Connecting assembly for computer support and computer support

By dividing the computer stand into two sections and using magnetic and conductive components to achieve automatic connection, the problems of tangled wires and large size are solved, reducing transportation and packaging costs, and achieving convenient power supply and multi-angle rotation.

CN223625323UActive Publication Date: 2025-12-02NINGBO YIYOU HARDWARE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423152725.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-19
Publication Date
2025-12-02
Estimated Expiration
2034-12-19

AI Technical Summary

Technical Problem

The existing computer stand's wiring is prone to tangling at the rotating connection points and is quite bulky, leading to increased transportation and packaging costs.

Method used

The computer stand is divided into two sections, and magnetic and conductive components are used to achieve automatic connection, ensuring convenient power supply to the circuit without tangling, and allowing the connector to float within a certain range to improve the probability of connection.

Benefits of technology

It reduces transportation and packaging costs, prevents wires from getting tangled, facilitates power-on, and allows the bracket to rotate ±360°, resulting in good performance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a connecting assembly for a computer support and the computer support, the connecting assembly comprises a first support and a second support, a first circuit is arranged in the first support, a second circuit is arranged in the second support, one end of the first support is provided with a first connecting piece, and one end of the second support is provided with a second connecting piece; the first circuit is electrically connected with the first connecting piece, and the second circuit is electrically connected with the second connecting piece; the first connecting piece comprises a first magnetic attraction piece and a first conductive piece, the first conductive piece is connected with the first magnetic attraction piece, the second connecting piece comprises a second magnetic attraction piece and a second conductive piece, the second conductive piece is connected with the second magnetic attraction piece, the first magnetic attraction piece is matched with the second magnetic attraction piece, and the second magnetic attraction piece is matched with the second conductive piece. And the first conductive piece is also matched with the second conductive piece. The connecting assembly for the computer support has the effects that the connecting convenience of the connecting assembly for the computer support is improved, and the transportation cost and the packaging cost of the computer support are reduced.
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Description

Technical Field

[0001] This application relates to the field of computer stand technology, and in particular to a connecting component for a computer stand and a computer stand. Background Technology

[0002] In the existing technology, the first and second brackets are connected by rotation. The wires pass through the connection between the first and second brackets inside the first bracket, and then through the inside of the second bracket to achieve the connection. However, the wires at the connection between the first and second brackets are prone to tangling during rotation, which can easily lead to the wires being broken. In addition, the computer bracket is relatively large in size. In actual transportation, if the computer bracket is transported as a whole, the transportation cost will increase on the one hand, and the packaging cost will increase on the other hand. Therefore, there is room for improvement. Utility Model Content

[0003] In view of this, this application provides a connecting component for a computer stand and a computer stand, which reduces transportation and packaging costs by dividing the computer stand into at least two sections, and can automatically engage with the first connector and the second connector within a certain range, and the first connector and the second connector are electrically connected, so that the first stand and the second stand can be quickly connected without breaking the circuit.

[0004] In summary, in order to improve the ease of connection of the connecting components for computer stands and reduce the transportation and packaging costs of computer stands, this application proposes a connecting component for computer stands and a computer stand.

[0005] The connecting component for a computer stand provided in this application adopts the following technical solution:

[0006] A connecting component for a computer stand includes a first stand and a second stand. The first stand has a first circuit, and the second stand has a second circuit. One end of the first stand has a first connector, and one end of the second stand has a second connector. The first circuit is electrically connected to the first connector, and the second circuit is electrically connected to the second connector. The first connector includes a first magnetic element and a first conductive element, and the first conductive element is connected to the first magnetic element. The second connector includes a second magnetic element and a second conductive element, and the second conductive element is connected to the second magnetic element. The first magnetic element and the second magnetic element cooperate, such that the first conductive element also cooperates with the second conductive element.

[0007] By adopting the above technical solution, the computer stand is divided into at least two separable connecting components, allowing for individual packaging and reducing the overall packaging volume. Smaller foam boards can also be used for shock absorption during transport, enabling more computer stands to be accommodated in a vehicle of the same size, effectively reducing transportation and packaging costs. When assembling the connecting components, the user inserts the second stand into the first stand. Because the first and second connecting components have a first magnetic element, they automatically engage, connecting the first and second connecting components. This connects the first and second conductive elements on the first and second magnetic elements, enabling the wiring on the first and second stands to be connected. This allows the first stand to supply power to the second stand, or vice versa. The automatic engagement makes the power supply process convenient, and both the first and second stands can rotate ±360°, providing good performance and preventing wire tangling or breakage.

[0008] Preferably, the first connector has a floating range of 1-5mm in the axial direction of the first bracket and a floating range of 1-5mm in the radial direction of the first bracket; the second connector has a floating range of 1-5mm in the axial direction of the second bracket and a floating range of 1-5mm in the radial direction of the second bracket.

[0009] By adopting the above technical solution, the first connector and the second connector can float within a certain range, so that the user only needs to insert the second bracket into the first bracket, and the first connector of the second bracket and the second connector on the second bracket can move towards each other under the action of magnetic attraction, thereby greatly improving the connection probability of the first connector and the second connector in various situations, and thus making it more convenient for the user to use the connecting components of the computer bracket.

[0010] Preferably, the first bracket includes a first cylindrical member, a first "U" groove member, a second cylindrical member, and a second "U" groove member. One end of the first "U" groove member is connected to the first cylindrical member, and the other end is connected to the second cylindrical member. The second "U" groove member is connected to the first "U" groove member to form a first cavity. A first countersunk hole is formed at the upper end of the second cylindrical member. A first through hole is formed at the inner end of the second cylindrical member in the first countersunk hole. The first connector is located in the first through hole.

