Connector and electronic equipment

The design of the cover and clamping assembly limits the elastic deformation of the RF connector plug and socket, solves the problem of connector falling off in high-frequency vibration environments, and achieves stable connection and signal transmission.

CN223427876UActive Publication Date: 2025-10-10SUNWAY COMM JIANGSU CO LTD
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Patent Information

Application Number
CN202422576620.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2025-10-10
Estimated Expiration
2034-10-24

AI Technical Summary

Technical Problem

Existing RF connectors are prone to causing the plug and socket to fall off in a high-frequency vibration environment, affecting the stability of signal transmission.

Method used

A cover shell and clamping assembly structure is adopted. The cover shell is provided with a receiving cavity and a clamping assembly. The clamping assembly clamps the elastic arm of the socket to limit its elastic deformation, ensuring that the plug and the socket maintain a stable connection in a high-frequency vibration environment.

Benefits of technology

The connection strength of the connector in a high-frequency vibration environment is improved, the probability of the plug and socket falling off is reduced, and the effective transmission of the signal is ensured.

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Abstract

The embodiment of the utility model relates to the technical field of connectors, and particularly discloses a connector and electronic equipment, a housing is provided with an accommodating cavity, a first port and a second port, the accommodating cavity is respectively communicated with the first port and the second port, and the housing extends outwards from the first port to form a clamping assembly; the connecting assembly comprises a plug and a socket, the socket comprises a plurality of elastic arms arranged at intervals, buckles are arranged on the inner sides of the elastic arms, the plug is annularly provided with clamping grooves, the clamping grooves are used for containing the buckles, one part of the socket is contained in the containing cavity, the other part of the socket extends out of the first port from the containing cavity, and the clamping assembly is used for clamping the elastic arms; when the plug is plugged in the socket, the buckle is accommodated in the clamping groove, and the clamping assembly clamps the elastic arm, so that the elastic arm presses the plug. Through the above mode, the clamping assembly can be used to limit the elastic arm, and the connection interruption of the plug and the socket caused by the elastic deformation of the elastic arm due to the external vibration of the connected plug and the socket can be avoided.
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Description

Technical Field

[0001] The embodiments of the utility model relate to the technical field of connectors, and in particular to a connector and an electronic device. Background Art

[0002] Radio Frequency Coaxial Connectors (RF connectors), hereinafter referred to as RF connectors, are components that electrically connect or separate transmission lines in wireless radio frequency (RF) systems. They mainly act as bridges to connect radio equipment, achieve interconnection between devices or modules, and effectively transmit radio frequency and microwave signals.

[0003] In the process of realizing the present invention, the inventors discovered that: currently, an RF connector includes a plug, a socket, a cable, and a housing, wherein the socket is connected to the cable, and the housing wraps around the connection portion between the socket and the cable to protect the connection portion between the socket and the cable; and the socket is provided with a socket, and the socket includes a plurality of elastic arms arranged adjacent to each other at intervals, the plurality of elastic arms enclosing the socket to form the socket, and the plug is accommodated in the socket; further, a protrusion is provided on the inner side of the elastic arm, and a groove is provided around the side wall of the plug, and the protrusion is accommodated in the groove. When the plug is inserted into the socket, the side wall of the plug abuts against the protrusion, thereby generating a force perpendicular to the insertion direction on the protrusion, driving the elastic arm to undergo elastic deformation until the protrusion is completely accommodated in the groove, at which point the elastic deformation of the elastic arm disappears. When the RF connector works in a high-frequency vibration environment, the high-frequency vibration working environment will exert force on the plug and the socket, causing the elastic arm of the connected socket to produce unexpected elastic deformation, thereby causing the protrusion to fall off from the groove, causing the connection between the plug and the socket to fall off, affecting the signal transmission stability of the connector. Utility Model Content

[0004] The embodiments of the present invention provide a connector and an electronic device, which mainly solve the technical problem of preventing the plug and socket of the connector from falling off in a high-frequency vibration working environment, resulting in interruption of communication using the connector.

