A radio frequency connector
By designing a fixing mechanism, sealing mechanism and reinforcement mechanism in the radio frequency connector, and using structures such as rising ring, limiting groove, elastic plate and extension ring, the existing radio frequency connectors are solved, and the problems of cumbersome operation and low connection efficiency are achieved, rapid fixing and sealing are achieved, and connection efficiency is improved.
Patent Information
- Application Number
- CN202411456776.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-17
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2044-10-17
AI Technical Summary
When connecting to cables or transmission lines, existing RF connectors are cumbersome and have low connection efficiency and need to be fixed by rotary thread fixing devices.
A radio frequency connector is designed, adopting a fixing mechanism, a sealing mechanism and a reinforcement mechanism, and through structures such as rising ring, limiting groove, elastic plate and extension ring, the rapid fixing and sealing of the transmission line is achieved.
It realizes rapid fixing and sealing of the transmission line, improves connection efficiency, and prevents loosening and dust entering after long use, resulting in poor contact.
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Figure CN119324340B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of electrical component devices, and particularly to a radio frequency connector. Background Art
[0002] As is well known, a radio frequency connector is usually used to connect with a coaxial cable or a transmission line to achieve the connection and separation of the cable or transmission line, as well as the transfer between different types of cables or transmission lines. It is a relatively common connecting device.
[0003] In the prior art, when a radio frequency connector is connected to a cable or a transmission line, usually the transmission line is first inserted into the radio frequency connector, and then it is fixed by rotating a threaded retainer. However, when using threaded fixation, the retainer needs to be sleeved on the surfaces of the radio frequency connector and the transmission line and then fixed, which is rather cumbersome to operate and has low connection efficiency. Summary of the Invention
[0004] The purpose of the present invention is to provide a radio frequency connector to solve the problems raised in the above background art.
[0005] To solve the above technical problems, the present invention is realized through the following technical solutions:
[0006] The present invention is a radio frequency connector, including a connector. A insulator is fixedly connected to the top of the connector. A connection groove is formed on the surface of the insulator, and a connection wire bundle is fixedly connected to the inner wall of the connection groove. It also includes;
[0007] A fixing mechanism, the fixing mechanism includes a fixing ring. An extension groove is formed on the surface of the fixing ring, and an extension ring is slidably connected to the inner wall of the extension groove. A elastic sheet is fixedly connected to the surface of the extension ring;
[0008] A sealing mechanism, the sealing mechanism includes a shrinkage ring. A lower push rod is slidably connected to the inner wall of the shrinkage ring, and a sealing rubber ring is rotatably connected to the end of the lower push rod away from the shrinkage ring;
[0009] A strengthening mechanism, the strengthening mechanism includes a telescopic frame. A strengthening ring is fixedly connected to the end of the telescopic frame, and a passive plate is fixedly connected to the surface of the strengthening ring.
[0010] Furthermore, a limiting groove is formed on the surface of the connector. The number of the limiting grooves is two, and the two limiting grooves are symmetrically arranged with the connector as the center. The number of the connection wire bundles is several, and the connection wire bundles are symmetrically arranged on the inner wall of the connection groove.
[0011] Further, the fixing mechanism includes a cross plate, the surface of the cross plate is fixedly connected with an elastic plate, the surface of the elastic plate is fixedly connected with a contact telescopic frame, the surface of the elastic plate is fixedly connected with a right-angle plate, one end of the cross plate away from the elastic plate is fixedly connected with a rising ring, and the surface of the rising ring is fixedly connected with a limiting elastic rod.
[0012] Further, one end of the cross plate away from the elastic plate is fixedly connected with the surface of the insulator, one end of the contact telescopic frame away from the elastic plate is fixedly connected with the surface of the connector, one end of the right-angle plate away from the elastic plate is fixedly connected with the surface of the fixing ring, the limiting elastic rod is fixedly connected to the inner wall of the limiting groove, the surface of the rising ring is slidably connected with the inner wall of the limiting groove, the number of the fixing rings is two, and the two fixing rings are symmetrically arranged with the connector as the center.
