之一,进一步降低成本。
具体的,所述第一基础单元像素11、第二基础单元像素12、第三基础单元像素13和配合子像素2在每个所述像素区内占有相等的大小,所述第一基础单元像素11、第二基础单元像素12、第三基础单元像素13和第一配合单元像素21、第二配合单元像素22、第三配合单元像素23采用矩形形状;所述第一配合单元像素21、第二配合单元像素22和第三配合单元像素23大小相等。此时四者在一个像素区内占用的比例一致,排布只在一定程度上改变了第一基础单元 像素11、第二基础单元像素12、第三基础单元像素13和配合子像素2的宽度和高度。矩形形状简单易布局,同时降低工艺难度,节省成本。三个相等大小的配合单元像素便于与三个相等大小的基础单元像素在像素区内排布连接。
具体的,所述扫描线包括第一扫描线31、第二扫描线32和图示与第二扫描线32相邻的下方的第三扫描线33,所述基础子像素设置在所述第一扫描线31和所述第二扫描线32之间,所述配合子像素2设置在所述第二扫描线32和所述第三扫描线33之间。
具体的,所述基础子像素包括采用红色单元像素的第一基础单元像素11、绿色单元像素的第二基础单元像素12、蓝色单元像素的第三基础单元像素13,所述配合子像素2采用白色子像素。WRGB技术具有透光率高、高亮度、低能耗等优势,很适于不断提高的显示器解析度与扫描频率。或者,所述配合子像素2采用黄色色子像素。YRGB使得色彩更丰富,能更好的提升显示品味,给用户带来更佳的感官体验。
作为本申请的又一个实施例,如图5-6所示,所述显示面板包括:扫描线,多条所述扫描线沿所述显示面板的第一方向平行排列;数据线,多条所述数据线沿所述显示面板的第二方向平行排列;像素区,每个所述像素区由三条相邻的所述扫描线和两条相邻的所述数据线控制显示;每个所述像素区包括基础子像素和配合子像素2,所述基础子像素包括三个基础单元像素,每个所述像素区对应的所述数据线包括第一数据线41和第二数据线42,三个所述基础单元像素与所述第一数据线41耦合;所述配合子像素2与所述第二数据线42耦合;所述配合子像素2至少与一个所述基础单元像素共用一条扫描线。其中,第一方向为如图示的水平方向,第二方向为竖直方向。本申请由于在像素区内基础子像素与第一数据线41耦合,配合子像素2与第二数据线42耦合,配合子像素2至少与一个基础子像素中的基础单元像素共用一条扫描线,节省了数据线的布设,也减少了驱动芯片的使用,降低成本的同时保证显示器解析度与扫描频率的高标准体验。
作为本申请的又一个实施例,如图5-6所示,所述显示面板包括:扫描线,多条所述扫描线沿所述显示面板的第一方向平行排列;数据线,多条所述数据线沿所述显示面板的第二方向平行排列;像素区,每个所述像素区由三条相邻的所述扫描线和两条相邻的所述数据线控制显示;每个所述像素区包括基础子像素和配合子像素2,所述基础子像素包括三个基础单元像素,每个所述像素区对应的所述数据线包括第一数据线41和第二数据线42,三个所述基础单元像素与所述第一数据线41耦合;所述配合子像素2与所述第二数据线42耦合;所述配合子像素2至少与一个所述基础单元像素共用一条扫描线。在像素区内基础子像素与第一数据线41耦合,配合子像素2与第二数据线42耦合,配合子像素2至少与一个基础子像素中的基础单元像素共用一条扫描线,节省了数据线的布设,也减少了驱动芯片的使用,降低成本的同时保证显示器解析度与扫描频率的高标准体验。
具体的,所述基础子像素包括三个与所述第一数据线41耦合的基础单元像素:第一基础单元像素11、第二基础单元像素12、第三基础单元像素13,所述第一基础单元像素11、所述第二基础单元像素12、所述第三基础单元像素13依次沿所述第二方向排布。三个基础单元像素沿着第二方向即数据线所在方向排布,结合三个基础单元像素与第一数据线41耦合,这样有序设置方便连接功能的实现,工序简洁,避免因排布繁复影响显示面板的正常工作。数据线更因此减少二分之一,进一步降低成本。所述第一基础单元像素11、第二基础单元像素12、第三基础单元像素13和配合子像素2在每个所述像素区内占有相等的大小。此时四者在一个像素区内占用的比例一致,排布只在一定程度上改变了第一基础单元像素11、第二基础单元像素12、第三基础单元像素13和配合子像素2的宽度和高度。所述第一基础单元像素11、第二基础单元像素12、第三基础单元像素13和配合子像素2采用矩形形状。矩形形状简单易布局,同时降低工艺难度,节省成本。
