Display device
By incorporating conductive fillers in the display device, charge is conducted to the conductive backplate ground, thus solving the problem of electrostatic discharge damaging the display device and improving its reliability.
Patent Information
- Application Number
- CN202520034125.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-06
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2035-01-06
AI Technical Summary
Display devices are prone to accumulating static electricity during use. Static discharge can damage the display panel and internal components, reducing the reliability of the device.
A conductive filler is provided between the display panel and the front frame, and it is bent and connected to the conductive back plate. The charge is conducted to the conductive back plate through the conductive filler to ground, thereby improving the reliability of the display device.
It effectively reduces the probability of damage to the display panel and internal components caused by electrostatic discharge, and improves the reliability of display devices.
Smart Images

Figure CN223942880U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of display technology, and in particular to a display device. Background Technology
[0002] With the development of display technology, display devices are becoming increasingly widely used. Common display devices include smartphones, tablets, televisions, and monitors.
[0003] Display devices typically include a housing and a display panel mounted within the housing. The housing serves to decorate and protect the display panel.
[0004] However, display devices are prone to accumulating electrical charges during use, which will eventually be released electrostatically after reaching a certain level. This electrostatic discharge process may damage the display panel or internal components, leading to display malfunctions and consequently lower reliability. Utility Model Content
[0005] This application provides a display device. It addresses the problem of low reliability in existing display devices. The technical solution is as follows:
[0006] A display device is provided, comprising: a display panel, a conductive backplate, a front frame, and a conductive filler portion;
[0007] The conductive backplate is distributed on the back of the display panel and is connected to the display panel;
[0008] The front frame is distributed at least on the front of the display panel and covers the edge portion of the display panel;
[0009] A portion of the conductive filler is located between the edge portion of the front frame and the display panel, and another portion of the conductive filler can be bent to connect with the conductive backplate.
[0010] Optionally, the conductive filler includes: an annular conductive body and a flexible conductive layer connected to the conductive body; the flexible conductive layer can be bent to connect to the conductive backplate.
[0011] The display area of the display panel is distributed within the area enclosed by the conductive body.
[0012] Optionally, the conductive body includes multiple conductive strips spliced together end to end;
[0013] The flexible conductive layer is connected to any one of the conductive strips; the flexible conductive layer is strip-shaped, and the extension direction of the conductive strip connected to the flexible conductive layer intersects with the extension direction of the flexible conductive layer.
[0014] Optionally, for any two adjacent conductive strips, the end of one conductive strip abuts against the end of the other conductive strip.
[0015] Optionally, the conductive strip includes: a conductive strip body, and a conductive connection layer connected to the side of the conductive strip body opposite to the display panel;
[0016] Specifically, for any two adjacent conductive strips, the end of the conductive connection layer in one conductive strip is connected to the end of the conductive connection layer in the other conductive strip.
[0017] Optionally, in the same conductive strip, the end of the conductive connecting layer protrudes beyond the end of the conductive strip body, and the portion of the conductive connecting layer protruding beyond the conductive strip body is a conductive overlap block;
[0018] Specifically, for any two adjacent conductive strips, the conductive overlap block in one conductive strip is attached to the conductive overlap block in the other conductive strip.
[0019] Optionally, the conductive filling portion further includes: a conductive adhesive layer, the conductive adhesive layer being bonded to the side of the conductive portion body opposite to the display panel, and the side of the conductive adhesive layer opposite to the conductive portion body being bonded to at least the unbent portion of the flexible conductive layer.
[0020] Optionally, the flexible conductive layer includes: a planar connecting portion and a bent portion connected together, wherein the bent portion can be bent to connect with the conductive backplate;
[0021] The conductive adhesive layer on the side opposite to the conductive part body includes: a first adhesive area bonded to the planar connecting part, and a second adhesive area other than the first adhesive area, the second adhesive area being bonded to the front frame.
