WO2020056882A1 - 有机发光二极管显示屏、显示控制方法和电子设备 - Google Patents
有机发光二极管显示屏、显示控制方法和电子设备 Download PDFInfo
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- WO2020056882A1 WO2020056882A1 PCT/CN2018/114193 CN2018114193W WO2020056882A1 WO 2020056882 A1 WO2020056882 A1 WO 2020056882A1 CN 2018114193 W CN2018114193 W CN 2018114193W WO 2020056882 A1 WO2020056882 A1 WO 2020056882A1
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- G09G3/20—Control 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
- G09G3/22—Control 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
- G09G3/30—Control 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
- G09G3/32—Control 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 semiconductive, e.g. using light-emitting diodes [LED]
- G09G3/3208—Control 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 semiconductive, e.g. using light-emitting diodes [LED] organic, e.g. using organic light-emitting diodes [OLED]
- G09G3/3225—Control 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 semiconductive, e.g. using light-emitting diodes [LED] organic, e.g. using organic light-emitting diodes [OLED] using an active matrix
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- G09G3/22—Control 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
- G09G3/30—Control 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
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- G09G3/3208—Control 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 semiconductive, e.g. using light-emitting diodes [LED] organic, e.g. using organic light-emitting diodes [OLED]
- G09G3/3216—Control 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 semiconductive, e.g. using light-emitting diodes [LED] organic, e.g. using organic light-emitting diodes [OLED] using a passive matrix
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- G09G3/30—Control 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
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- G09G3/32—Control 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 semiconductive, e.g. using light-emitting diodes [LED]
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- G09G3/3275—Details of drivers for data electrodes
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- H—ELECTRICITY
- H10—SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
- H10K—ORGANIC ELECTRIC SOLID-STATE DEVICES
- H10K59/00—Integrated devices, or assemblies of multiple devices, comprising at least one organic light-emitting element covered by group H10K50/00
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Definitions
- the present disclosure relates to the field of display devices, and in particular, to an organic light emitting diode display screen, a display control method, and an electronic device.
- the present disclosure provides an organic light emitting diode display screen, a display control method, and an electronic device that can conveniently implement a full screen.
- an organic light emitting diode display screen includes a first area and a second area.
- the first area is provided with a plurality of first light emitting components.
- a plurality of second light emitting components are provided in the two areas;
- the display screen further includes a driving element group electrically connected to the first light emitting component and the second light emitting component to drive the first light emitting component and the second light emitting component to emit light;
- the driving element group is disposed in a region other than the second region on the display screen, and is disposed in at least the first region.
- the driving element group is disposed in the first region, or is disposed in the first region and an interval region between the first region and the second region.
- the driving element group includes:
- At least one first driving element which is disposed in the first region and is only electrically connected to the corresponding first light emitting component to drive the connected first light emitting component to emit light;
- At least one second driving element is disposed in the first region and is electrically connected to the corresponding first light emitting component and the second light emitting component, respectively, to drive the connected first light emitting component and the second light emitting component to emit light.
- the driving element group includes:
- a plurality of first driving elements which are disposed in the first region and are electrically connected in a one-to-one correspondence with each of the first light emitting components to drive the connected first light emitting components to emit light;
- At least one second driving element is disposed in the first region and / or the interval region, and is electrically connected to only the corresponding second light emitting component to drive the connected second light emitting component to emit light.
- the second driving element is electrically connected to the corresponding second light emitting component through a conductive medium.
- each second light emitting component in the second region is connected to the same second driving element.
- each second light-emitting component in the second area is divided into multiple groups, and each group includes at least one second light-emitting component;
- the second light-emitting components in the same group are connected to the same second driving element, and the second light-emitting components in different groups are connected to different second driving elements.
- each of the first driving element and the second driving element includes a plurality of driving units, and each of the first light emitting component and the second light emitting component includes a plurality of light emitting elements of different colors, respectively. unit;
- Each of the driving units in the first driving element is connected to the light-emitting units in the first light-emitting component to which the first driving element is connected in a one-to-one correspondence
- Each of the driving units in the second driving element is connected one-to-one with each of the light-emitting units in the second light-emitting component, and when the second driving element is connected to the first light-emitting component, the second Each of the driving units in the driving element is correspondingly connected one-to-one with each of the light-emitting units in the first light-emitting component, and the light-emitting units connected to the same driving unit have the same light emission color.
- the second light emitting components in the same row in the second area are located in the same group, and each group includes at least one row of the second light emitting component.
- the second light-emitting components in the same column in the second region are located in the same group, and each group includes at least one column of the second light-emitting component.
- a second driving element connected to each second light-emitting component of each group is located at an edge of the first region adjacent to the group.
- the second light emitting component in each row in the second area is divided into a first group and a second group adjacent to the first group;
- a second light emitting component in the first group is connected to a second driving element adjacent to the first group in the row;
- a second light-emitting component in the second group is connected to a second driving element adjacent to the second group in the row.
- the second light emitting component in each column in the second area is divided into a third group and a fourth group adjacent to the third group;
- a second light-emitting component in the third group is connected to a second driving element adjacent to the third group in the column;
- the second light-emitting component in the fourth group is connected to the second driving element in the column adjacent to the fourth group.