[0013] Further, the sealing mechanism includes a fixing block, the bottom of the fixing block is fixedly connected with a sliding groove rod, the inner wall of the sliding groove rod is slidably connected with a sliding frame, the bottom of the sliding frame is fixedly connected with a passive telescopic plate, the surface of the passive telescopic plate is fixedly connected with a stress block, the inner wall of the contraction ring is slidably connected with a contraction plate, and the surface of the fixing block is fixedly connected with an extrusion plate.
[0014] Further, the surface of the fixing block is fixedly connected with the surface of the insulator, the surface of the passive telescopic plate is fixedly connected with the surface of the contraction ring, the bottom of the contraction ring is in contact with the surface of the rising ring, the number of the sliding frames is two, and the two sliding frames are symmetrically arranged with the insulator as the center. The inner wall of the sealing rubber ring is slidably connected with the surface of the insulator, and the surface of the extrusion plate is in contact with the surface of the stress block.
[0015] Further, for the supporting right-angle frame, a sliding groove is formed on the surface of the supporting right-angle frame, a sliding block is slidably connected to the inner wall of the sliding groove, a rising plate is fixedly connected to the surface of the sliding block, an extrusion column is fixedly connected to the bottom of the rising plate, and a driven telescopic frame is fixedly connected to the surface of the sliding block.
[0016] Further, one end of the telescopic frame away from the reinforcing ring is fixedly connected with the surface of the supporting right-angle frame, the surface of the extrusion column is in contact with the surface of the passive plate, one end of the driven telescopic frame away from the sliding block is fixedly connected with the surface of the contraction ring, one end of the supporting right-angle frame away from the telescopic frame is fixedly connected with the top of the insulator, and the number of the supporting right-angle frames is four, and the four supporting right-angle frames are symmetrically arranged with the insulator as the center.
[0017] The present invention has the following beneficial effects:
[0018] In the present invention, by providing a fixing mechanism, first, the transmission line is inserted into the inner wall of the connection slot to be connected to the connection bundle. When the transmission line is inserted, the protective ring of the transmission line pushes the rising ring to slide upward on the inner wall of the limiting slot, and squeezes the limiting elastic rod. When the rising ring moves, it drives the cross plate to move upward. When the cross plate moves upward, it squeezes the elastic plate. When the elastic plate is subjected to the squeezing force, the middle part bends. When the elastic plate bends, it pushes the contact telescopic frame to contract. When the elastic plate bends, it also pushes the right-angle plate to move towards each other. When the right-angle plate moves, it drives the fixing ring to move towards each other. When the elastic piece touches the surface of the connector and the surface of the transmission line, it squeezes the extension ring backward. When the extension ring is subjected to the squeezing force, it extends in the inner wall of the extension slot in the direction away from each other and forms a semi-circular shape for fixation, effectively fixing the connector and the transmission line and preventing loosening after long-term use.
[0019] In the present invention, by providing a sealing mechanism, when the rising ring moves upward, it pushes the shrinking ring to move upward. When the shrinking ring moves, it pushes the passive telescopic plate to contract upward. When the passive telescopic plate moves, it drives the stress block to move upward. When the stress block moves, it moves towards each other through the extrusion of the extrusion plate. When the stress block moves, it pushes the passive telescopic plate to move towards each other. When the passive telescopic plate moves, it drives the sliding frame to move towards each other on the inner wall of the sliding groove rod. When the passive telescopic plate moves, it pushes the shrinking ring to move towards each other. When the shrinking ring moves, it contracts the shrinking plate. When the shrinking ring moves, it pushes the lower push rod to move downward. When the lower push rod moves downward, it pushes the sealing rubber ring to move downward, effectively sealing the gap at the connection between the connector and the transmission line and preventing dust from entering the interior, which may cause poor contact.