[0022] Optionally, the flexible conductive layer further includes: a connecting adhesive layer, wherein the connecting adhesive layer is bonded to the side of the planar connecting portion opposite to the first bonding area, and the side of the connecting adhesive layer opposite to the planar connecting portion is bonded to the front frame.
[0023] Optionally, the display device further includes a power cord for supplying power to the display panel, wherein the ground wire of the power cord is connected to the conductive backplate.
[0024] The beneficial effects of the technical solutions provided in this application include at least the following:
[0025] By incorporating a conductive filler between the front bezel and the edge of the display panel, and then bending and connecting this conductive filler to a conductive backplate, charges generated during the use of the display device can be conducted to the conductive backplate. Since the conductive backplate can serve as a grounding component within the display device, charges can be transferred to the ground wire, thereby reducing the probability of damage to the display panel or internal components due to electrostatic discharge. This effectively improves the reliability of the display device. Attached Figure Description
[0026] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0027] Figure 1 This is a top view of a display device provided in an embodiment of this application;
[0028] Figure 2 yes Figure 1 A partial cross-sectional schematic diagram of the display device is shown;
[0029] Figure 3 This is a schematic diagram of the structure of a conductive filling portion provided in an embodiment of this application;
[0030] Figure 4 yes Figure 3 A magnified view of the conductive filling portion at the corner;
[0031] Figure 5 This is a schematic diagram of a film structure for a single conductive filling portion provided in an embodiment of this application;
[0032] Figure 6 yes Figure 3 Another enlarged view of the conductive filling at the corner;
[0033] Figure 7 This is a schematic diagram of another single conductive filling portion film structure provided in an embodiment of this application;
[0034] Figure 8 This is an exploded view of another conductive filling portion provided in an embodiment of this application;
[0035] Figure 9 This is a partial cross-sectional schematic diagram of another display device provided in an embodiment of this application. Detailed Implementation
[0036] To make the objectives, technical solutions, and advantages of this application clearer, the embodiments of this application will be described in further detail below with reference to the accompanying drawings.
[0037] This application provides a display device, which can be any device with display functionality, such as a smartphone, tablet, television, or monitor. Please refer to... Figure 1 and Figure 2 , Figure 1 This is a top view of a display device provided in an embodiment of this application. Figure 2 yes Figure 1 The diagram shows a partial cross-sectional view of the display device. The display device 000 may include: a display panel 100, a conductive backplate 200, a front frame 300, and a conductive filler portion 400.
[0038] The display panel 100 in the display device 000 may have a front side S1 and a back side S2 that are arranged opposite to each other. Here, the front side S1 of the display panel 100 refers to the side of the display panel 100 used for displaying images.
[0039] The conductive backplate 200 in the display device 000 can be distributed on the backplate S2 of the display panel 100 and can be connected to the display panel 100. Here, the conductive backplate 200 can be used to protect the back of the display panel 100, and the conductive backplate 200 is conductive. This conductive backplate 200 can serve as a grounding component in the display device 000. That is, the conductive backplate 200 can be connected to the ground wire.
[0040] In one possible implementation, the display panel 100 can be a liquid crystal display panel. Since the liquid crystal display panel does not emit light actively, a backlight module needs to be provided on the back of the display panel 100. Here, the conductive backplate 200 can be the backplate in the backlight module, and the light source component in the backlight module can be located in the area between the display panel 100 and the conductive backplate 200.
[0041] For example, the conductive backplane 200 can be a metal backplane, that is, the conductive backplane 200 is a backplane made of metal material. Of course, the conductive backplane 200 can also be a non-metallic backplane. For example, the conductive backplane 200 can include: a plastic backplane and a conductive film coated on the surface of the plastic backplane. The plastic backplane refers to a backplane made of plastic material, and the conductive film coated on the surface of the plastic backplane can be used to conduct electricity to the ground wire.
[0042] The front bezel 300 in the display device 000 may be distributed at least on the front of the display panel 100 and cover the edge portion of the display panel 100. Here, the front bezel 300 may be annular, and the display area in the display panel 100 may be located within the area enclosed by the front bezel 300.
