Sliding and swinging structure of socket power panel

By using the sliding structure of the socket power board, two-prong and three-prong sliding parts are used to block non-standard plugs. Combined with dustproof components and overload protection, the safety hazards caused by mis-plugging of the socket are solved, and the safety and convenience are improved.

CN223809297UActive Publication Date: 2026-01-16东莞市艾万电子科技有限公司
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Patent Information

Application Number
CN202520162075.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2026-01-16
Estimated Expiration
2035-01-23

AI Technical Summary

Technical Problem

Existing sockets are prone to electric shock, short circuits and other safety accidents due to misplugging. In addition, misplugging is difficult to avoid in dim light or chaotic environments, which affects the safe use and lifespan of electrical equipment.

Method used

Design a sliding structure for a socket power board. By combining two-prong and three-prong sliding parts, it blocks non-standard plugs or foreign objects from being inserted, ensuring that only standard two-prong or three-prong plugs are inserted correctly. Combined with dustproof components and overload protection reset components, it improves the safety and reliability of the socket.

Benefits of technology

It effectively reduces the probability of safety accidents such as electric shock and short circuit caused by misinsertion, keeps the socket clean, extends its service life, and improves the safety and ease of use of electrical equipment.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223809297U_ABST
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Abstract

The utility model relates to a sliding and swinging structure of a socket power panel. The sliding and swinging structure comprises a base, an upper cover arranged on the base, and a sliding assembly arranged on the base, the upper cover opposite to the sliding assembly is provided with a two-pin jack and a three-pin jack; the sliding assembly comprises a fixed seat installed on the base, a sliding rail arranged on the fixed seat, a two-pin sliding piece arranged on the sliding rail in a sliding mode and used for preventing misplug, a three-pin sliding piece arranged on the sliding rail in a sliding mode and used for preventing misplug, and an elastic piece arranged between the three-pin sliding piece and the two-pin sliding piece. A two-pin middle hole is formed in the fixed seat opposite to the two-pin jack; a three-leg middle hole is formed in the fixed seat opposite to the triangular insertion hole; the two-pin sliding piece and the three-pin sliding piece can effectively prevent a plug or a foreign matter which does not conform to the standard from being inserted, and the probability of occurrence of safety accidents such as electric shock and short circuit caused by misplug is greatly reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to socket technical field especially is related to a socket power panel's slide swing structure. BACKGROUND

[0002] In daily life and working environment, the use scene of socket is very extensive, people can be because of negligence or environmental factor (such as child curiosity, workplace confusion etc.), and there is misplug condition. For example, children can insert metal small articles into socket, and cause electric shock danger;Or in the case of dim light, the user can misplug the mismatched plug into the socket, causing socket damage and even causing electrical fire. With the improvement of people's safety consciousness of electricity, a socket structure capable of effectively preventing misplug is needed. SUMMARY

[0003] Therefore, the utility model discloses the purpose of providing a safe socket power panel's slide swing structure.

[0004] The utility model discloses the following technical scheme:

[0005] A socket power panel's slide swing structure, including base, set up on the base upper cover and set up on the base sliding assembly, the sliding assembly opposite the upper cover sets up two feet jack and three feet jack, the sliding assembly includes the fixed seat installed on the base, set up on the fixed seat slide rail, slide on the slide rail for preventing misplug two feet sliding part, slide on the slide rail for preventing misplug three feet sliding part and set up between the three feet sliding part and the two feet sliding part elastic piece, the two feet jack opposite the fixed seat sets up two feet middle hole, the three feet jack opposite the fixed seat sets up three feet middle hole.

[0006] Further, the two feet sliding part and the three feet sliding part are respectively set up on the fixed seat of the slide rail two ends, the three feet jack includes electricity jack and ground jack, when the plug is not inserted into the two feet jack or the three feet jack, the three feet sliding part is set up on the electricity jack opposite the fixed seat, and the two feet sliding part is set up on the two feet jack opposite the fixed seat.

[0007] Further, the two feet sliding part includes two feet sliding part that slides on the slide rail, and two feet inclined surface is set up on the two feet sliding part opposite the two feet jack, the two feet inclined surface sets up from the upper cover one side to the bottom seat inclined to the side away from the three feet sliding part.

