WO2020237792A1 - 柔性显示面板和柔性显示装置 - Google Patents

柔性显示面板和柔性显示装置 Download PDF

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Publication number
WO2020237792A1
WO2020237792A1 PCT/CN2019/095978 CN2019095978W WO2020237792A1 WO 2020237792 A1 WO2020237792 A1 WO 2020237792A1 CN 2019095978 W CN2019095978 W CN 2019095978W WO 2020237792 A1 WO2020237792 A1 WO 2020237792A1
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Prior art keywords
sub
display panel
display
area
bending area
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Ceased
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PCT/CN2019/095978
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English (en)
French (fr)
Inventor
张卓
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Wuhan China Star Optoelectronics Semiconductor Display Technology Co Ltd
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Wuhan China Star Optoelectronics Semiconductor Display Technology Co Ltd
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Publication of WO2020237792A1 publication Critical patent/WO2020237792A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F9/00Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements
    • G09F9/30Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements in which the desired character or characters are formed by combining individual elements
    • G09F9/301Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements in which the desired character or characters are formed by combining individual elements flexible foldable or roll-able electronic displays, e.g. thin LCD, OLED

Definitions

  • This application relates to the field of display technology, and in particular to a flexible display panel and a flexible display device.
  • the existing display panel has a technical problem that the joint cannot be displayed.
  • the present application provides a flexible display panel and a flexible display device, which are used to solve the technical problem that the existing display panel cannot display the splicing part.
  • the present application provides a flexible display panel, which includes:
  • the sub-display panel includes a display area and a non-display area, the non-display area is bent toward the substrate of the sub-display panel to form a bending area, and the bending area of the sub-display panel forms
  • There are connecting terminals, and sensing units are arranged in the sub-display panels, wherein the connecting terminals of adjacent sub-display panels are connected, and the sensing units of adjacent sub-display panels are electrically connected.
  • the bending area is a non-display area.
  • the bending area includes a non-display area and a display area.
  • At least one side of the sub-display panel is bent to form a bending area, and the bending area is formed with a connecting terminal.
  • the bending area is formed with a connecting terminal.
  • At least one corner of the sub-display panel is bent to form a bending area, and the bending area is formed with a connecting terminal.
  • the bending area is formed with a connecting terminal.
  • the sensing unit includes a sensor.
  • the senor is arranged in the bending area.
  • the senor includes at least one of a capacitive sensor, a piezoelectric sensor, and an infrared sensor.
  • connection terminal includes a hinge.
  • the connecting terminal includes optical glue.
  • the present application provides a flexible display device, which includes a flexible display panel, and the flexible display panel includes:
  • the sub-display panel includes a display area and a non-display area, the non-display area is bent toward the substrate of the sub-display panel to form a bending area, and the bending area of the sub-display panel forms There are connecting terminals, the sub-display panel is provided with a sensing unit, wherein the connecting terminals of the adjacent sub-display panels are connected, and the sensing units of the adjacent sub-display panels are electrically connected.
  • the bending area is a non-display area.
  • the bending area includes a non-display area and a display area.
  • At least one side of the sub-display panel is bent to form a bending area, and the bending area is formed with a connecting terminal.
  • the bending area is formed with a connecting terminal.
  • At least one corner of the sub-display panel is bent to form a bending area, and the bending area is formed with a connecting terminal.
  • connection terminals In the flexible display device provided by the present application, four corners of the sub-display panel are bent to form a bending area, and the bending area is formed with connection terminals.
  • the sensing unit includes a sensor.
  • the present application provides a flexible display panel and a flexible display device.
  • the flexible display panel includes at least two sub-display panels.
  • the sub-display panel includes a display area and a non-display area.
  • the non-display area faces the sub-display panel.
  • the bottom is bent to form a bending area
  • the bending area of the sub-display panel is formed with connecting terminals
  • the sub-display panel is provided with a sensing unit, wherein the connecting terminals of adjacent sub-display panels are connected, and the adjacent The sensing unit of the sub-display panel is electrically connected, by bending the non-display area of the sub-display panel to the substrate of the sub-display panel to form a bending area, and forming connection terminals in the bending area, so that adjacent sub-display panels can be connected through
  • the terminals are connected, and the connection can be displayed, and by arranging the sensing unit in the sub-display panel, the adjacent sub-display panels are electrically connected through the sensing unit to realize the interconnection of the sub-display panels, which solves the problem that the existing display panels have splicing places Technical issues that cannot be displayed.
  • FIG. 1 is a first schematic diagram of a flexible display panel provided by an embodiment of the application
  • FIG. 2 is a second schematic diagram of a flexible display panel provided by an embodiment of the application.
  • FIG. 3 is a third schematic diagram of a flexible display panel provided by an embodiment of the application.
  • FIG. 4 is a fourth schematic diagram of a flexible display panel provided by an embodiment of the application.
  • the present application addresses the technical problem that existing display panels cannot display at the splicing location, and the embodiments of the present application are used to solve this problem.
  • an embodiment of the present application provides a flexible display panel, which includes:
  • the sub-display panel 11 includes a display area 111 and a non-display area 112, the non-display area 111 is bent toward the substrate 113 of the sub-display panel 11 to form a bending area 116,
  • the bending area 116 of the sub-display panel 11 is formed with a connecting terminal 115, and the sub-display panel 11 is provided with a sensing unit 114, wherein the connecting terminals 115 of adjacent sub-display panels are connected, and the adjacent sub-display panels 11
  • the sensing unit 114 is electrically connected.
  • the sensing unit of the panel is electrically connected, by bending the non-display area of the sub-display panel to the substrate of the sub-display panel to form a bending area, and forming connection terminals in the bending area, so that adjacent sub-display panels can be connected through the connection terminals , And the connection can be displayed, and by setting the sensing unit in the sub-display panel, the adjacent sub-display panels are electrically connected through the sensing unit to realize the interconnection of the sub-display panels, which solves the problem that the existing display panels cannot display at the splicing Technical issues.
  • the bending area is a non-display area.
