A cable splitter for a computer

By designing an adjustable interface module, the problem of low connection stability caused by the fixity of the interface of the traditional splitter is solved, and the flexible adjustment and stable fixation of the interface module are achieved, improving the connection stability and use flexibility.

CN119627554BActive Publication Date: 2025-05-30ZHAOQING HENGDIAN POWER ENG CO LTD
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Patent Information

Application Number
CN202510159177.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-13
Publication Date
2025-05-30
Estimated Expiration
2045-02-13

AI Technical Summary

Technical Problem

The interfaces of traditional splitters are fixed in number and position, making it difficult to adjust flexibly, resulting in low connection stability between the connecting cable and splitter, which is easy to cause the cable to be loose due to drag and drop, affecting the daily use of the computer.

Method used

A cable splitter for computers is designed, including a splitter body and an adjustable interface module. The interface module is flexible to move and fix through limit sliders, displacement components, communication components and one-way locking components, and can adjust the number, type and position of the interface module according to needs.

Benefits of technology

It realizes flexible adjustment and stable fixation of the interface module, improves the connection stability between the connecting cable and the splitter, avoids cable loosening problems caused by dragging, and meets diverse usage needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of wire dividers, and discloses a wire divider for a computer, which includes a wire divider main body and a plurality of interface modules. A track is provided on the front side of the wire divider main body along its length direction. A chute is provided on the side of the clamping groove away from the track, and a guide rail is fitted and embedded in the chute. A plurality of interface modules are arranged at equal intervals on the front side of the wire divider main body and are electrically connected through the guide rail. The interface module includes a limit slider, a displacement component, a connection component and a one-way locking component. A wiring head is detachably and electrically connected to the front side of the interface module. An anti-disconnection component is fixedly connected to the upper surface of the wiring head, and a cable is fixedly connected to the front side of the wiring head. By setting the wire divider main body and a plurality of interface modules, multiple interface modules can be equipped on the same wire divider, and users can flexibly adjust the quantity, type and position of the interface modules according to their own needs.
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Description

Technical Field

[0001] The present invention relates to the technical field of wire splitters, and specifically relates to a wire splitter for a computer. Background Art

[0002] A wire splitter is a device or tool used to distribute one input wire into multiple outputs. It allows users to distribute signals or power from one input interface to multiple output interfaces, and is usually used for the transmission of audio, video, power signals, etc. It can also distribute one power line to multiple devices so that multiple devices can share the same power supply.

[0003] For example, Chinese Patent CN202322630966.0 discloses a computer wire splitter. Through the setting of the clamping rod, when using the computer wire splitter, in order to improve the connection stability between the connected wire and the splitter, prevent the connected wire from becoming loose due to dragging, and affect the daily use of the computer.

[0004] However, the interfaces of traditional splitters often have a fixed number, and at the same time, the positions of the interfaces are relatively fixed, and cannot be adjusted flexibly, which is easily restricted by space, difficult to meet diverse usage requirements, the connection stability between the connected wire and the splitter is relatively low, and the connected wire is easily loosened due to dragging, affecting the daily use of the computer.

[0005] Based on this, the present invention designs a wire splitter for a computer to solve the above problems. Summary of the Invention

[0006] The purpose of the present invention is to provide a wire splitter for a computer to solve the problems raised in the above background art.

[0007] To solve the above technical problems, the present invention provides the following technical solution: A wire splitter for a computer, comprising a splitter body and a plurality of interface modules. It is characterized in that a track is opened along the length direction on the front side of the splitter body, clamping grooves are symmetrically opened at the upper and lower ends of the track, a sliding groove is opened on one side of the clamping groove away from the track, a guide rail is fitted and embedded in the sliding groove, a plurality of interface modules are arranged at equal intervals on the front side of the splitter body and are electrically connected through the guide rail. The interface module includes a limit slider, a displacement component, a communication component and a one-way locking component. The limit slider is slidably connected in the track, a displacement component is arranged in the cavity opened on the front side of the limit slider, communication components are connected to both upper and lower output ends of the displacement component, a one-way locking component is connected to the front side of the communication component, a wiring head is detachably and electrically connected to the front side of the interface module, an anti-disconnection component is fixedly connected to the upper surface of the wiring head, and a wire is fixedly connected to the front side of the wiring head.

