WO2021103184A1 - 一种显示面板及显示装置 - Google Patents

一种显示面板及显示装置 Download PDF

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Publication number
WO2021103184A1
WO2021103184A1 PCT/CN2019/125221 CN2019125221W WO2021103184A1 WO 2021103184 A1 WO2021103184 A1 WO 2021103184A1 CN 2019125221 W CN2019125221 W CN 2019125221W WO 2021103184 A1 WO2021103184 A1 WO 2021103184A1
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auxiliary
main
line
bridge
power
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PCT/CN2019/125221
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English (en)
French (fr)
Inventor
张丽君
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深圳市华星光电半导体显示技术有限公司
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Publication of WO2021103184A1 publication Critical patent/WO2021103184A1/zh

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    • HELECTRICITY
    • H10SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
    • H10KORGANIC ELECTRIC SOLID-STATE DEVICES
    • H10K59/00Integrated devices, or assemblies of multiple devices, comprising at least one organic light-emitting element covered by group H10K50/00
    • H10K59/10OLED displays
    • H10K59/12Active-matrix OLED [AMOLED] displays
    • H10K59/131Interconnections, e.g. wiring lines or terminals

Definitions

  • the present invention relates to the field of display technology, in particular to a display panel and a display device.
  • the driving mode of the organic light-emitting diode display panel is voltage-to-current.
  • the organic light emitting diode display panel includes a display area 101 (AA area).
  • the display area 101 is provided with a plurality of auxiliary power lines 15 and auxiliary ground lines 16, and a plurality of main power lines are provided on the periphery of the display area 101.
  • auxiliary ground wire 16 in the display area 101 flows through the auxiliary bridge wire 14 and the main ground wire 12 to form a loop.
  • the VDD and GND voltages received at different locations in the display area 101 are different due to the influence of the trace resistance and current. Since the current flowing through the light-emitting unit 102 is related to the VDD and GND values, the currents flowing through the light-emitting units 102 in the AA area are different.
  • the lower left corner of the display area is the maximum current area, and the upper right corner is the minimum current area, where the minimum current.
  • the percentage between the maximum current and the maximum current is 70%, that is, the current distribution is uneven, which ultimately leads to uneven brightness of the light emitting diode D0, that is, uneven display brightness.
  • the object of the present invention is to provide a display panel and a display device that can make the display brightness more uniform.
  • the present invention provides a display panel, including:
  • the display area which includes multiple auxiliary power lines and multiple auxiliary ground wires;
  • the main power line is arranged outside the display area, the main power line includes at least two power access points, and the power access points are used to input power supply voltage;
  • a plurality of main bridge connections, both ends of the auxiliary power line are respectively connected to the main power line through a main bridge connection; the two main bridge connections correspond to one auxiliary power line;
  • the main grounding line is arranged outside the display area, the main grounding line includes at least two grounding points, and the grounding points are used for grounding;
  • a plurality of auxiliary bridge wires, both ends of the auxiliary ground wire are respectively connected to the main ground wire through an auxiliary bridge wire, and two auxiliary bridge wires correspond to one auxiliary ground wire.
  • the present invention also provides a display device including the above-mentioned display panel.
  • the display panel and the display device of the present invention include a display area, which includes a plurality of auxiliary power lines and a plurality of auxiliary ground lines; the main power line is arranged outside the display area, and the main power line includes at least two power connections Access point, the power access point is used to input the power supply voltage; multiple main bridge wiring, the main power line is connected to one end of the auxiliary power line through the main bridge wiring; two main bridge wirings correspond to one The auxiliary power line; the main grounding line is set outside the display area, the main grounding line includes at least two grounding points, the grounding points are used for grounding; a plurality of auxiliary bridge wiring, the main grounding line passes through the The auxiliary bridge wire is connected to one end of the auxiliary ground wire, and the two auxiliary bridge wires correspond to one auxiliary ground wire; since power access points and ground points are added on the display panel, the movement of different positions in the display area is reduced.
