Shielding piece fixing structure and connector

By designing auxiliary mechanisms in the connector, including rotating rods, cylindrical holes, sealing rings, torsion springs and baffles, the lack of protective functions of existing connectors is solved, significantly improving service life and efficiency.

CN120016193AActive Publication Date: 2025-05-16PEACEFUL VISION ELECTRONICS LIANYUNGANG
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Patent Information

Application Number
CN202510188916.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-20
Publication Date
2025-05-16
Estimated Expiration
2045-02-20

AI Technical Summary

Technical Problem

Existing connectors lack protection and cannot effectively protect their internal components, resulting in short service life and low efficiency.

Method used

A connector including an auxiliary mechanism is designed, which consists of a rotating rod, a cylindrical hole, a sealing ring, a torsion spring and a baffle. Through the cooperation of these components, protection of the internal components of the interface is achieved.

Benefits of technology

It effectively prevents object collisions and heavy objects from impacting, which significantly improves the service life and efficiency of the connector.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a shielding piece fixing structure and a connector, and relates to the technical field of connectors, the shielding piece fixing structure comprises a connector body, the connector body is provided with an auxiliary mechanism, the auxiliary mechanism comprises a rotating rod and two cylindrical holes, the outer surface of the rotating rod is provided with a torsion spring, the outer surface of the rotating rod is connected with a baffle plate in a bonding manner, and the baffle plate is provided with two cylindrical holes. Two connecting plates and a bottom plate are fixed in each supporting frame, the four connecting plates are divided into two groups, two reinforcing blocks are fixed between the opposite sides of each group of connecting plates, and a rectangular block is fixed between the opposite sides of the two supporting frames. According to the technical scheme, internal parts of the connector interface can be protected, objects are prevented from colliding with the internal parts of the interface, the service life of the connector interface is further prolonged, meanwhile, the interface of the connector and the main board can be protected, the service life of the connector can be further prolonged, the service life of the connector is prolonged, and meanwhile the use efficiency of the connector is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of connectors, and in particular to a shielding component fixing structure and a connector. Background Art

[0002] A connector is a device used to connect two wires so that they can transmit data and signals like a complete wire.

[0003] In the existing technology, although the existing connector can quickly connect two wires together to achieve data and signal transmission during actual use, it does not have a protective function. When the connector is not used and is placed in a box with many parts, if the box is moved at this time, the connector without a protective function will not be able to prevent the moving object from colliding with the internal parts of the interface at both ends of the connector, thereby causing damage to the connector. When the connector is accidentally hit by a falling heavy object during use, the connector without a protective ability will not be able to protect its internal motherboard and interface, thereby failing to prevent damage, which not only reduces the service life of the connector, but also reduces the use efficiency of the connector. Summary of the invention

[0004] The purpose of the present invention is to solve the problem that the connector in the prior art has no protection function, thereby failing to improve the service life of the connector and further reducing its use efficiency, and to propose a shielding member fixing structure and a connector.

[0005] In order to achieve the above-mentioned object, the present invention adopts the following technical solution: a connector, comprising a connector body, wherein the connector body is provided with an auxiliary mechanism;

[0006] The auxiliary mechanism includes a rotating rod and two cylindrical holes, the interiors of the two cylindrical holes are bonded and connected with sealing rings, the outer surface of the rotating rod is rotatably connected to two annular blocks through a first bearing, a circular plate is fixed to an end face of one end of the rotating rod, a torsion spring is arranged on the outer surface of the rotating rod, a baffle is bonded and connected to the outer surface of the rotating rod, annular grooves are provided on opposite sides of the two baffles, an annular sealing gasket is bonded and connected to the interior of each annular groove, the outer surface of the rotating rod is rotatably connected to two support frames through a second bearing, two connecting plates and a bottom plate are fixed on the interior of each support frame, the four connecting plates are divided into two groups, two reinforcing blocks are fixed between opposite sides of each group of connecting plates, a rectangular block is fixed between opposite sides of the two support frames, and an arc hole is provided on one side of one of the baffles.

