A multi-screen display device

CN224609573UActive Publication Date: 2026-08-07曹峻宣
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Patent Information

Application Number
CN202522031635.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-19
Publication Date
2026-08-07
Estimated Expiration
2035-09-19

AI Technical Summary

Technical Problem

[0002]近年来,随着科技的飞速发展,计算机快速普及,显示器也成为人们日常办公娱乐的重要设备,传统的显示器普遍只有一个屏幕,显示的信息较少,无法做到多任务之间的协同工作,从而降低了人们的工作效率

Benefits of technology

[0015]The beneficial effects of this utility model are: This utility model provides a multi-screen display device that can display images on at least 4 monitors, providing users with more display images and information, increasing users' office collaboration efficiency and viewing experience; and the first frame 1 and the second frame 2 can rotate 180 degrees relative to each other, making it convenient for users to adjust to a more comfortable angle and improving the user experience.

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Abstract

The utility model provides a kind of multi-screen display device, comprising: first frame and second frame, the side of first frame and the side of the second frame are connected;First display and second display, first frame includes at least 2 first accommodating slot, first accommodating slot is used to accommodate first display, second frame includes at least 2 second accommodating slot, second accommodating slot is used to accommodate second display.The multi-screen display device provided by the utility model can realize at least four displays playing pictures, provide more playing pictures and information for users, and increase the office collaboration efficiency and visual experience of users.
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Description

Technical Field

[0001] This utility model relates to the field of display devices, and in particular to a multi-screen display device. Background Technology

[0002] In recent years, with the rapid development of technology and the widespread adoption of computers, monitors have become essential devices for daily office and entertainment work. Traditional monitors typically have only one screen, displaying limited information and hindering multitasking, thus reducing work efficiency. Therefore, this invention provides a multi-screen display device that effectively solves these problems. Utility Model Content

[0003] To overcome the shortcomings of existing technologies, this utility model provides a multi-screen display device, comprising:

[0004] A first frame and a second frame, wherein one side of the first frame and one side of the second frame are connected;

[0005] A first display and a second display, the first frame including at least two first receiving slots for receiving the first display, and the second frame including at least two second receiving slots for receiving the second display.

[0006] In this embodiment, the first frame includes a first side frame and a first base plate. One side of the first side frame is connected to the first base plate, and the first side frame protrudes from the first base plate. The first side frame and the first base plate surround each other to form a first receiving space. The first display is adhered to the first base plate by adhesive. The first frame also includes at least one first partition member, which is disposed in the first receiving space. The first partition member divides the first receiving space into a plurality of first receiving slots, so that a plurality of first displays are disposed in a plurality of first receiving slots. The first partition member is connected to the first side frame and the first base plate, so that the first partition member is securely connected to the first frame.

[0007] In this embodiment, the first receiving groove includes a first mounting groove, the back of the first display includes a first locking block, the first locking block is configured to engage in the first mounting groove so that the first display is engaged in the first mounting groove; the first frame includes a recessed handle groove, the second frame includes a protruding handle, the handle is trapezoidal in shape, and the longest side of the handle is connected to the second frame.

[0008] In this embodiment, the first frame further includes a first cover plate. After the first display is placed in the first receiving slot, the first cover plate is used to cover the first frame to prevent the first display from falling out of the first receiving slot. The first cover plate includes a first plate and at least one second plate arranged around the first frame. The two ends of the second plate are connected to the first plate. When the first cover plate is covered on the first frame, the position of the first plate corresponds to the position of the first frame, and the position of the second plate corresponds to the position of the first separator. The width of the first plate is greater than the width of the first frame, and the width of the second plate is greater than the width of the first separator, so that the first plate and the second plate press against a portion of the edge of the first display.

[0009] In this embodiment, the second frame includes a second frame and a second base plate. One side of the second frame is connected to the second base plate, and the second frame protrudes from the second base plate. The second frame and the second base plate surround each other to form a second receiving space. The second display is bonded to the second base plate with adhesive.

[0010] In this embodiment, the second frame further includes at least one second partition member disposed in the second accommodating space, dividing the second accommodating space into multiple second accommodating slots, so that multiple second displays are disposed in multiple second accommodating slots; the second partition member is connected to the second frame and the second base plate, so that the second partition member and the second frame are securely connected; the second frame further includes a second cover plate, which is used to cover the second frame after the second display is disposed in the second accommodating slot, so as to prevent the second display from falling out of the second accommodating slot; the second cover plate includes a third plate and at least one fourth plate arranged around the second frame, the fourth plate being connected to the third plate at both ends; when the second cover plate is covered on the second frame, the position of the third plate corresponds to the position of the second frame, the position of the fourth plate corresponds to the position of the second partition member, the width of the third plate is greater than the width of the second frame, and the width of the fourth plate is greater than the width of the second partition member, so that the third plate and the fourth plate press against a portion of the edge of the second display.