[0020] In the present invention, by providing a reinforcement mechanism, when the shrinking ring moves upward, it drives the driven telescopic frame to move upward. When the shrinking ring contracts, it pulls the driven telescopic frame to extend towards each other. When the driven telescopic frame moves upward, it drives the sliding block to slide upward on the inner wall of the sliding groove. When the sliding block moves upward, it drives the rising plate to move upward. When the rising plate moves, it drives the extrusion column to move upward. When the extrusion column moves upward, the surface of the extrusion column squeezes the passive plate to make the passive plate move towards each other. When the passive plate moves, it pushes the reinforcement ring to move towards each other. When the reinforcement ring moves, it pulls the telescopic frame to extend. When the reinforcement ring moves, the reinforcement groove on the surface of the reinforcement ring is engaged with the extension ring, effectively reinforcing the connector and the transmission line and making the connection more firm.
[0021] Of course, it is not necessary for any product implementing the present invention to achieve all the above-mentioned advantages simultaneously. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] To more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0023] Figure 1 Schematic diagram of the overall structure of the present invention;
[0024] Figure 2 Schematic diagram of the overall sectional structure of the present invention;
[0025] Figure 3 Schematic diagram of the overall structure of the fixing mechanism of the present invention;
[0026] Figure 4 Schematic diagram of the extension ring structure of the present invention;
[0027] Figure 5 Schematic diagram of the overall structure of the sealing mechanism of the present invention;
[0028] Figure 6 Schematic diagram of the lower push rod structure of the present invention;
[0029] Figure 7 Schematic diagram of the overall structure of the reinforcement mechanism of the present invention;
[0030] Figure 8 Schematic diagram of the driven telescopic frame structure of the present invention.
[0031] In the drawings, the list of components represented by each reference numeral is as follows:
[0032] In the figure: 1, connector; 2, insulator; 3, connecting bundle; 10, fixing mechanism; 11, cross plate; 12, elastic plate; 13, contact telescopic frame; 14, right-angle plate; 15, fixing ring; 16, extension ring; 17, elastic sheet; 18, rising ring; 19, limiting elastic rod; 30, sealing mechanism; 31, fixing block; 32, sliding groove rod; 33, sliding frame; 34, passive telescopic plate; 35, force-bearing block; 36, shrinking ring; 37, shrinking plate; 38, lower push rod; 39, sealing rubber ring; 40, extrusion plate; 50, reinforcement mechanism; 51, supporting right-angle frame; 52, telescopic frame; 53, reinforcement ring; 54, passive plate; 55, sliding block; 56, rising plate; 57, extrusion column; 58, driven telescopic frame. Detailed implementation manners
[0033] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0034] Please refer to Figure 1 - Figure 8 As shown, the present invention is a radio frequency connector, including a connector 1. A insulator 2 is fixedly connected to the top of the connector 1. A connection groove is formed on the surface of the insulator 2, and a connection wire harness 3 is fixedly connected to the inner wall of the connection groove. It also includes;
[0035] A fixing mechanism 10, which includes a fixing ring 15. When the right-angle plate 14 moves, it will drive the fixing ring 15 to move in the direction of approaching each other. An extension groove is formed on the surface of the fixing ring 15, and an extension ring 16 is slidably connected to the inner wall of the extension groove. When the elastic piece 17 contacts the surface of the connector 1 and the surface of the transmission line, it squeezes the extension ring 16 backward. An elastic piece 17 is fixedly connected to the surface of the extension ring 16. When the extension ring 16 is subjected to a squeezing force, it extends in the inner wall of the extension groove in the direction of moving away from each other and extends in a semicircular shape for fixing;
[0036] A sealing mechanism 30, which includes a contraction ring 36. When the rising ring 18 moves upward, it will push the contraction ring 36 upward. When the passive telescopic plate 34 moves, it will push the contraction ring 36 to move in the direction of approaching each other. A lower push rod 38 is slidably connected to the inner wall of the contraction ring 36. When the contraction ring 36 moves, it will push the lower push rod 38 downward. The end of the lower push rod 38 away from the contraction ring 36 is rotatably connected to a sealing rubber ring 39. When the lower push rod 38 moves downward, it will push the sealing rubber ring 39 downward;
[0037] A reinforcement mechanism 50, which includes a telescopic frame 52. When the reinforcement ring 53 moves, it will pull the telescopic frame 52 to extend. The end of the telescopic frame 52 is fixedly connected to a reinforcement ring 53. When the passive plate 54 moves, it will push the reinforcement ring 53 to move in the direction of approaching each other. A passive plate 54 is fixedly connected to the surface of the reinforcement ring 53. When the extrusion column 57 moves upward, the surface of the extrusion column 57 squeezes the passive plate 54 to make the passive plate 54 move in the direction of approaching each other.
