Socket hardware structure applied to power converter

By adopting an integrated design of neutral and live wire conductive pieces in the hardware structure of the power converter socket, the problems of socket displacement and poor conductivity are solved, achieving stable connection and smaller size, and improving the reliability and portability of the power converter.

CN224097014UActive Publication Date: 2026-04-07SHENZHEN SHENSAI TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-28
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing power converter sockets are prone to displacement due to their metal structure, leading to poor or no conductivity. Furthermore, the conductive plates of traditional integrated structures are prone to deformation and failure to spring back after prolonged use.

Method used

It adopts an integrated structure of neutral wire and live wire conductive piece, and ensures stable connection between multi-national plugs and sockets by lengthening the conductive piece lever arm and adding an extra conductive piece design, avoiding poor conductivity.

Benefits of technology

It improves the conductivity of the socket, reduces the overall size, makes the power converter more portable, and extends its service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of power converter socket hardware structures, and discloses a socket hardware structure applied to a power converter, which comprises a longitudinal null line connecting sheet I and a longitudinal live wire connecting sheet I. A null line conduction sheet is arranged on one side wall of the longitudinal null line connecting sheet, and a live wire conduction sheet is arranged on one side wall of the longitudinal live wire connecting sheet. The zero line conduction piece and the live line conduction piece are both of an integrally-formed structure, the zero line conduction piece comprises a first transverse zero line connection piece connected with the upper end of the first longitudinal zero line connection piece leftwards, and the lower end of the first longitudinal zero line connection piece is connected with a fifth longitudinal zero line connection piece rightwards. According to the utility model, the zero line conduction sheet and the live line conduction sheet form an integrated structure, the conduction sheet force arm is lengthened, plug insertion hole sites with large size difference are limited, and the British conduction sheet III and the British conduction sheet VI are additionally arranged, so that the conductive sheet in the power supply converter does not deform and rebound even if the power supply converter is plugged and unplugged for a long time.
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Description

TECHNICAL FIELD

[0001] The utility model relates to power converter socket hardware structure field especially, a kind of socket hardware structure applied to power converter. BACKGROUND

[0002] In modern globalized life and work scene, people often need to use electronic equipment in different countries and regions. As a key device connecting different specifications of power supply and electronic equipment, the performance of the socket hardware structure of power converter is crucial. A socket hardware structure that is efficient, reliable and compatible with multiple plug specifications plays a decisive role in improving the practicality and safety of power converter.

[0003] The conductive sheet corresponding to the common combination socket hole of power converter on the market is generally split type and integral type, which corresponds to different national socket holes in the combination socket hole respectively, so as to realize the effect of connection conduction. Under this design, when the plug is inserted into the socket, the plug pin contacts the plug sleeve, and the current flows from the plug pin through the plug sleeve, and then is connected to the internal circuit of the power converter through the wire.

[0004] Now the split type structure is large in size and the conductive sheet inside will be displaced after long-time plugging and unplugging, resulting in the condition that it cannot be conducted or the conduction is poor. At the same time, the existing integral type structure has the problem that when a large plug and a small plug share one socket hole, the conductive sheet is easy to deform and not to rebound after long-time plugging and unplugging. Therefore, a socket hardware structure applied to power converter is proposed to solve the above problems. SUMMARY

[0005] In order to make up for the above shortcomings, the utility model provides a socket hardware structure applied to power converter, which aims to improve the problem of easy displacement, poor conduction or inability to conduct in the prior art.

[0006] In order to achieve the above purpose, the utility model adopts the following technical scheme:

[0007] A socket hardware structure applied to power converter, comprising: a longitudinal zero line connecting piece one and a longitudinal fire wire connecting piece one, a zero line conduction piece is arranged on the side wall of the longitudinal zero line connecting piece one, a fire wire conduction piece is arranged on the side wall of the longitudinal fire wire connecting piece one, and the zero line conduction piece and the fire wire conduction piece are both integral molding structures.