[0011] In this embodiment, the first frame and the second frame are rotatably connected; the multi-screen display device further includes at least one rotating connector, the two ends of which are respectively connected to the first frame and the second frame, so that the first frame and the second frame are rotatably connected; the first frame and the second frame rotate relative to each other between the maximum open position and the maximum folded position; in the maximum folded position, the front surfaces of the first frame and the second frame abut against each other, and in the maximum open position, a portion of the front edge of the first frame abuts against a portion of the back edge of the second frame, so as to prevent the first frame and the second frame from continuing to rotate relative to each other.

[0012] In this embodiment, the rotating connector includes a first connecting module and a second connecting module. The first connecting module is connected to the first frame, and the second connecting module is connected to the second frame, and the first connecting module and the second connecting module are rotatably connected. The first connecting module includes a first shaft cylinder, and the second connecting module includes a first rotating shaft. The first rotating shaft is configured to be inserted into the first shaft cylinder to rotatably connect the first connecting module and the second connecting module. The first connecting module also includes a first connecting block, which is connected to the first frame to connect the first connecting module and the first frame. The first connecting block includes a first connecting hole, and the first frame also includes a second connecting hole. An external fastener is inserted into the first connecting hole and the second connecting hole to connect the first connecting block and the first frame. The second connecting module also includes a second connecting block, which is connected to the second frame to connect the second connecting module and the second frame. The second connecting block includes a third connecting hole, and the second frame also includes a fourth connecting hole. An external fastener is inserted into the third connecting hole and the fourth connecting hole to connect the second connecting block and the second frame.

[0013] In this embodiment, the first frame includes at least one first wire hole, and the second frame includes at least one second wire hole. The positions of the first wire hole and the second wire hole correspond to each other, so that external wires can pass through the first wire hole and the second wire hole to electrically connect the first display and the second display. The second frame includes a groove, and the second wire hole is disposed in the groove. The multi-screen display device also includes a first decorative member, which is disposed in the groove and detachably connected to the first frame. The first decorative member is used to cover the first wire hole and the second wire hole. The first decorative member includes a fifth connecting hole, and the first frame includes a sixth connecting hole. External fasteners are inserted into the fifth connecting hole and the sixth connecting hole to detachably connect the first decorative member to the first frame. The first decorative member includes at least one first wire groove, which communicates with the first wire hole and the second wire hole. The first wire groove is used to receive external wires passing through the first wire hole and the second wire hole.

[0014] In this embodiment, the multi-screen display device further includes a bracket, which is rotatably connected to the multi-screen display device and is used to support the multi-screen display device; the second frame includes legs, which cooperate with the bracket to support the multi-screen display device; the bracket is rotatably connected to the second frame; the multi-screen display device further includes a connecting component, which connects the bracket and the second frame respectively, so that the bracket and the second frame are rotatably connected; the connecting component includes a third connecting module, a fourth connecting module, and a second decorative panel, the third connecting module is connected to the bracket by external fasteners, the third connecting module and the fourth connecting module are rotatably connected, and the fourth connecting module is connected by external fasteners. The second decorative panel is connected to the second frame via external fasteners. The multi-screen display device also includes multiple interfaces and a control motherboard. The interfaces and the control motherboard are electrically connected. The interfaces are disposed on the bracket, and the control motherboard is disposed inside the bracket. The bracket includes a third wire hole, and the second frame includes a fourth wire hole. External wires pass through the third wire hole and the fourth wire hole to connect the control motherboard to the first display and the second display, so that the control motherboard is electrically connected to the first display and the second display, respectively. The second decorative panel includes a second wire groove, which communicates with the third wire hole and the fourth wire hole. The second wire groove is used to accommodate external wires.

[0015] The beneficial effects of this utility model are: This utility model provides a multi-screen display device that can display images on at least 4 monitors, providing users with more display images and information, increasing users' office collaboration efficiency and viewing experience; and the first frame 1 and the second frame 2 can rotate 180 degrees relative to each other, making it convenient for users to adjust to a more comfortable angle and improving the user experience. Attached Figure Description

[0016] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the following description of the embodiments will be briefly introduced. The drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0017] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0018] Figure 1 This is a perspective view of the multi-screen display device of this utility model;

[0019] Figure 2 yes Figure 1 Enlarged view of point A in the middle;

[0020] Figure 3 yes Figure 1 Enlarged view of point B in the middle;

[0021] Figure 4 This is another perspective view of the multi-screen display device of this utility model;

[0022] Figure 5 yes Figure 4 Enlarged view of point C in the middle;

[0023] Figure 6 This is an exploded view of the multi-screen display device of this utility model;

[0024] Figure 7 yes Figure 6 Enlarged view at point D;

[0025] Figure 8 This is another exploded view of the multi-screen display device of this utility model;

[0026] Figure 9 yes Figure 8 Enlarged view at point E in the middle;

[0027] Figure 10 This is another exploded view of the multi-screen display device of this utility model;

[0028] Figure 11 yes Figure 10 Enlarged view at point F;

[0029] Figure 12 yes Figure 1 A cross-sectional view along line G in the middle;

[0030] Figure 13 yes Figure 12 Enlarged view of point H in the middle;

[0031] Figure 14 yes Figure 12 Enlarged view of point I in the middle.

