A wall switch socket

By designing rotatable socket components and rocker components, the problem of low space utilization efficiency of wall switch sockets during installation is solved, achieving compact structural design and efficient space utilization.

CN115513731BActive Publication Date: 2025-06-06NINGBO GONEO ELECTRIC APPLIANCE CO LTD
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Patent Information

Application Number
CN202211167222.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-23
Publication Date
2025-06-06
Estimated Expiration
2042-09-23

AI Technical Summary

Technical Problem

The existing wall switch sockets have low space utilization efficiency when installed, and additional switch modules are required to achieve the on-off function and occupy the installation position of the junction box.

Method used

Design a wall switch socket that includes face frame, rocker assembly and socket assembly. Through the design of the rocker assembly, the socket assembly can rotate between the first preset position and the second preset position to achieve electrical connection and disconnection, avoiding additional installation space.

Benefits of technology

Improves the space utilization efficiency of wall switch sockets, and the compact structural design avoids additional installation position occupation, making it easier to operate and control.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application provides a wall switch socket, which relates to the technical field of sockets and aims to solve the problem of low space utilization efficiency of sockets with switch functions during installation. The wall switch socket comprises a face frame, a rocker assembly and a socket assembly. The face frame has a mounting hole, the rocker assembly is connected to the face frame and has a mounting cavity, and the mounting cavity is provided with a mounting opening on a side close to the face frame along a first straight line direction. The rocker assembly comprises a live wire terminal, the socket assembly is inserted into the mounting cavity, and the socket assembly and the rocker assembly are rotatably connected between a first preset position and a second preset position. The socket assembly comprises a live wire socket and a neutral wire socket, and the live wire socket and the neutral wire socket are installed in the socket cavity. When the socket assembly is in the first preset position, the live wire socket approaches and connects to the live wire terminal. When the socket assembly is in the second preset position, the live wire socket moves away from the live wire terminal and disconnects. The wall switch socket provided by the present application is used to connect electrical appliances.
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Description

Technical Field

[0001] The invention relates to the technical field of sockets, and in particular to a wall switch socket. Background Art

[0002] With the development of society, various types of industrial electrical products tend to have more and more diversified functions. For the switch sockets installed on the wall, the socket module used to connect the electrical equipment and the switch module used to connect or disconnect the circuit are two separate functional components. In order for the socket module to have the switch function of connecting or disconnecting the circuit, an additional switch module needs to be installed in the junction box and connected to the switch module. The independent switch module will occupy an additional installation position of the junction box, which will reduce the efficiency of the installation space in the junction box. Summary of the invention

[0003] The invention provides a wall switch socket, aiming to solve the problem of low space utilization efficiency of the socket with a switch function during installation.

[0004] To achieve the above object, the embodiments of the present invention adopt the following technical solutions:

[0005] Some embodiments of the present application provide a wall switch socket, including a face frame, a rocker assembly and a socket assembly. The face frame is used for positioning and installing the wall switch socket, and the face frame has a mounting hole. Along the first straight line direction, one end of the rocker assembly is close to the mounting hole and connected to the face frame, and the first straight line direction is the opening direction of the mounting hole. The rocker assembly has a mounting cavity, and the mounting cavity is provided with a mounting opening on one side close to the face frame along the first straight line direction. The rocker assembly includes a live wire terminal located in the mounting cavity. The socket assembly is inserted into the mounting cavity through the mounting opening, and the socket assembly and the rocker assembly are rotatably connected between a first preset position and a second preset position. The socket assembly has a socket cavity and a plurality of socket holes connected to the socket cavity. The socket assembly includes a live wire socket and a neutral wire socket, which are installed in the socket cavity and are used to connect the plug through the plurality of socket holes. When the socket assembly is in the first preset position, the live wire socket is close to and connected to the live wire terminal. When the socket assembly is in the second preset position, the live wire socket is away from the live wire terminal and disconnected.

[0006] Therefore, in the wall switch socket provided by the embodiment of the present application, the socket assembly can rotate relative to the seesaw assembly between a first preset position and a second preset position. That is, when the socket assembly is in the first preset position, the socket assembly and the seesaw assembly can maintain an electrical connection state through the live wire socket and the live wire terminal. When the socket assembly is in the second preset position, the live wire socket and the live wire terminal are far from disconnected, so that the socket assembly is disconnected from the seesaw assembly and is in an open circuit state. In this way, by rotating the socket assembly, the socket assembly can be controlled to maintain an electrical connection or be in a disconnected state, which is convenient for the operation and control of the socket assembly. In addition, since the socket assembly and the seesaw assembly can be distributed and connected along the first direction, for the wall switch socket, the seesaw assembly used to realize the on-off function of the socket assembly will not occupy additional installation space, thereby improving the compactness of the wall switch socket structure and facilitating the space utilization efficiency of the wall switch socket. BRIEF DESCRIPTION OF THE DRAWINGS

[0007] Figure 1 A schematic diagram of an exploded structure of a wall switch socket provided in an embodiment of the present application;

[0008] Figure 2 for Figure 1 A schematic diagram of an exploded structure of the face frame shown in ;

[0009] Figure 3 for Figure 1 An exploded structural schematic diagram of a seesaw assembly shown in ;

[0010] Figure 4 A schematic diagram of a three-dimensional structure of a seesaw assembly and a mounting frame connected and installed according to an embodiment of the present application;

[0011] Figure 5 for Figure 4 A local enlarged schematic diagram of the middle A;

[0012] Figure 6 for Figure 3 A schematic diagram of a three-dimensional structure of the base shown in ;

[0013] Figure 7 for Figure 3 A three-dimensional schematic diagram of the internal structure of the seesaw cavity shown in ;

[0014] Figure 8 for Figure 7 A schematic diagram of a three-dimensional structure in which the live wire terminal, the neutral wire terminal and the ground wire terminal are installed in the rocker cavity;

[0015] Fig. 9 for Figure 1 An exploded structural schematic diagram of a socket assembly shown in ;

[0016] Fig.10 for Figure 1 An exploded structural schematic diagram of the socket assembly and the rocker assembly shown in ;

[0017] Fig.11 for Figure 1 Another exploded structural schematic diagram of the socket assembly shown in ;

[0018] Fig.12 A right side cross-sectional view of a wall switch socket provided in an embodiment of the present application;

[0019] Fig.13 A right side cross-sectional view of another wall switch socket provided in an embodiment of the present application;

[0020] Fig.14 A schematic diagram of the relative positions of the transition piece provided in the embodiment of the present application with the live wire seesaw piece and the neutral wire seesaw piece when the transition piece is in the first preset position;

[0021] Fig.15 The wall switch socket provided in the embodiment of the present application includes an exploded view of two socket assemblies and two rocker assemblies;

[0022] Fig.16 The socket assembly provided in the embodiment of the present application includes an exploded view of a protective door assembly.