[0008] As a further description of the above technical scheme:

[0009] The zero line conducting piece includes a horizontal zero line connecting piece one connected to the upper end of the longitudinal zero line connecting piece one to the left, the lower end of the longitudinal zero line connecting piece five is connected to the longitudinal zero line connecting piece five to the right, the longitudinal zero line connecting piece five is connected to the horizontal zero line connecting piece six to the left, the horizontal zero line connecting piece six is connected to the longitudinal zero line connecting piece six to the right, the longitudinal zero line connecting piece six is connected to the horizontal zero line connecting piece five to the left, the horizontal zero line connecting piece five is connected to the longitudinal zero line connecting piece four to the upper, the longitudinal zero line connecting piece four is connected to the horizontal zero line connecting piece four to the right, the horizontal zero line connecting piece four is connected to the longitudinal zero line connecting piece three to the upper, the longitudinal zero line connecting piece three is connected to the horizontal zero line connecting piece three to the left, the horizontal zero line connecting piece three is connected to the longitudinal zero line connecting piece two to the upper, and the longitudinal zero line connecting piece two is connected to the horizontal zero line connecting piece two to the right;

[0010] As a further description of the above technical solution:

[0011] The fire line conducting piece includes a longitudinal fire line connecting piece seven connected to the lower end of the longitudinal fire line connecting piece one to the left, the longitudinal fire line connecting piece seven is connected to the horizontal fire line connecting piece five to the right, the horizontal fire line connecting piece five is connected to the longitudinal fire line connecting piece six to the right, the longitudinal fire line connecting piece six is connected to the horizontal fire line connecting piece four to the right, the horizontal fire line connecting piece four is connected to the longitudinal fire line connecting piece five to the upper, the longitudinal fire line connecting piece five is connected to the horizontal fire line connecting piece three to the left, the horizontal fire line connecting piece three is connected to the longitudinal fire line connecting piece four to the upper, the longitudinal fire line connecting piece four is connected to the horizontal fire line connecting piece two to the right, the horizontal fire line connecting piece two is connected to the longitudinal fire line connecting piece three to the upper, the longitudinal fire line connecting piece three is connected to the horizontal fire line connecting piece one to the left, and the horizontal fire line connecting piece one is connected to the longitudinal fire line connecting piece two to the upper.

[0012] As a further description of the above technical solution:

[0013] The side wall of the horizontal zero line connecting piece two is formed with a European standard conducting piece one extending obliquely to the horizontal zero line connecting piece three, the side wall of the horizontal zero line connecting piece three is formed with a European standard conducting piece two extending obliquely to the horizontal zero line connecting piece two, and the side wall of the longitudinal zero line connecting piece one is formed with a Japanese standard and American standard conducting piece one extending obliquely to the European standard conducting piece one and the European standard conducting piece two.

[0014] As a further description of the above technical solution:

[0015] The side wall of the transverse zero line connecting piece four is formed with a British standard conducting piece one which is obliquely extended to the transverse zero line connecting piece five, the side wall of the transverse zero line connecting piece five is formed with a British standard conducting piece two which is obliquely extended to the transverse zero line connecting piece four, the side wall of the longitudinal zero line connecting piece four is formed with a British standard conducting piece three which is obliquely extended to the British standard conducting piece one and the British standard conducting piece two, the side wall of the longitudinal zero line connecting piece five is formed with an Australian standard conducting piece one which is obliquely extended to the longitudinal zero line connecting piece six, and the side wall of the longitudinal zero line connecting piece six is formed with an Australian standard conducting piece two which is obliquely extended to the longitudinal zero line connecting piece five.

[0016] As a further description of the above technical solution:

[0017] The side wall of the transverse zero line connecting piece four is formed with a British standard conducting piece one which is obliquely extended to the transverse zero line connecting piece five, the side wall of the transverse zero line connecting piece five is formed with a British standard conducting piece two which is obliquely extended to the transverse zero line connecting piece four, the side wall of the longitudinal zero line connecting piece four is formed with a British standard conducting piece three which is obliquely extended to the British standard conducting piece one and the British standard conducting piece two, the side wall of the longitudinal zero line connecting piece five is formed with an Australian standard conducting piece one which is obliquely extended to the longitudinal zero line connecting piece six, and the side wall of the longitudinal zero line connecting piece six is formed with an Australian standard conducting piece two which is obliquely extended to the longitudinal zero line connecting piece five.

[0018] As a further description of the above technical solution:

[0019] The side wall of the transverse zero line connecting piece four is formed with a British standard conducting piece one which is obliquely extended to the transverse zero line connecting piece five, the side wall of the transverse zero line connecting piece five is formed with a British standard conducting piece two which is obliquely extended to the transverse zero line connecting piece four, the side wall of the longitudinal zero line connecting piece four is formed with a British standard conducting piece three which is obliquely extended to the British standard conducting piece one and the British standard conducting piece two, the side wall of the longitudinal zero line connecting piece five is formed with an Australian standard conducting piece one which is obliquely extended to the longitudinal zero line connecting piece six, and the side wall of the longitudinal zero line connecting piece six is formed with an Australian standard conducting piece two which is obliquely extended to the longitudinal zero line connecting piece five.

