Triple Brazilian socket
By using a symmetrical distribution of live and neutral copper plates and an inclined arrangement of slots in the three-gang Brazilian socket, the problem of high production and transportation costs of the socket has been solved, resulting in improved production efficiency and enhanced portability.
Patent Information
- Application Number
- CN202520086233.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-15
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-01-15
AI Technical Summary
The existing sockets suffer from high production costs, high mold development costs, low production efficiency, insufficient space utilization, and low transportation and warehousing efficiency.
Design a three-gang Brazilian socket with symmetrically distributed live and neutral copper sheets, and obliquely arranged slots in a long rhombus shape. The fixing plate and limiting post are integrally injection molded with the panel, and the copper sheets are elastically connected through fixing plates and fixing holes.
Simplify the production process, reduce the size of the socket, lower production and transportation costs, and improve portability and space utilization efficiency.
Smart Images

Figure CN223743969U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of sockets, specifically relating to a three-gang Brazilian socket. Background Technology
[0002] The existing socket internal copper sheet structure has significant differences in the specifications and dimensions of the live wire and neutral wire copper sheets. This requires manufacturers to have multiple sets of different molds during production, which not only increases mold development costs but also extends the production preparation cycle. It is difficult to achieve a unified automated processing flow for copper sheets of different specifications on the production line, resulting in low production efficiency. In addition, traditional socket slots mostly adopt a parallel arrangement, which fails to fully consider the effective use of space, resulting in a great waste of space. This makes the socket panels generally large, which is extremely inconvenient for users to carry during travel and outdoor scenarios. Moreover, it occupies a lot of space during transportation and warehousing, resulting in low logistics and warehousing efficiency and high transportation and warehousing costs. Utility Model Content
[0003] The purpose of this utility model is to address the above-mentioned problems by providing a three-gang Brazilian socket, thereby solving the technical problems of high production and transportation costs of existing power strips.
[0004] This utility model is achieved through the following technical solution: a three-gang Brazilian socket, including a panel and a live wire copper plate, a neutral wire copper plate, and a grounding copper plate fixed below the panel. The top surface of the panel has three slots, which are elongated rhombuses conforming to the standard shape of Brazilian sockets. The three slots are arranged side by side at an angle relative to the panel. The bottom of the panel has a fixing plate for fixing the live wire copper plate and the neutral wire copper plate, and a limiting post for fixing the grounding copper plate. The live wire copper plate and the neutral wire copper plate are centrally symmetrically distributed below the panel. Each slot has a live wire socket, a ground wire socket, and a neutral wire socket. The ground wire socket is located on one side of the line where the live wire socket and the neutral wire socket are located, and the distance between the ground wire socket and the live wire socket or the neutral wire socket is equal.
[0005] Furthermore, one end of the slot overlaps with one corner of the panel, the side of the slot is tilted at an angle of 45° relative to the side of the panel, and two adjacent slots are parallel to each other.
[0006] Furthermore, the live wire copper sheet, the neutral wire copper sheet, and the grounding copper sheet all include a copper sheet body and a fixed folding plate extending and bending to one side of the copper sheet body, and the fixed folding plate is provided with a fixing hole for connecting the insertion hole.
[0007] Furthermore, the fixing clamp includes an M-shaped clamp, a through plate, and a C-shaped clamp. The fixing folding plate is fixed to the through plate through fixing holes. The M-shaped clamp and the C-shaped clamp are elastically abutting against the two sides of the fixing folding plate, respectively. The upper end of the through plate is provided with a snap connector that is narrow at the top and wide at the bottom for the fixing holes to pass through and fix.
[0008] Furthermore, the limiting post is hollow and has a limiting hole on its side wall through which a fixing plate for cooperating with the grounding copper sheet passes. A limiting insert plate for limiting the lateral displacement of the grounding copper sheet in the limiting hole is inserted at the end of the limiting post that is relatively far from the panel.
[0009] Furthermore, the fixing clamp and the limiting post are both integrally injection molded with the panel.
[0010] Furthermore, a positioning block is provided below the panel, and the positioning block has a width of 1.5mm.
[0011] This utility model features a symmetrical arrangement of live and neutral copper wires, with the live and neutral copper wires being the same size but installed in opposite directions. This facilitates production and installation, simplifies the production process, and reduces the overall size of the panel by strategically placing the slots on the panel at an angle. This adapts to the miniaturization requirements of the product, facilitates transportation, reduces production and transportation costs, and enhances its portability. Attached Figure Description
[0012] Figure 1 This is a top view of the present invention;
[0013] Figure 2 This is a bottom view of the present invention;
[0014] Figure 3 This is the front view of this utility model;
[0015] Figure 4 This is the right view of this utility model.