  • the resistance difference of the lines further makes the brightness of different positions in the display area more uniform.
  • FIG. 1 is a schematic diagram of the structure of an existing display panel
  • Figure 2 is an equivalent circuit diagram of a conventional display panel
  • FIG. 3 is a schematic diagram of the structure of the display panel of the present invention.
  • Fig. 4 is an equivalent circuit diagram of the display panel of the present invention.
  • R0 represents the equivalent resistance on the main power line 11
  • R0' represents the equivalent resistance on the main ground line 12
  • R1 represents the equivalent resistance on the main bridge connection 13
  • R1' represents the auxiliary bridge connection 14.
  • R2 represents the equivalent resistance on the auxiliary power line 15, and R2' represents the equivalent resistance on the auxiliary ground line 16.
  • the display area includes M rows and N columns of light-emitting units.
  • the figure only shows part of the light-emitting units L 1-1 , L M-1 , L 1-N , L MN , specifically VDD 1-1 >VDD M-1 > VDD 1-N >VDD MN , GND 1-1 >GND M-1 >GND 1-N >GND MN , where the subscript 1-1 represents the first row and first column, and M-1 represents the Mth row and first column , The rest of the labels are similar to this.
  • the display panel of this embodiment is an organic light emitting diode display panel, preferably a micro LED (micro LED) display panel.
  • the display panel of the present invention includes a display area 201 (area AA), and a display area 201
  • a plurality of auxiliary power lines 25 and auxiliary grounding lines 26 are provided, wherein the auxiliary power lines 25 are distributed in the horizontal and vertical directions of the display area, and the auxiliary grounding lines 26 are distributed horizontally.
  • the plurality of auxiliary power lines 25 may include a plurality of first sub power lines 251 and a plurality of second sub power lines 252; wherein the first sub power lines 251 are arranged in a horizontal direction, and the second sub power lines 252 are arranged along the horizontal direction. Arranged vertically.
  • a main power line 21, a plurality of main bridge wires 23, a main ground line 22, and a plurality of auxiliary bridge wires 24 are provided outside the display area 201.
  • the main power line 21 includes two power access points B1, B2, and the power access points B1, B2 are used to input the power supply voltage VDD.
  • the two power access points B1 and B2 are respectively located on one of the two sides of the display area 201.
  • the number of power access points is not limited to two, and can be more than two.
  • power access points can be set on all four corners of the display area.
  • the main power cord 21 surrounds the display area 201.
  • the main power line 21 is connected to one end of the auxiliary power line 25 through the main bridge connection 23; two of the main bridge 23 lines correspond to one of the auxiliary power lines 25.
  • the left end of the first sub power line 251 is connected to the left main power line 21 through the left main bridge connection 23, and the right end of the first sub power line 251 is connected through the right main bridge connection 23 is connected to the main power cord 21 on the right. It is understandable that the auxiliary power cord 25 in the vertical direction is similar to this, and will not be repeated here.
  • the main ground line 22 is also provided outside the display area 201.
  • the main ground line 22 is provided outside the main power line 21.
  • the main ground line 22 includes two ground points C1 and C2, so The ground points C1 and C2 are used for grounding, that is, connected to the ground terminal GND.
  • the two ground points C1 and C2 are respectively located on one of the two sides of the display area 201.
  • the number of grounding points is not limited to two, and may be more than two.
  • grounding points may be provided on all four corners of the display area 201.
  • the main ground wire 22 is not provided below the display area 201, that is, the main ground wire 22 is provided on both the left and right sides and above the display area 201.
  • the main ground wire 22 is connected to one end of the auxiliary ground wire 26 through the auxiliary bridge wire 24, and two auxiliary bridge wires 24 correspond to one auxiliary ground wire 26.