[0020] As a further description of the above technical solution:

[0021] The side wall of the transverse zero line connecting piece four is formed with a British standard conducting piece one which is obliquely extended to the transverse zero line connecting piece five, the side wall of the transverse zero line connecting piece five is formed with a British standard conducting piece two which is obliquely extended to the transverse zero line connecting piece four, the side wall of the longitudinal zero line connecting piece four is formed with a British standard conducting piece three which is obliquely extended to the British standard conducting piece one and the British standard conducting piece two, the side wall of the longitudinal zero line connecting piece five is formed with an Australian standard conducting piece one which is obliquely extended to the longitudinal zero line connecting piece six, and the side wall of the longitudinal zero line connecting piece six is formed with an Australian standard conducting piece two which is obliquely extended to the longitudinal zero line connecting piece five.

[0022] As a further description of the above technical solution:

[0023] The middle part of the European standard conducting piece one and the European standard conducting piece two is arc-shaped, and the right edge of the British standard conducting piece one and the British standard conducting piece two is arc-shaped.

[0024] As a further description of the above technical solution:

[0025] The middle part of the European standard conducting piece one and the European standard conducting piece two is arc-shaped, and the right edge of the British standard conducting piece one and the British standard conducting piece two is arc-shaped.

[0026] The utility model has following beneficial effects:

[0027] The utility model discloses a through the zero line conduction piece and the fire line conduction piece form integral moulded structure, and there is each conduction piece correspondingly, and through the lengthened conduction piece force arm and the limitation size difference too big plug insertion hole and the additional increase the three of the english rule conduction piece and the six of the english rule conduction piece, even long time plug -in, the conductive sheet in power converter also can not deform and not rebound, make the multi -national plug of insertion combination formula socket hole and the pin conduction connection, simultaneously its integrated structure also reduced the shift, avoided the situation of conduction bad or can not conduction, optimized the conduction efficiency, reduced the overall volume of power converter, made power converter more convenient to carry. BRIEF DESCRIPTION OF DRAWINGS

[0028] Fig. 1 A three-dimensional schematic view of the socket hardware structure applied to the power converter is provided for the utility model;

[0029] Fig. 2 A structure schematic view of the zero line conduction piece of the socket hardware structure applied to the power converter is provided for the utility model;

[0030] Fig. 3 A structure schematic view of the fire line conduction piece of the socket hardware structure applied to the power converter is provided for the utility model.

[0031] LEGEND:

[0032] 1, longitudinal zero line connecting piece one;2, transverse zero line connecting piece one;3, transverse zero line connecting piece two;4, longitudinal zero line connecting piece two;5, transverse zero line connecting piece three;6, longitudinal zero line connecting piece three;7, transverse zero line connecting piece four;8, longitudinal zero line connecting piece four;9, transverse zero line connecting piece five;10, longitudinal zero line connecting piece five;11, longitudinal zero line connecting piece six;12, transverse zero line connecting piece six;13, the european rule conduction piece one;14, the european rule conduction piece two;15, the japanese rule and the american rule conduction piece one;16, the english rule conduction piece one;17, the english rule conduction piece two;18, the english rule conduction piece three;19, the australian rule conduction piece one;20, the australian rule conduction piece two;21, longitudinal fire line connecting piece one;22, longitudinal fire line connecting piece two;23, transverse fire line connecting piece one;24, longitudinal fire line connecting piece three;25, transverse fire line connecting piece two;26, longitudinal fire line connecting piece four;27, transverse fire line connecting piece three;28, longitudinal fire line connecting piece five;29, transverse fire line connecting piece four;30, longitudinal fire line connecting piece six;31, transverse fire line connecting piece five;32, longitudinal fire line connecting piece seven;33, the european rule conduction piece three;34, the european rule conduction piece four;35, the japanese rule and the american rule conduction piece two;36, the english rule conduction piece four;37, the english rule conduction piece five;38, the english rule conduction piece six;39, the australian rule conduction piece three;40, the australian rule conduction piece four. DETAILED DESCRIPTION

[0033] Clearly, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of protection of the present application.

