Five-jack socket structure

The base structure, which combines the mounting plate and the back cover, provides stable support for the copper plate assembly of the five-hole socket, solving the problem of loose copper plates, extending the socket's lifespan, and maintaining stability.

CN223978148UActive Publication Date: 2026-03-06HONGHELANG (XINGNING) ELECTRICAL CO LTD
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Patent Information

Application Number
CN202520348156.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2026-03-06
Estimated Expiration
2035-02-28

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Abstract

The utility model discloses a five-jack socket structure, which comprises a panel, a base and a five-jack socket copper sheet assembly arranged on the base, the base comprises a mounting plate and a rear shell, the mounting plate is connected with the rear shell through a buckle, the panel is arranged on the front surface of the mounting plate, and the five-jack socket copper sheet assembly is arranged on the base. The five-hole socket copper sheet assembly is mounted between the mounting plate and the rear shell, the five-hole socket copper sheet assembly comprises an L-pole copper sheet, an E-pole copper sheet and an N-pole copper sheet, and the rear shell is correspondingly provided with an L-pole mounting position, an E-pole mounting position and an N-pole mounting position relative to the positions of the L-pole copper sheet, the E-pole copper sheet and the N-pole copper sheet. According to the utility model, the base formed by combining the mounting plate and the rear shell is arranged to stably support the copper sheet assembly of the five-hole socket, so that the L-pole copper sheet, the E-pole copper sheet and the N-pole copper sheet are not easy to loosen, the service life is prolonged, and the stability of the copper sheet assembly of the five-hole socket is ensured.
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Description

Technical Field

[0001] This utility model relates to the field of socket technology, and in particular to a five-hole socket structure. Background Technology

[0002] A socket, also known as a power outlet or switch socket, is a receptacle for inserting one or more electrical wires. This allows for easy connection to other circuits. The connection and disconnection of the circuit is achieved through the connection and disconnection of the wires and copper components. While some five-hole sockets on the market meet the needs of most people, their structure is not ideal. Due to repeated plugging and unplugging during daily use, the internal copper contacts of the socket are prone to loosening, resulting in a shorter lifespan. Utility Model Content

[0003] The purpose of this utility model is to overcome the shortcomings of the existing technology and provide a five-hole socket structure.

[0004] The objective of this utility model is achieved through the following technical solution:

[0005] A five-hole socket structure includes: a panel, a base, and a five-hole socket copper sheet assembly mounted on the base. The base includes a mounting plate and a back cover. The mounting plate and the back cover are connected by a snap-fit. The panel is mounted on the front of the mounting plate. The five-hole socket copper sheet assembly is mounted between the mounting plate and the back cover. The five-hole socket copper sheet assembly includes an L-pole copper sheet, an E-pole copper sheet, and an N-pole copper sheet. The back cover has L-pole mounting positions, E-pole mounting positions, and N-pole mounting positions corresponding to the positions of the L-pole copper sheet, the E-pole copper sheet, and the N-pole copper sheet.

[0006] In one embodiment, the L-pole copper sheet includes an L-pole two-prong insertion portion, an L-pole straight portion, an L-pole wiring portion, and an L-pole three-prong insertion portion connected in sequence. The L-pole mounting position includes a first L-pole receiving position for receiving the L-pole two-prong insertion portion, a second L-pole receiving position for receiving the L-pole straight portion, a third L-pole receiving position for receiving the L-pole wiring portion, and a fourth L-pole receiving position for receiving the L-pole three-prong insertion portion. The first L-pole receiving position, the second L-pole receiving position, the third L-pole receiving position, and the fourth L-pole receiving position are respectively provided with a plurality of L-pole supporting portions on the outer side of the L-pole two-prong insertion portion, the L-pole straight portion, the L-pole wiring portion, and the L-pole three-prong insertion portion.

[0007] In one embodiment, the E-pole copper sheet includes an E-pole wiring portion and an E-pole three-prong plug portion. The E-pole mounting position includes a first E-pole receiving position for accommodating the E-pole wiring portion and a second E-pole receiving position for accommodating the E-pole three-prong plug portion. The first E-pole receiving position and the second E-pole receiving position are respectively provided with a plurality of E-pole supporting portions on the outer side of the E-pole wiring portion and the E-pole three-prong plug portion.

