Conversion socket capable of changing multiple types of pins
By designing a conversion socket with multiple interchangeable pins and using the combination of limiters and unlocking parts, the problems of loose plugs and unstable conductivity are solved, and the stable connection of the socket and current transmission are achieved.
Patent Information
- Application Number
- CN202421972220.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-15
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-08-15
AI Technical Summary
The existing conversion socket is easy to loosen during the plug replacement process, and the conductive hardware structure is unstable, which affects the electrical connection performance.
A conversion socket with multiple interchangeable pins has been designed. It adopts a structure consisting of a shell, a bracket, conductive hardware, power-leading hardware and a locking component. The cooperation of the limiting parts and the unlocking parts ensures that the plug module is firmly connected in the slot to prevent it from loosening.
The plug module can maintain a firm connection after multiple replacements, ensuring stable current transmission, avoiding loosening and damage, and improving reliability and safety of use.
Smart Images

Figure CN223309366U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of conversion sockets, in particular to a conversion socket with interchangeable pins. Background Art
[0002] As people's lives gradually improve, there are more and more opportunities to travel or go on business trips abroad. Since power socket standards vary from country to country, electrical plugs have a variety of shapes, making it difficult for people to use electrical appliances brought from China to use local sockets abroad. This brings great inconvenience to people's travel.
[0003] Therefore, in order to facilitate people's appearance, a conversion socket has appeared on the market, which can convert plugs of different specifications, so that it can be adapted to local sockets abroad, and thus can meet the use of self-brought electrical appliances. The current conversion socket has plugs of different standards, so that the plugs can be replaced to use local sockets, thereby facilitating the charging of self-brought electrical appliances.
[0004] However, the conversion sockets currently on the market have certain defects. The plug is not in firm contact with the socket itself during assembly and is prone to loosening, especially after multiple replacements of plugs of different specifications. The gap used to increase the installation exacerbates the loosening phenomenon; the structural design of the internal conductive hardware is unreasonable, which easily leads to an unstable connection between the plug and the socket, affecting the conductive performance.
[0005] Therefore, there is an urgent need for a conversion socket with multiple interchangeable pins to solve at least one of the above technical problems. Utility Model Content
[0006] The purpose of this utility model is to provide a conversion socket with multiple interchangeable pins. In order to solve the above technical problems, this utility model adopts the following technical solutions:
[0007] A conversion socket with multiple interchangeable pins, including:
[0008] A housing, wherein a cavity is provided in the housing and a slot is formed on the outer surface of the housing;
[0009] a bracket, the bracket being detachably mounted in the cavity;
[0010] Conductive hardware, the conductive hardware is assembled on the bracket and is provided with elastic plug-in positions for plugging;
[0011] The power-leading hardware is fixedly mounted on the bracket, one end of which is electrically connected to the conductive hardware, and the other end of which extends into the slot along the outer wall of the shell, with the end of the power-leading hardware extending toward the slot opening;
[0012] A locking assembly is movably arranged on the bracket, and includes a limiting member and an unlocking member. The limiting member is configured with an elastic support, and the pushing portion of the elastic force extends into the slot. The unlocking member cooperates with the limiting member to push the limiting member to overcome the elastic force and exit from the slot.
[0013] Furthermore, the bracket is provided with a vertical plate, and an assembly frame for clamping the conductive hardware is provided along the vertical plate; the conductive hardware is fixedly arranged on the assembly frame.
[0014] Furthermore, the conductive hardware includes at least two corresponding to the live wire and the neutral wire respectively, and the two conductive hardware include a plate body, and a plurality of elastic arms are formed on the plate body. The space between the elastic arms and the plate body defines the plug-in position, and a connecting arm is provided on each of the two conductive hardware, and the connecting arm is electrically connected to the power-leading hardware.
[0015] Furthermore, the power-leading hardware includes at least two pieces corresponding to the two conductive hardware pieces, and the power-leading hardware includes a main body, a connecting end is formed at one end of the main body, and the connecting end is electrically connected to the conductive hardware. The other end of the main body extends along the main body and leaks out of the slot, and is formed with a plug-in arm extending toward the opening direction, and a clamping space is defined between the plug-in arm and the side wall of the slot.
[0016] Furthermore, a reinforcing arm is provided on the main body and is arranged opposite to the plug-in arm, and the clamping space is defined between the reinforcing arm and the plug-in arm.
[0017] Furthermore, a slide groove is provided on the vertical plate, and the limiting member is provided on either side of the slide groove.
