Display device of computer semiconductor quantum chip structure and method thereof

By designing a display device with a computer semiconductor quantum chip structure, using components such as mobile board, gear, rack, magnetic block and support structure, the problem of loose connection between the plug and the display device is solved, and the stable connection between the plug and the display screen is achieved, and the stability of the use of the display screen is improved.

CN120353301AInactive Publication Date: 2025-07-22湖北经济管理大学
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510264430.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-06
Publication Date
2025-07-22
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the prior art, in the display device with a computer semiconductor quantum chip structure, the connection between the plug and the display device is easily loosened, resulting in poor contact and affecting the use of the computer.

Method used

By designing a display device with a computer semiconductor quantum chip structure, the mobile board, gear, rack, magnetic block and support structure are used to achieve a stable connection between the plug and the display screen, including the coordination of the card block, the card slot, the slider and the support board, to ensure the stable contact between the plug and the display screen.

Benefits of technology

Effectively prevent the connection between the plug and the display screen from loosening, improve the stability of the display screen, prevent the connection cable from moving or entangling, and ensure the normal use of the display screen.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120353301A_ABST
    Figure CN120353301A_ABST
Patent Text Reader

Abstract

The invention belongs to the technical field of display devices, and discloses a display device of a computer semiconductor quantum chip structure and a method thereof.The display device comprises a display screen, a supporting rod is arranged on the rear side of the display screen, a base is fixedly connected to the bottom of the supporting rod, a mounting groove is formed in the bottom end of the rear side of the display screen, and a protection plate is arranged on one side of the mounting groove; a fixing plate is arranged at the bottom of the mounting groove, and one side of the fixing plate is fixedly connected with the inner wall of the bottom end of the mounting groove. The plug is inserted into the insertion block, the first clamping block and the second clamping block fix the end of the connecting line, and meanwhile, the fixing block limits the attached contact between the contact end at one end of the insertion block and the contact end in the insertion block, so that the plug and the display screen are fixedly connected, and the connecting line and the plug are conveniently prevented from moving and loosening; therefore, poor contact between the plug and the display screen is caused and use of the display screen is affected.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention belongs to the technical field of display devices, and particularly relates to a display device with a computer semiconductor quantum chip structure and a method thereof. Background Art

[0002] A quantum computer is a physical device that follows the laws of quantum mechanics to perform high-speed mathematical and logical operations, store, and process quantum information. As the most core part of a quantum computer, a semiconductor quantum chip is a hardware device for performing quantum computing and quantum information processing. A semiconductor quantum chip is a new type of chip based on the principles of quantum mechanics. Different from traditional binary computers, a semiconductor quantum chip uses quantum bits instead of traditional bits, and can achieve more efficient computing and encryption.

[0003] In the prior art, when using a display device with a computer semiconductor quantum chip structure, the plug is prone to loosen when connected to the display device, resulting in poor contact and affecting the use of the computer. Summary of the Invention

[0004] In view of the problems in the prior art, the present invention proposes the following technical solution: A display device with a computer semiconductor quantum chip structure, including a display screen. A support rod is arranged at the rear side of the display screen, and a base is fixedly connected to the bottom of the support rod. An installation groove is opened at the bottom end of the rear side of the display screen. A protective plate is arranged on one side of the installation groove. A pull block is fixedly connected to one side of the protective plate. A fixing plate is arranged at the bottom of the installation groove, and one side of the fixing plate is fixedly connected to the inner wall of the bottom end of the installation groove. A power button is arranged on the inner wall of the installation groove. A start button is arranged on one side of the power button. Two insertion blocks are arranged on one side of the start button, and the tops of the two insertion blocks are fixedly connected to the inner wall of the top of the installation groove. Moving openings are opened on both sides of the insertion block. A contact end is arranged on the inner wall of the top of the insertion block. Fixing structures are arranged on both sides of the contact end and inside the insertion block. A moving plate is arranged at the bottom end of the insertion block. A placement opening is opened in the middle of the moving plate. First racks are fixedly connected to both sides of the moving plate. A gear is meshed with one side of the first rack close to the moving opening. A rotating rod is fixedly connected to the middle of the gear. A second rack is meshed with one side of the gear. The bottom end of the second rack is movably connected to one side of the insertion block. One end of the second rack is fixedly connected to a connecting plate. Two connecting springs are fixedly connected to one side of the connecting plate. One end of each of the two connecting springs is fixedly connected to a first magnetic block. A first clamping block and a second clamping block are arranged at the bottom of the two insertion blocks. One end of the first clamping block and the second clamping block are rotatably connected. The other end of the first clamping block is fixedly connected to an insertion rod. A slot is opened at the other end of the second clamping block. The insertion rod is inserted into the slot. A slider is fixedly connected to one side of the second clamping block close to the inner wall of the installation groove. A chute is opened on the inner wall of the installation groove. The slider is slidably connected to the chute. Second magnetic blocks are fixedly connected to both sides of the first clamping block and the second clamping block. The first magnetic block and the second magnetic block are magnetically connected.

[0005] As a preference of the above technical solution, a moving groove is opened at the top of the installation groove, the protection plate is slidably connected to the moving groove, the bottom of the protection plate is located on the top of the fixing plate, two fixing ports are opened on the fixing plate, a clamping interface is opened in the middle of the first clamping block and the second clamping block, the two fixing ports are arranged corresponding to the clamping interface, the first clamping block and the second clamping block are both located on the top of the fixing plate, and the first clamping block and the second clamping block are respectively arranged corresponding to the two inserting blocks.

