Whole-row network port locking device

By designing a locking device for the entire row of network ports, the cooperation of the rotating end and the locking end is used to achieve fast, integrated locking and unlocking of the entire row of switch network ports, solving the cumbersome management problem caused by the large number of switch network ports and improving management efficiency and convenience.

CN223402487UActive Publication Date: 2025-09-30ZHUHAI UNITECH POWER TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422854566.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-21
Publication Date
2025-09-30
Estimated Expiration
2034-11-21

AI Technical Summary

Technical Problem

The large number of network ports on a switch makes locking management cumbersome, making it difficult to simultaneously meet the locking requirements for idle network ports and in-use network cables. The operation is also cumbersome and easy to confuse.

Method used

A locking device for an entire row of network ports is designed, comprising a fixing component and a locking component. The locking portion spans the entire row of network ports for integrated locking and unlocking, and the cooperation of the rotating end and the locking end enables fast and easy network port management.

Benefits of technology

It reduces the number of operating steps, improves the convenience and efficiency of network port management, reduces management and control costs, and can effectively lock both idle and in-use network ports to avoid confusion.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a whole-row network port locking device. The whole-row network port locking device comprises two fixing assemblies and a locking assembly. The two fixing assemblies are arranged on the two sides of a network port of the switch in a spaced mode, the locking assembly comprises a rotating end, a locking end and a locking part, the rotating end is rotationally connected with one of the two fixing assemblies, and the locking assembly stretches across the network port of the switch; the locking assembly has a locking state and an unlocking state, when the locking assembly is in the locking state, the locking end is in locking connection with the other one of the two fixing assemblies, and the locking part locks crystal heads on the whole row of network ports of the switch so as to limit the crystal heads in the network ports of the switch; and in the unlocking state, the locking end releases the locking with the corresponding fixing assembly, and the locking assembly can rotate around the rotating end, so that the locking part releases the locking of crystal heads on the whole row of network ports of the switch. Through the above arrangement, the problem that the locking management is tedious because the number of network ports of the current switch is large and centralized management and control cannot be carried out is solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of network port locks, in particular to a locking device for a whole row of network ports. Background Art

[0002] Switches are widely used in power systems, often with dozens of network ports. Managing and controlling these entire rows of ports typically requires multiple devices and accessories for locking and management. However, due to the large number of ports, installation and removal are difficult and cumbersome, hindering centralized management. Furthermore, confusion can easily arise during operation, and it's impossible to simultaneously lock both idle ports and active cables. Utility Model Content

[0003] The utility model mainly provides a locking device for a whole row of network ports, aiming to solve the problem that the current switch has a large number of network ports that cannot be centrally managed and controlled, resulting in cumbersome locking management.

[0004] To achieve the above-mentioned purpose, the present invention proposes a whole-row network port locking device, which includes two fixing components and a locking component; wherein,

[0005] The two fixing components are fixedly mounted on the panel cabinet pressure plate and are spaced apart on both sides of the network port of the switch. The locking component includes a rotating end, a locking end, and a locking portion. The rotating end is rotatably connected to one of the two fixing components. The locking component is arranged across the network port of the switch.

[0006] The locking component has a locked state and an unlocked state. In the locked state, the locking end is locked and connected to the other of the two fixed components, and the locking part locks the crystal heads on the entire row of network ports of the switch to confine the crystal heads within the network ports of the switch; in the unlocked state, the locking end is unlocked from the corresponding fixed component, and the locking component can rotate around the rotating end, so that the locking part releases the lock on the crystal heads on the entire row of network ports of the switch.

[0007] In some embodiments of the present invention, the locking assembly includes a locking piece, the rotating end and the locking end are respectively formed at both ends of the locking piece, and the locking end is provided with a locking component, which is used to lock the locking piece on the corresponding fixed assembly.