[0018] The elastic support is provided between the crossbeam and the vertical plate.
[0019] The connecting leg is formed on one side of the crossbeam, and a hole is provided on the vertical plate for the connecting leg to penetrate and slide in the axis direction of the connecting leg.
[0020] a limiting block, the limiting block being formed on the crossbeam and extending into the slot along the side wall of the shell;
[0021] A pushing block is formed on the crossbeam and extends toward the sliding groove;
[0022] The unlocking member includes
[0023] A plate, the plate being slidably connected in the slide groove,
[0024] An elastic member is disposed in the slide groove and provides an elastic force to the plate member toward the outside of the slide groove.
[0025] The abutment block is formed corresponding to the pushing block on the plate and extends toward the limiting member. The side surfaces corresponding to the pushing block and the abutment block are set as inclined pushing slopes.
[0026] Furthermore, a sliding limiting structure is provided on the slide groove and the plate, and the sliding limiting structure includes a guide rail formed on the slide groove or the plate, and a guide groove opened on the plate or the slide groove, and the end of the plate away from the elastic member is set as a pressing end, which is used to press the plate to overcome the elastic force of the elastic member to slide.
[0027] Furthermore, at least one group of sockets corresponding to the sockets on the conductive hardware is provided on the shell, and the sockets are two-pole sockets or three-pole sockets.
[0028] Furthermore, a circuit board is provided in the cavity, the circuit board is electrically connected to the conductive hardware, and a plurality of electronic sockets for transmitting current are provided on the circuit board.
[0029] Furthermore, the housing includes:
[0030] a lower shell, the cavity being formed on the lower shell;
[0031] a middle shell, the middle shell enclosing the cavity and provided with a plurality of connection holes for bolt connection with the lower shell;
[0032] An upper cover is snap-connected to the middle shell.
[0033] The beneficial effects produced by the utility model are as follows:
[0034] During the use of the conversion socket, the plug module is inserted into the slot along the opening of the slot, so that the power-introducing hardware is plugged into the socket hole, thereby electrically connecting with the pins on the plug module. The plug module is locked in the slot through the cooperation of the limiting hole and the limiting member. By replacing the plug module with pins of different specifications, it can be adapted to sockets in different regions abroad to meet the demand for charging self-brought electrical appliances. The technical solution provided by the embodiment of the utility model, in the process of sliding the plug module into the slot, the power-introducing hardware extending toward the opening direction can be gradually plugged into the socket hole to achieve electrical connection with the pins. At the same time, During the process of the plug module slidingly connected in the slot, the limiting piece is gradually engaged in the limiting hole, thereby locking the plug module in the slot and completing the fixation of the plug module. Through the above technical solution, the assembly accuracy of the conversion socket can be guaranteed after multiple plug-in of the plug module, and the assembly gap will not increase. Moreover, since the plug module is slidably connected in the slot along the opening, the assembly process of the plug module is relatively smooth, and there will be no large-scale movement or the use of large pushing force, thereby reducing the impact and damage to the plug module, ensuring the accuracy of the plug module and the shell during the assembly process, and avoiding the situation where the plug module becomes loose. BRIEF DESCRIPTION OF THE DRAWINGS
[0035] Figure 1 This is a structural diagram of the combination of the utility model and the plug module.
[0036] Figure 2 This is a schematic diagram of the exploded structure of the utility model and the plug module.
[0037] Figure 3 It is a structural diagram of the present utility model.
[0038] Figure 4 It is a schematic diagram of the explosion structure of the utility model.
[0039] Figure 5 It is a structural schematic diagram of the bracket, conductive hardware, power-leading hardware and locking assembly in the utility model.
[0040] Figure 6 Schematic diagram of the explosion structure of the bracket, conductive hardware, lead-in hardware and locking components in this utility model Figure 1 .
[0041] Figure 7 Schematic diagram of the explosion structure of the bracket, conductive hardware, lead-in hardware and locking components in this utility model Figure 2 .
[0042] Figure 8 This is a structural diagram of the plug module in the present utility model.
[0043] Figure 9 This is a schematic diagram of the exploded structure of the plug module in the present utility model.
[0044] Figure 10 It is a structural diagram of the power-leading hardware in this utility model.
[0045] Figure 11 It is a structural diagram of the conductive hardware corresponding to the ground wire in the present utility model.
[0046] Figure 12 It is a structural diagram of the conductive hardware corresponding to the live wire and the neutral wire in the present utility model.