  • the non-display area of the adjacent sub-display panels is bent toward the substrate of the display panel to make
  • the entire surface of the spliced flexible display panel is the display area, and by forming the connecting terminals in the bending area, the sensing unit is arranged in the sub-display panel, so that the adjacent sub-display panels are connected through the connecting terminals, and the adjacent sub-display panels pass through
  • the sensing unit is electrically connected, so that the flexible display panel can display the entire surface, and can realize the interconnection of the sub-display panels, thereby controlling the adjacent sub-display panels to display a picture, increasing the display area, and the adjacent sub-display panels can be displayed according to demand Different pictures.
  • the bending area includes a non-display area and a display area, that is, the display area is further bent toward the substrate of the sub-display panel, so that the entire display area in the light emitting direction is shown. It is the display area, so as to avoid the problem that the joints of the sub-display panels cannot be displayed.
  • the substrate of the non-display area is not attached to the substrate of the display area, even if the non-display area is located on the side of the sub-display panel, the adjacent sub-display panels are connected by A sensing unit is arranged on the area to electrically connect the adjacent sub-display panels, so that the adjacent sub-display panels can be interconnected, so that the adjacent sub-display panels can display at the splicing place.
  • the substrate of the non-display area is attached to the substrate of the display area, even if the non-display area is located on the bottom surface of the sub-display panel, in order to reduce the thickness of the sub-display panel,
  • the area is arranged on the bottom surface of the sub-display panel, and connection terminals can be formed in the non-display area, or connection terminals can be formed in the non-display area or the side surface of the display area to connect adjacent sub-display panels, and set in the non-display area or display area
  • the sensing unit electrically connects adjacent sub-display panels.
  • At least one side of the sub-display panel is bent to form a bending area, the bending area is formed with a connecting terminal, and the side includes a display area and a non-display area, that is, the sub-display panel At least one of the side edges is bent to form a bending area, and a connecting terminal is formed in the bending area, so that adjacent sub-display panels are connected through the connecting terminal.
  • the flexible display panel is formed by splicing two sub-display panels, it is only necessary to bend one side of the two sub-display panels to form a bending area, and to form a connecting terminal in the bending area, so that the two sub-displays The panels can be connected through the connecting terminals, and then the adjacent sub-display panels are electrically connected through the provided sensing units, so that the adjacent sub-display panels can realize signal interaction, so that the splicing place of the flexible display panel can be displayed normally.
  • an embodiment of the present application provides a flexible display panel.
  • the flexible display panel includes spliced sub-display panels 21. Four sides of the sub-display panels 21 are bent to form a bending area.
  • the folding area forms a connecting terminal 222, the sub-display panel 21 is connected through the connecting terminal 222, and the sub-display panel 21 is electrically connected through the sensing unit 221, so that the flexible display panel joints are displayed normally.
  • the first side 211, the second side 213, the third side 214, and the fourth side 215 of the sub-display panel 21 are arranged in a counterclockwise direction toward the sub-display panel.
  • the substrate is bent to form a bending area
  • a connecting terminal 222 is formed on the third side 214 connected to the adjacent sub-display panel
  • a sensing unit 221 is provided on the second side 213, so that the adjacent sub-display panel can It is connected by connecting terminals, and adjacent sub-display panels can be electrically connected through the induction unit, so that the adjacent sub-display panels can be displayed normally at the splicing place, and the adjacent sub-display panels can display a pair of pictures together, realizing the relationship between the adjacent sub-display panels.
  • the non-display area of the sub-display panel is all bent, so that a full display can be presented on the flexible display panel.
  • FIG. 2 shows two sub-display panels connected symmetrically.
  • the connection terminals of the two sub-display panels overlap, and only one connection terminal is shown in the figure.
  • connection terminal is drawn on one sub-display panel, but one sub-display can have multiple connection terminals.
  • the light-emitting surface 216 of the sub-display panel is a complete display area, that is, the bending area is a non-display area, or the display area of the sub-display panel may be partially bent to avoid Display problems such as black lines appear at the splicing.
  • the plane 212 shown in FIG. 2 is the bottom surface of the sub-display panel, and the bending area of the sub-display panel is bent toward the substrate of the sub-display panel to lower the sub-display panel.
  • the bending area of the sub-display panel is located on the side of the sub-display panel and is not attached to the substrate of the display area, so that connecting terminals are formed on the side of the sub-display panel to connect adjacent sub-display panels.
  • the first connection terminal is formed on the first side
  • the second connection terminal is formed on the second side
  • the third connection terminal is formed on the third side
  • the third connection terminal is formed on the fourth side.
  • the fourth connection terminal by forming a connection terminal on each side of the sub-display panel, enables the sub-display panel to be connected infinitely, and multiple connected sub-display panels can be electrically connected through the provided induction unit, thereby achieving multiple
  • the information interaction of each sub-display panel causes multiple sub-display panels to display one screen, or display screens in sections according to requirements, or multiple sub-display panels display the same screen.
  • the first side of the sub-display panel is provided with a sensing unit, or the second side of the sub-display panel is provided with a sensing unit, or the third side of the sub-display panel is provided with a sensing unit , Or the fourth side of the sub-display panel is provided with a sensing unit, the embodiment of the present application does not limit the position of the sensing unit, and adjacent sub-display panels can be electrically connected to the sensing unit through the sensing unit.
  • the flexible display panel includes a first sub-display panel and a second sub-display panel, and both the first sub-display panel and the second sub-display panel include a first side, a second side, and a third side.
  • Connecting terminals are formed on the third side of the first sub-display panel, connecting terminals are formed on the first side of the second sub-display panel, and the first sub-display panel is connected to the fourth side.
  • the second sub-display panel is connected by connecting terminals.
  • the sensing unit can be provided on the first side of the first sub-display panel, and the sensing unit can be provided on the first side of the second sub-display panel, so that the The sensing unit is electrically connected to the sensing unit of the second sub-display panel, so as to realize the electrical connection between the first sub-display panel and the second display panel; or the sensing unit is provided on the first side of the first sub-display panel, and the sensing unit is arranged on the second sub-display panel.
  • the second side of the display panel is provided with a sensing unit, and the sensing unit of the first sub-display panel can be connected to the sensing unit of the second sub-display panel wirelessly or through a circuit; or on the first side of the first sub-display panel A sensing unit is provided, and a sensing unit is provided on the third side of the second sub-display panel; or a sensing unit is provided on the first side of the first sub-display panel and the sensing unit is provided on the fourth side of the second sub-display panel Or set the sensing unit on the first side of the first sub-display panel, and set the sensing unit on the bottom surface of the second sub-display panel.
