5G compatible high-speed data communication network switch

By designing a combined structure of fixing frame, slider, card block and dustproof curtain on the switch, the dust accumulation problem caused by the exposure of the switch port is solved, and the dual effects of network cable fixing and dustproofing are achieved.

CN223297661UActive Publication Date: 2025-09-02SHENZHEN TEFA TYCO COMM TECH CO LTD
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Patent Information

Application Number
CN202422505384.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-16
Publication Date
2025-09-02
Estimated Expiration
2034-10-16

AI Technical Summary

Technical Problem

In the prior art, long-term exposure of switch ports will cause dust to accumulate on the interface, affecting the normal operation of the switch.

Method used

A 5G-compatible high-speed digital communication network switch is designed, which adopts a combined structure of fixing frame, slider, card block and dustproof curtain. The position of the fixing frame is adjusted by sliding the slider in the slide groove. The coordination between the card block and the latch makes the dustproof curtain automatically fall down the cover port when needed to prevent dust from entering.

Benefits of technology

Effectively prevent dust from entering the switch port, ensure the normal operation of the switch, and have dual functions of network cable fixing and dustproofing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a 5G compatible high-speed digital communication network switch, which relates to the technical field of network switches, and comprises a switch main body, the top surface and the bottom surface of the switch main body are respectively provided with two sliding chutes, the four sliding chutes are internally provided with sliding blocks, one side of the switch main body is provided with a fixed frame, the fixed frame is internally provided with two clamping blocks, and the two clamping blocks are arranged in the fixed frame. Plug pin holes are formed in the surfaces of the two clamping blocks and the surfaces of the two sliding blocks at the top of the switch main body, the fixing frame is pushed towards the switch main body to be attached to the surface of the switch main body, then the two second plug pins are put down, the two second plug pins extrude damping blocks of the second plug pins through reset springs, and the second plug pins are reset to the original positions; according to the utility model, the two clamping blocks of the fixing frame and the dustproof curtains of the top clamping block are used for preventing dust of the ports of the switch main body, so that the defect that the ports are exposed outside for a long time to cause dust accumulation on the interfaces and influence the normal operation of the switch is overcome.
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Description

Technical Field

[0001] The utility model relates to the technical field of network switches, and in particular to a 5G-compatible high-speed data communication network switch. Background Art

[0002] According to a network switch disclosed in China Publication (Announcement) No. CN221748523U, the switch comprises a main body, an outer wall of one side of the main body including network interfaces distributed at equal intervals, a fixing plate fixedly provided at the bottom of the outer wall of one side of the main body, a fixing block fixedly provided at equal intervals on the top outer wall of the fixing plate, the fixing block being located on one side of the network interface, a pressing block provided on the top of the fixing block, and a first semi-arc-shaped slot defined at the top center of the fixing block. The utility model presses a network cable into the first semi-arc-shaped slot by means of the fixing block fixed on the top of the fixing plate, inserts the pressing block into the inner wall of the slot through the fixing block, and presses a second semi-arc-shaped slot defined on the bottom outer wall of the pressing block into the top outer wall of the network cable. The network cable is secured by means of a first rubber pad provided on the inner wall of the first semi-arc-shaped slot and a second rubber pad provided on the inner wall of the second semi-arc-shaped slot, thereby preventing the network cable from falling off and breaking due to being pulled and bent at the connection between the network cable and the RJ47 connector.

[0003] The above-mentioned technology and the existing technology can only fix the network cable when in use. However, when a switch is not needed, the port of the switch will be exposed. Exposing the port for a long time will cause dust to accumulate on the interface, affecting the normal operation of the switch. Utility Model Content

[0004] The purpose of this utility model is to solve the shortcomings of the prior art that exposing the port for a long time will cause dust accumulation on the interface and affect the normal operation of the switch, and to propose a 5G compatible high-speed data communication network switch.