[0008] In one embodiment, the N-pole copper sheet includes an N-pole two-pole insertion portion, an N-pole straight portion, an N-pole wiring portion, and an N-pole three-pole insertion portion connected in sequence. The N-pole mounting position includes a first N-pole receiving position for accommodating the N-pole two-pole insertion portion, a second N-pole receiving position for accommodating the N-pole straight portion, a third N-pole receiving position for accommodating the N-pole wiring portion, and a fourth N-pole receiving position for accommodating the N-pole three-pole insertion portion. The first N-pole receiving position, the second N-pole receiving position, the third N-pole receiving position, and the fourth N-pole receiving position are respectively provided with a plurality of N-pole support portions on the outer side of the N-pole two-pole insertion portion, the N-pole straight portion, the N-pole wiring portion, and the N-pole three-pole insertion portion.

[0009] In one embodiment, the mounting plate is provided with abutment protrusions for support at positions relative to the L-pole terminal, the E-pole terminal, and the N-pole terminal.

[0010] In one embodiment, the mounting plate is provided with support protrusions at positions relative to the L-pole two-pole portion, the N-pole two-pole portion, the L-pole three-pole portion, and the N-pole three-pole portion.

[0011] In one embodiment, the mounting plate has an alignment protrusion at the position of the E-pole three-prong plug relative to the position of the E-pole three-prong plug.

[0012] In one embodiment, the mounting plate has two insertion positions and three insertion positions on the side opposite to the rear shell. The two insertion positions correspond to the positions of the L-pole two insertion portion and the N-pole two insertion portion on the rear shell, respectively, and the three insertion positions correspond to the positions of the L-pole three insertion portion, the E-pole three insertion portion and the N-pole three insertion portion on the rear shell, respectively.

[0013] In one embodiment, the mounting plate is provided with protective doors at positions relative to the second and third insertion points, and both protective doors are located on the side of the mounting plate facing the rear shell.

[0014] In one embodiment, the panel is provided with a two-hole socket and a three-hole socket respectively relative to the two-hole socket and the three-hole socket on the mounting plate.

[0015] Compared with the prior art, the present invention has at least the following advantages:

[0016] This utility model discloses a five-hole socket structure that uses a base consisting of a mounting plate and a rear shell to stably support the copper sheet assembly of the five-hole socket. This prevents the L-pole, E-pole, and N-pole copper sheets from becoming loose, thereby improving the service life of the five-hole socket structure. It can maintain a stable and reliable support effect during long-term use, ensuring the stability of the copper sheet assembly of the five-hole socket. Attached Figure Description

[0017] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the embodiments will be briefly described below.

[0018] Figure 1 An exploded view of a five-hole socket structure provided by this utility model;

[0019] Figure 2 This utility model provides a schematic diagram of the base structure of a five-hole socket.

[0020] Figure 3 A schematic diagram of the structure of the copper sheet assembly of the five-hole socket in the present invention;

[0021] Figure 4 This utility model provides a schematic diagram of the structure of the rear shell in a five-hole socket structure;

[0022] Figure 5 A schematic diagram of the assembly structure of the five-hole socket copper sheet assembly and the back shell in a five-hole socket structure provided by this utility model;

[0023] Figure 6 A schematic diagram of the mounting plate in a five-hole socket structure provided by this utility model;

[0024] Figure 7 This utility model provides a schematic diagram of the assembly structure of a mounting plate and a copper sheet assembly for a five-hole socket.