具体的,所述数据线包括第一数据线41、第二数据线42和图示与第二数据 线42相邻的右方的第三数据线43,所述基础子像素设置在所述第一数据线41和所述第二数据线42之间,所述配合子像素2设置在所述第二数据线42和所述第三数据线43之间。
具体的,所述基础子像素包括采用红色单元像素的第一基础单元像素11、绿色单元像素的第二基础单元像素12、蓝色单元像素的第三基础单元像素13,所述配合子像素2采用白色子像素。WRGB技术具有透光率高、高亮度、低能耗等优势,很适于不断提高的显示器解析度与扫描频率。或者,所述配合子像素2采用黄色色子像素。YRGB使得色彩更丰富,能更好的提升显示品味,给用户带来更佳的感官体验。
作为本申请的又一个实施例,如图7-8所示,所述显示面板包括:扫描线,多条所述扫描线沿所述显示面板的第一方向平行排列;数据线,多条所述数据线沿所述显示面板的第二方向平行排列;像素区,每个所述像素区由三条相邻的所述扫描线和两条相邻的所述数据线控制显示;每个所述像素区包括基础子像素和配合子像素2,所述基础子像素包括三个基础单元像素,每个所述像素区对应的所述数据线包括第一数据线41和第二数据线42,三个所述基础单元像素与所述第一数据线41耦合;所述配合子像素2与所述第二数据线42耦合;所述配合子像素2至少与一个所述基础单元像素共用一条扫描线。在像素区内基础子像素与第一数据线41耦合,配合子像素2与第二数据线42耦合,配合子像素2至少与一个基础子像素中的基础单元像素共用一条扫描线,节省了数据线的布设,也减少了驱动芯片的使用,降低成本的同时保证显示器解析度与扫描频率的高标准体验。
其中,所述配合子像素2包括三个与所述第二数据线42耦合的配合单元像素:第一配合单元像素21、第二配合单元像素22、第三配合单元像素23;每个所述像素区对应的扫描线包括第一扫描线31、第二扫描线32和第三扫描线33,所述第一配合单元像素21与所述第一基础单元像素11共用所述第一扫描线31,所述第二配合单元像素22与所述第二基础单元像素12共用所述第二扫描线32, 所述第三配合单元像素23与所述第三基础单元像素13共用所述第三扫描线33。配合子像素2分为三个单元像素分别于基础子像素的三个单元像素共用扫描线,在节省数据线的同时能实现各自的独立控制,便于检修,利于显示面板的长期使用。
具体的,所述基础子像素包括三个与所述第一数据线41耦合的基础单元像素:第一基础单元像素11、第二基础单元像素12、第三基础单元像素13,所述第一基础单元像素11、所述第二基础单元像素12、所述第三基础单元像素13依次沿所述第二方向排布。单元像素沿着第二方向即数据线所在方向排布,结合各自三个单元像素分别与各自数据线耦合,这样有序设置方便连接功能的实现,工序简洁,避免因排布繁复影响显示面板的正常工作。数据线更因此减少二分之一,进一步降低成本。所述第一基础单元像素11、第二基础单元像素12、第三基础单元像素13和配合子像素2在每个所述像素区内占有相等的大小,所述第一基础单元像素11、第二基础单元像素12、第三基础单元像素13和第一配合单元像素21、第二配合单元像素22、第三配合单元像素23采用矩形形状;所述第一配合单元像素21、第二配合单元像素22和第三配合单元像素23大小相等。此时四者在一个像素区内占用的比例一致,排布只在一定程度上改变了第一基础单元像素11、第二基础单元像素12、第三基础单元像素13和配合子像素2的宽度和高度。矩形形状简单易布局,同时降低工艺难度,节省成本。三个相等大小的配合单元像素便于与三个相等大小的基础单元像素在像素区内排布连接。
具体的,所述数据线包括第一数据线41、第二数据线42和图示与第二数据线42相邻的右方的第三数据线43,所述基础子像素设置在所述第一数据线41和所述第二数据线42之间,所述配合子像素2设置在所述第二数据线42和所述第三数据线43之间。
