Socket with switch

By integrating a switch ring and conductive elements into a five-hole socket, integrated control of the socket assembly is achieved. Combined with a safety door module and display components, the problems of large size and high cost of fixed five-hole sockets are solved, improving user experience and safety.

CN223744079UActive Publication Date: 2025-12-30WENZHOU XINKELAN ELECTRIC TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423139302.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-12-30
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

Existing fixed five-hole sockets are bulky, expensive, and offer a poor user experience.

Method used

A socket with a switch was designed. By integrating the switch ring and conductive elements, the switch control and socket components are integrated. Combined with the protective door module, it provides electrical protection, meets the national standard for socket spacing, and integrates a display component to improve safety and user experience.

Benefits of technology

The integrated design significantly reduces the size of the socket, lowers manufacturing and installation costs, improves user experience and electrical safety, and meets the socket spacing requirements of relevant standards.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of sockets, and provides a socket with a switch, which comprises a packaging shell, and a socket assembly, a switch swivel, a conduction element and a protection door module which are arranged in the packaging shell, a switch rotating ring and a conduction element which are in transmission in sequence are arranged, the conduction element is driven by the switch rotating ring to be far away from or close to a power connection part, and a power supply is switched off or switched on, a switch control and a socket assembly are subjected to integrated and integrated structural design, the size of a product is greatly reduced through integration, and the manufacturing and mounting cost is further effectively reduced; and meanwhile, corresponding protection door modules are arranged according to the specification of five holes in the fixed socket for power utilization protection, so that the power utilization safety of a user is further improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to socket technical field especially relates to a socket with switch. BACKGROUND

[0002] The basic principle of a domestic and similar use plug socket is that current transmission is achieved through contact between a metal socket and a plug pin. The socket usually includes a corresponding number of sockets inside for insertion of the plug pin. When the plug is inserted into the socket, the pin contacts the socket, and current is transmitted through the socket to the electrical equipment. When the plug is pulled out, the pin and the socket are disconnected, and the current transmission is interrupted.

[0003] A five-hole socket is a power socket composed of a two-hole and a three-hole. It is made of insulating material. The design of five holes can more reasonably utilize space resources. In a home environment, the number of power sockets on the wall is limited. The five-hole socket solves this problem, allowing limited space to accommodate more electrical equipment and meeting the power supply needs of multiple electrical appliances, reasonably utilizing space resources and being more economical and practical.

[0004] Referring to Figure 1 According to the requirements of GB2099.1-2008 "Domestic and similar use plug socket Part 1: General requirements" definition 3.3 "fixed socket", the vertical distance L between the edges of adjacent socket holes in the fixed socket product is greater than 0mm.

[0005] The existing fixed socket is usually provided with an electrically connected switch button on one side of the socket assembly to control the power supply of the socket. For example, a Chinese patent with patent number 202321199437.3 "Novel switch socket" uses internal wiring to achieve control of the socket by the switch button. Such a switch socket has high cost, large size and poor consumer experience. INVENTION CONTENTS

[0006] The utility model provides a socket with switch, solved the technical problem that the existing fixed five-hole socket is large in size and high in cost.

[0007] To solve the above technical problems, the utility model provides a socket with switch, which comprises a packaging shell, a socket assembly, a switch ring, a conductive element and a protection door module installed in the packaging shell.

[0008] The socket assembly comprises an electricity receiving part and an electricity receiving part. The electricity receiving part is fixedly installed in the packaging shell. The electricity receiving part is fixedly installed on the side away from the electricity receiving part, and the lower part is connected with the external power supply.

[0009] The upper part of the conducting element is installed on the switch rotating ring through the protection door module, the lower part of the front end is in active abutment with the power receiving part, and the lower part of the rear end is driven away from or close to the power receiving part under the driving of the switch rotating ring to disconnect or connect the power supply.

[0010] The basic scheme sets the switch rotating ring and the conducting element in turn, drives the conducting element away from or close to the power receiving part under the driving of the switch rotating ring to disconnect or connect the power supply, integrates the switch control and the socket assembly, and has an integrated structure design. The integrated design greatly reduces the volume of the product, thereby effectively reducing the manufacturing and installation costs. Meanwhile, the protection door module corresponding to the five-hole specification of the fixed socket is set to protect the power utilization, thereby further improving the power utilization safety of the user.