[0006] As a preference of the above technical solution, the moving plate, the second rack are slidably connected to the inner wall of the inserting block, the first rack is located inside the inserting block, the second rack is located outside the inserting block, an arc-shaped block is fixedly connected to one side of the first rack close to the gear, the connecting plate and the first magnet are located on one side of the moving port, the gear and the rotating rod are both located inside the moving port, and the rotating rod is rotatably connected to the inner wall of the moving port.

[0007] As a preference of the above technical solution, the fixing structure includes a moving block, an active block is fixedly connected to the top of the moving block, a fixing block is fixedly connected to one side of the moving block, a moving groove is opened on the inner wall of the bottom of the installation block, the active block is slidably connected to the moving groove, a compression spring is fixedly connected to one side of the active block, and one end of the compression spring is fixedly connected to the inner wall of the moving groove.

[0008] As a preference of the above technical solution, one side of the moving block close to the moving port is a slope, the moving block is located on the top of the arc-shaped block, the fixing blocks are located on both sides of the contact end, and the moving block, the fixing block, the active block and the compression spring are symmetrically arranged with the center of the contact end as the center.

[0009] As a preference of the above technical solution, moving ports are opened on both sides of the base, a groove is opened at the bottom of the base, a fixing groove is opened at one end of the support rod close to the base, and a support structure is arranged inside the fixing groove and the groove.

[0010] As a preference of the above technical solution, the support structure includes a motor, a threaded rod is fixedly connected to the output end of the motor, the bottom of the threaded rod passes through the fixing groove and is rotatably connected to the inner wall of the bottom of the groove, a threaded block is threadedly connected to the threaded rod, rotating plates are hinged to both ends of the threaded block, and one end of the rotating plate passes through the fixing groove and extends into the groove to be hinged to a support plate.

[0011] As a preference of the above technical solution, the bottom of the motor is fixedly installed on the inner wall of the top of the fixing groove, the threaded block is located at one end of the threaded rod close to the motor, limiting rods are movably connected to both ends of the threaded block, the bottom of the limiting rod is fixedly connected to the inner wall of the bottom of the groove, a limiting port is opened on one side of the support plate close to the inserting block, and a limiting structure is arranged inside the limiting port.

[0012] As a preference of the above technical solution, the limiting structure includes two sliding blocks. The two sliding blocks are located on one side of the support plate. A fixed rod is fixedly connected to one side of the two sliding blocks. A first limiting plate and a second limiting plate are respectively fixedly connected to one side of the fixed rod. The bottoms of the first limiting plate and the second limiting plate are movably connected to the inner wall of the limiting opening. Two limiting rods are fixedly connected to the opposite sides of the first limiting plate and the second limiting plate. A limiting groove is formed between the two limiting rods and on one side of the limiting plate. The limiting rod on one side of the first limiting plate is inserted into the limiting groove on one side of the second limiting plate, and the limiting rod on one side of the second limiting plate is inserted into the limiting groove on one side of the first limiting plate.

[0013] The present invention also provides a method for using the display device with the above computer semiconductor quantum chip structure, and the method includes the following steps. Step 1: Place the display screen on the desktop through the base and the support rod. Push the pull block upward so that the protective plate moves upward into the moving groove. Rotate the first latch to separate the insertion rod from the insertion slot. Pass the connecting wire through the fixed opening and place it into the clamping interface in the middle of the first latch and the second latch. The plug at one end of the connecting wire is located on the top of the first latch and the second latch. Then rotate the first latch back to its original position and insert the insertion rod into the insertion slot to limit the connecting wire inside the first latch and the second latch. Step 2: Push the first latch upward to drive the second latch to move, so that the slider on one side of the second latch moves upward along the sliding groove, thereby driving the first latch and the second latch to drive the connecting wire to move upward, and driving the plug to move upward to the bottom of the insertion block. Move the contact end at one end of the plug into the placement opening in the middle of the moving plate. Then move the plug upward to push the moving plate into the insertion block. When the moving plate moves, it drives the first rack to move into the insertion block, so that the gear drives the rotating rod to rotate, causing the first rack to move to the bottom end of the insertion block. When the moving plate and the first rack move to the top of the insertion block, the contact end of the plug is connected to the contact end inside the insertion block. At the same time, the second rack drives the connecting plate and the first magnetic block to move to both sides of the first latch and the second latch, and the first magnetic block and the second magnetic block are magnetically connected to fix the positions of the connecting wire and the plug. Step 3: When the first rack moves upward, it drives the arc-shaped block at the top to move together. When the contact end at one end of the plug contacts the contact end inside the insertion block, the first rack drives the arc-shaped block to move along the inclined surface on one side of the moving block, so that the movable block moves in the movable groove and stretches the compression spring, thereby causing the fixed block to move to both sides of the contact end of the plug and the contact end inside the insertion block to limit the connection of the two contact ends and prevent the two contact ends from moving when they are in contact connection. Step 4: Finally, press the start button to make the motor drive the threaded rod to rotate. Under the action of the limiting rod, the threaded block moves downward along the threaded rod, causing the rotating plate to deflect and change the angle, thereby pushing the support plate to move from the inside of the groove to both sides of the base through the movable opening, increasing the supporting area of the base and the support rod for the display screen. When the support plate near the plug block moves to the outside of the base, the connecting wire is located between the two limiting structures. Then, slide the two sliding blocks to drive the fixed rod to move, making the first limiting plate and the second limiting plate move closer to each other. When the limiting rod on one side of the first limiting plate is inserted into the limiting groove on one side of the second limiting plate, and the limiting rod on one side of the second limiting plate is inserted into the limiting groove on one side of the first limiting plate, the bottom end of the connecting wire is limited, which is convenient for preventing the connecting wire from being wound, so that the connection between the plug and the display screen is fixed.