[0032] Reference numerals: First frame (1); Second frame (2); First receiving slot (11); Second receiving slot (21); First display (31); Second display (32); First frame (12); First base plate (13); First receiving space (14); First partition (15); First mounting slot (111); First locking block (311); First cover plate (16); First plate (161); Second plate (162); Second frame (22); Second base plate (23); Second receiving space (24); Second partition (25); Second cover plate (26); Third plate (261); Fourth plate (262); Rotating connector (4); First connecting module (41); Second connecting module (42); First shaft cylinder (411) ); First pivot (421); First connecting block (412); First connecting hole (4121); Second connecting hole (17); First wire hole (18); Second wire hole (27); First decorative piece (5); Groove (28); First wire groove (51); Support leg (29); Connecting assembly (7); Third connecting module (71); Fourth connecting module (72); Second decorative plate (73); Bracket (6); Interface (81); Control main board (82); Third wire hole (61); Fourth wire hole (271); Second wire groove (731); Fifth connecting hole (52); Sixth connecting hole (19); Handle groove (191); Handle (291); Second connecting block (422); Third connecting hole (4221); Fourth connecting hole (292). Detailed Implementation

[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0034] Reference Figures 1 to 14 This utility model provides a multi-screen display device, comprising:

[0035] A multi-screen display device, comprising:

[0036] The first frame 1 and the second frame 2 are connected to one side of the first frame 1 and one side of the second frame 2.

[0037] The first display 31 and the second display 32 are configured such that the first frame 1 includes at least two first receiving slots 11 for accommodating the first display 31, and the second frame 2 includes at least two second receiving slots 21 for accommodating the second display 32. With this structural arrangement, one side of the first frame 1 and one side of the second frame 2 are connected. The first frame 1 includes at least two first receiving slots 11, and the second frame 2 includes at least two second receiving slots 21. The first display 31 is disposed in the first receiving slot 11, and the second display 32 is disposed in the second receiving slot 21. This allows the multi-screen display device provided by this invention to display images on at least four screens, providing users with more display images and information, increasing user work collaboration efficiency and viewing experience.

[0038] In this embodiment, the first frame 1 includes a first border 12 and a first base plate 13. One side of the first border 12 is connected to the first base plate 13, and the first border 12 protrudes from the first base plate 13. The first border 12 and the first base plate 13 surround each other to form a first receiving space 14. With the above structural arrangement, the first border 12 and the first base plate 13 are connected to form the first receiving space 14, and the first border 12 protrudes from the first base plate 13. When the display is placed in the first receiving space 14, the first base plate 13 can support the display, the first border 12 can protect the periphery of the display, and prevent the display from falling off.

[0039] In this embodiment, the first frame 1 further includes at least one first partition 15, which is disposed in the first receiving space 14. The first partition 15 divides the first receiving space 14 into multiple first receiving slots 11, so that multiple first displays 31 are disposed in the multiple first receiving slots 11. Through the above structural arrangement, the first partition 15 is disposed in the first receiving space 14 to divide the first receiving space 14 into multiple first receiving slots 11. Specifically, the first partition 15 is connected to the first frame 12 and the first base plate 13, so that the first partition 15 is stably connected to the first frame 1. Through the above structural arrangement, the two ends of the first partition 15 are respectively connected to the first frame 12, and one side of the first partition 15 is connected to the first base plate 13, so that the first partition 15 can be stably connected to the first frame 1.

[0040] In this embodiment, the first receiving groove 11 includes a first mounting groove 111, and the back of the first display 31 includes a first locking block 311. The first locking block 311 is configured to engage with the first mounting groove 111, so that the first display 31 is engaged with the first mounting groove 111. With the above structural configuration, the first receiving groove 11 includes the first mounting groove 111, and the back of the first display 31 includes the first locking block 311. The size of the first locking block 311 matches that of the first mounting groove 111. When the first display 31 is installed in the first receiving groove 11, the first locking block 311 is precisely engaged with the first mounting groove 111, so that the first display 31 can be more securely installed in the first receiving groove 11.

