Improved duplex universal seat
By using an inclined arrangement of the sockets and a design to avoid misalignment of the conductive sheet, the problem of decreased conductivity and safety hazards caused by friction between the conductive sheet and the metal screw is solved, thereby improving the stability and safety of the conductive sheet.
Patent Information
- Application Number
- CN202520268441.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-02-20
AI Technical Summary
The live and neutral conductive plates in existing double-connector connectors are prone to friction with metal screws and other accessories, which can damage the conductive coating, affect conductivity, and pose safety hazards.
The design incorporates inclined neutral, ground, and live wire sockets, along with recessed areas for the live and neutral conductive plates and a bent design on the side of the base plate. This increases electrical clearance, prevents friction, and ensures conductive stability and safety.
This improves the stability and safety of the conductive sheet, reduces surface wear, lowers the risk of short circuits, and enhances product quality and safety.
Smart Images

Figure CN223743957U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of socket, specifically relates to an improved double connection Italian socket. BACKGROUND
[0002] In the actual use process, the live wire conductive sheet and the zero line conductive sheet in the existing double connection Italian socket are prone to close or rub with other accessories such as metal screws, due to the possible deviation of the position of the metal screw in the installation and fixing process, or under the condition that the product is subjected to external force vibration, the contact between the conductive sheet and the metal screw is difficult to avoid, the frequent contact is prone to scratch the surface of the conductive sheet, damage the conductive coating on the surface, and further affect the conductive performance, and in severe cases, it may even cause short circuit and other safety hazards, which has adverse effects on the product quality and the use safety of the user. UTILITY MODEL CONTENTS
[0003] The utility model aims at the above problems, and provides an improved double connection Italian socket, which solves the above technical problems.
[0004] The utility model is realized through the following technical schemes: an improved double connection Italian socket, including the panel that two insertion slots are opened side by side along X axle, the first installation shell for adapting the depth of insertion slot located below the panel and the second installation shell for fixing accessories located below the first installation shell, the zero line jack, the ground wire jack and the live wire jack for assembling different conductive terminals are sequentially and side by side inclinedly arranged at the bottom of the insertion slot, the zero line conductive sheet, the ground wire conductive sheet and the live wire conductive sheet for connecting different conductive terminals are fixedly installed on the second installation shell, the live wire conductive sheet and the zero line conductive sheet are fixed on the same Z horizontal axle height in a central symmetry mode, the ground wire conductive sheet is fixedly staggered on the Z axle height, the bottom plate that adapts the inclined arrangement shape of the jack is further arranged at the bottom of the second installation shell, the live wire conductive sheet and the zero line conductive sheet all include the connecting portion for connecting the conductive terminal, the conductive sheet body that extends outward along Y axle opposite the connecting portion, the welding portion for welding the wire on the conductive sheet body and the avoiding portion for avoiding the side edge of the bottom plate, and the connecting portion, the welding portion and the avoiding portion are not on the same Z axle height.
[0005] Further, the ground wire conductive sheet is fixedly installed in the middle of the second installation shell, the ground wire welding end extends downward along the Z axle direction in the middle of the ground wire conductive sheet, and the lower end of the ground wire welding end is lower than the horizontal plane where the bottom plate is located.
[0006] Further, the avoiding portion of the live wire conductive sheet and the zero line conductive sheet is bent upward higher than the horizontal plane where the bottom plate is located.
[0007] Furthermore, the conductive sheet body has an inwardly tapering bend at the gap between the two base plates, and the welding part is located between the bend and the connecting part near one end of the bend.
[0008] Furthermore, a descending step is provided between the connecting part and the conductive body, and the conductive body is located below the horizontal height of the connecting part.
[0009] Furthermore, an elliptical through hole is provided on the descending step, and the two ends of the elliptical through hole extend to the connecting part and the conductive body, respectively.
[0010] Furthermore, the first mounting housing has several snap-fit structures on its side for mounting with the socket.
[0011] This utility model features an inclined arrangement of neutral, ground, and live wire sockets, which optimizes and reduces the panel area. The base plate is designed to secure the components to the second fixing part with screws, preventing them from falling off. By incorporating recesses for the live and neutral wire conductive sheets, which are bent to correspond to the side of the base plate, friction with the base plate's side is avoided, thus preventing any impact on conductivity stability. Compared to existing designs of live and neutral wire conductive sheets, the improved structure of the live and neutral wire conductive sheets in this utility model offers better stability. Furthermore, the two conductive sheet bodies extend outward along the Y-axis, increasing the electrical clearance between them. This design prevents contact between the overall structure and other components, ensuring good conductivity, improving product quality and safety. Attached Figure Description
[0012] Fig. 1 This is a bottom view of the present invention;
[0013] Fig. 2 This is the front view of this utility model;
[0014] Fig. 3 This is a top view of the present invention.