[0023] Description of reference numerals:

[0024] 100-Wall switch socket;

[0025] 1-face frame; 11-installation frame; 12-decorative panel; 13-installation hole; 14-connection through hole; 15-clamping rib; 16-limiting block; 17-limiting groove;

[0026] 2-rocker assembly; 21-separator; 22-base; 23-installation cavity; 231-transition cavity; 232-rocker cavity; 24-installation opening; 25-separation clamping structure; 251-limiting protrusion; 252-elastic clamping member; 261-first through hole; 262-second through hole; 27-base clamping structure; 271-base clamping hole; 272-base hook; 281-plug hole; 282-operation hole; 283-base positioning groove; 284-rotating shaft hole; 285-avoidance groove; 291-live wire terminal; 292-live wire rocker piece; 293-live wire connector; 294-neutral wire terminal; 295-neutral wire rocker piece; 296-neutral wire connector; 297-ground wire terminal; 298-live wire rocker terminal; 299-neutral wire rocker terminal;

[0027] 3-socket assembly; 31-transition piece; 32-socket panel; 33-socket opening; 34-socket cavity; 351-socket hole; 352-live wire socket; 353-neutral wire socket; 354-ground wire socket; 36-transition clamping structure; 361-transition hook; 362-transition clamping hole; 371-rotating shaft; 372-third through hole; 373-fourth through hole; 374-positioning blind hole; 38-positioning assembly; 381-positioning piece; 382-positioning column; 383-threaded terminal; 384-positioning threaded hole; 385-positioning through hole; 39-protective door assembly;

[0028] 4-pin assembly; 41-spring; 42-sliding pin. DETAILED DESCRIPTION

[0029] The following will be combined with the drawings in the embodiments of the present application to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application.

[0030] In the description of this application, it should be understood that the terms "upper", "lower", "left", "right", "front", "back", "inside", "outside", etc. indicate directions or positional relationships based on the directions or relative positional relationships shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific direction, be constructed and operated in a specific direction, and therefore cannot be understood as a limitation on this application. Unless otherwise specified, the above-mentioned directional description can be flexibly set in the process of actual application under the condition that the relative positional relationship shown in the accompanying drawings is met.

[0031] The terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of the features. In the description of this application, unless otherwise specified, "plurality" means two or more.

[0032] It should be noted that in actual applications, due to the limitations of equipment accuracy or installation errors, absolute parallel or perpendicular effects are difficult to achieve. In this application, the description of perpendicularity, parallelism or co-direction is not an absolute limiting condition, but means that a perpendicular or parallel structural setting can be achieved within a preset error range (such as an upper and lower deviation of 5°) and the corresponding preset effect can be achieved. In this way, the technical effect of the defined feature can be maximized, and the corresponding technical solution is easy to implement and has high feasibility.

[0033] In the description of this application, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", "connected", and "connected" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection. It can be directly connected, or indirectly connected through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in this application can be understood according to specific circumstances.

[0034] In the present application, the terms "comprises", "comprising" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, article or device including a series of elements includes not only those elements, but also includes other elements not explicitly listed, or also includes elements inherent to such process, article or device. In the absence of further restrictions, an element defined by the sentence "comprising a ..." does not exclude the presence of other identical elements in the process, article or device including the element.

[0035] In the embodiments of the present application, words such as "exemplarily" or "for example" are used to indicate examples, illustrations or explanations. Any embodiment or design described as "exemplarily" or "for example" in the embodiments of the present application should not be interpreted as being more preferred or more advantageous than other embodiments or designs. Specifically, the use of words such as "exemplarily" or "for example" is intended to present related concepts in a specific way.

[0036] The present application embodiment provides a wall switch socket, such as Figure 1 As shown, the wall switch socket 100 may include a face frame 1, a rocker assembly 2 and a socket assembly 3. The face frame 1 may be used to connect and install with a wiring base box (not shown in the figure) by screws, thereby realizing the positioning and installation of the wall switch socket 100. The rocker assembly 2 may be connected and installed with the face frame 1, and the socket assembly 3 may be directly connected with the rocker assembly 2, thereby realizing the connection and installation of various structural components of the wall switch socket 100.

[0037] For example, Figure 2 As shown, Figure 2 for Figure 1An exploded structural schematic diagram of the face frame 1 shown in . The face frame 1 may include a mounting frame 11 and two decorative panels 12, with the two decorative panels 12 being located on one side of the mounting frame 11 as the front, the two decorative panels being spaced apart in the left-right direction, and the other direction being the up-down direction as an example. A mounting hole 13 is provided in the middle of the mounting frame 11 behind the decorative panel 12 along the front-to-back direction (i.e., the first straight line direction) to facilitate the installation and connection of the rocker assembly 2. Among them, at least one connecting through hole 14 may be opened downward on the left edge of the mounting frame 11, and at least one connecting through hole 14 may be opened downward on the right edge of the mounting frame 11 to facilitate the connection of the mounting frame 11 and the junction box by screws, thereby realizing the positioning and installation of the wall switch socket 100. Alternatively, a plurality of connecting through holes 14 may also be opened on the upper and lower edges of the mounting frame 11, respectively, without limitation.

[0038] Continue to refer to Figure 2 The left decorative panel 12 can be buckled and installed with the left edge of the installation frame 11 from front to back, and the corresponding right decorative panel 12 can also be buckled and installed with the right edge of the installation frame 11 from front to back. In this way, the connection structure on the left and right sides of the installation frame 11 can be shielded by the two decorative panels 12, so that the face frame 1 can have a better decorative appearance.

[0039] The decorative panel 12 and the installation frame 11 can be installed by a snap-fit ​​structure to facilitate the removal and installation of the decorative panel 12. In addition, the decorative panel 12 and the installation frame 11 can also be connected by bonding, which has a simple structure.

[0040] In some other embodiments, the two decorative panels 12 may also be connected to form an integral structure through decorative ribs. For example, there may be two decorative ribs, one of which may be arranged near the upper side of the decorative panel 12, the left end of which may be connected to the upper end of the right edge of the left decorative panel 12, and the right end of which may be connected to the upper end of the left edge of the right decorative panel 12. Another decorative rib may be arranged near the lower side of the decorative panel 12, the left end of which may be connected to the lower end of the right edge of the left decorative panel 12, and the right end of which may be connected to the lower end of the left edge of the right decorative panel 12. In this way, through the connection of the decorative ribs, the decorative panels 12 may be installed or removed at one time during the process of installing or removing them.

[0041] In some embodiments, reference Figure 3 , Figure 3 for Figure 1, a schematic diagram of an exploded structure of a seesaw assembly 2 is shown in FIG. The seesaw assembly 2 may include a partition 21 and a base 22, and an installation cavity 23 is formed inside the seesaw assembly 2. The installation cavity 23 may include a transition cavity 231 and a seesaw cavity 232 that are separated and arranged, so that a transition cavity 231 having an installation opening 24 on the front side may be formed in the partition 21 located in front of the base 22, and the installation opening 24 is used to connect the transition cavity 231. Correspondingly, the rear end of the partition 21 may be connected to the base 22, and a seesaw cavity 232 may be formed between the two, that is, the transition cavity 231 and the seesaw cavity 232 may be separated by the rear bottom wall of the partition 21 in the front and rear directions. The space of the seesaw cavity 232 may be mainly formed by the front end of the base 22 being recessed backward, or may be mainly formed by the rear end of the partition 21 being recessed forward, or the front and rear of the base 22 and the rear end of the partition 21 may be recessed at the same time to form the seesaw cavity 232, and this is not limited.

[0042] Continue to refer to Figure 3 The seesaw assembly 2 may further include a plurality of partitioning and clamping structures 25, so that the seesaw assembly 2 may be connected to the mounting frame (such as Figure 2 As shown in the figure, the partitioning clamping structure 25 is installed by clamping. Each partitioning clamping structure 25 may include a limiting protrusion 251 and an elastic clamping member 252. Take the case where two partitioning clamping structures 25 are installed on the upper and lower sides of the partition 21. The two limiting protrusions 251 and the two elastic clamping members 252 can be located above the partition 21 and connected to the position of the partition 21 near the front end, and the two limiting protrusions 251 can also be spaced apart in the left and right directions. Another two limiting protrusions 251 can be located below the partition 21 and connected to the position of the partition 21 near the front end, and the two limiting protrusions 251 can also be spaced apart in the left and right directions.

