Socket module and converter

By introducing lifting components and anti-disengagement parts into the socket module, the problem of plug looseness is solved, and the stable connection between the socket and the plug is achieved, which improves safety and reliability.

CN222927892UActive Publication Date: 2025-05-30GONEO GRP CO LTD
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Patent Information

Application Number
CN202421946481.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-12
Publication Date
2025-05-30
Estimated Expiration
2034-08-12

AI Technical Summary

Technical Problem

The existing socket design can easily cause the plug to loosen when the pin is not inserted in place or is impacted or pulled, affecting the normal power withdrawal of electrical appliances and posing a potential risk of electric shock.

Method used

A socket module is designed, including a housing, a plug sleeve, a lifting assembly, a support assembly, a first anti-removal member and a second anti-removal member. The lifting assembly and anti-disengagement parts ensure stable clamping of the pins within the socket through specific structures and combinations.

Benefits of technology

Effectively prevent the plug pin from loosening from the socket module, ensure the stable connection between the socket module and the plug, and improve the safety and reliability of the appliances.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a socket module and a converter, and belongs to the technical field of electrical equipment. The socket module comprises a shell, and a plug bush, a lifting assembly, a supporting assembly, a first anti-falling piece and a second anti-falling piece which are accommodated in the shell. The lifting assembly comprises a bearing piece, and the first anti-disengaging piece and the second anti-disengaging piece are both carried on the bearing piece. The supporting assembly is detachably connected with the shell and comprises a first supporting piece and a third supporting piece which are connected in sequence, and the first supporting piece and the third supporting piece are matched with the inner wall of the shell so as to limit the first end of the first anti-disengaging piece and the first end of the second anti-disengaging piece. The first side face of the shell is provided with a bolt hole, and a bolt insertion path is formed in the shell. When the lifting assembly ascends relative to the shell, the second end of the first anti-disengagement piece and the second end of the second anti-disengagement piece ascend along with the bearing piece, so that the distance between the second end of the first anti-disengagement piece and the second end of the second anti-disengagement piece is shortened, and the bolt and the socket can be prevented from being loosened.
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Description

Technical Field

[0001] The present application relates to the technical field of electrical equipment, and particularly relates to a socket module and a converter. Background Art

[0002] A socket, also known as a converter, is a common electrical device. The plug pins of an electrical appliance's power-taking plug are inserted into corresponding jacks on the socket to obtain power. Generally, the plug pins of the plug are clamped by the socket sleeves inside the socket, so that the plug can be fixed on the socket. However, when the plug pins are not inserted in place, or the plug is collided, pulled, or dragged, it is easy for the plug to become loose from the socket. This not only affects the normal power-taking process of the electrical appliance but also easily causes safety hazards such as electric shock. Therefore, there is an urgent need for a socket that can prevent the plug from becoming loose. Utility Model Content

[0003] In view of this, the embodiments of the present application provide a socket module and a converter that can prevent the plug pins from becoming loose from the socket module.

[0004] On the one hand, the embodiments of the present application provide a socket module, which includes a housing, and socket sleeves, a lifting assembly, a supporting assembly, a first anti-loosening member, and a second anti-loosening member accommodated in the housing;

[0005] The lifting assembly includes a carrier, and both the first anti-loosening member and the second anti-loosening member are mounted on the carrier;

[0006] The supporting assembly is detachably connected to the housing. The supporting assembly includes a first supporting member and a third supporting member connected in sequence. The first supporting member and the third supporting member respectively cooperate with the inner wall of the housing to limit the first ends of the first anti-loosening member and the second anti-loosening member;

[0007] A plug pin hole is provided on the first side surface of the housing, and a plug pin insertion path is formed in the housing that sequentially passes through the plug pin hole, between the second ends of the first anti-loosening member and the second anti-loosening member, and the socket sleeves;

[0008] Wherein, when the lifting assembly rises relative to the housing, the second ends of the first anti-loosening member and the second anti-loosening member rise with the carrier, so that the distance between the second ends of the first anti-loosening member and the second anti-loosening member is reduced.

[0009] Optionally, the supporting assembly further includes a second supporting member. The second supporting member includes a main body portion, a first abutting portion, and a second abutting portion. The main body portion is U-shaped, and the first abutting portion and the second abutting portion are respectively located at both ends of the U-shaped arms of the main body portion;

[0010] When the lifting assembly descends to the limit, both ends of the carrier are respectively abutted against the first abutting portion and the second abutting portion.

