Key for unlocking plug of internet access and plug of USB (universal serial bus) interface
By combining the design of a wired key and a USB key, the problems of difficulty in finding the key and scratches caused by its small size are solved. The key can be rotated and stored quickly, improving the convenience and security of use.
Patent Information
- Application Number
- CN202520235695.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-14
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2035-02-14
AI Technical Summary
The existing network port key and USB interface key are small and used separately, which increases the search time and makes it easy for staff to get scratched while searching.
Design a combination key that combines a network port key and a USB interface key. By cooperating with the operation and unlocking components, the key's volume is increased. The key's rotation and storage are achieved through the cooperation of pressing, rotating, and connecting parts, preventing scratches when fumbling.
It shortens the time spent searching for keys, avoids the problem of staff getting scratched while fumbling around, and is more convenient and safer to use.
Smart Images

Figure CN223665784U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of information security, and in particular to a key for unlocking network port and USB interface plugs. Background Technology
[0002] Currently, the physical interface plug unlocking keys used in actual production mainly fall into two categories: network port keys and USB interface keys. Each type has its own function, handling the corresponding network blocked interfaces and improving network security in the production area. However, despite their portability, these keys still have certain drawbacks in practical applications. First, both types of keys are relatively small, making them difficult to find quickly when needed and prone to being lost after use, increasing the complexity and cost of the work. Second, due to their irregular shape, they may scratch workers when rummaging through computer bags, affecting personal safety and potentially reducing work efficiency. Utility Model Content
[0003] Therefore, the technical problem to be solved by this utility model is that the existing intranet port key and USB interface key are small in size and used separately, which increases the search time and makes it easy for staff to be scratched when searching.
[0004] The above-mentioned technical problems are solved by the following technical solution: This utility model proposes a key for unlocking the plugs of network ports and USB interfaces, which includes an operating component. The operating component includes a pressing component, a rotating component disposed on the middle section of the pressing component, a connecting component disposed on the bottom of the pressing component, and an auxiliary component disposed on one end of the connecting component. The auxiliary component cooperates with the rotating component.
[0005] The unlocking component includes a storage block, a storage piece formed on the outer wall of the storage block, and a mesh key and a second key disposed at both ends of the storage block.
[0006] The operation component is provided in two parts, and is symmetrically arranged at both ends of the unlocking component.
[0007] In a preferred embodiment of the key for unlocking network port and USB interface plugs according to this utility model: the pressing component includes a button, a pressing rod is welded to the bottom of the button, and a first spring is provided at the bottom of the pressing rod.
[0008] In a preferred embodiment of the key for unlocking network port and USB interface plugs of this utility model: the pressing member further includes a first placement slot and a second placement slot symmetrically opened inside the storage block, and the first placement slot and the second placement slot are connected.
[0009] The pressing rod passes through the interior of the first placement slot and is movably connected to the second placement slot. A first spring is fixedly connected to the bottom of the second placement slot.
[0010] In a preferred embodiment of the key for unlocking network port and USB interface plugs according to this utility model: the rotating component includes an adjusting rod disposed on the outer wall of the pressing rod, a first slide rail is provided on the outer wall of the adjusting rod, a sleeve is sleeved inside the adjusting rod, the bottom of the sleeve is fixedly installed at the bottom of the first placement groove, and a second slide rail is provided on the outer wall of the adjusting rod.
[0011] In a preferred embodiment of the key for unlocking network port and USB interface plugs according to this utility model: both the adjusting rod and the sleeve are hollow structures, and the adjusting rod and the sleeve are penetrated by the pressing rod;
[0012] The first slide rail is arc-shaped and is connected to the second slide rail. The first slide rail and the second slide rail are staggered about the adjusting rod.
[0013] In a preferred embodiment of the key for unlocking network port and USB interface plugs according to this utility model: the connector includes a connecting frame and a first slider, one bottom end of the connecting frame is connected to the bottom of the pressing rod, the outer wall of the connecting frame is provided with a first slider, and the first slider cooperates with the first placement groove.