[0011] In a further embodiment, the protection door module comprises two flat protection doors, three flat protection doors, a protection door spring and a protection door support, the protection door support is provided with an installation cavity on the front face; the rear end of the three flat protection door is embeddedly installed in the installation cavity, the lower end of the front end is sleeved with one end of the protection door spring, and the upper end of the front end is slidingly installed on the top face of the two flat protection door; the other end of the protection door spring is sleeved with the rear end of the two flat protection door, and the front end is embeddedly installed in the installation cavity.

[0012] A plug-in hole is formed in the rear end of the bottom plate of the installation cavity; a through groove embedded with the three flat protection door is formed in the bottom of the side wall on the two sides of the rear end of the installation cavity, the through groove penetrates through the side wall of the installation cavity and communicates with the plug-in hole; a through hole penetrating through the plate face is formed in the side wall on the front end of the installation cavity, and the through hole is embedded with the two flat protection door.

[0013] Based on the fixed five-hole socket, the protection door module is designed, the through groove embedded with the three flat protection door is formed in the bottom of the side wall on the two sides of the rear end of the installation cavity of the protection door support, the through hole penetrating through the plate face is formed in the side wall on the front end of the installation cavity to cooperate with the two flat protection door, so as to improve the installation stability of the two flat protection door and the three flat protection door, the stroke of the protection door is smoother, the socket is inserted more smoothly, and better user experience is provided.

[0014] In a further embodiment, the three flat protection door comprises a sliding frame arranged on the upper part, a first fixed block arranged on the lower part and auxiliary frames arranged on the two sides, the auxiliary frames are distributed to the two sides to cover the plug-in hole and are embedded with the side wall of the installation cavity; the first fixed block is protruded forward to be nested with the protection door spring, the sliding frame is provided with a hole in the middle to insert the plug, and the auxiliary frame is provided with an ear block embedded with the through groove on the bottom of the outer side wall.

[0015] The second fixing block of the double flat protection door rear end is protruded backward, the front end is provided with a forward protruding positioning buckle, the middle part is provided with a hole for plug insertion, and the two sides are provided with downward inclined sliding grooves; the positioning buckle is embedded with the through hole, and the sliding groove bottom is distributed with the power receiving part.

[0016] The auxiliary frame of the three flat protection door of the scheme is distributed to the two sides to cover the socket hole and is embedded with the installation cavity side wall, which can be conveniently and stably installed in the installation cavity in cooperation with the ear block embedded with the through slot; meanwhile, the forward protruding positioning buckle is arranged at the front end of the double flat protection door, which is cooperated with the through hole to realize the positioning installation in the installation cavity, improve the installation stability of the protection door in the installation cavity, and provide effective electrical isolation protection.

[0017] In further embodiments, the power receiving part includes an L pole static contact and an N pole static contact, the upper side wall of the L pole static contact is provided with a rivet silver point for connecting the conductive element; the L pole static contact and the N pole static contact are the same in structure;

[0018] The power receiving part includes a socket E pole socket, and a socket L pole socket and a socket N pole socket arranged on both sides of the socket E pole socket; the socket E pole socket is not overlapped with the end part space of the socket L pole socket and the socket N pole socket at both ends of the socket hole;

[0019] The socket L pole socket side surface is provided with a connecting part in the middle part, and the conductive element is abutted with the connecting part; the socket L pole socket and the socket N pole socket are in an axial symmetry relationship.

[0020] The fixed five-hole socket of the scheme is not overlapped with the end part space of the socket L pole socket and the socket N pole socket at both ends of the socket hole of the socket E pole socket, which satisfies that the vertical distance between the adjacent socket hole edges is greater than 0 mm, such as Figure 1 , to meet the relevant national standards.

[0021] In further embodiments, the connecting part is provided with a matching hole penetrating through the plate surface in the middle part, and an upward opening matching groove in the upper part; the matching hole and the matching groove are vertically aligned in space and are embedded with the conductive element to form a vertical rotation shaft;

[0022] The side of the connecting part facing the conductive element is further provided with a heat dissipation groove, and the heat dissipation groove includes at least two groups of horizontally distributed stepped protrusions.

[0023] The heat dissipation groove is arranged on the side of the connecting part facing the conducting element to reduce the sliding wear of the conducting element, while increasing heat dissipation and reducing temperature rise. On the other hand, the matching hole and the matching groove are arranged in the upper and lower positions in cooperation with the switch swing piece, which provides a stable connection in the form of fitting, has lower process difficulty, higher assembly efficiency, and through cooperation with the mounting buckle, the switch swing piece always swings around the fixed rotating shaft, ensuring that the rivet silver point at the lower part of the movable end is aligned with the power receiving part, which has good structural stability, simple operation, and can effectively improve the user experience.