[0043] Among them, Figure 3 As shown, on the upper side of the separator 21, two elastic clips 252 can be located between the two limiting protrusions 251 along the left-right direction and spaced apart. The two elastic clips 252 can also be spaced apart along the left-right direction, and the two limiting protrusions 251 can be located between the two elastic clips 252 along the left-right direction. The two elastic clips 252 can be located behind the two limiting protrusions 251, and the rear end of each elastic clip 252 can be connected to the separator 21, and the front end of each elastic clip 252 extends forward, so that the front ends of the two elastic clips 252 and the rear ends of the two limiting protrusions 251 are spaced apart in the front-to-back direction. Each elastic clip 252 and the separator 21 have a reset gap in the up-down direction, and the reset gap between each elastic clip 252 and the separator 21 gradually increases from the back to the front. Correspondingly, two partitioning clamping structures 25 symmetrically distributed with the upper side can be installed on the lower side of the separator 21.

[0044] Based on this, Figure 4 As shown, the face frame 1 may also include two snap-fit ​​ribs 15, with the side wall of the mounting frame 11 close to the mounting hole 13 as the inner wall, one snap-fit ​​rib 15 may be close to the inner wall located above and connected to the mounting frame 11, and the other snap-fit ​​rib 15 may be close to the inner wall located below and connected to the mounting frame 11, and both snap-fit ​​ribs 15 may extend in the left-right direction. In this way, when the partition 21 is inserted into the mounting hole 13 from front to back, the partition 21 may be inserted into the mounting hole 13 from front to back. Figure 5 , Figure 5 for Figure 4 A partial enlarged schematic diagram at A in the middle. Along the front-to-back direction, the two elastic clamps 252 above the partition 21 and the two limiting protrusions 251 can be clamped to accommodate a clamping rib 15 located above. Correspondingly, along the front-to-back direction, the two elastic clamps 252 located below the partition 21 and the two limiting protrusions 251 can be clamped to accommodate a clamping rib 15 located below. In this way, through the limiting clamping of the partition clamping structure 25 and the clamping rib 15, the freedom of the partition 21 in the front-to-back direction relative to the installation frame 11 can be limited, that is, the rocker assembly 2 is prevented from moving forward or backward relative to the face frame 1.

[0045] It should be noted that, since the reset gap between each elastic clip 252 and the partition 21 in the vertical direction gradually increases from back to front, that is, the front end of the elastic clip 252 can approach the partition 21 in the vertical direction under the action of the extrusion force until all the elastic clips 252 are not in contact with the two clamping ribs 15, so that the rocker assembly 2 can be taken out from the mounting hole 13 from back to front, that is, the rocker assembly 2 is detachably connected to the mounting frame 11. In addition, due to the existence of the above reset gap, the distance between the upper side wall of the upper elastic clip 252 and the lower side wall of the lower elastic clip 252 can also gradually increase from back to front, so as to facilitate the insertion and alignment of the partition 21 with the mounting hole 13 from front to back.

[0046] In order to limit the freedom of the partition 21 and the mounting frame 11 in the left and right directions, continue to refer to Figure 5 The face frame 1 may also include a plurality of limit blocks 16. The front side of each snap-in rib 15 may be connected to a plurality of limit blocks 16 respectively. The plurality of limit blocks 16 connected to each snap-in rib 15 may be spaced apart in the left-right direction, and a limit groove 17 may be formed between two adjacent limit blocks 16. In the left-right direction, the width of each limit groove 17 may be equal to the width of each limit protrusion 251, or slightly larger than the width of the limit protrusion 251. In this way, each limit protrusion 251 snapped to the front side of the snap-in rib 15 may be located exactly in one limit groove 17, and the freedom of the limit protrusion 251 in the left-right direction may be limited by two adjacent limit blocks 16, that is, the partition 21 may be prevented from shaking in the left-right direction relative to the mounting frame 11.

[0047] In addition, if Figure 5 As shown, in the up-down direction, the inner side wall of the mounting frame 11 can be contacted and limited with the upper or lower end surface of the limiting protrusion 251 and the elastic clamp 252 to prevent the partition 21 from shaking in the up-down direction relative to the mounting frame 11, so as to facilitate the insertion and installation of the partition 21 from front to back, or the removal and replacement of the partition from back to front. The partition 21 can also be prevented from shaking in the up-down direction relative to the mounting frame 11 by the contact and limitation between the lower side surface of the upper clamping rib 15 and the upper side wall of the partition 21, and the contact and limitation between the upper side surface of the lower clamping rib 15 and the lower side wall of the partition 21.

[0048] Based on the clamping installation method between the partition 21 and the installation frame 11 in the above embodiment, if the number of the partition 21 is one, the relative installation position of the partition 21 and the face frame 11 in the left-right direction can be adjusted by adjusting the different positions of the limiting protrusion 251 inserted into the limiting groove 17. In addition, if the number of the partition 21 is multiple, the multiple partitions 21 can be arranged in sequence along the left-right direction, and each limiting protrusion 251 can be inserted into the corresponding limiting groove 17, and the elastic clamp 252 can be clamped and limited with the rear side of the clamping rib 15. Among them, the installation gap between adjacent partitions 21 can be adjusted by adjusting the different positions of the limiting protrusion 251 on each partition 21 inserted into the limiting groove 17, such as close installation or interval installation, which is very convenient.

[0049] In some other embodiments, a mounting ear may be connected to the upper side wall of the partition 21, and a mounting ear may be correspondingly connected to the lower side wall of the partition 21. In the front-to-back direction, the mounting ear above the partition 21 may have an overlapping area with the upper edge of the mounting frame 11, and the mounting ear below the partition 21 may have an overlapping area with the lower edge of the mounting frame 11. In this way, a detachable connection between the partition 21 and the mounting frame 11 may be achieved by punching holes in the overlapping area and connecting the mounting ear and the mounting frame 11 by screws. In addition, the mounting ear and the mounting frame 11 may be bonded by glue or hot melt to achieve a non-detachable connection between the partition 21 and the mounting frame 11.

[0050] At the rear end of the rocker assembly 2, continue to refer to Figure 3, the rear end of the separator 21 and the base 22 can be installed through a detachable connection structure. Exemplarily, the seesaw assembly 2 can also include a base clamping structure 27, which can include a plurality of base clamping holes 271 and a plurality of base clamping hooks 272 corresponding to the plurality of base clamping holes. Among them, along the left and right directions, two base clamping holes 271 can be respectively opened on the two opposite side walls of the base 22, that is, there are four base clamping holes 271 in total, and a base clamping hook 272 can also be installed on the left and right walls of the separator 21 corresponding to one base clamping hole 271. In this way, after the lower end of the separator 21 is inserted into the seesaw cavity 232 of the base 22, one base clamping hook 272 can be correspondingly clamped with one base clamping hole 271, thereby realizing a detachable clamping installation between the base 22 and the separator 21, which is convenient for the disassembly and installation between the base 22 and the separator 21.

[0051] In addition, the installation position of the base clamping structure 27 can also be adjusted accordingly, such as opening a base clamping hole 271 at the lower end of the partition 21, and installing a base hook on the side wall of the base 22 corresponding to a base clamping hole 271, which can also realize the clamping installation between the base 22 and the partition 21, that is, the two can be detachably connected.

[0052] For the base 22, if Figure 6 As shown, at least one wire insertion hole 281 is provided on the rear side wall of the base 22 for inserting at least one of the live wire, the neutral wire and the ground wire and connecting with it. In addition, at least one operation hole 282 can be provided on the upper, lower, left or right side wall of the base, through which the live wire, the neutral wire and the ground wire can be squeezed and connected.

