IP Library Granted Patent US 12,334,682
Granted Patent B2
US 12,334,682 · App. 18/095,212 · Granted Jun 17, 2025

Mechanical lock and charging connector with improved locking features

Inventors: Peiwei Lin (Shanghai, CN); Peiquan Lin (Shanghai, CN); Xingran Tang (Shanghai, CN); Yunbo Linghu (Shanghai, CN)
Assignee: LUXSHARE PRECISION INDUSTRY (JIANGSU) CO., LTD.
H01R13/639B60L53/16H01R13/701H01R13/6275H01R2201/26
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Quick Facts
Patent No.
US 12,334,682
App. No.
18/095,212
Granted
Jun 17, 2025
Kind
B2
Abstract

A mechanical lock is used for a charging connector. The charging connector includes a housing and a hook. The hook has an engaging portion and an operating portion. The mechanical lock includes a push rod, a swing lever and a first elastic member. The push rod is slidably arranged on the housing along a first direction. The push rod has a heart-shaped cam and a heart-shaped groove. The heart-shaped groove has an unlocking position and a locking position. When an end of the swing lever is located at the locking position, the operating portion is locked by the push rod, and the operating portion cannot move. When the end of the swing lever is located at the unlocking position, the push rod unlocks the operating portion, and the operating portion is movable.

Claims (74)

1. A mechanical lock configured to be used in a charging connector; the charging connector comprising a housing and a hook; the hook comprising an engaging portion and an operating portion; the engaging portion being engaged or disengaged with a mating connector when the operating portion is moved by an external force; the mechanical lock comprising a push rod, a swing lever and a first elastic member;

wherein the first elastic member is configured to be able to provide the push rod with a force opposite to a direction of the external force which is applied to the push rod;

the push rod is slidably arranged on the housing along a first direction; the push rod has a heart-shaped cam and a heart-shaped groove; the heart-shaped groove surrounds a peripheral of the heart-shaped cam;

one end of the swing lever is fixed to the housing, and another end of the swing lever is located in the heart-shaped groove;

the heart-shaped groove has an unlocking position and a locking position;

when the another end of the swing lever is located at the locking position, the operating portion is locked by the push rod, and the operating portion cannot move; and

when the another end of the swing lever is located at the unlocking position, the push rod unlocks the operating portion, and the operating portion is movable.

2. The mechanical lock according to claim 1 , wherein

the heart-shaped groove comprises a first groove section, a second groove section, a third groove section and a fourth groove section;

a junction of the fourth groove section and the first groove section is a tip of the heart-shaped groove, and the unlocking position is located at the tip;

a junction of the second groove section and the third groove section is a recess of the heart-shaped groove, and the locking position is located in the recess;

the heart-shaped cam comprises a first cam surface, a second cam surface, a third cam surface and a fourth cam surface;

the heart-shaped groove comprises a first groove wall, a second groove wall, a third groove wall and a fourth groove wall;

the first groove section is at least surrounded by the first cam surface and the first groove wall opposite to each other; the second groove section is at least surrounded by the second cam surface and the second groove wall opposite to each other; the third groove section is at least surrounded by the third cam surface and the third groove wall opposite to each other; the fourth groove section is at least surrounded by the fourth cam surface and the fourth groove wall opposite to each other;

the first cam surface is configured to guide the another end of the swing lever located at the unlocking position to the first groove section when the push rod moves;

the second cam surface is configured to guide the another end of the swing lever located at an entrance of the second groove section to the locking position when the push rod moves; and

the third groove wall is configured to guide the another end of the swing lever located at the locking position to the third groove section when the push rod moves.

3. The mechanical lock according to claim 2 , wherein a groove bottom of the heart-shaped groove is an angled slope, and the groove bottom is provided with a step;

the step is located at an exit of the third groove section, and the step is configured to prevent the another end of the swing lever entering the fourth groove section from returning to the third groove section.

4. The mechanical lock according to claim 1 , wherein the push rod has a locking protrusion;

when the another end of the swing lever is located at the locking position, the locking protrusion abuts against the operating portion; and

when the another end of the swing lever is located at the unlocking position, the locking protrusion is misaligned with the operating portion.

5. The mechanical lock according to claim 1 , wherein the swing lever comprises a rod;

the rod extends between the one end of the swing lever and the another end of the swing lever; and

viewed from a side of the push rod with the heart-shaped cam, a central line of the rod is collinear with a line connecting the unlocking position and the locking position.

6. The mechanical lock according to claim 5 , wherein the another end of the swing lever is a hook portion which is perpendicular to the rod; and

the one end of the swing lever is an annular handle which is fastened to the housing.

7. The mechanical lock according to claim 1 , wherein the push rod has a switch linkage portion, and the switch linkage portion is capable of being linked with a switch so as to turn on and off the switch.

8. The mechanical lock according to claim 7 , wherein the switch linkage portion comprises a first working surface, a second working surface, and a first guide surface extending between the first working surface and the second working surface;

the mechanical lock further comprises a slider which is slidably arranged on the housing; one side of the slider abuts against the switch linkage portion, and the another side of the slider faces the switch;

when the another end of the swing lever is located at the unlocking position, the one side of the slider abuts against the first working surface, and the another side of the slider does not press the switch; and

when the another end of the swing lever is at the locking position, the one side of the slider abuts against the second working surface, and the another side of the slider presses the switch.

9. The mechanical lock according to claim 7 , wherein the first guide surface is an inclined surface;

the slider has a second guide surface, and the second guide surface is an inclined surface matching a shape of the first guide surface.