  • the location of the sensing unit of the sub-display panel is not limited.
  • the sensing units of the sub-display panels can be arranged on any side or display area without affecting the display, and the sensing units of the adjacent sub-display panels have the same or different positions.
  • a sensing unit is provided on the side where adjacent sub-display panels are connected, or a sensing unit is provided in the display area.
  • sensing units are provided on the four sides of the sub-display panel.
  • adjacent sensing units of adjacent sub-display panels perform information interaction, and the four sub-display panels of the same sub-display panel interact with each other.
  • the sensing unit can exchange information, so that multiple spliced sub-display panels can exchange information in pairs or multiple signal exchanges.
  • At least one corner of the sub-display panel is bent to form a bending area, and the bending area is formed with connecting terminals.
  • the corners of the sub-display panel are bent to form the bending area.
  • the areas form connection terminals so that adjacent sub-display panels are connected.
  • an embodiment of the present application provides a flexible display panel.
  • the flexible display panel includes two identical sub-display panels 31. Four corners of the sub-display panels 31 are bent to form a bending area.
  • the bending area is formed with a connecting terminal 321, the sub-display panel 31 is connected through the connecting terminal 321, and the sub-display panel 31 is electrically connected through the sensing member 322, so that the flexible display panel is displayed normally at the splicing place, and adjacent sub-display panels It can carry out information interaction, and solves the technical problem that the existing display panel cannot display the splicing part.
  • connection terminal for convenience of description, only one connection terminal is shown in FIG. 3, but the sub-display panel may have multiple connection terminals.
  • At least one corner of the sub-display panel is bent to form a bending area, and the bending area is formed with a connecting terminal, that is, one corner of the sub-display panel is bent to form a bending area, and
  • the folded area includes a non-display area and a display area.
  • Connecting terminals are formed in the bent area, and adjacent sub-display panels are connected through the connecting terminals, so that the sub-display panels are normally displayed at the splicing place.
  • the sub-display panel 31 is bent toward the substrate of the sub-display panel along the counterclockwise first corner 311, second corner 312, third corner 313, and fourth corner 314
  • a bending area is formed, a connecting terminal 321 is formed on the second corner 312 connected to the adjacent sub-display panel, a sensing unit 322 is formed on the first corner 312, and a connecting terminal is formed on the fourth corner of the adjacent sub-display panel, so that Adjacent sub-display panels can be connected by connecting terminals, and adjacent sub-display panels can be electrically connected through the sensing unit, so that the light-emitting surface 315 of the sub-display panel is displayed on the whole surface, so that the flexible display panel is displayed normally at the splicing place and adjacent
  • the sub-display panels can jointly display a pair of pictures to realize the interconnection between adjacent sub-display panels. At the same time, all the non-display areas of the sub-display panels are bent, so that the flexible display panel presents a comprehensive
  • the corners of the sub-display panel are bent toward the substrate of the sub-display panel, so that the substrate in the bending area is attached to the substrate in the display area, so as to reduce the thickness of the sub-display panel to reduce The thickness of the flexible display panel, or the corners of the sub-display panel are bent to the side of the sub-display panel, the substrate in the bending area is not attached to the substrate in the display area, so that connecting terminals are formed on the corners of the sub-display panel, Connect adjacent sub-display panels.
  • the first connection terminal is formed on the first corner
  • the second connection terminal is formed on the second corner
  • the third connection terminal is formed on the third corner
  • the fourth connection terminal is formed on the fourth corner.
  • a sensing unit can be provided on the first corner of the sub-display panel, or a sensing unit can be provided on the second corner of the sub-display panel, or a sensing unit can be provided on the third corner of the sub-display panel, Or a sensing unit is provided on the fourth corner of the sub-display panel.
  • the embodiment of the present application does not limit the position of the sensing unit, and the sensing unit can be electrically connected to adjacent sub-display panels through the sensing unit.
  • the flexible display panel includes a first sub-display panel and a second sub-display panel, and both the first sub-display panel and the second sub-display panel include a first corner, a second corner, a third corner, and a fourth corner.
  • connecting terminals are formed on the second corners of the first sub-display panel, connecting terminals are formed on the fourth corners of the second sub-display panel, and the first sub-display panel and the second sub-display panel pass through
  • the connecting terminal is connected, the sensing unit can be arranged on the first corner of the first sub-display panel, and the sensing unit can be arranged on the first corner of the second sub-display panel, so that the sensing unit of the first sub-display panel and the second sub-display panel
  • the sensing unit is electrically connected to realize the electrical connection between the first sub-display panel and the second display panel; or the sensing unit is provided on the first corner of the first sub-display panel, and the sensing unit is provided on the second corner of the second sub-display panel Sensing unit, the sensing unit of the first sub-display panel can be wirelessly connected with the sensing unit of the second sub-display panel or connected through a circuit; or the sensing unit is provided on the first corner of the first sub-disp
  • the location of the sensing unit of the sub-display panel is not limited.
  • the sensing units of the sub-display panels can be arranged in any corner or display area when the display does not affect the display, and the sensing units of adjacent sub-display panels have the same or different positions.
  • sensing units are provided on the four corners of the sub-display panel.
  • adjacent sensing units of adjacent sub-display panels perform information interaction, and the same sub-display panel
  • the four sensing units can exchange information, so that multiple spliced sub-display panels can exchange information in pairs or multiple signal exchanges.
  • first corner, the second corner, the third corner, and the fourth corner of the sub-display panel are bent to form a bending area
  • the upper side of the sub-display panel is The lower side is bent to form a bending area
  • connecting terminals can be formed at the first corner, the second corner, the third corner, the fourth corner, the upper side of the sub-display panel, and the lower side of the sub-display panel, so that the sub-display panels can realize infinite interaction. even.
  • an embodiment of the present application provides a flexible display panel.
  • the non-display area and the display area of the sub-display panel are bent to form a bending area, and connecting terminals are formed on the bending area, which can realize the sub-display panel. Infinite interconnection, one effect is shown in Figure 4(a).
  • the sub-display panel 41 is interconnected with adjacent sub-display panels through connecting terminals, and the sub-display panels can electrically connect the adjacent sub-display panels through the sensing unit.