[0008] In some embodiments of the present invention, the rotating end is provided with a through hole, the locking end is provided with a card slot, the locking member is connected to one of the two fixed components through the through hole, and the locking member is connected to the other of the two fixed components through the card slot.

[0009] In some embodiments of the present invention, the locking member is provided with an avoidance groove, and the locking member is provided with locking flanges on both sides of the avoidance groove to form the locking portion.

[0010] In some embodiments of the present invention, the locking member is provided with a plurality of spare network ports, which are distributed along the length direction of the locking member, and the spare network ports are for inserting crystal plugs.

[0011] In some embodiments of the present invention, the locking component includes a lock tongue, and at least one of the two fixing components is provided with a lock groove. In the locked state, the lock tongue extends into the lock groove; in the unlocked state, the lock tongue exits the lock groove; wherein,

[0012] The locking component is configured as a mechanical locking component; or, the locking component is configured as an electrical locking component.

[0013] In some embodiments of the present invention, the locking component includes a mechanical lock core, a rotating shaft, and a lock tongue, the mechanical lock core having a lock core hole, the lock core hole being exposed to the external space of the locking end, the rotating shaft being connected to the lock core, the locking end being provided with a slide groove, and the lock tongue being disposed in the slide groove;

[0014] The lock core drives the rotating shaft to rotate when subjected to an external force. The rotating shaft has an eccentric boss. The rotating shaft drives the lock tongue to extend out of or retract into the sliding groove through the eccentric boss.

[0015] In some embodiments of the present invention, the fixing assembly includes two fixing seats, a connecting piece and a clamping piece. The two fixing seats are arranged at intervals along the side-by-side direction of the entire row of network ports of the switch. The two ends of the connecting piece are respectively connected to the two fixing seats. The clamping piece is provided with a through hole for the connecting piece to pass through, and the clamping piece is connected to the connecting piece.

[0016] In some embodiments of the present invention, the clamping member has a clamping state and a releasing state. In the clamping state, the clamping member is clamped to the connecting member, and the clamping member is used to limit the position of the locking assembly; in the releasing state, the clamping member releases the clamping connection with the connecting member, and the clamping member can slide along the length direction of the connecting member to adjust the position of the locking assembly.

[0017] In some embodiments of the present invention, the rotating end is provided with a through hole, the locking end is provided with a slot, the clamping member is provided with a mounting notch, the rotating end is provided in the corresponding mounting notch, and the through hole is for the corresponding connecting member to pass through;

[0018] In the locked state, the slot is locked into the corresponding connecting piece.

[0019] In some embodiments of the present invention, the clamping member includes a clamping base and a fastening screw, the clamping base has two supports arranged at intervals, at least one of the two supports is set as a deformable support, the deformable support is provided with a screw hole, the fastening screw is arranged in the screw hole, and is used to fasten or release the deformable support, so that the deformable support is clamped or released on the connecting member.

[0020] In some embodiments of the present invention, one end of the connecting member is provided with a connecting portion, and the other end is provided with a connecting screw hole.

[0021] The beneficial effects of the present invention are as follows: different from the prior art, the whole row of network port locking device disclosed in the present invention centrally unlocks the whole row of network ports of the switch through the locking component. Compared with the previous method of controlling a single network port with a single unlocking accessory, the locking component can integrally unlock the whole row of network ports of the switch through the locking part, which greatly reduces the number of unlocking steps and the complexity of the operation. Moreover, the whole row of network port locking device is easy to assemble and disassemble, and the operation is simple, which makes the unlocking process of controlling the network ports of the switch particularly convenient and the control cost low, thereby greatly improving the convenience and efficiency of centralized management of the network ports of the switch. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying any creative work.

