IP Library Granted Patent US 10,547,147
Granted Patent B2
US 10,547,147 · App. 15/289,308 · Granted Jan 28, 2020

Plug connector and adapter with thermal protection circuit to discontinue current supply when overheating occurs

Inventors: Keiichi Taniguchi (Yao, JP); Katsutoshi Yamamoto (Yao, JP)
Assignee: HOSIDEN CORPORATION
H01R13/7137H01R12/53H01R13/405H01R13/6683H01R24/62H01R31/065H01R2107/00
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Quick Facts
Patent No.
US 10,547,147
App. No.
15/289,308
Granted
Jan 28, 2020
Kind
B2
Abstract

The invention provides a plug connector which, when abnormal heating occurs in a fitting portion with a counter connector, can sensitively cut off the current supply. The plug connector has: contacts; a body that holds the contacts; a metal shell that covers the body; and a printed circuit board on which the contacts are solder-connected. The body has a fitting portion with a counter connector. The board has a thermal protection circuit. The thermal protection circuit has a temperature switch that detects a temperature, and an FET that is disposed in a power supply wiring of the board. When the detected temperature of the temperature switch exceeds a predetermined temperature, the power supply wiring is cut off by the FET. In the plug connector, the board has a heat conduction pattern that conducts heat of the metal shell 60 to the temperature switch.

Claims (33)

1. A plug connector, comprising:

a plurality of contacts;

a body that holds the plurality of contacts, the body comprises a fitting portion which is projected, and which is to be fitted with a counter connector;

a metal shell that covers the body; and

a printed circuit board to which the plurality of contacts are solder-connected, the printed circuit board comprises a thermal protection circuit, and the thermal protection circuit comprises:

a temperature switch IC that detects a temperature; and

an FET that is disposed in a power supply wiring of the printed circuit board, and, when a detected temperature of the temperature switch IC exceeds a predetermined temperature, causes the FET to cut off the power supply wiring, wherein

the printed circuit board comprises a heat conduction pattern that conducts heat of the metal shell to the temperature switch IC, and

the heat conduction pattern comprises a portion that overlaps with the temperature switch IC in a thickness direction of the printed circuit board.

2. A plug connector in which the plug connector comprises: a plurality of contacts; a body which holds the plurality of contacts; a metal shell which covers the body; and a printed circuit board to which the plurality contacts are solder-connected, the body comprises a fitting portion which is projected, and which is to be fitted with a counter connector, the printed circuit board comprises a thermal protection circuit, and the thermal protection circuit comprises: a temperature switch IC which detects a temperature; and an FET which is disposed in a power supply wiring of the printed circuit board, and, when a detected temperature of the temperature switch IC exceeds a predetermined temperature, causes the FET to cut off the power supply wiring, wherein

the printed circuit board comprises a heat conduction pattern which conducts heat of the metal shell to the temperature switch IC,

the heat conduction pattern comprises a portion which overlaps with the temperature switch IC in a thickness direction of the printed circuit board,

the printed circuit board is a multi-layer board, the temperature switch IC is surface-mounted on the printed circuit board, the heat conduction pattern is disposed on at least one surface layer of the printed circuit board, and comprises: a shell connection land to which the metal shell is solder-connected; an inner-layer conductor pattern that is disposed on an inner layer adjacent to the surface layer of the printed circuit board on which the temperature switch IC is mounted; a via which connects between the shell connection land and the inner-layer conductor pattern; and a temperature switch IC connection land that is disposed on a surface layer of the printed circuit board on which the temperature switch IC is mounted, a pad that is disposed on a lower surface of the temperature switch IC being solder-connected to the temperature switch IC connection land, and the inner-layer conductor pattern comprises a portion which overlaps with the temperature switch IC connection land in the thickness direction of the printed circuit board.