[0005] In order to achieve the above-mentioned purpose, the present invention adopts the following technical solution: a 5G-compatible high-speed data communication network switch, including a switch body, two slide grooves are provided on the top and bottom surfaces of the switch body, and sliders are provided inside the four slide grooves. A fixing frame is provided on one side of the switch body, and two card blocks are provided inside the fixing frame. The surfaces of the two card blocks and the two sliders on the top of the switch body are provided with pin holes, and the tops of the two sliders on the top of the switch body are provided with pin buckles, and the tops of the two pin buckles are provided with second pins, and the surfaces of the two second pins are provided with damping blocks, and the interiors of the two pin buckles are provided with reset springs, and first pins are provided on both sides of the fixing frame, and five dust curtains are provided on the surface of the card block near one end of the pin buckle.

[0006] Preferably, the four slide grooves are evenly set up at both ends of the top and bottom surfaces of the switch body, and the four sliders are evenly installed in the four slide grooves. The four sliders are integrally formed with the fixing frame, the two card blocks are in a vertical state, and the two card blocks are installed in the fixing frame.

[0007] Preferably, five latch holes are provided on the surfaces of the two top sliding blocks, and latch holes are provided on the surfaces on both sides of the two clamping blocks.

[0008] Preferably, the two first latches are in an N shape, and the two first latches are evenly arranged in the middle of both sides of the fixing frame. The two first latches both pass through the fixing frame and are installed in the latch holes of the two clamping blocks.

[0009] Preferably, the five dust-proof curtains are all fixed to the surface of the top clamping block by fixing bolts, and the five dust-proof curtains are embedded in the interior of the clamping block, and the dust-proof curtains are made of plastic.

[0010] Preferably, the two latch buckles are set up on the top of the two slide grooves on the top surface of the switch body, and the two latch buckles are fixed to the top surface of the switch body by two fixing bolts.

[0011] Preferably, the two second latches are both inserted into the interior of the latch buckle, the two damping blocks are both set at the bottom of the reset spring, and the damping blocks are both integrally formed with the second latches.

[0012] Beneficial effects

[0013] In the present invention, a fixing frame is installed in a slide groove on the surface of the switch body through four sliders, and two card blocks are clamped on the top and bottom surfaces of the fixing frame through two first latches. Five dust curtains are provided on the surface of the card block on the top surface of the fixing frame. The latch buckle is fixed to the top of the two slide grooves on the top of the switch body through two fixing bolts. The two second latches are both installed in the latch buckle, and the second latches are clamped on the surface of the slider on the top of the switch body. When the network cable is not needed, the two first latches can be pulled out, and the two card blocks and the network cable can be unplugged. When the network cable is unplugged, the dust curtain of the top card block will fall down. Combine the two card blocks and secure them with the second latch. After the two card blocks are secured, pull up the two second latches and push the fixing frame toward the switch body so that the fixing frame is attached to the surface of the switch body. Then lower the two second latches so that the two second latches squeeze the damping blocks of the second latches through the reset springs, so that the second latches return to their original positions and are inserted into the latch holes of the two top card blocks. The two card blocks of the fixing frame and the dust curtain of the top card block protect the ports of the switch body from dust, thus solving the problem of dust accumulation on the interfaces caused by exposing the ports for a long time, which affects the normal operation of the switch. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is an isometric drawing of the present utility model;

[0015] Figure 2 It is a three-dimensional diagram of the utility model;

[0016] Figure 3 It is a partial front view of the utility model;

[0017] Figure 4 For the utility model Figure 3 Cross-sectional view at AA;

[0018] Figure 5 It is a partial rear view of the utility model;

[0019] Figure 6 For the utility model Figure 5 Cross-sectional view at BB;

[0020] Figure 7 It is a partial isometric drawing of the present utility model;

[0021] Figure 8 This is an auxiliary view of the second specific embodiment of the present utility model.