[0008] Further, the ground jack is arranged between the two-pin jack; the two-pin slider further comprises a ground middle hole arranged on the two-pin sliding part opposite to the ground jack.

[0009] Further, the three-pin slider comprises a three-pin sliding part sliding on the slide rail, and a power connection inclined surface arranged on the two-pin sliding part opposite to the power connection jack; the power connection inclined surface is arranged from one side of the upper cover to the side away from the two-pin slider and inclined to the base.

[0010] Further, the swing structure of the socket power strip further comprises a dustproof assembly arranged on the upper cover for dustproof treatment of the three-pin jack and the two-pin jack.

[0011] Further, the dustproof assembly comprises a dustproof mounting part mounted on the upper cover, and a dustproof cover plate rotatably mounted on the dustproof mounting part for covering the three-pin jack and the two-pin jack.

[0012] Further, the upper cover is provided with a mounting seat on the side away from the base; one end of the dustproof mounting part is mounted on the mounting seat, and the other end penetrates the upper cover on the side away from the base; and the penetrating end of the dustproof mounting part is connected with the rotation shaft of the dustproof cover plate.

[0013] Further, the three-pin jack and the two-pin jack are four; the four three-pin jacks and the two-pin jacks are arranged side by side on the upper cover; the four sliding assemblies are arranged on the base opposite to the three-pin jacks and the two-pin jacks; the swing structure of the socket power strip further comprises a row of plug switches arranged on the base and extending from the upper cover; the row of plug switches is four; the swing structure of the socket power strip further comprises an overload protection reset assembly arranged on the upper cover; the overload protection reset assembly is four; the four overload protection reset assemblies are respectively arranged on the upper cover on one side of the row of plug switches and are respectively electrically connected with the row of plug switches on one side.

[0014] Further, the overload protection reset assembly comprises a fixing part clamped and mounted on the upper cover, and a reset part mounted on the fixing part and electrically connected with the row of plug switches.

[0015] The utility model discloses the beneficial effects are:

[0016] The socket power board's slide swing structure of the utility model relates to two feet sliding parts and three feet sliding parts can effectively prevent the plug or foreign matter that does not meet the standard from inserting, greatly reduce the probability of occurrence of electric shock, short circuit and other safety accidents caused by misplug; avoid children from inserting metal stick into the socket out of curiosity, and the sliding part can avoid this dangerous situation; by ensuring that only the standard two feet or three feet plug is inserted in the correct way to make the jack completely exposed, reduce the electrical safety hazards such as electric spark, overload caused by poor plug contact or wrong connection, and ensure the safe use of electrical equipment. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is the three-dimensional schematic view of the socket power board's slide swing structure of an embodiment of the utility model;

[0018] Figure 2 It is the explosion view of the socket power board's slide swing structure of Figure 1

[0019] Figure 3 It is the three-dimensional schematic view of the upper cover and dustproof assembly of the socket power board's slide swing structure of Figure 1

[0020] Figure 4 It is the three-dimensional schematic view of the dustproof assembly of the socket power board's slide swing structure of Figure 1

[0021] Figure 5 It is the three-dimensional schematic view of the sliding assembly of the socket power board's slide swing structure of Figure 1 DETAILED DESCRIPTION

[0022] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0023] In the description of the utility model, it should be noted that the orientation or position relationship indicated by the terms "vertical direction", "upper", "lower", "horizontal" and the like is based on the orientation or position relationship shown in the drawings, and is only for the convenience of describing the utility model and simplifying the description, and does not indicate or imply that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the utility model. In addition, "first", "second", "third", "fourth" are only for the purpose of description, and cannot be understood as indicating or implying relative importance. ​​​​

[0024] It should be noted that, unless otherwise explicitly specified and limited, the terms "arrange", "mount", "connect", "connect" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrally connected, it can be mechanically connected, or it can be electrically connected, it can be directly connected, or it can be connected through an intermediate medium, it can be the communication between two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0025] Please refer to Figures 1 to 5 The sliding structure of the socket power board of the embodiment of the utility model, including base 10, the upper cover 20 arranged on the base 10 and the sliding assembly 30 arranged on the base 10;The sliding assembly 30 is provided with two-pin jack 21 and three-pin jack 22 relative to the upper cover 20;The sliding assembly 30 includes the fixed seat 31 installed on the base 10, the slide rail 32 arranged on the fixed seat 31, the two-pin sliding piece 33 for preventing misplug sliding on the slide rail 32, the three-pin sliding piece 34 for preventing misplug sliding on the slide rail 32 and the elastic piece 35 arranged between the three-pin sliding piece 34 and the two-pin sliding piece 33;Two-pin jack 21 is provided with two-pin middle hole 36 relative to the fixed seat 31;Three-pin jack is provided with three-pin middle hole 37 relative to the fixed seat 31.