[0053] Among them, Figure 6 As shown, a plurality of base positioning grooves 283 are also provided in the seesaw cavity 232 of the base 22. Figure 7The seesaw assembly 2 may also include a live wire terminal 291, a live wire seesaw member 292, a live wire connector 293, a neutral wire terminal 294, a neutral wire seesaw member 295, a neutral wire connector 296, and a ground wire terminal 297 installed in the seesaw cavity 232. Exemplarily, one end of the live wire connector 293 may be connected to the live wire terminal 291, and the other end of the live wire connector 293 may be supported on the rear side of the live wire seesaw member 292, so that the live wire seesaw member 292 may rotate around an axis parallel to the left and right directions. Correspondingly, one end of the neutral wire connector 296 may be connected to the neutral wire terminal 294, and the other end of the neutral wire connector 296 may be supported on the rear side of the neutral wire seesaw member 295, so that the neutral wire seesaw member 295 may rotate around an axis parallel to the left and right directions. And the ground wire terminal 297 may be located at or above the connector 293 and the neutral wire connector 296. In addition, the seesaw assembly 2 may further include a live seesaw terminal 298 and a neutral seesaw terminal 299. The live seesaw terminal 298 may be connected to the lower end of the live seesaw member 292 and located at the front side of the live seesaw member 292, which is beneficial to increase the contact area of ​​the live seesaw member 292. Correspondingly, the neutral seesaw terminal 299 may be connected to the lower end of the neutral seesaw member 295 and located at the front side of the neutral seesaw member 295, which is beneficial to increase the contact area of ​​the neutral seesaw member 295. In the up-down direction, the live seesaw terminal 298 and the neutral seesaw terminal 299 may be arranged close to the same side of the seesaw cavity 232.

[0054] When the above structure is installed in the seesaw cavity 232, Figure 6 As shown, the number of the plug hole 281 and the number of the operation hole 282 can both be three. Figure 8 , the wiring hole (not shown in the figure) of the ground wire terminal 297 can be aligned with a plug hole 281 above, and the wiring screw (not shown in the figure) of the ground wire terminal 297 can be aligned with an operating hole 282 located above, so as to facilitate the connection with the external ground wire through the ground wire terminal 297. The wiring hole (not shown in the figure) of the live wire terminal 291 can be aligned with a plug hole 281 on the right side below, and the wiring screw (not shown in the figure) of the live wire terminal 291 can be aligned with an operating hole 282 on the right side below, so as to facilitate the connection with the external live wire through the live wire terminal 291. And the wiring hole (not shown in the figure) of the neutral wire terminal 294 can be aligned with a plug hole 281 on the left side below, and the wiring screw (not shown in the figure) of the neutral wire terminal 294 can be aligned with an operating hole 282 on the left side below, so as to facilitate the connection with the external neutral wire through the neutral wire terminal 294. The installation positions of the ground wire terminal 297, the live wire terminal 291 and the neutral wire terminal 294 may also be swapped in the up and down directions, and there is no limitation to this.

[0055] Since the two base positioning grooves 283 are arranged close to the two lower wire insertion holes 281, the live wire terminal 291 can be limitedly supported through the right wire insertion hole 281, and the neutral wire terminal 294 can be limitedly supported through the left wire insertion hole 281. In addition, a plurality of support and limiting structures close to the live wire seesaw 292 and the neutral wire seesaw 295 are also provided in the seesaw cavity 232, which improve the rotation stability of the live wire seesaw 292 and the neutral wire seesaw 295 without affecting the live wire seesaw 292 and the neutral wire seesaw 295.

[0056] After the base 22 is connected and installed with the partition 21, the live wire terminal 291, the live wire connector 293, the neutral wire terminal 294, the neutral wire connector 296 and the ground wire terminal 297 can also be squeezed and positioned by the rear end surface of the partition 21. Figure 4 The rear side wall of the partition 21 can also be provided with two first through holes 261 and one second through hole 262 connected to the transition cavity 231, and the second through hole and the two first through holes 261 can also be connected to the seesaw cavity 232. In this way, the ground wire terminal 297 can be connected to the socket assembly 3 (such as Figure 1 Along the front-to-back direction, the first through hole 261 on the left can avoid the neutral line seesaw 295, and the first through hole on the right can avoid the live line seesaw 292, so as to avoid the setting of the partition 21 from affecting the rotation of the live line seesaw 292 and the neutral line seesaw 295.

[0057] In some other embodiments, the seesaw assembly 2 may also form an installation cavity 23 with an installation opening 24 on the front side in the partition 21. That is, the seesaw assembly 2 does not need to additionally set up a base 22 and a seesaw cavity 232 located in the base 22. It is only necessary to arrange the structures in the seesaw cavity 232, such as the live wire terminal 291, the live wire seesaw member 292 and the live wire connector 293, the corresponding plug-in holes 281 and the operating holes 282, and the supporting and fixing structures in the installation cavity 23 and set them back. The structures corresponding to the original transition cavity 231 can be directly set in the installation cavity 23 corresponding to the above structures, and the structure is simple. In addition, the neutral wire terminal 294, the neutral wire seesaw member 295, the neutral wire connector 296, the ground wire terminal 297 and other structures also need to be installed in the corresponding positions in the installation cavity 23.

[0058] Since the wall switch socket 100 provided in the embodiment of the present application also includes a socket assembly 3, such as Fig. 9As shown, the socket assembly 3 may further include a transition piece 31 and a socket panel 32. A socket cavity 34 having a socket opening 33 on the front side may be formed in the transition piece 31, and a plurality of socket holes 351 may be provided on the corresponding socket panel 32, and the socket panel 32 may approach the socket opening from front to back and be connected to the transition piece 31, so that the plurality of socket holes 351 may be connected to the socket cavity 34, and the socket panel 32 may be used to cover and shield the transition piece 31 while blocking the socket opening 33.

[0059] For example, the socket panel 32 and the transition piece can be connected in a detachable mounting manner, and further reference is made to Fig. 9 , the socket assembly 3 may also include a transition snap-in structure 36, which may include a plurality of transition snap-in structures 361 and a plurality of transition snap-in holes 362, and the plurality of transition snap-in structures 361 and the plurality of transition snap-in holes 362 are snap-in one by one. Take the number of transition snap-in hooks 361 and transition snap-in holes 362 as an example, both of which are four. Two transition snap-in hooks 361 may be connected at the front position on the left side of the transition piece 31, and the two transition snap-in hooks 361 may be spaced apart in the up-down direction. Another two transition snap-in hooks 361 may be installed at the front position on the right side of the transition piece 31, and the two transition snap-in hooks 361 may also be spaced apart in the up-down direction. In this way, a transition snap-in hole 362 may be respectively opened on the left and right sides of the socket panel 32 corresponding to each transition snap-in hook 361. In this way, the snap-in installation of the socket panel 32 and the transition piece 31 may be realized by snap-in cooperation between each transition snap-in hook 361 and a transition snap-in hole 362, that is, the detachable installation. This facilitates the installation and disassembly between the socket panel 32 and the transition piece 31.

[0060] It should be noted that a transition card hole can also be opened on the transition piece 31, and a transition card hook can be installed on the socket panel 32 corresponding to each transition card hole, so that the socket panel 32 and the transition piece 31 can also be connected and installed. The number of transition card hooks 361 and transition card holes 362 only needs to meet the connection strength between the socket panel 32 and the transition piece 31, and there is no limitation on this. In addition, the socket panel 32 and the transition piece 31 can also be directly bonded by glue or hot melt, that is, the connection is not detachable, and the structure is simple.