[0024] In further embodiments, the conducting element includes L-pole switch swing pieces, N-pole switch swing pieces, and two sets of swing piece springs and spring caps that are structurally identical.

[0025] The front end of the L-pole switch swing piece serves as a conductive end and abuts against the power receiving part, and the rear end serves as a movable end and is fitted and connected with the switch rotary ring.

[0026] The upper part of the movable end extends upward and is embedded in the switch rotary ring, and the lower part is provided with a rivet silver point electrically connected with the power receiving part.

[0027] The conductive end faces one end of the power receiving part, and the sides shrink to the middle to form a slope abutting against the power receiving part; the slope is also provided with a mounting buckle embedded in the power receiving part.

[0028] The conductive end is away from the other end of the power receiving part, and is provided with a positioning block protruding backward, and the positioning block is sleeved with the swing piece spring.

[0029] After the mounting buckle is embedded in the power receiving part, the slope abuts against the surface of the power receiving part under the action of the swing piece spring.

[0030] The L-pole / N-pole switch swing piece has the front end of the two sides shrinking to the middle to form a slope abutting against the power receiving part, which can better adapt to the swing action with the conductive end as the center, thereby optimizing the switch rotating experience; the mounting buckle protruding outward is added on the slope, the mounting buckle is fitted with the power receiving part to form a rotating shaft, so that the switch swing piece always rotates along the shaft, the conductive connection part is stable and reliable, the circuit stable connection of the switch conductive part is realized, and the safety and reliability of the socket are realized.

[0031] In further embodiments, a copper inner support is also included, the copper inner support is installed with the power receiving part and the power receiving part, the shell outer side wall serves as a mounting wall, the mounting wall is provided with a through mounting hole, and at least one side of the mounting hole is expanded to form a gap slot.

[0032] In a further embodiment, the front end of the balance spring is sleeved on the conductive end, and the rear end is sleeved on the spring cap; the front end of the spring cap abuts against the balance spring through the mounting wall, and the rear end is fixed on the mounting wall;

[0033] The outer surface of the front end of the spring cap is provided with at least one set of first limiting blocks extending outward and transversely, and the outer surface of the rear end is provided with at least one set of second limiting blocks extending outward and transversely; the first limiting blocks and the second limiting blocks form a clamping groove; after the first limiting blocks pass through the mounting wall, the spring cap is rotated, the mounting wall falls into the clamping groove, so that the side wall of the first limiting block tightly abuts against the inner side of the mounting wall, and the second limiting block tightly abuts against the outer side of the mounting wall, and the spring cap is fixedly mounted on the mounting wall.

[0034] The scheme takes the balance spring as a power core, continuously provides a pressing force to the conductive end, so that the conductive end always maintains a stable contact relationship with the power receiving part; meanwhile, the spring cap is added as a positioning and mounting structure, the first limiting block and the second limiting block are designed to cooperate with each other, and the through mounting mode is combined, so that the balance spring can be quickly installed and stably work, the product assembly difficulty is effectively reduced, and the production efficiency is improved.

[0035] In a further embodiment, the packaging shell comprises a socket panel and a socket rear seat, the socket panel is buckled with the protection door support through the switch ring, and the protection door support is covered with the socket rear seat; the switch ring is rotationally installed on the protection door support.

[0036] In a further embodiment, a display assembly is further included, the display assembly comprises an LED lamp plate, a light guide part and a power taking spring; the bottom of the power taking spring is sleeved on the power receiving part, and the upper portion abuts against the LED lamp plate; the LED lamp plate is electrically connected with the power receiving part through the power taking spring and comprises a plurality of LED lamp beads.

[0037] The scheme integrates the display assembly on the socket, realizes light source indication by the LED lamp plate, realizes intuitive display of the socket conduction and shutdown, and further improves the use experience of users. BRIEF DESCRIPTION OF DRAWINGS

[0038] Figure 1 is a schematic view of a fixed socket provided by the background technology of the utility model embodiment;

[0039] Figure 2 is an exploded view of a socket with a switch provided by the utility model embodiment 1;

[0040] Figure 3 is a socket with a switch provided by the utility model embodiment 1; Figure 2The three-dimensional structure diagram of the protection door spring;

[0041] Figure 4 The three-dimensional structure diagram of the protection door support is provided in Embodiment 1 of the utility model Figure 2 The three-dimensional structure diagram of the protection door support is provided in Embodiment 1 of the utility model