[0008] The displacement component includes a fixing plate and a fixing rod. There are two fixing plates symmetrically arranged. Both fixing plates are slidably connected to the limiting slider in a matching manner. Fixing rods are fixedly connected to the opposite sides of the two fixing plates respectively. The ends of the two fixing rods penetrate through the upper and lower ends of the limiting slider and are connected to corresponding communicating components.

[0009] The communicating component includes a connecting shaft, a communicating wheel seat, a connecting frame, a communicating roller, a mounting disc, and communicating small balls. One end of the connecting shaft is fixedly connected to the corresponding mounting disc, and the other end of the connecting shaft is fixedly connected to the communicating wheel seat. A number of connecting frames are fixedly connected to the side wall of the communicating wheel seat at equal circumferential intervals. Communicating rollers are rotatably connected to the number of connecting frames. A mounting disc is fixedly connected to the side of the communicating wheel seat away from the connecting shaft. A number of communicating small balls are arranged at equal circumferential intervals on the mounting disc.

[0010] Preferably, the guide rail includes a first conductive coating and a second conductive coating. The front and rear sides of the first conductive coating are both fixedly connected to the second conductive coating. The first conductive coating and the two second conductive coatings form a structure with a cross-section in the shape of "concave", and its open end corresponds to the clamping groove.

[0011] Preferably, the fixing rod is slidably connected to the clamping groove in a matching manner, the communicating component is embedded in the sliding groove in a matching manner, and the outer wall of the communicating roller abuts against the inner wall of the second conductive coating. The communicating small ball is pushed by the displacement component to abut against the first conductive coating.

[0012] Preferably, the displacement component further includes a disc, an arc groove, and a connecting rod. The disc is coaxially arranged with the rotating ring, and the front surface of the disc is fixedly connected to the rear surface of the rotating ring. Two arc grooves are arranged at the axis center of the disc in a staggered manner. Connecting rods are slidably connected to the arc grooves in a matching manner. The rear ends of the two connecting rods are fixedly connected to the two fixing plates.

[0013] Preferably, the communicating component further includes a receiving cavity, an embedding port, and a communicating large ball. A number of receiving cavities are arranged at equal circumferential intervals on the mounting disc. An embedding port is fixedly connected to the opening of the receiving cavity. A communicating large ball is embedded and rotatably connected in the receiving cavity. A communicating small ball is rotatably connected to the embedding port in a matching manner, and the surface of the communicating small ball abuts against the surface of the corresponding communicating large ball.

[0014] Preferably, the one-way locking assembly includes a swivel ring, inner ratchet teeth, outer ratchet teeth, a connecting block, a hinged rod, a locking hook, a limiting rod, and a torsion spring. The swivel ring is coaxially arranged with the disc, and the front surface of the disc is fixedly connected to the rear surface of the swivel ring. A plurality of inner ratchet teeth are circumferentially and equidistantly arranged on the inner wall of the swivel ring, and a plurality of outer ratchet teeth are circumferentially and equidistantly arranged on the outer wall of the swivel ring. The swivel ring is respectively meshed and connected with two locking hooks through the inner ratchet teeth and the outer ratchet teeth. The connecting block is arranged at the top of the front side of the swivel ring, and a hinged rod is hinged to the rear side of the connecting block. The upper and lower ends of the hinged rod are both hinged with locking hooks, and a limiting rod is fixedly connected to the front side of the locking hook. A torsion spring is connected to the two limiting rods.

[0015] Preferably, the interface module further includes a limiting plate, a connecting plate, a base, a socket, a conductive rod, a limiting frame, a wedge-shaped block, and a cover plate. The limiting plate is fixedly connected to the front side of the limiting slider. A swivel ring is rotatably connected in a cavity formed in the center of the limiting plate. A connecting plate is rotatably connected to the front side of the limiting plate, and the connecting plate is fixedly connected to the swivel ring. A base is fixedly connected to the front side of the connecting plate. A socket is fixedly connected in the base, and a conductive rod is fixedly connected in the socket. The socket is used for inserting a wiring head, and when the wiring head is inserted, the conductive rod is connected to the wiring head. A limiting frame is arranged at the top of the socket, and a wedge-shaped block corresponding to the anti-disconnection component is fixedly connected to the bottom of the inner cavity of the limiting frame. A cover plate is matingly connected to the front side of the base.