[0014] In a preferred embodiment of the key for unlocking network and USB interface plugs according to this utility model: the auxiliary component includes a second slider disposed on the first slide rail and the second slide rail, one end of the second slider is inserted into the top end of the connecting frame, the top of the connecting frame is provided with an adjustment groove, the interior of the adjustment groove is provided with a second spring, one end of the second spring is on one side of the second slider, and the interior of the second spring is provided with a connecting rod.
[0015] In a preferred embodiment of the key for unlocking network port and USB interface plugs of this utility model: one end of the connecting rod is connected to the second slider, the other end of the connecting rod passes through the connecting frame, and an anti-collision block is provided at the other end of the connecting rod.
[0016] In a preferred embodiment of the key for unlocking network port and USB interface plugs described in this utility model: the storage component includes a first storage slot and a second storage slot, the first storage slot and the second storage slot are symmetrically opened on the outer wall of the storage block, and both the first storage slot and the second storage slot penetrate the storage block.
[0017] The first storage compartment has a movable mesh key installed inside.
[0018] In a preferred embodiment of the key for unlocking network port and USB interface plugs according to this utility model: the second key includes an interface key movably disposed inside the second storage slot, the top of the interface key is provided with a third slide rail, the inside of the third slide rail is slidably installed with an adjustment block, and the bottom of the adjustment block is provided with a USB interface plug unlocking grab.
[0019] The beneficial effects of this utility model are as follows: by cooperating with the operating component and the unlocking component, the existing intranet port key and USB interface key are combined together, increasing the volume of the original single key. During use, there is no need to search for different keys, shortening the search time. In addition, the intranet port key and USB interface key are stored in the storage block when not in use, avoiding the problem of staff being scratched when searching. It is more convenient and safer to use. Attached Figure Description
[0020] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings of the embodiments of this utility model will be briefly described below. Obviously, the drawings described below only relate to some embodiments of this utility model and are not intended to limit the scope of this utility model. Wherein:
[0021] Figure 1 A schematic diagram of the overall structure of the key used to unlock the plugs of the network port and USB interface is shown;
[0022] Figure 2 A cross-sectional view of the key used to unlock the plugs of the network port and USB interface is shown;
[0023] Figure 3 A partial structural diagram of the key used to unlock the plugs of the network port and USB interface is shown;
[0024] Figure 4 A schematic diagram of the overall structure of the operating components is shown;
[0025] Figure 5 A cross-sectional view of the operating components is shown;
[0026] Figure 6 A schematic diagram of the overall structure of the auxiliary component is shown. Detailed Implementation
[0027] To enable those skilled in the art to better understand this utility model, the present utility model will be further described in detail below with reference to specific embodiments and accompanying drawings.
[0028] The terminology used in this invention refers to those general terms currently widely used in the art in consideration of the functionality of this invention; however, these terms may vary according to the intent, precedent, or new technology of those skilled in the art. Furthermore, specific terms may be chosen by the applicant, and in such cases, their detailed meanings will be described in the detailed description of this invention. Therefore, the terminology used in this specification should not be construed as simple names, but rather based on the meaning of the terms and the overall description of this invention.
[0029] Reference Figure 1 and Figure 4 This embodiment provides a key for unlocking Ethernet and USB interface plugs, including an operating component 1. The operating component 1 includes a pressing member 11, which, when moved up and down, drives a connecting member 13 to move up and down. A rotating member 12 is located in the middle of the pressing member 11, which facilitates the rotation of the top Ethernet key 23 and the second key 24, thereby enabling the Ethernet key 23 and the second key 24 to be opened and closed by rotation, so that the Ethernet key 23 and the second key 24 can be used when not in use. The key is stored in the storage block 21, which avoids the problem of staff being scratched when searching. It is more convenient and safer to use. The connecting part 13 is set at the bottom of the pressing part 11, and the auxiliary part 14 is set at one end of the connecting part 13. The auxiliary part 14 cooperates with the rotating part 12. Through the cooperation between the connecting part 13 and the auxiliary part 14, the pressing part 11 can drive the rotating part 12 to rotate during the downward movement, thereby driving the mesh key 23 and the second key 24 at the top of the rotating part 12 to rotate, which makes it easier for staff to operate.