[0022] Legend:

[0023] 1. Switch body; 2. Slide groove; 3. Slider; 4. Fixing bracket; 5. Latch hole; 6. First latch; 7. Clamp block; 8. Return spring; 9. Damping block; 10. Second latch; 11. Dust curtain; 12. Latch buckle. DETAILED DESCRIPTION

[0024] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific embodiments and drawings. However, the following embodiments are only preferred embodiments of the present invention and are not exhaustive. Based on the embodiments in the implementation manner, other embodiments obtained by those skilled in the art without creative work are all within the scope of protection of the present invention.

[0025] The specific embodiments of the present utility model are described below with reference to the accompanying drawings. Specific embodiment one:

[0027] Reference Figure 1-8, a 5G compatible high-speed data communication network switch, including a switch body 1, two slide grooves 2 are provided on the top and bottom surfaces of the switch body 1, and sliders 3 are provided inside the four slide grooves 2. A fixing frame 4 is provided on one side of the switch body 1, and two card blocks 7 are provided inside the fixing frame 4. The surfaces of the two card blocks 7 and the two sliders 3 at the top of the switch body 1 are provided with latch holes 5. The tops of the two sliders 3 at the top of the switch body 1 are provided with latch buckles 12, and the tops of the two latch buckles 12 are provided with second latches 10. The surfaces of the two second latches 10 are provided with damping blocks 9, and the interiors of the two latch buckles 12 are provided with reset springs 8. First latches 6 are provided on both sides of the fixing frame 4, and five dust curtains 11 are provided on the surface of the card block 7 near one end of the latch buckle 12. The four slide grooves 2 are evenly set at both ends of the top and bottom surfaces of the switch body 1, and the four sliders 3 are evenly installed in the four slide grooves 2. The four sliders 3 are all connected to the fixing frame 4 is integrally formed, the two card blocks 7 are in a vertical state, and the two card blocks 7 are both installed in the fixing frame 4, the surfaces of the two top sliders 3 are provided with five latch holes 5, and the surfaces on both sides of the two card blocks 7 are provided with latch holes 5, the two first latches 6 are N-shaped, and the two first latches 6 are evenly set in the middle of the two sides of the fixing frame 4, the two first latches 6 are both inserted into the fixing frame 4 and installed in the latch holes 5 of the two card blocks 7, five dust curtains 11 are fixed to the surface of the top card block 7 by fixing bolts, and the five dust curtains 11 are embedded in the interior of the card block 7, the dust curtains 11 are made of plastic, two latch buckles 12 are set at the top of the two slide grooves 2 on the top surface of the switch body 1, and the two latch buckles 12 are fixed to the top surface of the switch body 1 by two fixing bolts, the two second latches 10 are both inserted into the interior of the latch buckles 12, the two damping blocks 9 are both set at the bottom of the reset spring 8, and the damping blocks 9 are integrally formed with the second latches 10.