[0014] The beneficial effects of the present invention are as follows: (1) In the present invention, by inserting the plug into the plug block, using the movement of the moving plate, through the action of the first rack, gear and second rack, the first magnetic block and the second magnetic block are magnetically connected, so that the first clamping block and the second clamping block fix the end of the connecting wire. At the same time, the movement of the arc-shaped block is driven by the first rack, pushing the moving block to drive the fixed block to move, so that the contact between the contact end of the fixed block at one end of the plug block and the contact end inside the plug block is limited, thereby fixing the connection between the plug and the display screen, which is convenient for preventing the connecting wire from moving and the plug from loosening, resulting in poor contact between the plug and the display screen and affecting the use of the display screen. (2) In the present invention, the supporting area of the base is increased by the movement of the support plate, improving the stability of the display screen, preventing the display screen from being placed unstably and affecting the use of the display screen. And when the support plate moves to the outside of the base, through the limiting opening of the support plate near the plug block, the bottom end of the connecting wire is limited by the limiting structure, so as to facilitate keeping the connecting wire stable and preventing the connecting wire from moving or winding and affecting the connection between the plug and the display screen, further improving the stability of the connection between the plug and the display screen. Description of the Drawings

[0015] Figure 1 Shows the overall structure diagram of the embodiment; Figure 2 Shows the structure diagram of the base and the bottom of the display screen of the embodiment; Figure 3 Shows the structure diagram inside the installation groove of the embodiment; Figure 4 Shows the structure diagram of the installation groove and the fixing plate of the embodiment; Figure 5 Shows the structure diagram of the plug block, the first clamping block and the second clamping block of the embodiment; Figure 6 Shows the structure diagram of the connection between the plug and the plug block of the embodiment; Figure 7 Shown is the structural diagram of the embodiment insert block and both sides of the insert block; Figure 8 Shown is the internal structural diagram of the embodiment insert block; Figure 9 Shown is the structural diagram of the embodiment second rack, connecting plate and first magnet; Figure 10 Shown is the internal structural diagram of the embodiment fixing groove; Figure 11 Shown is the structural diagram of the embodiment support structure; Figure 12 Shown is the structural diagram of the embodiment limiting structure.

[0016] In the figure: 1, display screen; 2, support rod; 3, base; 4, protection plate; 5, pulling block; 6, fixing plate; 7, power button; 8, start button; 9, insert block; 10, contact end; 11, moving plate; 12, first rack; 13, gear; 14, second rack; 15, connecting plate; 16, connecting spring; 17, first magnet; 18, first clamping block; 19, second clamping block; 20, inserting rod; 21, sliding block; 22, second magnet; 23, arc-shaped block; 24, moving block; 25, movable block; 26, fixed block; 27, compression spring; 28, support structure; 281, motor; 282, threaded rod; 283, threaded block; 284, rotating plate; 285, support plate; 29, limiting structure; 291, sliding block; 292, fixed rod; 293, first limiting plate; 294, second limiting plate; 295, limiting rod. Detailed implementation manners

[0017] To make the objectives, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions of the present invention will be clearly and completely described below in conjunction with the embodiments.

[0018] The present invention provides a display device for a computer semiconductor quantum chip structure, as Figures 1-9As shown in the figure, it includes a display screen 1. A support rod 2 is provided at the rear side of the display screen 1. The bottom of the support rod 2 is fixedly connected to a base 3. An installation groove is opened at the bottom end of the rear side of the display screen 1. A protective plate 4 is provided on one side of the installation groove. A pull block 5 is fixedly connected to one side of the protective plate 4. A fixing plate 6 is provided at the bottom of the installation groove. One side of the fixing plate 6 is fixedly connected to the inner wall of the bottom end of the installation groove. A power button 7 is provided on the inner wall of the installation groove. A start button 8 is provided on one side of the power button 7. Two insertion blocks 9 are provided on one side of the start button 8. The tops of the two insertion blocks 9 are fixedly connected to the inner wall of the top of the installation groove. Moving openings are opened on both sides of the insertion block 9. A contact end 10 is provided on the inner wall of the top of the insertion block 9. Fixing structures are provided on both sides of the contact end 10 and inside the insertion block 9. A moving plate 11 is provided at the bottom end of the insertion block 9. A placement opening is opened in the middle of the moving plate 11. First rack bars 12 are fixedly connected to both sides of the moving plate 11. A gear 13 is meshed with one side of the first rack bar 12 close to the moving opening. A rotating rod is fixedly connected to the middle of the gear 13. A second rack bar 14 is meshed with one side of the gear 13. The bottom end of the second rack bar 14 is movably connected to one side of the insertion block 9. One end of the second rack bar 14 is fixedly connected to a connecting plate 15. Two connecting springs 16 are fixedly connected to one side of the connecting plate 15. One end of the two connecting springs 16 is fixedly connected to a first magnet 17. First clamping blocks 18 and second clamping blocks 19 are provided at the bottom of the two insertion blocks 9. One end of the first clamping block 18 and the second clamping block 19 are rotatably connected. The other end of the first clamping block 18 is fixedly connected to an insertion rod 20. A slot is opened at the other end of the second clamping block 19. The insertion rod 20 is inserted into the slot. A slider 21 is fixedly connected to one side of the second clamping block 19 close to the inner wall of the installation groove. A sliding groove is opened on the inner wall of the installation groove. The slider 21 is slidably connected to the sliding groove. Second magnets 22 are fixedly connected to both sides of the first clamping block 18 and the second clamping block 19. The first magnet 17 is magnetically connected to the second magnet 22.