- the second light-emitting components located in the same group are disposed adjacent to each other.
- the conductive medium is made of a transparent conductive material.
- the conductive medium includes a metal wire or a conductive adhesive layer.
- the light emitting unit includes a light emitting diode.
- a display control method applied to an organic light emitting diode display screen including a first region, a second region, and a driving element group, the first region Including a plurality of first light-emitting components, the second area including a plurality of second light-emitting components, and the driving element group is disposed at a position other than the second area on the display screen, and is disposed at least in the first area Within an area; and the method includes:
- the first light emitting component and the second light emitting component are driven to emit light by using the driving element group.
- an electronic device including the organic light emitting diode display screen according to the first aspect.
- a camera component is further provided in the second area.
- a driving element is not provided in a part of the display area of the display screen, and the driving light is realized by the electrical connection of the driving elements provided in other areas, so that the partial area can be rendered transparent.
- a camera and the like are provided.
- the functional component can be directly set in the transparent state area, and there is no need to slot the functional component or leave other positions, which facilitates the comprehensive screen design of the display screen.
- FIG. 1 illustrates a structural diagram of an OLED display according to an embodiment of the present disclosure.
- FIG. 2 illustrates a driving cross-sectional structure diagram of an OLED display according to an embodiment of the present disclosure.
- FIG. 3 is a schematic structural diagram of a driving element group of an OLED display screen according to an embodiment of the present disclosure.
- FIG. 4 is another schematic structural diagram of a driving element group of an OLED display screen according to an embodiment of the present disclosure.
- FIG. 5 is another schematic structural diagram of a driving element group of an OLED display screen according to an embodiment of the present disclosure.
- FIG. 6 is a schematic diagram illustrating a connection relationship between a light emitting unit and a driving unit in an OLED display according to an embodiment of the present disclosure.
- FIG. 7 is a schematic diagram of a circuit structure of a driving unit in a driving element in an OLED display screen according to an embodiment of the present disclosure.
- FIG. 8 is a schematic diagram illustrating a connection relationship between a second light emitting component and a second driving element in an OLED display according to an embodiment of the present disclosure.
- FIG. 9 is a schematic diagram illustrating a connection relationship between a second light emitting component and a second driving element in an OLED display screen according to some other embodiments of the present disclosure.
- FIG. 10 is a schematic diagram illustrating a connection relationship between a second light emitting component and a second driving element in an OLED display screen according to some other embodiments of the present disclosure.
- FIG. 11 is a schematic diagram illustrating a connection relationship between a second light emitting component and a second driving element in an OLED display screen according to other embodiments of the present disclosure.
- FIG. 12 is a schematic diagram illustrating a connection relationship between a second light-emitting component and a second driving element in an OLED display screen according to other embodiments of the present disclosure.
- FIG. 13 is a schematic diagram illustrating a connection relationship between a second light emitting component and a second driving element in an OLED display screen according to other embodiments of the present disclosure.
- FIG. 14 is a schematic diagram illustrating a connection relationship between a second light emitting component and a second driving element in an OLED display according to other embodiments of the present disclosure.
- FIG. 15 illustrates a flowchart of a display control method according to an embodiment of the present disclosure.
- FIG. 16 illustrates a block diagram of an electronic device according to an embodiment of the present disclosure.
- FIG. 1 illustrates a structural diagram of an OLED display according to an embodiment of the present disclosure.
- the organic light emitting diode (OLED) display in the embodiments of the present disclosure can be applied to any electronic device having a display function, such as a mobile phone, a computer, a video player, a television, a smart bracelet, a smart watch, etc., as long as it has a display
- the functional electronic devices can all apply the OLED display screen provided by the embodiments of the present disclosure, which is not specifically limited in the present disclosure.
- the OLED display of the embodiment of the present disclosure can realize driving light by not providing driving elements in a part of the display area and electrically connecting with driving elements in other areas, so that some areas can be transparent, and functions such as a camera can be provided.
- the functional component can be directly set in the transparent state area, and there is no need to slot the functional component or leave other positions, which facilitates the comprehensive screen design of the display screen.
- an organic light emitting diode (OLED) display screen may include a first region 10 and a second region 20, where each of the first region 10 and the second region 20 may be provided with a plurality of light emitting components.
- These light-emitting components can constitute each pixel of the OLED display, and the multiple light-emitting components can be arranged in the form of multiple rows and columns. By performing display drive control on each pixel, different colors and images can be presented on the display. Wait.
- the arrangement manner of the light-emitting components is not limited in the embodiments of the present disclosure, and can be implemented by the prior art means.
- the light-emitting component provided in the first region 10 is referred to as a first light-emitting component 11, and the light-emitting component provided in the second region 20 is referred to as a second light-emitting component 21.
- the first region 10 includes at least one first light-emitting component 11 and the second region includes at least one second light-emitting component 21 (as shown in FIG. 2).
- Each light-emitting component of the embodiment of the present disclosure may include at least one light-emitting unit.
- the light-emitting units in each light-emitting component may have the same light-emitting color, or may have different light-emitting colors, or the light-emitting colors of some light-emitting units are the same.