[0061] In some embodiments, Fig. 9As shown, the socket assembly 3 may also include two rotating shafts 371, one of which may be connected to the left side of the transition piece 31. For example, the rotating shaft 371 on the left side may be located between the two transition hooks 361 along the up-down direction, and may be installed close to the front end of the transition piece 31. In addition, another rotating shaft 371 may be connected to the right side of the transition piece 31. For example, the rotating shaft 371 on the right side may be located between the two transition hooks 361 along the up-down direction, and may be installed close to the front end of the transition piece 31. The axes of the two rotating shafts 371 are collinear and may be parallel to the left-right direction (i.e., the second straight line direction).

[0062] Based on the above structure, Fig.10 As shown, the rear end of the socket assembly 3 connected by the transition piece 31 and the socket panel 32 can be inserted into the transition cavity 231 from front to back through the installation opening 24. On the left and right sides of the transition piece 31, a shaft hole 284 can be opened corresponding to each shaft 371, so that a shaft 371 on the left side can be inserted into a shaft hole 284 on the left side from right to left, and a shaft 371 on the right side can be inserted into a shaft hole 284 on the right side from left to right. In this way, the socket assembly 3 can rotate relative to the transition piece 21 (i.e., the rocker assembly 2) around an axis parallel to the left and right directions. In this process, since the transition clamping hole 362 is opened on the ear plate connected to the rear of the socket panel 32, in order to avoid the left and right side walls of the partition 21 from contacting the ear plate to prevent the transition piece 31 from continuing to rotate, a avoidance groove 285 can be opened at the upper end of the left and right side walls of the partition 21, corresponding to each ear plate, so as to avoid the left and right side walls of the partition 21 from hindering the rotation of the socket assembly 3.

[0063] It should be noted that a shaft hole can also be provided at the position of the transition piece 31 corresponding to the two shafts 371. In this way, the shaft can be connected to the shaft hole on the left side corresponding to the right side of the left side wall of the partition 21, and the shaft can be connected to the shaft hole on the right side corresponding to the left side of the right side wall of the partition 21. In addition, two threaded holes can also be provided at the position of the transition piece 31 corresponding to the two shafts 371, so that after aligning the threaded holes and the shaft holes 284, a screw can pass through the shaft hole 284 on the left side from left to right and connect to the corresponding threaded hole on the left side, and another screw can pass through the shaft hole 284 on the right side from right to left and connect to the corresponding threaded hole on the right side. Both of the above methods can realize the rotational connection between the transition piece 31 and the partition 21, and the present application does not limit this.

[0064] The socket assembly 3 provided in the embodiment of the present application is used to connect a plug, such as a two-pole plug and a three-pole plug, through a plurality of socket holes 351. Fig.11As shown, the socket assembly 3 may also include a live wire socket 352, a neutral wire socket 353, and a ground wire socket 354. The live wire socket 352, the neutral wire socket 353, and the ground wire socket 354 may be installed in the socket cavity 34 (such as Fig. 9 As shown), in this way, a two-pole plug can be inserted into the socket cavity 34 through two socket holes 351 and connected to the live wire socket 352 and the neutral wire socket 353, and a three-pole plug can be inserted into the socket cavity 34 through three socket holes 351 and connected to the live wire socket 352, the neutral wire socket 353 and the ground wire socket 354 at the same time.

[0065] The live wire socket 352, the neutral wire socket 353 and the ground wire socket 354 in the socket cavity 34 can be positioned and installed in a variety of ways, such as being fixed in the socket cavity 34 by glue or hot melt bonding, being fastened in the socket cavity 34 by screws, or being installed in the socket cavity 34 by a snap-fit ​​positioning structure.

[0066] In addition, in some embodiments of the present application, Fig.11 As shown, the socket assembly 3 may further include a positioning assembly 38, which may be inserted into the socket cavity 34 from front to back and is used for positioning and installing the live wire socket 352, the neutral wire socket 353 and the ground wire socket 354. Exemplarily, the positioning assembly 38 may include a positioning member 381, which may be inserted into the socket cavity 34 from front to back (e.g., Fig. 9 The positioning member 381 can be arranged in a position corresponding to the plurality of socket holes 351, and can cooperate with the rear side wall of the transition piece 31 to squeeze the live wire socket 352, the neutral wire socket 353 and the ground wire socket 354, so as to realize the positioning installation of the live wire socket 352, the neutral wire socket 353 and the ground wire socket 354. In addition, the positioning member 381 can also be provided with a plurality of positioning through holes (not shown in the figure), and the plurality of positioning through holes can be arranged one by one corresponding to the plurality of socket holes 351, so as to be used for inserting and connecting the plug.

[0067] Continue to refer to Fig.11, the positioning assembly 38 may also include two positioning posts 382 and two threaded terminals 383. The front end of the positioning post 382 may be connected to the rear side wall of the positioning member 381, and a positioning threaded hole 384 may be provided at the rear end of each positioning post. The two threaded terminals 383 may be matched with the two positioning threaded holes in a one-to-one correspondence, so that one threaded terminal 383 may be inserted into one positioning threaded hole 384 from back to front, and connected to the positioning post 382 provided with the positioning threaded hole 384. In this way, one end of the live wire socket 352 may be located at the rear side of the positioning post 382 on the right side, and may be connected to the positioning post 382 on the left side through a threaded terminal 383, and one end of the corresponding neutral wire socket 353 may be located at the rear side of the positioning post 382 on the left side, and may be connected to the positioning post 382 on the right side through another threaded terminal 383. Thus, the positioning installation of the live wire socket 352 and the neutral wire 353 and the positioning member 381 is realized.

[0068] The ground wire socket 354 can be positioned and installed by the limiting structure on the rear side of the positioning member 381 and the positioning member, and after the positioning member is inserted into the socket cavity 34, it is extruded and installed between the positioning member 381 and the rear side wall of the transition member 31. The two positioning posts 382 can be spaced apart in the left-right direction, and the two positioning posts 382 can be located on the same side of the rotating shaft 371 in the up-down direction.

[0069] In some embodiments, Fig.11 As shown, the transition piece 31 may have two third through holes 372 along the front-to-back direction, so that the two third through holes 372 can communicate with the socket cavity 34 (such as Fig. 9 As shown in FIG. 1 , the two screw terminals 383 after installation can extend from the front to the back of the socket cavity 34 through the two third through holes 372. For example, the screw terminal 383 on the left can pass through the third through hole 372 on the left from the back to the front, so as to contact and connect the neutral line rocker 295 (as shown in FIG. 1 ). Figure 7 As shown). The screw terminal 383 on the right side can also pass through the third through hole 372 on the right side from back to front, so as to contact and connect the live wire rocker 292. In addition, the transition piece 31 can also be provided with a fourth through hole 373 along the front-to-back direction, that is, the fourth through hole 373 can be connected to the socket cavity 34, so that the ground wire socket 354 can be connected to a wire or other conductive member for connecting the ground wire terminal 297.

[0070] Continue to refer to Fig.11 Two blind positioning holes 374 may be provided on the rear side wall of the transition piece 31 from the rear to the front, and the two blind positioning holes 374 may be spaced apart in the left-right direction. The axes of the two blind positioning holes 374 are arranged close to each other in the up-down direction, and even the plane where the axes of the two blind positioning holes 374 are located may be perpendicular to the up-down direction.