  • the left end of the auxiliary ground wire 26 is connected to the left main ground wire 22 via the left auxiliary bridge wire 24, and the right end of the auxiliary ground wire 26 is connected to the right main ground wire 22 via the right auxiliary bridge wire 24.
  • the display area 201 may also include light-emitting units arranged in an array.
  • the light-emitting units arranged in the array include multiple rows or columns of light-emitting units 202.
  • the light-emitting units 202 include a plurality of organic light-emitting diodes D1, such as red, green, Blue organic light emitting diode.
  • Each row of light-emitting units 202 corresponds to the first sub power line 251 and the auxiliary ground line 26; each column of light-emitting units 202 corresponds to the second sub power line 252;
  • each row of the light-emitting units 202 corresponds to a horizontal auxiliary power line 25 and an auxiliary ground line 26; wherein each column of the light-emitting units 202 also corresponds to a vertical auxiliary power line 25.
  • the anode of the organic light emitting diode D1 is connected to the corresponding first sub power line 251 and the second sub power line 252 respectively, and the cathode of the organic light emitting diode D1 is connected to the corresponding auxiliary ground line 26.
  • the length difference that is, the resistance difference
  • the resistance difference the difference between the different positions of the display area
  • the number of power access points and grounding points is larger, the brightness of different positions in the display area can be made more uniform.
  • R3 represents the equivalent resistance on the main power line 21, R3' represents the equivalent resistance on the main ground line 22, and R4 represents the main bridge wiring
  • the equivalent resistance on 23, R4' represents the equivalent resistance on the auxiliary bridge wire 24.
  • R5 represents the equivalent resistance on the auxiliary power line 25.
  • R5' represents the equivalent resistance on the auxiliary ground wire 26 (that is, R5 and R5' are equivalent to internal resistance).
  • the display area includes M rows and N columns of light-emitting units, and only some of the light-emitting units L 1-1 , L M-1 , L 1-N and L MN are shown in the figure, and the remaining light-emitting units are not shown.
  • the resistance value R3 of the main power line 21 and the resistance value R5 of the auxiliary power line 25 are much smaller than the resistance value R4 of the main bridge connection 23; the resistance value R3' of the main ground line 22 and the resistance value R5 of the The resistance value R5 ′ of the auxiliary ground wire 26 is far smaller than the resistance value R4 ′ of the auxiliary bridge wire 24.
  • the peripheral resistances R3 and R3' are smaller, the voltage difference between VDD and GND input to the edges of the AA area is smaller.
  • the equivalent resistance of the bridge wiring (including the main bridge wiring and the auxiliary bridge wiring) and the resistance and internal resistance of the peripheral wiring (including the main power line and the main grounding line)
  • the equivalent resistance of the bridge wiring is far greater.
  • the resistance and internal resistance of the peripheral wiring make the resistance and internal resistance of the peripheral wiring negligible, so that the influence of the resistance of the peripheral wiring and the resistance difference of the wiring in the AA area can be ignored. Therefore, better brightness uniformity can be obtained.
  • the ratio between the minimum current and the maximum current is close to 97%.
  • the resistance value of the material of the main bridge line 23 and the resistance value of the material of the auxiliary bridge line 24 may both be greater than a preset value.
  • the material of the main bridge line 23 and the material of the auxiliary bridge line 24 both include at least one of ITO and conductive IGZO. That is, the main bridge wiring 23 and the auxiliary bridge wiring 24 can be made of materials with relatively large resistance.
  • the length of the main bridge line 23 and the length of the auxiliary bridge line 24 may both be greater than a preset length.
  • the width of the main bridge line 23 and the width of the auxiliary bridge line 24 are both smaller than a preset width. That is, the equivalent resistance of the bridge wire can be increased by increasing the length of the bridge wire or reducing the width of the bridge wire.
  • the way to increase the resistance of the bridge wire is not limited to this.
  • the resistances of the main bridge wires 23 are equal, and the resistances of the auxiliary bridge wires 24 are equal.
