A data processing switch

By installing a bolt-locked top plate and a cable clamping mechanism on the switch body, and using C-shaped cover and C-shaped connector to hold the cable, the problem of easy separation of switch connectors is solved, and the stability and reliability of data transmission are achieved.

CN224329479UActive Publication Date: 2026-06-05YUANQI SENYU (ZHEJIANG) NETWORK TECHNOLOGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YUANQI SENYU (ZHEJIANG) NETWORK TECHNOLOGY CO LTD
Filing Date
2025-08-05
Publication Date
2026-06-05

AI Technical Summary

Technical Problem

The connectors and cables of existing managed switches are easily separated due to misoperation, resulting in network latency fluctuations and packet loss.

Method used

A bolt-locked top plate is installed on the switch body, and the upper plate and lower plate are connected by an L-shaped bracket to fix the cable clamping mechanism. The cable is clamped by a C-shaped cover and a C-shaped connector, and rubber posts and double-point rubber pads are used to prevent the cable from separating from the connector.

Benefits of technology

It effectively prevents cables from separating from the connector due to human error, ensuring the stability of data transmission and avoiding network latency and data loss.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of data processing switches, including switch body, still include top hole plate, L-shaped row frame, upper plate, low plate and thread clamping mechanism, the upper shell of switch body is close to its own interface and is locked with top hole plate by bolt, and the plate body one side of top hole plate is welded with L-shaped row frame, top hole plate is locked with bolt installation is set at switch body place, and the upper plate and low plate of top hole plate with L-shaped row frame connection are fixed thread clamping mechanism, thread clamping mechanism can be clamped with the rear cable of joint of switch body with C-shaped cover seat cooperation C-shaped socket, to keep cable stably at switch body outside, so that cable is not easy to force and joint separate when being artificially mispulled, avoid cable and joint separate after affecting switch body's data transmission processing.
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Description

Technical Field

[0001] This utility model relates to the field of switch technology, and in particular to a data processing switch. Background Technology

[0002] A switch, meaning "switch," is a network device used for forwarding electrical (optical) signals. It can provide a dedicated electrical signal path for any two network nodes connected to the switch. The most common type of switch is the Ethernet switch, while other common types include telephone voice switches and fiber optic switches. One common type of switch on the market is the managed switch, which achieves efficient forwarding and processing of network data, policy control, and status monitoring through the collaborative work of its hardware architecture and software protocols.

[0003] When existing managed switches are used with connectors, the cables behind the connectors are often accidentally pulled by cleaning personnel or maintenance personnel, which can cause damage and separation between the connectors and cables at the switch. If the cables are not completely separated but have poor contact, it may cause problems such as network latency fluctuations and packet loss. To address this, we propose a data processing switch. Utility Model Content

[0004] The main objective of this invention is to provide a data processing switch. A top-hole plate, bolted to the switch body, is installed. An L-shaped bracket connects the top-hole plate to an upper and lower plate, where a cable clamping mechanism is fixed. This mechanism, using a C-shaped cover and connector, clamps the cable behind the connector on the switch body, thus securing the cable stably to the outside of the switch body. This prevents the cable from being accidentally pulled and separating from the connector, avoiding any impact on data transmission and processing. This effectively solves the problems described in the prior art.

[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0006] A data processing switch includes a switch body, a top perforated plate, an L-shaped bracket, an upper plate, a lower plate, and a cable clamping mechanism. The top perforated plate is bolted to the upper housing of the switch body near its own plug-in interface. An L-shaped bracket is welded to one side of the top perforated plate. The upper plate and lower plate are welded sequentially from top to bottom to the outside of a vertical frame plate on the plug-in side of the L-shaped bracket. C-shaped connectors of the cable clamping mechanism are bonded and fixed to the surfaces of the upper and lower plates. The mechanism includes a C-shaped connector, a C-shaped cover, a bolt, a flange nut, a mating block, and a spinning bolt. One side of the C-shaped connector has a raised boss, and a C-shaped cover is fitted onto the outside of the boss. The C-shaped cover and the boss are movably connected by the bolt and the flange nut. A mating block is fixed to the outside of the C-shaped cover and the C-shaped connector away from the bolt. The mating blocks of the C-shaped cover and the C-shaped connector are screwed together and locked by a spinning bolt. A rubber post is fitted onto the inner arc surface of the C-shaped cover and the C-shaped connector.