[0007] Preferably, the rotating rod is movably sleeved between the insides of the two sealing rings, the rotating rod is located between the insides of the two annular sealing gaskets, the four reinforcing blocks are divided into two groups, the opposite sides of the reinforcing blocks in each group are fixed, the bottoms of the two rectangular blocks, the bottoms of the two support frames and the bottoms of the two bottom plates are in the same horizontal plane, the two support frames are located between the two circular ring blocks, one end of the torsion spring is slidably embedded in the surface of the circular plate, and the other end of the torsion spring is slidably connected to the inside of the arc hole.

[0008] Preferably, the connector body includes two interfaces, a fixing clip and a shell, the outer surfaces of the opposite ends of the two interfaces are fixedly sleeved with a shell, a main board is installed between the bottoms of the two interfaces, and the two interfaces, two shells, two support frames and two circular blocks are all inside the shell.

[0009] Preferably, shell covers are installed at the openings at both ends of the shell, the other end of the torsion spring is slidably embedded in the surface of one of the shell covers, the opposite sides of the two interfaces are respectively in the same horizontal plane as the opposite sides of the two shell covers, the opposite ends of the two interfaces are respectively inside the two shell covers, and the outer surface of the shell is installed with a shielding body through a fixing clip.

[0010] Preferably, the two cylindrical holes are respectively opened on the surfaces of the two shell covers, the opposite sides of the two annular blocks are respectively in contact with the opposite sides of the two shell covers, the opposite sides of the two baffles are respectively in contact with the opposite sides of the two shell covers, and the opposite sides of the two baffles are respectively in contact with the two sides of the shell.

[0011] Preferably, the opposite sides of the two annular sealing gaskets are in contact with the two sides of the shell respectively, the tops of the two support frames are in contact with the tops of the inner walls of the shell, the bottoms of the two support frames are in contact with the bottoms of the inner walls of the shell, and the inner wall of the shielding body is in contact with the outer wall of the shell.

[0012] A shielding component fixing structure comprises a fixing clamp, on which a connecting mechanism is arranged, the fixing clamp comprises a protective shell and two hand-tightening bolts, the shielding component body is located inside the protective shell, and the outer wall of the shielding component body contacts the inner wall of the protective shell, the threaded end heads of the two hand-tightening bolts both thread through the outer wall of the protective shell, and the threaded end heads of the two hand-tightening bolts both abut against the outer wall of the shielding component body.

[0013] Preferably, the connecting mechanism includes two rings, the protective shell is fixedly sleeved between the insides of the two rings, two symmetrical cylindrical blocks are fixed to the outer wall of each of the rings, the outer surface of each of the cylindrical blocks is rotatably connected to a U-shaped block through a third bearing, a rotating shaft is fixed inside each of the U-shaped blocks, and the outer surface of each of the rotating shafts is rotatably connected to a rotating plate.

[0014] Preferably, a connecting block is fixed to the bottom of each rotating plate, and the four connecting blocks are divided into two groups. A semicircular ring is fixed to the opposite end of each group of connecting blocks. A limiting hole is opened on one side of each connecting block, and the four limiting holes are divided into two groups. A clamp is arranged between the insides of each group of limiting holes, and a hand screw is installed between the two ends of each clamp.

[0015] Preferably, a mounting plate is fixed between the bottoms of the two rings, a double-sided tape is bonded to the bottom of the mounting plate, and a release paper is bonded to the bottom of the double-sided tape.

[0016] Compared with the prior art, the advantages and positive effects of the present invention are:

[0017] 1. In the present invention, by setting an auxiliary mechanism, the internal components of the connector interface can be protected to prevent objects from colliding with the internal components of the interface, thereby improving its service life. At the same time, the interface and the main board of the connector can be protected, and then their service life can be further improved, which not only improves the service life of the connector, but also improves the use efficiency of the connector. When the outer surface of the rotating rod is bonded and connected with a baffle, the two baffles can be stably rotated by first utilizing the cooperation of the circular plate, the rotating rod, the two first bearings, the two shell covers, the shell and the two annular blocks. At the same time, the cooperation of the two rotating baffles and one of the shell covers can realize the simultaneous rotation of the two annular sealing gaskets, and the torsion spring can also be expanded.

[0018] 2. In the present invention, when both baffles complete the 180-degree rotation operation, the rotation of the circular plate is directly stopped, and then the two interfaces, two wires and plugs installed with the two wires are used to realize signal and data transmission operations. When the connector is hit by a falling heavy object, the fixing frame is used to first remove a part of the impact force caused by the falling object.