[0041] In this embodiment, the first frame 1 further includes a first cover plate 16. After the first display 31 is placed in the first receiving groove 11, the first cover plate 16 is used to cover the first frame 1 to prevent the first display 31 from falling out of the first receiving groove 11. With the above structural arrangement, after the first display 31 is placed in the first receiving groove 11, the first cover plate 16 is used to cover the first frame 1 to prevent the first display 31 from falling out of the first receiving groove 11. Specifically, the first cover plate 16 includes a first plate 161 and at least one second plate 162 arranged around the first plate 161. The two ends of the second plate 162 are connected to the first plate 161. When the first cover plate 16 is used to cover the first frame 1, the position of the first plate 161 corresponds to the position of the first frame 12, and the position of the second plate 162 corresponds to the position of the first separator 15. The width of the first plate 161 is greater than the width of the first frame 12, and the width of the second plate 162 is greater than the width of the first separator 15, so that the first plate 161 and the second plate 162 press against part of the edge of the first display 31. With the above structural arrangement, the first cover plate 16 includes a first plate 161 and a second plate 162 arranged around the perimeter. The two ends of the second plate 162 are connected to the first plate 161. When the first cover plate 16 is closed on the first frame 1, the position of the first plate 161 corresponds to the position of the first frame 12, and the position of the second plate 162 corresponds to the position of the first separator 15. The width of the first plate 161 is greater than the width of the first frame 12, and the width of the second plate 162 is greater than the width of the first separator 15, so that the first plate 161 and the second plate 162 press against part of the edge of the first display 31 to prevent the first display 31 from falling off.

[0042] In this embodiment, the second frame 2 includes a second frame 22 and a second base plate 23. One side of the second frame 22 is connected to the second base plate 23, and the second frame 22 protrudes from the second base plate 23. The second frame 22 and the second base plate 23 surround each other to form a second receiving space 24. With the above structural arrangement, the second frame 22 and the second base plate 23 are connected to form the second receiving space 24, and the second frame 22 protrudes from the second base plate 23. When the display is placed in the second receiving space 24, the second base plate 23 can support the display, and the second frame 22 can protect the periphery of the display and prevent the display from falling off.

[0043] In this embodiment, the second frame 2 further includes at least one second partition 25, which is disposed in the second receiving space 24. The second partition 25 divides the second receiving space 24 into multiple second receiving slots 21, so that multiple second displays 32 are disposed within the multiple second receiving slots 21. Through the above structural arrangement, the second partition 25 is disposed in the second receiving space 24, dividing the second receiving space 24 into multiple second receiving slots 21. Specifically, the second partition 25 is connected to the second frame 22 and the second base plate 23, so that the second partition 25 and the second frame 22 are securely connected. Through the above structural arrangement, both ends of the second partition 25 are respectively connected to the second frame 22, and one side of the second partition 25 is connected to the second base plate 23, so that the second partition 25 can be securely connected to the second frame 2.

[0044] In this embodiment, the first frame 1 includes a recessed handle groove 191, and the second frame 2 includes a protruding handle 291. The handle 291 is trapezoidal in shape, and the longest side of the handle 291 is connected to the second frame 2. With the above structural arrangement, when the first frame 1 and the second frame 2 are folded together, the user can hold the handle 291 with one hand and use the other hand to engage the handle groove 191, and then apply force to rotate the first frame 1 and the second frame 2 to open them. The longest side of the handle 291 is connected to the second frame 2, and the area of ​​the longest side connected to the second frame 2 is the largest, thereby increasing the strength of the connection between the handle 291 and the second frame 2.

[0045] In this embodiment, the second frame 2 further includes a second cover plate 26. After the second display 32 is placed in the second receiving groove 21, the second cover plate 26 is used to cover the second frame 2 to prevent the second display 32 from falling out of the second receiving groove 21. With the above structural configuration, after the second display 32 is placed in the second receiving groove 21, the second cover plate 26 is used to cover the second frame 2 to prevent the second display 32 from falling out of the second receiving groove 21. Specifically, the second cover plate 26 includes a third plate 261 and at least one fourth plate 262 arranged around it. The two ends of the fourth plate 262 are connected to the third plate 261. When the second cover plate 26 is closed on the second frame 2, the position of the third plate 261 corresponds to the position of the second frame 22, and the position of the fourth plate 262 corresponds to the position of the second separator 25. The width of the third plate 261 is greater than the width of the second frame 22, and the width of the fourth plate 262 is greater than the width of the second separator 25, so that the third plate 261 and the fourth plate 262 press against part of the edge of the second display 32. With the above structural arrangement, the second cover plate 26 includes a third plate 261 and a fourth plate 262 arranged around it. The two ends of the fourth plate 262 are connected to the third plate 261. When the second cover plate 26 is closed on the second frame 2, the position of the third plate 261 corresponds to the position of the second frame 22, and the position of the fourth plate 262 corresponds to the position of the second separator 25. The width of the third plate 261 is greater than the width of the second frame 22, and the width of the fourth plate 262 is greater than the width of the second separator 25, so that the third plate 261 and the fourth plate 262 press against part of the edge of the second display 32 to prevent the second display 32 from falling off.

