Anti-electric shock power supply extension socket

By incorporating anti-electric shock components and elastic elements into the power strip, the problem of electric shock caused by traditional power strips is solved, preventing fingers and metal objects from being inserted. This achieves child safety and automatic reset protection functions.

CN223858501UActive Publication Date: 2026-01-30TONGHUA INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202520162063.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2026-01-30
Estimated Expiration
2035-01-23

AI Technical Summary

Technical Problem

Traditional power strips have exposed sockets, which can easily lead to electric shock accidents, especially when children insert their fingers or metal objects, lacking safety protection.

Method used

An anti-electric shock power strip was designed, which uses an anti-electric shock component and an elastic element. The anti-electric shock component is located between the insertion channel and the power socket under the action of the elastic element, and the insertion surface is set at an angle downward to prevent fingers and metal objects from being inserted. When the plug is inserted, the anti-electric shock component slides to connect the plug with the power socket, and the elastic element automatically resets to restore the protective state.

Benefits of technology

It effectively prevents accidental insertion of fingers and metal objects, reducing the risk of electric shock, especially for children. It is compatible with plugs of different sizes, and the automatic reset function ensures that it can be restored to a safe and protective state after each use, reducing the safety hazards caused by forgetting to reset.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an anti-electric shock power supply extension socket, which comprises a lower cover, an upper cover and an anti-electricity assembly, wherein the upper cover and the anti-electricity assembly are arranged on the lower cover; the upper cover comprises an upper shell and a power connection jack arranged on the upper shell; the anti-electricity assembly comprises an installation frame arranged on the lower cover, an anti-electricity piece arranged on the installation frame in a sliding mode, and an elastic piece installed between the side wall of the installation frame and the anti-electricity piece and used for limiting the anti-electricity piece. The mounting rack opposite to the power connection jack is provided with an insertion channel, and when the elastic piece is in a stretching state, the anti-electricity piece is arranged between the insertion channel and the power connection jack; the anti-electricity piece comprises an insertion face facing one side of the power connection jack, and the insertion face inclines downwards from one end close to the elastic piece to one end away from the elastic piece to one side of the insertion channel. The anti-electricity piece is located between the insertion channel and the power connection jack when the elastic piece is in the stretching state, and fingers, metal objects and the like can be effectively prevented from being accidentally inserted into the power connection jack.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of row plug, especially to a kind of anti-electric shock power supply row plug. BACKGROUND

[0002] The jack of traditional row plug is usually directly exposed, and the copper sheet inside is directly connected with power line, so that electric shock accident is easily caused by inserting conductive object. Especially children, due to lack of safety awareness, may insert fingers or metal objects into the jack, thereby causing serious electric shock injury. SUMMARY

[0003] Therefore, the utility model discloses the purpose to provide a kind of anti-electric shock power supply row plug.

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

[0005] A kind of anti-electric shock power supply row plug, including lower cover, upper cover and anti-electric component installed on the lower cover;The upper cover includes upper shell and the electric connection jack of being arranged in the upper shell;The anti-electric component includes the mounting bracket being arranged on the lower cover, the anti-electric piece sliding on the mounting bracket, the elastic piece for limiting the anti-electric piece between the mounting bracket side wall and the anti-electric piece;The electric connection jack opposite the mounting bracket is provided with insertion channel, when the elastic piece is in relaxed state, the anti-electric piece is arranged between the insertion channel and the electric connection jack;The anti-electric piece includes the insertion face towards the electric connection jack side, the insertion face is inclined downward from the end close to the elastic piece to the end away from the elastic piece to the insertion channel side.

[0006] Further, the anti-electric shock power supply row plug further includes main slide rail, and the main slide rail is arranged on the mounting bracket opposite the electric connection jack;The anti-electric piece further includes the sliding part sliding on the mounting bracket and the anti-electric part installed on the sliding part, and the insertion face is arranged on the anti-electric part opposite the electric connection jack.