  • the sub-display panel 42 is interconnected with adjacent sub-display panels through connecting terminals, and the sub-display panels can be electrically connected to the adjacent sub-display panels through the sensing unit;
  • Each bending area is provided with connection terminals, so that various required special-shaped flexible display panels can be obtained, and the flexible display panel can be displayed on the entire surface, avoiding display problems such as black lines at splicing sites.
  • the sensing unit includes a sensor, and information is transmitted through the sensor, so that the spliced sub-display panels can exchange information.
  • the senor includes at least one of a capacitive sensor, a piezoelectric sensor, and an infrared sensor.
  • a capacitive sensor for example, an infrared sensor is set, and the display area can be improved to make the infrared sensor
  • the sensor can work normally.
  • the sub-display panel includes a driving circuit layer, and the driving circuit layer forms the sensor.
  • the driving circuit layer of the sub-display panel is formed, the sensor can be formed at the same time, and the sensor can be arranged in the sub-display.
  • the binding area of the panel is to avoid affecting the display, or the sensor is set in the display area, by reducing the pixels or changing the pixel layout to make the sensor work normally and the display area is displayed normally.
  • the sub-display panel includes a first sub-display panel and a second sub-display panel, the first sub-display panel is provided with a first connection terminal, and the second sub-display panel is provided with The second connection terminal, the first connection terminal is a protrusion, the second connection terminal is a groove corresponding to the protrusion, the first sub-display panel and the second sub-display panel pass through the protrusion To connect with the groove, by designing the first connecting terminal as a protrusion and the second connecting terminal as a groove, so that the first connecting terminal and the second connecting terminal are aligned, so that the first sub-display panel and The second sub-display panel is connected.
  • the connecting terminal includes a hinge
  • the sub-display panel is connected by the hinge.
  • the hinge can bend adjacent sub-display panels. Fold, so as to realize that the flexible display panel can be displayed on both the front and the back, and the sub-display panel can be rotated to any angle for display according to requirements.
  • connection terminal includes optical glue
  • the sub-display panel is connected by the optical glue
  • the sensing unit can perform positioning, and the sensing unit can enable adjacent sub-display panels to perform signal interaction.
  • An embodiment of the application provides a flexible display device, the flexible display device includes a flexible display panel, the flexible display panel includes at least two sub-display panels, the sub-display panel includes a display area and a non-display area, the non-display area Bending toward the substrate of the sub-display panel to form a bending area, the bending area of the sub-display panel is formed with connection terminals, the sub-display panel is provided with a sensing unit, wherein the adjacent sub-display panels The connecting terminals are connected, and the sensing units of adjacent sub-display panels are electrically connected.