[0025] Figure Descriptions: 10. Panel; 11. Two-hole socket; 12. Three-hole socket; 20. Base; 21. Mounting plate; 211. Abutment protrusion; 212. Support protrusion; 213. Alignment protrusion; 214. Two-hole socket; 215. Three-hole socket; 216. Protective door; 22. Rear shell; 221. L-pole mounting position; 2211. First L-pole receiving position; 2212. Second L-pole receiving position; 2213. Third L-pole receiving position; 2214. Fourth L-pole receiving position; 2215. L-pole support; 222. E-pole mounting position; 2221. First E-pole receiving position; 2222. Second E-pole receiving position; 2223. E-pole support; 22 3. N pole mounting position; 2231. N pole first receiving position; 2232. N pole second receiving position; 2233. N pole third receiving position; 2234. N pole fourth receiving position; 2235. N pole support part; 23. Buckle; 24. Snap-fit ​​groove; 30. Five-hole socket copper plate assembly; 31. L pole copper plate; 311. L pole two-prong part; 312. L pole straight part; 313. L pole wiring part; 314. L pole three-prong part; 32. E pole copper plate; 321. E pole wiring part; 322. E pole three-prong part; 33. N pole copper plate; 331. N pole two-prong part; 332. N pole straight part; 333. N pole wiring part; 334. N pole three-prong part. Detailed Implementation

[0026] To facilitate understanding of this utility model, a more comprehensive description of this utility model will be given below with reference to the accompanying drawings.

[0027] A five-hole socket structure, as shown in the reference Figure 1 and Figure 2 The system includes a panel 10, a base 20, and a five-hole socket copper sheet assembly 30 mounted on the base 20. The base 20 includes a mounting plate 21 and a rear shell 22, which are connected by snap-fit ​​connections. The panel 10 is located on the front of the mounting plate 21, and the five-hole socket copper sheet assembly 30 is installed between the mounting plate 21 and the rear shell 22. Specifically, the mounting plate 21 has several snap-fits 23 on the side facing the rear shell 22, which are located near the left and right outer sides of the mounting plate 21. The rear shell 22 has several snap-fit ​​grooves 24 on the side facing the mounting plate 21, which are respectively engaged with the snap-fits 23. The snap-fits 23 on the mounting plate 21 extend into the snap-fit ​​grooves 24 on the rear shell 22, thereby achieving the snap-fit ​​connection between the mounting plate 21 and the rear shell 22. The five-hole socket copper plate assembly 30 includes an L-pole copper plate 31, an E-pole copper plate 32, and an N-pole copper plate 33. The L-pole copper plate 31, E-pole copper plate 32, and N-pole copper plate 33 are mounted on the back cover 22. The back cover 22 is provided with L-pole mounting position 221, E-pole mounting position 222, and N-pole mounting position 223 respectively, corresponding to the positions of the L-pole copper plate 31, E-pole copper plate 32, and N-pole copper plate 33.

[0028] Furthermore, referring to Figures 3-5 The L-pole copper sheet 31 includes an L-pole two-pole insertion part 311, an L-pole straight part 312, an L-pole wiring part 313, and an L-pole three-pole insertion part 314 connected in sequence. The L-pole mounting position 221 includes a first L-pole receiving position 2211 for receiving the L-pole two-pole insertion part 311, a second L-pole receiving position 2212 for receiving the L-pole straight part 312, a third L-pole receiving position 2213 for receiving the L-pole wiring part 313, and a fourth L-pole receiving position 2214 for receiving the L-pole three-pole insertion part 314. Specifically, the first L-pole receiving position 2211, the second L-pole receiving position 2212, the third L-pole receiving position 2213, and the fourth L-pole receiving position 2214 are respectively provided with multiple L-pole supporting parts 2215 on the two outer sides of the second L-pole insertion part 311, the straight L-pole part 312, the L-pole wiring part 313, and the third L-pole insertion part 314. These multiple L-pole supporting parts 2215 are evenly distributed along the length of the L-pole copper sheet 31, and support and fix the L-pole copper sheet 31 at various positions to install the L-pole copper sheet 31 onto the L-pole mounting position 221 of the rear housing 22. It should be noted that the L-pole supporting parts 2215 at different positions on the L-pole copper sheet 31 have different shapes to adapt to the different shapes of the L-pole copper sheet 31 and provide better support.