[0046] In this embodiment, the first display 31 is bonded to the first base plate 13 with adhesive. With this structural design, there is no need to drill screw holes in the first display 31 and the first base plate 13, nor to install complex clips. Using adhesive prevents damage to the first display 31 and the first base plate 13, resulting in a clean and neat appearance, reduced costs, and savings on mold costs.

[0047] In this embodiment, the second display 32 is bonded to the second base plate 23 with adhesive. With this structural design, there is no need to drill screw holes in the second display 32 and the second base plate 23, nor to install complex clips. Using adhesive prevents damage to the second display 32 and the second base plate 23, resulting in a clean and neat appearance, reduced costs, and savings on mold costs.

[0048] In this embodiment, the first frame 1 and the second frame 2 are rotatably connected. This structural arrangement allows for adjustment of the angle between the first frame 1 and the second frame 2, providing a more comfortable viewing angle for the user. Specifically, the multi-screen display device further includes at least one rotating connector 4, with both ends of the connector 4 connected to the first frame 1 and the second frame 2, respectively, enabling a rotatable connection between them.

[0049] In this embodiment, the first frame 1 and the second frame 2 rotate relative to each other between the maximum open position and the maximum folded position. In the maximum folded position, the front surfaces of the first frame 1 and the second frame 2 abut against each other; in the maximum open position, a portion of the front edge of the first frame 1 abuts against a portion of the back edge of the second frame 2, thus preventing further relative rotation. Through this structural arrangement, the relative rotation of the first frame 1 and the second frame 2 between the maximum open position and the maximum folded position allows them to open and close by 180 degrees, providing users with more options for adjusting the angle and improving the user experience.

[0050] In this embodiment, the rotating connector 4 includes a first connecting module 41 and a second connecting module 42. The first connecting module 41 is connected to the first frame 1, and the second connecting module 42 is connected to the second frame 2. The first connecting module 41 and the second connecting module 42 are rotatably connected. The first connecting module 41 includes a first shaft cylinder 411, and the second connecting module 42 includes a first rotating shaft 421. The first rotating shaft 421 is configured to be inserted into the first shaft cylinder 411 so that the first connecting module 41 and the second connecting module 42 are rotatably connected. With the above structural arrangement, the first connecting module 41 is connected to the first frame 1, and the second connecting module 42 is connected to the second frame 2. The first connecting module 41 and the second connecting module 42 are rotatably connected so that the first frame 1 and the second frame 2 are rotatably connected. The first rotating shaft 421 is inserted into the first shaft cylinder 411, so that the first connecting module 41 and the second connecting module 42 are rotatably connected. The structure is simple and reliable.

[0051] In this embodiment, the first connecting module 41 further includes a first connecting block 412, which is connected to the first frame 1 to connect the first connecting module 41 to the first frame 1. The first connecting block 412 includes a first connecting hole 4121, and the first frame 1 includes a second connecting hole 17. External fasteners are inserted into the first connecting hole 4121 and the second connecting hole 17 to connect the first connecting block 412 to the first frame 1. With the above structural configuration, the first connecting block 412 includes the first connecting hole 4121, and the first frame 1 includes the second connecting hole 17. By inserting fasteners into the first connecting hole 4121 and the second connecting hole 17, the first connecting module 41 is fixedly connected to the first frame 1.

[0052] In this embodiment, the second connecting module 42 further includes a second connecting block 422, which is connected to the second frame 2 to connect the second connecting module 42 to the second frame 2. The second connecting block 422 includes a third connecting hole 4221, and the second frame 2 also includes a fourth connecting hole 292. External fasteners are inserted into the third connecting hole 4221 and the fourth connecting hole 292 to connect the second connecting block 422 to the second frame 2. With the above structural configuration, the second connecting block 422 includes a third connecting hole 4221, and the second frame 2 also includes a fourth connecting hole 292. By inserting fasteners into the third connecting hole 4221 and the fourth connecting hole 292, the second connecting module 42 and the second frame 2 are fixedly connected.

[0053] In this embodiment, the first frame 1 includes at least one first wire hole 18, and the second frame 2 includes at least one second wire hole 27. The positions of the first wire hole 18 and the second wire hole 27 correspond to the positions of the second wire hole 27, so that external wires can pass through the first wire hole 18 and the second wire hole 27 to electrically connect the first display 31 and the second display 32. With the above structural arrangement, the second frame 2 includes the second wire hole 27, and the first frame 1 includes the first wire hole 18. Wires can pass through the first wire hole 18 and the second wire hole 27 to connect the first display 31 and the second display 32, thereby electrically connecting the first display 31 and the second display 32.

[0054] In this embodiment, the second frame 2 includes a groove 28, and a second wire hole 27 is disposed in the groove 28. The multi-screen display device also includes a first decorative element 5, which is disposed in the groove 28 and detachably connected to the first frame 1. The first decorative element 5 is used to cover the first wire hole 18 and the second wire hole 27. With the above structural arrangement, the second frame 2 includes a groove 28, the second wire hole 27 is disposed in the groove 28, the first decorative element 5 is disposed in the groove 28, and the first decorative element 5 is detachably connected to the first frame 1. The first decorative element 5 can cover the first wire hole 18 and the second wire hole 27, so that the wires are not exposed, which increases both safety and aesthetics, and facilitates user disassembly.