3. A plug connector in which the plug connector comprises: a plurality of contacts; a body which holds the plurality of contacts; a metal shell which covers the body; and a printed circuit board to which the plurality of contacts are solder-connected, the body comprises a fitting portion which is projected, and which is to be fitted with a counter connector, the printed circuit board comprises a thermal protection circuit, and the thermal protection circuit comprises: a temperature switch IC which detects a temperature; and an FET which is disposed in a power supply wiring of the printed circuit board, and, when a detected temperature of the temperature switch IC exceeds a predetermined temperature, causes the FET to cut off the power supply wiring, wherein

the printed circuit board comprises a heat conduction pattern which conducts heat of the metal shell to the temperature switch IC,

the heat conduction pattern comprises a portion which overlaps with the temperature switch IC in a thickness direction of the printed circuit board,

the printed circuit board is a multi-layer board, the temperature switch IC is surface-mounted on the printed circuit board, the heat conduction pattern is disposed on at least one surface layer of the printed circuit board, and comprises: a shell connection land to which the metal shell is solder-connected; an inner-layer conductor pattern that is disposed on an inner layer adjacent to the surface layer of the printed circuit board on which the temperature switch IC is mounted; a via which connects between the shell connection land and the inner-layer conductor pattern; and a temperature switch IC connection land that is disposed on a surface layer of the printed circuit board on which the temperature switch IC is mounted, a pad that is disposed on a lower surface of the temperature switch IC being solder-connected to the temperature switch IC connection land, the inner-layer conductor pattern comprises a portion which overlaps with the temperature switch IC connection land in the thickness direction of the printed circuit board, and

the heat conduction pattern further comprises another via which connects between the inner-layer conductor pattern and temperature switch IC connection land that overlap with each other in the thickness direction of the printed circuit board.

4. The plug connector according to claim 1 , wherein the temperature switch IC comprises the FET.

5. The plug connector according to claim 1 , wherein the plug connector further comprises a cable which is solder-connected to the printed circuit board.

6. The plug connector according to claim 1 , wherein the temperature switch IC comprises the FET, and

the plug connector further comprises a cable which is solder-connected to the printed circuit board.

7. An adapter wherein the adapter comprises the plug connector according to claim 1 , as a first connector, and further comprises: a second connector which is mounted on the printed circuit board of the first connector; and a housing which covers the printed circuit board in a state where the first connector and the second connector are fittable to respective counter connectors.

8. The plug connector according to claim 2 , wherein the temperature switch IC comprises the FET.

9. The plug connector according to claim 2 , wherein the plug connector further comprises a cable which is solder-connected to the printed circuit board.

10. The plug connector according to claim 2 , wherein the temperature switch IC comprises the FET, and

the plug connector further comprises a cable which is solder-connected to the printed circuit board.

11. An adapter wherein the adapter comprises the plug connector according to claim 2 , as a first connector, and further comprises: a second connector which is mounted on the printed circuit board of the first connector; and a housing which covers the printed circuit board in a state where the first connector and the second connector are fittable to respective counter connectors.

12. The plug connector according to claim 3 , wherein the temperature switch IC comprises the FET.

13. The plug connector according to claim 3 , wherein the plug connector further comprises a cable which is solder-connected to the printed circuit board.

14. The plug connector according to claim 3 , wherein the temperature switch IC comprises the FET, and

the plug connector further comprises a cable which is solder-connected to the printed circuit board.

15. An adapter wherein the adapter comprises the plug connector according to claim 3 , as a first connector, and further comprises: a second connector which is mounted on the printed circuit board of the first connector; and a housing which covers the printed circuit board in a state where the first connector and the second connector are fittable to respective counter connectors.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 10, 2016
From: TANIGUCHI, KEIICHI; YAMAMOTO, KATSUTOSHI
To: HOSIDEN CORPORATION
Reel/Frame 039975/0799 →
Priority Claims (1)
JP 2015-202574 · Oct 14, 2015 · national
Continuity (1)
Related Publication 20170110837A1 · Apr 20, 2017