[0023] Figure 1 This is a schematic structural diagram of a locking state of an embodiment of a whole row of network port locking device of the present invention;

[0024] Figure 2 It is a partial cross-sectional structural schematic diagram of a locking state of an embodiment of the locking assembly of the present invention;

[0025] Figure 3 This is a schematic structural diagram of the unlocked state of an embodiment of the whole row network port locking device of the present invention;

[0026] Figure 4 A partially cutaway structural diagram of an embodiment of a locking assembly of the present invention in an unlocked state;

[0027] Figure 5 This is a schematic cross-sectional view of an embodiment of a whole-row mesh port locking device of the present invention;

[0028] Figure 6for Figure 5 A partial enlarged schematic diagram of point A in the middle;

[0029] Figure 7 It is a structural schematic diagram of an embodiment of the fixing assembly of the present utility model.

[0030] Description of Figure Numbers:

[0031] 10. Screen cabinet pressure plate; 20. Switch; 201. Network port; 30. RJ45 connector; 40. Locking device for the entire row of network ports; 1. Fixing assembly; 11. Fixing seat; 12. Connecting piece; 121. Connecting part; 122. Connecting screw hole; 13. Clamping piece; 131. Through hole; 132. Installation notch; 133. Clamping base; 1331. Locking slot; 134. Support; 2. Locking assembly; 21. Locking piece; 211. Rotating end; 2111. Through hole; 212. Locking end; 2121. Slot; 2122. Slide; 213. Locking part; 214. Avoidance slot; 215. Spare network port; 22. Locking component; 221. Mechanical lock core; 222. Rotating shaft; 2221. Eccentric boss; 223. Lock tongue.

[0032] The realization of the purpose, functional features and advantages of the present invention will be further explained in conjunction with embodiments and with reference to the accompanying drawings. DETAILED DESCRIPTION

[0033] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0034] In this utility model, unless otherwise specified or limited, the terms "connection" and "fixation" should be understood in a broad sense. For example, "fixation" can mean fixed connection, detachable connection, or integration; mechanical connection or electrical connection; direct connection or indirect connection through an intermediate medium; internal communication between two elements or interaction between two elements, unless otherwise specified. For those skilled in the art, the specific meanings of the above terms in this utility model can be understood according to specific circumstances.

[0035] In addition, in this utility model, the descriptions of "first" and "second" are for descriptive purposes only and should not be understood as indicating or implying their relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features specified as "first" and "second" may explicitly or implicitly include at least one of such features. In addition, the technical solutions between the various embodiments can be combined with each other, but this must be based on the fact that they can be implemented by ordinary technicians in this field. When the combination of technical solutions is mutually contradictory or cannot be implemented, it should be deemed that such combination of technical solutions does not exist and is not within the scope of protection required by this utility model.

[0036] The utility model proposes a whole row of network port locking device, referring to Figure 1 and Figure 2 The entire row of network port locking devices 40 is used to lock the network ports 201 of the switch 20 in the power system, so as to confine the RJ45 connector 30 inserted into the network port 201 within the network port 201, thereby locking the network port 201 of the switch 20. All network ports 201 of the switch 20 are exposed on the panel cabinet pressure plate 10.

[0037] The entire row of network port locking devices 40 includes two fixing components 1 and a locking component 2, wherein the two fixing components 1 are fixedly installed on the screen cabinet pressure plate 10 and are spaced apart on both sides of the network port 201 of the switch 20. The locking component 2 includes a rotating end 211, a locking end 212 and a locking portion 213. The rotating end 211 is rotatably connected to one of the two fixing components 1, and the locking component 2 is arranged across the network port 201 of the switch 20. The locking component 2 has a locked state and an unlocked state. In the locked state, the locking end 212 is locked and connected to the other of the two fixed components 1, and the locking part 213 locks the crystal plugs 30 on the entire row of network ports 201 of the switch 20 to confine the crystal plugs 30 within the network ports 201 of the switch 20; in the unlocked state, the locking end 212 releases the lock with the corresponding fixed component 1, and the locking component 2 can rotate around the rotating end 211, so that the locking part 213 releases the lock on the crystal plugs 30 on the entire row of network ports 201 of the switch 20.