[0026] The working principle of the swing structure of the socket power board is as follows: when the socket power board is not used or normally placed, the two-leg sliding member 33 and the three-leg sliding member 34 are in the initial position on the slide rail 32; the elastic member 35 is in a natural state or has a certain pre-tightening force, so that the two-leg sliding member 33 and the three-leg sliding member 34 can be kept in a proper position, thereby shielding a part of the two-leg jack 21 and the three-leg jack 22; due to the existence of the two-leg sliding member 33 and the three-leg sliding member 34, when a plug attempts to be inserted, if the insertion angle is incorrect or the plug size does not meet the standard, the sliding member will block the insertion of the plug, thereby preventing misinsertion; for example, for a special-shaped plug that does not meet the two-leg or three-leg plug specifications, or when children play and insert other objects into the jack, the sliding member can avoid the safety hazards caused by these situations; when a standard two-leg plug is inserted into the two-leg jack 21, the plug will first contact the two-leg sliding member 33; with the continuous insertion pressure of the plug, the two-leg sliding member 33 will slide along the slide rail 32; in this process, the elastic member 35 will be compressed, and since the three-leg sliding member 34 and the two-leg sliding member 33 are connected through the elastic member 35, the three-leg sliding member 34 will also be affected to a certain extent, but due to the position and structure limitation of the three-leg sliding member 34, the three-leg sliding member 34 basically remains in the original position or only produces a slight displacement when the two-leg plug is inserted; the sliding of the two-leg sliding member 33 exposes the two-leg jack 21 completely, allowing the two-leg plug to be smoothly inserted into the two-leg middle hole 36, thereby realizing electrical connection and supplying power to the corresponding electrical equipment; when a standard three-leg plug is inserted into the three-leg jack 22, the plug will push the three-leg sliding member 34 to slide along the slide rail 32; in this process, the elastic member 35 will also be compressed, and the sliding of the three-leg sliding member 34 exposes the three-leg jack 22 completely, allowing the three-leg plug to be smoothly inserted into the three-leg middle hole 37, thereby completing the electrical connection.

[0027] Compared with the prior art, the swing structure of the socket power board of the utility model, the two-leg sliding member 33 and the three-leg sliding member 34 can effectively block the insertion of plugs that do not meet the standard or foreign objects, greatly reducing the probability of occurrence of safety accidents such as electric shock and short circuit caused by misinsertion; the sliding member can avoid the dangerous situation that children insert metal rods into the socket out of curiosity; by ensuring that only standard two-leg or three-leg plugs can be inserted in the correct way to expose the jack completely, the electrical safety hazards such as electric sparks and overloads caused by poor plug contact or incorrect connection are reduced, thereby ensuring the safe use of electrical equipment; when the socket is idle, the sliding member partially shields the jack, which can prevent dust, hair, small particles and other impurities from entering the jack; it is beneficial to keep the interior of the socket clean and prolong the service life of the socket; physical damage to the internal structure of the socket caused by misinsertion is avoided.