[0005] In order to solve the above technical problems, a technical solution adopted by the present invention is: a connector is provided, including: a cover shell, provided with a receiving cavity, a first port and a second port, the receiving cavity is communicated with the first port and the second port respectively, and the cover shell has a clamping assembly extending outward from the first port; a connecting assembly, including a plug and a socket, the socket includes a plurality of elastic arms arranged at intervals, the inner side of the elastic arm has a buckle, the plug ring is provided with a card groove, the card groove is used to accommodate the buckle, a part of the socket is accommodated in the receiving cavity, and the other part of the socket extends from the receiving cavity to the first port, and the clamping assembly is used to clamp the elastic arm; when the plug is plugged into the socket, the buckle is accommodated in the card groove, and the clamping assembly clamps the elastic arm so that the elastic arm presses the plug.

[0006] Optionally, the number of the clamping assemblies is two, and the two clamping assemblies are arranged opposite to each other along the first direction; the socket includes a base, and a plurality of elastic arms are evenly and spaced apart on the base, and any two adjacent elastic arms and the base form a first gap; the clamping assembly includes a first clamping arm and a first clamping platform, one end of the first clamping arm is fixed to the cover shell, and the first clamping platform is arranged at the other end of the first clamping arm, the first clamping arms of the two clamping assemblies clamp the connecting assembly along the first direction, and a first clamping platform of a clamping assembly is clamped in a first gap.

[0007] Optionally, a first guiding inclined surface is provided on a side of the first clamping platform facing away from the receiving cavity.

[0008] Optionally, the clamping assembly includes a second clamping arm and a second clamping platform, one end of the second clamping arm is connected to the other end of the second clamping arm, and the second clamping platform is arranged at the other end of the second clamping arm; along the first direction, the spacing between the first clamping arms of the two clamping assemblies is smaller than the spacing between the second clamping arms of the two clamping assemblies.

[0009] Optionally, a second guiding inclined surface is provided on a side of the second clamping platform facing away from the receiving cavity.

[0010] Optionally, the cover shell extends toward the receiving cavity with a limiting boss; a limiting space is provided on the top of the connecting assembly, and the limiting boss is snapped into the limiting space.

[0011] Optionally, the cover shell includes a first top wall, a first bottom wall, a first side wall and a second side wall, and the first top wall, the first bottom wall, the first side wall and the second side wall together enclose the receiving cavity; the first side wall includes a first conical section, a first straight section, a second conical section and a second straight section; and / or, the second side wall includes a third conical section, a third straight section, a fourth conical section and a fourth straight section.

[0012] Optionally, the first bottom wall extends in the opposite direction of the second direction to form a first guide wall, the first side wall and the second side wall extend in the opposite direction of the second direction to form a first guide side wall and a second guide side wall, the first guide side wall, the second guide side wall and the first guide wall together form a guide groove, the guide groove is connected to the receiving cavity, and the guide groove is used to guide the connecting component to be inserted into the receiving cavity along the second direction, wherein the first direction and the second direction are perpendicular to each other.

[0013] Optionally, a portion of the first guide side wall is bent and extended along a first direction to form a first limiting wall; a portion of the second guide side wall is bent and extended in the opposite direction of the first direction to form a second limiting wall; when the connecting component is accommodated in the accommodating cavity, the connecting component abuts against the first limiting wall and the second limiting wall.

[0014] In order to solve the above technical problem, another technical solution adopted by the present invention is to provide an electronic device including the above connector.