- Each light-emitting unit may include at least one light-emitting diode, and the light-emitting color of the corresponding light-emitting unit may be determined according to the material of the light-emitting diode, so that each light-emitting unit is driven and controlled, that is, the light-emitting control of the entire light-emitting component may be achieved.
- FIG. 2 illustrates a driving cross-sectional structure diagram of an OLED display according to an embodiment of the present disclosure.
- the light emitting components in the first area 10 and the second area 20 can be driven to emit light according to the received electrical signals. For example, when the received voltage is greater than the voltage threshold or the received current is greater than the current threshold, the light emitting component can be driven. Glow.
- the driving element group 30 may be disposed on a region other than the second region 20.
- the driving element group 30 may be disposed in the first region, or may be disposed in the first region and the first region and the second region. In the interval of the area.
- the driving element group 30 may be used to drive the first light emitting component 11 and the second light emitting component 21 to emit light.
- the driving element group of the embodiment of the present disclosure may be located in a TFT (thin film transistor) substrate of the display screen, constitute a display driving circuit of the OLED display screen, and be configured to perform the first light emission in the first region according to the received display control signal.
- the driving control of the component 11 and the second light-emitting component 21 in the second region are included in the circuit structure of the driving element group 30, those skilled in the art can select an appropriate circuit structure to perform the above-mentioned driving control according to requirements.
- the embodiments of the present disclosure do not address this. Limitation.
- each light-emitting component in the first region 10 and the second region 20 may be located in the light-emitting layer A, and a driving layer B may be provided below the light-emitting layer A to drive
- the element group 30 is disposed in the driving layer B, but the driving element B is not provided at the position of the driving layer B corresponding to the second region 20, but the driving layer B of the second region may be composed of a substrate made of transparent material,
- the driving layers of the regions are flush to ensure the flatness of the first region and the second region.
- an insulation layer, a buffer layer, and the like may be provided between the driving layer and the light emitting layer to avoid the influence on the light emitting layer.
- the insulating layer may include any insulating material, which is not limited in the embodiments of the present disclosure.
- the driving element group when the driving element group is electrically connected to the second light-emitting component, the driving element group may be electrically connected through a conductive medium (not shown in the figure).
- the conductive medium may include a metal wire or a conductive adhesive layer, or In other embodiments of the present disclosure, the conductive medium may also be any conductive body.
- the driving signal of the driving element group 30 can be transmitted to the second light-emitting component 21, it can be used as the conductive medium of the embodiment of the present disclosure. Based on this, since no driving element group may be provided in the second region 20 in the embodiment of the present disclosure, the second region 20 in the display screen may be in a transparent state.
- the conductive medium that can be used in the embodiment of the present disclosure may be made of a transparent conductive material, thereby reducing the influence of the conductive medium on the transparency.
- the transparent conductive material may be a transparent conductive adhesive layer, or a transparent electrode, which is not limited in the embodiments of the present disclosure.
- the second region 20 may have light transmittance and may be in a transparent state.
- Functional components such as a camera can be set under the light-emitting component in the second area, without the need to provide empty slots for these functional components. Therefore, it is possible to conveniently implement a full-screen design, while reducing the complicated processes caused by opening holes and the like.
- FIG. 3 is a schematic structural diagram of a driving element group of an OLED display screen according to an embodiment of the present disclosure.
- the driving element group 30 may include a plurality of first driving elements 31 and at least one second driving element 32, wherein the first driving element 31 and the second driving element 32 are both disposed at Within the first area 10.
- the first driving element 31 is only electrically connected to the corresponding first light emitting component 11 to drive the connected first light emitting component 11 to emit light; the second driving element is corresponding to the first light emitting component 11 and the second light emitting component.
- each first driving element 31 may be electrically connected to only the first light emitting component 11, and each second light emitting component 32 may be electrically connected to the first light emitting component 11 and the second light emitting component 21, respectively.
- each first driving element 31 may be used to drive only one first light emitting component 11, and the second driving element 32 may also be used to drive only one first light emitting component 11 and simultaneously drive at least one second light emitting component 21.
- FIG. 4 and FIG. 5 respectively illustrate another structural schematic diagram of a driving element group of an OLED display screen according to an embodiment of the present disclosure.
- a driving element for driving the second light-emitting component may be separately provided in a region other than the second region. As shown in FIG.
- the driving element group 30 may include a plurality of first The driving element 31 and at least one second driving element 32, wherein the first driving element 31 is disposed in a first region, and the second driving element 32 is disposed in a spaced region between the first region and the second region, and the first The driving elements 31 are electrically connected in a one-to-one correspondence with each of the first light emitting components 11 to drive the connected first light emitting components 11 to emit light; the second driving element 32 is only electrically connected to the second light emitting components 21 to drive the connected The second light-emitting component 21 emits light, and the second driving element 32 may be multiple, which is not limited in the embodiment of the present disclosure. Wherein, the electrical connection between the second light-emitting component and the respective second driving element 32 can be achieved through a conductive medium, respectively.