[0011] By adopting the above technical solution, the first circuit is built into the first cavity and the first through hole, so that the circuit of the first bracket is not exposed, which is more aesthetically pleasing, and the first bracket uses less material, saving material.

[0012] Preferably, the second bracket includes a third cylindrical member, a third "U" groove member, a fourth "U" groove member, and a fourth cylindrical member. One end of the third "U" groove member is connected to the third cylindrical member, and the other end is connected to the fourth cylindrical member. One end of the fourth "U" groove member is connected to the third cylindrical member, and the other end is connected to the fourth cylindrical member. The third "U" groove member and the fourth "U" groove member are arranged parallel to each other, so that a second cavity is formed between the third "U" groove member and the fourth "U" groove member. A second countersunk hole is formed on the third cylindrical member, and a second through hole is formed on the inner wall of the second countersunk hole. The second through hole communicates with the second cavity. A side groove is also formed at the end of the third cylindrical member.

[0013] By adopting the above technical solution, the second circuit is built into the second cavity and the second through hole, so that the circuit of the second bracket is not exposed, which is more aesthetically pleasing. The second bracket uses less material, saving material. Furthermore, by setting the third "U" groove and the fourth "U" groove in parallel, the third "U" groove, the fourth "U" groove, the third cylindrical member and the fourth cylindrical member form a parallelogram. The deformation of the parallelogram allows the second bracket to achieve axial elongation.

[0014] Preferably, the second cylindrical member has a first groove on its side wall, a first adapter is provided inside the second cylinder, the outer wall of the first adapter has a first protrusion, the first protrusion cooperates with the first groove, the upper end of the first adapter is located on the upper side of the second cylindrical member, and the third cylindrical member cooperates with the first adapter.

[0015] By adopting the above technical solution, the first adapter is easier to process and polish than the first groove of the first bracket, which enables the first adapter and the third cylindrical part to achieve a better rotational fit effect than the direct fit between the second cylindrical part and the third cylindrical part. Furthermore, when the third cylindrical part and the adapter are difficult to pull out after a long period of connection, the user can also separate the second bracket and the third bracket by pulling the connection between the first adapter and the second cylindrical part.

[0016] Preferably, the second cylindrical member has a third countersunk hole at the inner end of the first countersunk hole, the first connector is located in the third countersunk hole, and the outer diameter of the first connector is larger than the inner diameter of the first through hole; the third cylindrical member has a second protrusion at the end of the second countersunk hole, the outer diameter of the upper part of the second connector is larger than the outer diameter of the lower part of the second connector, the second connector is located at the connection between the second countersunk hole and the second protrusion, the second connector cooperates with the second countersunk hole and the second protrusion, and the end of the second connector and the end of the second protrusion are on the same horizontal plane.

[0017] By adopting the above technical solution, the first connector is located in the third countersunk hole, and the first connector can move axially in the direction of the second bracket, but cannot move in the direction of the first through hole. The second connector is located in the second countersunk hole and the second protrusion, so that the second connector can retract in the direction of the second countersunk hole, but cannot extend in the direction of the first bracket. That is, when the user inserts the second bracket into the first bracket, the first connector in the first bracket approaches the second connector on the second bracket under the magnetic attraction to achieve connection.

[0018] Preferably, a fifth "U" groove is provided on the lower side of the fourth "U" groove.

[0019] By adopting the above technical solution, after the computer is installed on the computer stand, the power cord of the computer can be limited by the fifth "U" slot, thereby ensuring the neatness of the cables on the desktop.

[0020] Preferably, the third "U" groove is provided with a light-transmitting plate, and the second cavity is provided with a light-emitting component for emitting light, the light-emitting component being electrically connected to the second circuit.

[0021] By adopting the above technical solution, the second line is connected to the lighting component, and the light from the lighting component shines through the light-transmitting plate, thus enabling the computer stand to emit beautiful light.

[0022] The computer stand provided in this application adopts the following technical solution:

[0023] A computer stand includes a base, a hanging panel for connecting a monitor, and a connecting component for the computer stand as described above, wherein one end of the connecting component is connected to the base and the other end is connected to the hanging panel.

[0024] By adopting the above technical solution, the computer stand can be divided into at least two sections: one end is the first stand and the base, and the other end is the hanging panel and the second stand. This allows the computer stand to be packed in individual boxes, reducing the volume of the computer stand packaging and effectively reducing transportation and packaging costs. Furthermore, the first connector of the first stand and the second connector of the second stand automatically engage, making the power connection process between the first and second stands more convenient. The first and second stands can rotate ±360°, providing a better user experience and preventing wire tangling or breakage.

[0025] Preferably, the device further includes a clamping fixture, which is connected to the base.

[0026] By adopting the above technical solution, the computer stand can be clamped to the desktop, thereby allowing the computer stand to be securely fixed on the desktop.