[0030] Preferably, the unlocking component 2 includes a storage block 21, a storage component 22 formed on the outer wall of the storage block 21, and a mesh key 23 and a second key 24 set at both ends of the storage block 21. Through the cooperation between the storage block 21 and the storage component 22, the existing mesh key 23 and the second key 24 are combined together, increasing the volume of the original single key. During use, there is no need to search for different keys, shortening the search time. Moreover, when not in use, the mesh key 23 and the second key 24 are stored in the storage block 21, avoiding the problem of staff being scratched when searching. It is more convenient and safer to use.
[0031] It is worth noting that there are two operation components 1, which are symmetrically located at both ends of the unlocking component 2. This allows staff to select the corresponding key to unlock and operate the device according to the actual situation, thus avoiding the phenomenon of the wrong key being exposed and damaged when not in use.
[0032] When in use, when the mesh key 23 or the second key 24 is needed, press the corresponding pressing part 11. Under the action of the pressing part 11, the connecting part 13 moves downward synchronously, thereby causing the auxiliary part 14 at the top end of the connecting part 13 to move downward. This allows the auxiliary part 14 to slide on the rotating part 12, causing the rotating part 12 to rotate. This, in turn, causes the mesh key 23 or the second key 24 at the corresponding position to rotate 180° clockwise and rotate out of the storage block 21, making it easier for the staff to perform subsequent operations.
[0033] When the network port key 23 or the second key 24 is no longer needed, repeat the above operation to rotate the network port key 23 or the second key 24 180° clockwise again and store it in the storage block 21. This avoids the problem of staff being scratched when searching for it, making it more convenient and safer to use.
[0034] In summary, the beneficial effects of this utility model are that by cooperating with the operating component and the unlocking component, the existing network port key 23 and the second key 24 are combined together, increasing the volume of the original single key. During use, there is no need to search for different keys, shortening the search time. Furthermore, when not in use, the network port key 23 and the second key 24 are stored in the storage block 21, avoiding the problem of staff being scratched while searching. It is more convenient and safer to use.
[0035] Reference Figure 3 and Figure 4 As an optional embodiment, the pressing component 11 includes a button 111. A pressing rod 112 is welded to the bottom of the button 111. Through the cooperation between the button 111 and the pressing rod 112, it is convenient for the operator to drive the connecting member 13 to move up and down synchronously when pressing, so that the rotating member 12 rotates under the drive of the connecting member 13, thereby realizing the effect of rotating and unlocking the mesh key 23 and the second key 24. A first spring 113 is provided at the bottom of the pressing rod 112. The first spring 113 is provided to facilitate the recovery of elasticity without the influence of external force, driving the pressing rod 112 and the button 111 to move upward, thereby limiting and fixing the pressing rod 112 and the button 111, thus ensuring the opening action of the mesh key 23 and the second key 24, and making it easier for the operator to operate the mesh key 23 and the second key 24.
[0036] Furthermore, the pressing component 11 also includes a first placement groove 114 and a second placement groove 115 symmetrically opened inside the storage block 21, and the first placement groove 114 and the second placement groove 115 are connected; the pressing rod 112 passes through the inside of the first placement groove 114, and the pressing rod 112 is movably connected to the second placement groove 115. The bottom of the second placement groove 115 is fixedly connected to a first spring 113. Through the cooperation between the first placement groove 114 and the second placement groove 115, the first spring 113 and the rotating component 12 can be effectively limited, so as to prevent the first spring 113 and the rotating component 12 from deviating during operation.