具体的,所述基础子像素包括采用红色单元像素的第一基础单元像素11、绿色单元像素的第二基础单元像素12、蓝色单元像素的第三基础单元像素13, 所述配合子像素2采用白色子像素。WRGB技术具有透光率高、高亮度、低能耗等优势,很适于不断提高的显示器解析度与扫描频率。或者,所述配合子像素2采用黄色色子像素。YRGB使得色彩更丰富,能更好的提升显示品味,给用户带来更佳的感官体验。
本申请的又一个实施例,本实施方式公开的显示装置包括背光模组和上述显示面板。
需要说明的是,在上述实施例中,所述基板的材料可以选用玻璃、塑料等。
在上述实施例中,显示面板包括液晶面板、OLED(Organic Light-Emitting Diode)面板、曲面面板、等离子面板等,以液晶面板为例,液晶面板包括阵列基板(Thin Film Transistor Substrate,TFT Substrate)和彩膜基板(Color Filter Substrate,CF Substrate),所述阵列基板与彩膜基板相对设置,所述阵列基板与彩膜基板之间设有液晶和间隔单元(PS,photo spacer),所述阵列基板上设有薄膜晶体管(TFT,Thin Film Transistor),彩膜基板上设有彩色滤光层。
在上述实施例中,彩膜基板可包括TFT阵列,彩膜及TFT阵列可形成于同一基板上,阵列基板可包括彩色滤光层。
在上述实施例中,本申请的显示面板可为曲面型面板。
以上内容是结合具体的优选实施方式对本申请所作的进一步详细说明,不能认定本申请的具体实施只局限于这些说明。对于本申请所属技术领域的普通技术人员来说,在不脱离本申请构思的前提下,还可以做出若干简单推演或替换,都应当视为属于本申请的保护范围。

Claims (20)

  1. 一种显示面板,包括:
    扫描线,多条所述扫描线沿所述显示面板的第一方向平行排列;
    数据线,多条所述数据线沿所述显示面板的第二方向平行排列;
    像素区,每个所述像素区由三条相邻的所述扫描线和两条相邻的所述数据线控制显示;
    每个所述像素区包括基础子像素和配合子像素,所述基础子像素包括三个基础单元像素,每个所述像素区对应的所述数据线包括第一数据线和第二数据线,三个所述基础单元像素与所述第一数据线耦合;所述配合子像素与所述第二数据线耦合;所述配合子像素至少与一个所述基础单元像素共用一条扫描线;所述基础子像素包括三个与所述第一数据线耦合的基础单元像素:第一基础单元像素、第二基础单元像素、第三基础单元像素,所述第一基础单元像素、所述第二基础单元像素、所述第三基础单元像素依次沿所述第二方向排布;所述配合子像素包括三个与所述第二数据线耦合的配合单元像素:第一配合单元像素、第二配合单元像素、第三配合单元像素;每个所述像素区对应的扫描线包括第一扫描线、第二扫描线和第三扫描线,所述第一配合单元像素与所述第一基础单元像素共用所述第一扫描线,所述第二配合单元像素与所述第二基础单元像素共用所述第二扫描线,所述第三配合单元像素与所述第三基础单元像素共用所述第三扫描线;所述第一配合单元像素、所述第二配合单元像素、所述第三配合单元像素依次沿所述第二方向排布;所述第一基础单元像素、第二基础单元像素、第三基础单元像素和配合子像素在每个所述像素区内占有相等的大小,所述第一基础单元像素、第二基础单元像素、第三基础单元像素和第一配合单元像素、第二配合单元像素、第三配合单元像素采用矩形形状;所述第一配合单元像素、第二配合单元像素和第三配合单元像素大小相等;所述基础子像素包括采用红色单元像素的第一基础单元像素、绿色单元像素的第二基础 单元像素、蓝色单元像素的第三基础单元像素,所述配合子像素采用白色子像素;或者,所述基础子像素包括采用红色单元像素的第一基础单元像素、绿色单元像素的第二基础单元像素、蓝色单元像素的第三基础单元像素,所述配合子像素采用黄色色子像素。
  2. 一种显示面板,包括:
    扫描线,多条所述扫描线沿所述显示面板的第一方向平行排列;
    数据线,多条所述数据线沿所述显示面板的第二方向平行排列;
