一种错位五孔插座

By using a staggered design and a limiting structure, the staggered five-hole socket solves the problems of socket displacement and material waste, achieving stable socket connection and low-cost production.

CN224520236UActive Publication Date: 2026-07-17YUEQING JINLI ELECTRICAL APPLIANCE SCI & TECH

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YUEQING JINLI ELECTRICAL APPLIANCE SCI & TECH
Filing Date
2025-07-29
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The socket components of existing sockets are prone to displacement, and the five-hole socket has a complex structure and inconvenient connection, resulting in material waste and high production costs.

Method used

Design a staggered five-hole socket, which adopts a staggered setting of two-stage and three-stage sockets, and uses a socket assembly and grounding limit structure for limiting, simplifying the socket structure and making reasonable use of the base space.

Benefits of technology

This achieves a stable connection of the socket, reduces material consumption, simplifies the assembly process, and improves safety and service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

一种错位五孔插座。解决了现有插套组件容易移位的问题。它包括包括基座和面板还包括:二级插孔,设于面板上;三级插孔,设于面板上并与二级插孔错位设置;插套组件,所述的插套组件包括与二极插套相对应的二极插套以及与三级插孔相对应的三极插套;所述二极插套包括二极N插套、二极L插套,所述三极插套包括三极N插套、三极L插套、接地极插套;第一容置腔,设于基座上用于接地极插套水平限位,所述的接地极插套设于第一容置腔内并与第一容置腔的内壁相贴合;接地极限位结构,与基座相贴合,用于接地极插套竖直限位。本实用新型还具有结构简单,装配方便,动作可靠,安全性高,使用寿命长等优点。
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Claims

1. A staggered five-hole socket, comprising a base (1) and a panel (2), characterized in that: Also includes: A secondary socket (21) is provided on the panel (2); The three-level socket (22) is located on the panel (2) and is offset from the two-level socket (21); The socket assembly (3) includes a two-pole socket (4) corresponding to the two-pole socket (4) and a three-pole socket (5) corresponding to the three-pole socket (22); the two-pole socket (4) includes a two-pole N socket (41) and a two-pole L socket (42); the three-pole socket (5) includes a three-pole N socket (51), a three-pole L socket (52), and a grounding socket (53); the two-pole N socket (41) and the three-pole N socket (51) are connected by a first connecting plate (54); the two-pole L socket (42) and the three-pole L socket (52) are connected by a second connecting plate (55); the grounding socket (53) is located between the first connecting plate (54) and the second connecting plate (55); The first accommodating cavity (11) is provided on the base (1) for horizontal positioning of the grounding electrode sleeve (53). The grounding electrode sleeve (53) is provided in the first accommodating cavity (11) and fits against the inner wall of the first accommodating cavity (11). The grounding limit position structure fits into the base (1) and is used for vertical limiting of the grounding electrode sleeve (53).

2. The staggered five-hole socket of claim 1, wherein The grounding limit position structure includes a first limiting plate (531), and a first shoulder (12) is provided at the first accommodating cavity (11) of the base (1). The first limiting plate (531) is provided on the first shoulder (12) for vertical limiting of the grounding electrode sleeve (53).

3. A staggered five-hole socket according to claim 2, wherein The grounding limit position structure includes a second limiting plate (532), and a second shoulder (13) is provided on the inner wall of the first accommodating cavity (11). The second limiting plate (532) is provided on the second shoulder (13) and is used for vertical limiting of the grounding electrode sleeve (53).

4. A staggered five-hole socket according to claim 3, wherein The first limiting plate (531), the second limiting plate (532), and the grounding electrode socket (53) are an integral structure.

5. The staggered five-hole socket of claim 3, wherein The grounding electrode sleeve (53) is U-shaped and the opening faces the panel. The first limiting plate (531) and the second limiting plate (532) are located on both sides of the grounding electrode sleeve (53).

6. The staggered five-hole socket of claim 1, wherein The horizontal height of the grounding electrode socket (53) is higher than that of the three-pole N socket (51) and higher than that of the three-pole L socket (52).

7. The staggered five-hole socket of claim 1 wherein The three-pole N-type socket (51) and the three-pole L-type socket (52) are both U-shaped insertion structures, and their openings face the opposite direction to the first connecting plate (54) and the second connecting plate (55).

8. The staggered five-hole socket of claim 1, wherein The three-pole N-type socket (51) and the three-pole L-type socket (52) are arranged in an inverted "8" shape, and the three-pole N-type socket (51) and the three-pole L-type socket (52) are provided with material-stealing holes (56).

9. The staggered five-socket outlet of claim 1, wherein It also includes an N-pole terminal (61), an L-pole terminal (62), and a grounding terminal (63). The L-pole terminal (62) and the grounding terminal (63) are horizontally arranged on the base (1), and the N-pole terminal (61) is obliquely arranged on the base (1).

10. The staggered five-socket outlet of claim 1, wherein The base (1) is provided with a baffle (14) and a third shoulder (15). There are two baffles (14) and the two baffles (14) form a receiving groove (16) for accommodating a triode N socket (51) or a triode L socket (52). The triode N socket (51) or triode L socket (52) is provided on the third shoulder (15).