[0019] 3. In the present invention, the remaining impact force caused by the falling object can be removed by the cooperation of the shell, two support frames, multiple connecting plates, multiple reinforcing blocks, multiple rectangular blocks and multiple bottom plates, that is, the two interfaces and the main board are prevented from being damaged by collision. At the same time, when the two baffles do not rotate, the two interfaces can be protected by directly using the cooperation of the baffles and two annular sealing gaskets.

[0020] 4. In the present invention, by setting a connecting mechanism, the stability of the plug connected by the wires after docking with the interface can be further improved. When the connector needs to be used, the auxiliary mechanism is first adjusted, and then the plugs connected by the two wires are docked with the two interfaces respectively, and then the contraction force of the torsion spring is used to realize that the two baffles will automatically reset until the surfaces of the two baffles are in contact with the surfaces of the two plugs, and then the operation of removing the two hand screws is used to realize that each clamp is removed from between the corresponding set of limit holes, and then the U-shaped block, the corresponding rotating shaft, the corresponding rotating plate and the corresponding connecting block are used to realize the 90-degree rotation of the semicircular ring.

[0021] 5. In the present invention, the cooperation of the third bearing and the cylindrical block can be used to make the previously rotated semicircular ring rotate 90 degrees again. Finally, the cooperation of the U-shaped block, the corresponding rotating shaft, the corresponding rotating plate and the corresponding connecting block can be used to make the semicircular ring that has rotated again rotate 90 degrees again. When the opposite sides of the two symmetrical semicircular rings are in contact, the two sets of limit holes, two hoops and two hand screws can be used to fix the two contacting semicircular rings tightly together. When everything is ready, the double-sided tape and the mounting plate can be used to fix the connector in a suitable position. Then, the cooperation of the connector can be used to realize normal signal and data transmission operations between the two wires. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 A partially cutaway three-dimensional structural schematic diagram of a connector body and an auxiliary mechanism in a connector is provided for the present invention;

[0023] Figure 2 A three-dimensional structural schematic diagram of an auxiliary mechanism in a connector, a connecting structure in a shielding member fixing structure, and a mounting plate is provided for the present invention;

[0024] Figure 3 A partial three-dimensional structural schematic diagram of an auxiliary mechanism and a connector body in a connector is provided for the present invention;

[0025] Figure 4 A partial three-dimensional diagram of an auxiliary mechanism in a connector is provided for the present invention;

[0026] Figure 5 A stereoscopic diagram of a connector body portion in a connector is provided for the present invention;

[0027] Figure 6 A three-dimensional diagram of a connection mechanism in a shielding member fixing structure provided by the present invention;

[0028] Figure 7A partially cutaway stereoscopic diagram of a connecting mechanism in a shielding member fixing structure is provided for the present invention;

[0029] Figure 8 A schematic diagram of a partial three-dimensional structure of a connecting mechanism in a shielding member fixing structure and a connector body in a connector is provided for the present invention;

[0030] Fig. 9 A partial three-dimensional structural schematic diagram of a connector body, a fixing clip in a shielding member fixing structure, and a connecting mechanism in a shielding member fixing structure in a connector provided by the present invention;

[0031] Fig.10 The present invention proposes a connector Figure 1 The enlarged stereogram at A in the middle;

[0032] Fig.11 The present invention proposes a connector Fig. 9 The enlarged stereogram at B in the middle;

[0033] Fig.12 The present invention provides a schematic diagram of a three-dimensional structure of a connector body and an auxiliary mechanism in a connector in a partial cross-section view from another angle.

