Network port locking structure
By designing a network port interlocking structure and utilizing a motor drive and control board to monitor the network port status in real time, the problems of limited installation and lack of status detection in existing technologies are solved, realizing intelligent control and remote management of the network port, and improving security and convenience.
Patent Information
- Application Number
- CN202423077362.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-12
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-12
AI Technical Summary
Existing network port locks have installation limitations and lack status detection capabilities, making network port management difficult and hindering easy batch management and security monitoring.
Design a network port interlocking structure, including a housing, interlocking components, a drive assembly, a control board, and a detection component. The interlocking components are switched by a motor, and the status is monitored in real time by the control board and the detection component. External terminal devices upload information to the management system.
It enables intelligent control and real-time monitoring of network ports, reducing the difficulty of network port security management and improving the convenience of management and monitoring.
Smart Images

Figure CN223612789U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a network port lock technical field, especially a network port locking structure. BACKGROUND
[0002] With the development of information, network equipment is applied more and more widely, and the network security problem brought by it is increasingly prominent. At present, most of the network port locking on the market adopts the plastic head plugging structure, and the network port unlocking position cannot be monitored in real time, or the intelligent network port lock is adopted, but the intelligent network port lock structure is complex, the installation is limited, and there is no unlocking position detection.
[0003] Because the number of network ports is large, it brings certain difficulty in safety management, and the management personnel are not convenient for batch management, so how to easily lock the network port and carry out batch safety management is particularly important. UTILITY MODEL CONTENTS
[0004] The utility model mainly provides a network port locking structure, aims at solving the problem of the current network port lock installation limitation and no state detection function.
[0005] In order to realize the above-mentioned purpose, the utility model provides a network port locking structure, the network port locking structure includes the casing, the locking piece, the drive assembly, the control board and the detection piece, the network port locking structure is characterized by the following:
[0006] The casing includes the locking end inserted into the network port and the interface for the external terminal equipment to plug, the locking end is equipped with the installation groove for installing the locking piece, the locking piece has the locking position and the unlocking position, when the locking position, the locking piece protrudes the installation groove, in order to lock with the network port, when the unlocking position, the locking piece retracts the installation groove, to release the lock with the network port,
[0007] The drive assembly includes the motor and the rotating assembly, which are arranged in the casing, the motor drives the locking piece to switch between the locking position and the unlocking position through the rotating assembly,
[0008] The control board is arranged in the casing and is electrically connected with the motor, the control board has the induction module, the detection piece is arranged on the rotating assembly and is inductive cooperation with the induction module, to detect the state information of the locking piece in the locking position or the unlocking position, the control board uploads the state information to the management system through the external terminal equipment.
[0009] In some embodiments of the utility model, the detection piece includes the first detection part and the second detection part, when the locking position, the first detection part is inductive cooperation with the induction module, when the unlocking position, the second detection part is inductive cooperation with the induction module.
[0010] In some embodiments of the utility model, when the control board is connected with external terminal equipment through the interface, the external terminal equipment supplies power for the control board and the motor, the control board is used for receiving the unlocking instruction or the locking instruction sent by the external terminal equipment, and the control board controls the motor to work based on the unlocking instruction or the locking instruction.
[0011] The control board and the external terminal equipment establish communication through the interface, or the control board and the external terminal equipment establish communication through a wireless mode.
[0012] In some embodiments of the utility model, the locking piece has a locking protrusion and a limiting portion, the locking protrusion is locked or unlocked with the mesh opening, and opposite sides of the locking protrusion are arranged in an inclined manner, the shell includes a limiting portion arranged at the edge of the mounting groove, and the limiting portion is limited with the limiting portion to limit the locking piece in the mounting groove.
[0013] In some embodiments of the utility model, one end of the locking piece away from the locking protrusion is provided with a locking groove, the rotating assembly includes a locking abutting portion and an unlocking releasing portion arranged oppositely, in the locking position, the locking abutting portion is rotated into the locking groove to limit the movement of the locking piece, and in the unlocking position, the unlocking releasing portion is rotated to a position corresponding to the locking groove to release the limitation on the movement of the locking piece.
