IP Library Granted Patent US 9,252,517
Granted Patent B2
US 9,252,517 · App. 14/331,884 · Granted Feb 2, 2016

Connector

Inventor: Kousuke Kimura (Tokyo, JP)
Assignee: JAPAN AVIATION ELECTRONICS INDUSTRY, LIMITED
H01R12/85H01R12/716H01R12/73H01R13/2492
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Quick Facts
Patent No.
US 9,252,517
App. No.
14/331,884
Granted
Feb 2, 2016
Kind
B2
Abstract

A connector is mateable with a mating connector comprising a mating contact. The connector comprises a contact which is brought into contact with the mating contact at two points under a mated state. The contact has a first spring portion, a protruding portion protruding from the first spring portion, a slide portion extending flat and a second spring portion. The protruding portion has a first contact portion while the slide portion has a second contact portion. The first contact portion is movable by first resilient deformation of the first spring portion while the second contact portion is movable by second resilient deformation of the second spring portion. One of the first contact portion and the second contact portion is moved because of both the first resilient deformation and the second resilient deformation when the connector is transited from a mating start state to the mated state.

Claims (55)

1. A connector mateable with a mating connector along a mating direction, wherein:

the mating connector comprises a mating contact;

the mating contact has a mating contact portion;

the connector comprises a contact;

the contact is brought into contact with the mating contact at two points under a mated state where the connector is mated with the mating connector;

the contact has a protruding portion, a first spring portion, a slide portion and a second spring portion;

the protruding portion protrudes from the first spring portion and has a first contact portion;

the first contact portion is movable by resilient deformation of the first spring portion to have a movement in a predetermined direction which is perpendicular to the mating direction;

the first contact portion is brought into contact with the mating contact under the mated state;

the slide portion extends flat and has a second contact portion;

the second contact portion is movable by resilient deformation of the second spring portion to have a movement in the predetermined direction;

the slide portion allows the mating contact portion to slide thereon to the second contact portion when the connector is transited from a mating start state to the mated state;

the mating start state is a state where the connector starts to be mated with the mating connector;

the second contact portion is brought into contact with the mating contact portion under the mated state; and

one of the first contact portion and the second contact portion is moved in the predetermined direction because of both the resilient deformation of the first spring portion and the resilient deformation of the second spring portion when the connector is transited from the mating start state to the mated state.

2. The connector as recited in claim 1 , wherein:

the connector comprises a housing; and

the housing holds the contact.

3. The connector as recited in claim 1 , wherein:

when the connector is transited from the mating start state to the mated state, the first contact portion is moved by a first distance in the predetermined direction because of the resilient deformation of the first spring portion while the second contact portion is moved by a second distance in the predetermined direction because of the resilient deformation of the second spring portion; and

the second distance is larger than the first distance.

4. The connector as recited in claim 1 , wherein:

when the connector is transited from the mating start state to the mated state, the first contact portion is moved by a first distance in the predetermined direction because of the resilient deformation of the first spring portion while the second contact portion is moved by a second distance in the predetermined direction because of the resilient deformation of the second spring portion; and

the first distance is larger than the second distance.

5. The connector as recited in claim 1 , wherein:

the first contact portion is located at a position different from that of the second contact portion in the predetermined direction; and

when the connector is seen along the mating direction, the first contact portion and the second contact portion are visible.

6. The connector as recited in claim 1 , wherein:

while the connector is transited from the mating start state to the mated state, a part of the slide portion continuously receives a contact force from the mating contact portion;

under the mated state, the second contact portion of the slide portion receives the contact force; and

a direction of the contact force under the mated state is different from another direction of the contact force under the mating start state.

7. The connector as recited in claim 6 , wherein the direction of the contact force under the mated state is perpendicular to the mating direction.

8. The connector as recited in claim 1 , wherein:

under the mated state, the first contact portion receives a first contact force from the mating contact while the second contact portion receives a second contact force from the mating contact; and

each of a direction of the first contact force and a direction of the second contact force is perpendicular to the mating direction.

9. The connector as recited in claim 1 , wherein the contact is formed by punching out a single metal plate.

10. A connector mateable with a mating connector along a mating direction, wherein:

the mating connector comprises a mating contact;

the connector comprises a contact;

the contact is brought into contact with the mating contact at two points under a mated state where the connector is mated with the mating connector;

the contact has a first spring portion and a second spring portion;

the second spring portion has a first bent portion, a slide portion and a second bent portion;

the slide portion extends flat;

the first bent portion extends from one of opposite ends of the slide portion to intersect with the slide portion;

the first bent portion has a first contact portion;

the second bent portion extends from a remaining one of the opposite ends of the slide portion to intersect with the slide portion;

the second bent portion has a second contact portion;

the first contact portion is movable by resilient deformation of the first spring portion to have a movement in a predetermined direction which is perpendicular to the mating direction;

the first contact portion is brought into contact with the mating contact to receive a first contact force from the mating contact under the mated state;

the first contact force functions to maintain the mated state;

the second contact portion is movable by resilient deformation of the second spring portion to have a movement in the predetermined direction;

the second contact portion is brought into contact with the mating contact to receive a second contact force from the mating contact under the mated state;

the second contact force functions to maintain the mated state;

the second contact portion is moved in the predetermined direction because of both the resilient deformation of the first spring portion and the resilient deformation of the second spring portion when the connector is transited from the mating start state to the mated state; and

the mating start state is a state where the connector starts to be mated with the mating connector.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 15, 2014
From: KIMURA, KOUSUKE
To: JAPAN AVIATION ELECTRONICS INDUSTRY, LIMITED
Reel/Frame 033316/0032 →
Priority Claims (1)
JP 2013-164975 · Aug 8, 2013 · national
Continuity (1)
Related Publication 20150044919A1 · Feb 12, 2015