[0047] In the figure: 100 - housing; 221 - plate; 411 - mounting cavity; 101 - cavity; 222 - elastic arm; 412 - sliding slot; 102 - two-pole socket; 223 - connecting arm; 112 - sliding block; 103 - three-pole socket; 211 - main body; 413 - conductive sheet; 110 - slot; 212 - connecting end; 414 - plug-in end; 111 - opening; 213 - plug-in arm; 500 - circuit board; 214 - tightening space; 501 - electronic socket; 201 - plug-in position; 215 - reinforcing arm; 103 - lower housing; 210 - electrical hardware; 205 - sliding slot; 104 - middle housing; 300 - locking assembly; 311 - crossbeam; 105 - upper cover; 310-limiting part; 312-connecting leg; 325-pressing end; 320-unlocking part; 313-limiting block; 400-plug module; 314-pushing block; 401-pin; 321-plate; 402-plug hole; 322-elastic part; 403-limiting hole; 323-abutting part; 202-bracket; 324-pushing slope; 203-vertical plate; 206-guide rail; 204-assembly bone position; 220-conductive hardware; 410-base. DETAILED DESCRIPTION
[0048] In order to facilitate the understanding of those skilled in the art, the present invention is further described below in conjunction with the embodiments and drawings. The contents mentioned in the embodiments are not intended to limit the present invention. The present invention is described in detail below in conjunction with the drawings.
[0049] An embodiment of the present invention provides a conversion socket with multiple interchangeable pins. By configuring a plug module 400 with multiple pins 401 of different specifications, it can be replaced according to the regulations of different overseas regions, thereby making it convenient for people to charge their own electronic products when traveling abroad.
[0050] like Figure 3-7As shown, the embodiment of the present invention provides a conversion socket with multiple interchangeable pins, including a housing 100, a bracket, a conductive hardware 220, a power-leading hardware 210, and a locking assembly 300. The housing 100 is provided with a cavity 101, and a slot 110 is formed on the outer surface of the housing 100; the bracket is detachably mounted in the cavity 101; the conductive hardware 220 is assembled on the bracket, and is provided with an elastic plug-in position 201 for plugging; the power-leading hardware 210 is fixedly mounted on the bracket, and its One end is electrically connected to the conductive hardware 220, and the other end extends into the slot 110 along the outer wall of the housing 100, with the end of the conductive hardware 210 extending toward the opening 111 of the slot 110; it is movably arranged on the bracket, which includes a limit member 310 and an unlocking member 320. The limit member 310 is configured with an elastic support, and the elastic force pushes the part extending into the slot 110. The unlocking member 320 cooperates with the limit member 310 to push the limit member 310 to overcome the elastic force and exit from the slot 110.
[0051] It is conceivable that Figure 1-2 As shown, in this embodiment, a two-pole socket 102 and a three-pole socket 103 are provided on the shell 100. Accordingly, the plug-in position 201 provided on the conductive hardware 220 is adapted to be compatible with the two-pole socket 102 and the three-pole socket 103, so as to meet the needs of two-pin and three-pin sockets. Similarly, in other embodiments, the plug-in position 201 can be two that are adapted to the two-pin socket. In this case, two matching plug-in positions 201 are provided on the shell 100.
[0052] In this embodiment, the conductive hardware 220, the power-leading hardware 210 and the locking assembly 300 are assembled on the bracket, so that the overall structure can be compact. The conductive hardware 220 and the power-leading hardware 210 can be tightly connected to each other, making the overall structure of the socket small.
[0053] During use, plug modules 400 with pins of different specifications can be snapped into the slot 110, so that plug modules 400 with pins of different specifications can be replaced according to the electricity requirements of different regions. Specifically, the plug module 400 is inserted into the slot 110 along the opening 111 of the slot 110. At this time, the plug module 400 and the end of the power supply hardware 210 located in the slot 110 are plugged into each other, thereby achieving electrical connection. At the same time, the plug module 400 is snapped into position by the limiter 310 to prevent the plug module 400 from falling out of the slot 110. The technical solution provided by the utility model can enable the conversion socket to be replaced with mutually compatible plug modules 400 according to the electricity standards of different regions, so that the socket can be used normally to charge the electronic products brought with it.