[0071] Correspondingly, if Fig.12 As shown, Fig.12 The right side cross-sectional view of a wall switch socket 100 provided in an embodiment of the present application, at this time, the socket assembly 3 rotates to the first preset position relative to the seesaw assembly 2. The wall switch socket 100 may also include a pin assembly 4, and the pin assembly 4 may be arranged in a one-to-one correspondence with the positioning blind hole 374. The pin assembly 4 may include a spring 41 and a sliding pin 42, and the front end of the sliding pin 42 may be inserted into the positioning blind hole 374 on the right, and the spring 41 is squeezed and installed between the front end of the first sliding pin 42 and the front bottom wall of the positioning blind hole 374. In this way, when the socket assembly 3 (i.e., the transition piece 31) is in the first preset position, the live wire socket 352 can be moved backwards to the lower end of the live wire seesaw piece 292 through the threaded terminal 383 on the right, and can contact or even fit with the live wire seesaw terminal 298 installed at the lower end of the live wire seesaw piece 292. Combined with Figure 7 , the live wire socket 352 can maintain electrical connection with the live wire terminal 291 through the threaded terminal 383 on the right, the live wire seesaw terminal 298, the live wire seesaw component 292, and the live wire connecting component 293. Among them, the setting of the threaded terminal 383 and the live wire seesaw terminal 298 is conducive to increasing the contact area between the live wire socket 352 and the live wire seesaw component 292. In addition, at this time, the rear end of the sliding pin 42 can be squeezed and contacted with the upper end of the live wire seesaw component 292, so that the lower end of the live wire seesaw component 292 can move forward to approach the socket assembly 3 and can be in continuous contact with the threaded terminal 383 on the right. Fig.12 The socket assembly 3 is at the first preset position as the starting point, the socket assembly 3 can rotate clockwise, and the live wire seesaw 292 can rotate counterclockwise until the socket assembly 3 can rotate to Fig.13 The second preset position shown, that is, the socket assembly 3 and the rocker assembly 2 can be rotatably connected between the first preset position and the second preset position. When the socket assembly 3 rotates from the first preset position to the second preset position, the live wire socket 352 can move forward away from the live wire rocker terminal 298 at the lower end of the live wire rocker member 292 through the right-side threaded terminal 383 until the live wire socket 352 is disconnected from the live wire rocker member 292. When the socket assembly 3 is in the second preset position, the live wire socket 352 is completely disconnected from the live wire rocker member 292, thereby disconnecting the live wire socket 352 from the live wire terminal (such as Figure 7 At this time, the rear end of the sliding pin 42 can be pressed and contacted with the lower end of the live wire rocker 292, so that the lower end of the live wire rocker 292 can move backward away from the socket assembly 3 and maintain the disconnected state between the live wire rocker 292 and the live wire socket 352.

[0072] It should be noted that, in the embodiment of the present application, the ball assembly 4 may also be a rod-shaped structure or a sheet-shaped structure with elastic bending ability, such as a rubber rod or a metal spring. In this way, the front end of the ball assembly 4 can be inserted into the blind hole and the lower end of the ball assembly 4 can be pressed and contacted with the live wire seesaw 292. In addition, the front end of the ball assembly 4 with a rod-shaped or sheet-shaped structure can also be directly fixedly connected to the rear side wall of the transition piece 31, which can be bonded or installed by screw connection, and the two ends of the ball assembly 4 can also be pressed and contacted between the transition piece 31 and the live wire seesaw 292 or the neutral wire seesaw 295 along the front-to-back direction.

[0073] In some embodiments, Fig.14 As shown, Fig.14 The schematic diagram of the relative position of the transition piece 31 provided in the embodiment of the present application with the live wire seesaw piece and the neutral wire seesaw piece when the transition piece 31 is in the first preset position. The neutral wire seesaw piece 295 located on the left side has the same rotation state as the live wire seesaw piece 292 located on the right side. Therefore, when the transition piece 31 is in the first preset position, the neutral wire socket 353 (such as Fig.11 As shown in FIG. 1 , the threaded terminal 383 on the left side can be in contact with or even closely connected to the zero line seesaw terminal 299 at the lower end of the zero line seesaw member 295. Figure 7 The neutral wire socket 353 can maintain electrical connection with the neutral wire terminal 294 through the threaded terminal 383 on the left, the neutral wire rocker terminal 299, the neutral wire rocker member 295, and the neutral wire connector 296.

[0074] When the transition piece 31 is in the second preset position, the neutral line rocker terminal 299 and the neutral line rocker piece 295 move away from each other and are disconnected, so that the neutral line socket 353 and the neutral line terminal 294 remain disconnected.

[0075] It should be noted that, in the above embodiment, when the socket assembly 3 is in the second preset position, the live wire socket 352 and the neutral wire socket 353 are simultaneously kept in the disconnected state (i.e., disconnected connection), which is conducive to improving the safety of electricity use. However, in some other embodiments, the neutral wire connection sleeve 353 can also be set similarly to the ground wire socket 354, that is, the neutral wire connection sleeve 353 can be directly connected to the neutral wire terminal 294 in the seesaw cavity 232 through an external wire, without the need for additional components such as the neutral wire seesaw 295, and the structure is simple. In addition, the neutral wire terminal 294 and the ground wire terminal 297 can also be directly installed in the socket cavity 34. In this way, the neutral wire connection sleeve 353 can be directly connected to the external neutral wire through the neutral wire terminal 294, and the ground wire socket 354 can also be directly connected to the external ground wire through the ground wire terminal 297, and the structure is also simple.

[0076] In some embodiments, the live wire seesaw member 292 located in the seesaw cavity 232 or the installation cavity 23 can also be directly connected to the live wire terminal 291 for rotation. The live wire seesaw member 292 can also be installed by other structural supports so that the live wire seesaw member 292 can rotate around an axis parallel to the second straight line direction and be connected to the live wire terminal 291 through a wire. In this way, when the socket assembly 3 is in the first preset position, the live wire socket 352 can be connected to or even contact the live wire seesaw member 292 to conduct the live wire terminal 291. When the socket assembly 3 is in the second preset position, the live wire socket 352 is disconnected from the live wire seesaw member 292. The connection and installation method between the neutral wire seesaw member 295 and the neutral wire terminal 294 can also be adjusted accordingly with reference to the above embodiment.

[0077] In some other embodiments, it is also possible that the live wire seesaw 292 and the live wire connector 293 do not need to be installed in the seesaw cavity 232 or the installation cavity 23, and the installation position of the live wire terminal 291 can be adjusted accordingly. When the transition piece 31 is in the first preset position, the threaded terminal 383 on the right side can directly contact the live wire terminal 291 backward to achieve the electrical connection between the live wire socket 352 and the live wire terminal 291. It is also possible to correspondingly cancel the installation of the neutral wire seesaw 295 and the neutral wire connector 296 in the seesaw cavity 232 or the installation cavity 23, so that the threaded terminal 383 on the left side can directly contact the neutral wire terminal 294 backward to achieve the electrical connection between the neutral wire socket 353 and the neutral wire terminal 294. Similarly, the socket assembly 3 can be controlled by the seesaw assembly 2 to turn on or off the power supply.

[0078] Correspondingly, if the seesaw member is not installed in the seesaw cavity 232 or the installation cavity 23, the pin assembly 4 can be compressed and supported between the upper end of the transition member 31 and the partition member 21 in the front-to-back direction to continuously apply a force to rotate the transition member 31 toward the first preset position. When the transition member 31 is in the second preset position, the transition member 31 can be positioned by the snap-fit ​​structure to prevent the transition member 31 from rotating toward the first preset position, thereby maintaining the disconnected state of the socket assembly 3.

[0079] Among them, the live wire socket 352 can also be directly used to contact the live wire seesaw 292 or the live wire terminal 291. The corresponding neutral wire socket 353 can also be directly used to contact the neutral wire seesaw 295 or the neutral wire terminal 294, and the structure is simple. Alternatively, one of the threaded terminals 383 can be directly passed through the rear side wall of the transition piece from back to front and connected to the live wire socket 352 in the socket cavity 34, and the other threaded terminal 383 can also be directly passed through the rear side wall of the transition piece from back to front and connected to the neutral wire socket 353 in the socket cavity 34. In this way, there is no need to open an additional third through hole, and the structure is simple.