[0043] In this application, the front frame 300 not only covers the edge portion of the display panel 100, but also covers the sides of the display panel 100. For example, the front frame 300 may include a front baffle 310 and a side baffle 320 connected to each other. Here, the front baffle 310 can block the edge portion of the display panel 100 from the front, and the side baffle 320 can block the sides of the display panel 100. Through the cooperation of the front baffle 310 and the side baffle 320, it can be ensured that the front frame 300 can play a decorative role in the edge position of the front of the display panel 100 and the sides of the display panel 100.
[0044] A portion of the conductive filler portion 400 in the display device 000 may be located between the front bezel 300 and the edge portion of the display panel 100. For example, this portion of the conductive filler portion 400 may be located between the front baffle 310 in the front bezel 300 and the edge portion of the display panel 100. Another portion of the conductive filler portion 400 may be bent to connect to the conductive backplate 200.
[0045] It should be noted that when the conductive backplate 200 is a metal backplate, the electrical connection between the two is achieved by bonding the bent portion of the conductive filler 400 to the conductive backplate 200. When the conductive backplate 200 includes a plastic backplate and a conductive film coated on the surface of the plastic backplate, the bent portion of the conductive filler 400 needs to be bonded to the conductive film in the conductive backplate 200 to achieve the electrical connection. Subsequent embodiments will be described using a metal backplate as an example.
[0046] In this embodiment, even if a charge adheres during the use of the display device 000, the charge can be conducted to the conductive backplate 200 provided on the back through the conductive filler portion 400 located between the display panel 100 and the front frame 300. Since the conductive backplate 200 can serve as a grounding component in the display device 000, the charge can be transferred to the ground wire, thereby reducing the probability of damage to the display panel 100 or internal components of the display device 000 due to electrostatic discharge. This effectively improves the reliability of the display device 000.
[0047] In summary, the display device provided in this application includes: a display panel, a conductive backplate, a front frame, and a conductive filler portion. By providing a conductive filler portion between the edge portion of the front frame and the display panel, and bending the conductive filler portion to connect it to the conductive backplate, the charge generated during the use of the display device can be conducted to the conductive backplate through the conductive filler portion. Since the conductive backplate can serve as a grounding component in the display device, the charge can be transferred to the ground wire, thereby reducing the probability of damage to the display panel or internal components of the display device due to electrostatic discharge. This effectively improves the reliability of the display device.
[0048] In the embodiments of this application, please refer to Figure 3 , Figure 3 This is a schematic diagram of the structure of a conductive filling portion provided in an embodiment of this application. The conductive filling portion 400 in the display device 000 may include: an annular conductive portion body 410, and a flexible conductive layer 420 connected to the conductive portion body 410.
[0049] Here, the annular conductive body 410 can be distributed between the front baffle 310 in the front frame 300 and the edge portion of the display panel 100. That is, the annular conductive body 410 can be provided at the edge position of the front surface of the display panel 100, and the display area of the display panel 100 can be distributed within the area enclosed by the conductive body 410. The flexible conductive layer 420 can be bent to connect with the conductive back plate 200.
[0050] In this case, during the use of the display device 000, the charge attached to the surface of the display panel 100 can be attracted by the annular conductive body 410 in any direction, and the charge attracted by the conductive body 410 can be uniformly guided to the conductive back plate 200 through the flexible conductive layer 420.
[0051] Furthermore, the width of the annular conductive body 410 can be less than or equal to the width of the front baffle 310 in the front frame 300, so as to ensure that the conductive body 410 does not exceed the front baffle 310 and is exposed to the outside of the front frame 300.
[0052] Optional, such as Figure 3 As shown, the conductive body 410 in the electrical filling portion 400 may include a plurality of conductive strips 410a connected end to end. That is, the plurality of conductive strips 410a may be distributed around the display area of the display panel 100, and the beginning of one conductive strip 410a may be connected to the end of the next conductive strip 410a, thereby allowing the plurality of conductive strips 410a to form a ring-shaped conductive body 410 distributed around the display area of the display panel 100.