[0029] Furthermore, referring to Figures 3-5 The E-pole copper sheet 32 ​​includes an E-pole wiring portion 321 and an E-pole three-prong insertion portion 322. The E-pole mounting position 222 includes a first E-pole receiving position 2221 for receiving the E-pole wiring portion 321 and a second E-pole receiving position 2222 for receiving the E-pole three-prong insertion portion 322. Specifically, the first E-pole receiving position 2221 and the second E-pole receiving position 2222 are respectively provided with multiple E-pole supporting portions 2223 on their two outer sides relative to the E-pole wiring portion 321 and the E-pole three-prong insertion portion 322. The multiple E-pole supporting portions 2223 support and fix the outer side of the E-pole copper sheet 32 ​​to install the E-pole copper sheet 32 ​​onto the E-pole mounting position 222 of the rear shell 22. It should be noted that the E-pole supporting portions 2223 located at different positions on the E-pole copper sheet 32 ​​have different shapes to adapt to the shape of the E-pole copper sheet 32 ​​at different positions and to better support the E-pole copper sheet 32.

[0030] Furthermore, referring to Figures 3-5The N-pole copper sheet 33 includes an N-pole two-pole insertion portion 331, an N-pole straight portion 332, an N-pole wiring portion 333, and an N-pole three-pole insertion portion 334 connected in sequence. The N-pole mounting position 223 includes a first N-pole receiving position 2231 for receiving the N-pole two-pole insertion portion 331, a second N-pole receiving position 2232 for receiving the N-pole straight portion 332, a third N-pole receiving position 2233 for receiving the N-pole wiring portion 333, and a fourth N-pole receiving position 2234 for receiving the N-pole three-pole insertion portion 334. Specifically, the N-pole first receiving position 2231, N-pole second receiving position 2232, N-pole third receiving position 2233, and N-pole fourth receiving position 2234 are respectively provided with multiple N-pole support portions 2235 on the two outer sides of the N-pole second insertion portion 331, N-pole straight portion 332, N-pole wiring portion 333, and N-pole third insertion portion 334. These multiple N-pole support portions 2235 are evenly distributed along the length of the N-pole copper sheet 33, and support and fix the N-pole copper sheet 33 at various positions to install the N-pole copper sheet 33 onto the N-pole mounting position 223 of the rear housing 22. It should be noted that the N-pole support portions 2235 at different positions of the N-pole copper sheet 33 have different shapes to adapt to the different shapes of the N-pole copper sheet 33 and provide better support.

[0031] Thus, by providing L-pole mounting positions 221, E-pole mounting positions 222 and N-pole mounting positions 223 on the rear shell 22 to securely fix L-pole copper sheet 31, E-pole copper sheet 32 ​​and N-pole copper sheet 33 respectively, the L-pole copper sheet 31, E-pole copper sheet 32 ​​and N-pole copper sheet 33 can be securely installed on the rear shell 22, are not easy to loosen, and can extend service life.

[0032] Furthermore, referring to Figures 6-7 The mounting plate 21 covers the areas of the L-pole mounting position 221, the E-pole mounting position 222, and the N-pole mounting position 223. The mounting plate 21 is used to further support and fix the L-pole copper sheet 31, the E-pole copper sheet 32, and the N-pole copper sheet 33. Specifically, the mounting plate 21 is provided with abutment protrusions 211 for support at positions relative to the L-pole wiring portion 313, the E-pole wiring portion 321, and the N-pole wiring portion 333 to ensure the stability of the L-pole wiring portion 313, the E-pole wiring portion 321, and the N-pole wiring portion 333.

[0033] Furthermore, referring to Figures 6-7The mounting plate 21 has support protrusions 212 at positions relative to the L-pole two-prong plug 311, N-pole two-prong plug 331, L-pole three-prong plug 314, and N-pole three-prong plug 334. These support protrusions 212 support the L-pole two-prong plug 311, N-pole two-prong plug 331, L-pole three-prong plug 314, and N-pole three-prong plug 334 near their ends to further secure the L-pole copper sheet 31 and the N-pole copper sheet 33. Furthermore, the mounting plate 21 has alignment protrusions 213 at positions relative to the E-pole three-prong plug 322. These alignment protrusions 213 support the positions of the E-pole and three-prong plugs, ensuring the stability of the E-pole three-prong plug 322.