[0027] In summary, this application includes at least one of the following beneficial technical effects:

[0028] 1. By dividing the computer stand into at least two separable connecting components, the computer stand can be packed in individual boxes, reducing the packaging volume. Smaller foam boards can be used for shock absorption during transportation, allowing more computer stands to be accommodated in a vehicle of the same volume, effectively reducing transportation and packaging costs. When assembling the connecting components, the user inserts the second stand into the first stand. Since the first connector has a first magnetic component and the second connector has a second magnetic component, the first connector of the first stand and the second connector of the second stand automatically attract each other. This connects the first conductive component on the first magnetic component with the second conductive component on the second magnetic component, thereby connecting the circuits on the first stand and the circuits on the second stand. This enables the first stand to supply power to the second stand, or the second stand to the first stand. The automatic attraction makes the power supply process between the first and second stands convenient. Furthermore, the first and second stands can rotate ±360°, providing good performance and preventing wire tangling or breakage.

[0029] 2. By allowing the first and second connectors to float within a certain range, the user only needs to insert the second bracket into the first bracket, and the first connector on the second bracket and the second connector on the second bracket can move towards each other under the action of magnetic attraction, thereby greatly improving the connection probability of the first and second connectors in various situations, and making it more convenient for the user to use the computer bracket connection components.

[0030] 3. The computer stand can be divided into at least two sections: one end is the first bracket and the base, and the other end is the hanging panel and the second bracket. This allows the computer stand to be packed in individual boxes, reducing the volume of the computer stand packaging and effectively reducing transportation and packaging costs. In addition, the first connector of the first bracket and the second connector of the second bracket automatically engage, making the power connection process of the first and second brackets more convenient. Furthermore, the first and second brackets can rotate ±360°, providing a better user experience and preventing the wires from becoming tangled or broken. Attached Figure Description

[0031] Figure 1 This is a schematic diagram of the connection component in this embodiment;

[0032] Figure 2 This is a cross-sectional view of the connecting component in this embodiment;

[0033] Figure 3 This is a schematic diagram of the structure of the first support in this embodiment;

[0034] Figure 4 This is a schematic diagram of the structure of the first adapter in this embodiment;

[0035] Figure 5 This is a schematic diagram of the third cylindrical component in this embodiment;

[0036] Figure 6 This is a schematic diagram of the structure of the first connector in this embodiment;

[0037] Figure 7 This is a schematic diagram of the structure of the second connector in this embodiment;

[0038] Figure 8 This is a schematic diagram of the computer stand in this embodiment;

[0039] Figure 9 This is a cross-sectional view of the computer stand in this embodiment.

[0040] Reference numerals: 1. First bracket; 2. Second bracket; 3. First connector; 4. Second connector; 5. First magnetic component; 6. First conductive component; 7. Second magnetic component; 8. Second conductive component; 9. First cylindrical component; 10. First "U" groove component; 11. Second cylindrical component; 12. Second "U" groove component; 13. First cavity; 14. First countersunk hole; 15. First through hole; 16. Third cylindrical component; 17. Third "U" groove component; 18. Fourth "U" groove component; 19. Fourth cylindrical component; 20. Second cavity ; 21. Second countersunk hole; 22. Second through hole; 23. Side groove; 24. First groove; 25. First adapter; 26. First protrusion; 27. Fourth countersunk hole; 28. Third countersunk hole; 29. ​​Second protrusion; 30. Fifth "U" groove; 31. Light-transmitting plate; 32. Base; 33. Suspension panel; 34. Connecting component for computer bracket; 35. Clamping fixture; 36. Round protruding contact; 37. First connecting pin; 38. Circular contact; 39. Second connecting pin; 40. Vertical rotation component; 41. Mounting panel. Detailed Implementation

[0041] The following is in conjunction with the appendix Figure 1-9 This application will be described in further detail.

[0042] Example 1

[0043] This application discloses a connecting component for a computer stand.

[0044] Reference Figures 1-7The system includes a first bracket 1 and a second bracket 2. One end of the first bracket 1 is provided with a first connector 3, and one end of the second bracket 2 is provided with a second connector 4. The first connector 3 includes a first magnetic element 5 and a first conductive element 6. The first magnetic element 5 surrounds the first conductive element 6 and is encapsulated with an encapsulating material to define the positions of the first magnetic element 5 and the first conductive element 6, such that one end of the first conductive element 6 is exposed at one end of the first magnetic element 5, forming a circular protrusion 36. The other end of the first conductive element 6 extends beyond the other end of the first magnetic element 5, forming a first connecting pin 37, which is electrically connected to a first circuit within the first bracket 1. The second connector 4 includes a second magnetic element 7 and a second conductive element 8. The second magnetic element 7 also surrounds the second conductive element 8 and is also encapsulated with an encapsulating material to define the positions of the first magnetic element 5 and the first conductive element 6. The positions of the two magnetic components 7 and the second conductive component 8 are such that one end of the second conductive component 8 is exposed at one end of the second magnetic component 7, forming a circular contact 38. The other end of the second conductive component 8 extends out of the other end of the second magnetic component 7, forming a second connecting pin 39. The second connecting pin 39 is electrically connected to the second circuit inside the second bracket 2. When the first magnetic component 5 and the second magnetic component 7 are magnetically attracted together, the circular protrusion contact 36 is also conductively engaged with the circular contact 38. This allows the second connecting component 4 to magnetically engage with the first connecting component 3 when the user plugs the second bracket 2 into the first bracket 1, thereby making the circuit between the first bracket 1 and the second bracket 2 conductive.