[0034] With reference to Figs. 1-3The utility model provides a kind of socket hardware structure applied to power converter, comprising: longitudinal zero line connecting piece one 1 and longitudinal firewire connecting piece one 21, longitudinal zero line connecting piece one 1 side wall is provided with zero line conducting piece, longitudinal firewire connecting piece one 21 side wall is provided with firewire conducting piece, zero line conducting piece and firewire conducting piece are integrally formed structure, zero line conducting piece includes the horizontal zero line connecting piece one 2 that longitudinal zero line connecting piece one 1 upper end is connected to left, longitudinal zero line connecting piece one 1 lower end is connected with longitudinal zero line connecting piece five 10 to right down, longitudinal zero line connecting piece five 10 is connected with horizontal zero line connecting piece six 12 to left down, longitudinal zero line connecting piece six 11 is connected with horizontal zero line connecting piece five 9 to left side, horizontal zero line connecting piece five 9 is connected with longitudinal zero line connecting piece four 8 upwards, longitudinal zero line connecting piece four 8 is connected with horizontal zero line connecting piece four 7 to right, horizontal zero line connecting piece four 7 is connected with longitudinal zero line connecting piece three 6 upwards, longitudinal zero line connecting piece three 6 is connected with horizontal zero line connecting piece three 5 to left, horizontal zero line connecting piece three 5 is connected with longitudinal zero line connecting piece two 4 upwards, longitudinal zero line connecting piece two 4 is connected with horizontal zero line connecting piece two 3 to right, firewire conducting piece includes the longitudinal firewire connecting piece seven 32 that longitudinal firewire connecting piece one 21 lower end is connected to left down, longitudinal firewire connecting piece seven 32 is connected with horizontal firewire connecting piece five 31 to right down, horizontal firewire connecting piece five 31 is connected with longitudinal firewire connecting piece six 30 to right up, longitudinal firewire connecting piece six 30 is connected with horizontal firewire connecting piece four 29 to right, horizontal firewire connecting piece four 29 is connected with longitudinal firewire connecting piece five 28 upwards, longitudinal firewire connecting piece five 28 is connected with horizontal firewire connecting piece three 27 to left, horizontal firewire connecting piece three 27 is connected with longitudinal firewire connecting piece four 26 upwards, longitudinal firewire connecting piece four 26 is connected with horizontal firewire connecting piece two 25 to right, horizontal firewire connecting piece two 25 is connected with longitudinal firewire connecting piece three 24 upwards, longitudinal firewire connecting piece three 24 is connected with horizontal firewire connecting piece one 23 to left, horizontal firewire connecting piece one 23 is connected with longitudinal firewire connecting piece two 22 upwards, the side wall of horizontal zero line connecting piece two 3 forms the oblique extension of European standard conducting piece one 13 to horizontal zero line connecting piece three 5, the side wall of horizontal zero line connecting piece three 5 forms the oblique extension of European standard conducting piece two 14 to horizontal zero line connecting piece two 3, the side wall of longitudinal zero line connecting piece one 1 forms the oblique extension of Japanese standard and American standard conducting piece one 15 to European standard conducting piece one 13 and European standard conducting piece two 14, the side wall of horizontal zero line connecting piece four 7 forms the oblique extension of British standard conducting piece one 16 to horizontal zero line connecting piece five 9, the side wall of horizontal zero line connecting piece five 9 forms the oblique extension of British standard conducting piece two 17 to horizontal zero line connecting piece four 7, the side wall of longitudinal zero line connecting piece four 8 forms the oblique extension of British standard conducting piece three 18 to British standard conducting piece one 16 and British standard conducting piece two 17, the side wall of longitudinal zero line connecting piece five 10 forms the oblique extension of Australian standard conducting piece one 19 to longitudinal zero line connecting piece six 11,The side wall of the longitudinal zero line connecting piece six 11 is formed with the Australian standard pilot piece two 20 extending obliquely to the longitudinal zero line connecting piece five 10, the side wall of the transverse fire wire connecting piece one 23 is formed with the European standard pilot piece three 33 extending obliquely to the transverse fire wire connecting piece two 25, the side wall of the transverse fire wire connecting piece two 25 is formed with the European standard pilot piece four 34 extending obliquely to the side wall of the transverse fire wire connecting piece one 23, the side wall of the longitudinal fire wire connecting piece one 21 is formed with the Japanese and American standard pilot piece two 35 extending obliquely to the European standard pilot piece three 33 and the European standard pilot piece four 34, the side wall of the transverse fire wire connecting piece three 27 is formed with the British standard pilot piece four 36 extending obliquely to the transverse fire wire connecting piece four 29, the side wall of the transverse fire wire connecting piece four 29 is formed with the British standard pilot piece five 37 extending obliquely to the transverse fire wire connecting piece three 27, the side wall of the longitudinal fire wire connecting piece five 28 is formed with the British standard pilot piece six 38 extending obliquely to the British standard pilot piece four 36 and the British standard pilot piece five 37, the side wall of the longitudinal fire wire connecting piece seven 32 is formed with the Australian standard pilot piece four 40 extending obliquely to the longitudinal fire wire connecting piece six 30, the side wall of the longitudinal fire wire connecting piece six 30 is formed with the Australian standard pilot piece three 39 extending obliquely to the longitudinal fire wire connecting piece seven 32, the middle part of the European standard pilot piece one 13 and the European standard pilot piece two 14 is arc-shaped, the British standard pilot piece one 16 and the British standard pilot piece two 17 are arc-shaped to the right edge, the middle part of the European standard pilot piece three 33 and the European standard pilot piece four 34 is arc-shaped, and the British standard pilot piece four 36 and the British standard pilot piece five 37 are arc-shaped to the left edge.