[0034] Furthermore, referring to Figure 1 The mounting plate 21 has a two-prong plug 214 and a three-prong plug 215 on the side opposite to the rear cover 22. The two-prong plug 214 and the three-prong plug 215 are arranged parallel in the vertical direction. The two-prong plug 214 corresponds to the L-pole two-prong plug 311 and the N-pole two-prong plug 331 on the rear cover 22, respectively. The three-prong plug 215 corresponds to the L-pole three-prong plug 314, the E-pole three-prong plug 322 and the N-pole three-prong plug 334 on the rear cover 22, respectively. The two-prong plug 214 and the three-prong plug 215 are used to allow the sockets that need to be plugged in to provide power.

[0035] Furthermore, referring to Figures 6-7 The mounting plate 21 is equipped with protective doors 216 at positions relative to the two-prong plug 214 and the three-prong plug 215. The two protective doors 216 are located on the side of the mounting plate 21 facing the rear housing 22. The protective door 216 at the L-pole two-prong plug 311 and the N-pole two-prong plug 331 separates the two-prong plug 214 from the L-pole two-prong plug 311 and the N-pole two-prong plug 331. The protective door 216 at the L-pole three-prong plug 314 and the N-pole three-prong plug 334 separates the three-prong plug 215 from the L-pole three-prong plug 314 and the N-pole three-prong plug 334. The protective doors 216 are used to prevent leakage accidents caused by accidental insertion of external metal. In this embodiment, the protective doors 216 are made of black nylon 66 material. It should be noted that the support protrusions 212 at the L-pole second insertion part 311 and the N-pole second insertion part 331, as well as the support protrusions 212 at the L-pole third insertion part 314 and the N-pole third insertion part 334, respectively form receiving cavities for accommodating the two protective doors 216, and the two protective doors 216 are respectively accommodated in the two receiving cavities.

[0036] Thus, the L-pole copper sheet 31, E-pole copper sheet 32, and N-pole copper sheet 33 are fixedly installed between the mounting plate 21 and the rear shell 22. Both the mounting plate 21 and the rear shell 22 serve to fix and support the L-pole copper sheet 31, E-pole copper sheet 32, and N-pole copper sheet 33, making it less likely for them to loosen. This improves the service life of the five-hole socket structure and ensures a stable and reliable support effect during long-term use, guaranteeing the stability of the L-pole copper sheet 31, E-pole copper sheet 32, and N-pole copper sheet 33.

[0037] Furthermore, referring to Figure 1 The panel 10 is provided with a two-hole socket 11 and a three-hole socket 12 respectively relative to the two-hole socket 214 and the three-hole socket 215 on the mounting plate 21.

[0038] This utility model provides a base 20 consisting of an mounting plate 21 and a rear shell 22 to stably support the copper sheet assembly 30 of the five-hole socket. This makes it less likely for the L-pole copper sheet 31, E-pole copper sheet 32, and N-pole copper sheet 33 to become loose, thereby improving the service life of the five-hole socket structure. It can maintain a stable and reliable support effect during long-term use, ensuring the stability of the copper sheet assembly 30 of the five-hole socket.

[0039] The embodiments described above are merely illustrative of several implementations of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.

Claims

1. A five-socket structure, characterized by comprising: The utility model relates to a kind of five-hole socket copper sheet assemblies, including: Panel (10), base (20) and five-hole socket copper sheet assembly (30) installed to the base (20), the base (20) includes mounting plate (21) and rear shell (22), the mounting plate (21) is connected with the rear shell (22) by buckle, the panel (10) is installed on the front of the mounting plate (21), the five-hole socket copper sheet assembly (30) is installed between the mounting plate (21) and the rear shell (22), the five-hole socket copper sheet assembly (30) includes L pole copper sheet (31), E pole copper sheet (32) and N pole copper sheet (33), the position of the rear shell (22) relative to the L pole copper sheet (31), E pole copper sheet (32) and N pole copper sheet (33) is provided with L pole installation site (221), E pole installation site (222) and N pole installation site (223) correspondingly.