[0007] Further, the anti-electric shock power supply row plug further includes auxiliary slide rail arranged on the mounting bracket two side walls, and the anti-electric part is two, is installed on the sliding part two sides respectively, and two the anti-electric part is sliding in the auxiliary slide rail on two sides respectively.

[0008] Further, the mounting bracket is provided with fixed block, one end of the sliding part connected with the elastic piece is provided with fixed column, and the elastic piece is spring with one end installed on the fixed block and the other end sleeved on the fixed column.

[0009] Further, the electric connection fixed seat for installing copper sheet is arranged on the lower cover opposite the electric connection jack, and the free end of the electric connection fixed seat is communicated with the insertion channel.

[0010] Further, the anti-electric shock power strip further comprises a grounding jack arranged in the upper shell, a grounding fixing seat is arranged on the upper shell opposite to the lower cover, and a free end of the grounding fixing seat is in communication with the grounding jack.

[0011] Further, the anti-electric shock power strip further comprises a fault display lamp arranged on the upper shell.

[0012] Further, the anti-electric shock power strip further comprises a female socket arranged on the lower cover for female plug insertion, and a female jack is arranged on the upper shell opposite to the female socket.

[0013] Further, the anti-electric shock power strip further comprises a male socket arranged on the lower cover for male plug insertion, and a male jack is arranged on the upper shell opposite to the male socket.

[0014] Further, the lower cover is provided with through mounting holes on both sides, the mounting holes comprise middle holes arranged in the middle and side holes arranged on both sides of the middle holes, the middle holes are larger than the side holes, and the middle holes are in communication with the side holes.

[0015] The anti-electric shock power strip has the advantages that:

[0016] The anti-electric shock power strip has the advantages that: BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 FIG. 1 is a perspective view of an anti-electric shock power strip according to an embodiment of the present application;

[0018] Figure 2 FIG. 2 is an exploded view of the anti-electric shock power strip according to the embodiment of the present application; Figure 1

[0019] FIG. 3 is a perspective view of an anti-electric component of the anti-electric shock power strip according to the embodiment of the present application. Figure 3 DETAILED DESCRIPTION Figure 1

[0020] ​​Clearly and completely describe the technical scheme in the embodiments of the utility model with reference to the drawings in the embodiments of the utility model, and obviously, the described embodiments are only a 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 the ordinary skilled in the art without making creative labor belong to the scope of protection of the utility model.

[0021] In the description of the utility model, it should be pointed out that the orientation or positional relationship indicated by the terms "vertical direction", "upper", "lower", "horizontal" and the like is based on the orientation or positional 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.

[0022] In the description of the utility model, it should be pointed out that unless otherwise specified and limited, the terms "setting", "mounting", "connecting", "connecting" 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 the ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0023] Please refer to Figures 1 to 3 The anti-electric shock power supply row plug of an embodiment of the utility model, including lower cover 10, upper cover 20 and anti-electric component 30 installed on lower cover 10, upper cover 20 includes upper shell 21 and power connection jack 22 arranged on upper shell 21, anti-electric component 30 includes mounting bracket 31 arranged on lower cover 10, anti-electric part 32 slidingly arranged on mounting bracket 31, elastic part 33 installed between the side wall of mounting bracket 31 and anti-electric part 32 for limiting anti-electric part 32, power connection jack 22 is provided with insertion channel 310 opposite mounting bracket 31, and anti-electric part 32 is arranged between insertion channel 310 and power connection jack 22 when elastic part is in relaxed state, anti-electric part 32 includes insertion surface 320 towards one side of power connection jack 22, and insertion surface 320 is arranged obliquely downward from the end close to elastic part 33 to the end away from elastic part 33 to one side of insertion channel 310.