[0011] Optionally, the first support member includes a first support portion and a second support portion that are arranged side by side and spaced apart, and the first support portion and the second support portion are respectively connected to both sides of the first abutting portion;

[0012] The third support member includes a third support portion and a fourth support portion that are arranged side by side and spaced apart, and the third support portion and the fourth support portion are respectively connected to both sides of the second abutting portion.

[0013] Optionally, the socket module further includes a limiting member, one end of the limiting member is connected to the housing, and the other end extends toward the second abutting portion and abuts against the second abutting portion.

[0014] Optionally, the lifting assembly further includes a pressing member, the carrier includes a carrier body portion and a lapping portion, and the lapping portion is respectively connected to the first end of the carrier body portion and the pressing member;

[0015] Wherein, when the pressing member descends to the limit, the lapping portion and the bottom of the second end of the carrier body portion respectively abut against the first abutting portion and the second abutting portion.

[0016] Optionally, the carrier body portion is provided with a first through hole corresponding to the pin hole, a first side hole is provided on the side wall of the first end of the carrier body portion, and a second side hole is provided on the side wall of the second end of the carrier body portion;

[0017] The first anti - detachment member passes through the first side hole and the second end of the first anti - detachment member is located in the first through hole, and the second anti - detachment member passes through the second side hole and the second end of the second anti - detachment member is located in the first through hole.

[0018] Optionally, the first inner wall of the first side hole and the second inner wall of the second side hole extend obliquely toward each other in a direction away from the pin hole, and both the first inner wall and the second inner wall are the inner walls closer to the side of the pin hole.

[0019] Optionally, the first anti - detachment member includes a first plate portion and a second plate portion connected from the first end to the second end, the width of the second plate portion is smaller than the width of the first plate portion, and the first plate portion is located outside the first side hole;

[0020] The second anti - detachment member includes a third plate portion and a fourth plate portion connected from the first end to the second end, the width of the fourth plate portion is smaller than the width of the third plate portion, and the third plate portion is located outside the second side hole.

[0021] Optionally, the second plate portion is provided with a first protrusion extending in the width direction of the second plate portion, and the fourth plate portion is provided with a second protrusion extending in the width direction of the fourth plate portion;

[0022] The inner wall of the carrier is provided with a first groove and a second groove;

[0023] The first protrusion is opposite to the first groove, and the second protrusion is opposite to the second groove.

[0024] Optionally, the housing includes a first housing member and a second housing member. The first housing member is provided with the insertion pin hole, and the second housing member is provided with a mounting hole, and the mounting hole is opposite to the insertion pin hole;

[0025] The socket sleeve includes a connected socket sleeve body and a connecting portion, and the connecting portion passes through the mounting hole and extends out of the second housing member;

[0026] The U-shaped bottom of the main body portion is positioned on the second housing member by the socket sleeve body.

[0027] Optionally, a second through hole is further provided on the first side surface of the first housing member;

[0028] The pressing member includes a rebounding portion and an operating portion, and the rebounding portion is connected between the carrier and the operating portion;

[0029] The operating portion extends out from the second through hole;

[0030] The rebounding portion has an elastic member, wherein when the operating portion is pressed, the elastic member contracts, so that the lifting assembly descends.

[0031] On the other hand, an embodiment of the present application further provides a converter, and the converter includes the socket module described in any one of the above.

[0032] In the housing of the socket module provided by the embodiment of the present application, a socket sleeve, a lifting assembly, a supporting assembly, a first anti-disengagement member and a second anti-disengagement member are accommodated, and an insertion pin insertion path passing between the first anti-disengagement member and the second anti-disengagement member is formed. When the lifting assembly rises relative to the housing, the second ends of the two anti-disengagement members rise, and the first ends of the two anti-disengagement members are limited between the socket upper cover and the supporting assembly. Thereby, the inclination degrees of the first anti-disengagement member and the second anti-disengagement member are reduced, the distance between the second ends of the two anti-disengagement members is reduced, and further the insertion pin can be clamped more stably, so that the insertion pin of the plug can be prevented from loosening from the socket module, ensuring a stable connection between the socket module and the plug. At the same time, since the supporting assembly is detachably connected to the housing, a supporting assembly that can be flexibly assembled can be added to the housing, so that the socket module has the function of preventing the insertion pin from loosening without changing the structure of the housing itself, reducing the modification cost of the socket module. Brief Description of the Drawings