[0035] When the European plug is inserted, the European conducting piece one 13 and the European conducting piece two 14 undertake the connection of the zero line pin and the zero line conducting piece, and the European conducting piece one 13 and the European conducting piece two 14 are designed in a circular arc shape in the middle, which can closely fit the contour of the zero line pin of the European plug, greatly increasing the contact area, and the larger contact area means lower contact resistance, which can effectively reduce the energy loss in the process of current transmission and improve the conduction efficiency. The current from the zero line pin of the European plug flows stably and efficiently through the European conducting piece one 13 and the European conducting piece two 14 into the zero line conducting piece, and then flows through the various connecting pieces on the zero line conducting piece in turn, such as the horizontal zero line connecting piece two 3, the vertical zero line connecting piece two 4, the horizontal zero line connecting piece three 5, and finally completes the zero line loop through the vertical zero line connecting piece one 1 and other paths, realizing the complete circulation of current. At the same time, the European conducting piece three 33 and the European conducting piece four 34 are responsible for connecting the fire wire pin of the plug and the fire wire conducting piece, and the circular arc design in the middle of the European conducting piece three 33 and the European conducting piece four 34 makes it well adapted to the fire wire pin of the European plug, ensuring stable contact. The current from the fire wire pin of the European plug enters the fire wire conducting piece through the European conducting piece three 33 and the European conducting piece four 34, and then flows through the various connecting pieces on the fire wire conducting piece in turn, such as the horizontal fire wire connecting piece one 23 and the vertical fire wire connecting piece two 22, and finally completes the fire wire loop through the vertical fire wire connecting piece one 21 and other paths, ensuring smooth transmission of fire wire current. After the British plug is inserted, the British conducting piece one 16, the British conducting piece two 17 and the British conducting piece three 18 jointly act on the connection of the plug zero line pin and the zero line conducting piece, and the British conducting piece one 16 and the British conducting piece two 17 are circularly arc-shaped towards the right edge, which is consistent with the shape characteristics of the zero line pin of the British plug, and can more closely contact the pin, ensuring the reliability of current transmission. The British conducting piece three 18 extends from the side wall of the vertical zero line connecting piece four 8, further stabilizing the connection. The current from the zero line pin of the British plug enters the conducting path of the zero line conducting piece through the British conducting piece one 16, the British conducting piece two 17 and the British conducting piece three 18, flows through the connecting pieces in turn, such as the horizontal zero line connecting piece four 7 and the vertical zero line connecting piece four 8, and finally returns to the vertical zero line connecting piece one 1 to complete the zero line loop, realizing the orderly transmission of zero line current. The British conducting piece four 36, the British conducting piece five 37 and the British conducting piece six 38 are responsible for the connection of the fire wire pin of the British plug and the fire wire conducting piece. The British conducting piece four 36 and the British conducting piece five 37 are circularly arc-shaped towards the left edge, which is adapted to the shape of the fire wire pin of the British plug, can effectively reduce the contact resistance and improve the stability of current transmission. The British conducting piece six 38 is obliquely extended from the side wall of the vertical fire wire connecting piece five 28, enhancing the stability of the connection. The current from the fire wire pin of the British plug enters the conducting path of the fire wire conducting piece through the British conducting piece four 36, the British conducting piece five 37 and the British conducting piece six 38, flows through the connecting pieces in turn, such as the horizontal fire wire connecting piece three 27 and the vertical fire wire connecting piece five 28, and finally reaches the vertical fire wire connecting piece one 21 to complete the fire wire loop.The guaranteeing stable transmission of the live wire current, when the Australian plug is inserted, the Australian conducting piece one 19 and the Australian conducting piece two 20 extend obliquely from the side wall of the longitudinal zero line connecting piece five 10 and the longitudinal zero line connecting piece six 11, accurately connect the plug zero line pin and the zero line conducting piece, introduce the current from the Australian plug zero line pin into the passage of the zero line conducting piece, pass through the longitudinal zero line connecting piece five 10, the transverse zero line connecting piece six 12 and other connecting pieces in turn, and then complete the transmission of the zero line current, guarantee the normal circulation of the zero line current, the Australian conducting piece three 39 and the Australian conducting piece four 40 extend obliquely from the side wall of the longitudinal live wire connecting piece six 30 and the longitudinal live wire connecting piece seven 32, are used for connecting the plug live wire pin and the live wire conducting piece, can introduce the current from the Australian plug live wire pin into the passage of the live wire conducting piece, pass through the longitudinal live wire connecting piece six 30, the transverse live wire connecting piece five 31 and other connecting pieces in turn, and then complete the transmission of the live wire current, ensure the stable operation of the live wire current, when the Japanese or American plug is inserted, the Japanese and American conducting piece one 15 extends from the side wall of the longitudinal zero line connecting piece one 1, undertakes the task of connecting the plug zero line pin and the zero line conducting piece together with the European conducting piece one 13 and the European conducting piece two 14, can guide the current to start from the Japanese or American plug zero line pin, pass through the European conducting piece one 13 and the European conducting piece two 14 into the passage of the zero line conducting piece, pass through the transverse zero line connecting piece two 3, the longitudinal zero line connecting piece two 4 and other connecting pieces in turn, and then complete the transmission of the zero line current, guarantee the effective circulation of the zero line current, the Japanese and American conducting piece two 35 extends from the side wall of the longitudinal live wire connecting piece one 21, is responsible for connecting the plug live wire pin and the live wire conducting piece together with the European conducting piece three 33 and the European conducting piece four 34, can guide the current to start from the Japanese or American plug live wire pin, pass through the European conducting piece three 33 and the European conducting piece four 34 into the passage of the live wire conducting piece, pass through the transverse live wire connecting piece one 23, the longitudinal live wire connecting piece two 22 and other connecting pieces in turn, and then complete the transmission of the live wire current, guarantee the stable transmission of the live wire current.

