WO2024065460A1 - 柔性面板、显示装置及柔性面板的控制系统 - Google Patents

柔性面板、显示装置及柔性面板的控制系统 Download PDF

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Publication number
WO2024065460A1
WO2024065460A1 PCT/CN2022/122813 CN2022122813W WO2024065460A1 WO 2024065460 A1 WO2024065460 A1 WO 2024065460A1 CN 2022122813 W CN2022122813 W CN 2022122813W WO 2024065460 A1 WO2024065460 A1 WO 2024065460A1
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WIPO (PCT)
Prior art keywords
corrected
rule
accordance
data
telescopic
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PCT/CN2022/122813
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English (en)
French (fr)
Inventor
刘明
陈华
张嘉显
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深圳市瑞丰光电子股份有限公司
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Priority to PCT/CN2022/122813 priority Critical patent/WO2024065460A1/zh
Publication of WO2024065460A1 publication Critical patent/WO2024065460A1/zh

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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05DSYSTEMS FOR CONTROLLING OR REGULATING NON-ELECTRIC VARIABLES
    • G05D3/00Control of position or direction
    • G05D3/10Control of position or direction without using feedback
    • 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
    • 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
    • G09G3/22Control 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 using controlled light sources
    • G09G3/30Control 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 using controlled light sources using electroluminescent panels

Definitions

  • the present invention relates to the field of display technology, and in particular to a flexible panel, a display device and a control system of the flexible panel.
  • the present invention provides a flexible panel, a display device and a control system of the flexible panel.
  • the solution to the technical problem of the present invention is to provide a flexible panel, including a flexible substrate and a plurality of light-emitting devices, wherein the light-emitting devices are arranged on one side of the flexible substrate, a circuit is arranged inside the flexible panel, and the light-emitting devices are electrically connected to the circuit.
  • the flexible panel further comprises a bracket and a fixing plate;
  • a plurality of light-emitting devices are arranged on one side of the flexible substrate, and a side of the flexible substrate facing away from the light-emitting devices is connected to one end of the bracket;
  • the bracket is provided with a rotation node, a main telescopic component and a plurality of auxiliary telescopic components, a rotating device is provided at a corresponding position of the rotation node, a connecting portion is provided on the main telescopic component, one end of the main telescopic component is connected to one end of the plurality of auxiliary telescopic components through the connecting portion, and is connected to a side of the flexible substrate away from the light-emitting device, and the other end of the main telescopic component is connected to the fixed plate through the rotating device.
  • the rotation node comprises a first rotation node and a second rotation node, and the second rotation node is located between the connecting portion and the fixing plate;
  • the rotating device includes a first rotating device and a second rotating device corresponding to the positions of the first rotating node and the second rotating node respectively, and the main telescopic assembly is connected to the first rotating node through the first rotating device and the fixing plate.
  • the main telescopic assembly includes a first accommodating tube and a first telescopic assembly, the first telescopic assembly is telescopically accommodated in the accommodating tube, and the accommodating tube is connected to the first rotation node through the first rotating device and the fixing plate.
  • the main telescopic assembly includes a second telescopic assembly, the second telescopic assembly is telescopically accommodated in the first telescopic assembly, the connecting portion and the second rotation node are both located on the first telescopic assembly, and the second rotation node is located on a side of the connecting portion away from the flexible substrate;
  • the main telescopic assembly passes through the accommodating tube, the primary telescopic assembly, the second rotating device, the connecting portion and the second telescopic assembly in sequence along the extension direction, and the second telescopic assembly is connected to a side of the flexible substrate away from the light-emitting device.
  • a first connecting component is provided on the second telescopic component, and the second telescopic component is connected to a side of the flexible substrate facing away from the light-emitting device through the first connecting component.
  • the auxiliary telescopic assembly includes a second accommodating tube and a third telescopic assembly, the third telescopic assembly is telescopically accommodated in the second accommodating tube, the main telescopic assembly is connected to the second accommodating tube through the connecting portion, and the third telescopic assembly is connected to the side of the flexible substrate away from the light-emitting device.
  • a bending portion is provided on the third telescopic component, the bending portion is parallel to the main telescopic component, a second connecting component is provided on the bending portion, and the third telescopic component is connected to a side of the flexible substrate away from the light-emitting device through the connecting component.
  • the main telescopic assembly and the plurality of auxiliary telescopic assemblies form an umbrella-shaped structure.
  • the present invention further provides a display device, wherein the display device comprises the above-mentioned flexible panel.
  • the present invention further provides a control system for a flexible panel, which is used to control the flexible panel as described above, and the control system comprises: a controller, which is used to receive an operation instruction from a user and output a main control signal according to the operation instruction; wherein the main control signal comprises light emitting data, extension data and rotation data;
  • a microprocessor connected to the controller, and outputting a corresponding driving signal according to the light emitting data, the extension data, and the rotation data;
  • the power device is connected to the microprocessor and the flexible panel, receives the driving signal, and drives the flexible panel to emit light and/or bend and/or rotate according to the driving signal.
  • the microprocessor further comprises: a data processing module, the data processing module comprising:
  • a data shaping unit connected to the controller, configured to receive the main control signal, shape the luminous data, the scaling data, and the rotation data in the main control signal, and output the shaped luminous data, the scaling data, and the rotation data;
  • a data forwarding unit connected to the data shaping unit, for receiving and transmitting the shaped light emitting data, stretching data and rotation data;
  • a data latch unit is connected to the data forwarding unit and is used to receive the shaped luminous data, the scaling data and the rotation data, and latch the current luminous data, the scaling data and the rotation data so as to continuously output the current luminous data, the scaling data and the rotation data before receiving the next luminous data, the next scaling data and the next rotation data.
  • the microprocessor further includes a control module, and the control module includes:
  • a light-emitting control unit connected to the controller and the power device, for generating a light-emitting control signal according to the main control signal, and outputting the light-emitting control signal to the power device to make the light-emitting device on the flexible panel emit light;
  • a telescopic control unit connected to the controller and the power device, for generating a telescopic control signal according to the main control signal, and outputting the telescopic control signal to the power device, so that the light-emitting device on the flexible panel is bent;
  • a rotation control unit is connected to the controller and the power device, and is used to generate a rotation control signal according to the main control signal, and output the rotation control signal to the power device to rotate the flexible substrate on the flexible panel.
  • the power device comprises:
  • a light-emitting driving circuit connected to the light-emitting control unit and the light-emitting device of the flexible panel, for receiving the light-emitting control signal and driving the light-emitting device to emit light and display according to the light-emitting control signal;
  • a telescopic driving circuit is connected to the telescopic control unit and the main telescopic component and the plurality of auxiliary telescopic components of the flexible panel, and is used to receive the telescopic control signal and drive the main telescopic component and the plurality of auxiliary telescopic components to perform telescopic movement according to the telescopic control signal;
  • the rotation driving circuit is connected to the rotation control unit and the rotation device of the flexible panel, and is used to receive the rotation control signal and drive the rotation device at the corresponding position of the rotation node to rotate according to the rotation control signal, so as to drive the flexible substrate to rotate.
  • the main control signal further includes first partition data and first area control data;
  • the microprocessor also includes:
  • a partitioning module connected to the single flexible panel and the controller, and configured to partition the single flexible panel according to the first partitioning data, so as to partition the plurality of light-emitting devices on the flexible panel into a plurality of light-emitting areas;
  • the regional control module is connected to the partition module, the controller, and the power device, and is used to generate regional control signals corresponding to the multiple light-emitting areas according to the first regional control data, so that the power device controls the corresponding areas of the flexible panel to emit light and/or bend according to the regional drive signals.
  • the main control signal further includes combined data and combined control data
  • the microprocessor also includes:
  • a combination module connected to the plurality of flexible panels and the controller, and configured to combine the plurality of flexible panels according to the combination data to form a corresponding combination display panel;
  • a combined control module is connected to the combined module, the controller and the power device, and is used to generate a combined control signal according to the combined control data, so that the power device drives the combined display panel to emit light and/or bend and/or rotate according to the combined control signal.
  • the combined control data includes single control data corresponding to a plurality of the flexible panels
  • the combined control module is also used to generate multiple single control signals according to the multiple single control data, so that the power device drives the corresponding flexible panel to emit light and/or bend and/or rotate according to the single control signal.
  • the combined control data also includes second partition data and second area control data;
  • the combined control module also includes:
  • a partitioning unit connected to the controller and the combination module, for partitioning the combination display panel according to the combination data, so as to partition a plurality of light emitting devices of the combination display panel into a plurality of display areas.
  • a partition control unit is connected to the partition unit, the controller and the power device, and is used to generate a display area control signal corresponding to the multiple display areas according to the second area control data, so that the power device controls the corresponding display area of the combined display panel to emit light and/or bend according to the display area drive signal.
  • the DOUT1 terminal, DOUT2 terminal and DOUT3 terminal of the controller are respectively connected to the DIN terminal of the first light-emitting control unit, the DIN terminal of the first telescopic control unit and the DIN terminal of the first rotation control unit;
  • VSS end of the light emitting control unit, the VSS end of the telescopic control unit and the VSS end of the rotation control unit are all connected to the positive pole of the power supply, and the VDD end of the light emitting control unit, the VDD end of the telescopic control unit and the VDD end of the rotation control unit are all connected to the negative pole of the power supply;
  • the W end of the light emitting control unit is connected to the light emitting driving circuit
  • the S end of the telescopic control unit is connected to the telescopic driving circuit
  • the S end of the rotation control unit is connected to the rotation driving circuit.
  • the FDIN terminal of the first light-emitting control unit, the FDIN terminal of the first telescopic control unit, and the FDIN terminal of the first rotation control unit are all connected to the corresponding VSS terminal of the first light-emitting control unit, the VSS terminal of the first telescopic control unit, and the VSS terminal of the first rotation control unit, and are connected to the positive pole of the power supply;
  • the flexible panel of the present invention includes a flexible substrate and a plurality of light-emitting devices.
  • the light-emitting devices are arranged on one side of the flexible substrate.
  • a circuit is arranged inside the flexible panel, and the light-emitting devices are electrically connected to the circuit.
  • the flexible substrate can realize the adjustment of local areas, for example, a transition arc is formed at the edge, so that the angle adjustment is freer and the transition is smoother, thereby improving the overall display effect of the entire flexible panel, and solving the problem that the existing multiple flexible display panels are formed into a bend, resulting in the angle of the bend being unadjustable and the bend being not smooth.
  • the circuit on the flexible panel can be controlled to control the plurality of light-emitting devices on the flexible substrate to perform light-emitting display.
  • the light-emitting device performs light-emitting display, it cooperates with the bending of the flexible panel to make the display of the flexible display panel more three-dimensional and vivid.
  • the flexible panel of the present invention also includes a bracket and a fixed plate; the side of the flexible substrate away from the light-emitting device is connected to one end of the bracket; a rotation node, a main telescopic component and a plurality of auxiliary telescopic components are arranged on the bracket, a rotating device is arranged at the corresponding position of the rotation node, a connecting portion is arranged on the main telescopic component, one end of the main telescopic component is connected to one end of the plurality of auxiliary telescopic components through the connecting portion, and is connected to the side of the flexible substrate away from the light-emitting device, and the other end of the main telescopic component is connected to the fixed plate through the rotating device.
  • a bracket including a main telescopic component, a plurality of auxiliary telescopic components and a rotating device located at the rotation node, and setting the bracket on the side of the flexible substrate away from the light-emitting device
  • the curvature of the flexible substrate protruding outward or the curvature of the curvature concave inward is controlled, and the curvature of the curvature is smoother than the curvature formed by the combination of multiple panels, and the flexible substrate is rotated in a plane by the rotating device, and the light emission of the light-emitting device is controlled, so as to adjust the content and curvature displayed by the entire flexible panel according to user needs.
  • the rotation node of the present invention includes a first rotation node and a second rotation node, and the second rotation node is located between the connection part and the fixed plate; the rotation device includes a first rotation device and a second rotation device corresponding to the positions of the first rotation node and the second rotation node respectively, and the main telescopic assembly is connected to the first rotation node through the first rotation device and the fixed plate.
  • the main telescopic assembly of the present invention includes a first accommodating tube and a first telescopic assembly.
  • the first telescopic assembly is telescopically accommodated in the first accommodating tube, and the first accommodating tube is connected to the first rotation node with the fixing plate through the first rotating device.
  • the main telescopic assembly includes a second telescopic assembly.
  • the second telescopic assembly is telescopically accommodated in the first telescopic assembly.
  • the connecting portion and the second rotation node are both located on the first telescopic assembly, and the second rotation node is located on the side of the connecting portion away from the flexible substrate.
  • the main telescopic assembly passes through the accommodating tube, the first telescopic assembly, the second rotating device, the connecting portion and the second telescopic assembly in the extension direction in sequence, and the second telescopic assembly is connected to the side of the flexible substrate away from the light-emitting device.
  • the extension and contraction of the bracket can be made more flexible, so that the bending of the flexible substrate can be more controllable.
  • the flexible panel can be bent outwardly or recessed inwardly.
  • the second telescopic assembly of the present invention is provided with a first connecting assembly, and the second telescopic assembly is connected to the side of the flexible substrate away from the light-emitting device through the first connecting assembly. Connecting the flexible board through the first connecting assembly can avoid damage to the flexible panel at the connection, and at the same time make the connection between the flexible substrate and the main telescopic assembly more stable.
  • the secondary telescopic assembly of the present invention includes a second housing tube and a third telescopic assembly, the third telescopic assembly is telescopically accommodated in the second housing tube, the main telescopic assembly is connected to the second housing tube through a connecting portion, and the third telescopic assembly is connected to the side of the flexible substrate away from the light-emitting device.
  • the third telescopic assembly By arranging the third telescopic assembly to connect the flexible substrate, the connection between the secondary telescopic assembly and the flexible substrate is more stable, which is conducive to the flexible panel forming a curved shape when the secondary telescopic assembly performs a telescopic movement.