[0080] Based on this, in the wall switch socket 100 provided by the embodiment of the present application, the socket assembly 3 can rotate between the first preset position and the second preset position relative to the seesaw assembly 2. That is, when the socket assembly 3 is in the first preset position, the socket assembly 3 can maintain an electrical connection state with the seesaw assembly 2, and when the socket assembly 3 is in the second preset position, the socket assembly 3 can be disconnected from the seesaw assembly 2 to put the socket assembly 3 in an open circuit state. In this way, by rotating the socket assembly, the socket assembly 3 can be controlled to maintain an electrical connection or be in a disconnected state, which is convenient for the operation control of the socket assembly 3. In addition, since the socket assembly 3 and the seesaw assembly 2 can be distributed in the front-to-back direction, for the wall switch socket 100, the seesaw assembly 2 used to realize the on-off function of the socket assembly will not occupy additional installation space in the up-down and left-right directions, thereby improving the compactness of the structure of the wall switch socket 100 and facilitating the space utilization efficiency of the wall switch socket 100.

[0081] It should be noted that, taking a socket assembly 3 and a rocker assembly 2 connected in the front-to-back direction as a socket structure as an example, in the above embodiment, a socket structure can be installed in the mounting hole 13 of the mounting frame 11 in the left-right direction, or two, three, four or even more switch socket structures can be installed, and it is only necessary to adjust the structural dimensions of the mounting frame 11 in the left-right direction accordingly. For example, the 86-type mounting frame 11 can be installed with a socket structure, and the 118-type mounting frame can be installed with two, three or even four socket structures according to different width dimensions.

[0082] For example, Fig.15 As shown, Fig.15 The installation frame 11 can be the smallest 118-type installation frame 11, that is, the two seesaw assemblies 2 can be distributed in sequence along the left and right directions and connected to the installation frame 11, a seesaw assembly 2 on the left can be connected to a socket assembly 3 on the left, and a seesaw assembly 2 on the right can be connected to a socket assembly 3 on the right side.

[0083] In some embodiments, Fig.16 As shown, the socket assembly 3 may further include a protective door assembly 39, which may be installed between the positioning member 381 and the socket panel 32 (eg, Fig. 9As shown). A positioning through hole 385 is provided on the positioning member 381 corresponding to each socket hole 351. In this way, by setting the protective door assembly 39, the plug-in path between the socket hole 351 and the positioning through hole 385 can be blocked in the front-to-back direction, so as to avoid the risk of electric shock when foreign objects are directly inserted into the socket cavity 34 through the positioning through hole 385 from the socket hole 351 and contact with the live wire socket 352. However, since the protective door assembly 39 may include an elastic member 392 and a sliding baffle member 391, when the plug is inserted into the positioning through hole 385 from the socket hole 351, the force applied by the plug to the sliding baffle member 391 can make the sliding baffle member 391 slide upward or downward to leak out of the positioning through hole 385, so as to facilitate the plug to be inserted into the socket cavity 34 to contact the live wire socket 352, the neutral wire socket 353 and even the ground wire socket 354. When the plug is unplugged, the sliding baffle 391 can move and return to its original position under the action of the elastic member 392 to block the plugging path between the socket hole 351 and the positioning through hole 385. The present application does not limit the specific structure of the protective door assembly 39, as long as it can achieve the above effect.

[0084] In the embodiment of the present application, when the socket assembly 3 is used to connect a three-pole plug, the socket assembly 3 can be installed with a ground wire sleeve 354, and a ground wire terminal can be installed in the corresponding rocker assembly 2. If the socket assembly 3 is only provided with one or two two-pole sockets and is only used to connect a two-pole plug, there is no need to install a ground wire sleeve 354 in the socket assembly 3, and there is no need to install a ground wire terminal in the rocker assembly 2.

[0085] It should be noted that if Fig.16As shown, in the case where the socket assembly 3 is a socket module, the socket assembly 3 may further include a protective door assembly 39, which may be installed between the positioning member 381 and the socket panel 32 along the front-to-back direction. Since a positioning through hole 385 is provided on the positioning member 381 corresponding to each socket hole 351, the plug-in path between the socket hole 351 and the positioning through hole 385 may be blocked along the front-to-back direction by the provision of the protective door assembly 39, thereby avoiding the risk of electric shock when a foreign object is directly inserted from the socket hole 351 through the positioning through hole 385 into the socket cavity 34 and contacts the live wire socket 352. However, since the protective door assembly 39 may include an elastic member 392 and a sliding baffle member 391, when the plug is inserted from the socket hole 351 into the positioning through hole 385, the force applied by the plug to the sliding baffle member 391 may cause the sliding baffle member 391 to slide upward or downward to leak out of the positioning through hole 385, so as to facilitate the insertion of the plug into the socket cavity 34 to contact the live wire socket 352, the neutral wire socket 353 and even the ground wire socket 354. When the plug is unplugged, under the action of the elastic member 392, the sliding baffle member 391 may move and return to its original position to block the plug-in path between the socket hole 351 and the positioning through hole 385. The present application does not limit the specific structure of the protective door assembly 39, as long as it can achieve the above-mentioned effect.

[0086] In the description of this specification, specific features, structures, materials or characteristics may be combined in an appropriate manner in any one or more embodiments or examples.

[0087] The above is only a specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art can easily think of changes or substitutions within the technical scope disclosed by the present invention, which should be included in the protection scope of the present invention. Therefore, the protection scope of the present invention should be based on the protection scope of the claims.

Claims

1. A wall switch socket, It is characterized in that include: A face frame (1) used for positioning and installing the wall switch socket (100), and the face frame (1) has a mounting hole (13); A seesaw assembly (2), one end of the seesaw assembly (2) is close to the mounting hole (13) and connected to the face frame (1) along a first straight direction, the first straight direction being the opening direction of the mounting hole (13); the seesaw assembly (2) has a mounting cavity (23), and a mounting opening (24) is provided on one side of the mounting cavity (23) close to the face frame (1) along the first straight direction; the seesaw assembly (2) includes a live wire terminal (291) located in the mounting cavity (23); and, A socket assembly (3) is inserted into the installation cavity (23) through the installation opening (24), and the socket assembly (3) is rotatably connected to the rocker assembly (2) between a first preset position and a second preset position; the socket assembly (3) has a socket cavity (34) and a plurality of socket holes (351) connected to the socket cavity (34); the socket assembly (3) comprises a live wire socket (352) and a neutral wire socket (353), the live wire socket (352) and the neutral wire socket (353) are installed in the socket cavity (34), and are used to connect a plug through the plurality of socket holes (351); When the socket assembly (3) is in the first preset position, the live wire socket (352) is close to and connected to the live wire terminal (291); when the socket assembly (3) is in the second preset position, the live wire socket (352) is away from the live wire terminal (291) and disconnected.

2. The wall switch socket according to claim 1, It is characterized in that The socket assembly (3) further comprises: a transition piece (31) inserted into the installation cavity (23) through the installation opening (24) and rotatably connected to the rocker assembly (2) around an axis parallel to a second linear direction, wherein the second linear direction is perpendicular to the first linear direction; the transition piece (31) has the socket cavity (34), and a socket opening (33) is provided on one side of the socket cavity (34) close to the face frame (1) along the first linear direction; and, A socket panel (32) is provided with the plurality of socket holes (351); the socket panel (32) is close to the socket opening (33) along the first straight line direction and connected to the transition piece (31), and the socket panel (32) is used to cover the transition piece (31).