[0053] In this application, the flexible conductive layer 420 in the conductive filling portion 400 can be strip-shaped, and one end of the flexible conductive layer 420 can be connected to any conductive strip 410a. After the flexible conductive layer 420 is bent to connect with the conductive back plate 200, the other end of the flexible conductive layer 420 can be distributed on the conductive back plate 200.
[0054] Here, the extending direction of the conductive strip 410a connected to the flexible conductive layer 420 can intersect with the extending direction of the flexible conductive layer 420. For example, the extending direction of the conductive strip 410a connected to the flexible conductive layer 420 can be perpendicular to the extending direction of the flexible conductive layer 420.
[0055] In one possible implementation, the annular conductive body 410 is cut out using an integral cutting process. In this case, the ends of any two adjacent conductive strips 410a in the conductive body 410 can be fixedly connected as a single unit.
[0056] In another possible implementation, to reduce the manufacturing cost of the annular conductive body 410, multiple conductive strips 410a can be cut out individually first, and then spliced together to obtain the annular conductive body 410. That is, the multiple conductive strips 410a in the conductive body 410 are spliced end to end. In this case, there are multiple ways to connect the ends of any two adjacent conductive strips 410a in the conductive body 410. The embodiments of this application illustrate the following two implementations as examples.
[0057] The first implementation method, such as Figure 4 and Figure 5 As shown, Figure 4 yes Figure 3 The diagram shows a magnified view of the conductive filling portion at the corner. Figure 5 This is a schematic diagram of a film structure for a single conductive filling portion provided in an embodiment of this application. For any two adjacent conductive strips 410a in the conductive portion body 410, the end of one conductive strip 410a can abut against the end of the other conductive strip 410a.
[0058] For example, each conductive strip 410a in the conductive body 410 can be made of elastic conductive foam. In this way, during the process of splicing multiple conductive strips 410a to obtain the conductive body 410, the ends of each conductive strip 410a can undergo elastic deformation, which ensures that the ends of two adjacent conductive strips 410a can be more tightly abutted together. This ensures that the assembled conductive body 410 is a ring-shaped conductive structure with internal conductivity and low resistance, resulting in good conductivity of the conductive body 410.
[0059] The second implementation method, such as Figure 6 and Figure 7 As shown, Figure 6 yes Figure 3 Another enlarged view of the conductive filling at the corner is shown. Figure 7 This is a schematic diagram of another single conductive filling layer structure provided in an embodiment of this application. Each conductive strip 410a in the conductive part body 410 may include: a conductive strip body 411 and a conductive connection layer 412 stacked together. The conductive part body 412 can be connected to the side of the conductive strip body 411 opposite to the display panel 100.
[0060] Specifically, for any two adjacent conductive strips 410a in the conductive body 410, the end of the conductive connection layer 412 in one conductive strip 410a can be connected to the end of the conductive connection layer 412 in the other conductive strip 410a.
[0061] For example, in the conductive body 410, the conductive strip body 411 of each conductive strip 410a can be made of elastic conductive foam; the conductive connecting layer 412 of each conductive strip 410a can be made of flexible conductive material. Furthermore, in the same conductive strip 410a, the length of the conductive connecting layer 412 can be greater than the length of the conductive strip body 411, and the end of the conductive connecting layer 412 can protrude beyond the end of the conductive strip body 411. Thus, during the splicing of multiple conductive strips 410a, it is not necessary to allow the ends of the conductive strip bodies 411 in adjacent conductive strips 410a to undergo elastic deformation. Instead, by connecting the portions of the conductive connecting layers 412 protruding from the conductive strip bodies 411 in adjacent conductive strips 410a, a stable connection between the ends of two adjacent conductive strips 410a can be achieved. This ensures that the assembled conductive body 410 is an internally conductive ring structure with low resistance, resulting in good conductivity of the conductive body 410.