[0036] It is worth mentioning that the British rule on the third 18 and the British rule on the sixth 38 are additional conductive pieces. In the traditional British rule on the hardware design, the British rule on the conductive piece usually has only two contacts with the plug pin, and by adding the British rule on the third 18 and the British rule on the sixth 38, three-sided contact is realized. The British rule on the third 18 extends from the side wall of the longitudinal zero line connecting piece 8, and the British rule on the sixth 38 extends obliquely from the side wall of the longitudinal fire line connecting piece 5 28. The extra one side contact greatly increases the contact area with the British plug pin, which can effectively reduce the contact resistance, thereby avoiding the aging and damage of components caused by long-term heating, significantly prolonging the service life of the socket hardware structure. At the same time, the larger contact area makes the connection between the plug and the socket more secure, and the plug is not easy to shake during use. At the same time, the hardware force wall is lengthened, and after the hardware force wall is lengthened, its degree of deformation will be significantly reduced when subjected to external forces. In daily use, the socket will be subjected to various external forces, such as the force during plug insertion and removal, accidental collision, etc. The shorter hardware force wall is easy to deform under these external forces. Once deformed, it may cause poor contact between the internal connecting pieces. The lengthened hardware force wall has better structural strength and toughness, which can effectively resist these external forces and maintain the stability of the internal structure, making the overall structure of the socket more stable, ensuring that the contact between each connecting piece is always good. Whether it is a zero line conductive piece or a fire line conductive piece, under the condition of lengthening the hardware force wall, it can more stably transmit current, further improving the reliability and service life of the socket hardware structure.