[0015] The beneficial effects of the embodiments of the present utility model are as follows: different from the prior art, the embodiments of the present utility model provide a connector including a cover and a connecting assembly, the cover is sleeved on the body, specifically, the cover is provided with a receiving cavity, a first port and a second port, the receiving cavity is communicated with the first port and the second port respectively, and the cover is provided with a clamping assembly extending outward from the first port; the connecting assembly includes a plug and a socket, the plug can be plugged into the socket, the socket includes a plurality of elastic arms arranged at intervals, the inner side of the elastic arm is provided with a buckle, the plug ring is provided with a card groove, the card groove is used to accommodate the buckle, a part of the socket is accommodated in the receiving cavity, and the other part of the socket extends from the receiving cavity to the first port, and the clamping assembly clamps the elastic arm; when the plug is plugged into the socket, the buckle is accommodated in the card groove, and the clamping assembly clamps the elastic arm so that the elastic arm presses the plug. Through the above structure, the embodiment of the utility model can limit and fix the body of the connector through the receiving cavity and elastic arm provided in the cover, thereby improving the connection strength of the connector in a working environment facing high-frequency vibration, and using the clamping component to clamp and limit the elastic arm, reducing the probability of the plug and socket falling off in a working environment facing high-frequency vibration, thereby ensuring that the plug and socket of the connector can be firmly connected and ensuring effective signal transmission. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments of the present invention. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the drawings without paying any creative work.

[0017] Figure 1 This is an exploded schematic diagram of a connector provided by an embodiment of the present utility model;

[0018] Figure 2 This is a schematic diagram of the assembly of the connector provided by the embodiment of the present utility model;

[0019] Figure 3 This is a structural schematic diagram of a cover provided by an embodiment of the utility model from one perspective;

[0020] Figure 4 yes Figure 3 A partial enlarged view of part A in the middle;

[0021] Figure 5 This is a structural schematic diagram of the cover provided by an embodiment of the present utility model from another perspective;

[0022] Figure 6 It is a structural schematic diagram of the connection assembly provided by an embodiment of the present utility model.

[0023] Figure Number:

[0024] 1000, connector;

[0025] 1. Housing; 11. Receiving cavity; 12. First port; 13. Second port; 14. Clamping assembly; 141. First clamping arm; 142. First clamping platform; 1421. First guide inclined surface; 143. Second clamping arm; 144. Second clamping platform; 1441. Second guide inclined surface; 15. Position limiting boss; 16. First top wall; 17. First bottom wall; 171. First guide wall; 18. First side wall; 181. First tapered section; 182, first straight section; 183, second tapered section; 184, second straight section; 185, first guide sidewall; 1851, first limiting wall; 19, second sidewall; 191, third tapered section; 192, third straight section; 193, fourth tapered section; 194, fourth straight section; 195, second guide sidewall; 1951, second limiting wall; 11a, guide groove; 11b, winding wall;

[0026] 2. Connecting assembly; 2a. Limited space; 21. Plug; 211. Card slot; 22. Socket; 221. Elastic arm; 2211. Buckle; 2212. First gap; 222. Slot; 223. Base; 224. First abutting portion; 225. Second abutting portion; 23. Cable;

[0027] 3. Fixed plate; DETAILED DESCRIPTION

[0028] In order to facilitate the understanding of the present invention, the present invention is described in more detail below in conjunction with the accompanying drawings and specific embodiments. It should be noted that when an element is described as "fixed to" another element, it can be directly on the other element, or there can be one or more centered elements therebetween. When an element is described as "connected to" another element, it can be directly connected to the other element, or there can be one or more centered elements therebetween. The terms "vertical", "horizontal", "left", "right" and similar expressions used in this specification are for illustrative purposes only.

[0029] Unless otherwise defined, all technical and scientific terms used in this specification have the same meanings as those commonly understood by those skilled in the art to which this utility model belongs. The terms used in this specification and in the description of this utility model are only for the purpose of describing specific embodiments and are not intended to limit the utility model. The term "and / or" used in this specification includes any and all combinations of one or more of the relevant listed items.

[0030] See also Figure 1 and Figure 2 The connector 1000 includes a cover 1 and a connecting component 2. The cover 1 is provided with a receiving cavity 11. At least a portion of the connecting component 2 is received in the receiving cavity 11 to protect the portion of the connecting component 2 and reduce damage to the connecting component 2 when it is subjected to external collision and extrusion.

[0031] It can be understood that the shape of the receiving cavity 11 of the cover 1 needs to be compatible with the shape of the connector 1000 received in the receiving cavity 11 to ensure that the cover 1 effectively protects the connector 1000. Furthermore, the material of the cover 1 includes but is not limited to metal materials, high-strength fiber materials, polymer materials, etc. For example, the material used for the cover 1 in this embodiment is iron.