- the driving element group 30 may include a plurality of first driving elements 31 and at least one second driving element 32, wherein the first driving element 31 and the second driving element 32 are disposed in the first area, and the first driving element 31 is electrically connected to each of the first light emitting components 11 in a one-to-one manner to drive the connected first light emitting component 11 to emit light; the second driving element 32 is only The second light-emitting component 21 is electrically connected to drive the connected second light-emitting component 21 to emit light.
- There may be a plurality of second driving elements 32 which is not limited in the embodiment of the present disclosure. Wherein, the electrical connection between the second light-emitting component and the respective second driving element 32 can be achieved through a conductive medium, respectively.
- a corresponding first driving element can be provided for each first light-emitting component in the first area, and a space between the first area and the second area can also be provided with a second driving for driving the second light-emitting component.
- the element can be controlled independently of the light emitting form of each first light emitting component in the first area, and the second light emitting component in the second area can be controlled independently.
- the driving element group 30 may include a plurality of first driving elements 31 and at least one second driving element 32, wherein the first driving element 31 may be disposed in the first region, and each Each of the first driving elements may be electrically connected to the corresponding first light-emitting component 11, while the second driving element 32 may be disposed in the first region and the space region at the same time, and the second driving element may be connected to only the second light-emitting component, or the second
- the driving element may also be connected to the first light emitting component and the second light emitting component, which are not specifically limited in the embodiments of the present disclosure.
- the arrangement manner of the second driving element in the embodiment of the present disclosure may be any combination of the above embodiments.
- the second light-emitting components 21 in the second region 20 may all be driven by one driving element 32, that is, each second light-emitting component 21 in the second region 20 may be connected to the same second driving element 32.
- the second driving element may be disposed in the first region or the interval region.
- the driving element (the first driving element and the second driving element) in the embodiment of the present disclosure may include a plurality of driving units.
- the number may correspond to the number of light-emitting units in the light-emitting component, that is, each driving unit may correspond to one light-emitting unit, so that the driving control of the light-emitting unit is achieved by the corresponding driving unit.
- the light-emitting components may have light-emitting units of different light-emitting colors, so each driving unit may correspond to a light-emitting unit of a different light-emitting color, so that the driving units are correspondingly connected to the light-emitting units of the corresponding light-emitting color.
- each of the driving units in the first driving element 31 in the embodiment of the present disclosure is in one-to-one correspondence with the light-emitting units in the first light-emitting component to which the first driving element is connected, and the second driving Each of the driving units in the element is correspondingly connected to each of the light-emitting units in the second light-emitting component, and when the second driving element is also connected to the first light-emitting component, the Each of the driving units is connected to each of the light-emitting units in the first light-emitting component in a one-to-one correspondence, and the light-emitting units connected to the same driving unit have the same light emission color.
- FIG. 6 is a schematic diagram illustrating a connection relationship between a light emitting unit and a driving unit in an OLED display according to an embodiment of the present disclosure.
- the first light emitting component and the second light emitting component may include three light emitting units, and the three light emitting units may be R light emitting units, G light emitting units, and B light emitting units.
- the first driving element may include three light emitting units.
- the driving unit, the three driving units are respectively connected to the three light-emitting units, and the second driving element may also include three driving units, and the three driving units may also correspond to the three light-emitting units, respectively. It is connected so that the light emitting state or light emitting intensity of each light emitting unit can be controlled separately.
- the three driving units may be connected to the three light-emitting units of the first light-emitting component in a one-to-one correspondence, and connected to the light-emitting units of the same color.
- the drive units are the same. That is, if one driving unit is connected to the R light-emitting unit in the first light-emitting component, it is also electrically connected to the R light-emitting unit in the second light-emitting component at the same time.
- one driving unit is connected to the G light-emitting unit in the first light-emitting component, , It is also electrically connected to the G light-emitting unit in the second light-emitting component at the same time. If a driving unit is connected to the B light-emitting unit in the first light-emitting component, it is also electrically connected to the B light-emitting unit in the second light-emitting component at the same time. , So as to achieve the simultaneous control of light emitting units of the same color.
- the second driving element may be connected to only the second light emitting component, that is, each driving unit in the second driving element may be electrically connected to each light emitting unit in the second light emitting component separately.
- each light-emitting unit is driven to realize separate control of the second light-emitting component.
- the embodiments of the present disclosure do not provide one-by-one examples for this, as long as the control of the corresponding light-emitting unit can be performed by using different driving units, it can be used as an embodiment of the present disclosure.
- the numbers of the driving units and the light emitting units may be set according to requirements, and are not limited herein.
- FIG. 7 illustrates a schematic circuit structure of a driving unit in a driving element in an OLED display screen according to an embodiment of the present disclosure.
- the circuit structure of each driving unit in the driving element in the embodiment of the present disclosure may be as shown in FIG. 7.
- the circuit structures of the driving units in the first driving element 31 and the second driving element 32 may be the same or different, and the circuit structures of the driving units in the embodiments of the present disclosure may also be other forms of circuit structures. That is, the circuit structure of the driving unit according to the embodiment of the present disclosure is not limited to the 2T1C circuit shown in FIG. 7, and may be other circuits such as a 6T1C or 7T1C driving circuit. This disclosure does not specifically limit this, as long as the driving of the corresponding light-emitting unit can be realized, That is, it can serve as an embodiment of the present disclosure.