[0062] In the embodiments of this application, such as Figure 6 and Figure 7 As shown, in the same conductive strip 410a, the portion of the conductive connection layer 412 that protrudes from the conductive strip body 411 is a conductive overlap block 412a. Here, for any two adjacent conductive strips 410a in the conductive part body 410, the conductive overlap block 412a in one conductive strip 410a can be attached to the conductive overlap block 412a of the other conductive strip 410a.
[0063] It should be noted that since the conductive connection layer 412 is made of a flexible conductive material, the conductive overlap block 412a protruding from the conductive strip body 411 is also relatively flexible. This allows operators to more easily manipulate the conductive overlap block 412a, making it easier to fit the conductive overlap blocks 412a of two adjacent conductive strips 410a together. This further simplifies the process of splicing multiple conductive strips 410a to obtain the conductive body 410.
[0064] It should also be noted that regardless of whether the first or second implementation method is used to splice multiple conductive strips 410a, the resulting annular conductive body 410 needs to be tested after splicing to ensure that it is an internally conductive ring structure with low resistance. For example, a multimeter can be used to test the resistance of the annular conductive body 410. If the resistance is low, it indicates that the conductive body 410 is an internally conductive ring structure with low resistance; conversely, if the resistance is high, it indicates that the ends of two adjacent conductive strips 410 are not properly spliced together.
[0065] Optional, such as Figure 5 and Figure 7 As shown, the conductive filling portion 400 may further include a conductive adhesive layer 430. The conductive adhesive layer 430 can be bonded to the side of the conductive portion body 410 opposite to the display panel 100, and the side of the conductive adhesive layer 430 opposite to the conductive portion body 410 is bonded to at least the unbent portion of the flexible conductive layer 420.
[0066] In this case, by providing a conductive adhesive layer 430 in the conductive filling portion 400, not only can a mechanical connection be achieved between the flexible conductive layer 420 and the conductive portion body 410, but also an electrical connection can be achieved between the flexible conductive layer 420 and the conductive portion body 410.
[0067] It should be noted that, when the conductive strips 410a in the conductive body 410 adopt the first implementation described above, the conductive adhesive layer 430 can be connected to the side of each conductive strip 410a facing away from the display panel 100. When the conductive strips 410a in the conductive body 410 adopt the second implementation described above, the conductive adhesive layer 430 can be connected to the side of each conductive strip 410a's conductive connection layer 412 facing away from the conductive strip body 411. Furthermore, in this case, the conductive overlap blocks 412a in two adjacent conductive strips 410a can be bonded together through the conductive adhesive layer 430 on any one of the conductive overlap blocks 412a.
[0068] Optional, such as Figure 8 and Figure 9 As shown, Figure 8 This is an exploded view of another conductive filling portion provided in an embodiment of this application. Figure 9 This is a partial cross-sectional schematic diagram of another display device provided in an embodiment of this application. The flexible conductive layer 420 in the conductive filling portion 400 may include a planar connecting portion 421 and a bent portion 422 connected to each other. Here, the bent portion 422 in the flexible conductive layer 420 can be bent to connect with the conductive back plate 200.
[0069] like Figure 8 As shown, the conductive adhesive layer 430 in the conductive filling portion 400, on the side facing away from the conductive portion body 410, may include: a first adhesive area 431 bonded to the planar connecting portion 421, and a second adhesive area 432 other than the first adhesive area 431. The second adhesive area 432 in the conductive adhesive layer 430 may be bonded to the front frame 300 in the display device 000. For example, the conductive adhesive layer 430 may be bonded to the side of the front baffle 310 in the front frame 300 facing the display panel 100. In this way, the conductive adhesive layer 430 can not only achieve mechanical and electrical connection between the conductive part body 410 and the flexible conductive layer 420, but also bond the conductive part body 410 to the front baffle 310 of the front frame 300, so as to ensure that after the front frame 300 is assembled in the display device 000, the conductive part body 410 can be directly filled between the front baffle 310 of the front frame 300 and the edge of the display panel 100.