[0037] Furthermore, the connecting member 13 includes a connecting frame 131 and a first slider 132. One bottom end of the connecting frame 131 is connected to the bottom of the pressing rod 112. Through the setting of the connecting frame 131, the pressing rod 112 is effectively connected to the auxiliary member 14, thereby driving the auxiliary member 14 to move up and down synchronously. The outer wall of the connecting frame 131 is provided with the first slider 132, which cooperates with the first placement groove 114. When the connecting frame 131 moves up and down, it can effectively limit the connecting frame 131 and prevent the connecting frame 131 from deviating during the movement.
[0038] In use, first press button 111. The button 111 moves the pressing rod 112 downward, causing the first spring 113 at the bottom of the pressing rod 112 to be compressed and deformed. At the same time, the pressing rod 112 moves the connecting frame 131 downward synchronously, thereby adjusting the position of the auxiliary part 14 at the top of the connecting frame 131. When the operator releases the button, the spring force of the first spring 113 causes the pressing rod 112 and button 111 to move upward back to their original positions. The connecting frame 131 and auxiliary part 14 move upward synchronously under the action of the pressing rod 112.
[0039] Reference Figure 4In one embodiment provided in this application, the rotating component 12 includes an adjusting rod 121 disposed on the outer wall of the pressing rod 112. A first slide rail 122 is provided on the outer wall of the adjusting rod 121. Through the cooperation between the adjusting rod 121 and the first slide rail 122, when the connecting member 13 and the auxiliary member 14 move up and down, the adjusting rod 121 is rotated by the first slide rail 122, thereby rotating the mesh key 23 and the second key 24 at the top of the adjusting rod 121. This facilitates the rotation and opening of the mesh key 23 and the second key 24 from the storage block 21, making it easier for the staff to handle the mesh key 24. 3. The second key 24 is operated. A sleeve 123 is sleeved inside the adjusting rod 121. The bottom of the sleeve 123 is fixedly installed at the bottom of the first placement groove 114. The sleeve 123 is designed to prevent the adjusting rod 121 from directly contacting the pressing rod 112, so that when the pressing rod 112 moves downward, it can smoothly drive the adjusting rod 121 to rotate. A second slide rail 124 is provided on the outer wall of the adjusting rod 121. The second slide rail 124 can effectively connect the staggered first slide rails 122, so that the mesh key 23 and the second key 24 can be rotated open or rotated back.
[0040] Furthermore, both the adjusting rod 121 and the sleeve 123 are hollow structures, and the adjusting rod 121 and the sleeve 123 are penetrated by the pressing rod 112; the top of the adjusting rod 121 is connected to the bottom of the mesh key 23 and the interface key 241 respectively, so that when the adjusting rod 121 rotates, it can drive the mesh key 23 or the interface key 241 to rotate coaxially, thereby realizing the opening and unlocking action of the mesh key 23 or the interface key 241. The first slide rail 122 is arc-shaped and is connected to the second slide rail 124. The second slide rail 22 and the second slide rail 124 are staggered with the adjusting rod 121, so that the network port key 23 or interface key 241 can not only be opened by rotation, but can also be rotated and stored in the storage block 21. This allows the network port key 23 or interface key 241 to be quickly rotated out of the storage block 21 for subsequent operations when in use, and to be quickly stored in the storage block 21 when not in use, avoiding the problem of staff being scratched when searching for it, making it more convenient and safer to use.
[0041] In use, when the second slider 141 slides from the second slide rail 124 to the first slide rail 122 and then to the intersecting second slide rail 124, the adjusting rod 121 rotates 180° clockwise with the cooperation of the second slider 141, the first slide rail 122 and the second slide rail 124. This causes the key corresponding to the top of the adjusting rod 121 to rotate 180° clockwise, making it easier for the key to rotate out of the storage block 21, which is convenient for the staff to perform subsequent operations.