- FIG. 8 is a schematic diagram illustrating a connection relationship between a second light emitting component and a second driving element in an OLED display according to an embodiment of the present disclosure.
- the second region 20 may include a plurality of second light-emitting components 21, and each second light-emitting component may be arranged in the form of m rows and n columns, and m and n are both positive integers greater than or equal to 1.
- the m ⁇ n second light-emitting components 21 may be electrically connected to a second driving element 32, and light emission may be driven by the connected driving element 32.
- the second driving element 32 connected to each of the second light-emitting components 21 may be at a position adjacent to the second area 20 in the first region, so that the second light-emitting components and the second light-emitting component may be convenient. Connection of drive elements.
- each second light-emitting component can also be made to exhibit the same light-emitting state as the first light-emitting component corresponding to the connected second driving element.
- each second light-emitting component 21 may also be connected to a different second driving element 32 so as to realize driving light emission of each second light-emitting component 21 through different second driving elements 32.
- the embodiments of the present disclosure may form a group by using the second light-emitting components connected to the same second driving element, that is, the embodiments of the present disclosure may divide each of the second light-emitting components 21 in the second area 20 into a plurality of groups, and Each group may include at least one second light-emitting component 21, wherein the second light-emitting component 21 in the same group is connected to the same second driving element 32, and the second light-emitting component 21 in a different group is connected to a different second Driving element 32.
- the second light-emitting components 21 may be grouped according to requirements. Since the second light-emitting elements in each group are connected to the same second driving element 32, each second light-emitting element in the same group 21 can exhibit the same light-emitting state. Those skilled in the art may group the second light-emitting components in the second area according to different display requirements, which is not specifically limited in the embodiment of the present disclosure.
- FIG. 9 and FIG. 10 are schematic diagrams illustrating a connection relationship between a second light emitting component and a second driving element in an OLED display screen according to some other embodiments of the present disclosure.
- each of the second light emitting elements can be emitted in a row manner.
- Components are grouped.
- the second light-emitting components 21 in the same row in the second area 20 may be located in the same group, and each group may include at least one row of the second light-emitting components.
- the second light-emitting components 21 in each row may be regarded as a group, so the second light-emitting components in the second area may be divided into multiple groups corresponding to the number of lines, and each line The second light-emitting components are grouped together.
- each second light-emitting component in a group may be connected to a second driving element 32 to drive light emission through the connected second driving element 32.
- a plurality of rows of second light-emitting components 21 (such as two rows of second light-emitting components 21) may be included, and each row of the second light-emitting components forms a group, and the second light-emitting components of each row are respectively connected with the respective second driving elements.
- the electrical connection between the second light-emitting component and the respective second driving element 32 can be achieved through a conductive medium, respectively. It should be noted that only one second driving element 32 is shown in FIG. 9. It can be understood that each group of second light-emitting components is connected to one second driving element 32.
- At least two rows of the second light-emitting components 21 may also be included in one group, which is not limited in the embodiment of the present disclosure. It is convenient to group the second light-emitting components in a row. Control the light-emitting state of each second light-emitting component, for example, each group can present a different light-emitting state, or the second light-emitting component in each group can exhibit the same light-emission as the first light-emitting component corresponding to the second driving element connected status. By controlling each group, different lighting effects can be achieved.
- FIG. 11 is a schematic diagram showing a connection relationship between a second light-emitting component and a second driving element in an OLED display screen according to some other embodiments of the present disclosure.
- the first Two light emitting components are grouped.
- the second light-emitting components 21 in the same column in the second area 20 may be located in the same group, and each group may include at least one column of the second light-emitting components.
- the second light emitting component 21 in each column may be regarded as a group, so the second light emitting component in the second area may be divided into multiple groups corresponding to the number of columns, and each column The second light-emitting components are grouped together.
- each second light-emitting component in a group may be connected to a second driving element 32 to drive light emission through the connected second driving element 32.
- a plurality of columns of second light-emitting components 21 (such as two columns of second light-emitting components 21) may be included.
- Each column of the second light-emitting components forms a group, and the second light-emitting components of each column are respectively connected with the respective second drivers.
- the element 32 is electrically connected. Wherein, the electrical connection between the second light-emitting component and the respective second driving element 32 can be achieved through a conductive medium, respectively. It should be noted here that only one second driving element 32 is shown in FIG. 10. It can be understood that each group of second light-emitting components is connected to one second driving element 32.
- each group can present a different light-emitting state, or the second light-emitting component in each group can exhibit the same light-emission as the first light-emitting component corresponding to the second driving element connected status. By controlling each group, different lighting effects can be achieved.
- a second driving element 32 may be provided for each group, and the second driving element may be provided at a position adjacent to the corresponding group to facilitate connection with the second light-emitting component.
- the second light-emitting components of each row in the second region 20 may be divided into a plurality of groups, and each of the plurality of groups may be connected to one second driving element, and each The number of rows may be the same or different, and may be specifically set according to the shape or design requirements of the second region, which is not limited in the embodiment of the present disclosure.