[0045] By dividing the computer stand into at least two separable connecting components 34, the computer stand can be packed in individual boxes, reducing the volume required for packaging. Smaller foam boards can also be used for shock absorption during transport, allowing more computer stands to be accommodated in a vehicle of the same volume, effectively reducing transportation and packaging costs. When assembling the connecting components 34, the user inserts the second bracket 2 into the first bracket 1. Because the first connecting component 3 has a first magnetic element 5 and the second connecting component 4 has a second magnetic element 7, the first bracket... The first connector 3 of bracket 1 and the second connector 4 of bracket 2 automatically engage, thereby connecting the first conductive element 6 on the first magnetic element 5 and the second conductive element 8 on the second magnetic element 7, and thus connecting the circuit on bracket 1 and the circuit on bracket 2, enabling bracket 1 to supply power to bracket 2 or bracket 2 to bracket 1. The automatic engagement makes the power supply process between bracket 1 and bracket 2 more convenient, and bracket 1 and bracket 2 can rotate ±360°, which has a good performance effect and will not cause the circuit to become tangled or broken.

[0046] The first bracket 1 includes a first cylindrical member 9, a first "U" groove member 10, a second cylindrical member 11, and a second "U" groove member 12. The first "U" groove member 10 has its opening facing downwards and is inclined upwards. One end of the first "U" groove member 10 is integrally formed with the first cylindrical member 9, and the other end is integrally formed with the second cylindrical member 11, so that the first cylindrical member 9, the first "U" groove member 10, and the second cylindrical member 11 form a horizontal "Z" shape structure. The first cylindrical member 9 has a fourth countersunk hole 27 at the end away from the first "U" groove member 10, which facilitates the insertion or rotation connection of the first cylindrical member 9 with other structures of the computer bracket. The second "U" groove member 12 is bolted to the lower side of the first "U" groove member 10 with its "U" groove opening facing upwards, so that the second "U" groove member 12 and the first "U" groove member 10 together form a first cavity 13. The first wiring is arranged along the first cavity 13, so that the wiring of the first bracket 1 is not exposed, which is more aesthetically pleasing. The upper end of the second cylindrical member 11... A first countersunk hole 14 is provided, and a second cylindrical member 11 has a first through hole 15 at the inner end of the first countersunk hole 14. The first through hole 15 communicates with the first cavity 13. The second cylindrical member 11 also has a third countersunk hole 28 at the connection between the first countersunk hole 14 and the first through hole 15. The first connector 3 is placed in the third countersunk hole 28, such that the outer diameter of the first connector 3 is smaller than the inner diameter of the third countersunk hole 28, and the outer diameter of the first connector 3 is larger than the outer diameter of the first through hole 15. The first connector 3 can float axially in the third countersunk hole 28 with a floating range of 1-5mm. The first connector 3 can also float radially in the third countersunk hole 28 with a floating range of 1-5mm. The first connector 3, which floats within a certain range, can move towards the second connector 4 under magnetic attraction, thereby greatly improving the connection probability between the first connector 3 and the second connector 4 under various conditions, and thus enabling users to use the computer stand connecting component 34 more conveniently.

[0047] The second support 2 includes a third cylindrical member 16, a third "U" groove member 17, a fourth "U" groove member 18, and a fourth cylindrical member 19. The third "U" groove member 17 has its opening tilted downwards. The lower end of the third "U" groove member 17 is hinged to the third cylindrical member 16, and the upper end of the third "U" groove member 17 is hinged to the fourth cylindrical member 19. The third "U" groove member 17 has strip-shaped holes on both sides, and light-transmitting plates 31 are provided on the strip-shaped holes. The fourth "U" groove member 18 has its opening facing upwards inside the third "U" groove member 17, so that the lower end of the fourth "U" groove member 18 is also hinged to the third cylindrical member 16. The upper end of the groove 18 is also hinged to the fourth cylindrical member 19, so that the fourth "U" groove 18 and the third "U" groove 17 together form the second cavity 20. The second circuit is located inside the second cavity 20, so that the circuit of the second bracket 2 is not exposed, which is more aesthetically pleasing. The second cavity 20 is also provided with a light assembly for emitting light. The light assembly is electrically connected to the second circuit, and the fourth "U" groove 18 and the third "U" groove 17 are parallel, so that the third cylindrical member 16, the third "U" groove 17, the fourth "U" groove 18 and the fourth cylindrical member 19 together form a parallelogram, and through The deformation of the parallelogram allows the second support 2 to achieve axial elongation. The lower end of the third cylindrical member 16 has a second countersunk hole 21, and the inner wall of the second countersunk hole 21 has a second through hole 22, which communicates with the second cavity 20. The lower end of the second countersunk hole 21 has an integrally formed second protrusion 29. The second connecting member 4 is located within the second through hole 22 and the second protrusion 29. The upper part of the second connecting member 4 engages with the second through hole 22, and the lower part engages with the second protrusion 29, making the lower end of the second connecting member 4 flush with the lower end of the third cylindrical member 16. The second connector 4 is flat, allowing it to retract towards the second countersunk hole 21, but not extend towards the first bracket 1. The outer wall of the lower part of the third cylindrical member 16 is also provided with a side groove 23, which allows the lower part of the third cylindrical member 16 to be inserted into the first countersunk hole 14 of the second cylindrical member 11. This allows the second connector 4 in the second through hole 22 and the second protrusion 29 at the lower end of the third cylindrical member 16 to cooperate with the first connector 3 in the third countersunk hole 28 of the second cylindrical member 11. The upper end of the fourth cylindrical member 19 is provided with a fifth countersunk hole, which facilitates the insertion or rotation connection of the fourth cylindrical member 19 with other parts of the computer bracket.