[0007] Furthermore, a U-shaped notch is provided in the body of the C-shaped cover, and a boss is fitted inside the U-shaped notch;

[0008] By adopting the above technical solution, the boss can be positioned and locked into the U-shaped notch of the C-shaped cover.

[0009] Furthermore, a bolt hole is provided between the C-shaped cover and the boss, and a bolt shaft for screwing on the flange nut protrudes between the bolt hole of the C-shaped cover and the boss.

[0010] By adopting the above technical solution, a bolt shaft is passed through a bolt hole between the C-shaped cover and the boss. Then, the bolt shaft is screwed with a flange nut to prevent it from coming loose, so that the bolt shaft can rotate between the C-shaped cover and the boss.

[0011] Furthermore, threaded holes are provided through the surfaces of the C-shaped cover and the C-shaped connector, and screw-on bolts are screwed between the threaded holes of the connectors.

[0012] By adopting the above technical solution, the C-shaped cover and the C-shaped connector can be screwed together with a screw bolt through a threaded hole at the mating block, thereby locking the C-shaped cover and the C-shaped connector tightly against each other.

[0013] Furthermore, the inner arc surface of the C-shaped cover and the C-shaped connector is provided with a recessed groove, and a rubber column is fitted in the recessed groove;

[0014] By adopting the above technical solution, the inner arc surface of the C-shaped cover and the C-shaped connector can be used to attach and bond rubber pillars with concave grooves, so that the rubber pillars are exposed at the opening of the concave grooves and thus abut against the cable sandwiched between the C-shaped cover and the C-shaped connector.

[0015] Furthermore, the inner arc surfaces of the C-shaped cover and the C-shaped connector away from the rubber column are respectively bonded with an arc pressure pad and a double-point adhesive pad;

[0016] By adopting the above technical solution, the arc pressure pad of the C-shaped cover and the double-point adhesive pad of the C-shaped connector can press against the cable inserted between the C-shaped cover and the C-shaped connector.

[0017] Compared with the prior art, the present invention has the following beneficial effects:

[0018] This utility model features a top hole plate that is bolted to the switch body. The top hole plate is connected to the upper and lower plates by an L-shaped bracket, where a cable clamping mechanism is fixed. The cable clamping mechanism uses a C-shaped cover and a C-shaped connector to clamp the cable behind the connector used on the switch body, thereby keeping the cable stably on the outside of the switch body. This makes it less likely for the cable to separate from the connector if it is accidentally pulled, thus preventing the cable from separating from the connector and affecting the data transmission processing of the switch body.

[0019] Furthermore, the arc pressure pad of the C-shaped cover and the double-point adhesive pad of the C-shaped connector clamp the cable of the switch. At the same time, there are rubber pillars at the C-shaped cover and C-shaped connector to press the cable. This not only prevents the cable from slipping due to force through friction, but also avoids damage to the wire core by hard squeezing, thus ensuring the stability of the cable connection of the switch body from a physical perspective. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the overall structure of a data processing switch according to the present invention.

[0021] Figure 2 This is a schematic diagram showing the top plate and the switch body of a data processing switch according to this utility model.

[0022] Figure 3 This is an exploded view of a data processing switch according to the present invention.

[0023] Figure 4 This is an exploded view of the clamping mechanism of a data processing switch according to this utility model.

[0024] In the diagram: 1. Switch body; 2. Top perforated plate; 3. L-shaped bracket; 4. Upper plate; 5. Lower plate; 6. Cable clamping mechanism; 7. C-shaped connector; 8. Boss; 9. C-shaped cover; 10. Bolt hole; 11. Bolt shaft; 12. Flange nut; 13. Assembly block; 14. Spin bolt; 15. Groove; 16. Rubber column; 17. Double-point adhesive pad; 18. Arc pressure pad. Detailed Implementation