[0034] Legend: 1. Connector body; 101. Interface; 102. Shell; 103. Main board; 104. Shell cover; 105. Shielding body; 106. Fixing clip; 1061. Protective shell; 1062. Thumb screw; 107. Shell; 2. Connecting mechanism; 201. Ring; 202. Cylindrical block; 203. U-shaped block; 204. Rotating shaft; 205. Rotating plate; 206. Connecting block; 207. Semicircular ring; 208. Limiting hole; 209. Clamp; 210, hand screw; 3, auxiliary mechanism; 301, rotating rod; 302, cylindrical hole; 303, sealing ring; 304, circular ring block; 305, circular plate; 306, torsion spring; 307, baffle; 308, annular groove; 309, annular sealing gasket; 310, support frame; 311, connecting plate; 312, reinforcement block; 313, rectangular block; 314, bottom plate; 315, arc hole; 4, mounting plate; 5, double-sided film; 6, release paper. DETAILED DESCRIPTION

[0035] In order to more clearly understand the above-mentioned purpose, features and advantages of the present invention, the present invention is further described below in conjunction with the accompanying drawings and embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.

[0036] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways than those described herein. Therefore, the present invention is not limited to the specific embodiments of the following disclosure.

[0037] Embodiment 1: Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 8 , Fig. 9 , Fig.10 , Fig.11 and Fig.12 As shown, the present invention provides a connector, comprising a connector body 1, on which an auxiliary mechanism 3 is provided;

[0038] The auxiliary mechanism 3 includes a rotating rod 301 and two cylindrical holes 302. The insides of the two cylindrical holes 302 are both bonded and connected with sealing rings 303. The outer surface of the rotating rod 301 is rotatably connected to two annular blocks 304 through a first bearing. A circular plate 305 is fixed to one end face of the rotating rod 301. A torsion spring 306 is provided on the outer surface of the rotating rod 301. A baffle 307 is bonded and connected to the outer surface of the rotating rod 301. An annular groove 308 is provided on the opposite side of the two baffles 307. An annular sealing gasket 309 is bonded and connected to the inside of each annular groove 308. The outer surface of the rotating rod 301 is rotatably connected to two support frames 310 through a second bearing. Two connecting plates 311 and a bottom plate 314 are fixed to the inside of each support frame 310. The four connecting plates 311 and the bottom plate 314 are fixed to the inside of each support frame 310. The connecting plates 311 are divided into two groups, and two reinforcing blocks 312 are fixed between the opposite sides of each group of connecting plates 311. A rectangular block 313 is fixed between the opposite sides of the two support frames 310. An arc hole 315 is opened on one side of one baffle 307. The rotating rod 301 is movably sleeved between the insides of the two sealing rings 303. The rotating rod 301 is located between the insides of the two annular sealing gaskets 309. The four reinforcing blocks 312 are divided into two groups, and the opposite sides of each group of reinforcing blocks 312 are fixed. The bottoms of the two rectangular blocks 313, the bottoms of the two support frames 310 and the bottoms of the two bottom plates 314 are in the same horizontal plane. The two support frames 310 are located between the two annular blocks 304. One end of the torsion spring 306 is slidably embedded in the circular plate 30 5, the other end of the torsion spring 306 is slidably connected to the inside of the arc hole 315, the connector body 1 includes two interfaces 101, a fixing clip 106 and a shell 107, the outer surfaces of the opposite ends of the two interfaces 101 are fixedly sleeved with a shell 102, a main board 103 is installed between the bottoms of the two interfaces 101, the two interfaces 101, the two shells 102, the two support frames 310 and the two ring blocks 304 are all inside the shell 107, and shell covers 104 are installed at the openings at both ends of the shell 107. The other end of the torsion spring 306 is slidably embedded in the surface of one of the shell covers 104, the opposite sides of the two interfaces 101 are respectively in the same horizontal plane with the opposite sides of the two shell covers 104, and the two interfaces 101 are The opposite ends are respectively located inside the two shell covers 104, and the outer surface of the shell 107 is installed with a shielding body 105 through a fixing clip 106. Two cylindrical holes 302 are respectively opened on the surface of the two shell covers 104, and the opposite sides of the two annular blocks 304 are respectively in contact with the opposite sides of the two shell covers 104, and the opposite sides of the two baffles 307 are respectively in contact with the opposite sides of the two shell covers 104, and the opposite sides of the two baffles 307 are respectively in contact with the two sides of the shell 107, and the opposite sides of the two annular sealing gaskets 309 are respectively in contact with the two sides of the shell 107, and the tops of the two support frames 310 are in contact with the top of the inner wall of the shell 107, and the bottoms of the two support frames 310 are in contact with the bottom of the inner wall of the shell 107.The inner wall of the shielding body 105 is in contact with the outer wall of the housing 107.