[0019] A moving groove is opened at the top of the installation groove. The protective plate 4 is slidably connected to the moving groove. The bottom of the protective plate 4 is located on the top of the fixing plate 6. Two fixing openings are opened on the fixing plate 6. Clamping interfaces are opened in the middle of the first clamping block 18 and the second clamping block 19. The two fixing openings and the clamping interfaces are arranged correspondingly. The first clamping block 18 and the second clamping block 19 are both located on the top of the fixing plate 6. The first clamping block 18 and the second clamping block 19 are respectively arranged corresponding to the two insertion blocks 9.

[0020] The display screen 1 can be easily placed on the desktop through the support rod 2 and the base 3. When it is necessary to connect the plug to the display screen 1, the protection plate 4 is pushed upward so that the protection plate 4 moves into the moving groove, exposing the plug block 9, the first clamping block 18 and the second clamping block 19 inside the installation groove. The first clamping block 18 is rotated to separate the plug rod 20 from the slot. The connecting wire is passed through the fixing port and placed inside the clamping interface in the middle of the first clamping block 18 and the second clamping block 19. The plug at one end of the connecting wire is placed on the top of the first clamping block 18 and the second clamping block 19. Then the first clamping block 18 is rotated back to its original position. The connecting wire is limited inside the first clamping block 18 and the second clamping block 19 by inserting the plug rod 20 into the slot. The first clamping block 18 is pushed upward to drive the second clamping block 19 to move, so that the slider 21 on one side of the second clamping block 19 moves upward along the sliding groove, thereby driving the first clamping block 18, the second clamping block 19 and the connecting wire to move upward, and driving the plug to move upward to the bottom of the plug block 9. The contact end 10 at one end of the plug is moved into the placement port in the middle of the moving plate 11. Then the plug is pushed upward to drive the moving plate 11 to move into the plug block 9. When the moving plate 11 moves, it drives the first rack 12 to move into the plug block 9, so that the gear 13 drives the rotating rod to rotate, and the first rack 12 moves to the bottom end of the plug block 9. When the moving plate 11 and the first rack 12 move to the top of the plug block 9, the contact end 10 of the plug is connected to the contact end 10 inside the plug block 9. The two connected contact ends 10 are fixed by the fixing structure, which is convenient for the two contact ends 10 not to move when connected. At the same time, the second rack 14 drives the connecting plate 15 and the first magnet 17 to move to both sides of the first clamping block 18 and the second clamping block 19. The first magnet 17 is magnetically connected to the second magnet 22, and the connecting spring 16 is stretched, so that the first magnet 17 and the second magnet 22 fix the first clamping block 18 and the second clamping block 19, fixing the positions of the connecting wire and the plug. Then the pull block 5 is pushed downward so that the protection plate 4 moves from the inside of the movable groove to the top of the fixing plate 6, protecting the connecting wire, the plug and the display screen 1 inside the installation groove, making the connection between the plug and the display screen 1 not loose, and being able to prevent dust from entering the installation groove, which is convenient for use.

[0021] As Figures 5-8 shown, the moving plate 11, the second rack 14 are slidably connected to the inner wall of the plug block 9. The first rack 12 is located inside the plug block 9, the second rack 14 is located outside the plug block 9. An arc-shaped block 23 is fixedly connected to the side of the first rack 12 close to the gear 13. The connecting plate 15 and the first magnet 17 are located on one side of the moving port. The gear 13 and the rotating rod are both located inside the moving port. The rotating rod is rotatably connected to the inner wall of the moving port.

[0022] When the plug is located on one side of the moving plate 11 and the contact end 10 on one side of the plug is inside the placement opening, the plug pushes the moving plate 11 to move, so that the moving plate 11 drives the first rack 12 to move along the inner wall of the plug block 9, so that the first rack 12 drives the arc-shaped block 23 to move. When the contact end 10 at one end of the plug fits with the contact end 10 inside the plug block 9, the plug moves into the plug block 9. The moving plate 11 drives the first rack 12 to move towards the top of the plug block 9. Through the push of the arc-shaped block 23, the fixing structure limits the two contact ends 10. At the same time, the gear 13 drives the rotating rod to rotate, so that the second rack 14 drives the connecting plate 15 and the first magnet 17 to move to both sides of the first clamping block 18 and the second clamping block 19. By connecting the first magnet 17 and the second magnet 22, it is convenient to fix the positions of the connecting wire and the plug.

[0023] As Figures 7-8 shown, the fixing structure includes a moving block 24. A movable block 25 is fixedly connected to the top of the moving block 24. A fixed block 26 is fixedly connected to one side of the moving block 24. An activity groove is provided in the inner wall of the bottom of the installation block. The movable block 25 is slidably connected to the activity groove. A compression spring 27 is fixedly connected to one side of the movable block 25. One end of the compression spring 27 is fixedly connected to the inner wall of the activity groove. One side of the moving block 24 close to the moving opening is a slope. The moving block 24 is located on the top of the arc-shaped block 23. The fixed block 26 is located on both sides of the contact end 10. The moving block 24, the fixed block 26, the movable block 25 and the compression spring 27 are symmetrically arranged with the center of the contact end 10.