  • a bending portion is provided on the third telescopic component of the present invention, and the bending portion is parallel to the main telescopic component.
  • a second connecting component is provided on the bending portion.
  • the third telescopic component is connected to the side of the flexible substrate away from the light-emitting device through the second connecting component.
  • the main telescopic assembly and the plurality of auxiliary telescopic assemblies of the present invention form an umbrella-like structure.
  • the supporting effect and fixing effect of the bracket on the flexible substrate are improved.
  • the present invention also provides a display device having the same beneficial effects as the above-mentioned flexible panel, which will not be described in detail here.
  • the present invention also provides a control system for a flexible panel, which is used to control the flexible panel as described above and has the same beneficial effects as the flexible panel described above, which will not be elaborated here.
  • FIG. 1 is a front view of a flexible panel provided by a first embodiment of the present invention.
  • FIG. 2 is a side view of the flexible panel provided by the first embodiment of the present invention.
  • FIG. 3 is a back view of the flexible panel provided by the first embodiment of the present invention.
  • FIG. 4 is a schematic block diagram of the structure of a display device provided by a second embodiment of the present invention.
  • FIG. 5 is a schematic block diagram of the structure of a control system of a flexible panel provided in a third embodiment of the present invention.
  • FIG. 6 is a schematic block diagram of the structure of a microprocessor of a control system of a flexible panel provided in a third embodiment of the present invention.
  • FIG. 7 is a schematic block diagram of the structure of a control module, a power device, and a flexible panel of a control system of a flexible panel provided in a third embodiment of the present invention.
  • FIG. 8 is a schematic block diagram of the structure of a partition module of a control system of a flexible panel provided in a third embodiment of the present invention.
  • FIG. 9 is a schematic diagram showing the partitioning of the light emitting area of the control system of the flexible panel provided in the third embodiment of the present invention.
  • FIG. 10 is a schematic diagram of partitioning of the light emitting area of another implementation of the control system of the flexible panel provided in the third embodiment of the present invention.
  • FIG. 11 is a schematic block diagram of the structure of a combined module of a control system for a flexible panel provided in a third embodiment of the present invention.
  • FIG. 12 is a diagram showing a structure of a plurality of flexible panels in a control system for a flexible panel according to a third embodiment of the present invention.
  • FIG. 13 is a schematic block diagram of the structure of a combined control module of a control system of a flexible panel provided in a third embodiment of the present invention.
  • FIG. 14 is a circuit diagram of a control module and a power device of a control system of a flexible panel provided in a third embodiment of the present invention.
  • controller 60. microprocessor; 80. power device; 90. combined display panel;
  • a first embodiment of the present invention provides a flexible panel 1 including a flexible substrate 11 and a plurality of light emitting devices 111 .
  • the light emitting devices 111 are arranged on one side of the flexible substrate 11 .
  • a circuit is arranged inside the flexible panel 1 .
  • the light emitting devices 111 are electrically connected to the circuit.
  • the flexible substrate 11 can achieve adjustment of local areas, such as forming a transition arc at the edge, making the angle adjustment freer and the transition smoother, improving the overall display effect of the flexible panel 1, and solving the problem that the existing multiple flexible display panels are formed into a bend, resulting in the angle of the bend being unadjustable and the bend arc being not smooth.
  • the circuit on the flexible panel 1 can be controlled to control several light-emitting devices 111 on the flexible substrate 11 to perform light-emitting display.
  • the light-emitting device performs light-emitting display, it cooperates with the bending of the flexible substrate 11, which can make the display of the flexible panel 1 more three-dimensional and vivid.
  • the flexible panel 1 also includes: a bracket 12 and a fixed plate 13; the side of the flexible substrate 11 facing away from the light-emitting device 111 is connected to one end of the bracket 12; a rotation node, a main telescopic component 121 and a plurality of auxiliary telescopic components 122 are provided on the bracket 12, and a rotating device 14 is provided at the corresponding position of the rotation node, and a connecting portion 1211 is provided on the main telescopic component 121.
  • One end of the main telescopic component 121 is connected to one end of the plurality of auxiliary telescopic components 122 through the connecting portion 1211, and is connected to the side of the flexible substrate 11 facing away from the light-emitting device 111, and the other end of the main telescopic component 121 is connected to the fixed plate 13 through the rotating device 14.
  • the fixing plate 13 can be fixed on a wall, a wall top, a roof, etc., so when one end of the main telescopic component 121 is connected to one end of the plurality of auxiliary telescopic components 122 through the connecting portion 1211, and connected to the side of the flexible substrate 11 away from the light-emitting device 111, and the other end of the main telescopic component 121 is connected to the fixing plate 13 through the rotating device 14, the entire flexible substrate 11 can be hung on a wall, a wall top, a roof, etc. through the fixing plate 13.
  • the main telescopic component 121 and the multiple auxiliary telescopic components 122 on the bracket 12 can perform extension and contraction movements.
  • the main telescopic component 121 and the multiple auxiliary telescopic components 122 perform extension or contraction movements, they can make the flexible substrate 11 convexly bend outward or concavely bend inward.
  • extension length and the contraction length of the main telescopic component 121 and the plurality of auxiliary telescopic components 122 during the extension or contraction movement can be adjusted.
  • the extension length and the contraction length By adjusting the extension length and the contraction length, the bending degree of the flexible substrate 11 can be controlled.
  • the shape of the flexible substrate 11 is not limited, and can be rectangular or circular.
  • the arrangement of the multiple light-emitting devices 111 on the flexible substrate 11 can be set according to the shape of the flexible substrate 11. This embodiment does not limit this.
  • the lighting and extinguishing of the multiple light-emitting devices 111 can be controlled, and the light-emitting colors of the multiple light-emitting devices 111 can be controlled. Therefore, by controlling the extension and contraction of the main telescopic component 121 and the multiple auxiliary telescopic components 122, the arc of the flexible substrate 11 protruding outward or the arc of the inward concave bending is controlled.
  • the arc of the bending is smoother than the bending formed by the combination of multiple panels, and the flexible substrate 11 is rotated by the rotating device 14, and the light emission of the light-emitting device 111 is controlled to adjust the content and bending shape displayed by the entire flexible panel 1 according to user needs.
  • the rotation node includes a first rotation node and a second rotation node, and the second rotation node is located between the connecting portion 1211 and the fixed plate 13;
  • the rotating device 14 includes a first rotation device 141 and a second rotation device 143 corresponding to the positions of the first rotation node and the second rotation node respectively, and the main telescopic component 121 is connected to the first rotation node through the first rotation device 141 and the fixed plate 13.
  • the main telescopic component 121 includes a first accommodating tube 1212 and a first telescopic component 1213.
  • the first telescopic component 1213 is telescopically accommodated in the first accommodating tube 1212.
  • the first accommodating tube 1212 is connected to the fixed plate 13 at the first rotation node through the first rotating device 141.
  • a accommodating space is provided on the first accommodating tube 1212, and the size of the first telescopic component 1213 is smaller than the inner wall size of the first accommodating tube 1212, so that the first telescopic component 1213 can perform extension and contraction movements in the accommodating space.
  • the extension distance of the extension movement or the contraction distance of the contraction movement of the first telescopic component 1213 the distance between the flexible panel 1 and the wall or roof and other places can be adjusted, and the first accommodating tube 1212 can be connected to the fixed plate 13 through the first rotating device 141, so that the bracket 12 can be rotated at the first rotation node, which is more conducive to adjusting the flexible panel 1 to meet the needs of users.
  • the main telescopic component 121 includes a second telescopic component 1214, which is telescopically stored in the first telescopic component 1213.
  • the connecting portion 1211 and the second rotation node are both located on the first telescopic component 1213, and the second rotation node is located on the side of the connecting portion 1211 away from the flexible substrate 11; the main telescopic component 121 passes through the accommodating tube, the first-level telescopic component, the second rotating device 143, the connecting portion 1211 and the second telescopic component 1214 in the extension direction, and the second telescopic component 1214 is connected to the side of the flexible substrate 11 away from the light-emitting device 111.
  • a accommodating space is provided on the first telescopic component 1213, and the size of the second telescopic component 1214 is smaller than the inner wall size of the first telescopic component 1213, so that the second telescopic component 1214 can perform extension and contraction movements in the accommodating space of the first telescopic component 1213, and when the connecting portion 1211 and the second rotation node are both located on the first telescopic component 1213, the second telescopic component 1214 is located between the connecting portion 1211 and the flexible substrate 11, and one end of the second telescopic component 1214 is connected to the flexible substrate 11, so the second telescopic component 1214 can be controlled to perform extension or contraction movements, thereby realizing the bending of the flexible substrate 11.
  • the flexible substrate 11 can be made to convexly bend outward; when the second telescopic component 1214 performs a contracting movement, the multiple sub-telescopic components 122 remain stationary or the contracting distance of the multiple sub-telescopic components 122 is less than the contracting distance of the second telescopic component 1214, or the multiple sub-telescopic components 122 perform an extending movement, the flexible substrate 11 can be made to concavely bend outward, and at the same time, the extending distance of the extending movement or the contracting distance of the contracting movement of the second telescopic component 1214 can be controlled to control the bending
  • a first connecting component 1215 is disposed on the second telescopic component 1214 .
  • the second telescopic component 1214 is connected to a side of the flexible substrate 11 away from the light emitting device 111 through the first connecting component 1215 .
  • the second telescopic component 1214 is connected to the flexible board through the first connecting component 1215, damage to the flexible panel 1 at the connection can be avoided, and the connection between the flexible substrate 11 and the main telescopic component 121 is more stable, thereby making the connection between the bracket 12 and the flexible substrate 11 more stable.
  • the shape and size of the first connecting component 1215 are not limited, as long as the second telescopic component 1214 is fixed to the side of the flexible substrate 11 away from the light-emitting device 111, and the flexible substrate 11 will not be separated from the second telescopic component 1214 when the second telescopic component 1214 is extended or contracted.
  • the auxiliary telescopic component 122 includes a second accommodating tube 1221 and a third telescopic component 1222.
  • the third telescopic component 1222 is telescopically accommodated in the second accommodating tube 1221.
  • the main telescopic component 121 is connected to the second accommodating tube 1221 through the connecting portion 1211.
  • the third telescopic component 1222 is connected to the side of the flexible substrate 11 away from the light-emitting device 111.
  • the third telescopic component 1222 is provided to connect the flexible substrate 11, so that the connection between the auxiliary telescopic component 122 and the flexible substrate 11 is more stable, which is conducive to the flexible panel 1 forming a curved shape when the auxiliary telescopic component 122 performs the telescopic movement.
  • the shape and size of the second connecting component 1224 are not limited, as long as the third telescopic component 1222 is fixed to the side of the flexible substrate 11 away from the light-emitting device 111, and the flexible substrate 11 will not be detached or separated from the second telescopic component 1214 when the third telescopic component 1222 is extending or contracting.
  • a bending portion 1223 is provided on the third telescopic component 1222, and the bending portion 1223 is parallel to the main telescopic component 121.
  • a second connecting component 1224 is provided on the bending portion 1223, and the auxiliary telescopic component 122 is connected to the side of the flexible substrate 11 away from the light-emitting device 111 through the connecting component.
  • one end of the bending portion 1223 provided in the third telescopic component 1222 is parallel to the main telescopic component 121, so that one end of the bending portion 1223 can be connected to the flexible substrate 11 together with the main telescopic component 121 in a direction perpendicular to the flexible substrate 11, and the third telescopic component 1222 can be connected to the flexible substrate 11 through the second connecting component 1224, which can avoid damage to the flexible substrate 11 at the connection, and at the same time make the connection between the flexible substrate 11 and the plurality of auxiliary telescopic components 122 more stable, so that the connection between the bracket 12 and the flexible substrate 11 is more secure.
  • the shape and size of the second connecting component 1224 are not limited, as long as the third telescopic component 1222 is fixed to the side of the flexible substrate 11 away from the light-emitting device 111, and the flexible substrate 11 will not be separated or separated from the second telescopic component 1214 when the third telescopic component 1222 is extended or contracted.
  • the main telescopic component 121 and the plurality of auxiliary telescopic components 122 form an umbrella-like structure.
  • the support and fixing effect of the bracket 12 on the flexible substrate 11 can be improved.
  • the second embodiment of the present invention further provides a display device 2, which includes at least one flexible panel 1 of the first embodiment of the present invention.
  • the display device 2 can adjust the content and bending shape displayed in the display area of the entire display device 2 according to user needs, so that the display and bending degree of the display device 2 are more controllable.
  • the third embodiment of the present invention further provides a flexible panel control system 3, which is used to control the above-mentioned flexible panel 1.
  • the flexible panel control system 3 includes:
  • the controller 40 is used to receive the user's operation instruction and output the main control signal according to the operation instruction; wherein the main control signal includes light emitting data, extension data and rotation data;
  • the microprocessor 60 is connected to the controller 40 and outputs a corresponding driving signal according to the light emitting data, the extension data and the rotation data;
  • the power device 80 is connected to the microprocessor 60 and the flexible panel 1, receives a driving signal, and drives the flexible panel 1 to emit light and/or bend and/or rotate according to the driving signal.
  • the controller 40 includes but is not limited to control tools such as mobile phone APP, remote control, smart speakers, buttons, etc. that can be wirelessly or wired connected to the microprocessor 60, so that the user can operate on the controller 40 and issue operation instructions.
  • the controller 40 can respond to the user's operation instructions, generate a main control signal according to the operation instructions, and transmit the main control signal to the microprocessor 60.
  • the user may issue any one, or any two or three of the operating instructions issued by the controller 40, including but not limited to lighting instructions, telescopic instructions, and rotation instructions. Therefore, the controller 40 may generate a corresponding main control signal according to the issued lighting instructions and/or telescopic instructions and/or rotation instructions.