[0038] Limit grooves are formed on the surface of the connector 1. The number of limit grooves is two, and the two limit grooves are symmetrically arranged with the connector 1 as the center. The number of connection wire harnesses 3 is several, and the connection wire harnesses 3 are symmetrically arranged on the inner wall of the connection groove.
[0039] The fixing mechanism 10 includes a cross plate 11. When the rising ring 18 moves, it will drive the cross plate 11 to move upward. An elastic plate 12 is fixedly connected to the surface of the cross plate 11. When the cross plate 11 moves upward, it squeezes the elastic plate 12. A contact telescopic frame 13 is fixedly connected to the surface of the elastic plate 12. When the elastic plate 12 is subjected to a squeezing force, the middle part bends. When the elastic plate 12 bends, it pushes the contact telescopic frame 13, causing the contact telescopic frame 13 to contract. A right-angle plate 14 is fixedly connected to the surface of the elastic plate 12. One end of the cross plate 11 away from the elastic plate 12 is fixedly connected to the rising ring 18. A limiting elastic rod 19 is fixedly connected to the surface of the rising ring 18, effectively fixing the connector 1 and the transmission line, preventing loosening after long-term use.
[0040] One end of the cross plate 11 away from the elastic plate 12 is fixedly connected to the surface of the insulator 2. One end of the contact telescopic frame 13 away from the elastic plate 12 is fixedly connected to the surface of the connector 1. One end of the right-angle plate 14 away from the elastic plate 12 is fixedly connected to the surface of the fixing ring 15. When the elastic plate 12 bends, it pushes the right-angle plate 14 to move towards each other, and the limiting elastic rod 19 is fixedly connected to the inner wall of the limiting groove and is squeezed. The surface of the rising ring 18 is slidably connected to the inner wall of the limiting groove. First, insert the transmission line into the connection groove to connect the inner wall with the connection bundle 3. When the transmission line is inserted, the protective ring of the transmission line pushes the rising ring 18 to slide upward on the inner wall of the limiting groove. The number of fixing rings 15 is two, and the two fixing rings 15 are symmetrically arranged with the connector 1 as the center.
[0041] The sealing mechanism 30 includes a fixing block 31. A sliding groove rod 32 is fixedly connected to the bottom of the fixing block 31. A sliding frame 33 is slidably connected to the inner wall of the sliding groove rod 32. When the passive telescopic plate 34 moves, it will drive the sliding frame 33 to move towards each other on the inner wall of the sliding groove rod 32. A passive telescopic plate 34 is fixedly connected to the bottom of the sliding frame 33. When the force-bearing block 35 moves, it will push the passive telescopic plate 34 to move towards each other. A force-bearing block 35 is fixedly connected to the surface of the passive telescopic plate 34. When the passive telescopic plate 34 moves, it will drive the force-bearing block 35 to move upward. A contraction plate 37 is slidably connected to the inner wall of the contraction ring 36. When the contraction ring 36 moves, it contracts the contraction plate 37. An extrusion plate 40 is fixedly connected to the surface of the fixing block 31, effectively sealing the gap at the connection between the connector and the transmission line, preventing dust from entering the inside and causing poor contact.