[0042] Reference Figures 4-6 In one embodiment provided in this application, the auxiliary component 14 includes a second slider 141 disposed on the first slide rail 122 and the second slide rail 124. One end of the second slider 141 is inserted into the top end of the connecting frame 131. The auxiliary component 14 is connected to the adjusting rod 121 through the setting of the second slider 141. When the second slider 141 slides on the first slide rail 122 and the second slide rail 124, the adjusting rod 121 rotates, thereby driving the mesh key 23 or interface key 241 at the top of the adjusting rod 121 to rotate and open. The top of the connecting frame 131 is provided with an adjusting groove 142, and a second spring 143 is disposed inside the adjusting groove 142. Through the setting of the second spring 143, the second slider 141 can be moved and adjusted to a certain extent. When the second slider 141 moves to the junction of the first slide rail 122 and the second slide rail 124, it moves more smoothly, avoiding jamming or stopping. One end of the second spring 143 is on one side of the second slider 141. A connecting rod 144 is provided inside the second spring 143. One end of the connecting rod 144 is connected to the second slider 141. Through the cooperation between the connecting rod 144 and the adjusting groove 142, the second spring 143 can avoid deformation when it contracts, thus ensuring that the direction of the force can be smoothly restored when there is no compression, so that the second slider 141 can slide smoothly in the first slide rail 122 and the second slide rail 124. The other end of the connecting rod 144 passes through the connecting frame 131 and is provided with an anti-collision block 145.
[0043] In use, the second slider 141 slides within the first slide rail 122 and the second slide rail 124. When the second slider 141 moves to the junction of the first slide rail 122 and the second slide rail 124, the second spring 143 at one end of the second slider 141 is squeezed, causing the second slider 141 to slide into the adjustment groove 142. This ensures that the second slider 141 moves more smoothly to the junction of the first slide rail 122 and the second slide rail 124, avoiding any jamming or pause.
[0044] Reference Figure 2In one embodiment provided in this application, the storage component 22 includes a first storage slot 221 and a second storage slot 222. The first storage slot 221 and the second storage slot 222 are symmetrically opened on the outer wall of the storage block 21, and both the first storage slot 221 and the second storage slot 222 penetrate the storage block 21. A mesh key 23 is movably installed inside the first storage slot 221. Through the cooperation between the first storage slot 221 and the second storage slot 222, the mesh key 23 or the interface key 241 can be quickly rotated out of the storage block 21 for subsequent operations when in use. When not in use, the mesh key 23 or the interface key 241 can be quickly stored in the storage block 21, avoiding the problem of staff being scratched when searching, making it more convenient and safer to use.
[0045] Furthermore, the second key 24 includes an interface key 241 movably disposed inside the second storage slot 222. The top of the interface key 241 is provided with a third slide rail 242, and an adjusting block 243 is slidably installed inside the third slide rail 242. Through the cooperation between the third slide rail 242 and the adjusting block 243, the USB interface blocking and unlocking claw 244 can be extended from the interface key 241 when in use, so as to facilitate unlocking the USB interface. When not in use, it can be stored in the interface key 241 to reduce the occupied area and make it easier for the interface key 241 to be better stored in the second storage slot 222. The bottom of the adjusting block 243 is provided with a USB interface blocking and unlocking claw 244. Through the setting of the USB interface blocking and unlocking claw 244, the USB interface can be effectively unlocked.
[0046] When in use, when the network port key 23 or the interface key 241 is used, the network port key 23 or the interface key 241 can be quickly rotated out of the storage block 21 for subsequent operations through the cooperation between the first storage slot 221 and the second storage slot 222.
[0047] When the network port key 23 or interface key 241 is not in use, it can be quickly stored in the storage block 21, avoiding the problem of staff being scratched while searching for it, making it more convenient and safer to use.
[0048] Finally, it should be noted that the methods and devices described in detail above are merely embodiments, and those skilled in the art can modify these embodiments in different ways as long as they do not depart from the scope of this utility model.