[0015] The attached figures are labeled as follows:
[0016] 1. Panel; 11. Slot; 111. Neutral wire socket; 112. Ground wire socket; 113. Live wire socket; 2. First mounting housing; 21. Snap-fit structure; 3. Second mounting housing; 31. Neutral wire conductive sheet; 311. Connecting part; 312. Conductive sheet body; 3121. Bending part; 313. Welding part; 314. Clearance part; 315. Lowering step; 3151. Oval through hole; 32. Ground wire conductive sheet; 321. Ground wire welding end; 33. Live wire conductive sheet; 4. Base plate. Detailed Implementation
[0017] The second part further illustrates this utility model with specific examples and accompanying drawings.
[0018] like Figs. 1-3 As shown, this utility model describes an improved double-connector base, comprising a panel 1 with two slots 11 arranged side-by-side along the X-axis, a first mounting housing 2 located below the panel 1 to accommodate the depth of the slots 11, and a second mounting housing 3 located below the first mounting housing 2 for fixing accessories. The bottom of each slot 11 has a neutral wire socket 111, a ground wire socket 112, and a live wire socket 113 arranged side-by-side at an angle for assembling different conductive terminals. The second mounting housing 3 is fixedly mounted with a neutral wire conductive plate 31, a ground wire conductive plate 32, and a live wire conductive plate 33 for connecting different conductive terminals. The live wire conductive plate 33 and the neutral wire conductive plate 33... The live wire conductive sheet 31 is fixed in a centrally symmetrical manner at the same Z-axis horizontal height, and the ground wire conductive sheet 32 is fixed alternately at the Z-axis height. The bottom of the second mounting housing 3 is also provided with a base plate 4 adapted to the inclined arrangement of the socket. The live wire conductive sheet 33 and the neutral wire conductive sheet 31 each include a connecting part 311 for connecting the conductive terminal, a conductive sheet body 312 extending outward along the Y-axis relative to the connecting part 311, a welding part 313 located on the conductive sheet body 312 for welding the wire, and a clearance part 314 for clearance on the side of the base plate 4. The connecting part 311, the welding part 313 and the clearance part 314 are not at the same Z-axis height.
[0019] This invention optimizes and reduces the area of the panel 1 by setting the neutral wire socket 111, ground wire socket 112, and live wire socket 113 in an inclined arrangement. The base plate 4 is provided to fix the accessories to the second fixing part with screws to prevent them from falling off. By setting the avoidance part 314 of the live wire conductive sheet 33 and the neutral wire conductive sheet 31, the avoidance part 314 is bent to correspond to the side of the base plate 4, thereby avoiding friction with the side of the base plate 4 and affecting the conductivity stability. Compared with the existing shape design of the live wire conductive sheet 33 and the neutral wire conductive sheet 31, the live wire conductive sheet 33 and the neutral wire conductive sheet 31 in this invention have better stability in use. Moreover, the two conductive sheet bodies 312 extend outward along the Y-axis, which increases the electrical clearance between them. The whole avoids contact with the structure of each component, thereby ensuring good conductivity, improving product quality and safety in use.
[0020] In this embodiment of the utility model, the ground wire conductive sheet 32 is fixedly installed in the middle of the second mounting housing 3. The ground wire conductive sheet 32 has a ground wire welding end 321 extending downward along the Z-axis direction in the middle of the ground wire conductive sheet 32. The lower end of the ground wire welding end 321 is lower than the horizontal plane of the base plate 4. By setting the ground wire conductive sheet 32 in the second mounting housing 3, the ground wire conductive sheet 32 can maintain a sufficient electrical gap with the live wire conductive sheet 33 and the neutral wire conductive sheet 31 to maintain conductivity stability and safety.
[0021] In this embodiment of the utility model, the clearance portion 314 of the live wire conductive sheet 33 and the neutral wire conductive sheet 31 is bent upward above the horizontal plane of the base plate 4. Compared with the implementation of bending downward to avoid clearance, bending upward to avoid clearance can avoid increasing the thickness of the socket in the Z-axis direction, so as to simplify the installation space of the socket and adapt to the miniaturization requirements of the product.