[0033] To more clearly illustrate the technical solutions in the embodiments of the present application, 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 application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0034] Figure 1 It is a schematic structural diagram and an exploded view of a socket module provided by an embodiment of the present application;

[0035] Figure 2 It is a schematic structural diagram and an exploded view of some components in a socket module provided by an embodiment of the present application;

[0036] Figure 3 It is an exploded view of a first anti - detachment member, a second anti - detachment member and a lifting assembly in a socket module provided by an embodiment of the present application;

[0037] Figure 4 It is a schematic structural diagram and an exploded view of some components in a socket module provided by an embodiment of the present application;

[0038] Figure 5 It is a schematic diagram of a first anti - detachment member, a second anti - detachment member and a sectional view of a lifting assembly in a socket module provided by an embodiment of the present application;

[0039] Figure 6 It is a sectional schematic diagram of a socket module when no plug is inserted provided by an embodiment of the present application;

[0040] Figure 7 It is a sectional schematic diagram of a socket module when a plug is just inserted provided by an embodiment of the present application;

[0041] Figure 8 It is a sectional schematic diagram of a socket module when the plug is fully inserted provided by an embodiment of the present application;

[0042] Figure 9 It is a sectional schematic diagram of a socket module when the plug is pulled out while the lifting assembly is descending provided by an embodiment of the present application.

[0043] Reference Numerals:

[0044] 100, housing; 110, plug hole; 120, first housing part; 130, second housing part; 140, first baffle; 150, second baffle; 121, first side; 122, second through - hole; 131, mounting hole;

[0045] 200. Socket; 210. Socket body; 220. Connection part; 211. First clamping arm; 212. Second clamping arm;

[0046] 300. Lifting component; 310. Carrier; 320. Pressing part; 311. Carrier body part; 312. Lapping part; 313. First through hole; 314. First side hole; 315. Second side hole; 316. First inner wall; 317. Second inner wall; 318. First groove; 321. Rebound part; 322. Operating part; 323. Elastic part; 324. Accommodation cavity; 325. Positioning part; 326. Third convex part;

[0047] 400. Support component; 410. First support; 420. Second support; 430. Third support; 411. First support part; 412. Second support part; 421. Main body part; 422. First abutting part; 423. Second abutting part; 431. Third support part; 432. Fourth support part;

[0048] 500. First anti - detachment part; 510. First plate part; 520. Second plate part; 521. First convex part;

[0049] 600. Second anti - detachment part; 610. Third plate part; 620. Fourth plate part; 621. Second convex part;

[0050] 700. Limiting part;

[0051] 800. Plug.

[0052] Through the above - mentioned drawings, specific embodiments of the present application have been shown, and there will be more detailed descriptions hereinafter. These drawings and written descriptions are not intended to limit the scope of the concept of the present application in any way, but to illustrate the concept of the present application to those skilled in the art by referring to specific embodiments. Detailed implementation manners

[0053] To make the purpose, technical solutions and advantages of the present disclosure clearer, the following will further describe the embodiments of the present disclosure in detail in conjunction with the drawings.

[0054] The terms used in the embodiments section of the present disclosure are only for explaining the embodiments of the present disclosure and are not intended to limit the present disclosure. Unless otherwise defined, the technical terms or scientific terms used herein shall have the ordinary meanings understood by those of ordinary skill in the art to which the present disclosure pertains. The terms "first", "second", "third" and similar words used in the specification and claims of the present disclosure do not denote any order, quantity or importance, but are only used to distinguish different components. Similarly, words such as "a" or "an" do not denote a quantity limitation, but mean that there is at least one. Words such as "comprising" or "including" mean that the elements or objects appearing before "comprising" or "including" cover the elements or objects listed after "comprising" or "including" and their equivalents, and do not exclude other elements or objects. The terms "connected" or "coupled" do not limit to physical or mechanical connections, but may include electrical connections, whether direct or indirect. The terms "upper", "lower", "left", "right" etc. are only used to indicate relative positional relationships, and when the absolute position of the object being described changes, the relative positional relationships may also change accordingly.