  • the main control signal may include lighting data and/or telescopic data and/or rotation data corresponding to the lighting instructions and/or telescopic instructions and/or rotation instructions.
  • the microprocessor 60 may generate a corresponding drive signal according to the lighting data and/or telescopic data and/or rotation data in the main control signal, and transmit the determination signal to the power device 80, so that the power device 80 drives the flexible panel 1 to emit light and/or bend and/or rotate according to the drive signal, thereby realizing the adjustment of the lighting and/or bending and/or rotation of the flexible panel 1 according to user needs.
  • the microprocessor 60 includes a data processing module 61 .
  • the data processing module 61 includes:
  • the data shaping unit 611 is connected to the controller 40, and is used to receive the main control signal, shape the light emitting data, the scaling data and the rotation data in the main control signal, and output the shaped light emitting data, the scaling data and the rotation data;
  • a data forwarding unit 613 connected to the data shaping unit 611, for receiving and transmitting the shaped light emitting data, scaling data and rotation data;
  • the data latch unit 615 is connected to the data forwarding unit 613, and is used to receive the shaped luminescence data, scaling data and rotation data, and latch the current luminescence data, scaling data and rotation data to continuously output the current luminescence data, scaling data and rotation data before receiving the next luminescence data, the next scaling data and the next rotation data.
  • the data shaping circuit can convert the digital signal into an analog signal to prevent the distortion that usually occurs during the pulse transmission process, and make corrections, thereby improving the stability and accuracy of the signal transmission between the controller 40 and the microprocessor 60.
  • the data forwarding circuit can transmit the shaped luminous data, telescopic data and rotation data to the data latch unit 615, and the data latch unit 615 can latch the current luminous data, telescopic data and rotation data, and before receiving the next luminous data, the next telescopic data and the next rotation data, continue to output the current luminous data, telescopic data and rotation data, so that the microprocessor 60 generates and outputs the corresponding driving signal according to the current data, and the power device 80 drives the flexible panel 1 to emit light, bend and rotate according to the driving signal; when the data latch unit 615 receives the next luminous data, the next telescopic data and the next rotation data, it latches and outputs the currently received luminous data, telescopic data and rotation data, so that the microprocessor 60 generates and outputs the corresponding driving signal according to the currently received data, and the power device 80 drives the flexible panel 1 according to the driving signal from the previous luminous, bending and rotation state to the luminous, bending and rotation state corresponding to
  • the microprocessor 60 further includes a control module 62, and the control module 62 includes:
  • the light emitting control unit 621 is connected to the controller 40 and the power device 80, and is used to generate a light emitting control signal according to the main control signal, and output the light emitting control signal to the power device 80, so that the light emitting device 111 on the flexible panel 1 emits light;
  • the telescopic control unit 623 is connected to the controller 40 and the power device 80, and is used to generate a telescopic control signal according to the main control signal, and output the telescopic control signal to the power device 80, so that the light emitting device 111 on the flexible panel 1 is bent;
  • the rotation control unit 625 is connected to the controller 40 and the power device 80 , and is used to generate a rotation control signal according to the main control signal, and output the rotation control signal to the power device 80 to rotate the flexible substrate 11 on the flexible panel 1 .
  • the microprocessor 60 also includes a control module 62, and the light control unit 621, the telescopic control unit 623, and the rotation control unit 625 in the control module 62 can all identify and determine the data type in the main control signal. If there is light-emitting data in the main control signal, the light-emitting control unit 621 can identify the light-emitting data, and generate a light-emitting control signal according to the light-emitting data.
  • the light-emitting control signal is a driving signal, and the light-emitting control signal is transmitted to the power device 80, so that the power device 80 drives the light-emitting device 111 on the flexible panel 1 to emit light according to the light-emitting control signal; if there is telescopic data in the main control signal, the telescopic control unit 623 can identify the telescopic data, and generate a light-emitting control signal according to the telescopic ...
  • the telescopic control signal is generated by the main control signal based on the contraction data, and the telescopic control signal is the driving signal, and the telescopic control signal is transmitted to the power device 80, so that the power device 80 drives the main telescopic component 121 and/or the auxiliary telescopic component 122 of the bracket 12 on the flexible panel 1 to perform telescopic movement according to the telescopic control signal, so that the flexible substrate 11 is bent; if there is rotation data in the main control signal, the rotation control unit 625 can identify the rotation data, generate a rotation control signal according to the rotation data, and the rotation control signal is the driving signal, and the rotation control signal is transmitted to the power device 80, so that the power device 80 drives the bracket 12 on the flexible panel 1 to rotate according to the rotation control signal, so that the flexible substrate 11 is rotated.
  • the driving signal may include at least one of a lighting control signal, a telescopic control signal and a rotation control signal.
  • the determination of the driving signal is determined according to the needs of the user. Therefore, the lighting and/or bending and/or rotation of the flexible panel 1 can be controlled according to the needs of the user, which is more convenient for users to use.
  • the power device 80 includes:
  • the light-emitting driving circuit 81 is connected to the light-emitting control unit 621 and the light-emitting device 111 of the flexible panel 1, and is used to receive a light-emitting control signal and drive the light-emitting device 111 to emit light and display according to the light-emitting control signal;
  • the telescopic driving circuit 83 is connected to the telescopic control unit 623 and the main telescopic component 121 and the plurality of auxiliary telescopic components 122 of the flexible panel 1, and is used to receive a telescopic control signal, and drive the main telescopic component 121 and the plurality of auxiliary telescopic components 122 to perform telescopic movement according to the telescopic control signal;
  • the rotation driving circuit 85 is connected to the rotation control unit 625 and the rotation device 14 of the flexible panel 1, and is used to receive a rotation control signal, and drive the rotation device 14 at the corresponding position of the rotation node to rotate according to the rotation control signal, so as to drive the flexible substrate 11 to rotate.
  • the light-emitting drive circuit 81, the telescopic drive circuit 83 and the rotation drive circuit 85 in the power device 80 are respectively connected to the light-emitting control unit 621, the telescopic control unit 623 and the rotation control unit 625 in the microprocessor 60, the light-emitting drive circuit 81, the telescopic drive circuit 83 and the rotation drive circuit 85 can respectively receive the corresponding light-emitting control signal, the telescopic control signal and the rotation control signal, thereby respectively driving the light-emitting device 111 to emit light, the main telescopic component 121 and the multiple auxiliary telescopic components 122 to extend or contract, and the rotating device 14 to rotate at any angle.
  • the light-emitting drive circuit 81, the telescopic drive circuit 83 and the rotation drive circuit 85 work independently, which can avoid mutual interference when each unit is working, and improve the accuracy of controlling the flexible panel 1 to emit light and/or bend and
  • the main control signal also includes first partition data and first area control data;
  • the microprocessor 60 also includes:
  • a partitioning module 63 connected to the single flexible panel 1 and the controller 40, for partitioning the single flexible panel 1 according to the first partitioning data, so as to partition the plurality of light-emitting devices 111 on the flexible panel 1 into a plurality of light-emitting areas;
  • the regional control module 64 is connected to the partition module 63, the controller 40, and the power device 80, and is used to generate regional control signals corresponding to multiple light-emitting areas according to the first regional control data, so that the power device 80 controls the corresponding areas of the flexible panel 1 to emit light and/or bend according to the regional driving signals.
  • the user can perform a partition operation of a single flexible panel 1 on the controller 40, and the controller 40 can generate a main control signal including first partition data and first area control data in response to the user's partition operation.
  • the partition module 63 in the microprocessor 60 can partition the single flexible panel 1 according to the first partition data, so as to partition the multiple light-emitting devices 111 on the flexible panel 1 into multiple light-emitting areas, such as light-emitting area A1 (as shown in FIG. 9 or FIG. 10 A1), light-emitting area A2 (as shown in FIG. 9 or FIG. 10 A2), light-emitting area A3 (as shown in FIG. 9 or FIG.
  • the area and shape of the light-emitting area are not limited, and can be specifically set according to the needs of the user, or the partition area and shape can be pre-set.
  • the partition module 63 can call the pre-stored partition area and shape for partitioning.
  • the area control module 64 can generate an area control signal corresponding to the multiple light-emitting areas according to the first area control data, so that the power device 80 controls the corresponding area of the flexible panel 1 to emit light and/or bend and/or control the entire flexible panel to rotate according to the area drive signal.
  • the main control signal also includes combination data and combination control data
  • the microprocessor 60 also includes:
  • a combination module 65 connected to the plurality of flexible panels 1 and the controller 40, for combining the plurality of flexible panels 1 according to the combination data to form a corresponding combination display panel 90;
  • the combined control module 66 is connected to the combined module 65, the controller 40, and the power device 80, and is used to generate a combined control signal according to the combined control data, so that the power device 80 drives the combined display panel 90 to emit light and/or bend and/or rotate according to the combined control signal.
  • the microprocessor 60 can also control multiple flexible panels 1.
  • the user can perform a combination operation of multiple flexible panels 1 on the controller 40.
  • the controller 40 can respond to the user's combination operation and generate a main control signal including combination data and combination control data.
  • the combination module 65 in the microprocessor 60 can combine multiple flexible panels 1 according to the combination data to form a combination display panel 90 with different shapes and a wider display area.
  • the shape of the combined display panel 90 is not limited. It can be set according to the needs of the user, or the combination shape can be preset.
  • the combination module 65 can call the pre-stored combination shape to combine multiple flexible panels 1.
  • the combination control module 66 can generate a combination control signal according to the combination control data, so that the power device 80 drives the combined display panel 90 to emit light and/or bend and/or rotate according to the combination control signal.
  • the combined control data includes a plurality of single control data corresponding to a plurality of flexible panels 1;
  • the combined control module 66 is also used to generate multiple single control signals according to multiple single control data, so that the power device 80 drives the corresponding flexible panel 1 to emit light and/or bend and/or rotate according to the single control signal.
  • the combined control data includes multiple single control data of multiple flexible panels 1, that is, the luminous data, extension data and rotation data of a single flexible panel 1 corresponding to a single control data packet block. Therefore, the combined control module 66 can generate corresponding multiple single control signals according to the multiple single control data, so that the power device 80 can control the multiple flexible panels 1 to emit light and/or bend and/or rotate respectively according to the multiple single control signals, thereby improving the independence of the control of each flexible panel 1, and then improving the accuracy of controlling multiple flexible panels 1.
  • the combined control data also includes second partition data and second area control data;
  • the combined control module 66 also includes:
  • a partitioning unit 661 connected to the controller 40 and the combination module 65, for partitioning the combination display panel 90 according to the combination data, so as to partition the plurality of light emitting devices 111 of the combination display panel 90 into a plurality of display areas;
  • the partition control unit 663 is connected to the partition unit 661, the controller 40, and the power device 80, and is used to generate a display area control signal corresponding to multiple display areas based on the second area control data, so that the power device 80 controls the corresponding display area of the combined display panel 90 to emit light and/or bend according to the display area drive signal.
  • the partitioning unit 661 in the combined control module 66 can partition the combined display panel 90 to partition the plurality of light-emitting devices 111 of the combined display panel 90 to form a plurality of display areas, such as display area 1, display area 2, display area 3...display area n, etc.
  • the shape and size of the display area are not limited, and can be specifically set according to the needs of the user, or the partition area and shape can be pre-set.
  • the partitioning unit 661 can call the pre-stored partition area and shape for partitioning.
  • the partitioning control unit 663 can generate a display area control signal corresponding to a plurality of display areas according to the second area control data, so that the power device 80 controls the corresponding display area of the combined display panel 90 to emit light and/or bend and/or control the entire combined display panel to rotate according to the display area drive signal.
  • the DOUT1 terminal, DOUT2 terminal, and DOUT3 terminal of the controller 40 are respectively connected to the DIN terminal of the first light emitting control unit 621 , the DIN terminal of the first telescopic control unit 623 , and the DIN terminal of the first rotation control unit 625 ;
  • VSS terminal of the light emitting control unit 621, the VSS terminal of the telescopic control unit 623, and the VSS terminal of the rotation control unit 625 are all connected to the positive pole of the power supply, and the VDD terminal of the light emitting control unit 621, the VDD terminal of the telescopic control unit 623, and the VDD terminal of the rotation control unit 625 are all connected to the negative pole of the power supply;
  • the W end of the light emitting control unit 621 is connected to the light emitting driving circuit 81
  • the S end of the telescopic control unit 623 is connected to the telescopic driving circuit 83
  • the S end of the rotation control unit 625 is connected to the rotation driving circuit 85 .
  • the light control unit 621, the telescopic control unit 623 and the rotation control unit 625 of the controller 40 and the microprocessor 60 are respectively provided with corresponding control chips, light control chips, telescopic control chips and rotation control chips, each chip includes a corresponding plurality of pins, and the W end of the light control unit 621, the S end of the telescopic control unit 623 and the S end of the rotation control unit 625 are respectively connected to the
  • the main controller 40 can transmit the main control signal to the multiple light-emitting control units 621, the multiple telescopic control units 623 and the multiple rotation control units 625 in the microprocessor 60, so that the light-emitting drive circuit 81, the telescopic drive circuit 83 and the rotation drive circuit 85 can drive the flexible panel 1 to emit light and/or bend and/or rotate according to the corresponding light-emitting control signal, the telescopic control signal and the rotation control signal.
  • connection method of the multiple light-emitting devices 111 is not limited, and they can be connected in series or in parallel; the telescopic driving circuits 83 of the multiple brackets 12 corresponding to the multiple flexible panels 1 can be connected in series or in parallel; the rotation driving circuits 85 of the multiple rotating devices 14 corresponding to the multiple flexible panels 1 can be connected in series or in parallel.