[0048] Furthermore, in this embodiment, a first groove 24 is formed on the inner wall of the first countersunk hole 14 of the second cylindrical member 11, and a first adapter 25 is inserted into the first countersunk hole 14. The first adapter 25 is shaped like a cylindrical ring with a protruding edge at the upper end, and a first protrusion 26 is formed on the outer wall of the first adapter 25. When the first adapter 25 is inserted into the first countersunk hole 14, the first protrusion 26 cooperates with the first groove 24, and the protrusion on the first adapter 25 is located at the upper end of the first cylindrical member 9, making it easy to remove the first adapter 25 from the second cylinder. The first adapter 25 is radially bolted to the second cylindrical member 11, further reinforcing the second cylindrical member 11. The connection strength between the adapter 25 and the second cylindrical member 11 is improved, and the part of the third cylindrical member 16 with the side groove 23 at the bottom cooperates with the first adapter 25. The first adapter 25 is easier to process and polish than the first groove 24 of the first bracket 1, so that the first adapter 25 and the third cylindrical member 16 can achieve a better rotational cooperation effect than the direct cooperation between the second cylindrical member 11 and the third cylindrical member 16. Furthermore, when the third cylindrical member 16 and the adapter are difficult to pull out after a long time, the user can also separate the second bracket 2 from the first bracket 1 by pulling the connection between the first adapter 25 and the second cylindrical member 11.

[0049] Furthermore, in this embodiment, a fifth U-shaped groove 30 is provided on the lower side of the fourth U-shaped groove 18, so that after the computer is installed on the computer stand, the power cord of the computer can be limited by the fifth U-shaped groove 30, thereby ensuring the neatness of the desktop cables.

[0050] Furthermore, in this embodiment, the inner diameter of the first adapter 25 is smaller than the outer diameter of the lower part of the first connector 3, so that the first connector 3 can float axially within the third countersunk hole 28 and the first adapter 25.

[0051] Furthermore, in this embodiment, the present invention does not particularly limit the shape or form of the contacts on the first connector 3 and the second connector 4. Any contact that can achieve the conductive connection between the first conductive element 6 and the second conductive element 8, as well as those well known to those skilled in the art, can be selected and adjusted according to specific application conditions and product requirements. In the preferred embodiment of the present invention, the first connector 3 is a protruding contact, and the second connector 4 is a flat contact or a contact with a slight groove. More preferably, the first connector 3 is provided with a spring, so that the first connector 3 has a retractable contact, and the second connector 4 has a flat contact or a contact with a slight groove.

[0052] Furthermore, in this embodiment, the present invention does not particularly limit the specific limitations of the first connector 3 and the second connector 4. Any method known to those skilled in the art can be used to achieve the following: the first connector 3 is located on the first bracket 1, the second connector 4 is located on the second bracket 2, and the axial floating range of the first connector 3 on the first bracket 1 is 1-5mm, the radial floating range is also 1-5mm, and the axial floating range of the second connector 4 on the second bracket 2 is also 1-5mm, the radial floating range is also 1-5mm. Those skilled in the art can select and adjust according to specific application conditions and product requirements.

[0053] Furthermore, in this embodiment, the axial floating range of the first connector 3 on the first bracket 1 can be greater than 5mm when magnetic attraction is feasible; the radial floating range of the first connector 3 on the first bracket 1 can also be greater than 5mm when magnetic attraction is feasible; the axial floating range of the second connector 4 on the second bracket 2 can also be greater than 5mm when magnetic attraction is feasible; the radial floating range of the second connector 4 on the second bracket 2 can also be greater than 5mm when magnetic attraction is feasible.

[0054] Furthermore, in this embodiment, the present invention does not impose any particular limitation on the lighting component. Any lighting component that can realize the function of emitting light when powered on can be used, as is well known to those skilled in the art. Those skilled in the art can select and adjust according to specific application conditions and product requirements.

[0055] Example 2

[0056] This application discloses a computer stand.

[0057] refer to Figure 8 and Figure 9 The system includes a base 32, a connecting component 34 for a computer stand, and a hanging panel 33 for connecting a monitor. The hanging panel 33 includes a vertical rotating component 40 and a mounting panel 41. The lower end of the connecting component is rotatably connected to the base 32, allowing the connecting component to rotate left and right on the base 32. The upper end of the connecting component is rotatably connected to the vertical rotating component 40, allowing the vertical rotating component 40 to rotate left and right at the upper end of the connecting component. The mounting panel 41 is rotatably connected to the vertical rotating component 40, allowing the mounting panel 41 to rotate vertically via the vertical rotating component 40.

[0058] The computer stand connecting component 34 includes a first stand 1 and a second stand 2. One end of the first stand 1 is provided with a first connector 3, and one end of the second stand 2 is provided with a second connector 4. The first connector 3 includes a first magnetic element 5 and a first conductive element 6. The first magnetic element 5 is arranged around the first conductive element 6, and the positions of the first magnetic element 5 and the first conductive element 6 are defined by an encapsulating material, such that one end of the first conductive element 6 is exposed at one end of the first magnetic element 5, forming a round protrusion contact 36. The other end of the first conductive element 6 extends beyond the other end of the first magnetic element 5, forming a first connecting pin 37. The first connecting pin 37 is electrically connected to a first circuit within the first stand 1. The second connector 4 includes a second magnetic element 7 and a second conductive element 8. The magnetic clasp 7 is also arranged around the second conductive element 8, and the positions of the second magnetic clasp 7 and the second conductive element 8 are also defined by the encapsulation material, so that one end of the second conductive element 8 is exposed at one end of the second magnetic clasp 7, forming a circular contact 38. The other end of the second conductive element 8 extends out of the other end of the second magnetic clasp 7, forming a second connecting pin 39. The second connecting pin 39 is electrically connected to the second circuit in the second bracket 2. When the first magnetic clasp 5 and the second magnetic clasp 7 are magnetically attracted, the circular protrusion contact 36 is also conductively engaged with the circular contact 38. So when the user plugs the second bracket 2 into the first bracket 1, the second connecting element 4 and the first connecting element 3 are magnetically engaged, thereby making the circuit between the first bracket 1 and the second bracket 2 conductive.