[0028] Please refer to Figure 2 and Figure 5The two-leg sliding member 33 and the three-leg sliding member 34 are respectively arranged on the fixed seat 31 at both ends of the sliding rail 32; the three-leg socket 22 includes an electric plug socket 370 and a grounding socket 210; when the plug is not inserted into the two-leg socket 21 or the three-leg socket 22, the three-leg sliding member 34 is arranged on the fixed seat 31 opposite to the electric plug socket 370, and the two-leg sliding member 33 is arranged on the fixed seat 31 opposite to the two-leg socket 21. When the plug is not inserted, the three-leg sliding member 34 is just located on the fixed seat 31 opposite to the electric plug socket 370, and the two-leg sliding member 33 is located on the fixed seat 31 opposite to the two-leg socket 21, which can realize precise anti-misplug function; for the two-leg socket 21, the two-leg sliding member 33 can effectively block non-standard two-leg plugs or foreign matters from entering from the normal insertion direction; for the three-leg socket 22, the three-leg sliding member 34 can protect the main electric plug socket 370 part, especially for the two-leg plug or other foreign matters that may be inserted into the electric plug socket 370 by mistake, targeted blocking is provided; due to the different structures and purposes of the two-leg socket 21 and the three-leg socket 22, such layout can better distinguish and protect them according to their characteristics; for example, the grounding socket 210 in the three-leg socket 22 is less likely to be misinserted during normal use, but the electric plug socket 370 is easy to be misoperated, by arranging the three-leg sliding member 34 at the position opposite to the electric plug socket 370, the part prone to problems can be protected, and the safety of the entire socket is improved.

[0029] The two-leg sliding member 33 comprises two-leg sliding parts 330 sliding on the sliding rails 32, two-leg inclined surfaces 331 arranged on the two-leg sliding parts 330 opposite to the two-leg insertion holes 21; the two-leg inclined surfaces 331 are arranged from one side of the upper cover 20 to the side away from the three-leg sliding member 34 and inclined to the base 10. The arrangement of the two-leg inclined surfaces 331 can play a guiding role for the two-leg plug insertion; when the user inserts the two-leg plug close to the two-leg insertion holes 21, the plug will first contact the two-leg inclined surfaces 331; since the inclined surface is inclined from one side of the upper cover 20 to the side away from the three-leg sliding member 34 and to the base 10, after the plug contacts the inclined surface, it will automatically adjust its position under the guidance of the inclined surface, so that it approaches the center position of the two-leg insertion hole 21; it can help the plug to be more accurately aligned with the two-leg insertion hole 21, and reduce the difficulty or inability to insert due to the deviation of the plug insertion angle; in actual use, the angle of the user inserting the plug may be different; the two-leg inclined surface 331 can adapt to many different insertion angles, whether the plug is slightly inclined or inserted vertically, the inclined surface can guide the plug to the correct position; for example, in the case of dim light or limited space, the user may not be able to accurately insert the plug vertically into the insertion hole, at this time the two-leg inclined surface 331 can play its guiding function to ensure the smooth insertion of the plug into the two-leg middle hole 36; the arrangement of the inclined surface can enhance the blocking ability of non-standard two-leg plugs or foreign objects; for those irregular-shaped objects that do not meet the specifications of the two-leg plug, when they contact the inclined surface, they will be blocked outside the insertion hole since they cannot enter the insertion hole along the guidance of the inclined surface. This further improves the safety of the socket against misplug, effectively avoiding the dangerous situation of short circuit or electric shock caused by foreign object insertion.

[0030] Please refer to Figures 2 to 5The ground hole 210 is arranged on the upper cover 20 between the two-pin holes 21, and the ground intermediate hole 332 is arranged on the ground sliding part 330 opposite to the ground hole 210. When the three-pin plug is inserted into the three-pin hole 22, the existence of the ground intermediate hole 332 does not interfere with the normal grounding connection. Because the positions of the ground hole 210 and the ground intermediate hole 332 are relatively fixed and reasonably designed, the grounding pin of the three-pin plug can be accurately inserted into the ground hole 210, and the misgrounding or poor grounding situation caused by the ground intermediate hole 332 on the two-pin sliding part 33 can be avoided. Thus, the grounding function can be stably and reliably realized under the condition that various plugs are inserted, and the electrical safety hidden danger caused by the grounding problem is reduced. Arranging the ground hole 210 on the upper cover 20 between the two-pin holes 21 can more effectively utilize the space of the socket. This layout mode makes the overall structure of the socket more compact, avoids the problem that the size of the socket is too large caused by the dispersed layout of the holes, and reasonably arranges different types of holes in the limited surface area of the socket, which is beneficial to reducing the size of the socket, making it more convenient to use, for example, more easily installed in the limited space near the wall socket, or more holes arranged on the socket.