- the second light-emitting components of each column in the second region 20 may be divided into a plurality of groups, each of the plurality of groups may be connected to one second driving element, and the number of groups of the columns of each row may be the same It may be different, and may be specifically set according to the shape or design requirements of the second region, which is not limited in the embodiment of the present disclosure.
- At least one row of the second light-emitting components in the second area are respectively located in different groups; or at least one column of the second light-emitting components in the second area are located in different groups. That is, in the embodiment of the present disclosure, at least one line constitutes one group, and a plurality of groups may also be included in one line, which is not limited in the embodiment of the present disclosure.
- FIG. 12 and FIG. 13 are schematic diagrams illustrating a connection relationship between a second light emitting component and a second driving element in an OLED display screen according to other embodiments of the present disclosure.
- the second light-emitting component in each row may be divided into a first group C1 and a second group C2 adjacent to the first group C1; and the second light-emitting component 32 in the first group C1 and the in-row and first group
- the second driving element 32 adjacent to C1 is connected; the second light emitting component in the second group C2 is connected to the second driving element 32 corresponding to the first light emitting component adjacent to the second group in the row. That is, the second light-emitting components 21 in each group in the embodiment of the present disclosure may be connected to the second driving element adjacent to the group, and emit light by driving the connected second driving element.
- FIG. 14 is a schematic diagram showing a connection relationship between a second light-emitting component and a second driving element in an OLED display screen according to other embodiments of the present disclosure.
- the second light-emitting component in each column may be divided into a third group C1 and a third group C1.
- the second group C2 adjacent to the group C1; and the second light-emitting component 32 in the third group C1 is connected to the second driving element 32 adjacent to the third group C1 in the column; the second in the fourth group C2
- the light-emitting component is connected to the second driving element 32 corresponding to the first light-emitting component adjacent to the fourth group in the column. That is, the second light-emitting components 21 in each group in the embodiment of the present disclosure may be connected to the second driving element adjacent to the group, and emit light by driving the connected second driving element.
- the second light-emitting components located in the same group are disposed adjacent to each other, so that the connection between the light-emitting component and the driving element can be facilitated, and the display effect of each light-emitting component can be conveniently controlled.
- no driving element is provided in a part of the display area of the display screen, and driving light emission is achieved through the electrical connection of the driving elements provided in other areas, so that some areas can be transparent;
- the functional component can be directly set in the transparent state area without having to slot the functional component or leaving other positions, which facilitates the comprehensive screen design of the display screen.
- the embodiment of the present disclosure further provides a display control method, which can be used to control the display of the OLED display screen described in the above embodiment.
- 15 shows a flowchart of a display control method according to an embodiment of the present disclosure, wherein the display control method may include:
- S200 Drive the first light emitting component and the second light emitting component to emit light by using the driving element group according to the display control signal.
- an embodiment of the present disclosure also provides an electronic device.
- the electronic device may include the OLED display screen provided in the foregoing embodiment, and the second area may be provided with a functional component such as a camera component.
- FIG. 16 shows a block diagram of an electronic device according to an embodiment of the present disclosure.
- the device (electronic device) 800 may be a mobile phone, a computer, a digital broadcasting terminal, a messaging device, a game console, a tablet device, a medical device, Fitness equipment, personal digital assistants and other electronic devices with display functions.
- the device 800 may include one or more of the following components: a processing component 802, a memory 804, a power component 806, a multimedia component 808, an audio component 810, an input / output (I / O) interface 812, a sensor component 814, And communication component 816.
- the processing component 802 generally controls the overall operations of the device 800, such as operations associated with display, telephone calls, data communications, camera operations, and recording operations.
- the processing component 802 may include one or more processors 820 to execute instructions to complete all or part of the steps of the method described above.
- the processing component 802 may include one or more modules to facilitate the interaction between the processing component 802 and other components.
- the processing component 802 may include a multimedia module to facilitate the interaction between the multimedia component 808 and the processing component 802.
- the memory 804 is configured to store various types of data to support operation at the device 800. Examples of these data include instructions for any application or method operating on the device 800, contact data, phone book data, messages, pictures, videos, and the like.
- the memory 804 may be implemented by any type of volatile or non-volatile storage devices, or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read-only memory (EEPROM), Programming read-only memory (EPROM), programmable read-only memory (PROM), read-only memory (ROM), magnetic memory, flash memory, magnetic disk or optical disk.
- SRAM static random access memory
- EEPROM electrically erasable programmable read-only memory
- EPROM Programming read-only memory
- PROM programmable read-only memory
- ROM read-only memory
- magnetic memory flash memory
- flash memory magnetic disk or optical disk.
- the power component 806 provides power to various components of the device 800.
- the power component 806 may include a power management system, one or more power sources, and other components associated with generating, managing, and distributing power for the device 800.
- the multimedia component 808 includes a screen that provides an output interface between the device 800 and a user.
- the screen may include a liquid crystal display (LCD) and a touch panel (TP). If the screen includes a touch panel, the screen may be implemented as a touch screen to receive an input signal from a user.