[0025] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0026] like Figure 1-4As shown, a data processing switch includes a switch body 1, a top perforated plate 2, an L-shaped bracket 3, an upper plate 4, a lower plate 5, and a cable clamping mechanism 6. The top perforated plate 2 is bolted to the upper housing of the switch body 1 near its own interface. An L-shaped bracket 3 is welded to one side of the top perforated plate 2. The upper plate 4 and the lower plate 5 are welded sequentially from top to bottom to the outside of the vertical frame plate on the interface side of the switch body 1, and C-shaped connectors 7 of the cable clamping mechanism 6 are bonded and fixed to the surfaces of the upper plate 4 and the lower plate 5. The cable clamping mechanism 6 includes C-shaped connectors... The C-shaped connector 7 comprises a seat 7, a C-shaped cover 9, a bolt 11, a flange nut 12, a mating block 13, and a screw bolt 14. One side of the seat surface of the C-shaped connector 7 has a protrusion 8, and a C-shaped cover 9 is fitted onto the outside of the protrusion 8. The C-shaped cover 9 and the protrusion 8 are movably connected by the bolt 11 and the flange nut 12. A mating block 13 is fixed to the outside of the C-shaped cover 9 and the C-shaped connector 7 away from the bolt 11. The mating block 13 of the C-shaped cover 9 and the C-shaped connector 7 are screwed and locked together by the screw bolt 14. A rubber post 16 is fitted onto the inner arc surface of the C-shaped cover 9 and the C-shaped connector 7.

[0027] The C-shaped cover 9 has a U-shaped notch in its body, and a protrusion 8 is fitted inside the U-shaped notch.

[0028] By adopting the above technical solution, the boss 8 can be inserted into the U-shaped notch of the C-shaped cover 9 for positioning and mounting.

[0029] Wherein, a bolt hole 10 is provided through between the C-shaped cover 9 and the boss 8, and a bolt shaft 11 for screwing the flange nut 12 is provided through between the bolt hole 10 of the C-shaped cover 9 and the boss 8.

[0030] By adopting the above technical solution, a bolt shaft 11 is passed through a bolt hole 10 between the C-shaped cover 9 and the boss 8. Then, the bolt shaft 11 is screwed with a flange nut 12 to prevent it from coming off, so that the bolt shaft 11 can rotate between the C-shaped cover 9 and the boss 8.

[0031] Among them, threaded holes are opened through the surfaces of the mating blocks 13 of the C-shaped cover 9 and the C-shaped connector 7, and a screw bolt 14 is screwed between the threaded holes of the mating blocks 13.

[0032] By adopting the above technical solution, the C-shaped cover 9 and the C-shaped connector 7 can be screwed onto the mating block 13 with threaded holes, thereby locking the C-shaped cover 9 and the C-shaped connector 7 together.

[0033] Among them, the inner arc surface of the C-shaped cover 9 and the C-shaped connector 7 is provided with a recessed groove 15, and a rubber column 16 is fitted in the recessed groove 15.

[0034] By adopting the above technical solution, the inner arc surfaces of the C-shaped cover 9 and the C-shaped connector 7 can be fitted with the rubber post 16 by the groove 15, so that the rubber post 16 is exposed at the opening of the groove 15, thereby abutting against the cable sandwiched between the C-shaped cover 9 and the C-shaped connector 7.

[0035] Among them, the inner arc surfaces of the C-shaped cover 9 and the C-shaped connector 7 away from the rubber column 16 are respectively bonded with an arc pressure pad 18 and a double-point adhesive pad 17.

[0036] By adopting the above technical solution, the arc pressure pad 18 of the C-shaped cover 9 and the double-point adhesive pad 17 of the C-shaped connector 7 can press against the cable inserted between the C-shaped cover 9 and the C-shaped connector 7.