    像素区,每个所述像素区由三条相邻的所述扫描线和两条相邻的所述数据线控制显示;
    每个所述像素区包括基础子像素和配合子像素,所述基础子像素包括三个基础单元像素,每个所述像素区对应的所述数据线包括第一数据线和第二数据线,三个所述基础单元像素与所述第一数据线耦合;所述配合子像素与所述第二数据线耦合;所述配合子像素至少与一个所述基础单元像素共用一条扫描线。
  3. 如权利要求2所述的显示面板,其中所述基础子像素包括三个与所述第一数据线耦合的基础单元像素:第一基础单元像素、第二基础单元像素、第三基础单元像素,所述第一基础单元像素、所述第二基础单元像素、所述第三基础单元像素依次沿所述第二方向排布。
  4. 如权利要求3所述的显示面板,其中所述配合子像素包括三个与所述第二数据线耦合的配合单元像素:第一配合单元像素、第二配合单元像素、第三配合单元像素;每个所述像素区对应的扫描线包括第一扫描线、第二扫描线和第三扫描线,所述第一配合单元像素与所述第一基础单元像素共用所述第一扫描线,所述第二配合单元像素与所述第二基础单元像素共用所述第二扫描线,所述第三配合单元像素与所述第三基础单元像素共用所述第三扫描线。
  5. 如权利要求2所述的显示面板,其中所述基础子像素包括三个与所述第一数据线耦合的基础单元像素:第一基础单元像素、第二基础单元像素、第三基础单元像素,所述第一基础单元像素、所述第二基础单元像素、所述第三基 础单元像素依次沿所述第二方向排布;所述配合子像素包括三个与所述第二数据线耦合的配合单元像素:第一配合单元像素、第二配合单元像素、第三配合单元像素;每个所述像素区对应的扫描线包括第一扫描线、第二扫描线和第三扫描线,所述第一配合单元像素与所述第一基础单元像素共用所述第一扫描线,所述第二配合单元像素与所述第二基础单元像素共用所述第二扫描线,所述第三配合单元像素与所述第三基础单元像素共用所述第三扫描线。
  6. 如权利要求4所述的显示面板,其中所述第一配合单元像素、所述第二配合单元像素、所述第三配合单元像素依次沿所述第二方向排布。
  7. 如权利要求2所述的显示面板,其中所述基础子像素包括三个与所述第一数据线耦合的基础单元像素:第一基础单元像素、第二基础单元像素、第三基础单元像素,所述第一基础单元像素、所述第二基础单元像素、所述第三基础单元像素依次沿所述第二方向排布;所述配合子像素包括三个与所述第二数据线耦合的配合单元像素:第一配合单元像素、第二配合单元像素、第三配合单元像素;每个所述像素区对应的扫描线包括第一扫描线、第二扫描线和第三扫描线,所述第一配合单元像素与所述第一基础单元像素共用所述第一扫描线,所述第二配合单元像素与所述第二基础单元像素共用所述第二扫描线,所述第三配合单元像素与所述第三基础单元像素共用所述第三扫描线;所述第一配合单元像素、所述第二配合单元像素、所述第三配合单元像素依次沿所述第二方向排布。
  8. 如权利要求2所述的显示面板,其中,所述第一基础单元像素、第二基础单元像素、第三基础单元像素和配合子像素在每个所述像素区内占有相等的大小。
  9. 如权利要求2所述的显示面板,其中所述基础子像素包括三个与所述第一数据线耦合的基础单元像素:第一基础单元像素、第二基础单元像素、第三基础单元像素,所述第一基础单元像素、所述第二基础单元像素、所述第三基础单元像素依次沿所述第二方向排布;所述第一基础单元像素、第二基础单元 像素、第三基础单元像素和配合子像素在每个所述像素区内占有相等的大小。
  10. 如权利要求2所述的显示面板,其中所述基础子像素包括三个与所述第一数据线耦合的基础单元像素:第一基础单元像素、第二基础单元像素、第三基础单元像素,所述第一基础单元像素、所述第二基础单元像素、所述第三基础单元像素依次沿所述第二方向排布;所述配合子像素包括三个与所述第二数据线耦合的配合单元像素:第一配合单元像素、第二配合单元像素、第三配合单元像素;每个所述像素区对应的扫描线包括第一扫描线、第二扫描线和第三扫描线,所述第一配合单元像素与所述第一基础单元像素共用所述第一扫描线,所述第二配合单元像素与所述第二基础单元像素共用所述第二扫描线,所述第三配合单元像素与所述第三基础单元像素共用所述第三扫描线;所述第一基础单元像素、第二基础单元像素、第三基础单元像素和配合子像素在每个所述像素区内占有相等的大小。