[0054] In this embodiment, if Figure 8-9 The figure shows a schematic structural diagram of a plug module involved in an embodiment of the present invention. The plug module 400 includes a base 410 and a conductive sheet 413. A mounting cavity 411 is provided inside the base 410. The pin 401 is fixedly mounted on the base 410. A sliding groove 412 is provided on the side wall of the base 410. A sliding block 112 is provided in the slot 110 to form a sliding pair with the sliding groove 412. The conductive sheet 413 is fixedly mounted in the mounting cavity 411 and is provided with at least two conductive sheets that are compatible with the electrical hardware. One end of the conductive sheet 413 is connected to the pin 401, and the other end is provided with an elastic plug end 414 corresponding to the plug hole 402.
[0055] When the plug module 400 is slidably connected in the slot 110, it can slide along the sliding groove 412 and the sliding block 112, thereby limiting the sliding direction and movement accuracy of the plug module 400, and the elastic plug-in end 414 on the conductive sheet 413 is plugged into the power-leading hardware 210 and elastically clamps the power-leading hardware 210, thereby ensuring the tightness of the connection between the conductive hardware, avoiding the situation where the connecting components cause unstable current transmission, and avoiding safety hazards.
[0056] In this embodiment, the power lead hardware 210 and the conductive hardware 220 are used to form an electrical connection module with the plug module 400 and form a socket for connecting an electrical appliance. Figure 3-7 As shown, the bracket 202 is provided with a vertical plate 203, and an assembly frame 204 for clamping the conductive hardware 220 is provided along the vertical plate 203. The conductive hardware 220 is fixedly mounted on the assembly frame 204. The conductive hardware 220 includes at least two corresponding to the live wire and the neutral wire, respectively. The two conductive hardware 220 include a plate 221, which is a long plate-shaped structure. A plurality of elastic arms 222 are formed on the plate 221. The space between the elastic arms 222 and the plate 221 defines the insertion position 201. The two conductive hardware 220 are each provided with a connecting arm 223, and the connecting arm 223 is electrically connected to the conductive hardware 210. In this embodiment, there are three conductive hardware 220, corresponding to the live wire, the neutral wire, and the ground wire respectively. It is conceivable that only two conductive hardware 220 can be provided, corresponding to the live wire and the neutral wire. In this embodiment, the bracket 202 is provided with a vertical plate 203, so that the conductive hardware 220 can be vertically installed on the assembly frame 204, thereby making the mutual contact area between the conductive hardware 220 and the vertical plate 203 larger. Figure 6-7As shown, a plurality of snap-fit positions are provided on the assembly frame 204 . After the conductive hardware 220 is vertically assembled on the assembly frame 204 , the plurality of snap-fit positions snap-fit the conductive hardware 220 to ensure the installation stability of the conductive hardware 220 .
[0057] In this embodiment, if Figure 11-12 As shown, the conductive hardware 220 corresponding to the live wire and the neutral wire includes a plate body 221, which is a long plate-shaped structure. A number of elastic arms 222 are formed on the plate body 221. The space between the elastic arms 222 and the plate body 221 defines the plug-in position 201. A connecting arm 223 is provided on the conductive hardware 220. The connecting arm 223 is electrically connected to the power-leading hardware 210. The conductive hardware 220 connected to the ground wire has a barrel body for plugging in a plug, and a connecting arm 223 is provided at the tail position for connecting to the power-leading hardware 210.
[0058] By providing the conductive hardware 220 corresponding to the live wire and the neutral wire with a plate 221, the current-carrying capacity of the conductive hardware 220 can be improved, making the current transmission more stable, and an elastic arm 222 is provided on the plate 221 to clamp the inserted plug and ensure the stability of the connection with the plug.
[0059] In this embodiment, if Figure 10 、 12 As shown, the electrical hardware 210 includes a main body 211, and a connecting end 212 is formed at one end of the main body 211. The connecting end 212 is electrically connected to the conductive hardware 220. The other end of the main body 211 extends along the main body and leaks out of the slot 110, and is formed with a plug-in arm 213 extending toward the opening 111. A clamping space is defined between the plug-in arm 213 and the side wall of the slot 110.
[0060] An elastic leg is provided on the connection end 212. Correspondingly, a corresponding hole is provided on the connection arm 223 of the conductive hardware 220. This allows the elastic leg to be inserted into the hole and locked therein due to the elastic force, thereby firmly connecting the conductive hardware 210 and the conductive hardware 220. Furthermore, the plug arm 213 extends toward the opening 111 within the slot 110, facilitating insertion into the insertion hole 402 and electrical connection with the pin 401 when the plug module 400 slides along the opening 111 into the slot 110. Furthermore, due to the clamping space between the plug arm 213 and the inner wall of the slot 110, the rear portion of the plug module 400 is positioned within the clamping space 214 after the plug module 400 slides into the slot 110, thereby clamping and securing the plug module 400 and ensuring its stability within the slot 110.