[0032] For the above-mentioned housing 1, see Figure 3 、 Figure 4 and Figure 5The housing 1 is provided with a first port 12 and a second port 13. The receiving cavity 11 is communicated with the first port 12 and the second port 13 respectively. The housing 1 has a clamping assembly 14 extending outward from the first port 12. The number of the clamping assembly 14 is greater than or equal to one, so that the clamping assembly 14 can clamp the connecting assembly 2.

[0033] In some embodiments, when the number of clamping components 14 is one, a clamping component 14 extends outward from the first port 12 of the cover shell 1 and the clamping component 14 is bent toward the receiving cavity, so that when the connecting component 2 is inserted into the receiving cavity, the clamping component 14 and the first port 12 of the receiving cavity jointly clamp the connecting component.

[0034] In other embodiments, when there are two clamping assemblies 14, the two clamping assemblies 14 are arranged opposite each other along the first direction X. The oppositely arranged clamping assemblies 14 are used to clamp the connector 1000 to effectively limit the connection assembly 2 and reduce the shaking between the connector 1000 and the housing 1. Preferably, in this embodiment, there are two clamping assemblies 14.

[0035] It can be understood that the cover 1 is a thin-walled structure to ensure that the overall structure of the connecting assembly 2 provided with the cover 1 is compact, thereby reducing the space occupancy required by the connector 1000 with the cover 1.

[0036] For the connection component 2 above, see Figure 6The connecting assembly 2 includes a plug 21 and a socket 22. The plug 21 can be plugged into the socket 22. The socket 22 includes a plurality of elastic arms 221 arranged at intervals. The elastic arms 221 can produce elastic deformation, thereby ensuring that when the elastic arms 221 are subjected to a force, the parts in contact with the elastic arms 221 always maintain a close contact state; further, a buckle 2211 is provided on the inner side of the elastic arm 221, and a card groove 211 is provided around the plug 21. The card groove 211 is used to accommodate the buckle 2211. Specifically, a plurality of elastic arms 221 enclose a slot 222, and the slot 222 is used to receive The slot 222, formed by the plurality of elastic arms 221 in their natural state, has a diameter smaller than that of the plug 21. This allows the plug 21 to abut against the latch 2211 when attempting to insert into the receptacle 22, causing the plug 21 to experience resistance from the elastic deformation of the elastic arms 221. When the plug 21 and receptacle 22 are connected, the latch 2211 is received within the latch slot 211, and the elastic arms 221 return to their natural state or the resistance exerted by the elastic arms 221 on the plug 21 is reduced, thereby ensuring a tight connection between the plug 21 and the receptacle 22. A portion of the receptacle 22 is received within the receiving cavity 11, while another portion of the receptacle 22 extends out of the first port 12 within the receiving cavity 11. A clamping assembly 14 clamps one of the elastic arms 221. Specifically, when the connector 1000 is in a high-frequency vibration working environment, the plug 21 and the socket 22 are accommodated in the accommodating cavity 11 along the second direction Y in a connected state, that is, the plug 21 is accommodated in the slot 222 and the elastic arm 221 is in a natural state and accommodated in the accommodating cavity 11 along the second direction Y. The two clamping components 14 jointly clamp one or more elastic arms 221 of the socket 22 to form a limit on the elastic arm 221, limiting the elastic deformation of the elastic arm 221, thereby ensuring that even if the plug 21 accommodated in the slot 222 is subjected to an external force in a vibration environment and a force is applied to the elastic arm 221, the elastic arm 221 will not be elastically deformed, thereby avoiding the interruption of the connection between the plug 21 and the socket 22 due to vibration, affecting the signal of the device using the connector 1000 for communication.

[0037] In some embodiments, the connection component 2 further includes a cable 23 , one end of which is fixedly connected to the socket 22 , and the other end of the cable 23 extends from the second port 13 in the receiving cavity 11 , and the other end of the cable 23 is used to connect to an external device.