[0014] In some embodiments of the utility model, the mesh opening locking structure further includes an elastic piece arranged in the mounting groove, one end of the elastic piece is abutted to the groove bottom of the mounting groove, and the other end is abutted to the locking piece.
[0015] In some embodiments of the utility model, the rotating assembly includes a rotating block and a rotating shaft, one side of the rotating block is connected with the motor, the other side is connected with the rotating shaft, one end of the rotating shaft away from the rotating block extends into the mounting groove, the rotating shaft has a locking abutting portion and an unlocking releasing portion, the locking abutting portion is used for limiting the movement of the locking piece, and the unlocking releasing portion is used for releasing the limitation on the movement of the locking piece.
[0016] In some embodiments of the utility model, the rotating shaft includes a driving body, one side of the driving body is arranged in an arc shape to form the locking abutting portion, the other side is provided with a first limiting surface and a second limiting surface arranged at an included angle, the mounting groove is provided with a limiting boss, in the locking position, the first limiting surface is limited with the limiting boss, and in the unlocking position, the second limiting surface is limited with the limiting boss to limit the rotation angle of the rotating shaft.
[0017] In some embodiments of the utility model, the adapter block is provided with an embedding groove, the detection piece is embedded in the embedding groove, the rotating shaft is provided with a limiting groove, and the adapter block and the detection piece are at least partially arranged in the limiting groove.
[0018] In some embodiments of the utility model, the network port locking structure further comprises a fixing support, the fixing support is arranged in the shell and is limitedly matched with the shell, the fixing support is provided with an installation cavity with one end being open, the motor is arranged in the installation cavity, and the fixing support is further provided with a through hole communicating with the installation cavity for the driving shaft of the motor to pass through.
[0019] In some embodiments of the utility model, the control board comprises a main control board and an interface board, the main control board and the interface board are electrically connected through a flexible circuit board, the outside of the fixing support is provided with an assembly groove for mounting the main control board, and the interface board is arranged at the opening of the installation cavity and is electrically connected with the interface.
[0020] In some embodiments of the utility model, the shell is provided with an annular avoiding groove arranged around the interface.
[0021] In some embodiments of the utility model, the shell comprises a shell main body and an end cover, the end cover is connected with the shell main body, the interface is arranged at one end of the shell main body away from the end cover, the installation groove is arranged in the end cover, the end cover is further provided with a movable channel communicating with the installation groove, and the rotating assembly is rotatably arranged in the movable channel.
[0022] The utility model discloses a network port locking structure, which is small in size, simple in structure, wide in applicability, convenient to operate, capable of being directly inserted into a network port for locking, capable of realizing intelligent control of the locking and unlocking of the network port through a motor and a control board, high in safety, capable of realizing real-time monitoring of the locking and unlocking state of the network port through the control board and a detection piece, capable of collecting the locking and unlocking state information of the corresponding network port by an external terminal device and uploading the information to a management system, capable of remotely monitoring the locking and unlocking state of the network port in each area by the management system, capable of realizing batch management and monitoring of the network port, and capable of reducing the difficulty of network port safety management and improving the convenience of network port management and monitoring. BRIEF DESCRIPTION OF DRAWINGS
[0023] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the drawings needed to be used in the following embodiment or prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the utility model, and other drawings can be obtained by those skilled in the art without creative labor on the basis of the drawings shown.
[0024] Figure 1 It is a structure schematic view of a network port locking structure and a network port embodiment of the utility model;
[0025] Figure 2 It is a structure schematic view of a network port locking structure embodiment of the utility model;
[0026] Figure 3 It is a structure schematic view of a network port locking structure embodiment of the utility model;
[0027] Figure 4 It is a structure schematic view of a locking piece embodiment of the utility model;
[0028] Figure 5 It is a structure schematic view of a network port locking structure embodiment of the utility model;
[0029] Figure 6 It is a structure schematic view of a shell main body of the utility model;
[0030] Figure 7 It is a structure schematic view of a rotating assembly embodiment of the utility model;
[0031] Figure 8 It is a structure schematic view of a fixed support embodiment of the utility model;
[0032] Figure 9 It is a structure schematic view of an end cover from one perspective of the utility model;
[0033] Figure 10 It is a structure schematic view of an end cover from another perspective of the utility model.