[0031] Please refer to Figure 5The three-prong sliding member 34 includes a three-prong sliding part 340 sliding on the sliding rail 32, and an electrically-conductive inclined surface 341 provided on the two-prong sliding part 330 opposite to the electrically-conductive socket 370. The electrically-conductive inclined surface 341 is inclined from one side of the upper cover 20 to the side away from the two-prong sliding member 33 towards the base 10. The provision of the electrically-conductive inclined surface 341 can guide the insertion of the three-prong plug. When the three-prong plug approaches the electrically-conductive socket 370, the plug will first contact the electrically-conductive inclined surface 341. Since the inclined surface is inclined from one side of the upper cover 20 to the side away from the two-prong sliding member 33 towards the base 10, the plug will automatically adjust its position under the guidance of the inclined surface and move towards the center of the electrically-conductive socket 370, like a guide groove, helping the plug to be more accurately aligned with the electrically-conductive socket 370. Moreover, this design can adapt to different insertion angles. Even if the plug is slightly inclined when inserted, it can still be smoothly inserted under the guidance of the inclined surface, reducing the difficulty of insertion due to the insertion angle. In daily use, people may use the socket in various environments, such as in dim light or narrow space. The presence of the electrically-conductive inclined surface 341 allows the user to smoothly insert the plug into the electrically-conductive socket 370 without the need for very accurate alignment, improving the speed and convenience of plug insertion and further enhancing the user's experience. The electrically-conductive inclined surface 341 can effectively block non-standard plugs or foreign objects from being inserted into the electrically-conductive socket 370. For irregular-shaped, size-mismatched, or non-three-prong plugs, when they contact the electrically-conductive inclined surface 341, it is difficult for them to enter the electrically-conductive socket 370 along the inclined surface, thereby being blocked outside the socket. This reduces the safety risks of short circuit, electric shock, etc. caused by misplug, ensuring the safety of the socket.

[0032] Please refer to Figure 2 and Figure 4 The socket power strip further includes a dustproof assembly 40 provided on the upper cover 20 for dustproof treatment of the three-prong socket 22 and the two-prong socket 21. When the socket is not in use, the dustproof assembly 40 can effectively block dust from entering the three-prong socket 22 and the two-prong socket 21. Dust entering the socket may accumulate on the metal conductive sheet, and over time, the dust may affect the conductivity between the plug and the socket. Through the dustproof assembly 40, the interior of the socket can be kept clean, reducing the decline in electrical performance caused by dust accumulation, thereby prolonging the service life of the socket. In addition to affecting conductivity, some corrosive substances may be contained in the dust. If these substances enter the socket with the dust, they may react with the metal parts in a humid environment, causing the metal to oxidize or corrode.

[0033] The dustproof assembly 40 comprises a dustproof mounting piece 41 mounted on the upper cover 20 and a dustproof cover plate 42 rotatably mounted on the dustproof mounting piece 41 for covering the three-pin jack 22 and the two-pin jack 21. The dustproof cover plate 42 is rotatably mounted on the dustproof mounting piece 41 and can flexibly cover the three-pin jack 22 and the two-pin jack 21. When the socket is not used, the dustproof cover plate 42 is rotated to the covering position, so that dust can be effectively prevented from entering the jack. The socket can be comprehensively protected, like adding a cover that can be opened and closed to the jack, so that dust is difficult to enter the interior of the socket. When the socket needs to be used, the dustproof cover plate 42 is only needed to be rotated to be opened, so that the plug can be normally inserted. The rotatable dustproof cover plate 42 can better adapt to different use scenarios, for example, in an emergency, the dustproof cover plate 42 can be quickly opened for operation when the plug needs to be quickly inserted. The dustproof mounting piece 41 is mounted on the upper cover 20, thereby providing a stable mounting basis for the dustproof cover plate 42.