  • the non-display area of the sub-display panel is bent to the substrate of the sub-display panel to form a bending area, and connecting terminals are formed in the bending area, so that the adjacent The sub-display panel can be connected through the connecting terminal, and the connection can be displayed, and by arranging the sensing unit in the sub-display panel, the adjacent sub-display panels are electrically connected through the sensing unit to realize the interconnection of the sub-display panels, which solves
  • the existing display panel has a technical problem that the splicing part cannot be displayed.
  • the bending area is a non-display area.
  • the bending area includes a non-display area and a display area.
  • At least one side of the sub-display panel is bent to form a bending area, and the bending area is formed with a connecting terminal.
  • the flexible display device in the flexible display device, four sides of the sub-display panel are bent to form a bending area, and the bending area is formed with a connecting terminal.
  • the flexible display device in the flexible display device, four corners of the sub-display panel are bent to form a bending area, and the bending area is formed with a connecting terminal.
  • the sensing unit includes a sensor.
  • the embodiments of the present application provide a flexible display panel and a flexible display device.
  • the flexible display panel includes at least two sub-display panels.
  • the sub-display panel includes a display area and a non-display area, and the non-display area faces the sub-display panel.
  • the substrate is bent to form a bending area, the bending area of the sub-display panel is formed with connection terminals, the sub-display panel is provided with a sensing unit, wherein the connection terminals of adjacent sub-display panels are connected and are connected to each other.
  • the sensing units of the adjacent sub-display panels are electrically connected.

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Abstract

一种柔性显示面板和柔性显示装置,柔性显示面板包括至少两个子显示面板(11),通过将子显示面板(11)的非显示区(112)向子显示面板(11)的衬底(113)弯折形成弯折区域(116),在弯折区域(116)形成连接端子(115),使得相邻的子显示面板(11)能够通过连接端子(115)连接,且连接处能够显示,解决了显示面板存在拼接处无法显示的技术问题。

Description

柔性显示面板和柔性显示装置 技术领域
本申请涉及显示技术领域,尤其是涉及一种柔性显示面板和柔性显示装置。
背景技术
现有显示面板为提高显示面积,会将多个显示面板拼接起来,但由于单个显示面板存在边框,使得拼接处会出现无法显示的问题。
所以,现有显示面板存在拼接处无法显示的技术问题。
技术问题
本申请提供一种柔性显示面板和柔性显示装置,用于解决现有显示面板存在拼接处无法显示的技术问题。
技术解决方案
为解决上述问题,本申请提供的技术方案如下:
本申请提供一种柔性显示面板,该柔性显示面板包括:
至少两个子显示面板,所述子显示面板包括显示区和非显示区,所述非显示区向所述子显示面板的衬底弯折形成弯折区域,所述子显示面板的弯折区域形成有连接端子,所述子显示面板内设有感应单元,其中,相邻的子显示面板的连接端子连接,且相邻的子显示面板的感应单元电连接。
在本申请提供的柔性显示面板中,所述弯折区域为非显示区。
在本申请提供的柔性显示面板中,所述弯折区域包括非显示区和显示区。
在本申请提供的柔性显示面板中,所述子显示面板的至少一个侧边弯折形成弯折区域,所述弯折区域形成有连接端子。
在本申请提供的柔性显示面板中,所述子显示面板的四个侧边弯折形成弯折区域,所述弯折区域形成有连接端子。
在本申请提供的柔性显示面板中,所述子显示面板的至少一个角弯折形成弯折区域,所述弯折区域形成有连接端子。
在本申请提供的柔性显示面板中,所述子显示面板的四个角弯折形成弯折区域,所述弯折区域形成有连接端子。
在本申请提供的柔性显示面板中,所述感应单元包括传感器。
在本申请提供的柔性显示面板中,所述传感器设置在所述弯折区域。
在本申请提供的柔性显示面板中,所述传感器包括电容式传感器、压电式传感器和红外式传感器中的至少一个。
在本申请提供的柔性显示面板中,所述连接端子包括铰链。
在本申请提供的柔性显示面板中,所述连接端子包括光学胶。