[0055] Combined Figure 1 and Figure 6 As shown, an embodiment of the present application provides a socket module. The socket module includes a housing 100, and a socket insert 200, a lifting assembly 300, a support assembly 400, a first anti-disengagement member 500 and a second anti-disengagement member 600 accommodated in the housing 100. It should be noted that the socket module provided by the embodiment of the present application can be applied to various jack types.

[0056] The lifting assembly 300 includes a carrier 310, and both the first anti-disengagement member 500 and the second anti-disengagement member 600 are mounted on the carrier 310. The support assembly 400 is detachably connected to the housing 100. The support assembly 400 includes a first support member 410 and a third support member 430 connected in sequence. The first support member 410 and the third support member 430 respectively cooperate with the inner wall of the housing 100 to limit the first ends of the first anti-disengagement member 500 and the second anti-disengagement member 600. With such an arrangement, the carrier 310, the housing 100, the first support member 410 and the third support member 430 can limit the first anti-disengagement member 500 and the second anti-disengagement member 600 to move within a certain range.

[0057] A pin hole 110 is provided on the first side surface 121 of the housing 100. A pin insertion path is formed in the housing 100 that sequentially passes between the second end of the first anti-disengagement member 500 and the second end of the second anti-disengagement member 600 and the insertion path of the pin of the socket insert. Thus, the pin 800 can be inserted into the housing 100 through the pin insertion path and contact the socket insert 200.

[0058] When the lifting component 300 rises relative to the housing 100, the second ends of the first anti-disengagement member 500 and the second anti-disengagement member 600 rise with the carrier member 310, so that the distance between the second end of the first anti-disengagement member 500 and the second end of the second anti-disengagement member 600 is reduced.

[0059] It should be noted that the socket 200 in the embodiment of the present application can be any one of an L-pole socket, an N-pole socket, and an E-pole socket. For example, the socket in the embodiment of the present application is the E-pole socket shown in the drawings. It should be understood that since the E-pole socket is generally located in the middle position, the first anti-disengagement member 500 and the second anti-disengagement member 600 are respectively abutted against both sides of the E-pole socket, which can further improve the anti-loosening effect on this type of plug.

[0060] As can be seen from the above, the socket module of the embodiment of the present application forms an insertion path for the plug pin passing between the first anti-disengagement member 500 and the second anti-disengagement member 600. When the lifting component 300 rises relative to the housing 100, the second ends of the first anti-disengagement member 500 and the second anti-disengagement member 600 rise, and the first ends of the first anti-disengagement member 500 and the second anti-disengagement member 600 are limited between the socket upper cover and the support component 400. This reduces the inclination of the first anti-disengagement member 500 and the second anti-disengagement member 600, reduces the distance between the second end of the first anti-disengagement member 500 and the second end of the second anti-disengagement member 600, and further can clamp the plug pin 800 more stably, thereby preventing the plug pin 800 of the plug from loosening from the socket module and ensuring a stable connection between the socket module and the plug. At the same time, since the support component 400 and the housing 100 are detachably connected, a support component 400 that can be flexibly assembled can be added to the housing 100, so that the socket module has the function of preventing the plug pin 800 from loosening without changing the structure of the housing 100 itself, reducing the modification cost of the socket module.

[0061] The following combines the attached Figures 1 to 9 to more specifically and detailedly illustrate the details and functions of the socket module provided by the embodiment of the present application.

[0062] Such as Figure 2As shown, in some embodiments, the support assembly 400 further includes a second support member 420. The second support member 420 includes a main body portion 421, a first abutting portion 422, and a second abutting portion 423. The main body portion 421 is U-shaped, and the first abutting portion 422 and the second abutting portion 423 are respectively located at two ends of the U-shaped arms of the main body portion 421. When the lifting assembly 300 descends to the limit, two ends of the carrier 310 respectively abut against the first abutting portion 422 and the second abutting portion 423. It should be noted that the U-shaped main body portion 421 can more stably support the carrier 310. The first abutting portion 422 and the second abutting portion 423 can limit the lowest position of the descending carrier 310 to prevent the lifting assembly 300 from descending excessively.

