IP Library › Granted Patent US 10,568,362
Granted Patent B2
US 10,568,362 · App. 16/357,587 · Granted Feb 25, 2020

Tamper-proof locking mechanisms and electronic cigarettes having the same

Inventor: Xiaochun Zhu (Shenzhen, CN)
Assignee: SHENZHEN KANGER TECHNOLOGY CO., LTD.
A24F47/008A24F7/02A61M15/06
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Quick Facts
Patent No.
US 10,568,362
App. No.
16/357,587
Granted
Feb 25, 2020
Kind
B2
Abstract

Certain aspects of present invention relate to an electronic cigarette having tamper-proof locking mechanisms. In certain embodiments, the electronic cigarette may include: an electronic cigarette body, a tamper-proof mouthpiece connector locking mechanism threadedly connected to electronic cigarette body, and a tamper-proof power connector locking mechanism threadedly connected to electronic cigarette body. When a user pushes tamper-proof mouthpiece connector locking mechanism towards electronic cigarette body, tamper-proof mouthpiece connector locking mechanism is locked such that the user is able to remove a mouthpiece connector from electronic cigarette body to refill e-liquid for the electronic cigarette. When user pushes tamper-proof power connector locking mechanism towards electronic cigarette body, tamper-proof power connector locking mechanism is locked such that user is able to remove a power connector from electronic cigarette body to replace a vaporizer, a heater for the vaporizer, and e-liquid storage medium of the electronic cigarette.

Claims (18)

1. A tamper-proof power connector locking mechanism for an electronic cigarette comprising:

a power connector base having a power connector outside thread configured to threadedly connect to a power connector inside thread of an electronic cigarette body, wherein the power connector base defines one or more power connector locking openings;

a power connector fixedly connected to the power connector base;

a power connector tamper-proof ring positioned outside of the power connector configured to prevent power connector tampering;

one or more power connector locking pins, one for each of the one or more power connector locking openings; and

one or more power connector locking springs,

wherein when a user pushes the power connector tamper-proof ring towards the power connector base against a resilient force of the one or more power connector locking springs, each of the one or more power connector locking pins engages a corresponding one of the one or more power connector locking openings such that the user can remove the power connector from the electronic cigarette body by turning the tamper-proof power connector locking mechanism.

2. The tamper-proof power connector locking mechanism of claim 1 , wherein when the user releases the power connector tamper-proof ring, each of the one or more power connector locking pins disengages the corresponding one of the one or more power connector locking openings at the resilient force of the one or more power connector locking springs such that the user will not be able to remove the power connector from the electronic cigarette body.

3. The tamper-proof power connector locking mechanism of claim 1 , wherein the user can replace a vaporizer of the electronic cigarette, a heater for the vaporizer, and an e-liquid storage medium when the power connector is removed from the electronic cigarette body.

4. The tamper-proof power connector locking mechanism of claim 1 , wherein the one or more power connector locking pins are substantially evenly distributed along a bottom surface of the power connector tamper-proof ring, and the corresponding one or more power connector locking openings are substantially evenly distributed along a top surface of the power connector base, respectively, such that each of the one or more power connector locking pins engages a corresponding one of the one or more power connector locking openings when the user pushes the power connector tamper-proof ring towards the power connector base.

5. The tamper-proof power connector locking mechanism of claim 1 , wherein the tamper-proof power connector locking mechanism comprises three power connector locking springs substantially evenly distributed along the bottom surface of the power connector tamper-proof ring.

6. The tamper-proof power connector locking mechanism of claim 1 , wherein each of the one or more power connector locking pins has a shape selected from the group consisting of:

a round shape;

a square shape;

a triangular shape;

a rectangular shape;

an oval shape; and

a combination thereof.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 19, 2019
From: ZHU, XIAOCHUN
To: SHENZHEN KANGER TECHNOLOGY CO., LTD.
Reel/Frame 048634/0123 →
Priority Claims (1)
WO PCT/CN2016/076542 · Mar 16, 2016 · international
Continuity (2)
Division 15023665 · Mar 21, 2016
Related Publication 20190208829A1 · Jul 11, 2019