[0016] The attached figures are labeled as follows:
[0017] 1. Panel; 11. Slot; 111. Live wire socket; 112. Neutral wire socket; 113. Ground wire socket; 12. Positioning block; 21. Live wire copper sheet; 22. Neutral wire copper sheet; 23. Grounding copper sheet; 24. Copper sheet body; 25. Fixing folding plate; 251. Fixing hole; 3. Fixing clamp; 31. M-shaped clamp; 32. Through plate; 33. C-shaped clamp; 4. Limiting post; 41. Limiting insert. Detailed Implementation
[0018] The present invention will be further illustrated below with reference to specific examples and accompanying drawings.
[0019] like Figures 1-4As shown, this utility model describes a three-gang Brazilian socket, including a panel 1 and a live wire copper piece 21, a neutral wire copper piece 22, and a grounding copper piece 23 fixed below the panel 1. The top surface of the panel 1 has three slots 11, each slot 11 being a long rhombus conforming to the standard shape of a Brazilian socket. The three slots 11 are arranged side-by-side at an angle relative to the panel 1. Below the panel 1 are fixing plates 3 for fixing the live wire copper piece 21 and the neutral wire copper piece 22, and for fixing the grounding copper piece. The limiting post 4 of 23, the live wire copper sheet 21 and the neutral wire copper sheet 22 are centrally symmetrically distributed below the panel 1, and each of the slots 11 is provided with a live wire socket 111, a ground wire socket 113 and a neutral wire socket 112. The ground wire socket 113 is located on one side of the straight line where the live wire socket 111 and the neutral wire socket 112 are located. The distance between the ground wire socket 113 and the live wire socket 111 or the neutral wire socket 112 is equal, that is, the three sockets can form an isosceles triangle when connected in pairs.
[0020] This utility model features a centrally symmetrical arrangement of live and neutral copper wires, with the live and neutral copper wires being the same size but installed in opposite directions. This facilitates production and installation, simplifies the production process, and allows for the reduction of the overall volume of the panel 1 by strategically arranging the slots 11 on the panel 1. This adapts to the miniaturization requirements of the product, facilitates transportation, reduces production and transportation costs, and enhances its portability.
[0021] Since the standard shape of the Brazilian socket is a long rhombus with an included angle of 90° at both ends, in this embodiment of the utility model, one end of the slot 11 overlaps with one corner of the panel 1. The side of the slot 11 is inclined at an angle of 45° relative to the side of the panel 1, and two adjacent slots 11 are parallel to each other. It can be understood that the three slots 11 are arranged in a 45° inclined array on the panel 1, thereby effectively utilizing the usable area of the panel 1 and arranging them reasonably and compactly.
[0022] In this embodiment of the utility model, the live wire copper sheet 21, the neutral wire copper sheet 22, and the grounding copper sheet 23 all include a copper sheet body 24 and a fixing plate 25 extending and bent on one side of the copper sheet body 24. The fixing plate 25 has a fixing hole 251 that connects to the plug hole. The fixing plate 25 is used in conjunction with the fixing clamp 3 or the limiting post 4 to fix each copper sheet to the bottom of the panel 1. The fixing hole 251 connects to the plug hole while fixing, so that when the plug is inserted into the plug hole, it forms an elastic abutment against the plug, so that an electrical connection can be formed after power is applied.
[0023] The fixing clamp 3 in this embodiment of the utility model includes an M-shaped clamp 31, a through plate 32, and a C-shaped clamp 33. The fixing folding plate 25 is fixed to the through plate 32 through the fixing hole 251. The M-shaped clamp 31 and the C-shaped clamp 33 elastically abut against the two sides of the fixing folding plate 25. The upper end of the through plate 32 is provided with a snap connector (not shown in the figure) that is narrow at the top and wide at the bottom for the fixing hole 251 to pass through and fix. When the live wire copper sheet 21 and the neutral wire copper sheet 22 are installed, the fixing hole 251 on the fixing folding plate 25 is sleeved on the snap connector on the through plate 32, and the snap connector vertically limits the fixing folding plate 25. The M-shaped clamp 31 and the C-shaped clamp 33 elastically abut against the two sides of the fixing folding plate 25, thereby fixing the live wire copper sheet 21 or the neutral wire copper sheet 22 on the fixing clamp 3.