[0024] The working principle of the anti-electric shock power supply row plug is as follows: the anti-electric shock part 32 in the anti-electric shock assembly 30 is in a relaxed state under the action of the elastic part 33; at this time, the anti-electric shock part 32 is located between the insertion channel 310 and the electric connection jack 22, forming a protective barrier; since the insertion surface 320 is inclined downward from the end close to the elastic part 33 to the end away from the elastic part 33 to the side of the insertion channel 310, this makes it difficult for external objects (such as fingers or metal rods) to directly insert into the electric connection jack 22 without external force; the elastic part 33 is installed between the side wall of the mounting frame 31 and the anti-electric shock part 32, which plays a role in limiting the position of the anti-electric shock part 32; when there is no external force interference, the elastic force of the elastic part 33 makes the anti-electric shock part 32 remain in this initial protective position, thereby preventing accidental electric shock; when a normal plug is inserted into the electric connection jack 22, the plug will contact the insertion surface 320 of the anti-electric shock part 32; since the insertion surface 320 is inclined downward, the plug will exert a force on the anti-electric shock part 32 in the direction of the insertion channel 310; this force will overcome the elastic force of the elastic part 33, causing the anti-electric shock part 32 to slide along the mounting frame 31 to the side of the elastic part 33; as the plug continues to be inserted, the anti-electric shock part 32 will continue to slide until the plug can smoothly pass through the original position of the anti-electric shock part 32 and be inserted into the insertion channel 310; at this time, the anti-electric shock part 32 will have a tendency to return to the initial position under the elastic force of the elastic part 33, but since the plug has been inserted, the anti-electric shock part 32 will remain in a compressed position, allowing the plug to normally contact the conductive part inside the electric connection jack 22 to achieve power supply; when the plug is pulled out of the electric connection jack 22, the anti-electric shock part 32 is no longer pressed by the plug; under the elastic force of the elastic part 33, the anti-electric shock part 32 will slide back to the original position along the mounting frame 31 and be located between the insertion channel 310 and the electric connection jack 22 again; in this way, the anti-electric shock part 32 returns to the initial protective state and continues to prevent external objects from accidentally inserting into the electric connection jack 22, thereby preventing electric shock accidents.

[0025] Compared with the prior art, the anti-electric shock power supply row plug of the utility model, the electric shock prevention part 32 is located between the insertion channel 310 and the electric connection jack 22 in the relaxed state of the elastic part 33, which can effectively prevent fingers, metal objects and the like from being accidentally inserted into the electric connection jack 22; especially for children or in complex operating environments, the risk of electric shock can be effectively reduced, and reliable safety protection is provided; even in the case of liquid splashing, the presence of the electric shock prevention part 32 can reduce the possibility of liquid directly contacting the conductive part in the electric connection jack 22, and reduce the risk of short circuit and electric shock caused by liquid conduction; when it is necessary to insert the plug, the plug can be smoothly inserted into the electric connection jack 22 by pushing the electric shock prevention part 32; both safety protection and inconvenience to the user in normal use of the row plug are ensured, and the user can use the anti-electric shock power supply row plug like using a common row plug without additional operation steps; due to the inclined design of the insertion surface 320, plugs of different sizes and shapes can be adapted; whether it is a two-pin plug or a three-pin plug, the electric shock prevention part 32 can be smoothly inserted into the electric connection jack 22 during the insertion process, and good compatibility is achieved; the setting of the elastic part 33 enables the electric shock prevention part 32 to automatically reset to the protection position after the plug is pulled out; this automatic reset function does not require manual intervention, ensures that the row plug can be restored to the safety protection state in time after each use, and reduces the safety hazards caused by forgetting to reset.