[0063] As Figure 2 shown, in some embodiments, the first support member 410 includes a first support portion 411 and a second support portion 412 that are arranged side by side and spaced apart. The first support portion 411 and the second support portion 412 are respectively connected to two sides of the first abutting portion 422. The third support member 430 includes a third support portion 431 and a fourth support portion 432 that are arranged side by side and spaced apart. The third support portion 431 and the fourth support portion 432 are respectively connected to two sides of the second abutting portion 423. Since there is a gap between the first support portion 411 and the second support portion 412, the first support member 410 can be prevented from interfering with the movement of the first anti-disengagement member 500. At the same time, since there is a gap between the third support portion 431 and the fourth support portion 432, the third support member 430 can be prevented from interfering with the movement of the second anti-disengagement member 600.

[0064] As Figure 2 shown, in some embodiments, the socket module further includes a limiting member 700. One end of the limiting member 700 is connected to the housing 100. For example, one end of the limiting member 700 can be connected to the wall surface of the housing 100 opposite to the plug hole 110, and the other end extends towards the second abutting portion 423 and abuts against the second abutting portion 423. It can be understood that the limiting member 700 can more stably support the second abutting portion 423, that is, can more stably support the support assembly 400 to ensure the stability of the support assembly 400.

[0065] As Figure 2As shown, in some embodiments, the lifting assembly 300 further includes a pressing member 320. The bearing member 310 includes a bearing body portion 311 and a lapping portion 312. The lapping portion 312 is connected to the first end of the bearing body portion 311 and the pressing member 320 respectively. Wherein, when the pressing member 320 descends to the limit, the lapping portion 312 and the bottom of the second end of the bearing body portion 311 abut against the first abutting portion 422 and the second abutting portion 423 respectively. It can be understood that the first abutting portion 422 and the second abutting portion 423 can limit the limit positions of the bearing body portion 311 and the lapping portion 312 from descending, that is, it is equivalent to limiting the limit position of the pressing member 320 from being pressed down, so as to avoid damage to the lifting assembly 300 due to excessive pressing of the pressing member 320.

[0066] As Figure 3 shown, in some embodiments, the bearing body portion 311 is provided with a first through hole 313 corresponding to the pin hole 110. A first side hole 314 is provided in the side wall of the first end of the bearing body portion 311, and a second side hole 315 is provided in the side wall of the second end of the bearing body portion 311. The first anti-disengagement member 500 passes through the first side hole 314 and the second end of the first anti-disengagement member 500 is located in the first through hole 313. The second anti-disengagement member 600 passes through the second side hole 315 and the second end of the second anti-disengagement member 600 is located in the first through hole 313. It should be understood that the first side hole 314 and the second side hole 315 can not only position the first anti-disengagement member 500 and the second anti-disengagement member 600 respectively, but also provide an activity space for the first anti-disengagement member 500 and the second anti-disengagement member 600. When the bearing body portion 311 rises or descends, the first anti-disengagement member 500 and the second anti-disengagement member 600 can rotate in the first side hole 314 and the second side hole 315 to clamp or release the pin 800.

[0067] Combined with Figure 3 and Figure 5 shown, in some embodiments, the first inner wall 316 of the first side hole 314 and the second inner wall 317 of the second side hole 315 extend obliquely towards each other in a direction away from the pin hole 110. Both the first inner wall 316 and the second inner wall 317 are the inner walls on the side close to the pin hole 110. With such a setting, when the bearing body portion 311 descends or rises, it can be ensured that the first anti-disengagement member 500 and the second anti-disengagement member 600 can rotate in the first side hole 314 and the second side hole 315. By adjusting the inclination angles of the two anti-disengagement members, it is convenient to adjust the distance between the second end of the first anti-disengagement member 500 and the second end of the second anti-disengagement member 600.

[0068] Combined with Figure 3 and Figure 5As shown, in some embodiments, the first anti-detachment member 500 includes a first plate portion 510 and a second plate portion 520 connected from the first end to the second end. The width of the second plate portion 520 is reduced relative to the width of the first plate portion 510, and the first plate portion 510 is located outside the first side hole 314. The second anti-detachment member 600 includes a third plate portion 610 and a fourth plate portion 620 connected from the first end to the second end. The width of the fourth plate portion 620 is reduced relative to the width of the third plate portion 610, and the third plate portion is located outside the second side hole 315. It should be noted that the second plate portion 520 can be inserted into the first through hole 313 from the first side hole 314, and the fourth plate portion 620 can be inserted into the first through hole 313 from the second side hole 315. Since the widths of the second plate portion 520 and the fourth plate portion 620 are smaller, they can be more easily inserted into the first side hole 314 and the second side hole 315. Further, the first plate portion 510 is located outside the first side hole 314 and the third plate portion is located outside the second side hole 315, that is, the width of the first plate portion 510 can be greater than the aperture of the first side hole 314, and the width of the second plate portion 520 can be greater than the aperture of the second side hole 315, so as to prevent the first anti-detachment member 500 and the second anti-detachment member 600 from falling into the first through hole 313.