[0016] Preferably, the anti-disconnection component includes a bottom plate, an elastic rod, and a clamping rod. The bottom plate is fixedly connected to the top of the wiring head. An elastic rod is fixedly connected to the top of the bottom plate, and a clamping rod is fixedly connected to the top of the elastic rod. When the wiring head is inserted into the interface module, the clamping rod is synchronously inserted into the limiting frame and is engaged with the wedge-shaped block.

[0017] Preferably, a through groove communicating with the track, the clamping groove, and the sliding groove is formed at the right end of the splitter body. A clamping block is fittingly embedded in the through groove, and a plug is fixedly connected to the right side of the clamping block. A connecting wire is fixedly connected to the left end of the splitter body, and the connecting wire is electrically connected to the two guide rails.

[0018] Compared with the prior art, the beneficial effects achieved by the present invention are:

[0019] First: In the present invention, by providing a splitter body and a number of interface modules, the interface modules horizontally move along the length direction of the splitter body through limit sliders. The connection components synchronously move and rotate in the sliding grooves, maintaining a stable connection with the second conductive coating. When the interface module reaches the specified position, the user rotates the base, the one-way locking component rotates, pushing the connection component towards the guide rail. The connecting small balls come into contact with and roll on the first conductive coating to achieve electrical connection. The inner ratchet teeth and the outer ratchet teeth engage with the locking hook to prevent the interface module from displacing on the track, realizing the one-way locking function.

[0020] Second: In the present invention, on the same splitter, multiple interface modules can be equipped. Users can flexibly adjust the quantity, type, and position of the interface modules according to their own needs. When the user hopes to change the output standard of a certain interface module, or when any interface module fails, the user can independently replace the corresponding faulty module without replacing the entire splitter. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 is the overall structural schematic diagram of the present invention;

[0022] Figure 2 is the structural schematic diagram of the splitter body in the present invention;

[0023] Figure 3 is the side cross-sectional structural schematic diagram of the splitter body in the present invention;

[0024] Figure 4 is the Figure 3 magnified structural schematic diagram of part A in the present invention;

[0025] Figure 5 is the structural schematic diagram of the interface module in the present invention;

[0026] Figure 6 is the structural schematic diagram of the interface module from another perspective in the present invention;

[0027] Figure 7 is the exploded structural schematic diagram of the interface module in the present invention;

[0028] Figure 8 is the structural schematic diagram of the displacement component in the present invention;

[0029] Figure 9 is the structural schematic diagram of the connection component in the present invention;

[0030] Figure 10 is the cross-sectional structural schematic diagram of the connection component in the present invention;

[0031] Figure 11 is the structural schematic diagram of the one-way locking component in the present invention.

[0032] Wherein: 1. Splitter body; 2. Track; 3. Card slot; 4. Slide groove; 5. Guide rail; 501. First conductive coating; 502. Second conductive coating; 6. Interface module; 601. Limit slider; 602. Displacement component; 6021. Disc; 6022. Arc groove; 6023. Connecting rod; 6024. Fixed plate; 6025. Fixed rod; 603. Connecting component; 6031. Connecting shaft; 6032. Connecting wheel seat; 6033. Connecting frame; 6034. Connecting roller; 6035. Mounting plate; 6036. Accommodation cavity; 6037. Embedding port; 6038. Large connecting ball; 6039. Small connecting ball; 604. One-way locking component; 6041. Rotating ring; 6042. Inner ratchet tooth; 6043. Outer ratchet tooth; 6044. Connecting block; 6045. Hinge rod; 6046. Locking hook; 6047. Limit rod; 6048. Torsion spring; 605. Limit plate; 606. Connecting plate; 607. Base; 608. Socket; 609. Conductive rod; 610. Limit frame; 611. Wedge block; 612. Cover plate; 7. Wiring head; 8. Anti-disconnection component; 801. Base plate; 802. Elastic rod; 803. Card rod; 9. Cable; 10. Through groove; 11. Card block; 12. Plug; 13. Connecting wire. Detailed implementation mode