[0038] In some embodiments, see Figure 6The socket 22 includes a base 223 and multiple elastic arms 221 evenly and spaced apart on the base 223. Any two adjacent elastic arms 221 and the base 223 enclose a first gap 2212. The clamping assembly 14 includes a first clamping arm 141 and a first clamping platform 142. One end of the first clamping arm 141 is fixed to the cover 1, and the first clamping platform 142 is arranged at the other end of the first clamping arm 141. The first clamping arms 141 of the two clamping assemblies 14 clamp the multiple elastic arms 221 along the first direction X. A first clamping platform 142 of a clamping assembly 14 is clamped in a first gap 2212 to limit the elastic arm 221 in the second direction Y, thereby ensuring that the first clamping platform 142 limits the second direction Y of the connecting assembly 2.

[0039] It can be understood that the existence of the first gap 2212 not only ensures that the multiple elastic arms 221 can be elastically deformed smoothly, but also provides a space for receiving the first clamping platform 142 to ensure the limiting effect of the connecting component 2.

[0040] It should be noted that in order to ensure the clamping effect of the first clamping arm 141 on the elastic arm 221, the first clamping arm 141 and the elastic arm 221 clamped by it are interference fit; and since the socket 22 is circular, the distance between the two first clamping arms 141 is the diameter of the socket 22, and the contact position between the two first clamping arms 141 and the elastic arm 221 of the socket 22 is the closest position between the first clamping arm 141 and the elastic arm 221, and as it moves away from the contact position and toward the two ends of the first elastic arm 221, the distance between the first clamping arm 141 and the elastic arm 221 gradually increases, so the length of the first clamping platform 142 can be greater than The distance between the end of the first clamping arm 141 and the elastic arm 221. At this time, it is necessary to ensure that when the above-mentioned connecting component 2 is inserted into the receiving cavity 11 along the second direction Y, the first gap 2212 and the first card platform 142 are in corresponding positions. It is further necessary to pre-set the number and position layout of the elastic arms 221. It is sufficient to ensure that the first card platform 142 can accommodate the first gap 2212. Examples will not be given one by one here; or the first card platform 142 can be less than or equal to the distance between the end of the first clamping arm 141 and the elastic arm 221. At this time, there is no need to consider the corresponding position relationship between the first gap 2212 and the first card platform 142.

[0041] In some embodiments, see Figure 4 A first inclined guide surface 1421 is provided on the side of the first clamping platform 142 facing away from the receiving cavity 11. The first inclined guide surface 1421 is used to guide the connecting assembly 2 to be inserted into the receiving cavity 11 along the second direction Y. It can be understood that since the two clamping assemblies 14 are arranged relative to each other along the first direction X, the two first clamping platforms 142 are also arranged relative to each other, and the first inclined guide surfaces 1421 of the two first clamping platforms 142 are also arranged relative to each other.

[0042] In some embodiments, see Figure 4 The clamping assembly 14 includes a second clamping arm 143 and a second clamping platform 144, one end of the second clamping arm 143 is connected to the other end of the second clamping arm 143, and the second clamping platform 144 is arranged at the other end of the second clamping arm 143; along the first direction X, the distance between the first clamping arms 141 of the two clamping assemblies 14 is smaller than the distance between the second clamping arms 143 of the two clamping assemblies 14, and the distance between the two second clamping platforms 144 is smaller than the diameter of the socket 22, so that when the connecting assembly 2 is inserted into the receiving cavity 11 along the second direction Y, the connecting assembly 2 is pre-installed between the two second clamping arms 143, and the two second clamping platforms 144 are aligned with the connecting assembly 2 A limit is formed along the second direction Y, so that the installation angle and installation position of the connecting component 2 can be easily adjusted when it is pre-installed between the two second clamping arms 143, and because the distance between the two second clamping arms 143 is greater than the distance between the two first clamping arms 141, the installation difficulty of the connecting component 2 pre-installed here is relatively small, and the user can check the connection status of the connecting component 2 during this pre-installation process, thereby reducing the need to disassemble the interference-fit connecting component 2 and the two first clamping arms 141 later due to poor connection between the plug 21 and the socket 22 of the connecting component 2, thereby reducing the difficulty of disassembly and assembly and reducing the rework rate.