[0022] In this embodiment of the utility model, the conductive sheet body 312 has an inwardly contracting bending portion 3121 in the gap between the two base plates 4. The welding portion 313 is located between the bending portion 3121 and the connecting portion 311 near one end of the bending portion 3121, thereby forming an outwardly protruding display effect, so as to accurately correspond to the operation position during welding and reduce the risk of incorrect welding of wires on the conductive sheet body 312.
[0023] In this embodiment of the utility model, a descending step 315 is provided between the connecting part 311 and the conductive body. The conductive body is located below the horizontal height of the connecting part 311, so that the conductive body protrudes downward, increasing the operating space during welding and facilitating welding.
[0024] The descending step 315 of this utility model embodiment has an elliptical through hole 3151. The two ends of the elliptical through hole 3151 extend to the connecting part 311 and the conductive body, respectively. By forming the elliptical through hole 3151 before the descending step 315 is formed, the material pulling during sheet metal bending can be avoided. In addition, the deformation stress on the connecting part 311 and the conductive body at both ends of the elliptical through hole 3151 is also reduced, which is beneficial to improving the processing accuracy of the product.
[0025] The first mounting housing 2 of this utility model embodiment has a plurality of snap-fit structures 21 on its side for mounting the socket. When the socket is fixedly mounted onto the power strip, the snap-fit assembly can achieve a quick and stable installation connection.
[0026] 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. An improved duplex method socket, characterized by: The utility model relates to a faceplate (1) including two slots (11) arranged side by side along the X axis, a first mounting shell (2) below the faceplate (1) for adapting the depth of the slots (11), and a second mounting shell (3) below the first mounting shell (2) for fixing fittings, the bottom of the slots (11) being arranged side by side and inclined in order to accommodate a neutral line jack (111), a ground line jack (112), and a live line jack (113), the second mounting shell (3) being fixedly mounted with a neutral line conducting strip (31), a ground line conducting strip (32), and a live line conducting strip (33) for connecting different conducting terminals, the live line conducting strip (33) and the neutral line conducting strip (31) being fixedly arranged in a central symmetric manner at the same Z-axis level, the ground line conducting strip (32) being fixedly arranged staggered at the Z-axis level, the bottom of the second mounting shell (3) being further provided with a bottom plate (4) adapted to the shape of the inclined arrangement of the jacks, the live line conducting strip (33) and the neutral line conducting strip (31) each including a connecting portion (311) for connecting a conducting terminal, a conducting strip body (312) extending outward along the Y axis opposite the connecting portion (311), a welding portion (313) on the conducting strip body (312) for welding a wire, and a clearance portion (314) for avoiding the side edge of the bottom plate (4), the connecting portion (311), the welding portion (313), and the clearance portion (314) not being at the same Z-axis level.
2. The improved duplex method socket according to claim 1, wherein: The ground line conducting strip (32) is fixedly mounted in the middle of the second mounting shell (3), and a ground line welding end (321) extends downward along the Z axis in the middle of the ground line conducting strip (32), the lower end of the ground line welding end (321) being lower than the horizontal plane of the bottom plate (4).
3. The improved duplex method socket according to claim 1, wherein: The clearance portion (314) of the live line conducting strip (33) and the neutral line conducting strip (31) is bent upward higher than the horizontal plane of the bottom plate (4).
4. The improved duplex method socket according to claim 1, wherein: The conducting strip body (312) is provided with a bending portion (3121) that contracts inward at the gap between the two bottom plates (4), and the welding portion (313) is located between the bending portion (3121) and the connecting portion (311) close to one end of the bending portion (3121).
5. The improved duplex method socket according to claim 1, wherein: A clearance step (315) is provided between the connecting portion (311) and the conducting body, and the conducting body is located below the horizontal level of the connecting portion (311).
6. The improved duplex method socket according to claim 5, wherein: An oval-shaped through hole (3151) is provided on the clearance step (315), and the two ends of the oval-shaped through hole (3151) extend to the connecting portion (311) and the conducting body, respectively.
7. The improved duplex method socket according to claim 1, wherein: The side edge of the first mounting shell (2) is provided with a plurality of buckle structures (21) for cooperating with the socket installation.