- the touch panel includes one or more touch sensors to sense touch, swipe, and gestures on the touch panel. The touch sensor may not only sense a boundary of a touch or slide action, but also detect duration and pressure related to the touch or slide operation.
- the multimedia component 808 includes a front camera and / or a rear camera. When the device 800 is in an operation mode, such as a shooting mode or a video mode, the front camera and / or the rear camera can receive external multimedia data. Each front camera and rear camera can be a fixed optical lens system or have focal length and optical zoom capabilities.
- the audio component 810 is configured to output and / or input audio signals.
- the audio component 810 includes a microphone (MIC) that is configured to receive external audio signals when the device 800 is in an operation mode, such as a call mode, a recording mode, and a voice recognition mode.
- the received audio signal may be further stored in the memory 804 or transmitted via the communication component 816.
- the audio component 810 further includes a speaker for outputting audio signals.
- the I / O interface 812 provides an interface between the processing component 802 and a peripheral interface module.
- the peripheral interface module may be a keyboard, a click wheel, a button, or the like. These buttons may include, but are not limited to: a home button, a volume button, a start button, and a lock button.
- the sensor component 814 includes one or more sensors for providing status assessment of various aspects of the device 800.
- the sensor component 814 can detect the on / off state of the device 800 and the relative positioning of the components, such as the display and keypad of the device 800, and the sensor component 814 can also detect the change of the position of the device 800 or a component of the device 800 , The presence or absence of the user's contact with the device 800, the orientation or acceleration / deceleration of the device 800, and the temperature change of the device 800.
- the sensor component 814 may include a proximity sensor configured to detect the presence of nearby objects without any physical contact.
- the sensor component 814 may also include a light sensor, such as a CMOS or CCD image sensor, for use in imaging applications.
- the sensor component 814 may further include an acceleration sensor, a gyroscope sensor, a magnetic sensor, a pressure sensor, or a temperature sensor.
- the communication component 816 is configured to facilitate wired or wireless communication between the device 800 and other devices.
- the device 800 can access a wireless network based on a communication standard, such as WiFi, 2G, or 3G, or a combination thereof.
- the communication component 816 receives a broadcast signal or broadcast-related information from an external broadcast management system via a broadcast channel.
- the communication component 816 further includes a near field communication (NFC) module to facilitate short-range communication.
- the NFC module can be implemented based on radio frequency identification (RFID) technology, infrared data association (IrDA) technology, ultra wideband (UWB) technology, Bluetooth (BT) technology, and other technologies.
- RFID radio frequency identification
- IrDA infrared data association
- UWB ultra wideband
- Bluetooth Bluetooth
- the device 800 may be implemented by one or more application specific integrated circuits (ASICs), digital signal processors (DSPs), digital signal processing devices (DSPDs), programmable logic devices (PLDs), field programmable A gate array (FPGA), controller, microcontroller, microprocessor or other electronic component is implemented to perform the above method.
- ASICs application specific integrated circuits