[0038] Based on the setting of the above scheme, the entire row of network ports 201 of the switch 20 is centrally unlocked through the locking component 2. Compared with the previous method of controlling a single network port 201 with a single unlocking accessory, the locking component 2 can integrally unlock the entire row of network ports 201 of the switch 20 through the locking part 213, which greatly reduces the number of unlocking operation steps and reduces the complexity of the operation. Moreover, the locking device 40 for the entire row of network ports is easy to assemble and disassemble, and the operation is simple, making the unlocking process of controlling the network ports 201 of the switch 20 particularly convenient and the control cost low, thereby greatly improving the convenience and efficiency of centralized management of the network ports 201 of the switch 20.

[0039] It should be noted that, among the entire row of network ports 201 on the switch 20, there are in-use network ports 201 and idle network ports 201. For the idle network ports 201, a crystal head 30 without a network cable can be inserted into the idle network port 201. Since the locking portion 213 is arranged across the entire row of network ports 201, the entire row of network ports 201 can be locked as a whole through the locking portion 213. In this way, both the idle network ports 201 and the in-use network ports 201 can be locked. During the locking process, the locking portion 213 holds the elastic arms of all crystal heads 30 to achieve locking management of the entire row of network ports 201.

[0040] When unlocking the entire row of network ports 201, it is only necessary to operate the locking end 212 to release the lock on the corresponding fixing component 1, so that the locking component 2 can rotate, and the locking part 213 can release the lock of the entire row of network ports 201 with one click, so as to achieve quick unlocking, and the unlocking operation is simple and convenient.

[0041] Reference Figures 1 to 7 The locking assembly 2 includes a locking member 21, a rotating end 211 and a locking end 212 respectively formed at both ends of the locking member 21, and the locking end 212 is provided with a locking component 22, which is used to lock the locking member 21 on the corresponding fixing assembly 1.

[0042] The locking member 21 locks the entire row of network ports 201 on the switch 20, and the locking component 22 locks the locking member 21 to the fixing assembly 1, allowing the locking member 21 to be stably fixed to the panel cabinet pressure plate 10. The locking member 21 is arranged in an elongated strip, so that it can span all the network ports 201 on the switch 20, making it convenient for the locking member 21 to lock and manage the entire row of network ports 201 on the switch 20.

[0043] Furthermore, the rotating end 211 is provided with a through-hole 2111, and the locking end 212 is provided with a slot 2121. The locking member 21 is connected to one of the two fixing assemblies 1 through the through-hole 2111, and the locking member 21 is connected to the other of the two fixing assemblies 1 through the slot 2121. The fixing assembly 1 includes a connector 12, two fixing bases 11, a connector 12, and a clamping member 13. The two fixing bases 11 are spaced apart along the row of network ports 201 of the switch 20. The two ends of the connector 12 are respectively connected to the two fixing bases 11. The clamping member 13 has a through-hole 131 for the connector 12 to pass through, and the clamping member 13 is connected to the connector 12.

[0044] Among them, the through hole 2111 is for the corresponding connecting member 12 to pass through, so that when in the unlocked state, the locking member 21 can rotate around the axis of the corresponding connecting member 12, so that the locking part 213 releases the clamping of the entire row of network ports 201 of the switch 20, thereby realizing the integrated unlocking of the entire row of network ports 201 of the switch 20. The unlocking process is simple and has few steps, which greatly improves the efficiency of unlocking.

[0045] When rotating from the unlocked state to the locked state, the locking member 21 is operated to move toward the screen cabinet pressure plate 10, so that the locking end 212 is close to the corresponding connecting member 12 until the slot 2121 is engaged with the corresponding connecting member 12. At the same time, the locking portion 213 forms a clamp for the entire row of network ports 201 of the switch 20. The locking component 22 locks the locking member 21 on the screen cabinet pressure plate 10, so that the locking member 21 can stably clamp the entire row of network ports 201 of the switch 20, thereby locking the entire row of network ports 201 of the switch 20.