[0037] It should be noted that this utility model is a data processing switch. A top-hole plate 2, bolted to the switch body 1, is installed. A cable clamping mechanism 6 is fixed to the upper plate 4 and lower plate 5, which are connected by an L-shaped bracket 3. The cable clamping mechanism 6 is bonded to the upper plate 4 and lower plate 5 by a C-shaped connector 7. A C-shaped cover 9 is fitted onto the boss 8 above the C-shaped connector 7. A bolt shaft 11 passes through a bolt hole 10 between the C-shaped cover 9 and the boss 8. The bolt shaft 11 is then screwed with a flange nut 12 to prevent detachment, allowing the bolt shaft 11 to rotate between the C-shaped cover 9 and the boss 8. This allows the C-shaped cover 9 to be flipped open or closed at the boss 8 and bolt shaft 11. When the switch body 1 needs to connect a data cable connector for data processing, the cable behind the connector can be inserted... Inside the C-shaped connector 7, the C-shaped cover 9 is then flipped over the C-shaped connector 7 and the cable. The screw-on bolt 14 is screwed into the mating block 13 between the C-shaped cover 9 and the C-shaped connector 7 for screwing. At this time, the C-shaped cover 9 uses the arc pressure pad 18 and its own rubber pillar 16 to squeeze the cable. At the same time, the C-shaped connector 7 uses the double-point adhesive pad 17 and its own rubber pillar 16 to squeeze the cable, so that the cable is clamped between the C-shaped connector 7 and the C-shaped cover 9. When the data cable is pulled by external force, the cable is clamped by the clamping mechanism 6 at the upper plate 4 and the lower plate 5, making it difficult for the data cable and the connector to separate under force, which may cause data transmission risks. The screw-on bolt 14 can be unscrewed with an Allen wrench, thereby opening the C-shaped cover 9 from the C-shaped connector 7, making it convenient to unplug the connector and remove the data cable for maintenance.

[0038] It should be noted that this utility model is a data processing switch. All components in this utility model are known to those skilled in the art, and their structure and principles can be learned by those skilled in the art through technical manuals or conventional experimental methods.

[0039] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A data processing switch, comprising a switch body (1), characterized in that: It also includes a top hole plate (2), an L-shaped bracket (3), an upper plate (4), a lower plate (5), and a cable clamping mechanism (6). The top hole plate (2) is bolted to the upper housing of the switch body (1) near its own plug interface. An L-shaped bracket (3) is welded to one side of the top hole plate (2). The L-shaped bracket (3) blocks the outside of the vertical frame plate on the plug interface side of the switch body (1). The upper plate (4) and the lower plate (5) are welded to the outside of the upper plate (4) and the lower plate (5) in sequence from top to bottom. The C-shaped connector (7) of the cable clamping mechanism (6) is glued and fixed to the surface of the upper plate (4) and the lower plate (5). The cable clamping mechanism (6) includes a C-shaped connector (7), a C-shaped cover (9), and a bolt shaft (11). The C-shaped connector (7) has a flange nut (12), a mounting block (13), and a spinning bolt (14). One side of the seat surface of the C-shaped connector (7) has a protrusion (8), and a C-shaped cover (9) is fitted on the outside of the protrusion (8). The C-shaped cover (9) and the protrusion (8) are movably connected by a bolt shaft (11) and a flange nut (12). The mounting block (13) is fixed on the outside of the seat of the C-shaped cover (9) and the C-shaped connector (7) away from the bolt shaft (11). The mounting blocks (13) of the C-shaped cover (9) and the C-shaped connector (7) are screwed and locked together by a spinning bolt (14). A rubber column (16) is fitted on the inner arc surface of the C-shaped cover (9) and the C-shaped connector (7).

2. The data processing switch according to claim 1, characterized in that: The C-shaped cover (9) has a U-shaped notch inside its body, and a boss (8) is fitted inside the U-shaped notch.

3. A data processing switch according to claim 1, characterized in that: A bolt hole (10) is provided between the C-shaped cover (9) and the boss (8), and a bolt shaft (11) for screwing a flange nut (12) is provided between the bolt hole (10) of the C-shaped cover (9) and the boss (8).

4. A data processing switch according to claim 1, characterized in that: The C-shaped cover (9) and the C-shaped connector (7) have threaded holes through the surfaces of the mounting blocks (13), and a screw bolt (14) is screwed between the threaded holes of the mounting blocks (13).

5. A data processing switch according to claim 1, characterized in that: The inner arc surfaces of the C-shaped cover (9) and the C-shaped connector (7) are provided with recessed grooves (15), and rubber pillars (16) are fitted inside the recessed grooves (15).

6. A data processing switch according to claim 1, characterized in that: The inner arc surfaces of the C-shaped cover (9) and C-shaped connector (7) away from the rubber column (16) are respectively bonded with an arc pressure pad (18) and a double-point adhesive pad (17).