[0069] As Figure 5 shown, in some embodiments, the second plate portion 520 is provided with a first protrusion 521 extending along the width direction of the second plate portion 520, and the fourth plate portion 620 is provided with a second protrusion 621 extending along the width direction of the fourth plate portion 620. The inner wall of the carrier 310 is provided with a first groove 318 and a second groove (not shown in the figure). The first protrusion 521 is opposite to the first groove 318, and the second protrusion 621 is opposite to the second groove. It should be noted that the first protrusion 521 and the second protrusion 621 can play a role in preventing misassembly during the assembly of the first anti-detachment member 500 and the second anti-detachment member 600. At the same time, since the first protrusion 521 can be snapped into the first groove 318 and the second protrusion 621 can be snapped into the second groove, it can further prevent the first anti-detachment member 500 and the second anti-detachment member 600 from falling into the first through hole 313.

[0070] Combined Figure 1 and Figure 4 shown, in some embodiments, the housing 100 includes a first housing member 120 and a second housing member 130. The first housing member 120 is provided with a pin hole 110, and the second housing member 130 is provided with a mounting hole 131. The mounting hole 131 is opposite to the pin hole 110. The socket 200 includes a socket body 210 and a connecting portion 220 connected. The connecting portion 220 passes through the mounting hole 131 and extends outside the second housing member 130. In this way, the connecting portion 220 can be fixed to the second housing member 130 by being snapped into the mounting hole 131.

[0071] The U-shaped bottom of the main body portion 421 is positioned on the second housing member 130 by the socket body 210. Thus, the socket 200 can position the second support member 420, that is, the support assembly 400 can be limited on the second housing member 130 by the socket 200.

[0072] As Figure 4 shown, in some embodiments, the socket body 210 may include a first clamping arm 211 and a second clamping arm 212 that are oppositely arranged and connected. The first clamping arm 211 is connected to the connecting portion 220 and abuts against the first side of the U-shaped bottom of the main body portion 421, and the second clamping arm 212 abuts against the second side of the U-shaped bottom of the main body portion 421. The first side and the second side of the U-shaped bottom are opposite. With such a setting, the socket body 210 can more stably mount the second support member 420 on the second housing member 130.

[0073] Combined with Figure 1 and Figure 3 shown, in some embodiments, a second through hole 122 is further provided on the first side surface 121 of the housing 100. The pressing member 320 includes a resilient portion 321 and an operating portion 322. The resilient portion 321 is connected between the carrier member 310 and the operating portion 322. The operating portion 322 extends out from the second through hole 122. The resilient portion 321 has an elastic member 323. When the operating portion 322 is pressed, the elastic member 323 contracts, so that the lifting assembly 300 descends. It can be understood that, as from Figures 9 to 8 , and then from Figures 8 to 7 to the state shown, when the user presses the operating portion 322 downward, the operating portion 322 can drive the carrier member 310 to descend through the resilient portion 321, so that the carrier member 310 drives the first anti-disengagement member 500 and the second anti-disengagement member 600 to rotate. The distance between the second ends of the first anti-disengagement member 500 and the second anti-disengagement member 600 increases, so that the second ends of the first anti-disengagement member 500 and the second anti-disengagement member 600 can be separated from both sides of the plug pin 800 respectively, to facilitate the user to pull out the plug pin 800 more easily. At this time, the elastic member 323 is in a compressed state. As Figure 8In the state shown, when the user releases the pressure on the operating part 322, under the action of the elastic restoring force of the elastic member 323 of the elastic return part 321, the carrier 310 can rise, so that the carrier 310 drives the first anti-disengagement member 500 and the second anti-disengagement member 600 to rotate in the reverse direction. The distance between the second ends of the first anti-disengagement member 500 and the second anti-disengagement member 600 decreases. Furthermore, the second ends of the first anti-disengagement member 500 and the second anti-disengagement member 600 can respectively provide a greater squeezing force on both sides of the plug pin 800 to clamp the plug pin 800 more stably. In this way, the loosening of the plug pin 800 can be better prevented, enabling the plug and the socket to be connected more stably and improving the user experience. It should be noted that during the process of pressing the pressing member 320, the first anti-disengagement member 500 and the second anti-disengagement member 600 can not only rotate up and down, but also move left and right. For example, the first anti-disengagement member 500 and the second anti-disengagement member 600 can rotate within the range of 0 to 90 degrees, or can rotate within the range of 15 to 25 degrees, and at the same time can move left and right within the range of 0 to 1 mm. That is to say, the first anti-disengagement member 500 and the second anti-disengagement member 600 have high flexibility.