  • the multiple light-emitting driving circuits 81 of the multiple light-emitting devices 111, the telescopic driving circuits 83 of the multiple brackets 12 corresponding to the multiple flexible panels 1, and the rotation driving circuits 85 of the multiple rotating devices 14 corresponding to the multiple flexible panels 1 are all connected in parallel to avoid the damage of one driving circuit affecting other circuits, thereby improving the stability of the light emission and/or bending and/or rotation of the flexible display panel.
  • the FDIN terminal of the first light-emitting control unit 621, the FDIN terminal of the first telescopic control unit 623, and the FDIN terminal of the first rotation control unit 625 are all connected to the corresponding VSS terminal of the first light-emitting control unit 621, the VSS terminal of the first telescopic control unit 623, and the VSS terminal of the first rotation control unit 625, and connected to the positive pole of the power supply.
  • the FDIN terminal of the next light-emitting control unit 621 , the FDIN terminal of the next telescopic control unit 623 , and the FDIN terminal of the next rotation control unit 625 are connected to the DOUT1 terminal, the DOUT2 terminal, and the DOUT3 terminal of the controller 40 , respectively.
  • an FDIN terminal can be set in each light emitting control unit 621, each telescopic control unit 623 and each rotation control unit 625 in the microprocessor 60.
  • an FDIN terminal By setting an FDIN terminal for each light emitting control unit 621, each telescopic control unit 623 and each rotation control unit 625, they are respectively connected to the controller 40 to achieve breakpoint resumption and improve the accuracy of data transmission between the controller 40 and the microprocessor 60.
  • the flexible panel of the present invention includes a flexible substrate and a plurality of light-emitting devices.
  • the light-emitting devices are arranged on one side of the flexible substrate.
  • a circuit is arranged inside the flexible panel, and the light-emitting devices are electrically connected to the circuit.
  • the flexible substrate can realize the adjustment of local areas, for example, a transition arc is formed at the edge, so that the angle adjustment is freer and the transition is smoother, thereby improving the overall display effect of the entire flexible panel, and solving the problem that the existing multiple flexible display panels are formed into a bend, resulting in the angle of the bend being unadjustable and the bend being not smooth.
  • the circuit on the flexible panel can be controlled to control the plurality of light-emitting devices on the flexible substrate to perform light-emitting display.
  • the light-emitting device performs light-emitting display, it cooperates with the bending of the flexible panel to make the display of the flexible display panel more three-dimensional and vivid.
  • the flexible panel of the present invention also includes a bracket and a fixed plate; the side of the flexible substrate away from the light-emitting device is connected to one end of the bracket; a rotation node, a main telescopic component and a plurality of auxiliary telescopic components are arranged on the bracket, a rotating device is arranged at the corresponding position of the rotation node, a connecting portion is arranged on the main telescopic component, one end of the main telescopic component is connected to one end of the plurality of auxiliary telescopic components through the connecting portion, and is connected to the side of the flexible substrate away from the light-emitting device, and the other end of the main telescopic component is connected to the fixed plate through the rotating device.
  • a bracket including a main telescopic component, a plurality of auxiliary telescopic components and a rotating device located at the rotation node, and setting the bracket on the side of the flexible substrate away from the light-emitting device
  • the curvature of the flexible substrate protruding outward or the curvature of the curvature concave inward is controlled, and the curvature of the curvature is smoother than the curvature formed by the combination of multiple panels, and the flexible substrate is rotated in a plane by the rotating device, and the light emission of the light-emitting device is controlled, so as to adjust the content and curvature displayed by the entire flexible panel according to user needs.
  • the rotation node of the present invention includes a first rotation node and a second rotation node, and the second rotation node is located between the connection part and the fixed plate; the rotation device includes a first rotation device and a second rotation device corresponding to the positions of the first rotation node and the second rotation node respectively, and the main telescopic assembly is connected to the first rotation node through the first rotation device and the fixed plate.
  • the main telescopic assembly of the present invention includes a first accommodating tube and a first telescopic assembly.
  • the first telescopic assembly is telescopically accommodated in the first accommodating tube, and the first accommodating tube is connected to the first rotation node with the fixing plate through the first rotating device.
  • the main telescopic assembly includes a second telescopic assembly.
  • the second telescopic assembly is telescopically accommodated in the first telescopic assembly.
  • the connecting portion and the second rotation node are both located on the first telescopic assembly, and the second rotation node is located on the side of the connecting portion away from the flexible substrate.
  • the main telescopic assembly passes through the accommodating tube, the first telescopic assembly, the second rotating device, the connecting portion and the second telescopic assembly in the extension direction in sequence, and the second telescopic assembly is connected to the side of the flexible substrate away from the light-emitting device.
  • the extension and contraction of the bracket can be made more flexible, so that the bending of the flexible substrate can be more controllable.
  • the flexible panel can be bent outwardly or recessed inwardly.
  • the second telescopic assembly of the present invention is provided with a first connecting assembly, and the second telescopic assembly is connected to the side of the flexible substrate away from the light-emitting device through the first connecting assembly. Connecting the flexible board through the first connecting assembly can avoid damage to the flexible panel at the connection, and at the same time make the connection between the flexible substrate and the main telescopic assembly more stable.
  • the secondary telescopic assembly of the present invention includes a second housing tube and a third telescopic assembly, the third telescopic assembly is telescopically accommodated in the second housing tube, the main telescopic assembly is connected to the second housing tube through a connecting portion, and the third telescopic assembly is connected to the side of the flexible substrate away from the light-emitting device.
  • the third telescopic assembly By arranging the third telescopic assembly to connect the flexible substrate, the connection between the secondary telescopic assembly and the flexible substrate is more stable, which is conducive to the flexible panel forming a curved shape when the secondary telescopic assembly performs a telescopic movement.
  • a bending portion is provided on the third telescopic component of the present invention, and the bending portion is parallel to the main telescopic component.
  • a second connecting component is provided on the bending portion.
  • the third telescopic component is connected to the side of the flexible substrate away from the light-emitting device through the second connecting component.
  • the main telescopic assembly and the plurality of auxiliary telescopic assemblies of the present invention form an umbrella-like structure.
  • the supporting effect and fixing effect of the bracket on the flexible substrate are improved.
  • the present invention also provides a display device having the same beneficial effects as the above-mentioned flexible panel, which will not be described in detail here.