[0033] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0034] Embodiment 1

[0035] Please refer to Figure 1 - Figure 7Description of Embodiment 1. In the illustration, a cable splitter for a computer includes a splitter main body 1 and several interface modules 6. Along the length direction on the front side of the splitter main body 1, a track 2 is provided. At the upper and lower ends of the track 2, clamping grooves 3 are symmetrically provided. On the side of the clamping groove 3 away from the track 2, a sliding groove 4 is provided. A guide rail 5 is fitted and embedded in the sliding groove 4. Several interface modules 6 are arranged at equal intervals on the front side of the splitter main body 1 and are electrically connected through the guide rail 5. The interface module 6 includes a limit slider 601, a displacement component 602, a connection component 603, and a one-way locking component 604. The limit slider 601 is slidably connected in the track 2. In the cavity provided on the front side of the limit slider 601, a displacement component 602 is provided. On the upper and lower output ends of the displacement component 602, connection components 603 are connected. On the front side of the connection component 603, a one-way locking component 604 is connected. A wiring head 7 is detachably and electrically connected to the front side of the interface module 6. An anti-disconnection component 8 is fixedly connected to the upper surface of the wiring head 7. A cable 9 is fixedly connected to the front side of the wiring head 7;

[0036] The displacement component 602 includes a fixing plate 6024 and a fixing rod 6025. There are two symmetrically arranged fixing plates 6024. Both fixing plates 6024 are slidably connected in the limit slider 601. On the opposite sides of the two fixing plates 6024, fixing rods 6025 are fixedly connected. The ends of the two fixing rods 6025 respectively penetrate through the upper and lower ends of the limit slider 601 and are connected to the corresponding connection components 603;

[0037] The connection component 603 includes a connection shaft 6031, a connection wheel seat 6032, a connection frame 6033, a connection roller 6034, a mounting disc 6035, and a connection small ball 6039. One end of the connection shaft 6031 is fixedly connected to the corresponding mounting disc 6035. The other end of the connection shaft 6031 is fixedly connected to a connection wheel seat 6032. A number of connection frames 6033 are fixedly connected to the side wall of the connection wheel seat 6032 at equal intervals in the circumferential direction. A connection roller 6034 is rotatably connected to each of the several connection frames 6033. On the side of the connection wheel seat 6032 away from the connection shaft 6031, a mounting disc 6035 is fixedly connected. A number of connection small balls 6039 are arranged at equal intervals in the circumferential direction on the mounting disc 6035;

[0038] Please refer to Figure 3 and Figure 4 As shown in the figure, the guide rail 5 includes a first conductive coating 501 and a second conductive coating 502. The front and rear sides of the first conductive coating 501 are both fixedly connected with the second conductive coating 502. The first conductive coating 501 and the two second conductive coatings 502 form a structure with a cross-section in the shape of a "concave", and its open end corresponds to the clamping groove 3;

[0039] In this embodiment, first, the interface module 6 makes a horizontal displacement along the length direction of the splitter body 1 in the clamping groove 3 through the limit slider 601. At this time, the communication components 603 at the upper and lower ends of the interface module 6 move synchronously in the corresponding sliding grooves 4. During the movement, the communication roller 6034 rotates on the connecting frame 6033, so as to maintain stable communication with the second conductive coating 502. At this time, the communication small ball 6039 is not in contact with the first conductive coating 501. When the interface module 6 moves to the required position, the user rotates the base 607, thereby driving the one-way locking component 604 to rotate synchronously. The rotation of the turntable 6041 drives the disc 6021 to rotate in the limit slider 601. At this time, the two fixing plates 6024 slide relative to each other in the limit slider 601, driving the fixing rod 6025 to displace. The fixing rod 6025 is used to push the whole communication component 603 to move towards the guide rail 5. At this time, while the communication roller 6034 rotates on the connecting frame 6033, the communication small ball 6039 contacts and rolls with the first conductive coating 501. By means of the rolling connection of the communication roller 6034 and the communication small ball 6039 with the first conductive coating 501 and the second conductive coating 502, the electrical connection between the interface module 6 and the guide rail 5 is maintained. At this time, the inner ratchet 6042 and the outer ratchet 6043 in the one-way locking component 604 are respectively engaged with the two locking hooks 6046, realizing the fixation of the interface module 6 and preventing the interface module 6 from displacing on the track 2, further improving the stability of the interface module 6 during use.

[0040] Specifically, the limit slider 601 is slidably connected to the clamping groove 3 in a matching manner, so that the interface module 6 can slide stably along the track 2 and the position of the interface module 6 can be adjusted according to actual needs. At the same time, the communication component 603 is embedded in the sliding groove 4 in a matching manner to ensure that the communication component 603 can move smoothly. The outer wall of the communication roller 6034 abuts against the inner wall of the second conductive coating 502, which not only improves the stability of the electrical connection, but also reduces wear through the rolling friction between the communication roller 6034 and the second conductive coating 502. The communication small ball 6039 abuts against the first conductive coating 501 under the push of the displacement component 602, further enhancing the stability and reliability of the connection.