[0039] The effect achieved by the entire embodiment is that when the two baffles 307 need to be rotated, the circular plate 305 (such as Figure 2 As shown, in the initial state, the two baffles 307 and the two annular sealing gaskets 309 can protect the two interfaces 101), and the rotating circular plate 305 will drive the two baffles 307 to rotate stably under the cooperation of the rotating rod 301, the two first bearings, the two shell covers 104, the shell 107 and the two annular blocks 304, and the two rotating baffles 307 will drive the annular sealing gaskets 309 connected thereto to rotate, and the rotating circular plate 305 will also expand the torsion spring 306 under the cooperation of one of the shell covers 104, and when the two baffles 307 have completed the 180-degree rotation operation, the circular plate 305 is stopped from rotating, and then the two guides are rotated. The plugs connected by the wires are respectively docked with the two interfaces 101, and then the connection mechanism 2 is used to strengthen the stability of the plug and the interface 101 after docking, so that signal and data transmission operations can be performed. When the connector is hit by a falling heavy object, the fixing clamp 106 will first remove a part of the impact force caused by the falling object, and then the shell 107 will remove the remaining impact force caused by the falling object with the cooperation of two support frames 310, multiple connecting plates 311, multiple reinforcing blocks 312, multiple rectangular blocks 313 and multiple bottom plates 314, that is, prevent the two interfaces 101 and the main board 103 from being damaged by collision, thereby further improving the service life of the connector.

[0040] Embodiment 2: Figure 1 , Figure 2 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Fig. 9 and Fig.11As shown, a connector comprises a connector body 1, an auxiliary mechanism 3 is arranged on the connector body 1, the auxiliary mechanism 3 comprises a rotating rod 301 and two cylindrical holes 302, the outer surface of the rotating rod 301 is rotatably connected to two annular blocks 304 through a first bearing, a circular plate 305 is fixed to one end surface of the rotating rod 301, a torsion spring 306 is arranged on the outer surface of the rotating rod 301, and a baffle 307 is bonded to the outer surface of the rotating rod 301, a shielding member fixing structure comprises a fixing clip 106, a fixing The fixing clamp 106 is provided with a connecting mechanism 2, the fixing clamp 106 includes a protective shell 1061 and two hand-tightening bolts 1062, the shielding body 105 is inside the protective shell 1061, and the outer wall of the shielding body 105 is in contact with the inner wall of the protective shell 1061, the threaded ends of the two hand-tightening bolts 1062 are threaded through the outer wall of the protective shell 1061, and the threaded ends of the two hand-tightening bolts 1062 are against the outer wall of the shielding body 105, and the connecting mechanism 2 includes two sleeves. The protective shell 1061 is fixedly sleeved between the inner parts of the two sleeve rings 201. The outer wall of each sleeve ring 201 is fixed with two symmetrical cylindrical blocks 202. The outer surface of each cylindrical block 202 is rotatably connected to a U-shaped block 203 through a third bearing. A rotating shaft 204 is fixed inside each U-shaped block 203. The outer surface of each rotating shaft 204 is rotatably connected to a rotating plate 205. A connecting block 206 is fixed at the bottom of each rotating plate 205. The four connecting blocks 206 are divided into two A semicircular ring 207 is fixed to the opposite end of each group of connecting blocks 206, a limiting hole 208 is opened on one side of each connecting block 206, and the four limiting holes 208 are divided into two groups. A clamp 209 is arranged between the insides of each group of limiting holes 208, and a hand screw 210 is installed between the two ends of each clamp 209. A mounting plate 4 is fixed between the bottoms of the two rings 201, a double-sided tape 5 is bonded to the bottom of the mounting plate 4, and a release paper 6 is bonded to the bottom of the double-sided tape 5.