[0034] Please refer to Figure 3 and Figure 4 The mounting seat 23 is arranged on the side of the upper cover 20 facing the base 10. One end of the dustproof mounting piece 41 is mounted on the mounting seat 23, and the other end penetrates the upper cover 20 away from the base 10. The penetrating end of the dustproof mounting piece 41 is connected with the rotating shaft of the dustproof cover plate 42. One end of the dustproof mounting piece 41 is mounted on the mounting seat 23, and the mounting seat 23 is located on the side of the upper cover 20 facing the base 10, thereby fully utilizing the space inside the socket. The dustproof mounting piece 41 does not occupy too much space outside the socket, so that the socket is more concise in appearance. At the same time, too many protrusions or complex structures are avoided on the surface of the socket, thereby reducing the possibility of damage to components caused by accidental collision. The dustproof mounting piece 41 penetrates the upper cover 20, so that the connecting part of the dustproof mounting piece 41 and the dustproof cover plate 42 is located on the outside of the upper cover 20. The mounting seat 23 plays a role of stable support inside, and the connecting part on the outside facilitates the rotating operation of the dustproof cover plate 42, so that the structure of the entire dustproof assembly 40 is more clear and reasonable, which is conducive to improving the overall design quality of the socket. The dustproof mounting piece 41 penetrates the upper cover 20 and is connected with the rotating shaft of the dustproof cover plate 42, so that the fit between the dustproof cover plate 42 and the upper cover 20 is more close. When the dustproof cover plate 42 is closed, the close connection can effectively prevent dust from entering the jack from the gap. Moreover, since the dustproof mounting piece 41 penetrates the upper cover 20 in a relatively fixed manner, the position accuracy of the dustproof cover plate 42 during rotation is higher, and the dustproof cover plate 42 can accurately cover the three-pin jack 22 and the two-pin jack 21 each time when it is closed, thereby further enhancing the dustproof effect.

[0035] The three-pin jack 22 and the two-pin jack 21 are four; the four three-pin jacks 22 and the two-pin jacks 21 are arranged side by side on the upper cover 20; the sliding assembly 30 is also four, and the four sliding assemblies 30 are arranged on the base 10 opposite to the three-pin jacks 22 and the two-pin jacks 21; the socket power board also includes the row plug switch 50 arranged on the base 10 and extending from the upper cover 20, and the row plug switch 50 is four; the socket power board also includes the overload protection reset assembly 60 arranged on the upper cover 20, and the overload protection reset assembly 60 is four, and the four overload protection reset assemblies 60 are arranged on the upper cover 20 on one side of the row plug switch 50 and are electrically connected with the row plug switch 50 on one side, respectively. The four three-pin jacks 22 and the two-pin jacks 21 can be arranged to simultaneously supply power to multiple electrical equipment; in a home or office environment, people often need to use multiple electrical equipment, such as computers, printers, mobile phone chargers, electric kettles, etc., and multiple jacks can meet the demand of simultaneous use of these equipment, improving the practicality and functionality of the socket; four row plug switches 50 are provided, and each switch can independently control the corresponding jack, which is convenient for users to flexibly turn on or off the power supply of a certain electrical equipment according to actual needs; it avoids frequent plugging and unplugging of the plug, and also helps to save energy; moreover, if a certain electrical equipment fails, the user can turn off its corresponding switch alone, without affecting the use of other normal equipment; the four overload protection reset assemblies 60 are electrically connected with the row plug switch 50 on one side, providing more precise overload protection; when the power of the electrical equipment connected to a certain jack exceeds the safe range, the corresponding overload protection reset assembly 60 will start, cutting off the circuit, to avoid safety accidents caused by overload; it can ensure the safety of each jack, and even in the complex situation of simultaneous use of multiple electrical equipment, it can effectively prevent overload, providing more reliable power supply for electrical equipment with different power requirements.

[0036] Please refer to Figure 1 and Figure 2The overload protection reset assembly 60 includes a fixing member 61 snap-fitted to the upper cover 20 and a reset member 62 electrically connected to the outlet switch 50 and mounted on the fixing member 61. The fixing member 61 is snap-fitted to the upper cover 20, so that workers can quickly install the fixing member 61 to the designated position of the upper cover 20, reducing the installation time and labor cost. Meanwhile, when the overload protection reset assembly 60 is maintained or replaced, the snap-fitted fixing member 61 is easy to disassemble, so that users or maintenance personnel can easily take the fixing member 61 from the socket upper cover 20, thereby facilitating the inspection, replacement or maintenance of the reset member 62. The snap-fitted fixing member 61 and the upper cover 20 make the overload protection reset assembly 60 relatively independent of other parts of the socket. During the installation, replacement or maintenance process, other components of the socket, such as the outlet and the switch, are not excessively disturbed. For example, if only the reset member 62 fails, the fixing member 61 only needs to be removed and the reset member 62 needs to be replaced, without the need to disassemble the entire socket, thereby improving the pertinence and efficiency of the maintenance.