  • the present invention also provides a control system for a flexible panel, which is used to control the flexible panel as described above and has the same beneficial effects as the flexible panel described above, which will not be elaborated here.

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Abstract

一种柔性面板(1)、显示装置(2)及柔性面板(1)的控制系统(3),柔性面板(1),包括柔性基板(11)、若干发光器件(111),发光器件(111)设置在柔性基板(11)的一侧上,柔性面板(1)内部设有电路,发光器件(111)与电路电性连接。显示装置(2)包括柔性面板(1)。柔性面板(1)的控制系统(3),用于控制柔性面板(1)。

Description

柔性面板、显示装置及柔性面板的控制系统 【技术领域】
[根据细则26改正 19.12.2022]
本发明涉及显示技术领域,特别涉及一种柔性面板、显示装置及柔性面板的控制系统。
【背景技术】
[根据细则26改正 19.12.2022]
随着科技的不断发展,显示技术的发展的也在不断地进步,有关曲面、可折叠等柔性显示面板的产品的应用范围也越来越广,但现有柔性显示面板的产品通常是通过多个柔性显示板组成形成弯曲,导致弯曲的角度不可调整,且弯曲的弧度不圆滑。
【发明内容】
[根据细则26改正 19.12.2022]
为解决现有技术中的问题,本发明提供了一种柔性面板、显示装置及柔性面板的控制系统。
[根据细则26改正 19.12.2022]
本发明解决技术问题的方案是提供一种柔性面板,包括柔性基板、若干发光器件,所述发光器件设置在所述柔性基板的一侧上,所述柔性面板内部设有电路,所述发光器件与所述电路电性连接。
[根据细则26改正 19.12.2022]
优选地,所述柔性面板还包括支架和固定板;
[根据细则26改正 19.12.2022]
所述柔性基板的一侧设置有多个发光器件,所述柔性基板背离所述发光器件的一侧与所述支架的一端连接;
[根据细则26改正 19.12.2022]
所述支架上设置有旋转节点、主伸缩组件以及多个副伸缩组件,所述旋转节点的对应位置设置有旋转装置,所述主伸缩组件上设置有连接部,所述主伸缩组件的一端通过所述连接部与多个所述副伸缩组件的一端连接,并连接所述柔性基板背离所述发光器件的一侧,所述主伸缩组件的另一端通过所述旋转装置与所述固定板连接。
[根据细则26改正 19.12.2022]
优选地,所述旋转节点包括第一旋转节点和第二旋转节点,所述第二旋转节点位于所述连接部与所述固定板之间;
[根据细则26改正 19.12.2022]
所述旋转装置包括分别与所述第一旋转节点和所述第二旋转节点的位置对应的第一旋转装置与第二旋转装置,所述主伸缩组件通过所述第一旋转装置与所述固定板连接于所述第一旋转节点。
[根据细则26改正 19.12.2022]
优选地,所述主伸缩组件包括第一容纳管和第一伸缩组件,所述第一伸缩组件伸缩收纳于所述容纳管,所述容纳管通过所述第一旋转装置与所述固定板连接于所述第一旋转节点。
[根据细则26改正 19.12.2022]
优选地,所述主伸缩组件的包括第二伸缩组件,所述第二伸缩组件伸缩收纳于所述第一伸缩组件,所述连接部与所述第二旋转节点均位于所述第一伸缩组件上,且所述第二旋转节点位于所述连接部远离所述柔性基板的一侧;
[根据细则26改正 19.12.2022]
所述主伸缩组件沿伸展方向依次经过所述容纳管、所述一级伸缩组件、所述第二旋转装置、所述连接部以及所述第二伸缩组件,所述第二伸缩组件连接所述柔性基板背离所述发光器件的一侧。
[根据细则26改正 19.12.2022]
优选地,所述第二伸缩组件上设置有第一连接组件,所述第二伸缩组件通过所述第一连接组件连接所述柔性基板背离所述发光器件的一侧。
[根据细则26改正 19.12.2022]
优选地,所述副伸缩组件包括第二容纳管和第三伸缩组件,所述第三伸缩组件伸缩收纳于所述第二容纳管,所述主伸缩组件通过所述连接部与所述第二容纳管连接,所述第三伸缩组件连接所述柔性基板背离所述发光 器件的一侧。
[根据细则26改正 19.12.2022]
优选地,所述第三伸缩组件的上设置有弯折部,所述弯折部与所述主伸缩组件平行,所述弯折部上设置有第二连接组件,所述第三伸缩组件通过所述连接组件连接所述柔性基板背离所述发光器件的一侧。
[根据细则26改正 19.12.2022]
优选地,所述主伸缩组件与多个所述副伸缩组件形成伞状结构。
[根据细则26改正 19.12.2022]
本发明为解决上述技术问题还提供一种显示装置,所述显示装置包括上述所述的柔性面板。
[根据细则26改正 19.12.2022]
本发明为解决上述技术问题还提供一种柔性面板的控制系统,用于控制如上所述的柔性面板,所述控制系统包括:控制器,用于接收用户的操作指令,根据操作指令输出主控制信号;其中,所述主控制信号包括发光数据、伸缩数据以及旋转数据;
[根据细则26改正 19.12.2022]
微处理器,与所述控制器连接,根据所述发光数据、伸缩数据以及旋转数据输出对应的驱动信号;
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动力装置,与所述微处理器和所述柔性面板连接,接收所述驱动信号,根据所述驱动信号驱动柔性面板进行发光和/或弯曲和/或旋转。
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优选地,所述微处理器还包括:数据处理模块,所述数据处理模块包括:
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数据整形单元,与所述控制器连接,用于接收所述主控制信号,将所述主控制信号中的所述发光数据、伸缩数据以及旋转数据进行整形,并输出整形后的发光数据、伸缩数据以及旋转数据;
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数据转发单元,与所述数据整形单元连接,用于接收并传输所述整形后的所述发光数据、伸缩数据以及旋转数据;
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数据锁存单元,与所述数据转发单元连接,用于接收所述整形后的所述发光数据、所述伸缩数据以及所述旋转数据,将当前的所述发光数据、所述伸缩数据以及所述旋转数据进行锁存,以在接收到下一发光数据、下一伸缩数据以及下一旋转数据之前持续输出当前的所述发光数据、所述伸缩数据以及所述旋转数据。
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优选地,所述微处理器还包括控制模块,所述控制模块包括:
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发光控制单元,与所述控制器和所述动力装置连接,用于根据所述主控制信号生成发光控制信号,并输出发光控制信号至所述动力装置,使所述柔性面板上的发光器件进行发光;
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伸缩控制单元,与所述控制器和所述动力装置连接,用于根据所述主控制信号生成伸缩控制信号,并输出伸缩控制信号至所述动力装置,使所述柔性面板上的发光器件进行弯曲;
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旋转控制单元,与所述控制器和所述动力装置连接,用于根据所述主控制信号生成旋转控制信号,并输出旋转控制信号至所述动力装置,使所述柔性面板上的柔性基板进行转动。
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优选地,所述动力装置包括:
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发光驱动电路,与所述发光控制单元和所述柔性面板的发光器件连接,用于接收所述发光控制信号,根据发光控制信号驱动发光器件进行发光显示;
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伸缩驱动电路,与所述伸缩控制单元和所述柔性面板的主伸缩组件和多个副伸缩组件连接,用于接收所述伸缩控制信号,根据所述伸缩控制信号驱动所述主伸缩组件和多个所述副伸缩组件进行伸缩运动;
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旋转驱动电路,与所述旋转控制单元和所述柔性面板的旋转装置连接,用于接收所述旋转控制信号,根据所述旋转控制信号驱动旋转节点的对应位置的旋转装置进行旋转,以带动柔性基板进行转动。
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优选地,所述主控制信号还包括第一分区数据和第一区域控制数据;
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所述微处理器还包括:
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分区模块,与单个所述柔性面板和所述控制器连接,用于根据所述第一分区数据将所述单个柔性面板进行分区,以将所述柔性面板上的多个发光器件进行分区形成多个发光区域;
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区域控制模块,与所述分区模块、所述控制器、动力装置连接,用于根据所述第一区域控制数据生成与多个所述发光区域对应的区域控制信号,使所述动力装置根据所述区域驱动信号控制柔性面板的对应区域进行发光和/或弯曲。
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优选地,所述主控制信号还包括组合数据和组合控制数据;
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所述微处理器还包括:
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组合模块,与多个所述柔性面板和所述控制器连接,用于根据所述组合数据将所述多个柔性面板进行组合,形成对应的组合显示面板;
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组合控制模块,与所述组合模块、所述控制器,所述动力装置连接,用于根据所述组合控制数据生成组合控制信号,使所述动力装置根据所述组合控制信号驱动所述组合显示面板进行发光和/或弯曲和/旋转。
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优选地,所述组合控制数据包括多个所述柔性面板对应的单一控制数据;
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所述组合控制模块还用于根据多个所述单一控制数据生成多个单一控制信号,以使所述动力装置根据所述单一控制信号驱动对应的所述柔性面板进行发光和/或弯曲和/或旋转。
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优选地,所述组合控制数据中还包括第二分区数据和第二区域控制数据;
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所述组合控制模块还包括:
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分区单元,与所述控制器和所述组合模块连接,用于根据所述组合数据对所述组合显示面板进行分区,以将所述组合显示面板的多个发光器件进行分区形成多个显示区域
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分区控制单元,与所述分区单元、所述控制器、所述动力装置连接,用于根据所述第二区域控制数据生成与多个所述显示区域对应的显示区域控制信号,使所述动力装置根据所述显示区域驱动信号控制所述组合显示面板的对应所述显示区域进行发光和/或弯曲。
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优选地,所述控制器的DOUT1端、DOUT2端、DOUT3端分别与第一发光控制单元的DIN端、第一伸缩控制单元的DIN端以及第一旋转控制单元的DIN端连接;
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前一个发光控制单元的DOUT端、前一个伸缩控制单元的DOUT端以及前一个旋转控制单元的DOUT端分别和下一个发光控制单元的DIN端、下一个伸缩控制单元的DIN端以及下一个旋转控制单元的DIN端连接;
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所述发光控制单元的VSS端、所述伸缩控制单元的VSS端以及所述旋转控制单元VSS端均接电源正极,所述发光控制单元的VDD端、所述伸缩控制单元的VDD端以及所述旋转控制单元VDD端均接电源负极;
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所述发光控制单元的W端连接所述发光驱动电路,所述伸缩控制单元的S端连接所述伸缩驱动电路,所述旋转控制单元的S端连接所述旋转驱动电路。
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优选地,所述第一个发光控制单元的FDIN端、所述第一个伸缩控制单元的FDIN端以及所述第一旋转控制单元的FDIN端均与对应的所述第一发光控制单元的VSS端、所述第一个伸缩控制单元的VSS端以及所述第一个旋转控制单元的VSS端连接,并接电源正极;
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所述下一个发光控制单元的FDIN端、所述下一个伸缩控制单元的FDIN端以及所述下一个旋转控制单元的FDIN端分别与所述控制器的DOUT1端、DOUT2端、DOUT3端连接。
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与现有技术相比,本发明提供的柔性面板、显示装置及柔性面板的控制系统具有以下优点:
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1.本发明的柔性面板,包括柔性基板、若干发光器件,发光器件设置在柔性基板的一侧上,柔性面板内部设有电路,发光器件与电路电性连接。柔性基材可以实现局部区域的调整,例如在边缘处形成过渡弧度,使角度调整更自由,过渡更平顺,提高整体柔性面板的整体显示效果,解决了现有的多个柔性显示板组成形成弯曲,导致弯曲的角度不可调整,且弯曲的弧度不圆滑问题。另外发光器件与柔性面板的电性连接时,可以通过控制柔性面板上的电路以控制柔性基板上若干发光器件进行发光显示,发光器件进行发光显示时与柔性面板的弯曲配合,能使柔性显示面板的显示更立体生动。
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2、本发明的柔性面板,还包括支架和固定板;柔性基板背离发光器件的一侧与支架的一端连接;支架上设置有旋转节点、主伸缩组件以及多个副伸缩组件,旋转节点的对应位置设置有旋转装置,主伸缩组件上设置有连接部,主伸缩组件的一端通过连接部与多个副伸缩组件的一端连接,并连接柔性基板背离发光器件的一侧,主伸缩组件的另一端通过旋转装置与固定板连接。通过设置包括主伸缩组件、多个副伸缩组件的支架及位于旋转节点的旋转装置,并将支架设置在柔性基板背离发光器件的一侧设置,通过控制主伸缩组件及多个副伸缩组件的进行伸缩运动,从而控制柔性基板向外突出弯曲的弧度或向内凹陷弯曲的弧度,弯曲的弧度相较于多个面板组合形成的弯曲更加圆滑,并通过旋转装置使柔性基板进行在平面内进行旋转,并通过控制发光器件的发光,从而实现根据用户需求调整整个柔性面板展示的内容和弯曲形状。
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3、本发明的旋转节点包括第一旋转节点和第二旋转节点,第二旋转节点位于连接部与固定板之间;旋转装置包括分别与第一旋转节点和第二旋转节点的位置对应的第一旋转装置和第二旋转装置,主伸缩组件通过第一旋转装置与固定板连接于第一旋转节点。通过在第一旋转节点和第二旋转节点的对应位置设置第一旋转装置与第二旋转装置,实现了支架的旋转及多个副伸缩杆的旋转,从而实现了柔性面板的旋转。
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4、本发明的主伸缩组件包括第一容纳管和第一伸缩组件,第一伸缩组件伸缩收纳于第一容纳管,第一容纳管通过第一旋转装置与固定板连接于第一旋转节点。主伸缩组件的包括第二伸缩组件,第二伸缩组件伸缩收纳于第一伸缩组件,连接部与第二旋转节点均位于第一伸缩组件上,且第二旋转节点位于连接部远离柔性基板的一侧;主伸缩组件沿伸展方向依次经过容纳管、一级伸缩组件、第二旋转装置、连接部以及第二伸缩组件,第二伸缩组件连接柔性基板背离发光器件的一侧。通过在主伸缩组件上设置第一伸缩组件与第二伸缩组件,能使支架的伸缩更加灵活,从而使柔性基板弯曲更可控。另外,可通过控制第二伸缩组件的伸展或收缩运动,可实现柔性面板向外突出弯曲或向内凹陷弯曲。
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5、本发明的第二伸缩组件上设置有第一连接组件,第二伸缩组件通过第一连接组件连接柔性基板背离发光器件的一侧。通过第一连接组件连接柔性板能避免连接处对柔性面板的损伤,同时使柔性基板与主伸缩组件的连接更稳定。
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6、本发明的副伸缩组件包括第二容纳管和第三伸缩组件,第三伸缩 组件伸缩收纳于第二容纳管,主伸缩组件通过连接部与第二容纳管连接,第三伸缩组件连接柔性基板背离发光器件的一侧。通过设置第三伸缩组件连接柔性基板,使副伸缩组件与柔性基板的连接更加稳定,从而有利于副伸缩组件在进行伸缩运动时,柔性面板形成弯曲形状。
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7、本发明的第三伸缩组件的上设置有弯折部,弯折部与主伸缩组件平行,弯折部上设置有第二连接组件,第三伸缩组件通过第二连接组件连接柔性基板背离发光器件的一侧,通过设置弯折部,并在弯折部上设置第二连接组件,使弯折部与主伸缩组件平行,第三伸缩组件能通过第二连接组件与主伸缩组件一起沿垂直于柔性基板的方向连接柔性基板,从而使支架与柔性基板的连接更加牢固和稳定。