同时,本申请提供一种柔性显示装置,该柔性显示装置包括柔性显示面板,所述柔性显示面板包括:
至少两个子显示面板,所述子显示面板包括显示区和非显示区,所述非显示区向所述子显示面板的衬底弯折形成弯折区域,所述子显示面板的弯折区域形成有连接端子,所述子显示面板内设有感应单元,其中,相邻的子显示面板的连接端子连接,且相邻的子显示面板的感应单元电连接。
在本申请提供的柔性显示装置中,所述弯折区域为非显示区。
在本申请提供的柔性显示装置中,所述弯折区域包括非显示区和显示区。
在本申请提供的柔性显示装置中,所述子显示面板的至少一个侧边弯折形成弯折区域,所述弯折区域形成有连接端子。
在本申请提供的柔性显示装置中,所述子显示面板的四个侧边弯折形成弯折区域,所述弯折区域形成有连接端子。
在本申请提供的柔性显示装置中,所述子显示面板的至少一个角弯折形成弯折区域,所述弯折区域形成有连接端子。
在本申请提供的柔性显示装置中,所述子显示面板的四个角弯折形成弯折区域,所述弯折区域形成有连接端子。
在本申请提供的柔性显示装置中,所述感应单元包括传感器。
有益效果
本申请提供一种柔性显示面板和柔性显示装置,该柔性显示面板包括至少两个子显示面板,所述子显示面板包括显示区和非显示区,所述非显示区向所述子显示面板的衬底弯折形成弯折区域,所述子显示面板的弯折区域形成有连接端子,所述子显示面板内设有感应单元,其中,相邻的子显示面板的连接端子连接,且相邻的子显示面板的感应单元电连接,通过将子显示面板的非显示区向子显示面板的衬底弯折形成弯折区域,在弯折区域形成连接端子,使得相邻的子显示面板能够通过连接端子连接,且连接处能够显示,且通过在子显示面板内设置感应单元,使得相邻的子显示面板通过感应单元电连接,实现子显示面板的互连,解决了现有显示面板存在拼接处无法显示的技术问题。
附图说明
为了更清楚地说明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单介绍,显而易见地,下面描述中的附图仅仅是申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本申请实施例提供的柔性显示面板的第一示意图;
图2为本申请实施例提供的柔性显示面板的第二示意图;
图3为本申请实施例提供的柔性显示面板的第三示意图;
图4为本申请实施例提供的柔性显示面板的第四示意图。
本发明的实施方式
以下各实施例的说明是参考附加的图示,用以例示本申请可用以实施的特定实施例。本申请所提到的方向用语,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申请,而非用以限制本申请。在图中,结构相似的单元是用以相同标号表示。
本申请针对现有显示面板存在拼接处无法显示的技术问题,本申请实施例用以解决该问题。
如图1所示,本申请实施例提供一种柔性显示面板,该柔性显示面板包括:
至少两个子显示面板11,所述子显示面板11包括显示区111和非显示区112,所述非显示区111向所述子显示面板11的衬底113弯折形成弯折区域116,所述子显示面板11的弯折区域116形成有连接端子115,所述子显示面板11内设有感应单元114,其中,相邻的子显示面板的连接端子115连接,且相邻的子显示面板11的感应单元114电连接。
本申请实施例提供一种柔性显示面板,该柔性显示面板包括至少两个子显示面板,所述子显示面板包括显示区和非显示区,所述非显示区向所述子显示面板的衬底弯折形成弯折区域,所述子显示面板的弯折区域形成有连接端子,所述子显示面板内设有感应单元,其中,相邻的子显示面板的连接端子连接,且相邻的子显示面板的感应单元电连接,通过将子显示面板的非显示区向子显示面板的衬底弯折形成弯折区域,在弯折区域形成连接端子,使得相邻的子显示面板能够通过连接端子连接,且连接处能够显示,且通过在子显示面板内设置感应单元,使得相邻的子显示面板通过感应单元电连接,实现子显示面板的互连,解决了现有显示面板存在拼接处无法显示的技术问题。
需要说明的是,在图1中为两个对称设置的子显示面板拼接,其弯折方式以及弯折的面积均相等,在图1中只标出其中一个子显示面板。
在一种实施例中,所述弯折区域为非显示区,在子显示面板拼接以实现连接时,将相邻的子显示面板的非显示区向显示面板的衬底弯折,即可使得拼接形成的柔性显示面板整面为显示区,且通过在弯折区域形成连接端子,在子显示面板内设置感应单元,使得相邻子显示面板连接通过连接端子连接,同时相邻子显示面板通过感应单元电连接,从而使得柔性显示面板能够整面显示,且可实现子显示面板互连,从而控制相邻子显示面板显示一个画面,增大显示面积,且相邻子显示面板可根据需求显示不同画面。
在一种实施例中,如图2所示,所述弯折区域包括非显示区和显示区,即进一步的将显示区向子显示面板的衬底弯折,使得呈现在出光方向上的全为显示区,从而避免子显示面板的拼接处无法显示的问题。
在一种实施例中,所述非显示区的衬底与所述显示区的衬底未贴合,即使非显示区位于子显示面板的侧面,使相邻子显示面板连接,通过在非显示区上设置感应单元,使相邻子显示面板实现电连接,从而使得相邻子显示面板能互连,使得相邻子显示面板在拼接处能够显示。
在一种实施例中,所述非显示区的衬底与所述显示区的衬底贴合,即使非显示区位于子显示面板的底面,为了减薄子显示面板的厚度,可将非显示区设置在子显示面板的底面,且可在非显示区形成连接端子,或者在非显示区或者显示区的侧面形成连接端子,使相邻子显示面板连接,且在非显示区或者显示区设置感应单元,使相邻子显示面板电连接。
在一种实施例中,所述子显示面板的至少一个侧边弯折形成弯折区域,所述弯折区域形成有连接端子,所述侧边包括显示区和非显示区,即将子显示面板的至少一个侧边弯折形成弯折区域,在弯折区域形成有连接端子,使得相邻子显示面板通过连接端子连接。
在一种实施例中,柔性显示面板为两个子显示面板拼接形成,则只需将两个子显示面板拼接的一个侧边弯折形成弯折区域,在弯折区域形成连接端子,使得两个子显示面板能够通过连接端子连接,然后相邻子显示面板通过设置的感应单元进行电连接,使得相邻子显示面板能够实现信号交互,使得柔性显示面板的拼接处能够正常显示。
如图2所示,本申请实施例提供一种柔性显示面板,该柔性显示面板包括拼接的子显示面板21,所述子显示面板21的四个侧边弯折形成弯折区域,所述弯折区域形成连接端子222,所述子显示面板21通过连接端子222连接,所述子显示面板21通过感应单元221电连接,使得柔性显示面板拼接处正常显示。
在一种实施例中,如图2所示,子显示面板21的沿逆时针排列的第一侧边211、第二侧边213、第三侧边214、第四侧边215向子显示面板的衬底弯折形成弯折区域,在与相邻子显示面板连接的第三侧边214上形成有连接端子222,在第二侧边213上设置感应单元221,使得相邻子显示面板能通过连接端子连接,且相邻子显示面板能通过感应单元电连接,使得在相邻子显示面板拼接处正常显示,且相邻子显示面板能共同显示一副画面,实现相邻子显示面板之间的互连,同时子显示面板的非显示区全部弯折,使得在柔性显示面板上能呈现全面显示。
需要说明的是,图2中为对称连接的两个子显示面板,在图2中两个子显示面板的连接端子连接重合,图中只标示出一个连接端子。
需要说明的是,为方便叙述,在一个子显示面板上只画出一个连接端子,但一个子显示可有多个连接端子。
在一种实施例中,如图2所示,子显示面板的出光面216为完整的显示区,即弯折区域为非显示区,或者可将子显示面板的显示区部分弯折,以避免在拼接处出现黑线等显示问题。
在一种实施例中,如图2所示,图2中示出的平面212为子显示面板的底面,将子显示面板的弯折区域向子显示面板的衬底弯曲,以降低子显示面板的厚度,或者子显示面板的弯折区域位于子显示面板的侧面,未与显示区的衬底贴合,以使在子显示面板的侧边上形成连接端子,使相邻子显示面板连接。