[0074] As Figure 3 shown, in some embodiments, the elastic return part 321 is provided with a receiving cavity 324. The opening of the receiving cavity 324 faces the second housing part 130. A positioning member 325 is connected to the bottom of the receiving cavity 324. The positioning member 325 extends towards the second housing part 130. A third protruding part 326 is connected to the side wall of the positioning member 325. The elastic member 323 is sleeved on the positioning member 325. One end of the elastic member 323 abuts against the second housing part 130, and the other end abuts against the end face of the third protruding member facing the second housing part 130. It can be understood that the positioning member 325 can position the elastic member 323 to ensure that the elastic member 323 always undergoes elastic deformation along the same axis without torsion or deviation. It should be noted that the elastic member 323 can be a spring.

[0075] As Figures 6 to 9 shown, in some embodiments, the first housing part 120 is connected with a first baffle 140 and a second baffle 150. The first end of the first anti-disengagement member 500 is used to abut against the first baffle 140, and the second end of the second anti-disengagement member 600 abuts against the second baffle 150. It can be understood that the first baffle 140 and the second baffle 150 can respectively limit the first anti-disengagement member 500 and the second anti-disengagement member 600.

[0076] On the other hand, an embodiment of the present application provides a converter, which includes any one of the socket modules described in the above embodiments of the present application. It should be noted that one, two or more socket modules can be provided in the converter, and the composition and functions of each socket module are the same as those in the above embodiments of the present application, so the embodiments of the present application will not be elaborated here. Since the converter is provided with the above socket module, the plug pins can be more stably connected to the socket module, that is, the stability of the connection between the plug and the converter is improved, and the safety and user experience of the converter during use are improved.

[0077] Those skilled in the art will readily conceive of other embodiments of the present application after considering the specification and practicing the present application disclosed herein. The present application is intended to cover any variations, uses, or adaptations of the present application that follow the general principles of the present application and include common general knowledge or conventional technical means in the technical field not disclosed in the present application. The specification and examples are only illustrative.

[0078] It should be understood that the present application is not limited to the exact structures described above and shown in the drawings, and various modifications and changes can be made without departing from its scope. The scope of the present application is only limited by the appended claims.

Claims

1. A socket module, characterized in that: The socket module comprises a housing (100), a socket (200) accommodated in the housing (100), a lifting assembly (300), a supporting assembly (400), a first anti-dropping member (500), and a second anti-dropping member (600); The lifting assembly (300) comprises a bearing member (310), and the first anti-slip member (500) and the second anti-slip member (600) are both mounted on the bearing member (310); The support assembly (400) is detachably connected to the housing (100), and the support assembly (400) comprises a first support member (410) and a third support member (430) which are connected in sequence, and the first support member (410) and the third support member (430) respectively cooperate with the inner wall of the housing (100) to limit the first end of the first anti-slip member (500) and the first end of the second anti-slip member (600); A pin hole (110) is provided on the first side surface (121) of the housing (100), and a pin insertion path is formed in the housing (100) and passes through the pin hole (110), between the second end of the first anti-slipping member (500), the second end of the second anti-slipping member (600), and the plug sleeve in sequence; When the lifting assembly (300) rises relative to the shell (100), the second end of the first anti-slip component (500) and the second end of the second anti-slip component (600) rise along with the supporting component (310), thereby reducing the distance between the second end of the first anti-slip component (500) and the second end of the second anti-slip component (600).