Claims
1. A key for unlocking network port and USB interface plugs, characterized in that: include, The operation component (1) includes a pressing member (11), a rotating member (12) disposed on the middle section of the pressing member (11), a connecting member (13) disposed at the bottom of the pressing member (11), and an auxiliary member (14) disposed at one end of the connecting member (13), the auxiliary member (14) cooperating with the rotating member (12); The unlocking component (2) includes a storage block (21), a storage piece (22) opened on the outer wall of the storage block (21), and a mesh key (23) and a second key (24) set at both ends of the storage block (21). The operation component (1) is provided in two parts, and is symmetrically arranged at both ends of the unlocking component (2).
2. The key for unlocking network port and USB interface plugs according to claim 1, characterized in that: The pressing component (11) includes a button (111), and a pressing rod (112) is welded to the bottom of the button (111). A first spring (113) is provided at the bottom of the pressing rod (112).
3. The key for unlocking network port and USB interface plugs according to claim 2, characterized in that: The pressing member (11) further includes a first placement groove (114) and a second placement groove (115) symmetrically opened inside the storage block (21), and the first placement groove (114) and the second placement groove (115) are connected. The pressing rod (112) passes through the interior of the first placement slot (114), and the pressing rod (112) is movably connected to the second placement slot (115). The bottom of the second placement slot (115) is fixedly connected to a first spring (113).
4. The key for unlocking network port and USB interface plugs according to claim 3, characterized in that: The rotating component (12) includes an adjusting rod (121) disposed on the outer wall of the pressing rod (112). A first slide rail (122) is provided on the outer wall of the adjusting rod (121). A sleeve (123) is sleeved inside the adjusting rod (121). The bottom of the sleeve (123) is fixedly installed at the bottom of the first placement groove (114). A second slide rail (124) is provided on the outer wall of the adjusting rod (121).
5. The key for unlocking network port and USB interface plugs according to claim 4, characterized in that: The adjusting rod (121) and the sleeve (123) are both hollow structures, and the adjusting rod (121) and the sleeve (123) are penetrated by the pressing rod (112); The first slide rail (122) is arc-shaped and is connected to the second slide rail (124). The first slide rail (122) and the second slide rail (124) are staggered about the adjusting rod (121).
6. The key for unlocking network port and USB interface plugs according to claim 5, characterized in that: The connector (13) includes a connecting frame (131) and a first slider (132). One bottom end of the connecting frame (131) is connected to the bottom of the pressing rod (112). The outer wall of the connecting frame (131) is provided with a first slider (132), which cooperates with the first placement groove (114).
7. The key for unlocking network port and USB interface plugs according to claim 6, characterized in that: The auxiliary component (14) includes a second slider (141) disposed on the first slide rail (122) and the second slide rail (124). One end of the second slider (141) is inserted into the top end of the connecting frame (131). An adjustment groove (142) is provided on the top of the connecting frame (131). A second spring (143) is disposed inside the adjustment groove (142). One end of the second spring (143) is disposed on one side of the second slider (141). A connecting rod (144) is disposed inside the second spring (143).
8. The key for unlocking network port and USB interface plugs according to claim 7, characterized in that: One end of the connecting rod (144) is connected to the second slider (141), and the other end of the connecting rod (144) passes through the connecting frame (131) and is provided with an anti-collision block (145) at the other end of the connecting rod (144).
9. The key for unlocking network port and USB interface plugs according to any one of claims 1 to 8, characterized in that: The storage component (22) includes a first storage slot (221) and a second storage slot (222). The first storage slot (221) and the second storage slot (222) are symmetrically opened on the outer wall of the storage block (21). The first storage slot (221) and the second storage slot (222) both penetrate the storage block (21). The first storage slot (221) has a movable mesh key (23) installed inside.
10. The key for unlocking network port and USB interface plugs according to claim 9, characterized in that: The second key (24) includes an interface key (241) movably disposed inside the second storage slot (222). The top of the interface key (241) is provided with a third slide rail (242). An adjustment block (243) is slidably installed inside the third slide rail (242). A USB interface blocking and unlocking claw (244) is provided at the bottom of the adjustment block (243).