[0046] Furthermore, the locking member 21 is provided with a relief groove 214. Locking flanges are provided on both sides of the relief groove 214 to form a locking portion 213. This arrangement, by providing the relief groove 214, not only allows the RJ45 connector 30 to be avoided, allowing the locking portion 213 to effectively and stably retain the RJ45 connector 30 within the network port 201, but also helps reduce the weight of the locking member 21, making it easier for the operator to operate.

[0047] Locking flanges are provided on both sides of the locking member 21 at the avoidance groove 214 so that the locking member 21 can lock the entire row of network ports 201 at different positions. This can improve the locking applicability of the locking member 21 and help improve the performance of the locking device 40 for the entire row of network ports.

[0048] Furthermore, the locking member 21 is provided with a plurality of spare network ports 215, which are distributed along the length of the locking member 21. The spare network ports 215 are for inserting the RJ45 connector 30. This arrangement allows for centralized management of unused network cables through the multiple spare network ports 215, reducing the likelihood of confusion. This provides more controllable management and facilitates centralized management of the switch 20.

[0049] The locking component 22 includes a locking tongue 223, and at least one of the two fixing components 1 is provided with a locking groove 1331. When in the locked state, the locking tongue 223 extends into the locking groove 1331; when in the unlocked state, the locking tongue 223 exits the locking groove 1331; wherein, the locking component 22 is configured as a mechanical locking component 22; or, the locking component 22 is configured as an electrical locking component 22.

[0050] With such arrangement, the locking connection between the locking assembly 2 and the fixing assembly 1 is achieved through the cooperation between the locking tongue 223 and the locking groove 1331 , and the locking method is simple, reliable and effective.

[0051] When the locking component 22 is configured as an electrical locking component 22, the electrical locking component 22 may include a motor, a battery, and a drive shaft. The motor is electrically connected to the battery, which powers the motor. The motor is also connected to the drive shaft, which is connected to the lock tongue 223. The motor drives the drive shaft to rotate, which in turn drives the lock tongue 223 to move, causing the lock tongue 223 to extend into the lock slot 1331 to lock the locking assembly 2, or to exit the lock slot 1331 to unlock the locking assembly 2. The electrical locking component 22 may also include an electrical control board electrically connected to the motor. The electrical control board also includes a wireless connection module, such as a Bluetooth module or a WiFi module. The electrical control board is configured to communicate with an external terminal device. The external terminal device sends an unlocking command or a locking command to the electrical control board. The electrical control board controls the operation of the motor based on the unlocking command or the locking command, thereby electrically controlling the locking or unlocking of the locking assembly 2.

[0052] Continue to refer to Figures 1 to 7 The locking component 22 includes a mechanical lock core 221, a rotating shaft 222, and a lock tongue 223. The mechanical lock core 221 has a lock core hole, which is exposed to the external space of the locking end 212. The rotating shaft 222 is connected to the lock core. The locking end 212 has a slide groove 2122, and the lock tongue 223 is located in the slide groove 2122. When the lock core is subjected to an external force, the rotating shaft 222 rotates. The rotating shaft 222 has an eccentric boss 2221. The rotating shaft 222 drives the lock tongue 223 to extend or retract into the slide groove 2122 via the eccentric boss 2221.

[0053] The unlocking key is inserted into the lock core hole. The operator uses the unlocking key to rotate the lock core, which in turn drives the rotating shaft 222, which in turn drives the lock tongue 223 via the eccentric boss 2221. This arrangement provides a stable locking mechanism, simple operation, and low centralized management costs, effectively improving the reliability of the centralized management of the network ports 201 of the switch 20 by the entire row of network port locking devices 40.