[0024] In this embodiment of the utility model, the limiting post 4 is hollow and has a limiting hole (not shown in the figure) on its side wall through which the fixing plate 25 of the grounding copper sheet 23 passes. The end of the limiting post 4 that is far away from the panel 1 is fitted with a limiting plate 41 for limiting the lateral displacement of the grounding copper sheet 23 in the limiting hole. When installing the grounding copper sheet 23, one end of the grounding copper sheet 23 is inserted through the limiting hole on the side of the limiting post 4. After the position is completely aligned, the limiting plate 41 is inserted into the limiting post 4 so that the lower end of the limiting plate 41 abuts against the two ends of the fixing hole 251, thereby completing the installation and fixing of the grounding copper wire.
[0025] In this embodiment of the utility model, the fixing clamp 3 and the limiting post 4 are integrally injection molded with the panel 1. The integral injection molding ensures that there are no splicing gaps or weak points between the fixing clamp 3, the limiting post 4 and the panel 1, resulting in a stable structure, firm installation, reduced number of parts, simplified assembly process, long product service life, and reduced usage costs.
[0026] In this embodiment of the utility model, a positioning block 12 is provided below the panel 1. The positioning block 12 has a width of 1.5mm. While ensuring that it performs its positioning function, it avoids adverse effects on the feeding and provides a strong guarantee for the smooth operation of production.
[0027] The above embodiments are merely preferred embodiments of the present utility model and are only used to explain the present utility model, not to limit the present utility model. Any changes, substitutions, combinations, simplifications, modifications, etc., made by those skilled in the art without departing from the spirit and principle of the present utility model shall be considered equivalent substitutions and shall be included within the protection scope of the present utility model.
Claims
1. A triple Brazilian socket, characterized by: The utility model relates to a plug socket, including panel (1) and fixed below panel (1) live copper sheet (21), zero copper sheet (22) and ground copper sheet (23), three insertion slots (11) are set up on the top surface of panel (1), the insertion slot (11) is the long rhombus of conforming to the standard shape of brazil socket, three insertion slots (11) are set up in slope and side by side to panel (1), the fixed clamping plate (3) for fixing live copper sheet (21) and zero copper sheet (22) and the limiting column (4) for fixing ground copper sheet (23) are equipped below panel (1), live copper sheet (21) and zero copper sheet (22) are distributed in the center symmetry below panel (1), live jack (111), ground jack and zero jack (112) are equipped in each insertion slot (11), the ground jack is located on the side of the straight line of live jack (111) and zero jack (112), and the spacing between ground jack and live jack (111) or zero jack (112) is equal.
2. A triple Brazilian socket according to claim 1, characterized in that: One end of insertion slot (11) and one corner of panel (1) are overlapped, the inclination angle of the side of insertion slot (11) to the side of panel (1) is 45 DEG, and two adjacent insertion slots (11) are parallel to each other.
3. A triple Brazilian socket according to claim 1, characterized in that: Live copper sheet (21), zero copper sheet (22) and ground copper sheet (23) all include copper sheet body (24) and fixed flaps (25) extended and bent on one side of copper sheet body (24), fixed hole (251) for communicating with the jack is set up on fixed flap (25).
4. A triple Brazilian socket according to claim 3, characterized in that: The fixed clamping plate (3) includes M-shaped clamping plate (31), through position plate (32) and C-shaped clamping plate (33), the fixed flap (25) is fixed on the through position plate (32) through the fixed hole (251), the M-shaped clamping plate (31) and C-shaped clamping plate (33) are elastically abutted on both sides of fixed flap (25) respectively, the through position plate (32) is equipped with the joint of the upper narrow lower wide for the fixed hole (251) through setting fixed joint on the upper end.
5. A triple Brazilian socket according to claim 3, characterized in that: The limiting column (4) is hollow and is equipped with limiting hole on the side wall, and the fixed flap (25) of ground copper sheet (23) passes through the limiting hole, the limiting column (4) is inserted with limiting insertion plate (41) for limiting the transverse displacement of ground copper sheet (23) in the limiting hole relative to the end away from panel (1).
6. A triple Brazilian socket according to claim 3, characterized in that: The fixed clamping plate (3) and limiting column (4) are integrally injection molded with panel (1).
7. A triple Brazilian socket according to claim 1, characterized in that: The lower side of panel (1) is equipped with positioning block (12), and the width of positioning block (12) is 1.5mm.