[0041] It should be noted that the conductive coating 1 - 501 and the conductive coating 2 - 502 can be used as the positive electrode and the negative electrode respectively. The conductive coating 1 - 501 and the conductive coating 2 - 502 are also electrically connected to the connecting wire 13. Among them, the conductive coating 1 - 501 is in contact with the connecting small ball 6039, and the conductive coating 2 - 502 is in contact with the connecting roller 6034 to form an electrical conduction loop. When the interface module 6 is moved and adjusted on the splitter body 1, it can maintain a power-off state. Only after the interface module 6 reaches the predetermined position and is fixed by the one-way locking component 604, and the connecting roller 6034 and the connecting small ball 6039 are in contact with the conductive coating 1 - 501 and the conductive coating 2 - 502 simultaneously, can electrical connection be achieved. This not only improves the flexibility of the interface module 6 but also ensures the safety of use.

[0042] Embodiment 2

[0043] Please refer to Figure 8 and Figure 9 To illustrate Embodiment 2, this embodiment further describes Embodiment 1. In the figure, the fixed rod 6025 is slidably connected to the clamping groove 3 in a matching manner, the connecting component 603 is embedded in the sliding groove 4 in a matching manner, and the outer wall of the connecting roller 6034 abuts against the inner wall of the conductive coating 2 - 502. The connecting small ball 6039 is pushed by the displacement component 602 to abut against the conductive coating 1 - 501.

[0044] Furthermore, the displacement component 602 further includes a disc 6021, an arc groove 6022, and a connecting rod 6023. The disc 6021 is coaxially arranged with the rotating ring 6041, and the front surface of the disc 6021 is fixedly connected to the rear surface of the rotating ring 6041. Two arc grooves 6022 are arranged in a staggered manner along the axis center of the disc 6021. The connecting rod 6023 is slidably connected to the arc groove 6022 in a matching manner. The rear ends of the two connecting rods 6023 are fixedly connected to the two fixing plates 6024.

[0045] In this embodiment, the rotation of the base 607 drives the rotating ring 6041 in the one-way locking component 604 to rotate synchronously. The rotation of the rotating ring 6041 further drives the disc 6021 fixedly connected to it to rotate. Since two arc grooves 6022 are arranged in a staggered manner along the axis center of the disc 6021, and the connecting rod 6023 is slidably connected to the two arc grooves 6022 in a matching manner, as the disc 6021 rotates, the two connecting rods 6023 will relatively slide under the guidance of the arc grooves 6022, thereby driving the two fixing plates 6024 to relatively move within the limit slider 601. The movement of the fixing plate 6024 pushes the entire connecting component 603 towards the guide rail 5 through the fixed rod 6025. At this time, while the connecting roller 6034 rotates on the connecting frame 6033, the connecting small ball 6039 contacts the conductive coating 1 - 501 and rolls, thus realizing the electrical connection between the interface module 6 and the guide rail 5.

[0046] Example 3

[0047] Please refer to Figure 10 and Figure 11 To illustrate Example 3, this embodiment further explains Embodiment 2. In the figure, the connecting component 603 further includes a receiving cavity 6036, an insertion opening 6037, and a connecting large ball 6038. A plurality of receiving cavities 6036 are circumferentially and equidistantly arranged on the mounting disk 6035. An insertion opening 6037 is fixedly connected to the opening of the receiving cavity 6036. A connecting large ball 6038 is embedded and rotatably connected in the receiving cavity 6036. A connecting small ball 6039 is rotatably connected in the insertion opening 6037 in a matching manner, and the surface of the connecting small ball 6039 abuts against the surface of the corresponding connecting large ball 6038;