[0041] The effect achieved by the entire embodiment is that when the connector needs to be used, the auxiliary mechanism 3 is adjusted first, and then the plug installed at one end of one of the wires is connected to one of the interfaces 101, and then the plug installed at one end of the other wire is connected to the other interface 101. After the two plugs are connected to the corresponding interfaces 101, the force applied to the circular plate 305 is directly released. When the circular plate 305 loses force control, the two baffles 307 will automatically reset under the action of the contraction force of the torsion spring 306 until the surfaces of the two baffles 307 are aligned. The surfaces of the two plugs are in contact with each other, and then the two hand screws 210 are removed from the corresponding clamps 209 respectively, and then the two clamps 209 are taken out from the inside of the corresponding set of limiting holes 208 respectively, and then through the cooperation of one of the U-shaped blocks 203, the corresponding rotating shaft 204, the corresponding rotating plate 205 and the corresponding connecting block 206, the corresponding semicircular ring 207 is driven to rotate 90 degrees (the opening of the semicircular ring 207 is facing downward at this time), and finally, through the cooperation of the corresponding third bearing and the cylindrical block 202, the previously rotated semicircular ring 207 is rotated another 90 degrees (such as Figure 2 As shown, at this time, the opening of the semicircular ring 207 faces away from the main board 103), and after completing 90 degrees, one of the U-shaped blocks 203, the corresponding rotating shaft 204, the corresponding rotating plate 205 and the corresponding connecting block 206 cooperate to allow the semicircular ring 207 to rotate another 90 degrees (at this time, the direction of the semicircular ring 207 is aligned with the wire, and the inner wall of the semicircular ring 207 just contacts the surface of the wire). When the first semicircular ring 207 completes the rotation operation, the remaining three semicircular rings 207 are also operated according to the above-mentioned operating steps. When the opposite sides of the two symmetrical semicircular rings 207 are in contact, the two removed hoops 209 are then installed separately. Reinstall the corresponding set of limit holes 208, and then use two hand screws 210 to fix the two ends of the corresponding ground clamp 209 together, that is, by using the cooperation of the connecting mechanism 2, the stability of the interface 101 after docking with the plug can be further enhanced. When everything is ready, the release paper 6 can be removed from the double-sided tape 5 first, and then the side of the double-sided tape 5 that contacts the release paper 6 can be glued to the wall, table or other location (selected according to actual conditions), that is, the double-sided tape 5 and the mounting plate 4 are used to fix the entire connector in a suitable position, and then the two wires connected to the connector are used to cooperate to perform normal signal and data transmission operations.

[0042] The use method and working principle of the device: When the connector needs to be used, first rotate the circular plate 305 (such as Figure 2As shown, in the initial state, the two baffles 307 and the two annular sealing gaskets 309 can protect the two interfaces 101), and the rotating circular plate 305 will drive the two baffles 307 to rotate stably with the cooperation of the rotating rod 301, the two first bearings, the two shell covers 104, the shell 107 and the two annular blocks 304, and the two rotating baffles 307 will drive the annular sealing gaskets 309 connected thereto to rotate, and the rotating circular plate 305 will also expand the torsion spring 306 with the cooperation of one of the shell covers 104. When the two baffles 307 have completed the 180-degree rotation operation, the circular plate 305 is stopped from rotating, and then the plug installed at one end of one of the wires is connected to one of the interfaces 101, and then the plug installed at one end of the other wire is connected to the other interface 101, and after completion. After the two plugs are docked with the corresponding interfaces 101, the force applied to the circular plate 305 is directly released. When the circular plate 305 loses force control, the two baffles 307 will automatically reset under the action of the contraction force of the torsion spring 306 until the surfaces of the two baffles 307 contact the surfaces of the two plugs, and then the two hand screws 210 are removed from the corresponding clamps 209 respectively, and then the two clamps 209 are taken out from the inside of the corresponding set of limiting holes 208 respectively, and then the corresponding semi-circular ring 207 is driven to rotate 90 degrees (the opening of the semi-circular ring 207 is facing downward) through the cooperation of one of the U-shaped blocks 203, the corresponding rotating shaft 204, the corresponding rotating plate 205 and the corresponding connecting block 206, and finally the previously rotated semi-circular ring 207 is rotated another 90 degrees (such as Figure 2As shown, at this time, the opening of the semicircular ring 207 faces away from the main board 103), and after completing 90 degrees, the semicircular ring 207 is rotated another 90 degrees through the cooperation of one of the U-shaped blocks 203, the corresponding rotating shaft 204, the corresponding rotating plate 205 and the corresponding connecting block 206 (at this time, the direction of the semicircular ring 207 is aligned with the wire, and the inner wall of the semicircular ring 207 just contacts the surface of the wire). When the first semicircular ring 207 completes the rotation operation, the remaining three semicircular rings 207 are also operated according to the above operation steps. When the opposite sides of the two symmetrical semicircular rings 207 are in contact, the two removed clamps 209 are then installed back into the corresponding set of limiting holes 208, and then the two ends of the corresponding clamps 209 are fixed together with two hand screws 210. That is, the cooperation of the connecting mechanism 2 can further enhance the stability of the interface 101 after docking with the plug. When everything is ready, the release paper 6 can be removed from the double-sided film 5. Remove it, and then stick the side of the double-sided tape 5 that contacts the release paper 6 on the wall, table or other position (selected according to actual conditions), that is, use the cooperation of the double-sided tape 5 and the mounting plate 4 to fix the entire connector in a suitable position, and then use the cooperation of the two wires connected to the connector to perform normal signal and data transmission operations. At the same time, with the cooperation of the shielding component body 105, it can also prevent electromagnetic interference in the environment from interfering with the stability of the internal signal and data transmission of the connector. When the connector is hit by a falling heavy object, the protective shell 1061 and the shielding component body 105 will first remove a part of the impact force caused by the falling object, and then the shell 107 will remove the remaining impact force caused by the falling object with the cooperation of two support frames 310, multiple connecting plates 311, multiple reinforcement blocks 312, multiple rectangular blocks 313 and multiple bottom plates 314, that is, prevent the two interfaces 101 and the main board 103 from being damaged by collision, thereby further improving the service life of the connector.