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8、本发明的主伸缩组件与多个副伸缩组件形成伞状结构。通过设置主伸缩组件与多个副伸缩组件形成伞状结构,提高支架对柔性基板的支撑效果与固定效果。
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9、本发明还提供一种显示装置,具有与上述柔性面板相同的有益效果,在此不做赘述。
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10.本发明还提供一种柔性面板的控制系统,用于控制如上所述的柔性面板,具有与上述柔性面板相同的有益效果,在此不做赘述。
【附图说明】
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为了更清楚地说明本发明实施例中的技术方案,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地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,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。
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图1是本发明第一实施例提供的柔性面板的正视图。
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图2是本发明第一实施例提供的柔性面板的侧视图。
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图3是本发明第一实施例提供的柔性面板的背面视图。
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图4是本发明第二实施例提供的显示装置的结构示意框图。
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图5是本发明第三实施例提供的柔性面板的控制系统的结构示意框图。
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图6是本发明第三实施例提供的柔性面板的控制系统之微处理器的结构示意框图。
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图7是本发明第三实施例提供的柔性面板的控制系统之控制模块、动力装置、柔性面板的结构示意框图。
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图8是本发明第三实施例提供的柔性面板的控制系统之分区模块的结构示意框图。
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图9是本发明第三实施例提供的柔性面板的控制系统之发光区域的分区示意图。
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图10是本发明第三实施例提供的柔性面板的控制系统之另一实施方式的发光区域的分区示意图。
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图11是本发明第三实施例提供的柔性面板的控制系统之组合模块的结构示意框图。
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图12是本发明第三实施例提供的柔性面板的控制系统之多个柔性面板的组合结构图。
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图13是本发明第三实施例提供的柔性面板的控制系统之组合控制模块的结构示意框图。
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图14是本发明第三实施例提供的柔性面板的控制系统之控制模块和动力装置的电路原理图。
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附图标识说明:
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1、柔性面板;2、显示装置;
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11、柔性基板;12、支架;13、固定板;14、旋转装置;
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111、发光器件;121、主伸缩组件;122、副伸缩组件;141、第一旋转装置;143、第二旋转装置;
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1211、连接部;1212、第一容纳管;1213、第一伸缩组件;1214、第二伸缩组件;1215、第一连接组件;1221、第二容纳管;1222、第三伸缩组件;1223、弯折部;1224、第二连接组件;
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3、柔性面板的控制系统;
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40、控制器;60、微处理器;80、动力装置;90、组合显示面板;
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61、数据处理模块;62、控制模块;63、分区模块;64、区域控制模块;65、组合模块;66、组合控制模块;
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81、发光驱动电路;83、伸缩驱动电路;85、旋转驱动电路;
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611、数据整形单元;613、数据转发单元;615、数据锁存单元;621、发光控制单元;623、伸缩控制单元;625、旋转控制单元;661、分区单元;663、分区控制单元。
【具体实施方式】
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为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施实例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
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需要说明的是,当元件被称为“固定于”另一个元件,它可以直接在另一个元件上或者也可以存在居中的元件。当一个元件被认为是“连接”另一个元件,它可以是直接连接到另一个元件或者可能同时存在居中元件。本文所使用的术语“垂直的”、“水平的”、“左”、“右”以及类似的表述只是为了说明的目的。
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请参阅图1,本发明第一实施例提供一种柔性面板1包括柔性基板11、若干发光器件111,发光器件设置在柔性基板11的一侧上,柔性面板1内部设有电路,发光器件111与电路电性连接。
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可以理解地,柔性基材11可以实现局部区域的调整,例如在边缘处形成过渡弧度,使角度调整更自由,过渡更平顺,提高整体柔性面板1的整体显示效果,解决了现有的多个柔性显示板组成形成弯曲,导致弯曲的角度不可调整,且弯曲的弧度不圆滑问题。另外发光器件111与柔性面板1的电性连接时,可以通过控制柔性面板1上的电路以控制柔性基板11上若干发光器件111进行发光显示,发光器件进行发光显示时与柔性基板11的弯曲配合,能使柔性面板1的显示更立体生动。
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请参阅图2,进一步的,柔性面板1还包括:支架12和固定板13;柔性基板11背离发光器件111的一侧与支架12的一端连接;支架12上设置有旋转节点、主伸缩组件121以及多个副伸缩组件122,旋转节点的对应位置设置有旋转装置14,主伸缩组件121上设置有连接部1211,主伸缩组件121的一端通过连接部1211与多个副伸缩组件122的一端连接,并连接柔性基板11背离发光器件111的一侧,主伸缩组件121的另一端通过旋转装置14与固定板13连接。
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可以理解地,固定板13可固定在墙壁、墙顶、房顶等地方,因而当主伸缩组件121的一端通过连接部1211与多个副伸缩组件122的一端连接,并连接柔性基板11背离发光器件111的一侧,主伸缩组件121的另 一端通过旋转装置14与固定板13连接时,整个的柔性基板11可通过固定板13挂在墙壁、墙顶、房顶等地方。
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可以理解地,支架12上的主伸缩组件121与多个副伸缩组件122都可进行伸展运动和收缩运动,主伸缩组件121与多个副伸缩组件122在进行伸展运动或收缩运动时,都可使柔性基板11向外凸起弯曲或向内凹陷弯曲。
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具体的,当基板处于非弯曲状态时,在副伸缩组件122做伸展运动,主伸缩组件121保持不动时,柔性基板11向内凹陷弯曲;在副伸缩组件122做收缩运动时,柔性基板11向内凹陷弯曲。
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可以理解地,主伸缩组件121与多个副伸缩组件122进行伸展运动或收缩运动的伸展长度及收缩长度均可调节,通过调节伸展长度及收缩长度,就可控制柔性基板11的弯曲程度。
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可以理解地,在主伸缩组件121的一端通过旋转装置14与固定板13连接时,主伸缩组件121通过旋转装置14进行旋转,从而使整个支架12进行旋转,进而带动柔性基板11进行旋转,且旋转装置14的旋转方向及旋转角度均可调整,因而柔性基材的旋转方向与旋转角度也可调整,能有利于柔性面板1旋转至用户的指定位置。
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可以理解地,柔性基板11的形状并不限定,可以为矩形也可为圆形,柔性基板11上的多个发光器件111的排列方式可根据柔性基板11的形状来设置,本实施例对此不做限制,多个发光器件111的发光与熄灭均可控制,且多个发光器件111的发光颜色均可控制,因而,通过控制主伸缩组件121及多个副伸缩组件122组件的进行伸展运动与收缩运动,从而控制柔性基板11向外突出弯曲的弧度或向内凹陷弯曲的弧度,弯曲的弧度相较于多个面板组合形成的弯曲更加圆滑,且通过旋转装置14使柔性基板11进行在进行旋转,并通过控制发光器件111的发光,从而实现根据用户需求调整整个柔性面板1展示的内容和弯曲形状。
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请参阅图2,进一步的,旋转节点包括第一旋转节点和第二旋转节点,第二旋转节点位于连接部1211与固定板13之间;旋转装置14包括分别与第一旋转节点和第二旋转节点的位置对应的第一旋转装置141和第二旋转装置143,主伸缩组件121通过第一旋转装置141与固定板13连接于第一旋转节点。
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可以理解地,旋转节点的位置与旋转装置14的位置对应,因而第一旋转节点和第二旋转节点的位置分别与第一旋转装置141和第二旋转装置143的位置对应,第一旋转装置141与第二旋转装置143的旋转方向与旋转角度均可调节。
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具体的,主伸缩组件121通过第一旋转装置141与固定板13连接于第一旋转节点时,主伸缩组件121可通过第一旋转装置141整个支架12及柔性基板11进行旋转。第二旋转节点位于连接部1211与固定板13之间时,第二旋转装置143也位于连接部1211与固定板13之间,因而多个副伸缩组件122及部分主伸缩组件121可通过第二旋转装置143进行旋转,从而使柔性基板11的进行旋转,进而使柔性面板1的旋转更加灵活,提高柔性面板1旋转的灵活性。
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请继续参阅图2,进一步的,主伸缩组件121包括第一容纳管1212和第一伸缩组件1213,第一伸缩组件1213伸缩收纳于第一容纳管1212,第一容纳管1212通过第一旋转装置141与固定板13连接于第一旋转节点。
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可以理解地,第一容纳管1212上设置有容纳空间,第一伸缩组件1213的尺寸小于第一容纳管1212的内壁尺寸,因而第一伸缩组件1213 可在容纳空间内进行伸展运动与收缩运动,通过控制第一伸缩组件1213进行伸展运动的伸展距离或收缩运动的收缩距离,就可调节柔性面板1与墙壁或房顶等地方的距离,且第一容纳管1212可通过第一旋转装置141与固定板13连接,能实现支架12在第一旋转节点处进行旋转,更有利于对柔性面板1进行调节,满足用户的需求。
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请继续参阅图2,进一步的,主伸缩组件121的包括第二伸缩组件1214,第二伸缩组件1214伸缩收纳于第一伸缩组件1213,连接部1211与第二旋转节点均位于第一伸缩组件1213上,且第二旋转节点位于连接部1211远离柔性基板11的一侧;主伸缩组件121沿伸展方向依次经过容纳管、一级伸缩组件、第二旋转装置143、连接部1211以及第二伸缩组件1214,第二伸缩组件1214连接柔性基板11背离发光器件111的一侧。
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可以理解地,第一伸缩组件1213上设置有容纳空间,第二伸缩组件1214的尺寸小于第一伸缩组件1213的内壁尺寸,因而第二伸缩组件1214可在第一伸缩组件1213的容纳空间内进行伸展运动与收缩运动,且在连接部1211与第二旋转节点均位于第一伸缩组件1213上时,第二伸缩组件1214位于连接部1211与柔性基板11之间,第二伸缩组件1214的一端连接柔性基板11,因此可通过控住第二伸缩组件1214进行伸展运动或收缩运动,从而实现柔性基板11的弯曲。
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具体的,在第二伸缩组件1214做伸展运动,多个副伸缩组件122保持不动或多个副伸缩组件122伸展运动的伸展距离小于第二伸缩组件1214的伸展距离或多个副伸缩组件122做收缩运动时,都可使柔性基板11向外凸出弯曲;在第二伸缩组件1214做收缩运动,多个副伸缩组件122保持不动或多个副伸缩组件122收缩运动的收缩距离小于第二伸缩组件1214的收缩距离或多个副伸缩组件122做伸展运动时,都可使柔性基板11向外凹陷弯曲,同时可控制第二伸缩组件1214做伸展运动的伸展距离或收缩运动的收缩距离,对柔性基板11的弯曲弧度进行控制,进而控制弯曲的形状,使整个柔性面板1的弯曲更可控,同时也提高了控制柔性面板1的弯曲的灵活性。
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请继续参阅图2,进一步的,第二伸缩组件1214上设置有第一连接组件1215,第二伸缩组件1214通过第一连接组件1215连接柔性基板11背离发光器件111的一侧。
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具体的,第二伸缩组件1214通过第一连接组件1215连接柔性板时,能避免连接处对柔性面板1的损伤,同时使柔性基板11与主伸缩组件121的连接更稳定,进而使支架12与柔性基板11连接更稳定。第一连接组件1215的形状与大小并不限制,满足第二伸缩组件1214与柔性基板11背离发光器件111的一侧固定,且第二伸缩组件1214在进行伸展运动或收缩运动时,柔性基板11不会与第二伸缩组件1214脱离或分离即可。
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请继续参阅图2,进一步的,副伸缩组件122包括第二容纳管1221和第三伸缩组件1222,第三伸缩组件1222伸缩收纳于第二容纳管1221,主伸缩组件121通过连接部1211与第二容纳管1221连接,第三伸缩组件1222连接柔性基板11背离发光器件111的一侧。
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可以理解地,第二容纳管1221上设置有容纳空间,第三伸缩组件1222的尺寸小于第二容纳管1221的内壁尺寸,因而第三伸缩组件1222可在第二容纳管1221的容纳空间内进行伸展运动与收缩运动,进而通过控制第三伸缩组件1222进行伸展运动的伸展距离或收缩运动的收缩距离控制柔性基板11弯曲的弧度及形状,且设置第三伸缩组件1222连接柔性基板11,使副伸缩组件122与柔性基板11的连接更加稳定,从而有利于 副伸缩组件122在进行伸缩运动时,柔性面板1形成弯曲的形状。
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可以理解地,第二连接组件1224的形状与大小并不限制,满足第三伸缩组件1222与柔性基板11背离发光器件111的一侧固定,且第三伸缩组件1222在进行伸展运动或收缩运动时,柔性基板11不会与第二伸缩组件1214脱离或分离即可。
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请继续参阅图2,进一步的,第三伸缩组件1222的上设置有弯折部1223,弯折部1223与主伸缩组件121平行,弯折部1223上设置有第二连接组件1224,副伸缩组件122通过连接组件连接柔性基板11背离发光器件111的一侧。
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可以理解地,第三伸缩组件1222设置的弯折部1223的一端与主伸缩组件121平行,因而弯折部1223的一端能与主伸缩组件121一起沿垂直于柔性基板11的方向连接柔性基板11,第三伸缩组件1222可通过第二连接组件1224连接柔性基板11,能避免连接处对柔性基板11的损伤,同时使柔性基板11与多个副伸缩组件122的连接更稳定,从而使支架12与柔性基板11的连接更加牢固。进而提高支架12与柔性基板11的连接的固定效果与稳定性。第二连接组件1224的形状与大小并不限制,满足第三伸缩组件1222与柔性基板11背离发光器件111的一侧固定,且第三伸缩组件1222在进行伸展运动或收缩运动时,柔性基板11不会与第二伸缩组件1214脱离或分离即可。