[0042] The surface of the fixed block 31 is fixedly connected to the surface of the insulator 2, and the surface of the passive telescopic plate 34 is fixedly connected to the surface of the contraction ring 36. When the contraction ring 36 moves, it will push the passive telescopic plate 34 to contract upward. The bottom of the contraction ring 36 is in contact with the surface of the rising ring 18. The number of sliding frames 33 is set to two, and the two sliding frames 33 are symmetrically arranged with the insulator 2 as the center. The inner wall of the sealing rubber ring 39 is slidably connected to the surface of the insulator 2. The surface of the extrusion plate 40 is in contact with the surface of the force-receiving block 35. When the force-receiving block 35 moves, it will move in the direction of approaching each other through the extrusion of the extrusion plate 40.
[0043] Support right-angle frame 51. A sliding groove is provided on the surface of the support right-angle frame 51. A sliding block 55 is slidably connected to the inner wall of the sliding groove. When the driven telescopic frame 58 moves upward, it will drive the sliding block 55 to slide upward on the inner wall of the sliding groove. A rising plate 56 is fixedly connected to the surface of the sliding block 55. When the sliding block 55 moves upward, it will drive the rising plate 56 to move upward. An extrusion column 57 is fixedly connected to the bottom of the rising plate 56. When the rising plate 56 moves, it will drive the extrusion column 57 to move upward. A driven telescopic frame 58 is fixedly connected to the surface of the sliding block 55. When the contraction ring 36 moves upward, it will drive the driven telescopic frame 58 to move upward. When the contraction ring 36 contracts, it will pull the driven telescopic frame 58 to extend in the direction of approaching each other, effectively strengthening the connector and the transmission line, making the connection more firm.
[0044] One end of the telescopic frame 52 away from the reinforcement ring 53 is fixedly connected to the surface of the support right-angle frame 51. When the reinforcement ring 53 moves, the reinforcement groove on the surface of the reinforcement ring 53 is engaged with the extension ring 16. The surface of the extrusion column 57 is in contact with the surface of the passive plate 54. One end of the driven telescopic frame 58 away from the sliding block 55 is fixedly connected to the surface of the contraction ring 36. One end of the support right-angle frame 51 away from the telescopic frame 52 is fixedly connected to the top of the insulator 2. The number of support right-angle frames 51 is set to four, and the four support right-angle frames 51 are symmetrically arranged with the insulator 2 as the center.
[0045] In use, first insert the transmission line into the inner wall of the connection slot and connect it to the connection bundle wire 3. When the transmission line is inserted, the protective ring of the transmission line pushes the rising ring 18 to slide upward along the inner wall of the limit slot, and squeezes the limit elastic rod 19. When the rising ring 18 moves, it drives the cross plate 11 to move upward. When the cross plate 11 moves upward, it squeezes the elastic plate 12. When the elastic plate 12 is subjected to the squeezing force, the middle part bends. When the elastic plate 12 bends, it pushes the contact telescopic frame 13, causing the contact telescopic frame 13 to contract. When the elastic plate 12 bends, it also pushes the right-angle plate 14 to move towards each other. When the right-angle plate 14 moves, it drives the fixed ring 15 to move towards each other. When the elastic piece 17 contacts the surface of the connector 1 and the surface of the transmission line, it squeezes the extension ring 16 backward. When the extension ring 16 is subjected to the squeezing force, it extends in a semi-circular shape in the inner wall of the extension slot in a direction away from each other and is fixed. When the rising ring 18 moves upward, it pushes the contraction ring 36 to move upward. When the contraction ring 36 moves, it pushes the passive telescopic plate 34 to contract upward. When the passive telescopic plate 34 moves, it drives the force-bearing block 35 to move upward. When the force-bearing block 35 moves, it moves in a direction towards each other by the extrusion of the extrusion plate 40. When the force-bearing block 35 moves, it pushes the passive telescopic plate 34 to move towards each other. When the passive telescopic plate 34 moves, it drives the sliding frame 33 to move towards each other along the inner wall of the chute rod 32. When the passive telescopic plate 34 moves, it