  • the length and width of each main bridge line 23 are equal, and the length and width of each auxiliary bridge line 24 are equal. That is, when the resistances of the bridge wires around the display area are equal, the difference between VDD and GND can be further reduced, thereby making the display brightness more uniform.
  • the present invention also provides a display device including any one of the above-mentioned display panels.
  • the display panel and the display device of the present invention include a display area, which includes a plurality of auxiliary power lines and a plurality of auxiliary ground lines; the main power line is arranged outside the display area, and the main power line includes at least two power connections Access point, the power access point is used to input the power supply voltage; multiple main bridge wiring, the main power line is connected to one end of the auxiliary power line through the main bridge wiring; the two main bridge wirings correspond to the Auxiliary power line; the main grounding line is set outside the display area, the main grounding line includes at least two grounding points, the grounding points are used for grounding; a plurality of auxiliary bridge wiring, the main grounding line passes through the The auxiliary bridge wire is connected to one end of the auxiliary ground wire, and the two auxiliary bridge wires correspond to one auxiliary ground wire; because the power access point and the ground point are added on the display panel, the wiring at different positions in the display area is reduced The difference in resistance of the display area makes the brightness of different positions in the display area more uniform.

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  • Engineering & Computer Science (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Electroluminescent Light Sources (AREA)