  11. 如权利要求2所述的显示面板,其中所述基础子像素包括三个与所述第一数据线耦合的基础单元像素:第一基础单元像素、第二基础单元像素、第三基础单元像素,所述第一基础单元像素、所述第二基础单元像素、所述第三基础单元像素依次沿所述第二方向排布;所述配合子像素包括三个与所述第二数据线耦合的配合单元像素:第一配合单元像素、第二配合单元像素、第三配合单元像素;每个所述像素区对应的扫描线包括第一扫描线、第二扫描线和第三扫描线,所述第一配合单元像素与所述第一基础单元像素共用所述第一扫描线,所述第二配合单元像素与所述第二基础单元像素共用所述第二扫描线,所述第三配合单元像素与所述第三基础单元像素共用所述第三扫描线;所述第一配合单元像素、所述第二配合单元像素、所述第三配合单元像素依次沿所述第二方向排布;所述第一基础单元像素、第二基础单元像素、第三基础单元像素和配合子像素在每个所述像素区内占有相等的大小。
  12. 如权利要求8所述的显示面板,其中所述第一基础单元像素、第二基础单元像素、第三基础单元像素和配合子像素采用矩形形状。
  13. 如权利要求2所述的显示面板,其中所述基础子像素包括三个与所述第一数据线耦合的基础单元像素:第一基础单元像素、第二基础单元像素、第三基础单元像素,所述第一基础单元像素、所述第二基础单元像素、所述第三基础单元像素依次沿所述第二方向排布;所述第一基础单元像素、第二基础单元像素、第三基础单元像素和配合子像素在每个所述像素区内占有相等的大小;所述第一基础单元像素、第二基础单元像素、第三基础单元像素和配合子像素采用矩形形状。
  14. 如权利要求2所述的显示面板,其中所述基础子像素包括三个与所述第一数据线耦合的基础单元像素:第一基础单元像素、第二基础单元像素、第三基础单元像素,所述第一基础单元像素、所述第二基础单元像素、所述第三基础单元像素依次沿所述第二方向排布;所述配合子像素包括三个与所述第二数据线耦合的配合单元像素:第一配合单元像素、第二配合单元像素、第三配合单元像素;每个所述像素区对应的扫描线包括第一扫描线、第二扫描线和第三扫描线,所述第一配合单元像素与所述第一基础单元像素共用所述第一扫描线,所述第二配合单元像素与所述第二基础单元像素共用所述第二扫描线,所述第三配合单元像素与所述第三基础单元像素共用所述第三扫描线;所述第一基础单元像素、第二基础单元像素、第三基础单元像素和配合子像素在每个所述像素区内占有相等的大小;所述第一基础单元像素、第二基础单元像素、第三基础单元像素和配合子像素采用矩形形状。
  15. 如权利要求2所述的显示面板,其中所述基础子像素包括三个与所述第一数据线耦合的基础单元像素:第一基础单元像素、第二基础单元像素、第三基础单元像素,所述第一基础单元像素、所述第二基础单元像素、所述第三基础单元像素依次沿所述第二方向排布;所述配合子像素包括三个与所述第二数据线耦合的配合单元像素:第一配合单元像素、第二配合单元像素、第三配合单元像素;每个所述像素区对应的扫描线包括第一扫描线、第二扫描线和第三扫描线,所述第一配合单元像素与所述第一基础单元像素共用所述第一扫描 线,所述第二配合单元像素与所述第二基础单元像素共用所述第二扫描线,所述第三配合单元像素与所述第三基础单元像素共用所述第三扫描线;所述第一配合单元像素、所述第二配合单元像素、所述第三配合单元像素依次沿所述第二方向排布;所述第一基础单元像素、第二基础单元像素、第三基础单元像素和配合子像素在每个所述像素区内占有相等的大小;所述第一基础单元像素、第二基础单元像素、第三基础单元像素和配合子像素采用矩形形状。
  16. 如权利要求4所述的显示面板,其中所述第一基础单元像素、第二基础单元像素、第三基础单元像素和配合子像素在每个所述像素区内占有相等的大小,所述第一基础单元像素、第二基础单元像素、第三基础单元像素和第一配合单元像素、第二配合单元像素、第三配合单元像素采用矩形形状;所述第一配合单元像素、第二配合单元像素和第三配合单元像素大小相等。