在一种实施例中,在第一侧边上形成第一连接端子、在第二侧边上形成第二连接端子、在第三侧边上形成第三连接端子、在第四侧边上形成第四连接端子,通过在子显示面板的每个侧边上均形成连接端子,使得子显示面板能够实现无限连接,且多个连接的子显示面板能够通过设置的感应单元电连接,从而实现多个子显示面板的信息交互,使得多个子显示面板显示一副画面,或者根据需求分区显示画面,或者多个子显示面板显示同一画面。
在一种实施例中,所述子显示面板的第一侧边设置感应单元,或者所述子显示面板的第二侧边设置感应单元,或者所述子显示面板的第三侧边设置感应单元,或者子显示面板的第四侧边设置感应单元,本申请实施例不限定感应单元的位置,以相邻子显示面板能够通过感应单元电连接设置感应单元。
在一种实施例中,柔性显示面板包括第一子显示面板和第二子显示面板,且第一子显示面板与第二子显示面板均包括第一侧边、第二侧边、第三侧边和第四侧边,所述第一子显示面板的第三侧边上形成连接端子,所述第二子显示面板的第一侧边上形成连接端子,所述第一子显示面板与所述第二子显示面板通过连接端子连接,可在第一子显示面板的第一侧边设置感应单元,在第二子显示面板的第一侧边上设置感应单元,使第一子显示面板的感应单元与第二子显示面板的感应单元电连接,从而实现第一子显示面板与第二显示面板的电连接;或者在第一子显示面板的第一侧边设置感应单元,在第二子显示面板的第二侧边设置感应单元,所述第一子显示面板的感应单元可与第二子显示面板的感应单元无线连接或者通过电路连接;或者在第一子显示面板的第一侧边设置感应单元,所述第二子显示面板的第三侧边设置感应单元;或者在第一子显示面板的第一侧边设置感应单元,在第二子显示面板的第四侧边设置感应单元;或者在第一子显示面板的第一侧边设置感应单元,在第二子显示面板的底面设置感应单元,在本申请实施例中,不限定子显示面板的感应单元的设置位置,在相邻子显示面板连接时,所述子显示面板的感应单元在不影响显示时,可设置在任一侧边或者显示区内,且相邻子显示面板的感应单元的设置位置相同或者不同。
在一种实施例中,在相邻子显示面板连接的一侧设置感应单元,或者在显示区设置感应单元。
在一种实施例中,在子显示面板的四侧设置感应单元,在多个子显示面板拼接时,相邻的子显示面板的相邻的感应单元进行信息交互,且同一子显示面板的四个感应单元可进行信息交互,使得多个拼接的子显示面板可两两信息交互或者多个进行信号交互。
在一种实施例中,所述子显示面板的至少一个角弯折形成弯折区域,所述弯折区域形成有连接端子,通过将子显示面板的角弯折形成弯折区域,在弯折区域形成连接端子,使得相邻子显示面板连接。
如图3所示,本申请实施例提供一种柔性显示面板,该柔性显示面板包括两个相同的子显示面板31,所述子显示面板31的四个角弯折形成弯折区域,所述弯折区域形成有连接端子321,所述子显示面板31通过连接端子321连接,所述子显示面板31通过感应构件322电连接,使得柔性显示面板在拼接处正常显示,且相邻子显示面板能够进行信息交互,解决了现有显示面板存在拼接处无法显示的技术问题。
需要说明的是,为了方便叙述,图3中只画出一个连接端子,但子显示面板可有多个连接端子。
在一种实施例中,所述子显示面板的至少一个角弯折形成弯折区域,所述弯折区域形成有连接端子,即将子显示面板的一个角弯折形成弯折区域,所述弯折区域包括非显示区和显示区,在弯折区域形成连接端子,相邻子显示面板通过连接端子进行连接,使得子显示面板在拼接处正常显示。
在一种实施例中,如图3所示,所述子显示面板31沿逆时针的第一角311、第二角312、第三角313、第四角314向子显示面板的衬底弯折形成弯折区域,在与相邻子显示面板连接的第二角312上形成连接端子321,在第一角312上形成感应单元322,相邻子显示面板在第四角上形成连接端子,使得相邻子显示面板能通过连接端子连接,且相邻子显示面板能通过感应单元电连接,使子显示面板的出光面315为整面显示,使得柔性显示面板在拼接处正常显示,且相邻子显示面板能共同显示一副画面,实现相邻子显示面板之间的互连,同时,子显示面板的非显示区全部弯折,使得柔性显示面板呈现全面显示。
在一种实施例中,所述子显示面板的角向子显示面板的衬底弯曲,以使弯折区域的衬底与显示区的衬底贴合,从而降低子显示面板的厚度,以降低柔性显示面板的厚度,或者子显示面板的角弯折至子显示面板的侧面,弯折区域的衬底未与显示区的衬底贴合,以使在子显示面板的角上形成连接端子,使相邻子显示面板连接。
在一种实施例中,在第一角上形成第一连接端子、在第二角上形成第二连接端子、在第三角上形成第三连接端子、在第四角上形成第四连接端子,通过在子显示面板的每个角上均形成连接端子,使得子显示面板能够实现无限连接,且多个连接的子显示面板能够通过设置的感应单元电连接,从而实现多个子显示面板的信息交互,使得多个子显示面板显示一副画面,或者根据需求分区显示画面,或者多个子显示面板显示同一画面。
在一种实施例中,可在子显示面板的第一角上设置感应单元,或者所述子显示面板的第二角上设置感应单元,或者所述子显示面板的第三角上设置感应单元,或者子显示面板的第四角上设置感应单元,本申请实施例不限定感应单元的位置,以相邻子显示面板能够通过感应单元电连接设置感应单元。
在一种实施例中,柔性显示面板包括第一子显示面板和第二子显示面板,且第一子显示面板与第二子显示面板均包括第一角、第二角、第三角和第四角、所述第一子显示面板的第二角上形成连接端子,所述第二子显示面板的第四角上形成连接端子,所述第一子显示面板与所述第二子显示面板通过连接端子连接,可在第一子显示面板的第一角上设置感应单元,在第二子显示面板的第一角上设置感应单元,使第一子显示面板的感应单元与第二子显示面板的感应单元电连接,从而实现第一子显示面板与第二显示面板的电连接;或者在第一子显示面板的第一角上设置感应单元,在第二子显示面板的第二角上设置感应单元,所述第一子显示面板的感应单元可与第二子显示面板的感应单元无线连接或者通过电路连接;或者在第一子显示面板的第一角上设置感应单元,所述第二子显示面板的第三角上设置感应单元;或者在第一子显示面板的第一角上设置感应单元,在第二子显示面板的第四角上设置感应单元;或者在第一子显示面板的第一角上设置感应单元,在第二子显示面板的顶面设置感应单元,在本申请实施例中,不限定子显示面板的感应单元的设置位置,在相邻子显示面板连接时,所述子显示面板的感应单元在不影响显示时,可设置在任一角上或者显示区内,且相邻子显示面板的感应单元的设置位置相同或者不同。
在一种实施例中,在子显示面板的四个角上设置感应单元,在多个子显示面板拼接时,相邻的子显示面板的相邻的感应单元进行信息交互,且同一子显示面板的四个感应单元可进行信息交互,使得多个拼接的子显示面板可两两信息交互或者多个进行信号交互。
在一种实施例中,所述子显示面板的第一角、第二角、第三角、第四角弯折形成弯折区域,且所述子显示面板的上侧与所述子显示面板的下侧弯折形成弯折区域,可在第一角、第二角、第三角、第四角、子显示面板的上侧、子显示面板的下侧形成连接端子,使得子显示面板实现无限互连。
如图4所示,本申请实施例提供一种柔性显示面板,将子显示面板的非显示区和显示区弯折形成弯折区域,在弯折区域上形成连接端子,可实现子显示面板的无限互连,一种效果如图4中的(a)所示,子显示面板41通过连接端子与相邻子显示面板互连,且子显示面板可通过感应单元使得相邻子显示面板电连接;一种效果如图4中的(b)所示,子显示面板42通过连接端子与相邻子显示面板互连,且子显示面板可通过感应单元使得相邻子显示面板电连接;通过在各个弯折区域设置连接端子,使得可以得到各种所需的异形柔性显示面板,且柔性显示面板可整面显示,避免出现拼接处黑线等显示问题。