[0026] Please refer to Figure 2 and Figure 3The anti-electric shock power supply row plug further comprises a main slide rail 311 arranged on the mounting frame 31 opposite to the power jack 22, and the anti-electric shock part 32 further comprises a sliding part 321 slidably arranged on the mounting frame 31 and an anti-electric shock part 322 arranged on the sliding part 321, and the insertion surface 320 is arranged on the anti-electric shock part 322 opposite to the power jack 22. The anti-electric shock part 32 is composed of the sliding part 321 and the anti-electric shock part 322; the sliding part 321 is slidably arranged on the main slide rail 311 of the mounting frame 31, which enables the anti-electric shock part 32 to smoothly slide on the mounting frame 31; the main slide rail 311 plays a role of guiding and limiting the sliding direction of the anti-electric shock part 32, and ensures that the anti-electric shock part 32 can only move in a predetermined direction; the anti-electric shock part 322 is a key part for playing the anti-electric shock function, and the insertion surface 320 is arranged on the anti-electric shock part 322 opposite to the power jack 22; in the initial state, the anti-electric shock part 322 is located between the insertion channel 310 and the power jack 22, and prevents foreign matters from being accidentally inserted into the power jack 22 through the insertion surface 320; when no plug is inserted, the anti-electric shock part 32 is in the initial position under the elastic force of the elastic member 33; the elastic member 33 is connected between the side wall of the mounting frame 31 and the anti-electric shock part 32, so that the anti-electric shock part 322 of the anti-electric shock part 32 just blocks the power jack 22; due to the limitation of the main slide rail 311, the anti-electric shock part 32 will not shake or deviate from the position at will, and stably plays the anti-electric shock function; when the plug starts to be inserted into the power jack 22, the plug first contacts the insertion surface 320 of the anti-electric shock part 322; because the insertion surface 320 is arranged in a downward inclined manner, the plug will exert an inclined force on the anti-electric shock part 322; the force will be transmitted to the main slide rail 311 through the sliding part 321 of the anti-electric shock part 32; due to the guidance of the main slide rail 311, the sliding part 321 of the anti-electric shock part 32 will slide along the main slide rail 311 to the side of the insertion channel 310; in this process, the anti-electric shock part 322 of the anti-electric shock part 32 will gradually move away from the power jack 22 to make space for the insertion of the plug; the plug can smoothly pass the original position of the anti-electric shock part 322, and then be inserted into the power jack 22 to contact the internal conductive part, so as to realize the normal power supply function.

[0027] The anti-electric shock power supply row plug further comprises auxiliary sliding rails 312 arranged on the two side walls of the mounting frame 31, and two anti-electric shock parts 322 are arranged on the two sides of the sliding part 321 respectively, and the two anti-electric shock parts 322 are respectively slidably arranged in the two auxiliary sliding rails 312. The two anti-electric shock parts 322 are respectively located in the auxiliary sliding rails 312, and under the action of the elastic member 33, they are jointly located between the insertion channel 310 and the power jack 22; the auxiliary sliding rails 312 provide additional support and guiding effect for the anti-electric shock part 322, so that the anti-electric shock part 322 can be more stably located in the working position; at this time, the insertion surface 320 of the anti-electric shock part 322 can effectively prevent foreign matters from being accidentally inserted into the power jack 22; when the plug starts to be inserted into the power jack 22, the plug will contact the insertion surface 320 of one or two anti-electric shock parts 322; since the insertion surface 320 is arranged to be inclined downward, the plug will exert an inclined force on the anti-electric shock part 322; the force will be transmitted to the sliding part 321 through the anti-electric shock part 322, so that the sliding part 321 starts to slide along the main sliding rail 311; at the same time, since the anti-electric shock part 322 is located in the auxiliary sliding rail 312, during the sliding of the sliding part 321, the anti-electric shock part 322 will also slide in the auxiliary sliding rail 312 correspondingly; the double-sided sliding structure makes the anti-electric shock part 322 move more stably, and provides space for the insertion of the plug; the plug can smoothly pass through the original position of the anti-electric shock part 322, enter the power jack 22 and contact the internal conductive part to realize normal power supply.