[0054] Continue to refer to Figures 1 to 7 The fixing assembly 1 includes two fixing seats 11, a connecting member 12 and a clamping member 13. The two fixing seats 11 are arranged at intervals along the side-by-side direction of the entire row of network ports 201 of the switch 20. The two ends of the connecting member 12 are respectively connected to the two fixing seats 11. The clamping member 13 is provided with a through hole 131 for the connecting member 12 to pass through. The clamping member 13 is connected to the connecting member 12.

[0055] In this way, the two fixing seats 11 and the connecting member 12 provide an installation base for the locking component 2, and at the same time, the locking member 21 can protrude from the screen cabinet pressure plate 10. This not only facilitates the installation of the locking member 21, but also enables the locking member 21 to effectively and reliably lock the entire row of network ports 201 of the switch 20.

[0056] Furthermore, the clamping member 13 has a clamping state and a releasing state. In the clamping state, the clamping member 13 is clamped to the connecting member 12, and the clamping member 13 is used to limit the position of the locking assembly 2; in the releasing state, the clamping member 13 releases the clamping connection with the connecting member 12, and the clamping member 13 can slide along the length direction of the connecting member 12 to adjust the position of the locking assembly 2.

[0057] With this arrangement, the position of the locking member 21 can be adjusted through the clamping member 13, so as to adjust the position of the locking member 21 according to the on-site conditions to adapt to locking the entire row of network ports 201 at different positions on the switch 20, thereby improving the performance of the entire row of network port locking device 40.

[0058] The rotating end 211 is provided with a through hole 2111, the locking end 212 is provided with a slot 2121, and the clamping member 13 is provided with a mounting notch 132. The rotating end 211 is located in the corresponding mounting notch 132, and the through hole 2111 is for the corresponding connecting member 12 to pass through. In the locked state, the slot 2121 is engaged with the corresponding connecting member 12.

[0059] The installation notch 132 allows the clamping member 13 to move and drive the locking assembly 2 to adjust the position of the locking assembly 2. The locking groove 2121 prevents the locking member 21 from interfering with the corresponding connecting member 12. This allows the sliding groove 2122 to align with the locking groove 1331, so that when the locking tongue 223 slides out, it can stably and smoothly extend into the locking groove 1331, thereby quickly locking the locking assembly 2.

[0060] The clamping member 13 includes a clamping base 133 and a fastening screw (not shown). The clamping base 133 has two spaced-apart supports 134, at least one of which is configured as a deformable support 134. The deformable support 134 has a screw hole, and the fastening screw is disposed in the screw hole and is used to tighten or release the deformable support 134, so that the deformable support 134 is clamped or released from the connecting member 12. Both supports 134 have a through-hole 131, and the through-hole 131 on the deformable support 134 is configured as a deformable through-hole 131.

[0061] The locking slot 1331 is formed on the outer side of the clamping base 133 .

[0062] Furthermore, the connector 12 has a connecting portion 121 at one end and a connecting screw hole 122 at the other end. The connecting portion 121 can be configured as a screw. This configuration allows the connector 12 to have a splicing function, that is, multiple locking devices for the entire row of network ports 201 can be spliced ​​and combined for use. In this way, the network ports 201 of switches 20 located elsewhere in the cabinet can be jointly locked, thereby greatly improving the performance of the locking device for the entire row of network ports 201.

[0063] The above description is merely an optional embodiment of the present invention and does not limit the patent scope of the present invention. All equivalent structural transformations made by utilizing the contents of the present invention specification and drawings under the inventive concept of the present invention, or direct / indirect application in other related technical fields are included in the patent protection scope of the present invention.

Claims

1. A whole row of network port locking device, used to lock the network port of the switch, the network port of the switch is exposed on the panel cabinet pressure plate, characterized in that: The whole row of network port locking device includes two fixing components and a locking component; wherein, The two fixing components are fixedly mounted on the panel cabinet pressure plate and are spaced apart on both sides of the network port of the switch. The locking component includes a rotating end, a locking end, and a locking portion. The rotating end is rotatably connected to one of the two fixing components. The locking component is arranged across the network port of the switch. The locking component has a locked state and an unlocked state. In the locked state, the locking end is locked and connected to the other of the two fixed components, and the locking part locks the crystal heads on the entire row of network ports of the switch to confine the crystal heads within the network ports of the switch; in the unlocked state, the locking end is unlocked from the corresponding fixed component, and the locking component can rotate around the rotating end, so that the locking part releases the lock on the crystal heads on the entire row of network ports of the switch.