[0043] In some embodiments, see Figure 4 A second guide inclined surface 1441 is provided on the side of the second clamping platform 144 facing away from the receiving cavity 11. The second guide inclined surface 1441 is used to guide the insertion of the connecting component 2. Due to the existence of the second guide inclined surface 1441, the connecting component 2 needs to be inserted into the receiving cavity 11. Compared with the second clamping platform 144 without a guide inclined surface, the force required to be applied is smaller and the operation is more convenient.

[0044] In some embodiments, please refer to Figure 3 The housing 1 extends a limiting protrusion 15 toward the receiving cavity 11. A limiting space 2a is provided at the top of the connecting assembly 2, and the limiting protrusion 15 engages within the limiting space 2a. When the limiting protrusion 15 engages within the limiting space 2a, it limits the connecting assembly 2 in the second direction Y within the receiving cavity 11, preventing the connecting assembly 2 from unintentionally moving in the second direction Y while housed in the receiving cavity 11, which could cause collisions between the connecting assembly 2 and other parts of the housing 1.

[0045] It should be noted that the limiting boss 15 is located in the middle of the cover shell 1. In order to facilitate processing and simplify processing steps, in some embodiments, stamping is used to process the limiting boss 15. The stamping method is simple to process and the steps are simple, which is conducive to mass industrial production.

[0046] In some embodiments, see Figure 3and Figure 5 The housing 1 includes a first top wall 16, a first bottom wall 17, a first side wall 18, and a second side wall 19. The first top wall 16, the first bottom wall 17, the first side wall 18, and the second side wall 19 collectively enclose a receiving cavity 11. A limiting boss 15 is provided on the first top wall 16. The first side wall 18 includes a first tapered section 181, a first straight section 182, a second tapered section 183, and a second straight section 184. Furthermore, the second side wall 19 includes a third tapered section 191, a third straight section 192, a fourth tapered section 193, and a fourth straight section 194. Furthermore, along the second direction Y, the cross-sectional area of ​​the receiving cavity 11 corresponding to the first tapered section 181, the first straight section 182, the second tapered section 183, and the second straight section 184 gradually decreases. The cross-sectional area is defined as the cross-sectional area of ​​the receiving cavity 11 obtained by cutting the receiving cavity 11 along a plane parallel to the first direction X and perpendicular to the second direction Y. By cooperating with the accommodating cavity 11 with a gradually decreasing cross-section through the above-mentioned first conical section and the second conical section, a part of the connecting component 2 accommodated in the accommodating cavity 11 is limited, thereby improving the integration of the connecting component 2 and the cover 1 and reducing the required space occupancy rate of the connector 1000 of this embodiment.

[0047] It can be understood that when the second side wall 19 includes the third conical section 191, the third straight section 192, the fourth conical section 193 and the fourth straight section 194 and the first side wall 18 includes the first conical section 181, the first straight section 182, the second conical section 183 and the second straight section 184, the effect of limiting the part of the connecting component 2 accommodated in the accommodating cavity 11 is better, and the integration of the connecting component 2 and the cover shell 1 is further improved.

[0048] Furthermore, the first bottom wall 17 extends in the opposite direction of the second direction Y to form a first guide wall 171, and the first side wall 18 and the second side wall 19 extend in the opposite direction of the second direction Y to form a first guide side wall 185 and a second guide side wall 195 respectively. The first guide side wall 185, the second guide side wall 195 and the first guide wall 171 together enclose a guide groove 11a, which is connected to the receiving cavity 11. The guide groove 11a is used to guide the connecting component 2 to be inserted into the receiving cavity 11 along the second direction Y. Specifically, the guide groove 11a is used to guide the connecting component 2 to be inserted into the receiving cavity 11 through the first port 12, thereby reducing the probability of accidental collision of the connecting component 2 during the insertion into the receiving cavity 11.

[0049] The first direction X and the second direction Y are perpendicular to each other.