[0034] Explanation of reference numerals:
[0035] 1, shell; 11, shell main body; 111, interface; 112, annular avoiding groove; 12, end cover; 121, locking end; 122, mounting groove; 123, limiting boss; 124, movable channel; 13, limiting part; 2, locking piece; 21, locking convex part; 22, limiting part; 23, locking groove; 3, driving assembly; 31, motor; 32, rotating assembly; 321, adapter block; 3211, embedding groove; 322, rotating shaft; 3221, locking abutting part; 3222, unlocking releasing part; 3223, driving body; 3224, first limiting surface; 3225, second limiting surface; 3226, limiting groove; 4, control board; 41, main control board; 42, interface board; 5, detection piece; 51, first detection part; 52, second detection part; 6, elastic piece; 7, fixed support; 71, mounting cavity; 72, through hole; 73, assembly groove; 74, limiting protrusion; 8, network port.
[0036] The purposes, functional features and advantages of the utility model will be further explained in combination with embodiments and with reference to the drawings. DETAILED DESCRIPTION
[0037] The technical solutions in the embodiments of the utility model will be clearly and completely described in combination with the drawings of the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0038] In the utility model, unless explicitly defined and limited, the terms "connection", "fixation" and the like should be understood in a broad sense, for example, "fixation" can be fixed connection, or detachable connection, or integral; can be mechanical connection, or electrical connection; can be direct connection, or indirect connection through intermediate medium, can be the communication inside two elements or the interaction relationship between two elements, unless explicitly limited. For those skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.
[0039] In addition, in the utility model, the description such as "first", "second" and the like is only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one feature. In addition, the technical solutions of various embodiments can be combined with each other, but it must be based on the realization of those skilled in the art, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the utility model.
[0040] The utility model provides a network port locking structure, refer to Figures 1 to 3 The network port locking structure includes a shell 1, a locking piece 2, a driving assembly 3, a control panel 4 and a detection piece 5. The shell 1 includes a locking end 121 inserted into the network port 8 and an interface 111 for external terminal equipment to plug, the locking end 121 is provided with a mounting groove 122 for mounting the locking piece 2, the locking piece 2 has a locking position and an unlocking position, when in the locking position, the locking piece 2 extends from the mounting groove 122 to lock with the network port 8, when in the unlocking position, the locking piece 2 retracts into the mounting groove 122 to release the lock with the network port 8.
[0041] The driving assembly 3 comprises a motor 31 and a rotating assembly 32, both of which are arranged in the shell 1, and the motor 31 drives the locking piece 2 to switch between the locking position and the unlocking position through the rotating assembly 32. The control board 4 is arranged in the shell 1 and is electrically connected with the motor 31, and the control board 4 has a sensing module. The detection piece 5 is arranged on the rotating assembly 32 and is in sensing cooperation with the sensing module, so as to detect the state information of the locking piece 2 in the locking position or the unlocking position. The control board 4 uploads the state information to the management system through the external terminal device.
[0042] Based on the above scheme, the network port locking structure is small in size, simple in structure and wide in applicability, can be directly inserted into the network port 8 for locking, and is extremely convenient to operate. Moreover, the motor 31 and the control board 4 can be used to intelligently control the unlocking and locking of the network port 8, and the safety is high. The unlocking and locking state of the network port 8 is monitored in real time through the control board 4 and the detection piece 5, the unlocking and locking state information of the corresponding network port 8 is collected by the external terminal device and uploaded to the management system. In this way, the management system can remotely monitor the unlocking and locking state of the network port 8 in each area, so as to realize batch management and monitoring of the network port 8, reduce the difficulty of safety management of the network port 8, and better improve the convenience of management and monitoring of the network port 8.