[0024] When the moving plate 11 moves and the first rack 12 drives the arc-shaped block 23 to move towards the top of the plug block 9, the arc-shaped block 23 moves to one side of the moving block 24. Since one side of the moving block 24 is a slope, when the arc-shaped block 23 continues to move upward, the arc-shaped block 23 moves along the slope to push the moving block 24 and the fixed block 26 to move, so that the movable block 25 moves inside the moving groove and stretches the compression spring 27. When the contact end 10 of the plug inside the placement opening of the moving plate 11 fits with the contact end 10 inside the plug block 9, the fixing plates 6 arranged symmetrically move to both sides of the two contact ends 10 to limit them, which is convenient to prevent the two contact ends 10 from moving, resulting in the effect of poor contact between the display screen 1 and the plug.

[0025] As Figure 10 shown, movable openings are provided on both sides of the base 3, and a groove is provided at the bottom of the base 3. A fixing groove is provided at one end of the support rod 2 close to the base 3, and a support structure 28 is provided inside the fixing groove and the groove.

[0026] The movable port facilitates the movement of the support structure 28, and the groove and the fixed groove facilitate the installation of the support structure 28. When the support structure 28 moves to both sides of the base 3, the area of the base 3 supporting the display screen 1 is increased, so that the display screen 1 remains stable, preventing the base 3 from being placed unevenly, resulting in the movement of the display screen 1, which is not conducive to the connection between the plug and the display screen 1.

[0027] As Figures 10-11 shown, the support structure 28 includes a motor 281. The output end of the motor 281 is fixedly connected to a threaded rod 282. The bottom of the threaded rod 282 passes through the fixed groove and is rotatably connected to the inner wall of the bottom of the groove. A threaded block 283 is threadedly connected to the threaded rod 282. Both ends of the threaded block 283 are hinged with a rotating plate 284. One end of the rotating plate 284 passes through the fixed groove and extends into the groove to be hinged with a support plate 285. The bottom of the motor 281 is fixedly installed on the inner wall of the top of the fixed groove. The threaded block 283 is located at one end of the threaded rod 282 close to the motor 281. Both ends of the threaded block 283 are movably connected with a limiting rod, and the bottom of the limiting rod is fixedly connected to the inner wall of the bottom of the groove. A limiting port is provided on one side of the support plate 285 close to the plug 9, and a limiting structure 29 is arranged inside the limiting port.

[0028] By pressing the start button 8, the motor 281 rotates. The motor 281 drives the threaded rod 282 to rotate. Under the action of the limiting rod, the threaded block 283 moves downward along the threaded rod 282, causing the rotating plate 284 to deflect, so that the angles at both ends thereof change, thereby pushing the support plate 285 to move out of the groove through the movable port. When the support plate 285 moves out of the groove, the connecting wire is located between the limiting ports. The bottom end of the connecting wire is limited by the limiting structure 29, which facilitates keeping the bottom end of the plug stable, preventing the connecting wire from shaking, and preventing the connecting wire from getting entangled, which is convenient for use.

[0029] As Figure 1 、 Figure 2 、 Figure 11 、 Figure 12 shown, the limiting structure 29 includes two sliding blocks 291. The two sliding blocks 291 are located on one side of the support plate 285. A fixed rod 292 is fixedly connected to one side of the two sliding blocks 291. A first limiting plate 293 and a second limiting plate 294 are respectively fixedly connected to one side of the fixed rod 292. The bottoms of the first limiting plate 293 and the second limiting plate 294 are movably connected to the inner wall of the limiting port. Two limiting rods 295 are fixedly connected to the opposite sides of the first limiting plate 293 and the second limiting plate 294. A limiting groove is provided between the two limiting rods 295 and on one side of the limiting plate. The limiting rod 295 on one side of the first limiting plate 293 is inserted into the limiting groove on one side of the second limiting plate 294, and the limiting rod 295 on one side of the second limiting plate 294 is inserted into the limiting groove on one side of the first limiting plate 293.

[0030] When the connecting line is located between the limiting ports, push the two sliding blocks 291 to move closer to each other, so that the sliding blocks 291 drive the fixing rod 292 to move closer to the first limiting plate 293 and the second limiting plate 294, so that the plug rods 20 move closer to each other. When the limiting rod 295 on one side of the first limiting plate 293 is inserted into the limiting slot on one side of the second limiting plate 294, and the limiting rod 295 on one side of the second limiting plate 294 is inserted into the limiting slot on one side of the first limiting plate 293, the bottom end of the connecting line is limited, which is convenient to keep the connecting line stable and convenient for the connection of the connecting line, the plug and the display screen 1, further improving the stability.