[0059] By dividing the computer stand into at least two separable connecting components 34, the computer stand can be packed in individual boxes, reducing the packaging volume. Smaller foam boards can also be used for shock absorption during transport, allowing more computer stands to be accommodated in a vehicle of the same volume, effectively reducing transportation and packaging costs. When assembling the connecting components 34, the user inserts the second bracket 2 into the first bracket 1. Because the first connecting component 3 has a first magnetic element 5 and the second connecting component 4 has a second magnetic element 7, the first bracket 1... The first connector 3 and the second connector 4 of the second bracket 2 automatically engage, thereby connecting the first conductive element 6 on the first magnetic element 5 and the second conductive element 8 on the second magnetic element 7. This connects the circuits on the first bracket 1 and the circuits on the second bracket 2, enabling the first bracket 1 to supply power to the second bracket 2, or the second bracket 2 to supply power to the first bracket 1. The automatic engagement makes the power supply process between the first bracket 1 and the second bracket 2 more convenient. The first bracket 1 and the second bracket 2 can rotate ±360°, which has a good performance and prevents the circuits from getting tangled or broken.

[0060] The first bracket 1 includes a first cylindrical member 9, a first "U"-shaped groove member 10, a second cylindrical member 11, and a second "U"-shaped groove member 12. The first "U"-shaped groove member 10 has an opening facing downwards and is inclined upwards. One end of the first "U"-shaped groove member 10 is integrally formed with the first cylindrical member 9, and the other end is integrally formed with the second cylindrical member 11, so that the first cylindrical member 9, the first "U"-shaped groove member 10, and the second cylindrical member 11 form a horizontal "Z"-shaped structure. The first cylindrical member 9 has a fourth countersunk hole 27 at the end away from the first "U"-shaped groove member 10, which facilitates the insertion or rotation connection of the first cylindrical member 9 with other structures of the computer bracket. The second "U"-shaped groove member 12 is bolted to the lower side of the first "U"-shaped groove member 10 with the "U"-shaped groove opening facing upwards, so that the second "U"-shaped groove member 12 and the first "U"-shaped groove member 10 together form a first cavity 13. The first wiring is arranged along the first cavity 13, so that the wiring of the first bracket 1 is not exposed, which is more aesthetically pleasing. The upper end of the second cylindrical member 11 has a... The device has a first countersunk hole 14. A second cylindrical member 11 has a first through hole 15 at the inner end of the first countersunk hole 14, which communicates with the first cavity 13. The second cylindrical member 11 also has a third countersunk hole 28 at the connection between the first countersunk hole 14 and the first through hole 15. A first connector 3 is placed in the third countersunk hole 28, such that the outer diameter of the first connector 3 is smaller than the inner diameter of the third countersunk hole 28, and the outer diameter of the first connector 3 is larger than the outer diameter of the first through hole 15. The first connector 3 can float axially in the third countersunk hole 28, with a floating range of 1-5mm. The first connector 3 can also float radially in the third countersunk hole 28, with a floating range of 1-5mm. The first connector 3, which floats within a certain range, can move towards the second connector 4 under magnetic attraction, thereby greatly improving the connection probability between the first connector 3 and the second connector 4 under various conditions, and making it more convenient for users to use the computer stand connecting component 34.

[0061] The second support 2 includes a third cylindrical member 16, a third "U"-shaped groove 17, a fourth "U"-shaped groove 18, and a fourth cylindrical member 19. The third "U"-shaped groove 17 has its opening tilted downwards. The lower end of the third "U"-shaped groove 17 is hinged to the third cylindrical member 16, and the upper end of the third "U"-shaped groove 17 is hinged to the fourth cylindrical member 19. The third "U"-shaped groove 17 has strip-shaped holes on both sides, and light-transmitting plates 31 are provided on these holes. The fourth "U"-shaped groove 18 has its opening facing upwards within the third "U"-shaped groove 17, so that the lower end of the fourth "U"-shaped groove 18 is also hinged to the third cylindrical member 16. The upper end of the groove 18 is also hinged to the fourth cylindrical member 19, so that the fourth "U" groove 18 and the third "U" groove 17 together form the second cavity 20. The second circuit is located inside the second cavity 20, so that the circuit of the second bracket 2 is not exposed, which is more aesthetically pleasing. The second cavity 20 is also provided with a light assembly for emitting light. The light assembly is electrically connected to the second circuit, and the fourth "U" groove 18 and the third "U" groove 17 are parallel, so that the third cylindrical member 16, the third "U" groove 17, the fourth "U" groove 18 and the fourth cylindrical member 19 together form a parallelogram, and through The deformation of the parallelogram allows the second support 2 to extend axially. The lower end of the third cylindrical member 16 has a second countersunk hole 21, and the inner wall of the second countersunk hole 21 has a second through hole 22 communicating with the second cavity 20. The lower end of the second countersunk hole 21 has an integrally formed second protrusion 29. The second connecting member 4 is located within the second through hole 22 and the second protrusion 29. The upper part of the second connecting member 4 engages with the second through hole 22, and the lower part engages with the second protrusion 29, making the lower end of the second connecting member 4 flush with the lower end of the third cylindrical member 16. This allows the second connector 4 to retract towards the second countersunk hole 21, but it cannot extend towards the first bracket 1. Furthermore, the outer wall of the lower part of the third cylindrical member 16 is provided with a side groove 23, which allows the lower part of the third cylindrical member 16 to be inserted into the first countersunk hole 14 of the second cylindrical member 11. This allows the second connector 4 in the second through hole 22 and the second protrusion 29 at the lower end of the third cylindrical member 16 to cooperate with the first connector 3 in the third countersunk hole 28 of the second cylindrical member 11. The upper end of the fourth cylindrical member 19 is provided with a fifth countersunk hole, which facilitates the insertion or rotation connection of the fourth cylindrical member 19 with other parts of the computer bracket.