[0037] The above only expresses the preferred technical solutions of the present application, which are described in detail, but cannot be understood as limiting the scope of the application. It should be noted that for those skilled in the art, without departing from the concept of the present application, some modifications and improvements can be made, and the present application also intends to include these modifications and improvements.

Claims

1. A swing structure of a socket power strip, characterized by, The socket power board includes a base, an upper cover arranged on the base, and a sliding assembly arranged on the base. The sliding assembly is opposite to the upper cover and is provided with two-pin jacks and three-pin jacks. The sliding assembly includes a fixed seat arranged on the base, a sliding rail arranged on the fixed seat, two-pin sliding members arranged on the sliding rail to prevent misplug, three-pin sliding members arranged on the sliding rail to prevent misplug, and elastic members arranged between the three-pin sliding members and the two-pin sliding members. The two-pin jacks are opposite to the fixed seat and are provided with two-pin middle holes. The three-pin jacks are opposite to the fixed seat and are provided with three-pin middle holes.

2. The swing structure of a socket power strip according to claim 1, wherein The two-pin sliding members and the three-pin sliding members are arranged on the fixed seat at two ends of the sliding rail. The three-pin jacks include power jacks and ground jacks. When a plug is not inserted into the two-pin jacks or the three-pin jacks, the three-pin sliding members are arranged on the fixed seat opposite to the power jacks, and the two-pin sliding members are arranged on the fixed seat opposite to the two-pin jacks.

3. The swing structure of a socket power strip according to claim 2, wherein The two-pin sliding members include two-pin sliding portions arranged on the sliding rail, and two-pin inclined surfaces arranged on the two-pin sliding portions opposite to the two-pin jacks. The two-pin inclined surfaces are inclined from one side of the upper cover to the base away from the three-pin sliding members.

4. The swing structure of a socket power strip according to claim 3, wherein The ground jacks are arranged on the upper cover between the two-pin jacks. The two-pin sliding members further include ground middle holes arranged on the two-pin sliding portions opposite to the ground jacks.

5. The swing structure of a socket power strip according to claim 4, wherein The three-pin sliding members include three-pin sliding portions arranged on the sliding rail, and power inclined surfaces arranged on the two-pin sliding portions opposite to the power jacks. The power inclined surfaces are inclined from one side of the upper cover to the base away from the two-pin sliding members.

6. The swing structure of a socket power strip according to claim 1, wherein The sliding structure of the socket power board further includes a dustproof assembly arranged on the upper cover for dustproof treatment of the three-pin jacks and the two-pin jacks.

7. The swing structure of a socket power strip according to claim 6, wherein The dustproof assembly includes a dustproof mounting member arranged on the upper cover, and a dustproof cover plate rotatably arranged on the dustproof mounting member for covering the three-pin jacks and the two-pin jacks.

8. The swing structure of a socket power strip according to claim 7, wherein The upper cover is provided with a mounting seat on one side of the base. One end of the dustproof mounting member is arranged on the mounting seat, and the other end penetrates the upper cover away from the base. The penetrating end of the dustproof mounting member is connected with the dustproof cover plate through a rotating shaft.

9. The swing structure of a socket power strip according to claim 1, wherein The three-pin jacks and the two-pin jacks are four in number. The four three-pin jacks and the two-pin jacks are arranged side by side on the upper cover. The sliding assembly is also four in number, and the four sliding assemblies are arranged on the base opposite to the three-pin jacks and the two-pin jacks. The sliding structure of the socket power board further includes outlet switches arranged on the base and extending from the upper cover. The outlet switches are four in number. The sliding structure of the socket power board further includes overload protection reset assemblies arranged on the upper cover. The overload protection reset assemblies are four in number, and the four overload protection reset assemblies are respectively arranged on the upper cover on one side of the outlet switches and are respectively electrically connected with the outlet switches on one side.

10. The swing structure of a socket power strip according to claim 9, wherein The overload protection reset assembly comprises a fixing member snap-fitted to the upper cover and a reset member electrically connected to the outlet switch and mounted on the fixing member.