10. The mechanical lock according to claim 1 , wherein the push rod has a bent portion, and the bent portion has a first surface;

when the push rod moves into the housing to a maximum displacement, the first surface approaches or abuts against the housing.

11. A charging connector, comprising: a housing, a hook and a mechanical lock;

wherein the hook comprises an engaging portion and an operating portion; the engaging portion is engaged or disengaged with a mating connector when the operating portion is moved by an external force;

the mechanical lock is configured to lock or unlock the operating portion, so that the operating portion is in a movable state or an immovable state;

the mechanical lock comprises: a push rod, a swing lever and a first elastic member;

the first elastic member is configured to be able to provide the push rod with a force opposite to a direction of the external force which is applied to the push rod;

the push rod is slidably arranged on the housing along a first direction; the push rod has a heart-shaped cam and a heart-shaped groove; the heart-shaped groove surrounds a peripheral of the heart-shaped cam;

one end of the swing lever is fixed to the housing, and another end of the swing lever is located in the heart-shaped groove;

the heart-shaped groove has an unlocking position and a locking position;

when the another end of the swing lever is located at the locking position, the operating portion is locked by the push rod, and the operating portion cannot move; and

when the another end of the swing lever is located at the unlocking position, the push rod unlocks the operating portion, and the operating portion is movable.

12. The charging connector according to claim 11 , the heart-shaped groove comprises a first groove section, a second groove section, a third groove section and a fourth groove section;

a junction of the fourth groove section and the first groove section is a tip of the heart-shaped groove, and the unlocking position is located at the tip;

a junction of the second groove section and the third groove section is a recess of the heart-shaped groove, and the locking position is located in the recess;

the heart-shaped cam comprises a first cam surface, a second cam surface, a third cam surface and a fourth cam surface;

the heart-shaped groove comprises a first groove wall, a second groove wall, a third groove wall and a fourth groove wall;

the first groove section is at least surrounded by the first cam surface and the first groove wall opposite to each other; the second groove section is at least surrounded by the second cam surface and the second groove wall opposite to each other; the third groove section is at least surrounded by the third cam surface and the third groove wall opposite to each other; the fourth groove section is at least surrounded by the fourth cam surface and the fourth groove wall opposite to each other;

the first cam surface is configured to guide the another end of the swing lever located at the unlocking position to the first groove section when the push rod moves;

the second cam surface is configured to guide the another end of the swing lever located at an entrance of the second groove section to the locking position when the push rod moves; and

the third groove wall is configured to guide the another end of the swing lever located at the locking position to the third groove section when the push rod moves.

13. The charging connector according to claim 12 , wherein a groove bottom of the heart-shaped groove is an angled slope, and the groove bottom is provided with a step;

the step is located at an exit of the third groove section, and the step is configured to prevent the another end of the swing lever entering the fourth groove section from returning to the third groove section.

14. The charging connector according to claim 11 , wherein the push rod has a locking protrusion;

when the another end of the swing lever is located at the locking position, the locking protrusion abuts against the operating portion; and

when the another end of the swing lever is located at the unlocking position, the locking protrusion is misaligned with the operating portion.

15. The charging connector according to claim 11 , wherein the swing lever comprises a rod;

the rod extends between the one end of the swing lever and the another end of the swing lever; and

viewed from a side of the push rod with the heart-shaped cam, a central line of the rod is collinear with a line connecting the unlocking position and the locking position.

16. The charging connector according to claim 15 , wherein the another end of the swing lever is a hook portion which is perpendicular to the rod; and

the one end of the swing lever is an annular handle which is fastened to the housing.

17. The charging connector according to claim 11 , wherein the push rod has a switch linkage portion, and the switch linkage portion is capable of being linked with a switch so as to turn on and off the switch.

18. The charging connector according to claim 17 , wherein the switch linkage portion comprises a first working surface, a second working surface, and a first guide surface extending between the first working surface and the second working surface;

the mechanical lock further comprises a slider which is slidably arranged on the housing; one side of the slider abuts against the switch linkage portion, and the another side of the slider faces the switch;

when the another end of the swing lever is located at the unlocking position, the one side of the slider abuts against the first working surface, and the another side of the slider does not press the switch; and

when the another end of the swing lever is at the locking position, the one side of the slider abuts against the second working surface, and the another side of the slider presses the switch.

19. The charging connector according to claim 17 , wherein the first guide surface is an inclined surface;

the slider has a second guide surface, and the second guide surface is an inclined surface matching a shape of the first guide surface.

20. The charging connector according to claim 11 , wherein the push rod has a bent portion, and the bent portion has a first surface;

when the push rod moves into the housing to a maximum displacement, the first surface approaches or abuts against the housing.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 11, 2024
From: LUXSHARE AUTOMOTIVE CONNECTION SYSTEM (SHANGHAI) CO., LTD
To: LUXSHARE PRECISION INDUSTRY (JIANGSU)CO.,LTD.
Reel/Frame 067071/0920 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 11, 2023
From: LIN, PEIWEI; LIN, PEIQUAN; TANG, XINGRAN; LINGHU, YUNBO
To: LUXHARE AUTOMOTIVE CONNECTION SYSTEM (SHANGHAI) CO., LTD
Reel/Frame 064239/0617 →
Priority Claims (1)
CN 202211593993.9 · Dec 13, 2022 · national
Continuity (1)
Related Publication 20240195123A1 · Jun 13, 2024
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