[0043] Among them, the first bearing, the second bearing and the third bearing are all commonly used parts in reality.

[0044] The main transmission components of the connector are the two interfaces 101 and the mainboard 103 .

[0045] The shielding body 105 is a component for preventing electromagnetic interference (EMI) and radio frequency interference (RFI). It is usually a cover and a shell made of metal materials (such as copper, aluminum, etc.).

[0046] The interface 101 is mainly composed of an insulator, a contact, an insulating shell, a positioning pin and other components, and is mainly used in conjunction with a plug to connect a wire to a connector.

[0047] Among them, the interface 101, the main board 103, the shielding body 105, the torsion spring 306 and the double-sided film 5 are all existing technologies, and their models can be selected according to actual conditions, and no further explanation is given here.

[0048] The above description is only a preferred embodiment of the present invention and does not limit the present invention in other forms. Any technician familiar with the profession may use the technical content disclosed above to change or modify it into an equivalent embodiment with equivalent changes and apply it to other fields. However, any simple modification, equivalent change and modification made to the above embodiment based on the technical essence of the present invention without departing from the content of the technical solution of the present invention still falls within the protection scope of the technical solution of the present invention.

Claims

1. A connector, comprising a connector body (1), characterized in that: The connector body (1) is provided with an auxiliary mechanism (3); The auxiliary mechanism (3) comprises a rotating rod (301) and two cylindrical holes (302), the interiors of the two cylindrical holes (302) are both bonded with sealing rings (303), the outer surface of the rotating rod (301) is rotatably connected to two annular blocks (304) via a first bearing, a circular plate (305) is fixed to one end surface of the rotating rod (301), a torsion spring (306) is arranged on the outer surface of the rotating rod (301), a baffle (307) is bonded to the outer surface of the rotating rod (301), and an annular groove (308) is provided on opposite sides of the two baffles (307), each of the annular grooves The interior of the rotating rod (308) is bonded with an annular sealing gasket (309), the outer surface of the rotating rod (301) is rotatably connected to two support frames (310) via a second bearing, two connecting plates (311) and a bottom plate (314) are fixed inside each of the support frames (310), the four connecting plates (311) are divided into two groups, two reinforcing blocks (312) are fixed between opposite sides of each group of connecting plates (311), a rectangular block (313) is fixed between opposite sides of the two support frames (310), and an arc-shaped hole (315) is opened on one side of one of the baffles (307).