[0031] The present invention also provides a method for using the display device with the above computer semiconductor quantum chip structure, and the method includes the following steps. Step 1: Place the display screen 1 on the desktop through the base 3 and the support rod 2. Push the pull block 5 upward to move the protection plate 4 upward into the moving slot. Rotate the first clamping block 18 to separate the plug rod 20 from the slot. Pass the connecting line through the fixing port and place it into the clamping interface in the middle of the first clamping block 18 and the second clamping block 19. The plug at one end of the connecting line is located on the top of the first clamping block 18 and the second clamping block 19. Then rotate the first clamping block 18 back to its original position and insert the plug rod 20 into the slot to limit the connecting line inside the first clamping block 18 and the second clamping block 19. Step 2: Push the first clamping block 18 upward to drive the second clamping block 19 to move, so that the slider 21 on one side of the second clamping block 19 moves upward along the sliding slot, thereby driving the first clamping block 18 and the second clamping block 19 to drive the connecting line to move upward, and driving the plug to move upward to the bottom of the plug block 9. Move the contact end 10 at one end of the plug into the placement port in the middle of the moving plate 11. Then move the plug upward to push the moving plate 11 into the plug block 9. When the moving plate 11 moves, it drives the first rack 12 to move into the plug block 9, so that the gear 13 drives the rotating rod to rotate, so that the first rack 12 moves to the bottom end of the plug block 9. When the moving plate 11 and the first rack 12 move to the top of the plug block 9, the contact end 10 of the plug is connected to the contact end 10 inside the plug block 9. At the same time, the second rack 14 drives the connecting plate 15 and the first magnetic block 17 to move to both sides of the first clamping block 18 and the second clamping block 19, and the first magnetic block 17 is magnetically connected to the second magnetic block 22, thereby fixing the positions of the connecting line and the plug. Step 3: When the first rack 12 moves upward, drive the arc-shaped block 23 at the top to move together. When the contact end 10 at one end of the plug contacts the contact end 10 inside the plug block 9, the first rack 12 drives the arc-shaped block 23 to move along the inclined surface on one side of the moving block 24, so that the movable block 25 moves in the movable slot, stretching the compression spring 27, so that the fixed block 26 moves to both sides of the contact end 10 of the plug and the contact end 10 inside the plug block 9 to limit the connection of the two contact ends 10 and prevent the two contact ends 10 from moving when they are in contact connection. Step 4: Finally, press the start button 8 to make the motor 281 drive the threaded rod 282 to rotate. Under the action of the limiting rod, the threaded block 283 moves downward along the threaded rod 282, causing the rotating plate 284 to deflect and change the angle, thereby pushing the support plate 285 to move from the inside of the groove to both sides of the base 3 through the movable opening, increasing the supporting area of the base 3 and the support rod 2 on the display screen 1. When the support plate 285 near the insertion block 9 moves to the outside of the base 3, the connecting wire is located between the two limiting structures 29. Then, slide the two sliding blocks 291 to drive the fixed rod 292 to move, so that the first limiting plate 293 and the second limiting plate 294 move closer to each other. When the limiting rod 295 on one side of the first limiting plate 293 is inserted into the limiting groove on one side of the second limiting plate 294, and the limiting rod 295 on one side of the second limiting plate 294 is inserted into the limiting groove on one side of the first limiting plate 293, the bottom end of the connecting wire is limited, which is convenient to prevent the connecting wire from being wound, so that the connection between the plug and the display screen 1 is fixed.

[0032] Working principle: When in use, the display screen 1 is placed on the desktop through the support rod 2 and the base 3. When it is necessary to connect the plug to the display screen 1, the protection plate 4 is pushed upward so that the protection plate 4 moves into the moving groove, exposing the plug block 9 inside the installation groove. The first clamping block 18 is rotated to separate the plug rod 20 from the slot. The connecting wire is passed through the fixing port and placed into the clamping interface in the middle of the first clamping block 18 and the second clamping block 19. The plug at one end of the connecting wire is located on the top of the first clamping block 18 and the second clamping block 19. Then the first clamping block 18 is rotated back to its original position, and the connecting wire is limited inside the first clamping block 18 and the second clamping block 19 by inserting the plug rod 20 into the slot. The first clamping block 18 is pushed upward to drive the second clamping block 19 to move, so that the slider 21 on one side of the second clamping block 19 moves upward along the chute, thereby driving the first clamping block 18 and the second clamping block 19 to drive the connecting wire to move upward, and driving the plug to move upward to the bottom of the plug block 9. The contact end 10 at one end of the plug is moved into the placement port in the middle of the moving plate 11. Then the plug is moved upward to push the moving plate 11 to move into the plug block 9. When the moving plate 11 moves, it drives the first rack 12 to move into the plug block 9, so that the gear 13 drives the rotating rod to rotate, and the first rack 12 moves to the bottom end of the plug block 9. When the moving plate 11 and the first rack 12 move to the top end of the plug block 9, the contact end 10 of the plug is connected to the contact end 10 inside the plug block 9. The arc-shaped block 23 at the top of the first rack 12 moves to one side of the moving block 24. Since one side of the moving block 24 is a slope, when the arc-shaped block 23 moves upward, the arc-shaped block 23 moves along the slope, pushing the moving block 24 and the fixed block 26 to move, so that the movable block 25 moves inside the moving groove, stretching the compression spring 27. The fixing plates 6 arranged symmetrically move to both sides of the two contact ends 10 to limit them, preventing the two contact ends 10 from moving when connected. At the same time, the second rack 14 drives the connecting plate 15 and the first magnetic block 17 to move to both sides of the first clamping block 18 and the second clamping block 19. The first magnetic block 17 and the second magnetic block 22 are magnetically connected, and the two connecting springs 16 are stretched, thereby fixing the position of the connecting wire and the plug. Then the pull block 5 is pushed downward so that the protection plate 4 moves from inside the movable groove to the top of the fixing plate 6, protecting the connecting wire, the plug and the display screen 1 inside the installation groove, so that the plug and the display screen 1 will not become loose when connected.