[0043] When the control board 4 is connected with the external terminal device through the interface 111, the external terminal device supplies power to the control board 4 and the motor 31. The control board 4 is used to receive the unlocking instruction or the locking instruction sent by the external terminal device, and the control board 4 controls the motor 31 to work based on the unlocking instruction or the locking instruction. The control board 4 and the external terminal device establish communication through the interface 111, or the control board 4 and the external terminal device establish communication in a wireless manner.
[0044] The power supply is provided through the external terminal device, so that the unlocking and locking operation can be performed only when the external terminal device is connected, which helps to improve the anti-theft effect and safety performance of the network port 8.
[0045] The control board 4 and the external terminal device can establish communication in a wireless manner, which can be Bluetooth, WIFI or other wireless communication manners. The external terminal device can include a mobile phone, a computer key or other terminal devices.
[0046] The type of the interface 111 can include various types, such as a Type-C interface, a Micro USB interface, a Lightning interface, a computer key interface and the like. In the embodiment of the application, the interface 111 adopts a Type-C interface.
[0047] Referring to Figure 2 and Figure 7The detection piece 5 includes a first detection part 51 and a second detection part 52. In the locking position, the first detection part 51 is in inductive cooperation with the inductive module. In the unlocking position, the second detection part 52 is in inductive cooperation with the inductive module.
[0048] Since the detection piece 5 is arranged on the rotating assembly 32, when the rotating assembly 32 drives the locking piece 2 to move, the detection piece 5 rotates synchronously with the detection piece 5. Thus, the detection piece 5 can detect the locking position and the unlocking position of the locking piece 2 in real time through the first detection part 51 and the second detection part 52, so as to monitor the locking state and the unlocking state of the meshing port 8 in real time.
[0049] The detection piece 5 can be arranged as a magnetic steel, and the inductive module can be arranged as a Hall element. The first detection part 51 and the second detection part 52 are arranged at two ends of the magnetic steel. When the first detection part 51 is arranged as an S pole, the second detection part 52 is arranged as an N pole. When the first detection part 51 is arranged as an N pole, the second detection part 52 is arranged as an S pole.
[0050] According to design requirements, the magnetism of the first detection part 51 and the second detection part 52 can be customized. For example, in the embodiment of the present application, the first detection part 51 is arranged as an S pole. When the first detection part 51 is in magnetic inductive cooperation with the Hall element, it can be determined that the locking piece 2 is in the locking position. The second detection part 52 is arranged as an N pole. When the second detection part 52 is in magnetic inductive cooperation with the Hall element, it can be determined that the locking piece 2 is in the unlocking position.
[0051] Referring to Figures 1 to 5 The locking piece 2 has a locking protrusion 21 and a limiting part 22. The locking protrusion 21 is in locking cooperation or unlocking cooperation with the meshing port 8. The two sides of the locking protrusion 21 opposite to each other are arranged in an inclined manner. The shell 1 includes a limiting part 13 arranged at the edge of the mounting groove 122. The limiting part 13 is in limiting cooperation with the limiting part 22, so as to limit the locking piece 2 in the mounting groove 122.
[0052] Through the limiting part 22, when the locking piece 2 is stretched out of the mounting groove 122, the locking piece 2 is prevented from being popped out of the mounting groove 122, so as to ensure the locking reliability of the locking piece 2 and the stability of the locking meshing port 8. When the locking piece 2 is in the unlocking state and the meshing port locking structure is pulled out of the meshing port 8, the inclined side walls of the two sides of the locking protrusion 21 are in extrusion contact with the meshing port 8. The locking protrusion 21 is forced to retract into the mounting groove 122. The meshing port locking structure can be pulled out of the meshing port 8, so as to improve the operation feeling of the user.