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请参阅图3,进一步的,主伸缩组件121与多个副伸缩组件122形成伞状结构。具体的,在主伸缩组件121与多个副伸缩组件122形成伞状结构时,能提高支架12对柔性基板11的支撑效果与固定效果。
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请参阅图4,本发明的第二实施例还提供了一种显示装置2,显示装置2包括本发明第一实施例的至少一个柔性面板1,该显示装置2能根据用户需求调整整个显示装置2显示区域展示的内容和弯曲形状,使显示装置2的显示和弯曲程度更加可控。
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请参阅图5,本发明的第三实施例还提供了一种柔性面板的控制系统3,用于控制上述的柔性面板1,柔性面板的控制系统3包括:
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控制器40,用于接收用户的操作指令,根据操作指令输出主控制信号;其中,主控制信号包括发光数据、伸缩数据以及旋转数据;
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微处理器60,与控制器40连接,根据发光数据、伸缩数据以及旋转数据输出对应的驱动信号;
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动力装置80,与微处理器60和柔性面板1连接,接收驱动信号,根据驱动信号驱动柔性面板1进行发光和/或弯曲和/或旋转。
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可以理解地,控制器40包括但不局限于手机APP、遥控器、智能音响、按键等能与微处理器60进行无线连接或有线连接的控制工具,满足用户能在控制器40上操作,下达操作指令,控制器40能响应用户的操作指令,根据操作指令生成主控制信号,并将主控制信号传输至微处理器60即可。
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具体的,用户在控制器40下达的操作指令中,包括但不限于发光指令、伸缩指令、旋转指令,可下达其中任意一个指令,也可下达其中任意两个或三个指令,因而控制器40可根据下达的发光指令和/或伸缩指令和/或旋转指令生成对应的主控制信号,该主控制信号中可包括与发光指令和/或伸缩指令和/或旋转指令对应的发光数据和/或伸缩数据和/或旋转数据,因而微处理器60可根据主控制信号中的发光数据和/或伸缩数据和/或旋转数据生成对应的驱动信号,并将该确定信号传输至动力装置80,使动力装置80根据该驱动信号驱动柔性面板1进行发光和/或弯曲和/或 旋转,从而实现了根据用户需求调整柔性面板1的发光和/或弯曲和/或旋转。
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请参阅图6,进一步的,主控制信号包括发光数据、伸缩数据以及旋转数据;微处理器60包括数据处理模块61,数据处理模块61包括:
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数据整形单元611,与控制器40连接,用于接收主控制信号,将主控制信号中的发光数据、伸缩数据以及旋转数据进行整形,并输出整形后的发光数据、伸缩数据以及旋转数据;
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数据转发单元613,与数据整形单元611连接,用于接收并传输整形后的所述发光数据、伸缩数据以及旋转数据;
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数据锁存单元615,与数据转发单元613连接,用于接收整形后的发光数据、伸缩数据以及旋转数据,将当前的发光数据、伸缩数据以及旋转数据进行锁存,以在接收到下一发光数据、下一伸缩数据以及下一旋转数据之前持续输出当前的发光数据、伸缩数据以及旋转数据。
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可以理解地,数据整形电路可将数字信号转换成模拟信号,防止脉冲传输过程中通常出现畸变,并进行修正,进而提高控制器40与微处理器60之间信号传输的稳定性与准确性。数据转发电路可将整形后的发光数据、伸缩数据以及旋转数据传输给数据锁存单元615,数据锁存单元615可将当前的发光数据、伸缩数据以及旋转数据进行锁存,在未接收到下一发光数据、下一伸缩数据以及下一旋转数据之前,持续输出当前的发光数据、伸缩数据以及旋转数据,从而使微处理器60根据当前的数据生成并输出对应的驱动信号,动力装置80根据该驱动信号驱动柔性面板1进行发光、弯曲以及旋转;数据锁存单元615在接收到下一发光数据、下一伸缩数据以及下一旋转数据时,将当前接收到的发光数据、伸缩数据以及旋转数据锁存并输出,使微处理器60根据当前接收的数据生成并输出对应的驱动信号,动力装置80根据该驱动信号驱动柔性面板1由上一发光、弯曲以及旋转状态变换形成与当前驱动信号对应的发光、弯曲以及旋转状态。
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请参阅图7,进一步的,微处理器60还包括控制模块62,控制模块62包括:
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发光控制单元621,与控制器40和动力装置80连接,用于根据主控制信号生成发光控制信号,并输出发光控制信号至所述动力装置80,使所述柔性面板1上的发光器件111进行发光;
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伸缩控制单元623,与控制器40和动力装置80连接,用于根据主控制信号生成伸缩控制信号,并输出伸缩控制信号至动力装置80,使柔性面板1上的发光器件111进行弯曲;
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旋转控制单元625,与控制器40和动力装置80连接,用于根据主控制信号生成旋转控制信号,并输出旋转控制信号至动力装置80,使柔性面板1上的柔性基板11进行转动。
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可以理解地,微处理器60中还包括控制模块62,该控制模块62中的发光控制单元621、伸缩控制单元623、旋转控制单元625均可识别判断主控制信号中的数据类型,若主控制信号中存在发光数据,发光控制单元621就可识别该发光数据,根据该发光数据生成发光控制信号,该发光控制信号即为驱动信号,并将发光控制信号传输至动力装置80,使动力装置80根据该发光控制信号驱动柔性面板1上的发光器件111进行发光;若主控制信号中存在伸缩数据,伸缩控制单元623就可识别该伸缩数据,根据该伸缩数据生成伸缩控制信号,该伸缩控制信号即为驱动信号,并将伸缩控制信号传输至动力装置80,使动力装置80根据该伸缩控制信号驱 动柔性面板1上支架12的主伸缩组件121和/或副伸缩组件122进行伸缩运动,使柔性基板11弯曲;若主控制信号中存在旋转数据,旋转控制单元625就可识别该旋转数据,根据该旋转数据生成旋转控制信号,该旋转控制信号即为驱动信号,并将旋转控制信号传输至动力装置80,使动力装置80根据该旋转控制信号驱动柔性面板1上支架12进行旋转,使柔性基板11进行旋转。
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可以理解地,该驱动信号可包括发光控制信号、伸缩控制信号以及旋转控制信号中的至少一种,具体的,驱动信号的确定根据用户的需求决定,因而,可以根据用户的需求控制柔性面板1的发光和/或弯曲和/或旋转,更便于用户使用。
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请继续参阅图7,进一步的,动力装置80包括:
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发光驱动电路81,与发光控制单元621和柔性面板1的发光器件111连接,用于接收发光控制信号,根据发光控制信号驱动发光器件111进行发光显示;
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伸缩驱动电路83,与伸缩控制单元623和柔性面板1的主伸缩组件121和多个副伸缩组件122连接,用于接收伸缩控制信号,根据伸缩控制信号驱动主伸缩组件121和多个副伸缩组件122进行伸缩运动;
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旋转驱动电路85,与旋转控制单元625和柔性面板1的旋转装置14连接,用于接收旋转控制信号,根据旋转控制信号驱动旋转节点的对应位置的旋转装置14进行旋转,以带动柔性基板11进行转动。
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可以理解地,动力装置80中的发光驱动电路81、伸缩驱动电路83以及旋转驱动电路85分别与微处理器60中的发光控制单元621、伸缩控制单元623以及旋转控制单元625对应连接时,发光驱动电路81、伸缩驱动电路83以及旋转驱动电路85可分别接收对应的发光控制信号、伸缩控制信号以及旋转控制信号,从而分别驱动发光器件111进行发光、主伸缩组件121和多个副伸缩组件122进行伸展运动或收缩运动,以及旋转装置14进行任意角度的旋转,且发光驱动电路81、伸缩驱动电路83以及旋转驱动电路85独立工作,能避免各个单元进行工作时的相互干扰,提高控制柔性面板1进行发光和/或弯曲和/或旋转的准确性。
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请结合图8-图10,进一步的,主控制信号还包括第一分区数据和第一区域控制数据;
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微处理器60还包括:
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分区模块63,与单个柔性面板1和控制器40连接,用于根据第一分区数据将单个柔性面板1进行分区,以将柔性面板1上的多个发光器件111进行分区形成多个发光区域;
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区域控制模块64,与分区模块63、控制器40、动力装置80连接,用于根据第一区域控制数据生成与多个发光区域对应的区域控制信号,使动力装置80根据区域驱动信号控制柔性面板1的对应区域进行发光和/或弯曲。
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可以理解地,用户可在控制器40上进行单个柔性面板1的分区操作,控制器40可响应用户的分区操作生成包括第一分区数据和第一区域控制数据的主控制信号,微处理器60中的分区模块63可根据第一分区数据将单个柔性面板1进行分区,以将柔性面板1上的多个发光器件111进行分区形成多个发光区域,例如发光区域A1(如图9或图10中所示的A1),发光区域A2(如图9或图10中所示的A2),发光区域A3(如图9或图10中所示的A3)…发光区域An(如图9或图10中所示的An)等,发光区域的面积和形状并不限定,具体的可根据用户的需求设定,或预先设置 分区区域和形状,用户进行分区操作时,分区模块63可调用预先存储的分区区域和形状进行分区。区域控制模块64可根据第一区域控制数据生成与多个发光区域对应的区域控制信号,使动力装置80根据区域驱动信号控制柔性面板1的对应区域进行发光和/或弯曲和/或控制整个柔性面板进行旋转。
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请结合图11和图12,进一步的,主控制信号还包括组合数据和组合控制数据;
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微处理器60还包括:
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组合模块65,与多个柔性面板1和控制器40连接,用于根据组合数据将多个柔性面板1进行组合,形成对应的组合显示面板90;
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组合控制模块66,与组合模块65、控制器40,动力装置80连接,用于根据组合控制数据生成组合控制信号,使动力装置80根据组合控制信号驱动组合显示面板90进行发光和/或弯曲和/或旋转。
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可以理解地,微处理器60还可控制多个柔性面板1,用户可在控制器40上进行多个柔性面板1的组合操作,控制器40可响应用户的组合操作,生成包括组合数据和组合控制数据的主控制信号,微处理器60中的组合模块65可根据组合数据将多个柔性面板1进行组合,形成不同形状且显示区域更广泛的组合显示面板90,组合显示面板90的形状并不限定,具体的可根据用户的需求设定,或预先设置组合形状,用户进行组合操作时,组合模块65可调用预先存储的组合形状将多个柔性面板1进行组合。组合控制模块66可根据组合控制数据生成组合控制信号,使动力装置80根据组合控制信号驱动组合显示面板90进行发光和/或弯曲和/或旋转。
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进一步的,组合控制数据包括多个柔性面板1对应的多个单一控制数据;
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组合控制模块66还用于根据多个单一控制数据生成多个单一控制信号,以使动力装置80根据单一控制信号驱动对应的柔性面板1进行发光和/或弯曲和/或旋转。
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可以理解地,组合控制数据中包括了多个柔性面板1的多个单一控制数据,即一个单一控制数据包块对应的单个柔性面板1的发光数据、伸缩数据以及旋转数据,因此组合控制模块66可根据多个单一控制数据生成对应的多个单一控制信号,使动力装置80根据多个单一控制信号分别对应控制多个柔性面板1的进行发光和/或弯曲和/或旋转,从而提高对每个柔性面板1的控制的独立性,进而提高控制多个柔性面板1的准确性。
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请参阅图13,进一步的,在另一实施方式中,组合控制数据中还包括第二分区数据和第二区域控制数据;
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组合控制模块66还包括:
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分区单元661,与控制器40和组合模块65连接,用于根据组合数据对所述组合显示面板90进行分区,以将组合显示面板90的多个发光器件111进行分区形成多个显示区域;
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分区控制单元663,与分区单元661、控制器40、动力装置80连接,用于根据第二区域控制数据生成与多个显示区域对应的显示区域控制信号,使动力装置80根据显示区域驱动信号控制组合显示面板90的对应显示区域进行发光和/或弯曲。
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可以理解地,多个柔性显示面板组合形成组合显示面板90后,组合控制模块66中的分区单元661可对组合显示面板90进行分区,以将组合显示面板90的多个发光器件111进行分区形成多个显示区域,例如显示区域1,显示区域2,显示区域3…显示区域n等。显示区域的形状和大 小并不限定,具体的可根据用户的需求设定,或预先设置分区区域和形状,分区单元661进行分区时,分区单元661可调用预先存储的分区区域和形状进行分区。分区控制单元663,可根据第二区域控制数据生成与多个显示区域对应的显示区域控制信号,使动力装置80根据显示区域驱动信号控制组合显示面板90的对应显示区域进行发光和/或弯曲和/或控制整个组合显示面板进行旋转。
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请参阅图14,进一步的,控制器40的DOUT1端、DOUT2端、DOUT3端分别与第一发光控制单元621的DIN端、第一伸缩控制单元623的DIN端以及第一旋转控制单元625的DIN端连接;
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前一个发光控制单元621的DOUT端、前一个伸缩控制单元623的DOUT端以及前一个旋转控制单元625的DOUT端分别和下一个发光控制单元621的DIN端、下一个伸缩控制单元623的DIN端以及下一个旋转控制单元625的DIN端连接;
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发光控制单元621的VSS端、伸缩控制单元623的VSS端以及旋转控制单元625VSS端均接电源正极,发光控制单元621的VDD端、伸缩控制单元623的VDD端以及旋转控制单元625VDD端均接电源负极;
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发光控制单元621的W端连接发光驱动电路81,伸缩控制单元623的S端连接伸缩驱动电路83,旋转控制单元625的S端连接旋转驱动电路85。
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可以理解地,控制器40与微处理器60的发光控制单元621、伸缩控制单元623以及旋转控制单元625分别设置有对应的控制芯片、发光控制芯片、伸缩控制芯片以及旋转控制芯片,每个芯片上都包括对应的多个引脚,且发光控制单元621的W端、伸缩控制单元623的S端以及旋转控制单元625的S端分别与
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动力装置80的发光驱动电路81、伸缩驱动电路83以及旋转驱动电路85对应连接时,主控制器40可将主控制信号传输给微处理器60中的多个发光控制单元621、多个伸缩控制单元623以及多个旋转控制单元625,从而发光驱动电路81、伸缩驱动电路83以及旋转驱动电路85可根据对应的发光控制信号、伸缩控制信号以及旋转控制信号驱动柔性面板1进行发光和/或弯曲和/或旋转。