[0033] Pressing the start button 8 causes the motor 281 to rotate. The motor 281 drives the threaded rod 282 to rotate, so that under the action of the limit rod, the threaded block 283 moves downward along the threaded rod 282, causing the rotating plate 284 to deflect, changing the angles at both ends thereof, thereby pushing the support plate 285 to move out of the groove through the movable port. When the support plate 285 close to the insertion block 9 moves out of the groove, the connecting wire is located between the limiting ports, pushing the two sliding blocks 291 to move closer to each other, so that the sliding blocks 291 drive the fixing rods 292 to move closer to the first limiting plate 293 and the second limiting plate 294, causing the insertion rods 20 to move closer to each other. When the limiting rod 295 on one side of the first limiting plate 293 is inserted into the limiting groove on one side of the second limiting plate 294, and the limiting rod 295 on one side of the second limiting plate 294 is inserted into the limiting groove on one side of the first limiting plate 293, the bottom end of the connecting wire is limited, facilitating the stability of the connecting wire, facilitating the connection of the connecting wire, the plug and the display screen 1, and further improving the stability.

[0034] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it.

Claims

1. A display device for a computer semiconductor quantum chip structure, comprising a display screen (1), characterized in that, A support rod (2) is provided at the rear side of the display screen (1). The bottom of the support rod (2) is fixedly connected to a base (3). An installation groove is formed at the bottom end of the rear side of the display screen (1). A protective plate (4) is provided on one side of the installation groove. A pull block (5) is fixedly connected to one side of the protective plate (4). A fixing plate (6) is provided at the bottom of the installation groove. One side of the fixing plate (6) is fixedly connected to the inner wall of the bottom end of the installation groove. A power button (7) is provided on the inner wall of the installation groove. A start button (8) is provided on one side of the power button (7). Two insertion blocks (9) are provided on one side of the start button (8). The tops of the two insertion blocks (9) are fixedly connected to the inner wall of the top of the installation groove. Moving openings are formed on both sides of the insertion block (9). A contact end (10) is provided on the inner wall of the top of the insertion block (9). Fixed structures are provided on both sides of the contact end (10) and inside the insertion block (9). A moving plate (11) is provided at the bottom end of the insertion block (9). A placement opening is formed in the middle of the moving plate (11). First rack bars (12) are fixedly connected to both sides of the moving plate (11). A gear (13) is meshed with one side of the first rack bar (12) close to the moving opening. A rotating rod is fixedly connected to the middle of the gear (13). A second rack bar (14) is meshed with one side of the gear (13). The bottom end of the second rack bar (14) is movably connected to one side of the insertion block (9). One end of the second rack bar (14) is fixedly connected to a connecting plate (15). Two connecting springs (16) are fixedly connected to one side of the connecting plate (15). One end of each of the two connecting springs (16) is fixedly connected to a first magnetic block (17). A first clamping block (18) and a second clamping block (19) are provided at the bottom of the two insertion blocks (9). One end of the first clamping block (18) is rotatably connected to one end of the second clamping block (19). The other end of the first clamping block (18) is fixedly connected to an insertion rod (20). A slot is formed at the other end of the second clamping block (19). The insertion rod (20) is inserted into the slot. A slider (21) is fixedly connected to one side of the second clamping block (19) close to the inner wall of the installation groove. A sliding groove is formed on the inner wall of the installation groove. The slider (21) is slidably connected to the sliding groove. Second magnetic blocks (22) are fixedly connected to both sides of the first clamping block (18) and the second clamping block (19). The first magnetic block (17) is magnetically connected to the second magnetic block (22).

2. The display device of a computer semiconductor quantum chip structure according to claim 1, wherein A moving groove is formed at the top of the installation groove. The protective plate (4) is slidably connected to the moving groove. The bottom of the protective plate (4) is located on the top of the fixing plate (6). Two fixing openings are formed on the fixing plate (6). A clamping interface is formed in the middle of the first clamping block (18) and the second clamping block (19). The two fixing openings and the clamping interface are arranged in correspondence. The first clamping block (18) and the second clamping block (19) are both located on the top of the fixing plate (6). The first clamping block (18) and the second clamping block (19) are respectively arranged in correspondence with the two insertion blocks (9).

3. The display device of a computer semiconductor quantum chip structure according to claim 1, characterized in that, The moving plate (11), the second rack (14) are slidably connected to the inner wall of the insertion block (9). The first rack (12) is located inside the insertion block (9), and the second rack (14) is located outside the insertion block (9). One side of the first rack (12) close to the gear (13) is fixedly connected with an arc-shaped block (23). The connecting plate (15) and the first magnet (17) are located on one side of the moving port. The gear (13) and the rotating rod are both located inside the moving port, and the rotating rod is rotatably connected to the inner wall of the moving port.

4. The display device of a computer semiconductor quantum chip structure according to claim 1, characterized in that, The fixing structure includes a moving block (24). The top of the moving block (24) is fixedly connected with a movable block (25). One side of the moving block (24) is fixedly connected with a fixing block (26). An activity groove is opened on the inner wall of the bottom of the installation block. The movable block (25) is slidably connected to the activity groove. One side of the movable block (25) is fixedly connected with a compression spring (27), and one end of the compression spring (27) is fixedly connected to the inner wall of the activity groove.

5. The display device of a computer semiconductor quantum chip structure according to claim 4, characterized in that, One side of the moving block (24) close to the moving port is a slope. The moving block (24) is located on the top of the arc-shaped block (23). The fixing block (26) is located on both sides of the contact end (10). The moving block (24), the fixing block (26), the movable block (25) and the compression spring (27) are symmetrically arranged with the center of the contact end (10).

6. The display device of a computer semiconductor quantum chip structure according to claim 1, characterized in that, Activity ports are opened on both sides of the base (3). A groove is opened at the bottom of the base (3). A fixing groove is opened at one end of the support rod (2) close to the base (3). A support structure (28) is arranged inside the fixing groove and the groove.