Abstract

一种显示面板及显示装置,显示面板包括:主电源线(21)包括至少两个电源接入点(B1、B2);辅助电源线(25)的两端分别通过一主桥接线(23)与主电源线(21)连接;主接地线(22)包括至少两个接地点(C1、C1),辅助接地线(26)的两端分别通过一辅助桥接线(24)与主接地线(22)连接。显示面板及显示装置能够提高显示面板的亮度均一性。

Description

一种显示面板及显示装置 技术领域
本发明涉及显示技术领域,特别是涉及一种显示面板及显示装置。
背景技术
与液晶显示面板的电压驱动方式不同,有机发光二极管显示面板的驱动方式为电压转电流,在发光二极管点亮时,整个面板会流过较大的电流。如图1所示,有机发光二极管显示面板包括显示区域101(AA区),显示区域101设置有多条辅助电源线15和辅助接地线16,在显示区域101的外围设置有多条主电源线11和多条主桥接线13,电流经主电源线11经过主桥接线13灌入显示区域101,经由显示区域101内的横纵排布的辅助电源线15输入到各发光二极管使其发光,然后由显示区域101区内辅助接地线16流经辅助桥接线14以及主接地线12形成回路。
技术问题
由于不同位置的走线长度不同,受到走线电阻及电流的影响,显示区域101内不同位置接收到的VDD、GND电压不同。由于流过发光单元102的电流与VDD、GND值相关,因此使得流经AA区内各发光单元102的电流不同,显示区域的左下角为最大电流区域,右上角为最小电流区域,其中最小电流与最大电流之间的百分比为70%,也即电流分布不均,最终导致发光二极管D0的亮度不均,也即显示亮度不均。
因此,有必要提供一种显示面板及显示装置,以解决现有技术所存在的问题。
技术解决方案
本发明的目的在于提供一种显示面板及显示装置,能够使显示亮度更加均匀。
为解决上述技术问题,本发明提供一种显示面板,包括:
显示区域,其包括多条辅助电源线以及多条辅助接地线;
主电源线,设于所述显示区域外,所述主电源线包括至少两个电源接入点,所述电源接入点用于输入电源电压;
多条主桥接线,所述辅助电源线的两端分别通过一所述主桥接线与所述主电源线连接;两条主桥接线对应一所述辅助电源线;
主接地线,设于所述显示区域外,所述主接地线包括至少两个接地点,所述接地点用于接地;
多条辅助桥接线,所述辅助接地线的两端分别通过一所述辅助桥接线与所述主接地线连接两条辅助桥接线对应一所述辅助接地线。
本发明还提供一种显示装置,包括上述显示面板。
有益效果
本发明的显示面板及显示装置,包括显示区域,其包括多条辅助电源线以及多条辅助接地线;主电源线,设于所述显示区域外,所述主电源线包括至少两个电源接入点,所述电源接入点用于输入电源电压;多条主桥接线,所述主电源线通过所述主桥接线与所述辅助电源线的一端连接;两条主桥接线对应一所述辅助电源线;主接地线,设于所述显示区域外,所述主接地线包括至少两个接地点,所述接地点用于接地;多条辅助桥接线,所述主接地线通过所述辅助桥接线与所述辅助接地线的一端连接,两条辅助桥接线对应一所述辅助接地线;由于在显示面板上增加电源接入点以及接地点,因此减小显示区域不同位置的走线的电阻差异,进而使得显示区域的不同位置的亮度更加均一。
附图说明
图1为现有显示面板的结构示意图;
图2为现有显示面板的等效电路图;
图3为本发明显示面板的结构示意图;
图4为本发明显示面板的等效电路图。
本发明的实施方式
以下各实施例的说明是参考附加的图式,用以例示本发明可用以实施的特定实施例。本发明所提到的方向用语,例如「上」、「下」、「前」、「后」、「左」、「右」、「内」、「外」、「侧面」等,仅是参考附加图式的方向。因此,使用的方向用语是用以说明及理解本发明,而非用以限制本发明。在图中,结构相似的单元是以相同标号表示。
如图2所示,R0表示主电源线11上的等效电阻,R0'表示主接地线12上的等效电阻,R1表示主桥接线13上的等效电阻,R1'表示辅助桥接线14上的等效电阻,R2表示辅助电源线15上的等效电阻,R2'表示辅助接地线16上的等效电阻。其中显示区内包括M行N列发光单元,图中仅示出部分发光单元L 1-1、L M-1、L 1-N、L M-N,具体为VDD 1-1>VDD M-1>VDD 1-N>VDD M-N,GND 1-1>GND M-1>GND 1-N>GND M-N,其中下标1-1表示第一行第一列,M-1表示第M行第一列,其余标号与此类似。