pushes the contraction ring 36 to move towards each other. When the contraction ring 36 moves, it contracts the contraction plate 37. When the contraction ring 36 moves, it pushes the lower push rod 38 to move downward. When the lower push rod 38 moves downward, it pushes the sealing rubber ring 39 to move downward. When the contraction ring 36 moves upward, it drives the driven telescopic frame 58 to move upward. When the contraction ring 36 contracts, it pulls the driven telescopic frame 58 to extend in a direction towards each other. When the driven telescopic frame 58 moves upward, it drives the sliding block 55 to slide upward along the inner wall of the sliding slot. When the sliding block 55 moves upward, it drives the rising plate 56 to move upward. When the rising plate 56 moves, it drives the extrusion column 57 to move upward. When the extrusion column 57 moves upward, the surface of the extrusion column 57 squeezes the passive plate 54, causing the passive plate 54 to move towards each other. When the passive plate 54 moves, it pushes the reinforcement ring 53 to move towards each other. When the reinforcement ring 53 moves, it pulls the telescopic frame 52 to extend. When the reinforcement ring 53 moves, the reinforcement groove on the surface of the reinforcement ring 53 is engaged with the extension ring 16.
[0046] The preferred embodiments of the present invention disclosed above are only used to help illustrate the present invention. The preferred embodiments do not describe all the details in detail, nor do they limit the invention to the specific embodiments described. Obviously, many modifications and variations can be made according to the content of this specification. These embodiments are selected and specifically described in this specification to better explain the principles and practical applications of the present invention, so that those skilled in the art can well understand and utilize the present invention. The present invention is only limited by the claims and their full scope and equivalents.
Claims
1. A radio frequency connector, comprising a connector (1), wherein an insulator (2) is fixedly connected to the top of the connector (1), a connection groove is provided on the surface of the insulator (2), and a connection harness (3) is fixedly connected to the inner wall of the connection groove, characterized in that: Also includes; A fixing mechanism (10), the fixing mechanism (10) comprising a fixing ring (15) and a transverse plate (11), the fixing ring (15) having an extension groove on its surface, the inner wall of the extension groove being slidably connected to an extension ring (16), the surface of the extension ring (16) being fixedly connected to a spring sheet (17), the surface of the transverse plate (11) being fixedly connected to an elastic plate (12), the surface of the elastic plate (12) being fixedly connected to a contact telescopic frame (13), the surface of the elastic plate (12) being fixedly connected to a right-angle plate (14), the end of the transverse plate (11) away from the elastic plate (12) being fixedly connected to a rising ring (18), the surface of the rising ring (18) being fixedly connected to a limiting elastic rod (19); A sealing mechanism (30), the sealing mechanism (30) comprising a shrink ring (36), the inner wall of the shrink ring (36) being slidably connected to a lower push rod (38), and one end of the lower push rod (38) away from the shrink ring (36) being rotatably connected to a sealing rubber ring (39); A reinforcement mechanism (50), the reinforcement mechanism (50) comprising a telescopic frame (52), an end of the telescopic frame (52) being fixedly connected to a reinforcement ring (53), and a surface of the reinforcement ring (53) being fixedly connected to a passive plate (54); The protective ring of the transmission line pushes the rising ring (18) to slide upward on the inner wall of the limiting groove and squeezes the limiting elastic rod (19). When the rising ring (18) moves, it drives the horizontal plate (11) to move upward. When the horizontal plate (11) moves upward, it squeezes the elastic plate (12). When the elastic plate (12) is subjected to the squeezing force, the middle part is bent. When the elastic plate (12) is bent, it pushes the contact telescopic frame (13) to shrink the contact telescopic frame (13). When the elastic plate (12) is bent, it pushes the right-angle plate (14) to move in a direction close to each other. When the right-angle plate (14) moves, it drives the fixing ring (15) to move in a direction close to each other. When the spring sheet (17) contacts the surface of the connector (1) and the surface of the transmission line, it squeezes the extension ring (16) backward.