[0055] In this embodiment, the first decorative element 5 includes a fifth connecting hole 52, and the first frame 1 includes a sixth connecting hole 19. External fasteners are inserted into the fifth connecting hole 52 and the sixth connecting hole 19 to detachably connect the first decorative element 5 to the first frame 1. With the above structural arrangement, the fasteners are inserted into the fifth connecting hole 52 and the sixth connecting hole 19 to detachably connect the first decorative element 5 to the first frame 1. The structure is simple and durable, and convenient for users to assemble and disassemble.

[0056] In this embodiment, the first decorative element 5 includes at least one first wire groove 51, which is connected to the first wire hole 18 and the second wire hole 27. The first wire groove 51 is used to accommodate external wires passing through the first wire hole 18 and the second wire hole 27. With the above structural arrangement, the first wire groove 51 of the first decorative element 5 is connected to the first wire hole 18 and the second wire hole 27, and the first wire groove 51 is used to accommodate external wires passing through the first wire hole 18 and the second wire hole 27, providing more bending space for the wires and preventing them from being squeezed.

[0057] In this embodiment, the multi-screen display device further includes a bracket 6, which is rotatably connected to the multi-screen display device and serves to support the multi-screen display device. Through this structural arrangement, the bracket 6 is rotatably connected to the multi-screen display device, allowing a certain angle to be formed between the bracket 6 and the multi-screen display device, thus enabling the bracket 6 to stably support the multi-screen display device.

[0058] In this embodiment, the second frame 2 includes legs 29, which cooperate with the bracket 6 to support the multi-screen display device. With the above structural arrangement, the legs 29 protrude from the second frame 2, are used to support the device on the table, and can cooperate with the bracket 6 to make the multi-screen display device more stable.

[0059] In this embodiment, the bracket 6 is rotatably connected to the second frame 2; the multi-screen display device also includes a connecting component 7, which connects the bracket 6 and the second frame 2 respectively, so that the bracket 6 and the second frame 2 are rotatably connected. Through the above structural arrangement, the bracket 6 and the second frame 2 are respectively connected to the connecting component 7, so that the bracket 6 and the second frame 2 are rotatably connected. Specifically, the connecting component 7 includes a third connecting module 71, a fourth connecting module 72, and a second decorative plate 73. The third connecting module 71 is connected to the bracket 6 via external fasteners, the third connecting module 71 and the fourth connecting module 72 are rotatably connected, the fourth connecting module 72 is connected to the second decorative plate 73 via external fasteners, and the second decorative plate 73 is connected to the second frame 2 via external fasteners. With the above structural configuration, the connecting component 7 includes a third connecting module 71, a fourth connecting module 72, and a second decorative panel 73. The third connecting module 71 is connected to the bracket 6 by fasteners. The third connecting module 71 and the fourth connecting module 72 are rotatably connected. The fourth connecting module 72 is connected to the second decorative panel 73 by fasteners. The second decorative panel 73 is connected to the second frame 2 by fasteners. When the bracket 6 and the second frame 2 rotate relative to each other, the bracket 6 drives the third connecting module 71 and the second frame 2 to drive the fourth connecting module 72 and the second decorative panel 73 to rotate relative to each other.

[0060] In this embodiment, the multi-screen display device further includes multiple interfaces 81 and a control motherboard 82. The interfaces 81 and the control motherboard 82 are electrically connected. The interfaces 81 are mounted on the bracket 6, and the control motherboard 82 is mounted inside the bracket 6. The bracket 6 includes a third wire hole 61, and the second frame 2 includes a fourth wire hole 271. External wires pass through the third wire hole 61 and the fourth wire hole 271 to connect the control motherboard 82 to the first display 31 and the second display 32, so that the control motherboard 82 is electrically connected to the first display 31 and the second display 32, respectively. With the above structural arrangement, there are multiple interfaces 81, which can be commonly used functional ports such as power interfaces, HDMI, USB, and Type-C. The interfaces 81 are mounted on the bracket 6 instead of on the first frame 1 and the second frame 2, which can reduce the thickness of the first frame 1 and the second frame 2 and make reasonable use of the internal space of the bracket 6. The interfaces 81 are electrically connected to the control motherboard 82, which is mounted inside the bracket 6, and the control motherboard 82 is electrically connected to the first display 31 and the second display 32. Specifically, the bracket 6 includes a third wire hole 61, and the second frame 2 includes a fourth wire hole 271. The wires pass through the third wire hole 61 and the fourth wire hole 271 and are connected to the control motherboard 82, the first display 31 and the second display 32, so that the control motherboard 82 is electrically connected to the first display 31 and the second display 32.

