IP Library Granted Patent US 10,014,600
Granted Patent B1
US 10,014,600 · App. 15/810,193 · Granted Jul 3, 2018

Terminal crimping structure and connector with cable

Inventors: Shigeo Mori (Shizuoka, JP); Hiroyuki Tanaka (Shizuoka, JP)
Assignee: YAZAKI CORPORATION
H01R9/0518H01R13/6592H01R24/38H01R2103/00
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,014,600
App. No.
15/810,193
Granted
Jul 3, 2018
Kind
B1
Abstract

A terminal crimping structure includes a coaxial cable, a terminal fitting including a tubular conductor connecting portion coaxially interposed between a terminal connecting portion of an outer conductor of the coaxial cable and an insulator, a tubular crimping member that allows the terminal connecting portion to be coaxially interposed between the crimping member and the conductor connecting portion to crimp the terminal connecting portion onto the conductor connecting portion, and a tubular member that is stronger and harder than the conductor connecting portion and coaxially interposed between the conductor connecting portion and the insulator. Linear conductors of the terminal connecting portion include crushed portions that abut each other. The crushed portions are crushed until they are axially extended by an amount achieving a target crushed state in which an oxide layer is broken to obtain an exposed region of a new surface required for adhesion to the conductor connecting portion.

Claims (23)

1. A terminal crimping structure comprising:

a coaxial cable that includes a pillar-shaped center conductor, a tubular insulator, and a tubular outer conductor coaxially disposed in this order from an axis, the outer conductor including a plurality of linear conductors made of aluminum or aluminum alloy, the linear conductors extending along an outer circumferential surface of the insulator in a direction that crosses a circumferential direction of the insulator to a cable axial direction, the linear conductors being arranged along the circumferential direction to virtually form the tubular outer conductor in a tubular shape;

a terminal fitting that includes a terminal-to-terminal connecting portion that is physically and electrically connected to a counterpart terminal, and a tubular conductor connecting portion coaxially interposed between the insulator and an exposed terminal connecting portion of the outer conductor at a cable end portion of the coaxial cable, the conductor connecting portion being physically and electrically connected to the terminal connecting portion;

a tubular crimping member that allows the terminal connecting portion to be coaxially interposed between the crimping member and the conductor connecting portion, the crimping member being deformed upon application of pressure applied radially inward to crimp the terminal connecting portion onto the conductor connecting portion; and

a tubular member that is stronger and harder than the conductor connecting portion and is coaxially interposed between the conductor connecting portion and the insulator, wherein

the linear conductors of the terminal connecting portion include crushed portions that abut each other such that circumferentially adjacent linear conductors that are spaced apart before the application of pressure are crushed and that a gap between the adjacent linear conductors is reduced by the crush under the pressure, the crushed portions abutting each other being crushed until the crushed portions are axially extended by an amount that achieves a target crushed state, the target crushed state being a state in which an oxide layer on the linear conductors is broken to obtain an exposed region of a new surface that is required for adhesion to the conductor connecting portion.

2. The terminal crimping structure according to claim 1 , wherein

the tubular member is configured to exert, on the conductor connecting portion, a reaction force equal to a force exerted radially inward from the conductor connecting portion upon the application of pressure.

3. The terminal crimping structure according to claim 1 , wherein

the tubular member is configured not to deform upon the application of pressure.

4. The terminal crimping structure according to claim 2 , wherein

the tubular member is configured not to deform upon the application of pressure.

5. A connector with a cable, comprising:

a coaxial cable that includes a pillar-shaped center conductor, a tubular insulator, and a tubular outer conductor coaxially disposed in this order from an axis, the outer conductor including a plurality of linear conductors made of aluminum or aluminum alloy, the linear conductors extending along an outer circumferential surface of the insulator in a direction that crosses a circumferential direction of the insulator to a cable axial direction, the linear conductors being arranged along the circumferential direction to virtually form the tubular outer conductor in a tubular shape; and

a connector to which a cable end portion of the coaxial cable is connected, wherein

the connector includes

a terminal fitting that includes a terminal-to-terminal connecting portion that is physically and electrically connected to a counterpart terminal of a counterpart connector, and a tubular conductor connecting portion coaxially interposed between the insulator and an exposed terminal connecting portion of the outer conductor at the cable end portion, the conductor connecting portion being physically and electrically connected to the terminal connecting portion,

a tubular crimping member that allows the terminal connecting portion to be coaxially interposed between the crimping member and the conductor connecting portion, the crimping member being deformed upon application of pressure applied radially inward to crimp the terminal connecting portion onto the conductor connecting portion, and

a tubular member that is stronger and harder than the conductor connecting portion and is coaxially interposed between the conductor connecting portion and the insulator,

the linear conductors of the terminal connecting portion include crushed portions that abut each other such that circumferentially adjacent linear conductors that are spaced apart before the application of pressure are crushed and that a gap between the adjacent linear conductors are reduced by the crush under the pressure, the crushed portions abutting each other being crushed until the crushed portions are axially extended by an amount that achieves a target crushed state, the target crushed state being a state in which an oxide layer on the linear conductors is broken to obtain an exposed region of a new surface that is required for adhesion to the conductor connecting portion.

6. The connector with a cable according to claim 5 , wherein

the coaxial cable includes the center conductor, a first insulator as the insulator, the outer conductor, a tubular second insulator different from the insulator, a tubular shield, and a tubular protective outer sheath coaxially disposed in this order from the axis, and

the connector includes a first terminal fitting different from the terminal fitting, the first terminal fitting being physically and electrically connected to the center conductor, a second terminal fitting as the terminal fitting, a housing that stores therein the first terminal fitting and the second terminal fitting, and a shield shell that externally covers the housing and that is electrically connected to the shield.

Assignments (2)
CHANGE OF ADDRESS Recorded Jun 5, 2023
From: YAZAKI CORPORATION
To: YAZAKI CORPORATION
Reel/Frame 063845/0802 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 13, 2017
From: MORI, SHIGEO; TANAKA, HIROYUKI
To: YAZAKI CORPORATION
Reel/Frame 044582/0937 →
Priority Claims (1)
JP 2016-246474 · Dec 20, 2016 · national