[0070] In this embodiment, the flexible conductive layer 420 in the conductive filling portion 400 may further include a connecting adhesive layer (not shown in the figure). This connecting adhesive layer can be bonded to the side of the planar connecting portion 421 opposite to the first bonding area 431, and the side of the connecting adhesive layer opposite to the planar connecting portion 421 can be bonded to the front frame 300. For example, the flexible conductive layer 420 can be bonded to the front baffle 310 in the front frame 300 via the connecting adhesive layer.
[0071] Optionally, the flexible conductive layer 420 in the conductive filler 400 may further include an auxiliary conductive adhesive layer (not shown in the figure). This auxiliary conductive adhesive layer can be connected to the side of the bent portion 422 facing the conductive backplate 200. Here, after bending, the bent portion 422 can be connected to the conductive backplate 200 through the auxiliary conductive adhesive layer. Thus, the auxiliary conductive adhesive layer not only achieves a mechanical connection between the bent portion 422 and the conductive backplate 200 after bending, but also an electrical connection between them.
[0072] In this application, the conductive body 410 in the conductive filling portion 400 can be made of at least elastic conductive foam. In this way, the conductive body 410 located between the front baffle 310 in the front frame 300 and the edge portion of the display panel 100 can also have a buffering effect, so as to ensure that the conductive body 410 can buffer the external force after the front frame 300 is subjected to external force, thereby reducing the risk of the display panel 100 breaking.
[0073] Furthermore, the elastic conductive foam can be black foam. In this way, the conductive body 410 located between the front baffle 310 in the front frame 300 and the edge portion of the display panel 100 can also have light-shielding properties to ensure that the light emitted from the edge of the display panel 100 can be absorbed by the conductive body 410, thereby reducing the probability of edge light leakage in the display device 000.
[0074] In this application, the flexible conductive layer 420 in the conductive filling portion 400 can be made using a relatively soft conductive cloth or metal sheet (e.g., a metal aluminum sheet).
[0075] Optional, such as Figure 9 As shown, the display device 000 may further include a power cord 500. This power cord 500 can be used to supply power to the display panel 100, enabling the display panel 100 to display an image normally. The power cord 500 may also have a ground wire 501, which can be connected to the conductive backplate 200. For example, the conductive backplate 200 has a locking member 201 on the side facing away from the display panel 100, and the end of the ground wire 501 can be hooked onto the locking member 201, allowing the end of the ground wire 501 to be electrically connected to the conductive backplate 200, thereby ensuring that the conductive backplate 200 is grounded.
[0076] In the embodiments of this application, such as Figure 9 As shown, when the display panel 100 in the display device 000 is a liquid crystal display panel, the display device 000 may further include a light source component 600 installed within a conductive back plate 200. This light source component 600 can provide a light source to the display panel 100, enabling the display panel 100 to display an image normally. For example, the conductive back plate 200 may have a light-transmitting port and a mounting cavity communicating with the light-transmitting port. The light source component 600 may be installed within this mounting cavity, and the light source component 600 can project light onto the display panel 100 through the light-transmitting port.
[0077] In addition, the display device 000 may also include an annular buffer connection portion 700. The edge portion of the display panel 100 can be connected to the side of the conductive back plate 200 where a light-transmitting opening is provided through the buffer connection portion 700.
[0078] Optionally, the display device 000 may further include a rear housing 800, which may be located on the side of the conductive back plate 200 opposite to the display panel 100, and the rear housing 800 may be connected to the front frame 300. Here, the front frame 300 and the rear housing 800 may together form a housing for decorating and protecting the display panel 100.
[0079] In summary, the display device provided in this application includes: a display panel, a conductive backplate, a front frame, and a conductive filler portion. By providing a conductive filler portion between the edge portion of the front frame and the display panel, and bending the conductive filler portion to connect it to the conductive backplate, the charge generated during the use of the display device can be conducted to the conductive backplate through the conductive filler portion. Since the conductive backplate can serve as a grounding component in the display device, the charge can be transferred to the ground wire, thereby reducing the probability of damage to the display panel or internal components of the display device due to electrostatic discharge. This effectively improves the reliability of the display device.