2. A connector according to claim 1, characterized in that: The rotating rod (301) is movably sleeved between the insides of the two sealing rings (303), and the rotating rod (301) is located between the insides of the two annular sealing pads (309). The four reinforcing blocks (312) are divided into two groups, and the opposite sides of the reinforcing blocks (312) in each group are fixed to each other. The bottoms of the two rectangular blocks (313), the bottoms of the two support frames (310) and the bottoms of the two bottom plates (314) are in the same horizontal plane, and the two support frames (310) are located between the two annular blocks (304). One end of the torsion spring (306) is slidably embedded in the surface of the circular plate (305), and the other end of the torsion spring (306) is slidably connected to the inside of the arc hole (315).

3. A connector according to claim 2, characterized in that: The connector body (1) comprises two interfaces (101), a fixing clip (106) and a shell (107); the outer surfaces of the opposite ends of the two interfaces (101) are fixedly sleeved with a sleeve (102); a main board (103) is installed between the bottoms of the two interfaces (101); the two interfaces (101), the two sleeves (102), the two support frames (310) and the two annular blocks (304) are all located inside the shell (107).

4. A connector according to claim 3, characterized in that: Shell covers (104) are installed at both end openings of the shell (107), the other end of the torsion spring (306) is slidably embedded in the surface of one of the shell covers (104), the opposite sides of the two interfaces (101) are respectively in the same horizontal plane as the opposite sides of the two shell covers (104), the opposite ends of the two interfaces (101) are respectively inside the two shell covers (104), and the outer surface of the shell (107) is installed with a shielding component body (105) through a fixing clip (106).

5. A connector according to claim 4, characterized in that: The two cylindrical holes (302) are respectively opened on the surfaces of the two shell covers (104); the opposite sides of the two annular blocks (304) are respectively in contact with the opposite sides of the two shell covers (104); the opposite sides of the two baffles (307) are respectively in contact with the opposite sides of the two shell covers (104); and the opposite sides of the two baffles (307) are respectively in contact with the two sides of the shell (107).

6. A connector according to claim 5, characterized in that: The opposite sides of the two annular sealing gaskets (309) are in contact with the two sides of the shell (107) respectively, the tops of the two support frames (310) are in contact with the top of the inner wall of the shell (107), the bottoms of the two support frames (310) are in contact with the bottom of the inner wall of the shell (107), and the inner wall of the shielding body (105) is in contact with the outer wall of the shell (107).

7. A shielding member fixing structure, using a connector according to any one of claims 1 to 6, characterized in that: The invention comprises a fixing clamp (106), on which a connecting mechanism (2) is arranged, the fixing clamp (106) comprises a protective shell (1061) and two hand-tightening bolts (1062), the shielding component body (105) is located inside the protective shell (1061), and the outer wall of the shielding component body (105) is in contact with the inner wall of the protective shell (1061), the threaded ends of the two hand-tightening bolts (1062) are threadedly penetrated through the outer wall of the protective shell (1061), and the threaded ends of the two hand-tightening bolts (1062) are both against the outer wall of the shielding component body (105).

8. A shielding element fixing structure according to claim 7, characterized in that: The connection mechanism (2) comprises two sleeves (201), the protective shell (1061) is fixedly sleeved between the insides of the two sleeves (201), the outer wall of each sleeve (201) is fixed with two symmetrical cylindrical blocks (202), the outer surface of each cylindrical block (202) is rotatably connected to a U-shaped block (203) via a third bearing, the inside of each U-shaped block (203) is fixed with a rotating shaft (204), and the outer surface of each rotating shaft (204) is rotatably connected to a rotating plate (205).

9. A shielding element fixing structure according to claim 8, characterized in that: A connecting block (206) is fixed at the bottom of each rotating plate (205), and the four connecting blocks (206) are divided into two groups. A semicircular ring (207) is fixed at the opposite end of each group of connecting blocks (206). A limiting hole (208) is opened on one side of each connecting block (206), and the four limiting holes (208) are divided into two groups. A clamp (209) is arranged between the inside of each group of limiting holes (208), and a hand screw (210) is installed between the two ends of each clamp (209).

10. The shielding element fixing structure according to claim 8, characterized in that: A mounting plate (4) is fixed between the bottoms of the two sleeve rings (201), a double-sided film (5) is bonded to the bottom of the mounting plate (4), and a release paper (6) is bonded to the bottom of the double-sided film (5).

Citation Information

Patent Citations

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