[0048] Furthermore, the one-way locking component 604 includes a rotating ring 6041, an inner ratchet tooth 6042, an outer ratchet tooth 6043, a connecting block 6044, a hinge rod 6045, a locking hook 6046, a limiting rod 6047, and a torsion spring 6048. The rotating ring 6041 is coaxially arranged with the disk 6021, and the front surface of the disk 6021 is fixedly connected to the rear surface of the rotating ring 6041. A plurality of inner ratchet teeth 6042 are circumferentially and equidistantly arranged on the inner wall of the rotating ring 6041. A plurality of outer ratchet teeth 6043 are circumferentially and equidistantly arranged on the outer wall of the rotating ring 6041. The rotating ring 6041 is respectively meshed and connected with two locking hooks 6046 through the inner ratchet teeth 6042 and the outer ratchet teeth 6043. The connecting block 6044 is arranged at the top on the front side of the rotating ring 6041. A hinge rod 6045 is hinged to the rear side of the connecting block 6044. The upper and lower ends of the hinge rod 6045 are respectively hinged with a locking hook 6046. A limiting rod 6047 is fixedly connected to the front side of the locking hook 6046. A torsion spring 6048 is connected to the two limiting rods 6047;

[0049] In this embodiment, when the base 607 rotates, the hinge rod 6045 pushes the two locking hooks 6046 to approach or move away from each other. When the two locking hooks 6046 approach each other, the inner ratchet teeth 6042 and the outer ratchet teeth 6043 are respectively engaged with the two locking hooks 6046, realizing the fixation of the interface module 6 and preventing the interface module 6 from displacing on the track 2. The locking hook 6046 can automatically engage with the corresponding inner ratchet teeth 6042 and outer ratchet teeth 6043 under the action of the torsion spring, realizing the one-way locking function.

[0050] It should be noted that during the movement, due to the synergistic effect of the small ball 6039 and the large ball 6038, the connecting small ball 6039 of the connecting component 603 can rotate freely with less frictional resistance. At the same time, during the rolling process of the connecting large ball 6038 and the small ball 6039, the contact surfaces are continuously updated, which not only enhances the stability and reliability of the connection, but also further reduces wear and effectively extends the service life.

[0051] Example 4

[0052] Please refer to Figure 5 and Figure 7 To illustrate Example 4, this embodiment further elaborates on Example 3. In the illustration, the interface module 6 further includes a limit plate 605, a connecting plate 606, a base 607, a socket 608, a conductive rod 609, a limit frame 610, a wedge block 611, and a cover plate 612. The limit plate 605 is fixedly connected to the front side of the limit slider 601. A rotating ring 6041 is rotatably connected in a cavity formed in the center of the limit plate 605. The connecting plate 606 is rotatably connected to the front side of the limit plate 605 and is fixedly connected to the rotating ring 6041. The front side of the connecting plate 606 is fixedly connected to the base 607. A socket 608 is fixedly connected inside the base 607. A conductive rod 609 is fixedly connected inside the socket 608. The socket 608 is used for inserting the connection head 7, and the conductive rod 609 is connected to the connection head 7 when inserted. A limit frame 610 is provided at the top of the socket 608. A wedge block 611 corresponding to the anti-disconnection component 8 is fixedly connected to the bottom of the inner cavity of the limit frame 610. A cover plate 612 is matingly connected to the front side of the base 607;

[0053] In this embodiment, during the process of inserting the connection head 7 into the socket 608, it will be guided by the wedge block 611, enabling the connection head 7 to be smoothly and stably inserted into the socket 608. At the same time, the mutual cooperation between the anti-disconnection component 8 and the wedge block 611 further enhances the connection stability between the connection head 7 and the socket 608, preventing the connection head 7 from accidentally falling off during use. The setting of the cover plate 612 can not only protect the internal connection structure but also prevent dust and debris from entering the socket 608, ensuring the normal use of the interface module 6.

[0054] Example 5

[0055] Please refer to Figure 2 and Figure 7 To illustrate Example 5, this embodiment further elaborates on Example 4. In the illustration, the anti-disconnection component 8 includes a bottom plate 801, an elastic rod 802, and a clamping rod 803. The bottom plate 801 is fixedly connected to the top of the connection head 7. The elastic rod 802 is fixedly connected to the top of the bottom plate 801. The clamping rod 803 is fixedly connected to the top of the elastic rod 802. When the connection head 7 is inserted into the interface module 6, the clamping rod 803 is synchronously inserted into the limit frame 610 and is engaged with the wedge block 611;

[0056] Furthermore, a through groove 10 communicating with the track 2, the clamping groove 3, and the sliding groove 4 is provided at the right end of the splitter main body 1. A clamping block 11 is fittingly embedded in the through groove 10. A plug 12 is fixedly connected to the right side of the clamping block 11. A connecting wire 13 is fixedly connected to the left end of the splitter main body 1. The connecting wire 13 is electrically connected to the two guide rails 5;