[0053] The end of the locking piece 2 away from the locking protrusion 21 is provided with a locking groove 23. The rotating assembly 32 includes a locking abutting part 3221 and an unlocking releasing part 3222 arranged opposite to each other. In the locking position, the locking abutting part 3221 is rotated into the locking groove 23, so as to limit the movement of the locking piece 2. In the unlocking position, the unlocking releasing part 3222 is rotated to a position corresponding to the locking groove 23, so as to release the limitation on the movement of the locking piece 2.
[0054] The shape of the locking groove 23 can be arc-shaped, and the locking abutting portion 3221 is also arc-shaped to match the shape of the locking groove 23. The locking abutting portion 3221 can be a semicircular cylinder, and the unlocking release portion 3222 is an unlocking notch. When the semicircular cylinder is rotated into the locking groove 23, the semicircular cylinder limits the movement of the locking piece 2, so that the locking protrusion 21 remains locked with the network port 8. When the semicircular cylinder is rotated out of the locking groove 23, the unlocking notch is rotated to a position corresponding to the locking groove 23, and the unlocking notch provides space for the movement of the locking piece 2. The unlocking notch releases the limitation of the locking piece 2, so that the locking protrusion 21 can move downward to unlock the network port 8.
[0055] The network port locking structure further includes a resilient member 6 arranged in the mounting groove 122. One end of the resilient member 6 abuts against the groove bottom of the mounting groove 122, and the other end abuts against the locking piece 2. The resilient member 6 provides a restoring force for the locking piece 2, and also provides an elastic force for the locking piece 2. When the locking end 121 is inserted into or pulled out of the network port 8 in the unlocked position, the locking piece 2 elastically abuts against the network port 8, which helps to improve the user's operation feeling. In particular, when the locking end 121 is inserted into the network port 8, the locking protrusion 21 can produce a clicking sound when it is clamped into the network port 8 under the action of the resilient member 6, which prompts the user that the clamping is in place.
[0056] The locking piece 2 is provided with two protruding columns toward the groove bottom of the mounting groove 122. The number of the resilient members 6 includes two, and the two resilient members 6 are connected to the two protruding columns one by one. One end of the resilient member 6 is sleeved on the protruding column, and the protruding column can be used to limit the resilient member 6. The resilient member 6 can be a spring or other structure with elastic properties.
[0057] Referring to Figure 2 , Figure 7 and Figure 10 , the rotating assembly 32 includes a connecting block 321 and a rotating shaft 322. One side of the connecting block 321 is connected with the motor 31, and the other side is connected with the rotating shaft 322. The rotating shaft 322 extends into the mounting groove 122 from the end away from the connecting block 321. The rotating shaft 322 has a locking abutting portion 3221 and an unlocking release portion 3222. The locking abutting portion 3221 is used to limit the movement of the locking piece 2, and the unlocking release portion 3222 is used to release the limitation of the movement of the locking piece 2.
[0058] After the locking end 121 is inserted into the network port 8, the control panel 4 receives a locking instruction sent by an external terminal device. The control panel 4 controls the motor 31 to start working. The motor 31 drives the rotating shaft 322 to rotate through the connecting block 321. The rotating shaft 322 drives the locking abutting portion 3221 to rotate into the locking groove 23. The locking abutting portion 3221 limits the movement of the locking piece 2 to form a limitation of the locking piece 2, thereby completing the locking of the network port 8.
[0059] When the web port 8 needs to be unlocked, the control panel 4 receives the unlocking instruction sent by the external terminal device, the control panel 4 controls the motor 31 to start working, the motor 31 drives the rotating shaft 322 to rotate through the adapter block 321, the rotating shaft 322 drives the locking abutting part 3221 to exit the locking slot 23, and the unlocking release part 3222 is aligned with the locking slot 23, the unlocking release part 3222 provides space for the movement of the locking piece 2, so as to release the limiting of the locking piece 2, so that the locking convex part 21 can move downward, so as to release the locking of the web port 8, thereby completing the unlocking of the web port 8.