[0080] It should be noted that the dimensions of layers and regions may be exaggerated in the accompanying drawings for clarity. Furthermore, it is understood that when an element or layer is referred to as being "on" another element or layer, it can be directly on the other element, or there may be intermediate layers. Additionally, it is understood that when an element or layer is referred to as being "below" another element or layer, it can be directly below the other element, or there may be more than one intermediate layer or element. Furthermore, it is also understood that when a layer or element is referred to as being "between" two layers or two elements, it can be the only layer between the two layers or two elements, or there may be more than one intermediate layer or element. Similar reference numerals throughout indicate similar elements.
[0081] In this application, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance. The term "multiple" refers to two or more unless otherwise expressly defined.
[0082] The above description is merely an optional embodiment of this application and is not intended to limit this application. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. A display device, characterized in that, include: Display panel, conductive backplate, front frame and conductive filler; The conductive backplate is distributed on the back of the display panel and is connected to the display panel; The front frame is distributed at least on the front of the display panel and covers the edge portion of the display panel; A portion of the conductive filler is located between the edge portion of the front frame and the display panel, and another portion of the conductive filler can be bent to connect with the conductive backplate.
2. The display device according to claim 1, characterized in that, The conductive filling portion includes: an annular conductive body and a flexible conductive layer connected to the conductive body; the flexible conductive layer can be bent to connect to the conductive back plate. The display area of the display panel is distributed within the area enclosed by the conductive body.
3. The display device according to claim 2, characterized in that, The conductive part body includes multiple conductive strips spliced together from end to end; The flexible conductive layer is connected to any one of the conductive strips; the flexible conductive layer is strip-shaped, and the extension direction of the conductive strip connected to the flexible conductive layer intersects with the extension direction of the flexible conductive layer.
4. The display device according to claim 3, characterized in that, For any two adjacent conductive strips, the end of one conductive strip abuts against the end of the other conductive strip.
5. The display device according to claim 3, characterized in that, The conductive strip includes: a conductive strip body, and a conductive connection layer connected to the side of the conductive strip body opposite to the display panel; Specifically, for any two adjacent conductive strips, the end of the conductive connection layer in one conductive strip is connected to the end of the conductive connection layer in the other conductive strip.
6. The display device according to claim 5, characterized in that, In the same conductive strip, the end of the conductive connecting layer protrudes beyond the end of the conductive strip body, and the portion of the conductive connecting layer protruding beyond the conductive strip body is a conductive overlap block; Specifically, for any two adjacent conductive strips, the conductive overlap block in one conductive strip is attached to the conductive overlap block in the other conductive strip.
7. The display device according to any one of claims 2 to 6, characterized in that, The conductive filling portion further includes a conductive adhesive layer, which is bonded to the side of the conductive portion body away from the display panel, and the side of the conductive adhesive layer away from the conductive portion body is bonded to at least the unbent portion of the flexible conductive layer.
8. The display device according to claim 7, characterized in that, The flexible conductive layer includes: a planar connecting portion and a bent portion connected together, wherein the bent portion can be bent to connect with the conductive back plate; The conductive adhesive layer on the side opposite to the conductive part body includes: a first adhesive area bonded to the planar connecting part, and a second adhesive area other than the first adhesive area, the second adhesive area being bonded to the front frame.
9. The display device according to claim 8, characterized in that, The flexible conductive layer further includes a connecting adhesive layer, which is bonded to the side of the planar connecting portion away from the first bonding area, and the side of the connecting adhesive layer away from the planar connecting portion is bonded to the front frame.
10. The display device according to any one of claims 1-6 and 8-9, characterized in that, The display device also includes: a power cord and a rear cover; The power cord is used to power the display panel, and the ground wire in the power cord is connected to the conductive back plate. The rear shell is located on the side of the conductive back plate opposite to the display panel, and the rear shell is connected to the front frame.