请参照图3和图4,本实施例的显示面板为有机发光二极管显示面板,优选为微型发光二极管(micro LED)显示面板,本发明的显示面板包括显示区域201(AA区),显示区域201设置有多条辅助电源线25和辅助接地线26,其中显示区域的横向和纵向均分布有辅助电源线25,辅助接地线26横向分布。也即多条所述辅助电源线25可包括多条第一子电源线251和多条第二子电源线252;其中第一子电源线251沿水平方向排布,第二子电源线252沿竖直方向排布。
在显示区域201外设置有主电源线21、多条主桥接线23、主接地线22以及多条辅助桥接线24。
所述主电源线21包括两个电源接入点B1、B2,所述电源接入点B1、B2用于输入电源电压VDD。所述两个电源接入点B1、B2分别位于所述显示区域201的两侧中的其中一侧。当然,可以理解的电源接入点的数量不限于两个,可以为2个以上,比如在一实施方式中,可以在显示区域的四个角上均设置电源接入点。在一实施方式中,所述主电源线21环绕所述显示区域201。
所述主电源线21通过所述主桥接线23与所述辅助电源线25的一端连接;其中两条主桥接23线对应一所述辅助电源线25。以水平方向的辅助电源线为例,第一子电源线251的左端通过左侧的主桥接线23与左侧主电源线21连接,第一子电源线251的右端通过右侧的主桥接线23与右侧的主电源线21连接。可以理解的,竖直方向的辅助电源线25与此类似,在此不再赘述。
主接地线22也设于所述显示区域201外,在一实施方式中,主接地线22设于所述主电源线21外,所述主接地线22包括两个接地点C1、C2,所述接地点C1、C2用于接地,也即连接接地端GND。所述两个接地点C1、C2分别位于所述显示区域201的两侧中的其中一侧。当然,可以理解的,接地点的数量不限于两个,可以为2个以上,比如在一实施方式中,可以在显示区域201的四个角上均设置接地点。在一实施方式中,在显示区域201的下方未设置所述主接地线22,也即在显示区域201的左右两侧以及上方均设置有所述主接地线22。
所述主接地线22通过所述辅助桥接线24与所述辅助接地线26的一端连接,两条辅助桥接线24对应一所述辅助接地线26。所述辅助接地线26的左端通过左侧的辅助桥接线24与左侧主接地线22连接,所述辅助接地线26的右端通过右侧的辅助桥接线24与右侧主接地线22连接。
所述显示区域201还可包括阵列排布的发光单元,阵列排布的发光单元包括多行或者多列发光单元202,所述发光单元202包括多个有机发光二极管D1,比如包括红色、绿色、蓝色有机发光二极管。
每行发光单元202分别与所述第一子电源线251和所述辅助接地线26对应;每列发光单元202与所述第二子电源线252对应;
具体地,每行所述发光单元202分别对应一水平方向的辅助电源线25以及一辅助接地线26;其中每列发光单元202也对应一竖直方向的辅助电源线25。
所述有机发光二极管D1的阳极分别与对应的第一子电源线251和第二子电源线252连接,所述有机发光二极管D1的阴极与对应的辅助接地线26连接。
在具体工作过程中,电流经主电源线21经过主桥接线23灌入显示区域201,经由显示区域201内的横纵排布的辅助电源线25输入到各发光二极管D2使其发光,然后由显示区域201区内辅助接地线26流经辅助桥接线24以及主接地线22形成回路。在本实施例中,经过测试发现,最小电流与最大电流之间的比值接近90%。
由于在显示面板的两侧增加电源接入点以及接地点,因此,可以有效地减小显示区域的不同位置之间的走线的长度差异(也即电阻差异),从而使得不同位置处消耗的电流越小,也即减小压降,进而使得显示区域的不同位置的亮度更加均一。当然可以理解的,当电源接入点以及接地点的数量更多时,可使得显示区域的不同位置的亮度更加均一。