[0028] The fixed block 313 is arranged on the mounting frame 31, and the fixed column 323 is arranged on one end of the sliding part 321 connected with the elastic member 33. The elastic member 33 is a spring with one end mounted on the fixed block 313 and the other end sleeved on the fixed column 323. In the initial state without the plug inserted, the spring is in a natural stretching state or a slightly compressed state. One end of the spring is fixed on the fixed block 313 of the mounting frame 31, and the other end is sleeved on the fixed column 323 of the sliding part 321. At this time, the elastic force of the spring acts on the sliding part 321, so that the anti-electric part 322 of the anti-electric member 32 is kept in the protection position between the insertion channel 310 and the electrically connected jack 22. The elastic force provides sufficient force to maintain the position of the anti-electric part 322 to prevent foreign objects from being accidentally inserted into the electrically connected jack 22, thereby ensuring the safety of the power strip. When the plug starts to be inserted into the electrically connected jack 22, the plug contacts and pushes the anti-electric part 322, so that the sliding part 321 of the anti-electric member 32 slides along the main sliding rail 311 to the side of the insertion channel 310. In this process, the fixed column 323 moves together with the sliding part 321, so that the spring is further compressed. The compression of the spring is a buffer to the insertion force of the plug. Because the elastic force of the spring interacts with the insertion force of the plug, it can ensure that the movement of the anti-electric member 32 is smooth and will not produce violent shaking or displacement due to the sudden insertion of the plug. At the same time, with the compression of the spring, the anti-electric part 322 gradually leaves the electrically connected jack 22 to make room for the insertion of the plug, until the plug is smoothly inserted into the electrically connected jack 22 and contacts the internal conductive part.

[0029] The electrically connected fixing seat 11 for installing the copper sheet is arranged on the lower cover 10 opposite to the electrically connected jack 22. The free end of the electrically connected fixing seat 11 is connected with the insertion channel 310. The electrically connected fixing seat 11 is arranged on the lower cover for installing the copper sheet. The position of the electrically connected fixing seat 11 corresponds to the electrically connected jack 22, and the free end thereof is connected with the insertion channel 310. In the initial state, the copper sheet is installed in the electrically connected fixing seat 11 and is in a state of waiting for the plug to be inserted. When there is no plug inserted, the copper sheet in the electrically connected fixing seat 11 is in an isolated state from the outside world, and can be electrically connected with the copper sheet only by inserting the plug through the insertion channel 310. This ensures that power supply can be realized only under the correct plug insertion operation, avoiding the risk of accidental electric shock. When the plug is inserted through the insertion channel 310, the conductive part of the plug gradually approaches the copper sheet in the electrically connected fixing seat 11 along the insertion channel 310. Since the insertion channel 310 is connected with the free end of the electrically connected fixing seat 11, the plug can smoothly contact the copper sheet. After the conductive part of the plug closely contacts the copper sheet, the current can be conducted from the copper sheet to the plug, realizing the power supply function. Since the structure of the electrically connected fixing seat 11 is relatively closed, except for being connected with the plug through the insertion channel 310, under normal circumstances, it can effectively prevent external objects from contacting the copper sheet, further ensuring the safety of the power strip and avoiding short circuit or other electrical faults caused by foreign objects contacting the copper sheet.

[0030] Please refer to Figure 1 and Figure 2 , the anti-electric shock power strip also includes a grounding jack 23 disposed in the upper shell 21, the grounding jack 23 is disposed on the lower cover 10 opposite grounding fixed seat 12, the free end of the grounding fixed seat 12 is connected with the grounding jack 23. In the upper shell 21 is provided with the grounding jack 23, which is corresponding to the grounding fixed seat 12 on the lower cover 10; the grounding fixed seat 12 is used for connecting the grounding wire and other grounding components, and the free end thereof is communicated with the grounding jack 23; in the initial state, the grounding fixed seat 12 is in the state of waiting for grounding connection; the structure design makes the grounding connection can be realized through the grounding fixed seat 12 when the plug needing grounding is inserted into the grounding jack 23; at the same time, the relative position design of the grounding jack 23 and the grounding fixed seat 12 ensures the convenience and accuracy of the grounding connection; when the plug with grounding pin is inserted into the grounding jack 23, the grounding pin of the plug will move downward along the grounding jack 23, gradually approaching the free end of the grounding fixed seat 12; since the free end of the grounding fixed seat 12 is communicated with the grounding jack 23, the grounding pin of the plug can smoothly contact with the grounding component (such as grounding copper sheet) in the grounding fixed seat 12; once the contact, the grounding pin forms an electrical connection with the grounding component in the grounding fixed seat 12; since the grounding fixed seat 12 can maintain a relatively closed state under normal circumstances, in addition to connecting with the grounding pin of the plug through the grounding jack 23, it can effectively prevent foreign matters from contacting with the grounding component, reduce the possibility of grounding failure caused by foreign matter contact, and further ensure the reliability of the grounding system.