[0042] Figure 5 The three-dimensional structure diagram of the protection door support is provided in Embodiment 1 of the utility model Figure 2 The three-dimensional structure diagram of the protection door support is provided in Embodiment 1 of the utility model

[0043] Figure 6 The three-dimensional structure diagram of the protection door support is provided in Embodiment 1 of the utility model

[0044] Figure 7 The three-dimensional structure diagram of the protection door support is provided in Embodiment 1 of the utility model Figure 2 The three-dimensional structure diagram of the protection door support is provided in Embodiment 1 of the utility model

[0045] Figure 8 The three-dimensional structure diagram of the protection door support is provided in Embodiment 1 of the utility model Figure 2 The three-dimensional structure diagram of the protection door support is provided in Embodiment 1 of the utility model

[0046] Figure 9 The three-dimensional structure diagram of the protection door support is provided in Embodiment 1 of the utility model Figure 2 The three-dimensional structure diagram of the protection door support is provided in Embodiment 1 of the utility model

[0047] Figure 10 The three-dimensional structure diagram of the protection door support is provided in Embodiment 2 of the utility model

[0048] Figure 11 The three-dimensional structure diagram of the protection door support is provided in Embodiment 2 of the utility model

[0049] The three-dimensional structure diagram of the protection door support is provided in Embodiment 2 of the utility model

[0050] The three-dimensional structure diagram of the protection door support is provided in Embodiment 2 of the utility model

[0051] The three-dimensional structure diagram of the protection door support is provided in Embodiment 2 of the utility model

[0052] The mounting cavity 501, the through slot 502, the through hole 503, the sliding frame 504, the auxiliary frame 505, the first fixed block 506, the ear block 507, the second fixed block 508, the positioning buckle 509;

[0053] The terminal a, and the wire pressing screw b. DETAILED DESCRIPTION

[0054] The embodiments of the present application will be described below in detail with reference to the drawings. The embodiments are given only for the purpose of illustration and should not be understood as limiting the present application. The accompanying drawings are only for reference and illustration and do not limit the scope of the patent protection of the present application. Many changes can be made to the present application without departing from the spirit and scope of the present application.

[0055] Embodiment 1

[0056] The socket with a switch provided by the embodiment of the present application, as shown in the drawings, comprises a packaging shell 1, a socket assembly 2, a switch ring 3, a conducting element 4 and a protection door module 5 installed in the packaging shell 1. Figures 2-9

[0057] The socket assembly 2 comprises an electricity receiving part and an electricity receiving part. The electricity receiving part is fixedly installed in the packaging shell. The electricity receiving part is fixedly installed on the side away from the electricity receiving part, and the lower part is connected with the external power supply.

[0058] Referring to Figure 2 , Figure 6 , Figure 8 The upper part of the conducting element 4 passes through the protection door module 5 and is installed on the switch ring 3, the lower part of the front end is movably connected with the electricity receiving part, and the lower part of the rear end is driven by the switch ring 3 to move away from or close to the electricity receiving part, and the power supply is disconnected or connected.

[0059] In this embodiment, referring to Figure 3 , Figure 4 The protection door module 5 comprises two flat protection doors 51, three flat protection doors 52, protection door springs 53 and protection door supports 54. The protection door support 54 is provided with a mounting cavity 501 on the front face. The rear end of the three flat protection door 52 is embeddedly installed in the mounting cavity 501, the lower end of the front end is sleeved with one end of the protection door spring 53, and the upper end of the front end is slidably installed on the top surface of the two flat protection door 51. The rear end of the two flat protection door 51 is sleeved with the other end of the protection door spring 53, and the front end is embeddedly installed in the mounting cavity 501.

[0060] ​The rear end of the bottom plate of the mounting cavity 501 is provided with a plug sleeve hole; the bottom of the side wall of the rear end of the mounting cavity 501 is provided with a through groove 502 matched with the three-flat protection door 52, the through groove 502 penetrates the side wall of the mounting cavity 501 and communicates with the plug sleeve hole; the side wall of the front end of the mounting cavity 501 is provided with a through hole 503 penetrating the plate surface, and the through hole 503 is matched with the two-flat protection door 51.