- DSPs digital signal processors
- DSPDs digital signal processing devices
- PLDs programmable logic devices
- FPGA field programmable A gate array
- controller microcontroller, microprocessor or other electronic component is implemented to perform the above method.
- a non-transitory computer-readable storage medium including instructions may be executed by the processor 820 of the device 800 to complete the foregoing method.
- the non-transitory computer-readable storage medium may be a ROM, a random access memory (RAM), a CD-ROM, a magnetic tape, a floppy disk, an optical data storage device, and the like.
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Abstract
Description
Claims (20)
- 一种有机发光二极管显示屏,其特征在于,所述显示屏包括第一区域和第二区域,所述第一区域设有多个第一发光组件,所述第二区域设有多个第二发光组件;所述显示屏还包括与所述第一发光组件和所述第二发光组件电连接以驱动所述第一发光组件和第二发光组件发光的驱动元件组;所述驱动元件组设置在所述显示屏上所述第二区域以外的区域,并至少设置在所述第一区域内。
- 根据权利要求1所述的有机发光二极管显示屏,其特征在于,所述驱动元件组设置在所述第一区域内,或者设置在所述第一区域以及第一区域和第二区域的间隔区域。
- 根据权利要求1或2所述的有机发光二极管显示屏,其特征在于,其特征在于,所述驱动元件组包括:至少一个第一驱动元件,其设置在所述第一区域内,并仅与对应的所述第一发光组件电连接,以驱动所连接的第一发光组件发光;至少一个第二驱动元件,其设置在所述第一区域内并分别与对应的第一发光组件和第二发光组件电连接,以驱动所连接的第一发光组件和第二发光组件发光。
- 根据权利要求2所述的有机发光二极管显示屏,其特征在于,其特征在于,所述驱动元件组包括:多个第一驱动元件,其设置在所述第一区域内,并与各所述第一发光组件一一对应的电连接,以驱动所连接的第一发光组件发光;至少一个第二驱动元件,其设置在所述第一区域和/或所述间隔区域内,并仅与对应的第二发光组件电连接,以驱动所连接的第二发光组件发光。
- 根据权利要求3所述的有机发光二极管显示屏,其特征在于,所述第二驱动元件通过导电介质与对应的第二发光组件电连接。
- 根据权利要求3所述的有机发光二极管显示屏,其特征在于,所述第二区域内的各第二发光组件连接至相同的第二驱动元件。
- 根据权利要求3所述的有机发光二极管显示屏,其特征在于,所述第二区域内的各第二发光组件被分成多个分组,每个分组至少包括一个第二发光组件;相同分组内的第二发光组件连接至相同的第二驱动元件,不同的分组内的第二发光组件连接至不同的第二驱动元件。
- 根据权利要求6或7所述的有机发光二极管显示屏,其特征在于,每个所述第一驱动元件和第二驱动元件均包括多个驱动单元,每个所述第一发光组件和第二发光组件分别包括多个不同颜色的发光单元;所述第一驱动元件内的各所述驱动单元分别与所述第一驱动元件所连接的第一发光组件中的发光单元一一对应连接,所述第二驱动元件内的各所述驱动单元分别与所述第二发光组件中的各发光单元一 一对应连接,以及在所述第二驱动元件连接第一发光组件时,所述第二驱动元件中的各所述驱动单元分别与所述第一发光组件中的各发光单元一一对应连接,并且相同的驱动单元所连接的发光单元的发光颜色相同。
- 根据权利要求8所述的有机发光二极管显示屏,其特征在于,所述第二区域内相同行的第二发光组件位于相同的分组内,每个分组至少包括一行第二发光组件。
- 根据权利要求8所述的有机发光二极管显示屏,其特征在于,所述第二区域内相同列的第二发光组件位于相同的分组内,每个分组至少包括一列第二发光组件。
- 根据权利要求8所述的有机发光二极管显示屏,其特征在于,每个分组的各第二发光组件所连接的第二驱动元件位于所述第一区域的边缘与所述分组邻近的位置。
- 根据权利要求11所述的有机发光二极管显示屏,其特征在于,所述第二区域内每行的第二发光组件被分成第一分组和与第一分组相邻的第二分组;所述第一分组内的第二发光组件与该行内与第一分组相邻的第二驱动元件连接;所述第二分组内的第二发光组件与该行内与第二分组相邻的第二驱动元件连接。
- 根据权利要求11所述的有机发光二极管显示屏,其特征在于,所述第二区域内每列的第二发光组件被分成第三分组和与第三分组相邻的第四分组;所述第三分组内的第二发光组件与该列内与第三分组相邻的第二驱动元件连接;所述第四分组内的第二发光组件与该列内与第四分组相邻的第二驱动元件连接。
- 根据权利要求7所述的有机发光二极管显示屏,其特征在于,位于相同分组内的各第二发光组件相邻设置。
- 根据权利要求5所述的有机发光二极管显示屏,其特征在于,所述导电介质由透明导电材料构成。
- 根据权利要求5所述的有机发光二极管显示屏,其特征在于,所述导电介质包括金属导线或者导电胶层。
- 根据权利要求8所述的有机发光二极管显示屏,其特征在于,所述发光单元包括发光二极管。
- 一种显示控制方法,其特征在于,其应用在有机发光二极管显示屏中,所述显示屏包括第一区域、第二区域和驱动元件组,所述第一区域包括多个第一发光组件,所述第二区域包括多个第二发光组件,以及驱动元件组设置在所述显示屏上所述第二区域以外的位置,并至少设置在所述第一区域内;并且所述方法包括:接收显示控制信号;根据所述显示控制信号,利用所述驱动元件组驱动所述第一发光组件和所述第二发光组件发光。
- 一种电子设备,其特征在于,包括:如权利要求1-17中任意一项所述的有机发光二极管显示屏。
- 根据权利要求19所述的电子设备,其特征在于,所述第二区域还设有摄像组件。
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| KR102741849B1 (ko) * | 2019-10-30 | 2024-12-13 | 삼성디스플레이 주식회사 | 펜타일 픽셀 구조를 가지는 유기 발광 표시 장치의 표시 패널 |
| KR102865946B1 (ko) * | 2019-12-24 | 2025-09-26 | 엘지디스플레이 주식회사 | 유기발광 표시장치 |
| KR102812390B1 (ko) * | 2020-08-26 | 2025-05-26 | 삼성디스플레이 주식회사 | 표시장치 |
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| KR102897918B1 (ko) * | 2020-12-29 | 2025-12-09 | 삼성디스플레이 주식회사 | 표시 패널 및 이를 구비하는 표시 장치 |
| US11793057B2 (en) * | 2021-01-22 | 2023-10-17 | Chengdu Boe Optoelectronics Technology Co., Ltd. | Display panel, display apparatus and control method |
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| EP3627484A1 (en) | 2020-03-25 |
| KR102246604B1 (ko) | 2021-05-03 |
| US11417270B2 (en) | 2022-08-16 |
| US20200098313A1 (en) | 2020-03-26 |
| RU2730394C1 (ru) | 2020-08-21 |
| KR20200035196A (ko) | 2020-04-02 |
| CN110942746B (zh) | 2022-07-01 |
| JP2021502578A (ja) | 2021-01-28 |
| CN110942746A (zh) | 2020-03-31 |
| JP6889738B2 (ja) | 2021-06-18 |
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