在另一实施例中,为了进一步提高显示亮度的均一性,结合图4,R3表示主电源线21上的等效电阻,R3'表示主接地线22上的等效电阻,R4表示主桥接线23上的等效电阻,R4'表示辅助桥接线24上的等效电阻。R5表示辅助电源线25上的等效电阻。R5'表示辅助接地线26上的等效电阻(也即R5和R5'相当于内电阻)。其中显示区内包括M行N列发光单元,图中仅示出部分发光单元L 1-1、L M-1、L 1-N、L M-N,其余发光单元未示出。其中所述主电源线21的阻值R3以及所述辅助电源线25的阻值R5均远小于所述主桥接线23的阻值R4;所述主接地线22的阻值R3'以及所述辅助接地线26的阻值R5'均远小于所述辅助桥接线24的阻值R4'。由于外围电阻R3和R3'越小,使得输入到AA区边缘各位置的VDD、GND的电压差异越小。R5和R5'越小,使得发光单元的内电阻越小,从而进一步减小AA区内各位置的VDD、GND的电压差异。因此通过增加桥接线(包括主桥接线和辅助桥接线)的等效电阻与外围走线(包括主电源线和主接地线)的电阻和内电阻的差异,即桥接线的等效电阻分别远大于外围走线的电阻以及内电阻,相对于桥接线的电阻,使得外围走线的电阻、内电阻可以忽略不计,从而可以忽略外围走线的电阻及AA区内走线的电阻差异的影响,因此可获得较好的亮度均一性。在本实施例中,经过测试发现,最小电流与最大电流之间的比值接近97%。
其中,为了进一步提高显示亮度的均一性,所述主桥接线23的材料的阻值和所述辅助桥接线24的材料的阻值可均大于预设值。在一实施方式中,所述主桥接线23的材料和所述辅助桥接线24的材料均包括ITO以及导体化IGZO中的至少一种。也即所述主桥接线23和所述辅助桥接线24可采用阻值较大的材料制作。
其中,为了进一步提高显示亮度的均一性,所述主桥接线23的长度和和所述辅助桥接线24的长度可均大于预设长度。在另一实施方式中,所述主桥接线23的宽度和所述辅助桥接线24的宽度均小于预设宽度。也即可以通过增大桥接线的长度或者减小桥接线的宽度的方式,增大桥接线的等效电阻。当然,增大桥接线的电阻的方式不限与此。
为了进一步提高显示亮度的均一性,各所述主桥接线23的电阻相等,各所述辅助桥接线24的电阻相等。在一实施方式中,各所述主桥接线23的长度和宽度均相等,各所述辅助桥接线24的长度和宽度相等。也即当显示区域四周的桥接线的电阻相等的情况下,可以进一步减小VDD和GND的差异,从而使得显示亮度更加均一。
本发明还提供一种显示装置,包括上述任意一种显示面板。
本发明的显示面板及显示装置,包括显示区域,其包括多条辅助电源线以及多条辅助接地线;主电源线,设于所述显示区域外,所述主电源线包括至少两个电源接入点,所述电源接入点用于输入电源电压;多条主桥接线,所述主电源线通过所述主桥接线与所述辅助电源线的一端连接;两条主桥接线对应所述辅助电源线;主接地线,设于所述显示区域外,所述主接地线包括至少两个接地点,所述接地点用于接地;多条辅助桥接线,所述主接地线通过所述辅助桥接线与所述辅助接地线的一端连接,两条辅助桥接线对应一所述辅助接地线;由于在显示面板上增加电源接入点以及接地点,因此减小显示区域不同位置的走线的电阻差异,进而使得显示区域的不同位置的亮度更加均一。
综上所述,虽然本发明已以优选实施例揭露如上,但上述优选实施例并非用以限制本发明,本领域的普通技术人员,在不脱离本发明的精神和范围内,均可作各种更动与润饰,因此本发明的保护范围以权利要求界定的范围为准。

Claims (20)

  1. 一种显示面板,其包括:
    显示区域,其包括多条辅助电源线以及多条辅助接地线;
    主电源线,设于所述显示区域外,所述主电源线包括至少两个电源接入点,所述电源接入点用于输入电源电压;
    多条主桥接线,所述辅助电源线的两端分别通过一所述主桥接线与所述主电源线连接;两条所述主桥接线对应一所述辅助电源线;
    主接地线,设于所述显示区域外,所述主接地线包括至少两个接地点,所述接地点用于接地;以及
    多条辅助桥接线,所述辅助接地线的两端分别通过一所述辅助桥接线与所述主接地线连接,两条所述辅助桥接线对应一所述辅助接地线。
  2. 根据权利要求1所述的显示面板,其中
    所述主电源线的阻值以及所述辅助电源线的阻值均远小于所述主桥接线的阻值;
    所述主接地线的阻值以及所述辅助接地线的阻值均远小于所述辅助桥接线的阻值。
  3. 根据权利要求2所述的显示面板,其中
    所述主桥接线的材料的阻值和所述辅助桥接线的材料的阻值均大于预设值。