7. The display device of a computer semiconductor quantum chip structure according to claim 6, characterized in that, The support structure (28) includes a motor (281). The output end of the motor (281) is fixedly connected with a threaded rod (282). The bottom of the threaded rod (282) passes through the fixing groove and is rotatably connected to the inner wall of the bottom of the groove. A threaded block (283) is threadedly connected to the threaded rod (282). Rotating plates (284) are hinged at both ends of the threaded block (283). One end of the rotating plate (284) passes through the fixing groove and extends into the groove to be hinged with a support plate (285).

8. The display device of a computer semiconductor quantum chip structure according to claim 7, characterized in that, The bottom of the motor (281) is fixedly installed on the inner wall of the top of the fixing groove. The threaded block (283) is located at one end of the threaded rod (282) close to the motor (281). Limiting rods are movably connected to both ends of the threaded block (283). The bottom of the limiting rod is fixedly connected to the inner wall of the bottom of the groove. A limiting port is opened on one side of the support plate (285) close to the insertion block (9). A limiting structure (29) is arranged inside the limiting port.

9. The display device of a computer semiconductor quantum chip structure according to claim 8, characterized in that, The limiting structure (29) includes two sliding blocks (291). The two sliding blocks (291) are located on one side of the support plate (285). A fixing rod (292) is fixedly connected to one side of each of the two sliding blocks (291). A first limiting plate (293) and a second limiting plate (294) are respectively fixedly connected to one side of the fixing rod (292). The bottoms of the first limiting plate (293) and the second limiting plate (294) are movably connected to the inner wall of the limiting opening. Two limiting rods (295) are fixedly connected to the opposite sides of the first limiting plate (293) and the second limiting plate (294). A limiting groove is formed on one side of the limiting plate between the two limiting rods (295). The limiting rod (295) on one side of the first limiting plate (293) is inserted into the limiting groove on one side of the second limiting plate (294), and the limiting rod (295) on one side of the second limiting plate (294) is inserted into the limiting groove on one side of the first limiting plate (293).

10. A method for a display device using the computer semiconductor quantum chip structure according to claim 9, characterized in that, The method includes the following steps: Step 1: Place the display screen (1) on the desktop through the base (3) and the support rod (2). Push the pull block (5) upward so that the protection plate (4) moves upward into the moving groove. Rotate the first clamping block (18) to separate the insertion rod (20) from the slot. Pass the connecting wire through the fixing opening and place it into the clamping interface in the middle of the first clamping block (18) and the second clamping block (19). The plug at one end of the connecting wire is located on the top of the first clamping block (18) and the second clamping block (19). Then rotate the first clamping block (18) back to its original position and insert the insertion rod (20) into the slot to limit the connecting wire inside the first clamping block (18) and the second clamping block (19). Step 2: Push the first clamping block (18) upward to drive the second clamping block (19) to move, so that the slider (21) on one side of the second clamping block (19) moves upward along the sliding groove, thereby driving the first clamping block (18) and the second clamping block (19) to drive the connecting wire upward and driving the plug upward to the bottom of the insertion block (9). Move the contact end (10) at one end of the plug into the placement opening in the middle of the moving plate (11). Then move the plug upward to push the moving plate (11) into the insertion block (9). When the moving plate (11) moves, it drives the first rack (12) to move into the insertion block (9), so that the gear (13) drives the rotating rod to rotate, causing the first rack (12) to move to the bottom end of the insertion block (9). When the moving plate (11) and the first rack (12) move to the top of the insertion block (9), the contact end (10) of the plug is connected to the contact end (10) inside the insertion block (9). At the same time, the second rack (14) drives the connecting plate (15) and the first magnetic block (17) to move to both sides of the first clamping block (18) and the second clamping block (19), and the first magnetic block (17) is magnetically connected to the second magnetic block (22) to fix the positions of the connecting wire and the plug. Step 3: When the first rack (12) moves upward, it drives the arc-shaped block (23) at the top to move together. When the contact end (10) at one end of the plug contacts the contact end (10) inside the plug block (9), the first rack (12) drives the arc-shaped block (23) to move along the inclined surface on one side of the moving block (24), causing the movable block (25) to move within the movable slot and stretching the compression spring (27), so that the fixed block (26) moves to both sides of the contact end (10) of the plug and the contact end (10) inside the plug block (9), limiting the connection of the two contact ends (10) to prevent the two contact ends (10) from moving when they are in contact and connected. Step 4: Finally, press the start button (8) to make the motor (281) drive the threaded rod (282) to rotate. Under the action of the limiting rod, the threaded block (283) moves downward along the threaded rod (282), causing the rotating plate (284) to deflect and change its angle, thereby pushing the support plate (285) to move from inside the groove through the movable opening to both sides of the base (3), increasing the supporting area of the base (3) and the support rod (2) for the display screen (1). When the support plate (285) on the side close to the plug block (9) moves outside the base (3), the connecting wire is located between the two limiting structures (29). Then, slide the two sliding blocks (291) to drive the fixed rod (292) to move, causing the first limiting plate (293) and the second limiting plate (294) to move closer to each other. When the limiting rod (295) on one side of the first limiting plate (293) is inserted into the limiting slot on one side of the second limiting plate (294), and the limiting rod (295) on one side of the second limiting plate (294) is inserted into the limiting slot on one side of the first limiting plate (293), the bottom end of the connecting wire is limited, which is convenient for preventing the connecting wire from getting entangled, so that the connection between the plug and the display screen (1) is fixed.