[0062] Furthermore, in this embodiment, a clamping fixture 35 is bolted to the lower side of the base 32, and the clamping fixture 35 is used for a defined connection with the desktop.

[0063] Furthermore, in this embodiment, the present invention does not impose any particular limitation on the base 32, as long as it is a function known to those skilled in the art that can be placed on a desktop. Those skilled in the art can select and adjust it according to specific application conditions and product requirements.

[0064] Furthermore, in this embodiment, the present invention does not impose any particular limitation on the suspension panel 33. Any panel that can achieve vertical rotation and connection with the display screen, as is known to those skilled in the art, can be selected and adjusted according to specific application conditions and product requirements.

[0065] Furthermore, in this embodiment, the present invention does not impose any particular limitation on the clamping fixture 35. Any fixture known to those skilled in the art that can clamp the computer stand onto the desktop is acceptable. Those skilled in the art can select and adjust the fixture according to the specific application and product requirements.

[0066] Furthermore, in this embodiment, a first groove 24 is formed on the inner wall of the first countersunk hole 14 of the second cylindrical member 11, and a first adapter 25 is inserted into the first countersunk hole 14. The first adapter 25 is shaped like a cylindrical ring with a protruding edge at the upper end, and a first protrusion 26 is formed on the outer wall of the first adapter 25. When the first adapter 25 is inserted into the first countersunk hole 14, the first protrusion 26 cooperates with the first groove 24, and the protrusion on the first adapter 25 is located at the upper end of the first cylindrical member 9, making it easy to remove the first adapter 25 from the second cylindrical member. The first adapter 25 is radially bolted to the second cylindrical member 11, further reinforcing the first cylindrical member 9. The connection strength between the adapter 25 and the second cylindrical member 11 is improved, and the part of the third cylindrical member 16 with the side groove 23 at the bottom cooperates with the first adapter 25. The first adapter 25 is easier to process and polish than the first groove 24 of the first bracket 1, so that the first adapter 25 and the third cylindrical member 16 can achieve a better rotational cooperation effect than the direct cooperation between the second cylindrical member 11 and the third cylindrical member 16. Furthermore, when the third cylindrical member 16 and the adapter are difficult to pull out after a long time, the user can also separate the second bracket 2 from the first bracket 1 by pulling the connection between the first adapter 25 and the second cylindrical member 11.

[0067] Furthermore, in this embodiment, a fifth U-shaped groove 30 is provided on the lower side of the fourth U-shaped groove 18, so that after the computer is installed on the computer stand, the power cord of the computer can be limited by the fifth U-shaped groove 30, thereby ensuring the neatness of the desktop cables.

[0068] Furthermore, in this embodiment, the inner diameter of the first adapter 25 is smaller than the outer diameter of the lower part of the first connector 3, so that the first connector 3 can float axially within the third countersunk hole 28 and the first adapter 25.

[0069] Furthermore, in this embodiment, the present invention does not impose any particular restrictions on the shape or form of the contacts on the first connector 3 and the second connector 4. Any contact that can achieve the conductive connection between the first conductive element 6 and the second conductive element 8, as well as those well known to those skilled in the art, can be selected and adjusted according to specific application conditions and product requirements. Preferably, the first connector 3 has protruding contacts, and the second connector 4 has flat or slightly grooved contacts. More preferably, the first connector 3 is provided with a spring, so that the first connector 3 has retractable contacts, and the second connector 4 has flat or slightly grooved contacts.

[0070] Furthermore, in this embodiment, the present invention does not particularly limit the specific limitations of the first connector 3 and the second connector 4. Any method known to those skilled in the art can be used to achieve the following: the first connector 3 is located on the first bracket 1, the second connector 4 is located on the second bracket 2, and the axial floating range of the first connector 3 on the first bracket 1 is 1-5mm, the radial floating range is also 1-5mm, and the axial floating range of the second connector 4 on the second bracket 2 is also 1-5mm, the radial floating range is also 1-5mm. Those skilled in the art can select and adjust according to specific application conditions and product requirements.

[0071] Furthermore, in this embodiment, the axial floating range of the first connector 3 on the first bracket 1 can be greater than 5mm when magnetic attraction is feasible; the radial floating range of the first connector 3 on the first bracket 1 can also be greater than 5mm when magnetic attraction is feasible; the axial floating range of the second connector 4 on the second bracket 2 can also be greater than 5mm when magnetic attraction is feasible; the radial floating range of the second connector 4 on the second bracket 2 can also be greater than 5mm when magnetic attraction is feasible.