[0061] The embodiment is based on a fixed five-hole socket, and a new protection door module 5 is designed, the through groove 502 matched with the three-flat protection door 52 is arranged at the bottom of the side wall of the rear end of the mounting cavity 501 of the protection door support 54, the through hole 503 penetrating the plate surface is arranged on the side wall of the front end of the mounting cavity 501 to cooperate with the two-flat protection door 51, so that the installation stability of the two-flat protection door 51 and the three-flat protection door 52 is improved, the stroke of the protection door is smoother, the socket is more smoothly inserted, and better user experience is provided.

[0062] In the embodiment, the three-flat protection door 52 includes a sliding frame 504 arranged at the upper part, a first fixed block 506 arranged at the lower part, and auxiliary frames 505 arranged at the two sides, the auxiliary frames 505 are distributed to the two sides to cover the plug sleeve hole and are matched with the side wall of the mounting cavity 501; the first fixed block 506 is protruded forward to be nested with the protection door spring 53, the sliding frame 504 is provided with a hole in the middle for inserting the plug, and the auxiliary frame 505 is provided with an ear block 507 matched with the through groove 502 at the bottom of the outer side wall.

[0063] The rear end of the two-flat protection door 51 is provided with a second fixed block 508 protruded rearward, the front end is provided with a positioning buckle 509 protruded forward, the middle is provided with a hole for inserting the plug, and the two sides are provided with downward inclined sliding grooves; the positioning buckle 509 is matched with the through hole 503, and the sliding groove bottom is distributed with the power receiving part.

[0064] The working principle of the protection door module 5 is as follows:

[0065] When the socket is in an idle state, the two-flat protection door 51 abuts against the side wall of the front end of the mounting cavity 501 under the action of the protection door spring 53, at this time, the positioning buckle 509 is embedded in the through hole 503; at the same time, the three-flat protection door 52 abuts against the side wall of the rear end of the mounting cavity 501 under the action of the protection door spring 53, at this time, the ear block 507 on the auxiliary frame 505 is embedded in the through groove 502, and the stable installation of the three-flat protection door 52 is further ensured.

[0066] When the socket is inserted into the three-flat plug, the plug pin is inserted into the plug hole, and the protection door spring 53 is extruded through cooperation with the sliding groove in the middle of the sliding frame 504, under the driving of the insertion force of the plug pin, the three-flat protection door 52 is pushed to move forward, and then the covering of the socket assembly 2 is released, so that the plug pin is inserted into the power receiving part, and the insertion is completed.

[0067] When the socket is inserted into the two flat plugs, when the plug is inserted into the socket, by cooperating with the sliding groove of the two flat protection door 51, the protection door spring 53 is extruded, driven by the insertion force of the plug, the two flat protection door 51 is pushed to move backward, and then the cover of the socket assembly 2 is released, so that the plug is inserted into the power receiving part, and the insertion is completed.

[0068] The auxiliary frame 505 on the three flat protection door 52 of the embodiment is distributed to both sides to cover the socket hole and is embedded with the side wall of the mounting cavity 501. On the one hand, the ear block 507 embedded with the through slot 502 can facilitate the stable installation of the three flat protection door 52 in the mounting cavity 501. On the other hand, the positioning buckle 509 protruding forward is arranged at the front end of the two flat protection door 51, which cooperates with the through hole 503 to realize the positioning installation in the mounting cavity 501, improve the installation stability of the protection door in the mounting cavity, and provide effective electrical isolation protection.

[0069] In the embodiment, the power receiving part includes an L pole static contact 21 and an N pole static contact 22. The upper side wall of the L pole static contact 21 is provided with a rivet silver point for connecting the conductive element 4. The L pole static contact 21 and the N pole static contact 22 have the same structure.

[0070] The power receiving part includes a socket E pole socket 23, a socket L pole socket 24 and a socket N pole socket 25 arranged on both sides of the socket E pole socket 23. The socket E pole socket 23 is not overlapped with the end part of the socket L pole socket 24 and the socket N pole socket 25.

[0071] The socket L pole socket 24 is provided with a connecting part 201 in the middle of the side surface, and the conductive element 4 abuts against the connecting part 201. The socket L pole socket 24 and the socket N pole socket 25 are in an axial symmetry relationship.

[0072] The fixed five-hole socket of the embodiment is not overlapped with the end part of the socket L pole socket 24 and the socket N pole socket 25, and the vertical distance between the adjacent socket hole edges is greater than 0 mm, such as Figure 1 , to meet the relevant national standards.

[0073] In the embodiment, referring to Figure 7 , the connecting part 201 is provided with a matching hole 202 penetrating the surface in the middle and a matching groove 203 opening downward in the upper part. The matching hole 202 and the matching groove 203 are vertically aligned in space and are embedded with the conductive element 4 to form a vertical rotating shaft.