[0050] In some embodiments, see Figure 3 and Figure 5The first guide side wall 185 is partially bent and extended along the first direction X to form a first limiting wall 1851; the second guide side wall 195 is partially bent and extended along the reverse direction of the first direction X to form a second limiting wall 1951; when the connecting component 2 is received in the receiving cavity 11, the connecting component 2 abuts against the first limiting wall 1851 and the second limiting wall 1951. Specifically, the bottom of the socket 22 is provided with a first abutting portion 224 and a second abutting portion 225. When the socket 22 is received in the receiving cavity 11, the first limiting wall 1851 and the second limiting wall 1951 are abutted. During the insertion of the plug 21 into the cavity 11, the first guide side wall 185 abuts against the side wall of the first abutting portion 224, and the second guide side wall 195 abuts against the side wall of the second abutting portion 225, thereby forming a first direction X limit for the socket 22; the first limiting wall 1851 abuts against the top wall of the first abutting portion 224, and the second limiting wall 1951 abuts against the top wall of the second abutting portion 225, thereby forming a third direction Z limit for the socket 22, and the third direction Z refers to the direction in which the plug 21 is inserted into the socket 22.

[0051] It should be noted that the first direction X, the second direction Y and the third direction Z are perpendicular to each other.

[0052] In some embodiments, see Figure 5 The cover 1 has a winding wall 11b extending from the first port 12, and the winding wall 11b wraps a portion of the cable 23 extending from the first port 12, thereby preventing the cable 23 from bending and curling due to external force at the connection between the cable 23 and the socket 22, resulting in wear and tear of the cable 23 at this location, affecting the signal transmission stability of the connector 1000.

[0053] In some embodiments, the connector 1000 further includes a fixing plate 3, which is fixedly connected to the housing 1 so that the housing 1 can be fixedly connected to an external device, including but not limited to welding, screwing, and clamping, thereby improving the housing 1's ability to resist external vibrations.

[0054] In an embodiment of the present utility model, the connector 1000 includes a housing 1, a connecting assembly 2 and a fixing plate 3. The housing 1 is sleeved on the connecting assembly 2, and the fixing plate 3 is fixed to the housing 1. Specifically, the housing 1 is provided with a receiving cavity 11, a first port 12 and a second port 13. The receiving cavity 11 is connected to the first port 12 and the second port 13 respectively. The housing 1 extends outward from the first port 12 and has two clamping assemblies 14. The two clamping assemblies 14 are arranged relative to each other along the first direction X; the connecting assembly 2 includes a plug 21 and a socket 22. The socket 22 includes a spacer. Multiple elastic arms 221 are arranged at intervals, and a buckle 2211 is provided on the inner side of the elastic arm 221. A groove 211 is provided around the plug 21, and the groove 211 is used to accommodate the buckle 2211. A part of the socket 22 is accommodated in the accommodating cavity 11, and the other part of the socket 22 extends from the accommodating cavity 11 to the first port 12. The clamping assembly 14 is used to clamp the elastic arm 221. When the plug 21 is plugged into the socket 22, the buckle 2211 is accommodated in the groove 211, and the clamping assembly 14 clamps the elastic arm 221 so that the elastic arm 221 presses the plug 21. Through the above structure, the embodiment of the utility model can limit and fix the body of the connector 1000 through the accommodating cavity 11 and the elastic arm 221 set in the cover shell 1, thereby improving the connection strength of the connector 1000 in a working environment facing high-frequency vibration, and using two clamping components 14 to clamp and limit the elastic arm 221, reducing the probability of the plug 21 and the socket 22 falling off in a high-frequency vibration working environment, thereby ensuring that the plug 21 and the socket 22 of the connector 1000 can be firmly connected and ensuring effective signal transmission.

[0055] The present invention further provides an embodiment of an electronic device, which includes the connector 1000 described above. For the structure and function of the connector 1000, please refer to the above embodiment and no further details will be given.