[0072] Furthermore, in this embodiment, the present invention does not impose any particular limitation on the lighting component. Any lighting component known to those skilled in the art that can emit light when powered on can be used. Those skilled in the art can select and adjust the component according to the specific application and product requirements.

[0073] It should be noted that the various embodiments of this application can be arbitrarily combined into new embodiments, provided that the solutions do not conflict and the technical solutions can coexist.

[0074] It should be noted that the various embodiments of this application can be arbitrarily combined into new embodiments, provided that the solutions do not conflict and the technical solutions can coexist.

[0075] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A connecting component for a computer stand, characterized in that: It includes a first bracket (1) and a second bracket (2). The first bracket (1) is provided with a first line, and the second bracket (2) is provided with a second line. One end of the first bracket (1) is provided with a first connector (3), and one end of the second bracket (2) is provided with a second connector (4). The first line is electrically connected to the first connector (3), and the second line is electrically connected to the second connector (4). The first connector (3) includes a first magnetic attractor (5) and a first conductive member (6), the first conductive member (6) being connected to the first magnetic attractor (5). The second connector (4) includes a second magnetic attractor (7) and a second conductive member (8), the second conductive member (8) being connected to the second magnetic attractor (7). The first magnetic attractor (5) and the second magnetic attractor (7) cooperate, such that the first conductive member (6) also cooperates with the second conductive member (8).

2. The connecting component for a computer stand according to claim 1, characterized in that: The first connector (3) has a floating range of 1-5mm in the axial direction of the first bracket (1) and a floating range of 1-5mm in the radial direction of the first bracket (1); the second connector (4) has a floating range of 1-5mm in the axial direction of the second bracket (2) and a floating range of 1-5mm in the radial direction of the second bracket (2).

3. The connecting assembly for a computer stand according to claim 1, characterized in that: The first bracket (1) includes a first cylindrical member (9), a first "U" groove member (10), a second cylindrical member (11), and a second "U" groove member (12). One end of the first "U" groove member (10) is connected to the first cylindrical member (9), and the other end is connected to the second cylindrical member (11). The second "U" groove member (12) is connected to the first "U" groove member (10) and forms a first cavity (13). A first countersunk hole (14) is provided at the upper end of the second cylindrical member (11). A first through hole (15) is provided at the inner end of the first countersunk hole (14) of the second cylindrical member (11). The first connector (3) is located in the first through hole (15).

4. The connecting assembly for a computer stand according to claim 3, characterized in that: The second bracket (2) includes a third cylindrical member (16), a third "U" groove member (17), a fourth "U" groove member (18), and a fourth cylindrical member (19). One end of the third "U" groove member (17) is connected to the third cylindrical member (16), and the other end is connected to the fourth cylindrical member (19). One end of the fourth "U" groove member (18) is connected to the third cylindrical member (16), and the other end is connected to the fourth cylindrical member (19). The third "U" groove member (17)... The third cylindrical member (16) is arranged parallel to the fourth "U" groove (18), so that a second cavity (20) is formed between the third "U" groove (17) and the fourth "U" groove (18). The third cylindrical member (16) is provided with a second countersunk hole (21), and a second through hole (22) is provided on the inner wall of the second countersunk hole (21). The second through hole (22) communicates with the second cavity (20). The end of the third cylindrical member (16) is also provided with a side groove (23).

5. The connecting assembly for a computer stand according to claim 4, characterized in that: The second cylindrical member (11) has a first groove (24) on its side wall. A first adapter (25) is provided inside the second cylinder. The outer wall of the first adapter (25) has a first protrusion (26). The first protrusion (26) cooperates with the first groove (24). The upper end of the first adapter (25) is located on the upper side of the second cylindrical member (11). The third cylindrical member (16) cooperates with the first adapter (25).

6. The connecting assembly for a computer stand according to claim 4, characterized in that: The second cylindrical member (11) also has a third countersunk hole (28) at the inner end of the first countersunk hole (14). The first connecting member (3) is located in the third countersunk hole (28), and the outer diameter of the first connecting member (3) is larger than the inner diameter of the first through hole (15). The third cylindrical member (16) has a second protrusion (29) at the end of the second countersunk hole (21). The outer diameter of the upper part of the second connecting member (4) is larger than the outer diameter of the lower part of the second connecting member (4). The second connecting member (4) is located at the connection between the second countersunk hole (21) and the second protrusion (29). The second connecting member (4) cooperates with the second countersunk hole (21) and the second protrusion (29), and the end of the second connecting member (4) and the end of the second protrusion (29) are on the same horizontal plane.

7. The connecting assembly for a computer stand according to claim 4, characterized in that: The fourth "U" groove (18) is provided with a fifth "U" groove (30) on its lower side.

8. The connecting assembly for a computer stand according to claim 4, characterized in that: The third "U" groove (17) is provided with a light-transmitting plate (31), and the second cavity (20) is provided with a light-emitting component for emitting light, and the light-emitting component is electrically connected to the second circuit.

9. A computer stand, characterized in that: The device includes a base (32), a hanging panel (33) for connecting a monitor, and a connecting component (34) for a computer stand as described in any one of claims 1-8, wherein one end of the connecting component (34) is connected to the base (32) and the other end is connected to the hanging panel (33).

10. The computer stand according to claim 9, characterized in that: It also includes a clamping fixture (35) connected to the base (32).