2. A radio frequency connector according to claim 1, characterized in that: The surface of the connector (1) is provided with a limiting groove, the limiting grooves are provided with two in number, and the two limiting grooves are symmetrically arranged with the connector (1) as the center, and the number of the connecting wires (3) is provided with a plurality, and the connecting wires (3) are symmetrically arranged on the inner wall of the connecting groove.
3. A radio frequency connector according to claim 2, characterized in that: One end of the transverse plate (11) away from the elastic plate (12) is fixedly connected to the surface of the insulator (2), one end of the contact telescopic frame (13) away from the elastic plate (12) is fixedly connected to the surface of the connector (1), one end of the right-angle plate (14) away from the elastic plate (12) is fixedly connected to the surface of the fixing ring (15), the limiting elastic rod (19) is fixedly connected to the inner wall of the limiting groove, the surface of the rising ring (18) is slidably connected to the inner wall of the limiting groove, and the number of the fixing rings (15) is set to two, and the two fixing rings (15) are symmetrically arranged with the connector (1) as the center.
4. A radio frequency connector according to claim 3, characterized in that: The sealing mechanism (30) comprises a fixed block (31), the bottom of the fixed block (31) is fixedly connected to a slide rod (32), the inner wall of the slide rod (32) is slidably connected to a sliding frame (33), the bottom of the sliding frame (33) is fixedly connected to a passive telescopic plate (34), the surface of the passive telescopic plate (34) is fixedly connected to a force-bearing block (35), the inner wall of the shrink ring (36) is slidably connected to a shrink plate (37), and the surface of the fixed block (31) is fixedly connected to an extrusion plate (40).
5. A radio frequency connector according to claim 4, characterized in that: The surface of the fixed block (31) is fixedly connected to the surface of the insulator (2), the surface of the passive telescopic plate (34) is fixedly connected to the surface of the shrink ring (36), the bottom of the shrink ring (36) contacts the surface of the rising ring (18), the number of the sliding frames (33) is two, the two sliding frames (33) are symmetrically arranged with the insulator (2) as the center, the inner wall of the sealing rubber ring (39) is slidably connected to the surface of the insulator (2), and the surface of the extrusion plate (40) contacts the surface of the force block (35).
6. A radio frequency connector according to claim 5, characterized in that: The reinforcement mechanism (50) comprises a supporting right-angle frame (51), a sliding groove is provided on the surface of the supporting right-angle frame (51), a sliding block (55) is slidably connected to the inner wall of the sliding groove, a rising plate (56) is fixedly connected to the surface of the sliding block (55), an extrusion column (57) is fixedly connected to the bottom of the rising plate (56), and a driven telescopic frame (58) is fixedly connected to the surface of the sliding block (55).
7. The radio frequency connector according to claim 6, characterized in that: One end of the telescopic frame (52) away from the reinforcement ring (53) is fixedly connected to the surface of the supporting right-angle frame (51), the surface of the extrusion column (57) contacts the surface of the passive plate (54), one end of the driven telescopic frame (58) away from the sliding block (55) is fixedly connected to the surface of the shrink ring (36), and one end of the supporting right-angle frame (51) away from the telescopic frame (52) is fixedly connected to the top of the insulator (2). The number of the supporting right-angle frames (51) is four, and the four supporting right-angle frames (51) are symmetrically arranged with the insulator (2) as the center.
Citation Information
Patent Citations
Cable connector of vehicle electrical equipment
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