[0060] The rotating shaft 322 includes a driving body 3223, one side of the driving body 3223 is arc-shaped to form the locking abutting part 3221, and the other side is provided with a first limiting surface 3224 and a second limiting surface 3225 arranged at an included angle, and a limiting boss 123 is arranged in the installation slot 122, the first limiting surface 3224 is limitedly matched with the limiting boss 123 in the locking position; and the second limiting surface 3225 is limitedly matched with the limiting boss 123 in the unlocking position, so as to limit the rotation angle of the rotating shaft 322.
[0061] The first limiting surface 3224 and the second limiting surface 3225 are limitedly matched with the limiting boss 123, so as to limit the rotation angle of the rotating shaft 322, further increase the operation feeling of the user, and improve the operation reliability of the web port locking structure.
[0062] For example, the rotating shaft 322 rotates 180° and stops, and the locking piece 2 is driven to be in the locking position, or the rotating shaft 322 reversely rotates 180° and stops, and the locking piece 2 is driven to be in the unlocking position. The included angle between the first limiting surface 3224 and the second limiting surface 3225 can be greater than 180°, and can be set to 190°, 200°, 210°, 220°, 230°, 240° and the like.
[0063] The adapter block 321 is provided with an embedding groove 3211, the detection piece 5 is embedded in the embedding groove 3211, the rotating shaft 322 is provided with a limiting groove 3226, and the adapter block 321 and the detection piece 5 are at least partially arranged in the limiting groove 3226. The adapter block 321 and the limiting groove 3226 are limitedly matched. The adapter block 321 is rectangularly arranged, and the groove opening of the embedding groove 3211 is arranged towards the groove bottom of the limiting groove 3226, so as to be matched with the groove bottom of the limiting groove 3226 to jointly press and hold the detection piece 5.
[0064] In this way, on the one hand, the adapter block 321 and the rotating shaft 322 are convenient to assemble, and the structure is simple, on the other hand, the structural space is reasonably utilized, which helps to reduce the overall structure of the web port locking structure, and also helps to improve the structural compactness of the rotating assembly 32.
[0065] Reference Figure 2 ,Figure 6 and Figure 8 The net port locking structure further comprises a fixing support 7 arranged in the shell 1 and in position cooperation with the shell 1. The fixing support 7 is provided with an installation cavity 71 with an open end, and the motor 31 is arranged in the installation cavity 71. The fixing support 7 is further provided with a through hole 72 communicating with the installation cavity 71, so that the driving shaft of the motor 31 can pass through.
[0066] The outer part of the fixing support 7 is connected in position with the internal ribs of the shell 1 by means of slotting, so as to ensure that the fixing support 7 can be stably installed in the shell 1. The fixing support 7 provides stable installation for the motor 31, so as to ensure that the motor 31 can be reliably installed in the shell 1.
[0067] The control board 4 comprises a main control board 41 and an interface board 42, which are electrically connected by means of a flexible circuit board. The outer part of the fixing support 7 is provided with an assembly groove 73 for installing the main control board 41, and the interface board 42 is arranged at the open end of the installation cavity 71 and is electrically connected with the interface 111.
[0068] The main control board 41 is installed on the fixing support 7, and the sensing module on the main control board 41 is arranged in position with the detection piece 5. By dispersing the installation of the main control board 41 and the interface board 42, the main control board 41 and the interface board 42 can be reasonably installed in the limited space of the shell 1, so as to fully utilize the internal space. The edge of the assembly groove 73 can form a limiting protrusion 74, which is used to limit the main control board 41, so that the main control board 41 can be stably assembled on the fixing support 7.
[0069] The shell 1 is provided with an annular avoiding groove 112 arranged around the interface 111. The annular avoiding groove 112 is used to adapt to the shape of the computer key interface, so as to adapt to the shape of the interface 111 of more external terminal devices, and improve the applicability of the net port locking structure.