[0057] In this embodiment, when the terminal 7 is inserted into the socket 608, the positioning rod 803 first contacts the inclined surface of the wedge-shaped block 611 and moves inward under the guiding action of the wedge-shaped block 611. At this time, the elastic rod 802 undergoes elastic deformation. When the positioning rod 803 moves to the bottom of the wedge-shaped block 611, under the elastic force of the elastic rod 802, the positioning rod 803 pops out and is snapped into the limiting frame 610, thereby realizing the fixation of the terminal 7, and further improving the connection stability between the interface module 6 and the cable 9.

[0058] Specifically, the number of interface modules 6 can be flexibly increased or decreased through the through groove 10 opened at the right end of the splitter main body 1 to meet different usage requirements. After installation, the positioning block 11 is inserted into the end of the splitter main body 1 and sealed with a plug 12 to prevent dust and sundries from entering the inside of the splitter main body 1, ensuring the normal operation of the splitter.

[0059] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprising", "including" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article or device.

[0060] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A cable splitter for a computer, comprising a splitter body (1) and a plurality of interface modules (6), characterized in that: The front side of the main body (1) of the wire splitter is provided with a track (2) along its length direction, the upper and lower ends of the track (2) are symmetrically provided with positioning grooves (3), the side of the positioning groove (3) away from the track (2) is provided with a slide groove (4), and a guide rail (5) is matched and embedded in the slide groove (4), and a plurality of interface modules (6) are arranged at equal intervals on the front side of the main body (1) and are electrically connected through the guide rail (5), and the interface module (6) comprises a limit slider (601), a displacement component (602), a connection component (603) and a one-way locking component (604), and the The limit slider (601) is matched and slidably connected in the track (2); a displacement component (602) is arranged in a cavity opened on the front side of the limit slider (601); both upper and lower output ends of the displacement component (602) are connected to a connection component (603); the front side of the connection component (603) is connected to a one-way locking component (604); the front side of the interface module (6) is detachably electrically connected to a wiring head (7); the upper surface of the wiring head (7) is fixedly connected to an anti-dropping component (8); and the front side of the wiring head (7) is fixedly connected to a cable (9); The displacement component (602) comprises a fixing plate (6024) and a fixing rod (6025), two fixing plates (6024) are symmetrically arranged, the two fixing plates (6024) are matched and slidably connected in the limit slider (601), the opposite sides of the two fixing plates (6024) are fixedly connected with the fixing rod (6025), and the ends of the two fixing rods (6025) respectively penetrate the upper and lower ends of the limit slider (601) and are connected with corresponding connecting components (603); The connecting component (603) comprises a connecting shaft (6031), a connecting wheel seat (6032), a connecting frame (6033), a connecting roller (6034), a mounting plate (6035) and connecting small balls (6039); one end of the connecting shaft (6031) is fixedly connected to the corresponding mounting plate (6035); the other end of the connecting shaft (6031) is fixedly connected to the connecting wheel seat (6032); a plurality of connecting frames (6033) are fixedly connected to the side wall of the connecting wheel seat (6032) at equal intervals around the circumference; the connecting rollers (6034) are rotatably connected to the plurality of connecting frames (6033); a side of the connecting wheel seat (6032) away from the connecting shaft (6031) is fixedly connected to the mounting plate (6035); a plurality of connecting small balls (6039) are arranged at equal intervals around the circumference of the mounting plate (6035); The guide rail (5) comprises a conductive coating 1 (501) and a conductive coating 2 (502), the conductive coating 1 (501) being fixedly connected to the conductive coating 2 (502) on both the front and rear sides, the conductive coating 1 (501) and the two conductive coatings 2 (502) forming a structure with a concave cross-section, and the open end thereof corresponds to the locking groove (3); The fixing rod (6025) is matched and slidably connected in the locking groove (3), the connecting component (603) is matched and embedded in the sliding groove (4), and the outer wall of the connecting roller (6034) abuts against the inner wall of the conductive coating 2 (502), and the connecting small ball (6039) is pushed by the displacement component (602) to abut against the conductive coating 1 (501).