[0037] Working principle: when the European plug is inserted, the European conducting piece one 13 and the European conducting piece two 14 contact the zero line pin of the plug, the current passes through the connection of them with the zero line conducting piece, completes the zero line loop through the path of the longitudinal zero line connecting piece one 1, the European conducting piece three 33 and the European conducting piece four 34 contact the fire wire pin of the plug, the current passes through the connection of them with the fire wire conducting piece, completes the fire wire loop through the path of the longitudinal fire wire connecting piece one 21, after the British plug is inserted, the British conducting piece one 16, the British conducting piece two 17 and the British conducting piece three 18 contact the zero line pin of the plug, the current passes through the conducting path of the zero line conducting piece, finally returns to the longitudinal zero line connecting piece one 1 to complete the zero line loop, the British conducting piece four 36, the British conducting piece five 37 and the British conducting piece six 38 contact the fire wire pin of the plug, the current passes through the conducting path of the fire wire conducting piece, finally reaches the longitudinal fire wire connecting piece one 21 to complete the fire wire loop, when the Australian plug is inserted, the Australian conducting piece one 19 and the Australian conducting piece two 20 are connected with the zero line pin of the plug, the current is introduced into the path of the zero line conducting piece, and then the transmission of the zero line current is completed, the Australian conducting piece three 39 and the Australian conducting piece four 40 are connected with the fire wire pin of the plug, the current is introduced into the path of the fire wire conducting piece, and then the transmission of the fire wire current is completed, when the Japanese or American plug is inserted, the Japanese and American conducting piece one 15, the European conducting piece one 13 and the European conducting piece two 14 contact the zero line pin of the plug, the current is introduced into the path of the zero line conducting piece, and then the transmission of the zero line current is completed, the Japanese and American conducting piece two 35, the European conducting piece three 33 and the European conducting piece four 34 contact the fire wire pin of the plug, the current is introduced into the path of the fire wire conducting piece, and then the transmission of the fire wire current is completed.

[0038] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and not for limiting the present application, although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, it still can be modified to the technical scheme recorded in the foregoing embodiments, or equivalent replacement of part of the technical features, any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application, should be included in the protection scope of the present application.

Claims

1. A socket hardware structure for use in power converters, characterized in that, include: The longitudinal neutral wire connecting piece 1 (1) and the longitudinal live wire connecting piece 1 (21) are provided with a neutral wire conductive piece on the side wall of the longitudinal neutral wire connecting piece 1 (1) and a live wire conductive piece on the side wall of the longitudinal live wire connecting piece 1 (21). The neutral wire conductive piece and the live wire conductive piece are both integrally formed structures.

2. The socket hardware structure for a power converter according to claim 1, characterized in that: The neutral wire connecting piece includes a longitudinal neutral wire connecting piece 1 (1) with a transverse neutral wire connecting piece 1 (2) connected to the left at its upper end; a longitudinal neutral wire connecting piece 5 (10) connected to the lower right at its lower end; a transverse neutral wire connecting piece 6 (12) connected to the lower left at its upper left at its lower left at its lower right at its upper right at its upper right at its upper right at its lower left at its lower left at its left at its left at its right ... right at its left at its right at its left at its right at its left at its right at its left at its right at its left at its right at its left at its right at its left at its right at its left at its right at its right at its left at its right at its left at its right at its right at its left at its right at its right at its left at its right at its right at its left at its right at its right at its left at its right at its right at its left at its right at its right at its left at its right at its right at its left at its right at A vertical neutral wire connecting piece four (8) is connected upward to the neutral wire connecting piece five (9). A horizontal neutral wire connecting piece four (7) is connected to the right of the vertical neutral wire connecting piece four (8). A vertical neutral wire connecting piece three (6) is connected upward to the horizontal neutral wire connecting piece four (7). A horizontal neutral wire connecting piece three (5) is connected to the left of the vertical neutral wire connecting piece three (6). A vertical neutral wire connecting piece two (4) is connected upward to the horizontal neutral wire connecting piece two (3).