[0061] In this embodiment, a reinforcing arm 215 is disposed on the main body 211, opposite the plug-in arm, and defines a clamping space between the reinforcing arm 215 and the plug-in arm 213. During assembly, the reinforcing arm 215 is positioned within the bracket 202, thereby increasing the contact area between the power supply hardware 210 and the bracket 202 and ensuring the secure attachment of the power supply hardware 210 to the bracket 202.
[0062] The locking cam 313 is secured to the cam 316 by means of a latch 322 which is secured to the latch 324 and to the user's finger 314 when the lever 316 is unlocked. The support pushes out from the slot 110 so that it can be snapped into the limiting hole 403 of the plug module 400, thereby fixing the plug module 400 in the slot 110. It can be imagined that when the plug module 400 slides along the opening 111 and enters the slot 110, the side wall of the seat body 410 of the plug module 400 and the limiting block 313 contact each other, so that the crossbeam 311 overcomes the elastic support and moves in the direction away from the slot 110, thereby pushing out the limiting block 313 to facilitate the seat body 410 to slide to the bottom of the slot 110 so that the plug arm 213 is plugged into the plug hole 402. At this time, the limiting block 313 on the seat body 410 corresponds to the limiting block 313. Under the action of the elastic support, the limiting block 313 is snapped into the limiting hole 403, thereby locking the plug module 400 in the slot 110.
[0063] When the cam 320 is in the unlocking state, the locking cam 320 is in the unlocking state, and the locking cam 320 is in the unlocking state, and the locking cam 320 is in the unlocking state, and the locking cam 320 is in the unlocking state, and the locking cam 320 is in the unlocking state, and the locking cam 320 is in the unlocking state, and the locking cam 320 is in the unlocking state, and the locking cam 320 is in the unlocking state, Therefore, in the process of pushing the plate 321, the abutment block and the pushing block 314 contact each other, and push the beam 311 in the direction away from the slot 110 along the pushing inclined surface 324, and then the limit block 313 is withdrawn from the limit hole 403, so that the limit member 310 unlocks the plug module 400 and can be withdrawn from the slot 110 to facilitate the replacement of the plug module 400. After loosening the plate 321, the plate 321 is reset under the push of the elastic member 322, so that the limit block 313 is extended toward the slot 110 again under the action of the elastic support.
[0064] To ensure smooth and precise sliding of the plate 321 within the chute 205, a sliding limit structure is provided on the chute 205 and the plate 321. The sliding limit structure includes a guide rail 206 formed on the chute 205 or the plate 321, and a guide groove provided on the plate 321 or the chute 205. The end of the plate 321 away from the elastic member 322 is provided with a pressing end 325, which is used to press the plate 321 to overcome the elastic force of the elastic member 322 and slide. The plate 321 slides along the guide direction of the chute 205 and the guide rail 206, thereby ensuring the sliding precision of the plate 321 and preventing the plate 321 from swinging, which would affect the reliability of the pressing end 325 of the plate 321 to drive the plate 321.
[0065] In this embodiment, if Figure 4 As shown, a circuit board 500 is also provided in the hollow 101, the circuit board 500 is electrically connected to the conductive hardware, and a plurality of electronic sockets 501 for transmitting current are provided on the circuit board 500. In this embodiment, the electronic socket 501 is a USB socket, a Type-C socket or other common sockets, which can facilitate direct connection of the transmission line.
[0066] To ensure the aesthetics of the socket surface, the shell 100 includes a lower shell 103, a middle shell 104 and an upper cover 105. The hollow 101 is formed on the lower shell 103, and the conductive hardware and circuit board 500 are fixedly loaded therein. The middle shell 104 encloses the hollow 101 and is provided with a plurality of connection holes for bolt connection with the lower shell 103. The middle shell 104 is fixedly connected to the upper shell by bolts. The holes for connection are all provided on the middle shell 104. The upper cover 105 is snapped onto the middle shell 104 to cover the holes on the middle shell 104, so that the surface of the socket is clean and tidy, and the appearance is avoided to avoid the appearance of connection holes.
[0067] The above are only preferred embodiments of the present invention and are not intended to limit the present invention in any form. Although the present invention is disclosed as above in terms of preferred embodiments, they are not intended to limit the present invention. Any technician familiar with the profession can, without departing from the scope of the technical solution of the present invention, make some changes or modifications to equivalent embodiments using the technical content disclosed above. However, any simple modifications, equivalent changes and modifications made to the above embodiments according to the technology of the present invention, which do not depart from the content of the technical solution of the present invention, are within the scope of the technical solution of the present invention.