2. A cable splitter for a computer according to claim 1, characterized in that: The displacement assembly (602) further comprises a circular disc (6021), an arcuate groove (6022) and a connecting rod (6023); the circular disc (6021) is provided with two offset arcuate grooves (6022) along the axis center thereof; the connecting rod (6023) is matched and slidably connected in the arcuate groove (6022); the rear ends of the two connecting rods (6023) are fixedly connected to the two fixing plates (6024).

3. A cable splitter for a computer according to claim 2, characterized in that: The connecting component (603) further comprises a receiving cavity (6036), an embedding opening (6037) and a connecting large ball (6038); a plurality of receiving cavities (6036) are provided on the circumference of the mounting plate (6035) at equal intervals; an embedding opening (6037) is fixedly connected to the opening of the receiving cavity (6036); a connecting large ball (6038) is embedded and rotatably connected in the receiving cavity (6036); a connecting small ball (6039) is matched and rotatably connected in the embedding opening (6037); and the surface of the connecting small ball (6039) abuts against the corresponding surface of the connecting large ball (6038).

4. A cable splitter for a computer according to claim 2, characterized in that: The one-way locking assembly (604) comprises a rotating ring (6041), an inner ratchet (6042), an outer ratchet (6043), a connecting block (6044), a hinged rod (6045), a locking hook (6046), a limiting rod (6047) and a torsion spring (6048); the rotating ring (6041) is coaxially arranged with the disk (6021), and the front surface of the disk (6021) is fixedly connected to the rear surface of the rotating ring (6041); a plurality of inner ratchet teeth (6042) are arranged at equal intervals on the inner wall of the rotating ring (6041); and a plurality of inner ratchet teeth (6042) are arranged at equal intervals on the outer wall of the rotating ring (6041). A plurality of external ratchets (6043) are provided, and the rotating ring (6041) is respectively meshed and connected with two locking hooks (6046) through the internal ratchets (6042) and the external ratchets (6043); the connecting block (6044) is provided at the top of the front side of the rotating ring (6041); a hinged rod (6045) is hingedly connected to the rear side of the connecting block (6044); the upper and lower ends of the hinged rod (6045) are both hingedly connected with locking hooks (6046); the front side of the locking hook (6046) is fixedly connected to a limiting rod (6047); and the two limiting rods (6047) are connected to torsion springs (6048).

5. A cable splitter for a computer according to claim 4, characterized in that: The interface module (6) further comprises a limit plate (605), a connecting plate (606), a base (607), a socket (608), a conductive rod (609), a limit frame (610), a wedge block (611) and a cover plate (612), wherein the limit plate (605) is fixedly connected to the front side of the limit slider (601), a swivel (6041) is rotatably connected in a cavity provided in the center of the limit plate (605), a connecting plate (606) is rotatably connected to the front side of the limit plate (605), the connecting plate (606) is fixedly connected to the swivel (6041), and the connecting plate (612) is fixedly connected to the swivel (6041). The front side of the socket (606) is fixedly connected to a base (607), a socket (608) is fixedly connected inside the base (607), a conductive rod (609) is fixedly connected inside the socket (608), the socket (608) is used to insert a wiring head (7), and the conductive rod (609) is connected to the wiring head (7) when inserted, a limit frame (610) is provided at the top of the socket (608), a wedge block (611) corresponding to the anti-detachment component (8) is fixedly connected to the bottom of the inner cavity of the limit frame (610), and a cover plate (612) is matched and connected to the front side of the base (607).

6. A cable splitter for a computer according to claim 5, characterized in that: The anti-drop assembly (8) comprises a bottom plate (801), an elastic rod (802) and a locking rod (803); the bottom plate (801) is fixedly connected to the top of the wiring head (7); the top of the bottom plate (801) is fixedly connected to the elastic rod (802); the top of the elastic rod (802) is fixedly connected to the locking rod (803); when the wiring head (7) is inserted into the interface module (6), the locking rod (803) is simultaneously inserted into the limit frame (610) and is locked with the wedge block (611).

7. A cable splitter for a computer according to claim 1, characterized in that: The right end of the main body (1) of the wire splitter is provided with a through slot (10) which is connected to the track (2), the positioning slot (3) and the slide slot (4); a positioning block (11) is matched and embedded in the through slot (10); a plug (12) is fixedly connected to the right side of the positioning block (11); and a connecting wire (13) is fixedly connected to the left end of the main body (1) of the wire splitter; the connecting wire (13) is electrically connected to the two guide rails (5).

Citation Information

Patent Citations

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