[0061] In this embodiment, the second decorative panel 73 includes a second wire groove 731, which communicates with the third wire hole 61 and the fourth wire hole 271. The second wire groove 731 is used to accommodate external wires. Through the above structural arrangement, the second decorative panel 73 includes a second wire groove 731, which communicates with the third wire hole 61 and the fourth wire hole 271. The second wire groove 731 is used to accommodate wires passing through the third wire hole 61 and the fourth wire hole 271, providing more space for the wires to move, preventing them from being squeezed, and improving both safety and aesthetics.

[0062] The above descriptions provide one or more embodiments in conjunction with specific details, but do not imply that the specific implementation of this utility model is limited to these descriptions. Any methods or structures that are similar to or identical to those of this utility model, or any technical deductions or substitutions made based on the concept of this utility model, should be considered within the scope of protection of this utility model.

Claims

1. A multi-screen display device, characterized in that, include: A first frame (1) and a second frame (2), wherein one side of the first frame (1) and one side of the second frame (2) are connected; The first display (31) and the second display (32) are provided. The first frame (1) includes at least two first receiving slots (11) for receiving the first display (31). The second frame (2) includes at least two second receiving slots (21) for receiving the second display (32).

2. The multi-screen display device according to claim 1, characterized in that, The first frame (1) includes a first side frame (12) and a first base plate (13). One side of the first side frame (12) is connected to the first base plate (13), and the first side frame (12) protrudes from the first base plate (13). The first side frame (12) and the first base plate (13) surround each other to form a first receiving space (14). The first display (31) is bonded to the first base plate (13) with adhesive. The first frame (1) also includes at least one first partition (15). The first partition (15) is disposed in the first receiving space (14). The first partition (15) divides the first receiving space (14) into a plurality of first receiving slots (11) so that a plurality of first displays (31) are disposed in a plurality of first receiving slots (11). The first partition (15) is connected to the first side frame (12) and the first base plate (13) so that the first partition (15) is securely connected to the first frame (1).

3. The multi-screen display device according to claim 1, characterized in that, The first receiving groove (11) includes a first mounting groove (111), and the back of the first display (31) includes a first locking block (311). The first locking block (311) is configured to engage in the first mounting groove (111) so that the first display (31) is engaged in the first mounting groove (111). The first frame (1) includes a recessed handle groove (191), and the second frame (2) includes a protruding handle (291). The handle (291) is trapezoidal in shape, and the longest side of the handle (291) is connected to the second frame (2).

4. The multi-screen display device according to claim 2, characterized in that, The first frame (1) further includes a first cover plate (16). After the first display (31) is placed in the first receiving groove (11), the first cover plate (16) is used to cover the first frame (1) to prevent the first display (31) from falling out of the first receiving groove (11). The first cover plate (16) includes a first plate (161) arranged around the first frame (11) and at least one second plate (162). The two ends of the second plate (162) are connected to the first plate (161). When the first cover plate (16) is covered on the first frame (1), the position of the first plate (161) corresponds to the position of the first frame (12), and the position of the second plate (162) corresponds to the position of the first separator (15). The width of the first plate (161) is greater than the width of the first frame (12), and the width of the second plate (162) is greater than the width of the first separator (15), so that the first plate (161) and the second plate (162) press against a portion of the edge of the first display (31).

5. The multi-screen display device according to claim 1, characterized in that, The second frame (2) includes a second frame (22) and a second base plate (23). One side of the second frame (22) is connected to the second base plate (23), and the second frame (22) protrudes from the second base plate (23). The second frame (22) and the second base plate (23) surround each other to form a second receiving space (24). The second display (32) is glued to the second base plate (23).

6. The multi-screen display device according to claim 5, characterized in that, The second frame (2) further includes at least one second partition (25), which is disposed in the second receiving space (24) and divides the second receiving space (24) into a plurality of second receiving slots (21) so that a plurality of second displays (32) are disposed in the plurality of second receiving slots (21); the second partition (25) is connected to the second frame (22) and the second base plate (23) so that the second partition (25) and the second frame (22) are securely connected; the second frame (2) further includes a second cover plate (26), which is used to cover the second frame (2) after the second displays (32) are disposed in the second receiving slots (21) to prevent the second displays (32) from being disposed in the second receiving slots (21). The second display (32) falls out of the second receiving slot (21); the second cover plate (26) includes a third plate (261) arranged around the second and at least one fourth plate (262), the fourth plate (262) being connected to the third plate (261) at both ends; when the second cover plate (26) is closed on the second frame (2), the position of the third plate (261) corresponds to the position of the second frame (22), the position of the fourth plate (262) corresponds to the position of the second separator (25), the width of the third plate (261) is greater than the width of the second frame (22), and the width of the fourth plate (262) is greater than the width of the second separator (25), so that the third plate (261) and the fourth plate (262) press against a portion of the edge of the second display (32).