[0031] The anti-electric shock power strip also includes a fault display lamp 24 disposed in the upper shell 21. The anti-electric shock power strip usually has some protection circuits inside for monitoring the working state of the power strip; these protection circuits can detect various fault conditions, such as overload, short circuit, leakage, etc.; when the current, voltage and other parameters inside the power strip are abnormal, the protection circuit will generate corresponding fault signal; the user can quickly judge that the power strip has a leakage problem according to the state of the fault display lamp 24, and needs to take corresponding safety measures, such as cutting off the power supply, checking the insulation condition of the electrical equipment, etc.

[0032] The anti-electric shock power supply row plug further comprises a female socket 13 installed on the lower cover 10 for female plug insertion, and the female socket 13 is provided with a female socket hole 25 opposite the upper shell 21. The female socket 13 is installed on the lower cover 10 and is a component specially designed to receive a female plug. The female socket hole 25 is provided on the upper shell 21 in a position corresponding to the female socket 13. The female socket hole 25 is mainly designed to allow the female plug to be smoothly inserted into the female socket 13. When the female plug is inserted through the female socket hole 25 of the upper shell 21, the female plug will gradually approach the female socket 13 under the guidance of the female socket hole 25. Since the female socket hole 25 and the female socket 13 are corresponding, the female plug can be smoothly inserted into the female socket 13. The female socket 13 has a corresponding conductive contact point inside. When the female plug is completely inserted into the female socket 13, the conductive part of the female plug and the conductive contact point of the female socket 13 are in close contact. Through this design, it is convenient to provide power access for some specific electrical equipment (which uses a female plug as a power interface).

[0033] The anti-electric shock power supply row plug further comprises a male socket 14 installed on the lower cover 10 for male plug insertion, and the male socket 14 is provided with a male socket hole 26 opposite the upper shell 21. The male socket 14 is installed on the lower cover 10 and is a component specially designed to receive a male plug. The male socket hole 26 is provided on the upper shell 21 in a position corresponding to the male socket 14. When the male plug is inserted through the male socket hole 26, the male plug will gradually approach the inside of the male socket 14 under the guidance of the male socket hole 26. Since the male plug and the male socket 14 are corresponding designs, the male plug can be smoothly inserted into the male socket 14 along the male socket hole 26. The male socket 14 has a corresponding conductive structure inside. When the male plug is completely inserted into the male socket 14, the conductive part of the male plug and the conductive structure of the male socket 14 are in close contact. When the male plug is pulled out of the male socket 14, the conductive contact part of the male plug and the male socket 14 is separated, and the current path is cut off. The male socket 14 returns to the initial state and waits for the next insertion of the male plug. This process is similar to the insertion and removal principle of ordinary sockets and plugs, but it focuses more on the specific structure of the male plug and the male socket 14. Through this design, it is convenient to provide power access for electrical equipment with a male plug interface.

[0034] The through installation holes 27 are arranged on both sides of the lower cover 10, and the through installation holes 27 include the middle hole 270 arranged in the middle and the side holes 271 arranged on both sides of the middle hole 270, the middle hole 270 is larger than the side holes 271 on both sides, and the middle hole 270 is in communication with the side holes 271 on both sides. The through installation holes 27 are arranged on both sides of the lower cover 10, in order to facilitate the installation of the power strip; the middle hole 270 is larger than the side holes 271 on both sides and is in communication with each other, and the unique shape design is to adapt to the specific installation accessories; the middle hole 270 can accommodate the thicker part of the installation accessories, for example, the head of the installation bolt; the side holes 271 on both sides can be used for inserting the rod part of the installation bolt, and the size of the side hole 271 is smaller and can play a certain positioning role on the bolt rod part, so as to ensure that the installation accessories maintain the correct position during the installation process; when the power strip is installed, first, the head of the installation accessories (such as a bolt) is inserted through the middle hole 270; because the size of the middle hole 270 is larger, the head can be easily accommodated; then the rod part of the bolt is aligned with the side holes 271 on both sides, and the rod part is inserted into the side hole 271; this installation method can make the power strip be firmly fixed on the installation position; for example, when the power strip is installed on the wall surface or other plane, by inserting the bolt through the installation hole 27 and fixing it on the installation point of the wall surface, the cooperation of the middle hole 270 and the side hole 271 ensures that the power strip will not easily shake during the installation process, and the stability of the installation is improved.