3. The wall switch socket according to claim 2, It is characterized in that The installation cavity (23) comprises a seesaw cavity (232) and a transition cavity (231), and the seesaw assembly (2) further comprises: A partition (21) connected to the face frame (1), a transition cavity (231) being formed in the partition (21), the transition cavity (231) having a mounting opening (24) connected to the transition cavity (231) on a side of the transition cavity (231) close to the face frame (1) along the first straight line direction, and the partition (21) having a first through hole (261) connected to the transition cavity (231) along the first straight line direction; the transition cavity (31) being located in the transition cavity (231) and being rotatably connected to the partition (21) around an axis parallel to the second straight line direction; and, A base (22), one end of the partition (21) away from the face frame (1) along the first straight line direction is connected to the base (22), and the seesaw cavity (232) is formed between the base (22) and the partition (21), and the partition (21) separates the transition cavity (231) and the seesaw cavity (232) along the first straight line direction; the live wire terminal (291) is installed in the seesaw cavity (232).

4. The wall switch socket according to claim 2, It is characterized in that The rocker assembly (2) comprises a partition (21), the partition (21) having the mounting cavity (23), and the transition piece (31) is rotatably connected to the partition (21) around an axis parallel to the second straight line direction; The live wire connection terminal (291) is located in the installation cavity (23), and the live wire connection terminal (291) is arranged away from the face frame (1) along the first straight line direction.

5. The wall switch socket according to any one of claims 1 to 4, It is characterized in that The seesaw assembly (2) further comprises a live wire seesaw component (292), the live wire seesaw component (292) being located in the installation cavity (23) and being rotatably installed, and the live wire seesaw component (292) being connected to the live wire connection terminal (291); When the socket assembly (3) is in the first preset position, the live wire socket (352) is connected to the live wire seesaw piece (292); when the socket assembly (3) is in the second preset position, the live wire socket (352) is disconnected from the live wire seesaw piece (292).

6. The wall switch socket according to claim 5, It is characterized in that It also includes a ball assembly (4), two ends of which are respectively in compression contact with the socket assembly (3) and the live wire seesaw piece (292); The rocker assembly (2) further comprises a live wire connector (293), wherein the live wire connector (293) and the live wire rocker member (292) are installed in the installation cavity (23), one end of the live wire connector (293) is connected to the live wire terminal (291), and the live wire rocker member (292) is rotatably connected to the other end of the live wire connector (293); The socket assembly (3) and the live wire seesaw component (292) rotate in opposite directions; when the socket assembly (3) rotates relative to the seesaw component (2) in a direction close to the first preset position, along the first straight line direction, the live wire socket (352) approaches and connects to one end of the live wire seesaw component (292), and one end of the pin assembly (4) close to the live wire socket (352) away from the face frame (1) along the first straight line direction is supported on the other end of the live wire seesaw component (292).

7. The wall switch socket according to claim 6, It is characterized in that The seesaw assembly (2) further comprises a neutral line seesaw member (295), a neutral line connector (296) and a neutral line terminal (294) installed in the installation cavity (23); one end of the neutral line connector (296) is connected to the neutral line terminal (294), and the neutral line seesaw member (295) is rotatably connected to the other end of the neutral line connector (296); The number of the ball assemblies (4) is two, and along the first straight line direction, two ends of one of the ball assemblies (4) are respectively in press contact with the socket assembly (3) and the live wire seesaw piece (292), and two ends of the other ball assembly (4) are respectively in press contact with the socket assembly (3) and the neutral wire seesaw piece (295); The socket assembly (3) and the neutral line seesaw component (295) rotate in opposite directions; when the socket assembly (3) rotates relative to the seesaw component (2) in a direction close to the first preset position, along the first straight line direction, the neutral line socket (353) approaches and connects to one end of the neutral line seesaw component (295), and the other end of the ball assembly (4) close to the neutral line socket (353) and away from the face frame (1) along the first straight line direction is supported on the other end of the neutral line seesaw component (295).

8. The wall switch socket according to claim 7, It is characterized in that In the case where the socket assembly (3) includes a transition piece (31); Along the first straight line direction, two positioning blind holes (374) are provided on a side of the transition piece (31) away from the face frame (1), the two positioning blind holes (374) correspond one-to-one to the two ball assemblies (4), and one end of one ball assembly (4) close to the face frame (1) is inserted into one of the positioning blind holes (374).

9. The wall switch socket according to claim 8, It is characterized in that The transition piece (31) is provided with two third through holes (372) communicating with the socket cavity (34) along the first straight line direction; When the transition piece (31) is in the first preset position, the live wire socket (352) is connected to the live wire seesaw piece (292) via one of the third through holes (372), and the neutral wire socket (353) is connected to the neutral wire seesaw piece (295) via another of the third through holes (372).

10. The wall switch socket according to claim 3, It is characterized in that The socket assembly (3) further comprises a ground wire sleeve (354), which is installed in the socket cavity (34) and is used to connect a three-pole plug through one of the socket holes (351); the transition piece (31) is also provided with a fourth through hole (373) connected to the socket cavity (34) along the first straight line direction; The seesaw assembly (2) further comprises a ground wire terminal (297), wherein the ground wire terminal (297) is installed in the seesaw cavity (232), the partition (21) is provided with a second through hole (262) connected to the transition cavity (231) along the first straight line direction, and the ground wire socket (354) is also used to connect to the ground wire terminal (297) via the fourth through hole (373) and the second through hole (262).

11. The wall switch socket according to claim 3, It is characterized in that The partition (21) and the base (22) are detachably connected; and / or, The transition piece (31) and the socket panel (32) are detachably connected; One end of the partition (21) away from the base (22) along the first straight line direction is close to the mounting hole (13) and is detachably connected to the face frame (1).

12. The wall switch socket according to any one of claims 1 to 4, It is characterized in that The socket assembly (3) further comprises a positioning assembly (38), wherein the positioning assembly (38) is inserted into the socket cavity (34) along the first straight line direction and is used for positioning and installing the live wire socket (352) and the neutral wire socket (353); The positioning assembly (38) comprises a positioning member (381), and the positioning member (381) is provided with a plurality of positioning through holes (385), and the plurality of positioning through holes (385) are arranged in a one-to-one correspondence with the plurality of socket holes (351) for inserting and connecting the plug.

13. The wall switch socket according to claim 12, It is characterized in that The positioning assembly (38) further comprises: Two positioning columns (382), along the first straight line direction, one end of the positioning column (382) close to the face frame (1) is connected to the positioning member (381), and one end of each positioning column (382) away from the face frame (1) is provided with a positioning threaded hole (384); and, Two threaded terminals (383) are used to match the two positioning threaded holes (384) in a one-to-one correspondence, and one threaded terminal (383) is inserted into one positioning threaded hole (384) and connected to the positioning column (382); one end of the live wire socket (352) is located on one side of one positioning column (382) along the first straight line direction, and is connected to the positioning column (382) through one threaded terminal (383); one end of the neutral wire socket (353) is located on one side of another positioning column (382) along the first straight line direction, and is connected to the other positioning column (382) through another threaded terminal (383).

14. The wall switch socket according to any one of claims 1 to 4, It is characterized in that The number of the socket components (3) and the number of the seesaw components (2) are the same and both are multiple, and the multiple seesaw components (2) are connected to the multiple socket components (3) in a one-to-one correspondence; The plurality of seesaw assemblies (2) are distributed in sequence along a second straight line direction and are connected to the face frame (1); the socket assembly (3) is rotatably connected to the seesaw assembly (2) around an axis parallel to the second straight line direction.

Citation Information

Patent Citations

  • Modular switchgear

    CN115548756A