3. The socket hardware structure for a power converter according to claim 1, characterized in that: The live wire connecting piece includes a vertical live wire connecting piece 7 (32) connected to the lower left of the lower end of the vertical live wire connecting piece 1 (21), a horizontal live wire connecting piece 5 (31) connected to the lower right of the vertical live wire connecting piece 7 (32), a vertical live wire connecting piece 6 (30) connected to the upper right of the horizontal live wire connecting piece 5 (31), a horizontal live wire connecting piece 4 (29) connected to the right of the vertical live wire connecting piece 6 (30), and a vertical live wire connecting piece 5 (28) connected to the upper right of the horizontal live wire connecting piece 4 (29). Piece 5 (28) is connected to transverse live wire connector piece 3 (27) to the left. Transverse live wire connector piece 3 (27) is connected to longitudinal live wire connector piece 4 (26) to the top. Longitudinal live wire connector piece 4 (26) is connected to transverse live wire connector piece 2 (25) to the right. Transverse live wire connector piece 2 (25) is connected to longitudinal live wire connector piece 3 (24) to the top. Longitudinal live wire connector piece 3 (24) is connected to transverse live wire connector piece 1 (23) to the left. Transverse live wire connector piece 1 (23) is connected to longitudinal live wire connector piece 2 (22) to the top.

4. The socket hardware structure for a power converter according to claim 2, characterized in that: The sidewall of the second transverse neutral wire connector has a first European standard conductive piece (13) that extends obliquely toward the third transverse neutral wire connector (5). The sidewall of the third transverse neutral wire connector has a second European standard conductive piece (14) that extends obliquely toward the second transverse neutral wire connector (3). The sidewall of the first longitudinal neutral wire connector has a first Japanese standard and second American standard conductive piece (15) that extends obliquely toward the first European standard conductive piece (13) and the second European standard conductive piece (14).

5. The socket hardware structure for a power converter according to claim 4, characterized in that: The sidewall of the transverse neutral wire connecting piece four (7) has a British standard conductive piece one (16) that extends obliquely toward the transverse neutral wire connecting piece five (9). The sidewall of the transverse neutral wire connecting piece five (9) has a British standard conductive piece two (17) that extends obliquely toward the transverse neutral wire connecting piece four (7). The sidewall of the longitudinal neutral wire connecting piece four (8) has a British standard conductive piece three (18) that extends obliquely toward the British standard conductive piece one (16) and the British standard conductive piece two (17). The sidewall of the longitudinal neutral wire connecting piece five (10) has an Australian standard conductive piece one (19) that extends obliquely toward the longitudinal neutral wire connecting piece six (11). The sidewall of the longitudinal neutral wire connecting piece six (11) has an Australian standard conductive piece two (20) that extends obliquely toward the longitudinal neutral wire connecting piece five (10).

6. The socket hardware structure for a power converter according to claim 3, characterized in that: The sidewall of the first (23) transverse wire connector has a third (33) European standard conductive piece that extends obliquely toward the second (25) transverse wire connector. The sidewall of the second (25) transverse wire connector has a fourth (34) European standard conductive piece that extends obliquely toward the sidewall of the first (23) transverse wire connector. The sidewall of the first (21) longitudinal wire connector has a second (35) Japanese and American standard conductive piece that extends obliquely toward the third (33) and the fourth (34) European standard conductive piece.

7. A socket hardware structure for a power converter according to claim 6, characterized in that: The sidewall of the transverse live wire connector three (27) has a British standard conductive piece four (36) extending obliquely toward the transverse live wire connector four (29), the sidewall of the transverse live wire connector four (29) has a British standard conductive piece five (37) extending obliquely toward the transverse live wire connector three (27), and the sidewall of the longitudinal live wire connector five (28) has a British standard conductive piece six (38) extending obliquely toward the British standard conductive pieces four (36) and five (37).

8. The socket hardware structure for a power converter according to claim 3, characterized in that: The sidewall of the longitudinal wire connection piece seven (32) has an Australian standard conductive piece four (40) extending obliquely toward the longitudinal wire connection piece six (30), and the sidewall of the longitudinal wire connection piece six (30) has an Australian standard conductive piece three (39) extending obliquely toward the longitudinal wire connection piece seven (32).

9. A socket hardware structure for a power converter according to claim 5, characterized in that: The middle of the European standard conductive piece 1 (13) and the European standard conductive piece 2 (14) are arc-shaped, and the right edge of the British standard conductive piece 1 (16) and the British standard conductive piece 2 (17) is arc-shaped.

10. A socket hardware structure for a power converter according to claim 7, characterized in that: The middle of the European standard conductive piece three (33) and the European standard conductive piece four (34) are arc-shaped, and the left edge of the British standard conductive piece four (36) and the British standard conductive piece five (37) are arc-shaped.