[0074] The connecting part 201 is further provided with a heat dissipation groove 204 on the side facing the conductive element 4. The heat dissipation groove 204 includes at least two groups of horizontally distributed stepped protrusions.

[0075] The embodiment is characterized in that: on one side of the connecting part 201 facing the conducting element 4, a heat dissipation groove 204 is arranged to reduce the sliding wear of the conducting element 4 and increase heat dissipation and reduce temperature rise; on the other hand, cooperating with the switch swing piece, a matching hole 202 and a matching groove 203 are arranged in a top-down echoing manner, which provides a stable connection in the form of embedding, has lower process difficulty, higher assembly efficiency, and through cooperation with the mounting buckle 402, the switch swing piece always swings around the fixed rotating shaft, ensuring that the rivet point at the lower part of the movable end is aligned with the power receiving part, has good structural stability, is easy to operate, and can effectively improve user experience.

[0076] In the embodiment, referring to Figure 5 , the conducting element 4 includes L-pole switch swing pieces 41, N-pole switch swing pieces 42, and two groups of swing piece springs 43 and spring caps 44;

[0077] The front end of the L-pole switch swing piece 41 serves as a conductive end and abuts against the power receiving part, and the rear end serves as a movable end and is embeddedly connected with the switch rotating ring 3;

[0078] The upper part of the movable end extends upward and is embedded in the switch rotating ring 3, and the lower part is provided with a rivet point electrically connected with the power receiving part;

[0079] The end of the conductive end facing the power receiving part is tapered to form a slope 401 abutting against the power receiving part, and the slope 401 is further provided with a mounting buckle 402 embedded in the power receiving part;

[0080] The end of the conductive end away from the power receiving part is provided with a positioning block 403 protruding rearward, and the swing piece spring 43 is sleeved on the positioning block 403;

[0081] After the mounting buckle 402 is embedded in the power receiving part, the slope 401 abuts against the surface of the power receiving part under the action of the swing piece spring 43.

[0082] The L-pole / N-pole switch swing piece 42 of the embodiment is tapered on both sides of the front end to form a slope 401 abutting against the power receiving part, which can better adapt to the swing action with the conductive end as the center, thereby optimizing the switch rotating experience; the mounting buckle 402 protruding outward is added on the slope 401, the mounting buckle 402 and the power receiving part are embedded to form a rotating shaft, so that the switch swing piece always rotates around the shaft, the conductive connection part is stable and reliable, the circuit connection of the switch conductive part is realized, thereby realizing the safety and reliability of the socket; and has a double-control function, which is safer than the traditional separate single-fire line control.

[0083] In the embodiment, the copper inner support 6 is further included, the electrically connecting part and the electrically receiving part are mounted on the copper inner support 6, the outer side wall of the shell of the copper inner support 6 is used as a mounting wall, the mounting wall is provided with a mounting hole 61 penetrating through, and at least one side of the mounting hole 61 is expanded to form a giving slot 62 matched with the first limiting block 404.

[0084] In the embodiment, the front end of the swing spring 43 is sleeved on the electrically connecting part, and the rear end is sleeved on the spring cap 44. Figure 9 The front end of the spring cap 44 is in abutment with the swing spring 43 through the mounting wall, and the rear end is fixedly limited on the mounting wall.

[0085] The front end of the spring cap 44 is in abutment with the swing spring 43 through the mounting wall, and the rear end is fixedly limited on the mounting wall.

[0086] The swing spring 43 is used as a power core in the embodiment, a pressing force is continuously provided to the electrically connecting part, the electrically connecting part is always in stable contact with the electrically receiving part, the spring cap 44 is used as a positioning and mounting structure, the first limiting block 404 and the second limiting block 405 are designed to be matched with each other, and the swing spring 43 can be quickly installed and stably work in combination with the penetrating mounting mode, the product assembly difficulty is effectively reduced, and the production efficiency is improved.

[0087] In the embodiment, the packaging shell 1 includes a socket panel 11 and a socket rear seat 12, the socket panel 11 is buckled with the switch rotating ring 3 through the switch rotating ring 3, and the protection door support 54 is buckled with the socket rear seat 12.

[0088] The switch rotating ring 3 is provided with a U-shaped structure extending downward, the lower part of the U-shaped structure is provided with an embedding entrance opening upward, and the embedding entrance is movably embedded with the upper part of the conducting element 4.