[0070] Referring to Figures 1 to 10 The shell 1 comprises a shell body 11 and an end cover 12. The end cover 12 is connected with the shell body 11. The interface 111 is arranged at one end of the shell body 11 away from the end cover 12. The installation groove 122 is arranged in the end cover 12. The end cover 12 is further provided with a movable passage 124 communicating with the installation groove 122. The rotating assembly 32 is rotatably arranged in the movable passage 124.
[0071] The end cover 12 further holds the fixing support 7 in position in cooperation with the shell body 11, so that the fixing support 7 is stably installed in the shell body 11. The end cover 12 further limits the main control board 41 in cooperation with the limiting protrusion 74, so as to further improve the installation stability of the main control board 41.
[0072] The limiting part 13 is detachably connected with the end cover 12, the limiting part 13 can be provided as a strip-shaped plug, the strip-shaped plug is in interference fit with the groove along of the mounting groove 122 of the end cover 12. The external shape of the shell body 11 can be square, rectangular, cylindrical or other shapes; the end cover 12 and the shell body 11 can be fixedly connected in a clamping manner to fix the end cover 12 and the shell body 11.
[0073] With reference to Figures 1 to 10 The unlocking operation principle of the network port locking structure is as follows:
[0074] The locking process: the locking end 121 is inserted into the corresponding network port 8, the locking protrusion 21 is clamped into the inside of the network port 8, the computer key or the mobile phone TYPE-C insertion interface 111 is inserted to be connected with the network port locking structure, the computer key or the mobile phone supplies power and communicates with the network port locking structure, the computer key or the mobile phone APP issues a locking instruction, the control panel 4 receives the locking instruction sent by the computer key or the mobile phone APP, the control panel 4 controls the motor 31 to start, the motor 31 works and drives the rotating shaft 322 to rotate through the adapter block 321, the rotating shaft 322 drives the locking abutting part 3221 to rotate into the locking groove 23, the locking abutting part 3221 limits the movement of the locking piece 2 to form a limit to the locking piece 2, thereby completing the locking of the network port 8.
[0075] The unlocking process: the computer key or the mobile phone TYPE-C insertion interface 111 is inserted, and power and communication are supplied to the network port locking structure, the computer key or the mobile phone APP issues an unlocking instruction, the control panel 4 receives the unlocking instruction sent by the computer key or the mobile phone APP, the control panel 4 controls the motor 31 to start working, the motor 31 drives the rotating shaft 322 to rotate through the adapter block 321, the rotating shaft 322 drives the locking abutting part 3221 to exit the locking groove 23, and the unlocking release part 3222 is aligned with the locking groove 23, the unlocking release part 3222 provides a space for the movement of the locking piece 2 to release the limit to the locking piece 2, so that the locking protrusion 21 can move downward to release the locking of the network port 8, thereby completing the unlocking of the network port 8.
[0076] The above is only an optional embodiment of the present application, and does not limit the patent range of the present application, any equivalent structural transformation made by the present application specification and drawings, or direct / indirect application in other related technical fields under the inventive concept of the present application are included in the patent protection range of the present application.
Claims
1. A web port closure structure, characterized by, The network port locking structure comprises a housing, a locking piece, a driving assembly, a control board and a detection piece; The housing comprises a locking end inserted into a network port and an interface for plugging an external terminal device, the locking end is provided with a mounting groove for mounting the locking piece, the locking piece has a locking position and an unlocking position, in the locking position, the locking piece extends out of the mounting groove to lock with the network port, in the unlocking position, the locking piece retracts into the mounting groove to release the lock with the network port; The driving assembly comprises a motor and a rotating assembly, both of which are arranged in the housing, the motor drives the locking piece to switch between the locking position and the unlocking position through the rotating assembly; The control board is arranged in the housing and electrically connected with the motor, the control board has a sensing module, the detection piece is arranged on the rotating assembly and inductively cooperates with the sensing module to detect the state information of the locking piece in the locking position or the unlocking position, the control board uploads the state information to a management system through the external terminal device.
2. The web portal lockout structure of claim 1, wherein, The detection piece comprises a first detection part and a second detection part, in the locking position, the first detection part inductively cooperates with the sensing module, in the unlocking position, the second detection part inductively cooperates with the sensing module.