2. The whole row of network port locking device according to claim 1, characterized in that: The locking assembly includes a locking member, the rotating end and the locking end are respectively formed at both ends of the locking member, and the locking end is provided with a locking component, and the locking component is used to lock the locking member on the corresponding fixed assembly.

3. The whole row of network port locking device according to claim 2, characterized in that: The rotating end is provided with a through hole, the locking end is provided with a slot, the locking member is connected to one of the two fixing components through the through hole, and the locking member is connected to the other of the two fixing components through the slot.

4. The whole row of network port locking device according to claim 2, characterized in that: The locking member is provided with an avoidance groove body, and the locking member is provided with locking flanges on both sides of the avoidance groove body to form the locking portion.

5. The whole row of network port locking device according to claim 2, characterized in that: The locking member is provided with a plurality of spare network ports, which are distributed along the length direction of the locking member and are used for inserting crystal plugs.

6. The whole row of network port locking device according to claim 2, characterized in that: The locking component includes a lock tongue, and at least one of the two fixing components is provided with a lock groove. In the locked state, the lock tongue extends into the lock groove; in the unlocked state, the lock tongue exits the lock groove; wherein, The locking component is configured as a mechanical locking component; or, the locking component is configured as an electrical locking component.

7. The whole row of mesh port locking device according to any one of claims 2 to 5, characterized in that: The locking component includes a mechanical lock core, a rotating shaft, and a lock tongue. The mechanical lock core has a lock core hole, and the lock core hole is exposed to the external space of the locking end. The rotating shaft is connected to the lock core. The locking end is provided with a slide groove, and the lock tongue is arranged in the slide groove. The lock core drives the rotating shaft to rotate when subjected to an external force. The rotating shaft has an eccentric boss. The rotating shaft drives the lock tongue to extend out of or retract into the sliding groove through the eccentric boss.

8. The whole row of mesh port locking device according to claim 1, characterized in that: The fixing assembly includes two fixing seats, a connecting piece and a clamping piece. The two fixing seats are arranged at intervals along the side-by-side direction of the entire row of network ports of the switch. The two ends of the connecting piece are respectively connected to the two fixing seats. The clamping piece is provided with a through hole for the connecting piece to pass through, and the clamping piece is connected to the connecting piece.

9. The whole row of mesh port locking device according to claim 8, characterized in that: The clamping member has a clamping state and a releasing state. In the clamping state, the clamping member is clamped to the connecting member, and the clamping member is used to limit the position of the locking assembly; in the releasing state, the clamping member releases the clamping connection with the connecting member, and the clamping member can slide along the length direction of the connecting member to adjust the position of the locking assembly.

10. The whole row of mesh port locking device according to claim 9, characterized in that: The rotating end is provided with a through hole, the locking end is provided with a slot, the clamping member is provided with a mounting notch, the rotating end is arranged in the corresponding mounting notch, and the through hole is for the corresponding connecting member to pass through; In the locked state, the slot is locked into the corresponding connecting piece.

11. The whole row of mesh port locking device according to claim 8, characterized in that: The clamping member includes a clamping base and a fastening screw. The clamping base has two supports arranged at intervals. At least one of the two supports is set as a deformable support. The deformable support is provided with a screw hole. The fastening screw is arranged in the screw hole and is used to fasten or release the deformable support so that the deformable support is clamped or released on the connecting member.

12. The whole row of mesh port locking device according to claim 8, characterized in that: One end of the connecting piece is provided with a connecting portion, and the other end is provided with a connecting screw hole.