[0028] The four sliders 3 are respectively installed at the corners at both ends of the top and bottom surfaces of the fixing frame 4, and are all set up at the corners of the fixing frame 4 close to one end of the switch body 1. The four sliders 3 are all L-shaped. The four sliders 3 of the fixing frame 4 are all installed in the slide grooves 2 on the surface of the switch body 1, so that the fixing frame 4 can adjust the distance between the fixing frame 4 and the switch body 1 by sliding the sliders 3 in the slide grooves 2, thereby adapting to different network cables and crystal heads of different sizes. One end of the two card blocks 7 is respectively inserted into the interior of the fixing frame 4 from the top and bottom surfaces of the fixing frame 4, and the two card blocks 7 are both stuck in the fixing frame 4 through the first pins 6 on both sides of the fixing frame 4. The network cable is fixed in the switch body 1 through the two card blocks 7 to prevent the network cable from falling off due to external force. Five dust-proof curtains 11 are provided on the surface of the top card block 7. The dust-proof curtains 11 are made of plastic and are fixed to the surface of the top card block 7 near one end of the switch body 1 by fixing bolts. When the network cable is clamped by the card block 7, the dust-proof curtains 11 will be pushed open by the network cable. When the network cable is unplugged, the dust-proof curtains 11 will fall by gravity, thereby blocking the card slots of the two card blocks 7 from clamping the main network cable, preventing dust from sticking to the port of the switch body 1 from the card slot. The latch buckle 12 is fixed to the top of the two slide grooves 2 at the top of the switch body 1 by two fixing bolts, and one end of the two second latches 10 passes through the interior of the latch buckle 12. The second latch 10 is stuck in the latch hole 5 on the surface of the slider 3 at the top of the switch body 1, and the slider is fixed by the latch buckle 12. Block 3, thereby indirectly fixing the fixing frame 4. When the network cable is not needed, the two first pins 6 can be pulled out, and the two card blocks 7 can be pulled down, and the network cable can be unplugged. When the network cable is unplugged, the dust curtain 11 of the top card block 7 will fall down, and the two card blocks 7 can be merged. After merging, they are fixed with the second pin 10 again. When the two card blocks 7 are fixed, the two second pins 10 are pulled up. At the same time, the damping block 9 on the surface of the second pin 10 will squeeze the reset spring 8, so that the reset spring 8 is squeezed and compressed, so that the bottom end of the second pin 10 is disengaged from the pin holes 5 of the two top card blocks 7. When the two second pins 10 are disengaged from the pin holes 5, the fixing frame 4 is pushed toward the direction of the switch body 1 so that the fixing frame 4 is attached to the surface of the switch body 1 , and then lower the two second pins 10. When the upward pulling force on the second pins 10 disappears, the reset spring 8 inside the pin buckle 12 will squeeze the damping block 9 of the second pin 10 downward through its own elastic force, and drive the second pin 10 to move downward, so that the second pin 10 is reset to its original position and inserted into the pin holes 5 of the two top blocks 7, so that the fixing frame 4 fits tightly to the surface of the switch body 1, and the dust-proof curtain 11 of the two blocks 7 of the fixing frame 4 and the top block 7 is used to protect the port of the switch body 1 from dust, so that the switch in this application not only has the function of fixing the network cable, but also has the dust-proof function at the port of the switch body 1. It should be noted that this application is implemented based on the 5G switch. Specific embodiment two:

[0030] Reference Figure 1-8 A 5G-compatible high-speed data communication network switch, further based on the basic structure in the specific embodiment 1, can be provided with a damping block 9 on the surface of the bottom card block 7, and the damping block 9 can be arranged to be installed on one side or on both sides, so that when the two first pins 6 are removed, the bottom card block 7 is fixed inside the fixing frame 4 due to the resistance of the damping block 9, preventing the bottom card block 7 from falling due to gravity.

[0031] In summary:

[0032] 1. The fixing frame 4 is installed in the slide groove 2 on the surface of the switch body 1 through four sliders 3, and the two card blocks 7 are clamped on the top and bottom surfaces of the fixing frame 4 through two first latches 6. Five dust curtains 11 are provided on the surface of the card block 7 on the top surface of the fixing frame 4. The latch buckle 12 is fixed to the top of the two slide grooves 2 at the top of the switch body 1 through two fixing bolts. The two second latches 10 are both installed in the latch buckle 12, and the second latches 10 are clamped on the surface of the slider 3 at the top of the switch body 1. When the network cable is not needed, the two first latches 6 can be pulled out, and the two card blocks 7 and the network cable can be unplugged. When the network cable is unplugged, the dust curtain 11 of the top card block 7 will fall down. The card blocks 7 are combined and then fixed with the second latches 10. When the two card blocks 7 are fixed, the two second latches 10 are pulled upward and the fixing frame 4 is pushed toward the switch body 1 so that the fixing frame 4 is attached to the surface of the switch body 1. The two second latches 10 are then lowered so that the two second latches 10 squeeze the damping blocks 9 of the second latches 10 through the reset springs 8, so that the second latches 10 return to their original positions and are inserted into the latch holes 5 of the two top card blocks 7. The two card blocks 7 of the fixing frame 4 and the dust curtain 11 of the top card block 7 protect the ports of the switch body 1 from dust, thus solving the problem of dust accumulation on the interfaces caused by exposing the ports for a long time, thereby affecting the normal operation of the switch.