多个发光器件111的连接方式并不限定,可串联连接也可并联连接;多个柔性面板1对应的多个支架12的伸缩驱动电路83可串联连接也可并联连接;多个柔性面板1对应的多个旋转装置14的旋转驱动电路85可串联连接也可并联连接。本实施例中,多个发光器件111的多个发光驱动电路81、多个柔性面板1对应的多个支架12的伸缩驱动电路83以及多个柔性面板1对应的多个旋转装置14的旋转驱动电路85均为并联连接,避免一个驱动电路损坏对其他电路造成影响,提高柔性显示面板的发光和/或弯曲和/或旋转的稳定性。
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请继续参阅图14,进一步的,第一个发光控制单元621的FDIN端、第一个伸缩控制单元623的FDIN端以及第一旋转控制单元625的FDIN端均与对应的第一发光控制单元621的VSS端、第一个伸缩控制单元623的VSS端以及第一个旋转控制单元625的VSS端连接,并接电源正极;
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下一个发光控制单元621的FDIN端、下一个伸缩控制单元623的FDIN端以及下一个旋转控制单元625的FDIN端分别与控制器40的DOUT1端、DOUT2端、DOUT3端连接。
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可以理解地,为防止控制器40与微处理器60传输中断时,造成的数据遗失或错漏或重复等情况,可在微处理器60中的每个发光控制单元 621、每个伸缩控制单元623以及每个旋转控制单元625均设置FDIN端,通过每个发光控制单元621、每个伸缩控制单元623以及每个旋转控制单元625均设置FDIN端分别与控制器40的连接,实现断点续传,提高控制器40与微处理器60数据传输的准确性。
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与现有技术相比,本发明提供的柔性面板、显示装置及柔性面板的控制系统具有以下优点:
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1.本发明的柔性面板,包括柔性基板、若干发光器件,发光器件设置在柔性基板的一侧上,柔性面板内部设有电路,发光器件与电路电性连接。柔性基材可以实现局部区域的调整,例如在边缘处形成过渡弧度,使角度调整更自由,过渡更平顺,提高整体柔性面板的整体显示效果,解决了现有的多个柔性显示板组成形成弯曲,导致弯曲的角度不可调整,且弯曲的弧度不圆滑问题。另外发光器件与柔性面板的电性连接时,可以通过控制柔性面板上的电路以控制柔性基板上若干发光器件进行发光显示,发光器件进行发光显示时与柔性面板的弯曲配合,能使柔性显示面板的显示更立体生动。
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2、本发明的柔性面板,还包括支架和固定板;柔性基板背离发光器件的一侧与支架的一端连接;支架上设置有旋转节点、主伸缩组件以及多个副伸缩组件,旋转节点的对应位置设置有旋转装置,主伸缩组件上设置有连接部,主伸缩组件的一端通过连接部与多个副伸缩组件的一端连接,并连接柔性基板背离发光器件的一侧,主伸缩组件的另一端通过旋转装置与固定板连接。通过设置包括主伸缩组件、多个副伸缩组件的支架及位于旋转节点的旋转装置,并将支架设置在柔性基板背离发光器件的一侧设置,通过控制主伸缩组件及多个副伸缩组件的进行伸缩运动,从而控制柔性基板向外突出弯曲的弧度或向内凹陷弯曲的弧度,弯曲的弧度相较于多个面板组合形成的弯曲更加圆滑,并通过旋转装置使柔性基板进行在平面内进行旋转,并通过控制发光器件的发光,从而实现根据用户需求调整整个柔性面板展示的内容和弯曲形状。
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3、本发明的旋转节点包括第一旋转节点和第二旋转节点,第二旋转节点位于连接部与固定板之间;旋转装置包括分别与第一旋转节点和第二旋转节点的位置对应的第一旋转装置和第二旋转装置,主伸缩组件通过第一旋转装置与固定板连接于第一旋转节点。通过在第一旋转节点和第二旋转节点的对应位置设置第一旋转装置与第二旋转装置,实现了支架的旋转及多个副伸缩杆的旋转,从而实现了柔性面板的旋转。
[根据细则26改正 19.12.2022]
4、本发明的主伸缩组件包括第一容纳管和第一伸缩组件,第一伸缩组件伸缩收纳于第一容纳管,第一容纳管通过第一旋转装置与固定板连接于第一旋转节点。主伸缩组件的包括第二伸缩组件,第二伸缩组件伸缩收纳于第一伸缩组件,连接部与第二旋转节点均位于第一伸缩组件上,且第二旋转节点位于连接部远离柔性基板的一侧;主伸缩组件沿伸展方向依次经过容纳管、一级伸缩组件、第二旋转装置、连接部以及第二伸缩组件,第二伸缩组件连接柔性基板背离发光器件的一侧。通过在主伸缩组件上设置第一伸缩组件与第二伸缩组件,能使支架的伸缩更加灵活,从而使柔性基板弯曲更可控。另外,可通过控制第二伸缩组件的伸展或收缩运动,可实现柔性面板向外突出弯曲或向内凹陷弯曲。
[根据细则26改正 19.12.2022]
5、本发明的第二伸缩组件上设置有第一连接组件,第二伸缩组件通过第一连接组件连接柔性基板背离发光器件的一侧。通过第一连接组件连接柔性板能避免连接处对柔性面板的损伤,同时使柔性基板与主伸缩组件的连接更稳定。
[根据细则26改正 19.12.2022]
6、本发明的副伸缩组件包括第二容纳管和第三伸缩组件,第三伸缩组件伸缩收纳于第二容纳管,主伸缩组件通过连接部与第二容纳管连接,第三伸缩组件连接柔性基板背离发光器件的一侧。通过设置第三伸缩组件连接柔性基板,使副伸缩组件与柔性基板的连接更加稳定,从而有利于副伸缩组件在进行伸缩运动时,柔性面板形成弯曲形状。
[根据细则26改正 19.12.2022]
7、本发明的第三伸缩组件的上设置有弯折部,弯折部与主伸缩组件平行,弯折部上设置有第二连接组件,第三伸缩组件通过第二连接组件连接柔性基板背离发光器件的一侧,通过设置弯折部,并在弯折部上设置第二连接组件,使弯折部与主伸缩组件平行,第三伸缩组件能通过第二连接组件与主伸缩组件一起沿垂直于柔性基板的方向连接柔性基板,从而使支架与柔性基板的连接更加牢固和稳定。
[根据细则26改正 19.12.2022]
8、本发明的主伸缩组件与多个副伸缩组件形成伞状结构。通过设置主伸缩组件与多个副伸缩组件形成伞状结构,提高支架对柔性基板的支撑效果与固定效果。
[根据细则26改正 19.12.2022]
9、本发明还提供一种显示装置,具有与上述柔性面板相同的有益效果,在此不做赘述。
[根据细则26改正 19.12.2022]
10、本发明还提供一种柔性面板的控制系统,用于控制如上所述的柔性面板,具有与上述柔性面板相同的有益效果,在此不做赘述。
[根据细则26改正 19.12.2022]
以上对本发明实施例公开的一种柔性面板、显示装置、柔性面板的控制系统进行了详细介绍,本文中应用了具体个例对本发明的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本发明的方法及其核心思想;同时,对于本领域的一般技术人员,依据本发明的思想,在具体实施方式及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本发明的限制,凡在本发明的原则之内所作的任何修改,等同替换和改进等均应包含本发明的保护范围之内。

Claims (20)

  1. [根据细则26改正 19.12.2022]
    一种柔性面板,其特征在于:包括柔性基板、若干发光器件,所述发光器件设置在所述柔性基板的一侧上,所述柔性面板内部设有电路,所述发光器件与所述电路电性连接。
  2. [根据细则26改正 19.12.2022]
    如权利要求1所述的柔性面板,其特征在于:所述柔性面板还包括支架和固定板;
    [根据细则26改正 19.12.2022]
    所述柔性基板背离所述发光器件的一侧与所述支架的一端连接;
    [根据细则26改正 19.12.2022]
    所述支架上设置有旋转节点、主伸缩组件以及多个副伸缩组件,所述旋转节点的对应位置设置有旋转装置,所述主伸缩组件上设置有连接部,所述主伸缩组件的一端通过所述连接部与多个所述副伸缩组件的一端连接,并连接所述柔性基板背离所述发光器件的一侧,所述主伸缩组件的另一端通过所述旋转装置与所述固定板连接。
  3. [根据细则26改正 19.12.2022]
    如权利要求2所述的柔性面板,其特征在于:所述旋转节点包括第一旋转节点和第二旋转节点,所述第二旋转节点位于所述连接部与所述固定板之间;
    [根据细则26改正 19.12.2022]
    所述旋转装置包括分别与所述第一旋转节点和所述第二旋转节点的位置对应的第一旋转装置与第二旋转装置,所述主伸缩组件通过所述第一旋转装置与所述固定板连接于所述第一旋转节点。
  4. [根据细则26改正 19.12.2022]
    如权利要求3所述的柔性面板,其特征在于:所述主伸缩组件包括第一容纳管和第一伸缩组件,所述第一伸缩组件伸缩收纳于所述容纳管,所述容纳管通过所述第一旋转装置与所述固定板连接于所述第一旋转节点。
  5. [根据细则26改正 19.12.2022]
    如权利要求4所述的柔性面板,其特征在于:所述主伸缩组件的包括第二伸缩组件,所述第二伸缩组件伸缩收纳于所述第一伸缩组件,所述连接部与所述第二旋转节点均位于所述第一伸缩组件上,且所述第二旋转节点位于所述连接部远离所述柔性基板的一侧;
    [根据细则26改正 19.12.2022]
    所述主伸缩组件沿伸展方向依次经过所述容纳管、所述一级伸缩组件、所述第二旋转装置、所述连接部以及所述第二伸缩组件,所述第二伸缩组件连接所述柔性基板背离所述发光器件的一侧。
  6. [根据细则26改正 19.12.2022]
    如权利要求5所述的柔性面板,其特征在于:所述第二伸缩组件上设置有第一连接组件,所述第二伸缩组件通过所述第一连接组件连接所述柔性基板背离所述发光器件的一侧。
  7. [根据细则26改正 19.12.2022]
    如权利要求2所述的柔性面板,其特征在于:所述副伸缩组件包括第二容纳管和第三伸缩组件,所述第三伸缩组件伸缩收纳于所述第二容纳管,所述主伸缩组件通过所述连接部与所述第二容纳管连接,所述第三伸缩组件连接所述柔性基板背离所述发光器件的一侧。
  8. [根据细则26改正 19.12.2022]
    如权利要求7所述的柔性面板,其特征在于:所述第三伸缩组件的上设置有弯折部,所述弯折部与所述主伸缩组件平行。所述弯折部上设置有第二连接组件,所述第三伸缩组件通过所述连接组件连接所述柔性基板背离所述发光器件的一侧。
  9. [根据细则26改正 19.12.2022]
    如权利要求2所述的柔性面板,其特征在于:所述主伸缩组件与多个所述副伸缩组件形成伞状结构。
  10. [根据细则26改正 19.12.2022]
    一种显示装置,其特征在于:所述显示装置包括如权利要求1所述的柔性面板。
  11. [根据细则26改正 19.12.2022]
    一种柔性面板的控制系统,用于控制如权利要求2所述的柔性面板,其特征在于:所述控制系统包括:控制器,用于接收用户的操作指令,根据操作指令输出主控制信号;其中,所述主控制信号包括发光数据、伸 缩数据以及旋转数据;
    [根据细则26改正 19.12.2022]
    微处理器,与所述控制器连接,根据所述发光数据、伸缩数据以及旋转数据输出对应的驱动信号;
    [根据细则26改正 19.12.2022]
    动力装置,与所述微处理器和所述柔性面板连接,接收所述驱动信号,根据所述驱动信号驱动所述柔性面板进行发光和/或弯曲和/或旋转。
  12. [根据细则26改正 19.12.2022]
    如权利要求11所述的柔性面板的控制系统,其特征在于:所述微处理器还包括:数据处理模块,所述数据处理模块包括:
    [根据细则26改正 19.12.2022]
    数据整形单元,与所述控制器连接,用于接收所述主控制信号,将所述主控制信号中的所述发光数据、伸缩数据以及旋转数据进行整形,并输出整形后的发光数据、伸缩数据以及旋转数据;
    [根据细则26改正 19.12.2022]
    数据转发单元,与所述数据整形单元连接,用于接收并传输所述整形后的所述发光数据、伸缩数据以及旋转数据;
    [根据细则26改正 19.12.2022]
    数据锁存单元,与所述数据转发单元连接,用于接收所述整形后的所述发光数据、所述伸缩数据以及所述旋转数据,将当前的所述发光数据、所述伸缩数据以及所述旋转数据进行锁存,以在接收到下一发光数据、下一伸缩数据以及下一旋转数据之前持续输出当前的所述发光数据、所述伸缩数据以及所述旋转数据。
  13. [根据细则26改正 19.12.2022]
    如权利要求11所述的柔性面板的控制系统,其特征在于:所述微处理器还包括控制模块,所述控制模块包括:
    [根据细则26改正 19.12.2022]
    发光控制单元,与所述控制器和所述动力装置连接,用于根据所述主控制信号生成发光控制信号,并输出发光控制信号至所述动力装置,使所述柔性面板上的发光器件进行发光;
    [根据细则26改正 19.12.2022]
    伸缩控制单元,与所述控制器和所述动力装置连接,用于根据所述主控制信号生成伸缩控制信号,并输出伸缩控制信号至所述动力装置,使所述柔性面板上的发光器件进行弯曲;
    [根据细则26改正 19.12.2022]
    旋转控制单元,与所述控制器和所述动力装置连接,用于根据所述主控制信号生成旋转控制信号,并输出旋转控制信号至所述动力装置,使所述柔性面板上的柔性基板进行转动。
  14. [根据细则26改正 19.12.2022]
    如权利要求13所述的柔性面板的控制系统,其特征在于:所述动力装置包括:
    [根据细则26改正 19.12.2022]
    发光驱动电路,与所述发光控制单元和所述柔性面板的发光器件连接,用于接收所述发光控制信号,根据发光控制信号驱动发光器件进行发光显示;
    [根据细则26改正 19.12.2022]
    伸缩驱动电路,与所述伸缩控制单元和所述柔性面板的主伸缩组件和多个副伸缩组件连接,用于接收所述伸缩控制信号,根据所述伸缩控制信号驱动所述主伸缩组件和多个所述副伸缩组件进行伸缩运动;
    [根据细则26改正 19.12.2022]
    旋转驱动电路,与所述旋转控制单元和所述柔性面板的旋转装置连接,用于接收所述旋转控制信号,根据所述旋转控制信号驱动旋转节点的对应位置的旋转装置进行旋转,以带动柔性基板进行转动。
  15. [根据细则26改正 19.12.2022]
    如权利要求11所述的柔性面板的控制系统,其特征在于:所述主控制信号还包括第一分区数据和第一区域控制数据;
    [根据细则26改正 19.12.2022]
    所述微处理器还包括:
    [根据细则26改正 19.12.2022]
    分区模块,与单个所述柔性面板和所述控制器连接,用于根据所述第一分区数据将所述单个柔性面板进行分区,以将所述柔性面板上的多个发光器件进行分区形成多个发光区域;
    [根据细则26改正 19.12.2022]
    区域控制模块,与所述分区模块、所述控制器、动力装置连接,用于根据所述第一区域控制数据生成与多个所述发光区域对应的区域控制 信号,使所述动力装置根据所述区域驱动信号控制柔性面板的对应区域进行发光和/或弯曲。
  16. [根据细则26改正 19.12.2022]
    如权利要求11所述的柔性面板的控制系统,其特征在于:所述主控制信号还包括组合数据和组合控制数据;
    [根据细则26改正 19.12.2022]
    所述微处理器还包括:
    [根据细则26改正 19.12.2022]
    组合模块,与多个所述柔性面板和所述控制器连接,用于根据所述组合数据将所述多个柔性面板进行组合,形成对应的组合显示面板;
    [根据细则26改正 19.12.2022]
    组合控制模块,与所述组合模块、所述控制器,所述动力装置连接,用于根据所述组合控制数据生成组合控制信号,使所述动力装置根据所述组合控制信号驱动所述组合显示面板进行发光和/或弯曲和/旋转。
  17. [根据细则26改正 19.12.2022]
    如权利要求16所述的柔性面板的控制系统,其特征在于:所述组合控制数据包括多个所述柔性面板对应的单一控制数据;
    [根据细则26改正 19.12.2022]
    所述组合控制模块还用于根据多个所述单一控制数据生成多个单一控制信号,以使所述动力装置根据所述单一控制信号驱动对应的所述柔性面板进行发光和/或弯曲和/或旋转。
  18. [根据细则26改正 19.12.2022]
    如权利要求16所述的柔性面板的控制系统,其特征在于:所述组合控制数据中还包括第二分区数据和第二区域控制数据;
    [根据细则26改正 19.12.2022]
    所述组合控制模块还包括:
    [根据细则26改正 19.12.2022]
    分区单元,与所述控制器和所述组合模块连接,用于根据所述组合数据对所述组合显示面板进行分区,以将所述组合显示面板的多个发光器件进行分区形成多个显示区域
    [根据细则26改正 19.12.2022]
    分区控制单元,与所述分区单元、所述控制器、所述动力装置连接,用于根据所述第二区域控制数据生成与多个所述显示区域对应的显示区域控制信号,使所述动力装置根据所述显示区域驱动信号控制所述组合显示面板的对应所述显示区域进行发光和/或弯曲。
  19. [根据细则26改正 19.12.2022]
    如权利要求14所述的柔性面板的控制系统,其特征在于:
    [根据细则26改正 19.12.2022]
    所述控制器的DOUT1端、DOUT2端、DOUT3端分别与第一发光控制单元的DIN端、第一伸缩控制单元的DIN端以及第一旋转控制单元的DIN端连接;
    [根据细则26改正 19.12.2022]
    前一个发光控制单元的DOUT端、前一个伸缩控制单元的DOUT端以及前一个旋转控制单元的DOUT端分别和下一个发光控制单元的DIN端、下一个伸缩控制单元的DIN端以及下一个旋转控制单元的DIN端连接;
    [根据细则26改正 19.12.2022]
    所述发光控制单元的VSS端、所述伸缩控制单元的VSS端以及所述旋转控制单元VSS端均接电源正极,所述发光控制单元的VDD端、所述伸缩控制单元的VDD端以及所述旋转控制单元VDD端均接电源负极;
    [根据细则26改正 19.12.2022]
    所述发光控制单元的W端连接所述发光驱动电路,所述伸缩控制单元的S端连接所述伸缩驱动电路,所述旋转控制单元的S端连接所述旋转驱动电路。
  20. [根据细则26改正 19.12.2022]
    如权利要求19所述的柔性面板的控制系统,其特征在于:所述第一个发光控制单元的FDIN端、所述第一个伸缩控制单元的FDIN端以及所述第一旋转控制单元的FDIN端均与对应的所述第一发光控制单元的VSS端、所述第一个伸缩控制单元的VSS端以及所述第一个旋转控制单元的VSS端连接,并接电源正极;
    [根据细则26改正 19.12.2022]
    所述下一个发光控制单元的FDIN端、所述下一个伸缩控制单元的FDIN端以及所述下一个旋转控制单元的FDIN端分别与所述控制器的DOUT1端、DOUT2端、DOUT3端连接。
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