Claims
1. A conversion socket with multiple interchangeable pins, characterized in that: Includes: A housing, wherein a cavity is provided in the housing and a slot is formed on the outer surface of the housing; a bracket, the bracket being detachably mounted in the cavity; Conductive hardware, the conductive hardware is assembled on the bracket and is provided with elastic plug-in positions for plugging; The power-leading hardware is fixedly mounted on the bracket, one end of which is electrically connected to the conductive hardware, and the other end of which extends into the slot along the outer wall of the shell, with the end of the power-leading hardware extending toward the slot opening; A locking assembly is movably arranged on the bracket, and includes a limiting member and an unlocking member. The limiting member is configured with an elastic support, and the pushing portion of the elastic force extends into the slot. The unlocking member cooperates with the limiting member to push the limiting member to overcome the elastic force and exit from the slot.
2. A conversion socket with multiple interchangeable pins according to claim 1, characterized in that: The bracket is provided with a vertical plate, and an assembly frame for clamping the conductive hardware is provided along the vertical plate; the conductive hardware is fixedly arranged on the assembly frame.
3. A conversion socket with multiple interchangeable pins according to claim 2, characterized in that: The conductive hardware includes at least two corresponding to the live wire and the neutral wire respectively. The two conductive hardware include a plate body, and a plurality of elastic arms are formed on the plate body. The space between the elastic arms and the plate body defines the plug-in position. A connecting arm is provided on each of the two conductive hardware, and the connecting arm is electrically connected to the power-leading hardware.
4. A conversion socket with multiple interchangeable pins according to claim 3, characterized in that: The power-leading hardware includes at least two pieces corresponding to the two conductive hardware pieces, and the power-leading hardware includes a main body, a connecting end is formed at one end of the main body, and the connecting end is electrically connected to the conductive hardware. The other end of the main body extends along the main body and leaks out of the slot, and is formed with a plug-in arm extending toward the opening direction, and a clamping space is defined between the plug-in arm and the side wall of the slot.
5. A conversion socket with multiple interchangeable pins according to claim 4, characterized in that: A reinforcing arm is further provided on the main body and is arranged opposite to the plug-in arm, and the clamping space is defined between the reinforcing arm and the plug-in arm.
6. A conversion socket with multiple interchangeable pins according to claim 2, characterized in that: A slide groove is provided on the vertical plate, and the limiting member is provided on either side of the slide groove. The elastic support is provided between the crossbeam and the vertical plate. The connecting leg is formed on one side of the crossbeam, and a hole is provided on the vertical plate for the connecting leg to penetrate and slide in the axis direction of the connecting leg. a limiting block, the limiting block being formed on the crossbeam and extending into the slot along the side wall of the shell; A pushing block is formed on the crossbeam and extends toward the sliding groove; The unlocking member includes A plate, the plate being slidably connected in the slide groove, An elastic member is disposed in the slide groove and provides an elastic force to the plate member toward the outside of the slide groove. The abutment block is formed corresponding to the pushing block on the plate and extends toward the limiting member. The side surfaces corresponding to the pushing block and the abutment block are set as inclined pushing slopes.
7. A conversion socket with multiple interchangeable pins according to claim 6, characterized in that: A sliding limiting structure is provided on the slide groove and the plate, and the sliding limiting structure includes a guide rail formed on the slide groove or the plate, and a guide groove opened on the plate or the slide groove, and the end of the plate away from the elastic member is set as a pressing end, which is used to press the plate to overcome the elastic force of the elastic member to slide.
8. The conversion socket with multiple interchangeable pins according to claim 1, characterized in that: At least one group of sockets corresponding to the sockets on the conductive hardware is provided on the shell, and the sockets are two-pole sockets or three-pole sockets.
9. The conversion socket with multiple interchangeable pins according to claim 1, characterized in that: A circuit board is also provided in the cavity, the circuit board is electrically connected to the conductive hardware, and a plurality of electronic sockets for transmitting current are provided on the circuit board.
10. The conversion socket with multiple interchangeable pins according to claim 1, characterized in that: The housing includes: a lower shell, the cavity being formed on the lower shell; a middle shell, the middle shell enclosing the cavity and provided with a plurality of connection holes for bolt connection with the lower shell; An upper cover is snap-connected to the middle shell.