7. The multi-screen display device according to claim 1, characterized in that, The first frame (1) is rotatably connected to the second frame (2); the multi-screen display device further includes at least one rotating connector (4), the two ends of which are respectively connected to the first frame (1) and the second frame (2) so that the first frame (1) and the second frame (2) are rotatably connected; the first frame (1) and the second frame (2) rotate relative to each other between the maximum open position and the maximum folded position; in the maximum folded position, the front surfaces of the first frame (1) and the second frame (2) abut against each other, and in the maximum open position, a portion of the front edge of the first frame (1) abuts against a portion of the back edge of the second frame (2) to prevent the first frame (1) and the second frame (2) from continuing to rotate relative to each other.

8. The multi-screen display device according to claim 7, characterized in that, The rotating connector (4) includes a first connecting module (41) and a second connecting module (42). The first connecting module (41) is connected to the first frame (1), and the second connecting module (42) is connected to the second frame (2). The first connecting module (41) and the second connecting module (42) are rotatably connected. The first connecting module (41) includes a first shaft cylinder (411), and the second connecting module (42) includes a first rotating shaft (421). The first rotating shaft (421) is configured to be inserted into the first shaft cylinder (411) so that the first connecting module (41) and the second connecting module (42) are rotatably connected. The first connecting module (41) also includes a first connecting block (412), which is connected to the first frame (1) so that the first connecting module (41) and the first frame (1) are rotatably connected. The first connecting block (412) includes a first connecting hole (4121), and the first frame (1) also includes a second connecting hole (17). An external fastener is inserted into the first connecting hole (4121) and the second connecting hole (17) to connect the first connecting block (412) to the first frame (1). The second connecting module (42) also includes a second connecting block (422), and the second connecting block (422) is connected to the second frame (2) to connect the second connecting module (42) to the second frame (2). The second connecting block (422) includes a third connecting hole (4221), and the second frame (2) also includes a fourth connecting hole (292). An external fastener is inserted into the third connecting hole (4221) and the fourth connecting hole (292) to connect the second connecting block (422) to the second frame (2).

9. The multi-screen display device according to claim 1, characterized in that, The first frame (1) includes at least one first wire hole (18), and the second frame (2) includes at least one second wire hole (27). The positions of the first wire hole (18) and the second wire hole (27) correspond to the positions of the second wire hole (27) so that external wires can pass through the first wire hole (18) and the second wire hole (27) to electrically connect the first display (31) and the second display (32). The second frame (2) includes a groove (28), and the second wire hole (27) is disposed in the groove (28). The multi-screen display device also includes a first decorative element (5), which is disposed in the groove (28) and is detachable from the first frame (1). The first decorative element (5) is used to cover the first wire hole (18) and the second wire hole (27); the first decorative element (5) includes a fifth connecting hole (52), and the first frame (1) includes a sixth connecting hole (19). External fasteners are inserted into the fifth connecting hole (52) and the sixth connecting hole (19) to make the first decorative element (5) detachably connected to the first frame (1); the first decorative element (5) includes at least one first wire groove (51), which communicates with the first wire hole (18) and the second wire hole (27). The first wire groove (51) is used to receive external wires passing through the first wire hole (18) and the second wire hole (27).

10. The multi-screen display device according to claim 1, characterized in that, The multi-screen display device further includes a bracket (6), which is rotatably connected to the multi-screen display device and is used to support the multi-screen display device; the second frame (2) includes a leg (29), which is used to cooperate with the bracket (6) to support the multi-screen display device; the bracket (6) is rotatably connected to the second frame (2); the multi-screen display device further includes a connecting component (7), which connects the bracket (6) and the second frame (2) respectively, so that the bracket (6) and the second frame (2) are rotatably connected; the connecting component (7) includes a third connecting module (71), a fourth connecting module (72), and a second decorative panel (73); the third connecting module (71) is connected to the bracket (6) through an external fastener; the third connecting module (71) and the fourth connecting module (72) are rotatably connected; the fourth connecting module (72) is connected to the second decorative panel (73) through an external fastener; the second decorative panel (73) Connected to the second frame (2) by external fasteners; the multi-screen display device also includes multiple interfaces (81) and a control motherboard (82), the interfaces (81) and the control motherboard (82) are electrically connected, the interfaces (81) are disposed on the bracket (6), the control motherboard (82) is disposed inside the bracket (6), the bracket (6) includes a third wire hole (61), the second frame (2) includes a fourth wire hole (271), external wires pass through the third wire hole (61) and the fourth wire hole (271) to connect the control motherboard (82) with the first display (31) and the second display (32), so that the control motherboard (82) is electrically connected to the first display (31) and the second display (32) respectively; the second decorative plate (73) includes a second wire groove (731), the second wire groove (731) communicates with the third wire hole (61) and the fourth wire hole (271), and the second wire groove (731) is used to accommodate external wires.