  17. 如权利要求2所述的显示面板,其中所述基础子像素包括三个与所述第一数据线耦合的基础单元像素:第一基础单元像素、第二基础单元像素、第三基础单元像素,所述第一基础单元像素、所述第二基础单元像素、所述第三基础单元像素依次沿所述第二方向排布;所述配合子像素包括三个与所述第二数据线耦合的配合单元像素:第一配合单元像素、第二配合单元像素、第三配合单元像素;每个所述像素区对应的扫描线包括第一扫描线、第二扫描线和第三扫描线,所述第一配合单元像素与所述第一基础单元像素共用所述第一扫描线,所述第二配合单元像素与所述第二基础单元像素共用所述第二扫描线,所述第三配合单元像素与所述第三基础单元像素共用所述第三扫描线;所述第一基础单元像素、第二基础单元像素、第三基础单元像素和配合子像素在每个所述像素区内占有相等的大小,所述第一基础单元像素、第二基础单元像素、第三基础单元像素和第一配合单元像素、第二配合单元像素、第三配合单元像素采用矩形形状;所述第一配合单元像素、第二配合单元像素和第三配合单元像素大小相等。
  18. 如权利要求2所述的显示面板,其中所述基础子像素包括采用红色单 元像素的第一基础单元像素、绿色单元像素的第二基础单元像素、蓝色单元像素的第三基础单元像素,所述配合子像素采用白色子像素。
  19. 如权利要求2所述的显示面板,其中所述基础子像素包括采用红色单元像素的第一基础单元像素、绿色单元像素的第二基础单元像素、蓝色单元像素的第三基础单元像素,所述配合子像素采用黄色色子像素。
  20. 一种显示装置,所述显示装置包括背光模组和显示面板,
    所述显示面板包括:
    扫描线,多条所述扫描线沿所述显示面板的第一方向平行排列;
    数据线,多条所述数据线沿所述显示面板的第二方向平行排列;
    像素区,每个所述像素区由三条相邻的所述扫描线和两条相邻的所述数据线控制显示;
    每个所述像素区包括基础子像素和配合子像素,所述基础子像素包括三个基础单元像素,每个所述像素区对应的所述数据线包括第一数据线和第二数据线,三个所述基础单元像素与所述第一数据线耦合;所述配合子像素与所述第二数据线耦合;所述配合子像素至少与一个所述基础单元像素共用一条扫描线;所述基础子像素包括三个与所述第一数据线耦合的基础单元像素:第一基础单元像素、第二基础单元像素、第三基础单元像素,所述第一基础单元像素、所述第二基础单元像素、所述第三基础单元像素依次沿所述第二方向排布;所述配合子像素包括三个与所述第二数据线耦合的配合单元像素:第一配合单元像素、第二配合单元像素、第三配合单元像素;每个所述像素区对应的扫描线包括第一扫描线、第二扫描线和第三扫描线,所述第一配合单元像素与所述第一基础单元像素共用所述第一扫描线,所述第二配合单元像素与所述第二基础单元像素共用所述第二扫描线,所述第三配合单元像素与所述第三基础单元像素共用所述第三扫描线;所述第一配合单元像素、所述第二配合单元像素、所述第三配合单元像素依次沿所述第二方向排布;所述第一基础单元像素、第二基础单元像素、第三基础单元像素和配合子像素在每个所述像素区内占有相等的 大小,所述第一基础单元像素、第二基础单元像素、第三基础单元像素和第一配合单元像素、第二配合单元像素、第三配合单元像素采用矩形形状;所述第一配合单元像素、第二配合单元像素和第三配合单元像素大小相等;所述基础子像素包括采用红色单元像素的第一基础单元像素、绿色单元像素的第二基础单元像素、蓝色单元像素的第三基础单元像素,所述配合子像素采用白色子像素;或者,所述基础子像素包括采用红色单元像素的第一基础单元像素、绿色单元像素的第二基础单元像素、蓝色单元像素的第三基础单元像素,所述配合子像素采用黄色色子像素。
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CN106683635A (zh) * 2017-03-30 2017-05-17 武汉华星光电技术有限公司 Rgbw显示面板驱动电路结构

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