2. The socket module according to claim 1, characterized in that: The support assembly (400) further comprises a second support member (420), the second support member (420) comprising a main body (421), a first abutting portion (422) and a second abutting portion (423), the main body (421) being U-shaped, the first abutting portion (422) and the second abutting portion (423) being respectively located at two ends of a U-shaped arm of the main body (421); When the lifting assembly (300) descends to the limit, the two ends of the bearing member (310) respectively abut against the first abutting portion (422) and the second abutting portion (423).

3. The socket module according to claim 2, characterized in that: The first supporting member (410) comprises a first supporting portion (411) and a second supporting portion (412) which are arranged side by side and at intervals, and the first supporting portion (411) and the second supporting portion (412) are respectively connected to two sides of the first abutting portion (422); The third supporting member (430) comprises a third supporting portion (431) and a fourth supporting portion (432) which are arranged side by side and at intervals, and the third supporting portion (431) and the fourth supporting portion (432) are respectively connected to two sides of the second abutting portion (423).

4. The socket module according to claim 2, characterized in that: The socket module further comprises a limiting member (700), one end of which is connected to the housing (100), and the other end of which extends toward the second abutting portion (423) and abuts against the second abutting portion (423).

5. The socket module according to claim 2, characterized in that: The lifting assembly (300) further comprises a pressing member (320), the bearing member (310) comprises a bearing body portion (311) and a lap portion (312), and the lap portion (312) is respectively connected to the first end of the bearing body portion (311) and the pressing member (320); When the pressing member (320) descends to the limit, the bottom of the second end of the overlapping portion (312) and the supporting body portion (311) respectively abuts against the first abutting portion (422) and the second abutting portion (423).

6. The socket module according to claim 5, characterized in that: The bearing body part (311) is provided with a first through hole (313) corresponding to the latch hole (110), the side wall of the first end of the bearing body part (311) is provided with a first side hole (314), and the side wall of the second end of the bearing body part (311) is provided with a second side hole (315); The first anti-slip component (500) passes through the first side hole (314) and the second end of the first anti-slip component (500) is located in the first through hole (313), and the second anti-slip component (600) passes through the second side hole (315) and the second end of the second anti-slip component (600) is located in the first through hole (313).

7. The socket module according to claim 6, characterized in that: The first inner wall (316) of the first side hole (314) and the second inner wall (317) of the second side hole (315) extend obliquely towards each other in a direction away from the latch hole (110), and the first inner wall (316) and the second inner wall (317) are both inner walls close to the latch hole (110).

8. The socket module according to claim 6, characterized in that: The first anti-slip member (500) includes a first plate portion (510) and a second plate portion (520) connected from the first end to the second end, the width of the second plate portion (520) is smaller than the width of the first plate portion (510), and the first plate portion (510) is located outside the first side hole (314); The second anti-slip component (600) includes a third plate portion (610) and a fourth plate portion (620) connected from the first end to the second end, the width of the fourth plate portion (620) is reduced relative to the width of the third plate portion (610), and the third plate portion (610) is located outside the second side hole (315).

9. The socket module according to claim 8, characterized in that: The second plate portion (520) is provided with a first protrusion (521) extending along the width direction of the second plate portion (520), and the fourth plate portion (620) is provided with a second protrusion (621) extending along the width direction of the fourth plate portion (620); The inner wall of the carrier (310) is provided with a first groove (318) and a second groove; The first protrusion (521) is opposite to the first groove (318), and the second protrusion (621) is opposite to the second groove.

10. The socket module according to claim 2, characterized in that: The housing (100) comprises a first housing member (120) and a second housing member (130), the first housing member (120) being provided with the latch hole (110), the second housing member (130) being provided with a mounting hole (131), the mounting hole (131) being opposite to the latch hole (110); The socket (200) comprises a socket body (210) and a connecting portion (220) connected to each other, and the connecting portion (220) passes through the mounting hole (131) and out of the second housing member (130); The U-shaped bottom of the main body (421) is positioned on the second housing member (130) by the socket body (210).

11. The socket module according to claim 5, characterized in that: A second through hole (122) is also provided on the first side surface (121) of the housing (100); The pressing member (320) comprises a rebound portion (321) and an operating portion (322), and the rebound portion (321) is connected between the bearing member (310) and the operating portion (322); The operating portion (322) extends from the second through hole (122); The rebound portion (321) has an elastic member (323), wherein when the operating portion (322) is pressed, the elastic member (323) contracts, thereby the lifting assembly (300) descends.

12. A converter, comprising at least one socket module according to any one of claims 1-11.