在一种实施例中,所述感应单元包括传感器,通过传感器来传递信息,使得拼接的子显示面板能进行信息交互。
在一种实施例中,所述传感器包括电容式传感器、压电式传感器和红外式传感器中的至少一个,在设置传感器时,例如设置红外式传感器,可对显示区域进行改进,以使红外式传感器能够正常工作。
在一种实施例中,所述子显示面板包括驱动电路层,所述驱动电路层形成所述传感器,在形成子显示面板的驱动电路层时,可同时形成传感器,且传感器可设置在子显示面板的绑定区,以避免影响显示,或者将传感器设置在显示区,通过减小像素或者改变像素布局以使得传感器正常工作,显示区正常显示。
在一种实施例中,所述子显示面板包括第一子显示面板和第二子显示面板,所述第一子显示面板上设有第一连接端子,所述第二子显示面板上设有第二连接端子,所述第一连接端子为凸起,所述第二连接端子为对应所述凸起的凹槽,所述第一子显示面板与所述第二子显示面板通过所述凸起和所述凹槽连接,通过将第一连接端子设计为凸起,将第二连接端子设计为凹槽,使得第一连接端子与第二连接端子对合,从而使得第一子显示面板和第二子显示面板连接。
在一种实施例,所述连接端子包括铰链,所述子显示面板通过所述铰链连接,通过在子显示面板上设置铰链,使得子显示面板能连接,且铰链能使相邻子显示面板弯折,从而实现柔性显示面板在正面和背面均能显示,且可根据需求使子显示面板旋转到任意角度显示。
在一种实施例中,所述连接端子包括光学胶,所述子显示面板通过所述光学胶连接。
在本申请实施例中,所述感应单元可进行定位,且所述感应单元可使相邻子显示面板进行信号交互。
本申请实施例提供一种柔性显示装置,该柔性显示装置包括柔性显示面板,所述柔性显示面板包括至少两个子显示面板,所述子显示面板包括显示区和非显示区,所述非显示区向所述子显示面板的衬底弯折形成弯折区域,所述子显示面板的弯折区域形成有连接端子,所述子显示面板内设有感应单元,其中,相邻的子显示面板的连接端子连接,且相邻的子显示面板的感应单元电连接。
本申请实施例提供一种柔性显示装置,该柔性显示装置包括柔性显示面板,该柔性显示面板包括至少两个子显示面板,所述子显示面板包括显示区和非显示区,所述非显示区向所述子显示面板的衬底弯折形成弯折区域,所述子显示面板的弯折区域形成有连接端子,所述子显示面板内设有感应单元,其中,相邻的子显示面板的连接端子连接,且相邻的子显示面板的感应单元电连接,通过将子显示面板的非显示区向子显示面板的衬底弯折形成弯折区域,在弯折区域形成连接端子,使得相邻的子显示面板能够通过连接端子连接,且连接处能够显示,且通过在子显示面板内设置感应单元,使得相邻的子显示面板通过感应单元电连接,实现子显示面板的互连,解决了现有显示面板存在拼接处无法显示的技术问题。
在一种实施例中,在柔性显示装置中,所述弯折区域为非显示区。
在一种实施例中,在柔性显示装置中,所述弯折区域包括非显示区和显示区。
在一种实施例中,在柔性显示装置中,所述子显示面板的至少一个侧边弯折形成弯折区域,所述弯折区域形成有连接端子。
在一种实施例中,在柔性显示装置中,所述子显示面板的四个侧边弯折形成弯折区域,所述弯折区域形成有连接端子。
在一种实施例中,在柔性显示装置中,所述子显示面板的至少一个角弯折形成弯折区域,所述弯折区域形成有连接端子。
在一种实施例中,在柔性显示装置中,所述子显示面板的四个角弯折形成弯折区域,所述弯折区域形成有连接端子。
在一种实施例中,在柔性显示装置中,所述感应单元包括传感器。
根据以上实施例可知:
本申请实施例提供一种柔性显示面板和柔性显示装置,该柔性显示面板包括至少两个子显示面板,所述子显示面板包括显示区和非显示区,所述非显示区向所述子显示面板的衬底弯折形成弯折区域,所述子显示面板的弯折区域形成有连接端子,所述子显示面板内设有感应单元,其中,相邻的子显示面板的连接端子连接,且相邻的子显示面板的感应单元电连接,通过将子显示面板的非显示区向子显示面板的衬底弯折形成弯折区域,在弯折区域形成连接端子,使得相邻的子显示面板能够通过连接端子连接,且连接处能够显示,且通过在子显示面板内设置感应单元,使得相邻的子显示面板通过感应单元电连接,实现子显示面板的互连,解决了现有显示面板存在拼接处无法显示的技术问题。
综上所述,虽然本申请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申请,本领域的普通技术人员,在不脱离本申请的精神和范围内,均可作各种更动与润饰,因此本申请的保护范围以权利要求界定的范围为准。

Claims (20)

  1. 一种柔性显示面板,其包括:
    至少两个子显示面板,所述子显示面板包括显示区和非显示区,所述非显示区向所述子显示面板的衬底弯折形成弯折区域,所述子显示面板的弯折区域形成有连接端子,所述子显示面板内设有感应单元,其中,相邻的子显示面板的连接端子连接,且相邻的子显示面板的感应单元电连接。
  2. 如权利要求1所述的柔性显示面板,其中,所述弯折区域为非显示区。
  3. 如权利要求1所述的柔性显示面板,其中,所述弯折区域包括非显示区和显示区。
  4. 如权利要求1所述的柔性显示面板,其中,所述子显示面板的至少一个侧边弯折形成弯折区域,所述弯折区域形成有连接端子。
  5. 如权利要求4所述的柔性显示面板,其中,所述子显示面板的四个侧边弯折形成弯折区域,所述弯折区域形成有连接端子。
  6. 如权利要求1所述的柔性显示面板,其中,所述子显示面板的至少一个角弯折形成弯折区域,所述弯折区域形成有连接端子。
  7. 如权利要求6所述的柔性显示面板,其中,所述子显示面板的四个角弯折形成弯折区域,所述弯折区域形成有连接端子。
  8. 如权利要求1所述的柔性显示面板,其中,所述感应单元包括传感器。
  9. 如权利要求8所述的柔性显示面板,其中,所述传感器设置在所述弯折区域。
  10. 如权利要求9所述的柔性显示面板,其中,所述传感器包括电容式传感器、压电式传感器和红外式传感器中的至少一个。
  11. 如权利要求1所述的柔性显示面板,其中,所述连接端子包括铰链。
  12. 如权利要求1所述的柔性显示面板,其中,所述连接端子包括光学胶。
  13. 一种柔性显示装置,其包括柔性显示面板,所述柔性显示面板包括:
    至少两个子显示面板,所述子显示面板包括显示区和非显示区,所述非显示区向所述子显示面板的衬底弯折形成弯折区域,所述子显示面板的弯折区域形成有连接端子,所述子显示面板内设有感应单元,其中,相邻的子显示面板的连接端子连接,且相邻的子显示面板的感应单元电连接。
  14. 如权利要求13所述的柔性显示装置,其中,所述弯折区域为非显示区。
  15. 如权利要求13所述的柔性显示装置,其中,所述弯折区域包括非显示区和显示区。
  16. 如权利要求13所述的柔性显示装置,其中,所述子显示面板的至少一个侧边弯折形成弯折区域,所述弯折区域形成有连接端子。
  17. 如权利要求16所述的柔性显示装置,其中,所述子显示面板的四个侧边弯折形成弯折区域,所述弯折区域形成有连接端子。
  18. 如权利要求13所述的柔性显示装置,其中,所述子显示面板的至少一个角弯折形成弯折区域,所述弯折区域形成有连接端子。
  19. 如权利要求18所述的柔性显示装置,其中,所述子显示面板的四个角弯折形成弯折区域,所述弯折区域形成有连接端子。
  20. 如权利要求13所述的柔性显示装置,其中,所述感应单元包括传感器。
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