[0035] The above only expresses the preferred technical solutions of the utility model, and the description is more specific and detailed, but it cannot be understood as limiting the scope of the utility model patent. It should be pointed out that for ordinary skilled persons in the art, without departing from the concept of the utility model, a number of modifications and improvements can be made, and the utility model also intends to include these changes and modifications.

Claims

1. A shockproof power supply strip, characterized in that, The device comprises a lower cover, an upper cover installed on the lower cover, and an anti-electricity component; the upper cover comprises an upper shell and an electricity receiving jack arranged on the upper shell; the anti-electricity component comprises a mounting frame arranged on the lower cover, an anti-electricity piece slidingly arranged on the mounting frame, and an elastic piece installed between the side wall of the mounting frame and the anti-electricity piece for limiting the anti-electricity piece; the electricity receiving jack is provided with an insertion channel opposite to the mounting frame, and the anti-electricity piece is arranged between the insertion channel and the electricity receiving jack when the elastic piece is in a relaxed state; the anti-electricity piece comprises an insertion surface facing one side of the electricity receiving jack, and the insertion surface is arranged to be inclined downward from one end close to the elastic piece to one side of the insertion channel.

2. The shock proof power strip of claim 1, wherein, The anti-electricity power supply row plug further comprises a main sliding rail arranged on the mounting frame opposite to the electricity receiving jack, and the anti-electricity piece further comprises a sliding part slidingly arranged on the mounting frame and an anti-electricity part installed on the sliding part, and the insertion surface is arranged on the anti-electricity part opposite to the electricity receiving jack.

3. The shock proof power strip of claim 2, wherein, The anti-electricity power supply row plug further comprises auxiliary sliding rails arranged on the two side walls of the mounting frame, and the anti-electricity part is two, respectively installed on the two sides of the sliding part, and the two anti-electricity parts are respectively slidingly arranged in the two auxiliary sliding rails.

4. The shock proof power strip of claim 3, wherein, The mounting frame is provided with a fixed block, one end of the sliding part connected with the elastic piece is provided with a fixed column, and the elastic piece is a spring with one end installed on the fixed block and the other end sleeved on the fixed column.

5. The shock proof power strip of claim 1, wherein, The lower cover opposite to the electricity receiving jack is provided with an electricity receiving fixing seat for installing a copper sheet, and the free end of the electricity receiving fixing seat is in communication with the insertion channel.

6. The shock proof power strip of claim 1, wherein, The anti-electricity power supply row plug further comprises a grounding jack arranged in the upper shell, and the lower cover opposite to the grounding jack is provided with a grounding fixing seat, and the free end of the grounding fixing seat is in communication with the grounding jack.

7. The shock proof power strip of claim 1, wherein, The anti-electricity power supply row plug further comprises a fault display lamp arranged in the upper shell.

8. The shock proof power strip of claim 1, wherein, The anti-electricity power supply row plug further comprises a female socket installed on the lower cover for female plug insertion, and the female socket opposite to the upper shell is provided with a female plug hole.

9. The shock proof power strip of claim 1, wherein, The anti-electricity power supply row plug further comprises a male socket installed on the lower cover for male plug insertion, and the male socket opposite to the upper shell is provided with a male plug hole.

10. The shock proof power strip of claim 1, wherein, The lower cover is provided with a through mounting hole on both sides, the mounting hole comprises a middle hole arranged in the middle and side holes arranged on both sides of the middle hole, the middle hole is larger than the side holes on both sides, and the middle hole is in communication with the side holes on both sides.