[0056] It should be noted that the preferred embodiments of the present invention are given in the specification and drawings of the present invention. However, the present invention can be implemented in many different forms and is not limited to the embodiments described in this specification. These embodiments do not serve as additional limitations on the content of the present invention. The purpose of providing these embodiments is to make the understanding of the disclosure of the present invention more thorough and comprehensive. In addition, the above-mentioned technical features continue to be combined with each other to form various embodiments not listed above, which are all considered to be within the scope of the description of the present invention; further, it is obvious to those skilled in the art that improvements or changes can be made based on the above description, and all such improvements and changes should fall within the scope of protection of the claims attached to the present invention.

Claims

1. A connector, characterized in that: include: The housing is provided with a receiving cavity, a first port and a second port, the receiving cavity is communicated with the first port and the second port respectively, and the housing is provided with a clamping assembly extending outward from the first port; A connection assembly comprising a plug and a socket, wherein the plug is pluggable into the socket, the socket comprising a plurality of elastic arms spaced apart, the inner sides of the elastic arms having buckles, the plug ring being provided with a slot for receiving the buckle, a portion of the socket being received in the receiving cavity, another portion of the socket extending from the receiving cavity to the first port, and the clamping assembly being used to clamp the elastic arms; When the plug is plugged into the socket, the buckle is received in the slot, and the clamping assembly clamps the elastic arm, so that the elastic arm presses the plug.

2. The connector according to claim 1, wherein: There are two clamping assemblies, and the two clamping assemblies are arranged opposite to each other along the first direction; The socket includes a base, a plurality of elastic arms are evenly and spaced apart on the base, and any two adjacent elastic arms and the base enclose a first gap; The clamping assembly includes a first clamping arm and a first clamping platform, one end of the first clamping arm is fixed to the cover shell, and the first clamping platform is arranged at the other end of the first clamping arm. The first clamping arms of the two clamping assemblies clamp the multiple elastic arms along the first direction, and the first clamping platform of a clamping assembly is clamped in a first gap.

3. The connector according to claim 2, wherein: A first guiding inclined surface is provided on a side of the first clamping platform facing away from the receiving cavity.

4. The connector according to claim 2, wherein: The clamping assembly includes a second clamping arm and a second clamping platform, one end of the second clamping arm is connected to the other end of the second clamping arm, and the second clamping platform is arranged at the other end of the second clamping arm; Along the first direction, a distance between the first clamping arms of the two clamping assemblies is smaller than a distance between the second clamping arms of the two clamping assemblies.

5. The connector according to claim 4, wherein: A second guiding inclined surface is provided on a side of the second clamping platform facing away from the receiving cavity.

6. The connector according to claim 1, wherein: The cover shell extends a limiting boss toward the receiving cavity; A limiting space is provided on the top of the connecting assembly, and the limiting boss is snapped into the limiting space.

7. The connector according to claim 2, wherein: The housing comprises a first top wall, a first bottom wall, a first side wall and a second side wall, wherein the first top wall, the first bottom wall, the first side wall and the second side wall jointly enclose the receiving cavity; The first side wall includes a first tapered section, a first straight section, a second tapered section, and a second straight section; and / or the second side wall includes a third tapered section, a third straight section, a fourth tapered section, and a fourth straight section.

8. The connector according to claim 7, wherein: The first bottom wall extends in the opposite direction of the second direction to form a first guide wall, the first side wall and the second side wall extend in the opposite direction of the second direction to form a first guide side wall and a second guide side wall, the first guide side wall, the second guide side wall and the first guide wall together form a guide groove, the guide groove is connected to the receiving cavity, and the guide groove is used to guide the connecting component to be inserted into the receiving cavity along the second direction, wherein the first direction and the second direction are perpendicular to each other.

9. The connector according to claim 8, wherein: A portion of the first guide side wall is bent and extended along a first direction to form a first limiting wall; A portion of the second guide side wall is bent and extended in the opposite direction of the first direction to form a second limiting wall; When the connecting component is received in the receiving cavity, the connecting component abuts against the first limiting wall and the second limiting wall.

10. An electronic device, characterized in that: Comprising the connector according to any one of claims 1 to 9.