[0033] In the present invention, unless otherwise expressly specified or limited, a first feature being "above" or "below" a second feature may include the first and second features being in direct contact, or may include the first and second features being in contact not directly but through another feature between them. Moreover, a first feature being "above," "above," and "above" a second feature may include the first feature being directly above or obliquely above the second feature, or may simply mean that the first feature is higher in level than the second feature. A first feature being "below," "below," and "below" a second feature may include the first feature being directly below or obliquely below the second feature, or may simply mean that the first feature is lower in level than the second feature.

[0034] The above shows and describes the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely preferred examples of the present invention and are not intended to limit the present invention. Various changes and improvements may be made to the present invention without departing from the spirit and scope of the present invention, and such changes and improvements fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.

Claims

1. A 5G-compatible high-speed data communication network switch, comprising a switch body (1), characterized in that: The top and bottom surfaces of the switch body (1) are each provided with two slide grooves (2), and sliders (3) are each provided inside the four slide grooves (2). A fixing frame (4) is provided on one side of the switch body (1), and two card blocks (7) are provided inside the fixing frame (4). The surfaces of the two card blocks (7) and the two sliders (3) at the top of the switch body (1) are each provided with a latch hole (5). The tops of the two sliders (3) at the top of the switch body (1) are each provided with a latch buckle (12), and the tops of the two latch buckles (12) are each provided with a second latch (10). The surfaces of the two second latches (10) are each provided with a damping block (9), and the interiors of the two latch buckles (12) are each provided with a reset spring (8). Both sides of the fixing frame (4) are provided with a first latch (6), and the surface of the card block (7) near one end of the latch buckle (12) is provided with five dust curtains (11).

2. A 5G-compatible high-speed data communication network switch according to claim 1, characterized in that: The four slide grooves (2) are evenly arranged at both ends of the top and bottom surfaces of the switch body (1), and the four sliders (3) are evenly installed in the four slide grooves (2). The four sliders (3) are all integrally formed with the fixing frame (4). The two card blocks (7) are in a vertical state, and the two card blocks (7) are both installed in the fixing frame (4).

3. The 5G-compatible high-speed data communication network switch according to claim 1, characterized in that: Five latch holes (5) are provided on the surfaces of the two top sliding blocks (3), and latch holes (5) are provided on the surfaces of both sides of the two clamping blocks (7).

4. The 5G-compatible high-speed data communication network switch according to claim 1, wherein: The two first latches (6) are in an N-shape and are evenly arranged in the middle of both sides of the fixing frame (4). The two first latches (6) both penetrate the fixing frame (4) and are installed in the latch holes (5) of the two clamping blocks (7).

5. The 5G-compatible high-speed data communication network switch according to claim 1, characterized in that: The five dust-proof curtains (11) are all fixed on the surface of the top block (7) by fixing bolts, and the five dust-proof curtains (11) are embedded in the interior of the block (7), and the dust-proof curtains (11) are made of plastic.

6. The 5G-compatible high-speed data communication network switch according to claim 1, characterized in that: The two latch buckles (12) are set on the top of the two slide grooves (2) on the top surface of the switch body (1), and the two latch buckles (12) are fixed to the top surface of the switch body (1) by two fixing bolts.

7. The 5G-compatible high-speed data communication network switch according to claim 1, characterized in that: The two second latches (10) are both inserted into the interior of the latch buckle (12), the two damping blocks (9) are both set at the bottom of the return spring (8), and the damping blocks (9) are both integrally formed with the second latches (10).

Citation Information

Patent Citations

  • Network switch

    CN221748523U