  4. 根据权利要求3所述的显示面板,其中
    所述主桥接线的材料和所述辅助桥接线的材料均包括ITO以及导体化IGZO中的至少一种。
  5. 根据权利要求3所述的显示面板,其中
    所述主桥接线的长度和和所述辅助桥接线的长度均大于预设长度。
  6. 根据权利要求3所述的显示面板,其中
    所述主桥接线的宽度和所述辅助桥接线的宽度均小于预设宽度。
  7. 根据权利要求1所述的显示面板,其中
    所述显示区域还包括阵列排布的发光单元,所述发光单元包括多个有机发光二极管,多条所述辅助电源线包括多条第一子电源线和多条第二子电源线;
    每行发光单元分别与所述第一子电源线以及所述辅助接地线对应;每列发光单元与所述第二子电源线对应;
    所述有机发光二极管的阳极分别与对应的第一子电源线和对应的第二子电源线连接,所述有机发光二极管的阴极与对应的辅助接地线连接。
  8. 根据权利要求1所述的显示面板,其中
    各所述主桥接线的电阻相等,各所述辅助桥接线的电阻相等。
  9. 根据权利要求1所述的显示面板,其中
    所述主电源线包括两个电源接入点,所述两个电源接入点分别位于所述显示区域的两侧中的其中一侧;
    所述主接地线包括两个接地点,所述两个接地点分别位于所述显示区域的两侧中的其中一侧。
  10. 一种显示装置,其包括显示面板,其包括:
    显示区域,其包括多条辅助电源线以及多条辅助接地线;
    主电源线,设于所述显示区域外,所述主电源线包括至少两个电源接入点,所述电源接入点用于输入电源电压;
    多条主桥接线,所述辅助电源线的两端分别通过一所述主桥接线与所述主电源线连接;两条所述主桥接线对应一所述辅助电源线;
    主接地线,设于所述显示区域外,所述主接地线包括至少两个接地点,所述接地点用于接地;以及
    多条辅助桥接线,所述辅助接地线的两端分别通过一所述辅助桥接线与所述主接地线连接,两条所述辅助桥接线对应一所述辅助接地线。
  11. 根据权利要求10所述的显示装置,其中
    所述主电源线的阻值以及所述辅助电源线的阻值均远小于所述主桥接线的阻值;
    所述主接地线的阻值以及所述辅助接地线的阻值均远小于所述辅助桥接线的阻值。
  12. 根据权利要求11所述的显示装置,其中
    所述主桥接线的材料的阻值和所述辅助桥接线的材料的阻值均大于预设值。
  13. 根据权利要求12所述的显示装置,其中
    所述主桥接线的材料和所述辅助桥接线的材料均包括ITO以及导体化IGZO中的至少一种。
  14. 根据权利要求12所述的显示装置,其中
    所述主桥接线的长度和所述辅助桥接线的长度均大于预设长度。
  15. 根据权利要求12所述的显示装置,其中
    所述主桥接线的宽度和所述辅助桥接线的宽度均小于预设宽度。
  16. 根据权利要求10所述的显示装置,其中
    所述显示区域还包括阵列排布的发光单元,所述发光单元包括多个有机发光二极管,多条所述辅助电源线包括多条第一子电源线和多条第二子电源线;
    每行发光单元分别与所述第一子电源线以及所述辅助接地线对应;每列发光单元与所述第二子电源线对应;
    所述有机发光二极管的阳极分别与对应的第一子电源线和对应的第二子电源线连接,所述有机发光二极管的阴极与对应的辅助接地线连接。
  17. 根据权利要求10所述的显示装置,其中
    各所述主桥接线的电阻相等,各所述辅助桥接线的电阻相等。
  18. 根据权利要求10所述的显示装置,其中
    所述主电源线包括两个电源接入点,所述两个电源接入点分别位于所述显示区域的两侧中的其中一侧;
    所述主接地线包括两个接地点,所述两个接地点分别位于所述显示区域的两侧中的其中一侧。
  19. 根据权利要求10所述的显示装置,其中
    所述主电源线环绕所述显示区域。
  20. 根据权利要求10所述的显示装置,其中
    在所述显示区域的下方未设置所述主接地线。
PCT/CN2019/125221 2019-11-26 2019-12-13 一种显示面板及显示装置 WO2021103184A1 (zh)

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