[0089] In the embodiment, a display assembly 7 is further included, which comprises an LED lamp plate 71, a light guide 72 and a power taking spring 73.

[0090] In the embodiment, the display assembly 7 is integrated on the socket, and the light source indication is realized by the LED lamp plate 71, so that the visual display of the socket on or off is realized, and the use experience of the user is improved.

[0091] In the embodiment, the switch rotating ring 3 and the conducting element 4 are sequentially arranged, the conducting element 4 is driven to move away from or close to the power receiving part under the driving of the switch rotating ring 3, and the power supply is disconnected or connected, the switch control and the socket assembly are integrated, the integrated structure design greatly reduces the volume of the product through integration, and the manufacturing and installation costs are effectively reduced; meanwhile, for the five-hole specification in the fixed socket, the corresponding protection door module 5 is arranged to protect the power consumption, and the power consumption safety of the user is further improved.

[0092] The socket assembly 2 further comprises a wiring terminal a and a wire pressing screw b, the L-pole static contact 21, the socket N-pole bushing 25 and the socket E-pole bushing 23 are fixed on the wiring terminal a through the wire pressing screw b, so as to facilitate the access of external wires.

[0093] In the embodiment, the specific wiring terminal a and the wire pressing screw b are adopted, and the mechanical method is adopted to realize the purpose of fastening the external power supply wire, that is, the fixed connection of the wiring terminal a is realized in the form of terminal wiring, so as to complete the fixed installation of the socket on the wall.

[0094] Embodiment 2

[0095] The embodiment of the utility model provides a socket with switch, the difference between the embodiment and embodiment 1 is wiring mode, referring to Figure 10 、 Figure 11 In the embodiment, the socket adopts the wiring mode of welding wire.

[0096] In Figure 10 The L-pole switch swing piece 41 and the N-pole switch swing piece 42 are in two states of on and off connection.

[0097] The embodiment provides various implementation modes of the socket with switch based on different wiring modes, including terminal wiring and welding wire, so as to adapt to different application requirements.

[0098] The embodiment only draws the double-side control (L / N simultaneously on-off) scheme, but the corresponding derived single-side control (L pole single on single off) scheme is the same control mode, so the single-side control and the double-side control scheme are all covered by the utility model.

[0099] The above embodiment is the preferred implementation of the utility model, but the implementation of the utility model is not limited by the above embodiment, and any change, modification, replacement, combination, simplification made without departing from the spirit and principles of the utility model should be an equivalent replacement mode, and all are included in the protection scope of the utility model.

Claims

1. A socket with switch, characterized by: The utility model provides a kind of socket assembly, switch ring, conducting element and protective door module comprising package shell and being installed in the package shell; The socket assembly includes power receiving part and power receiving part;The power receiving part is fixedly installed in the package shell;The power receiving part is fixedly installed on the side away from the power receiving part, and the lower part is connected with external power supply; The upper part of the conducting element is installed on the switch ring through the protective door module, the lower part of the conducting element is movably connected with the power receiving part, and the rear end of the lower part of the conducting element is driven by the switch ring to move away from or close to the power receiving part to disconnect or connect the power supply.

2. A socket with switch as claimed in claim 1, characterized in that: The protective door module includes two flat protective doors, three flat protective doors, protective door springs and protective door supports, the front surface of the protective door support is provided with a mounting cavity, the rear end of the three flat protective door is embeddedly installed in the mounting cavity, the front end of the three flat protective door is sleeved with one end of the protective door spring, and the upper part of the front end of the three flat protective door is slidably installed on the top surface of the two flat protective door, the rear end of the two flat protective door is sleeved with the other end of the protective door spring, and the front end of the two flat protective door is embeddedly installed in the mounting cavity. The rear end of the bottom plate of the mounting cavity is provided with a socket hole, the bottom of the side wall on the rear end of the mounting cavity is provided with a through groove embedded with the three flat protective door, the through groove penetrates through the side wall of the mounting cavity and communicates with the socket hole, and the side wall on the front end of the mounting cavity is provided with a through hole penetrating through the plate surface, and the through hole is embedded with the two flat protective door.