2. A five-socket structure according to claim 1, wherein The L pole copper sheet (31) includes L pole two insertion parts (311), L pole straight line part (312), L pole wiring part (313) and L pole three insertion parts (314) connected in sequence, the L pole installation site (221) includes L pole first accommodating site (2211) for accommodating the L pole two insertion parts (311), L pole second accommodating site (2212) for accommodating the L pole straight line part (312), L pole third accommodating site (2213) for accommodating the L pole wiring part (313) and L pole fourth accommodating site (2214) for accommodating the L pole three insertion parts (314), the L pole first accommodating site (2211), the L pole second accommodating site (2212), the L pole third accommodating site (2213) and the L pole fourth accommodating site (2214) are respectively provided with a plurality of L pole supporting parts (2215) relative to the outside of the L pole two insertion parts (311), the L pole straight line part (312), the L pole wiring part (313) and the L pole three insertion parts (314).

3. A five-socket structure according to claim 2, wherein The E pole copper sheet (32) includes E pole wiring part (321) and E pole three insertion parts (322), the E pole installation site (222) includes E pole first accommodating site (2221) for accommodating the E pole wiring part (321) and E pole second accommodating site (2222) for accommodating the E pole three insertion parts (322), the E pole first accommodating site (2221) and the E pole second accommodating site (2222) are respectively provided with a plurality of E pole supporting parts (2223) relative to the outside of the E pole wiring part (321) and the E pole three insertion parts (322).

4. A five-socket structure according to claim 3, wherein The N-pole copper sheet (33) comprises an N-pole second insertion part (331), an N-pole straight part (332), an N-pole connecting part (333) and an N-pole third insertion part (334) connected in sequence, the N-pole mounting position (223) comprises an N-pole first accommodating position (2231) accommodating the N-pole second insertion part (331), an N-pole second accommodating position (2232) accommodating the N-pole straight part (332), an N-pole third accommodating position (2233) accommodating the N-pole connecting part (333) and an N-pole fourth accommodating position (2234) accommodating the N-pole third insertion part (334), and the N-pole first accommodating position (2231), the N-pole second accommodating position (2232), the N-pole third accommodating position (2233) and the N-pole fourth accommodating position (2234) are respectively provided with a plurality of N-pole supporting parts (2235) relative to the outside of the N-pole second insertion part (331), the N-pole straight part (332), the N-pole connecting part (333) and the N-pole third insertion part (334).

5. A five-socket structure according to claim 4, wherein The mounting plate (21) is provided with an abutting protrusion (211) for support relative to the positions of the L-pole connecting part (313), the E-pole connecting part (321) and the N-pole connecting part (333).

6. A five-socket structure according to claim 5, wherein The mounting plate (21) is provided with a supporting protrusion (212) relative to the positions of the L-pole second insertion part (311), the N-pole second insertion part (331), the L-pole third insertion part (314) and the N-pole third insertion part (334).

7. A five-socket structure according to claim 4, wherein The mounting plate (21) is provided with a positioning protrusion (213) relative to the position of the E-pole third insertion part (322).

8. A five-socket structure according to claim 6, wherein The mounting plate (21) is provided with a second insertion position (214) and a third insertion position (215) on the side away from the rear shell (22), the second insertion position (214) corresponds to the positions of the L-pole second insertion part (311) and the N-pole second insertion part (331) on the rear shell (22) respectively, and the third insertion position (215) corresponds to the positions of the L-pole third insertion part (314), the E-pole third insertion part (322) and the N-pole third insertion part (334) on the rear shell (22) respectively.

9. A five-socket structure according to claim 8, wherein The mounting plate (21) is provided with a protection door (216) relative to the positions of the second insertion position (214) and the third insertion position (215), and the two protection doors (216) are located on the side of the mounting plate (21) facing the rear shell (22).

10. A five-socket structure according to claim 9, wherein The face plate (10) is provided with a second hole socket (11) and a third hole socket (12) relative to the second insertion position (214) and the third insertion position (215) on the mounting plate (21) respectively.