3. The web portal lockout structure of claim 1, wherein, When the control board is connected with the external terminal device through the interface, the external terminal device supplies power to the control board and the motor, the control board is used for receiving an unlocking instruction or a locking instruction sent by the external terminal device, and the control board controls the motor to work based on the unlocking instruction or the locking instruction; The control board establishes communication with the external terminal device through the interface, or the control board establishes communication with the external terminal device in a wireless manner.
4. The web portal lockout structure of claim 1, wherein, The locking piece has a locking protrusion and a limiting part, the locking protrusion is used for locking cooperation or unlocking cooperation with the network port, two sides of the locking protrusion opposite to each other are arranged in an inclined manner, the housing comprises a limiting part arranged at the edge of the mounting groove, and the limiting part is in limiting cooperation with the limiting part to limit the locking piece in the mounting groove.
5. The web portal lockout structure of claim 4, wherein, One end of the locking piece away from the locking protrusion is provided with a locking groove, the rotating assembly comprises a locking abutting part and an unlocking releasing part arranged opposite to each other, in the locking position, the locking abutting part rotates into the locking groove to limit the movement of the locking piece, in the unlocking position, the unlocking releasing part rotates to a position corresponding to the locking groove to release the limitation on the movement of the locking piece.
6. The web portal lockout structure of claim 4, wherein, The network port locking structure further comprises an elastic piece arranged in the mounting groove, one end of the elastic piece abuts against the groove bottom of the mounting groove, and the other end abuts against the locking piece.
7. The web portal lockout structure of claim 1, wherein, The rotating assembly comprises a rotating block and a rotating shaft, one side of the rotating block is connected with the motor, the other side is connected with the rotating shaft, one end of the rotating shaft away from the rotating block extends into the mounting groove, the rotating shaft has the locking abutting part and the unlocking releasing part, the locking abutting part is used for limiting the movement of the locking piece, and the unlocking releasing part is used for releasing the limitation on the movement of the locking piece.
8. The web portal lockout structure of claim 7, wherein, The rotating shaft comprises a driving body, one side of the driving body is arranged in an arc shape to form the locking abutting part, the other side is provided with a first limiting surface and a second limiting surface arranged at an included angle, a limiting boss is arranged in the mounting groove, the first limiting surface is limited matched with the limiting boss in the locking position; the second limiting surface is limited matched with the limiting boss in the unlocking position, so as to limit the rotating angle of the rotating shaft.
9. The web portal lockout structure of claim 7, wherein, The adapter block is provided with an embedding groove, the detection piece is embedded in the embedding groove, the rotating shaft is provided with a limiting groove, the adapter block and the detection piece are at least partially arranged in the limiting groove, and the adapter block is limited matched with the limiting groove.
10. The web portal lockout structure of claim 1, wherein, The mesh port locking structure further comprises a fixed support, the fixed support is arranged in the shell and is limited matched with the shell, the fixed support is provided with an installation cavity with one end arranged in an open manner, the motor is arranged in the installation cavity, and the fixed support is further provided with a through hole communicating with the installation cavity, so that the driving shaft of the motor passes through.
11. The web portal lockout structure of claim 10, wherein, The control board comprises a main control board and an interface board, the main control board and the interface board are electrically connected through a flexible circuit board, the outside of the fixed support is provided with an assembly groove for mounting the main control board, and the interface board is arranged at the opening of the installation cavity and is electrically connected with the interface.
12. The web portal lockout structure of claim 1, wherein, The shell is provided with an annular avoiding groove surrounding the interface.
13. The web portal lockout structure of claim 1, wherein, The shell comprises a shell body and an end cover, the end cover is connected with the shell body, the interface is arranged at one end of the shell body away from the end cover, the mounting groove is arranged in the end cover, the end cover is further provided with a movable channel communicating with the mounting groove, and the rotating assembly is rotatably arranged in the movable channel.