3. A socket with switch as claimed in claim 2, characterized in that: The three flat protective door includes a sliding frame arranged on the upper part, a first fixed block arranged on the lower part and auxiliary frames arranged on the two sides, the auxiliary frames are distributed to the two sides to cover the socket hole and are embedded with the side wall of the mounting cavity, the first fixed block is protruded forward to be nested with the protective door spring, the sliding frame is provided with a hole in the middle to insert the plug, and the outer side wall of the auxiliary frame is provided with an ear block embedded with the through groove. The rear end of the two flat protective door is provided with a second fixed block protruded backward, the front end of the two flat protective door is provided with a positioning buckle protruded forward, the middle of the two flat protective door is provided with a hole to insert the plug, and the two sides of the two flat protective door are provided with sliding grooves inclined downward, the positioning buckle is embedded with the through hole, and the bottom of the sliding groove is distributed with the power receiving part.

4. A socket with switch as claimed in claim 1, characterized in that: The power receiving part includes L pole static contact and N pole static contact, the upper side wall of the L pole static contact is provided with a rivet silver point for connecting the conducting element, and the L pole static contact and the N pole static contact have the same structure. The power receiving part includes socket E pole socket, socket L pole socket and socket N pole socket arranged on the two sides of the socket E pole socket, the end of the socket hole of the socket E pole socket is not overlapped with the end of the socket hole of the socket L pole socket and the socket N pole socket in space, and the side surface of the socket L pole socket is provided with a connecting part embedded with the conducting element. The socket L pole socket and the socket N pole socket are in axial symmetry, the middle of the connecting part is provided with a penetrating hole penetrating through the plate surface, and the upper part of the connecting part is provided with a downwardly opening matching groove, the penetrating hole and the matching groove are vertically aligned in space and are embedded with the conducting element to form a rotating shaft in the vertical direction, and the side of the connecting part facing the conducting element is further provided with a heat dissipation groove including at least two groups of horizontally distributed stepped protrusions.

5. A socket with switch as claimed in claim 4, characterized in that: ​ ​ 6. A socket with switch as claimed in claim 2, characterized in that: The conducting element comprises L-pole switch pendulum pieces, N-pole switch pendulum pieces, and two groups of pendulum spring and spring cap with the same structure; The front end of the L-pole switch pendulum piece is used as a conductive end and abuts against the power receiving part, and the rear end is used as a movable end and is embeddedly connected with the switch ring; The upper part of the movable end extends upward and is embedded in the switch ring, and the lower part is provided with a riveted silver point electrically connected with the power receiving part; The conductive end faces one end of the power receiving part, and the sides shrink to the middle part to form an inclined surface abutting against the power receiving part; the inclined surface is further provided with a mounting buckle embedded in the power receiving part; The conductive end is provided with a positioning block protruding backward at the end away from the power receiving part, and the pendulum spring is sleeved on the positioning block; After the mounting buckle is embedded in the power receiving part, the inclined surface abuts against the surface of the power receiving part under the action of the pendulum spring.

7. A socket with switch as claimed in claim 6, characterized in that: Further comprising a copper inner support, the copper inner support is provided with the power receiving part and the power receiving part, and the shell outer side wall is used as a mounting wall, and the mounting wall is provided with a mounting hole penetrating through; at least one side of the mounting hole is expanded to form a leaving slot.

8. A socket with switch as claimed in claim 7, characterized in that: The front end of the pendulum spring is sleeved on the conductive end, and the rear end is sleeved on the spring cap; the front end of the spring cap penetrates through the mounting wall and abuts against the pendulum spring, and the rear end is limited and fixed on the mounting wall; The front end of the spring cap is provided with at least one group of first limiting blocks extending outward and transversely, and the rear end is provided with at least one group of second limiting blocks extending outward and transversely; the first limiting block and the second limiting block form a clamping groove; after the first limiting block penetrates through the mounting wall, the spring cap is rotated, the mounting wall falls into the clamping groove, so that the side wall of the first limiting block tightly abuts against the inner side of the mounting wall, and the second limiting block tightly abuts against the outer side of the mounting wall, and the spring cap is fixedly installed on the mounting wall.

9. A socket with switch as claimed in claim 7, characterized in that: The packaging shell comprises a socket panel and a socket rear seat, the socket panel is buckled through the switch ring and the protection door support, the protection door support is covered with the socket rear seat; the switch ring is rotatably installed on the protection door support.

10. A socket with switch as claimed in claim 1, characterized in that: Further comprising a display assembly, the display assembly comprises an LED lamp plate, a light guide part, and a power taking spring; the bottom of the power taking spring is sleeved on the power receiving part, and the upper part abuts against the LED lamp plate; the LED lamp plate is electrically connected with the power receiving part through the power taking spring and contains a plurality of LED lamp beads.

Citation Information

Patent Citations

  • Novel switch socket

    CN220368249U