IP Library Granted Patent US 12,431,675
Granted Patent B2
US 12,431,675 · App. 17/729,602 · Granted Sep 30, 2025

Cable connector assembly

Inventor: Tadashi Kumamoto (Kawasaki, JP)
Assignee: TE Connectivity Japan G.K.
H01R24/40H01R4/183H01R13/516H01R13/6592
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Quick Facts
Patent No.
US 12,431,675
App. No.
17/729,602
Granted
Sep 30, 2025
Kind
B2
Abstract

A cable connector assembly includes a coaxial connector, a shielded cable, and a ferrule. The coaxial connector has an inner terminal, an insulating housing surrounding the inner terminal, and an outer terminal surrounding the insulating housing. The shielded cable has an inner conductor connected to the inner terminal, an insulation layer surrounding the inner conductor, and an outer conductor surrounding the insulation layer. The ferrule is positioned inside the outer terminal and crimped to the outer terminal. The outer terminal has a plurality of catching portions formed in different positions in an axial direction of the shielded cable and catching on the ferrule to restrain the shielded cable from being pulled out.

Claims (31)

1. A cable connector assembly, comprising:

a coaxial connector having an inner terminal, an insulating housing surrounding the inner terminal, and an outer terminal surrounding the insulating housing, the inner terminal positionable within insulating housing within a predetermined range of longitudinal positions in an axial direction of the shielded cable wherein proper functionality of the coaxial connector is realized;

a shielded cable having an inner conductor connected to the inner terminal, an insulation layer surrounding the inner conductor, and an outer conductor surrounding the insulation layer; and

a ferrule positioned inside the outer terminal and crimped to the outer conductor in a longitudinal position adapted to maintain the inner terminal in the predetermined range of longitudinal positions, the outer terminal has a plurality of catching portions formed in different positions in an axial direction of the shielded cable and adapted to catch on an axially facing end of the ferrule to restrain the shielded cable from being pulled out and prevent the inner terminal from being displaced into a position outside of the predetermined range of longitudinal positions, wherein a first catching portion and a second catching portion of the plurality of catching portions are separated in the longitudinal direction by a predetermined distance corresponding to the predetermined range of longitudinal positions of the inner terminal, such that the inner terminal remains in the predetermined range of longitudinal positions with the axially facing end of the ferrule engaged with either of the first catching portion or the second catching portion.

2. The cable connector assembly of claim 1 , wherein the catching portion has a rear end that is a fixed end and a front end as a free end.

3. The cable connector assembly of claim 2 , wherein the first catching portion is arranged closer to a free end of the inner terminal than the second catching portion.

4. The cable connector assembly of claim 3 , wherein each of the plurality of catching portions is a protrusion extending obliquely inward.

5. The cable connector assembly of claim 4 , wherein, with the axially facing end of the ferrule engaged with the first catching portion, the second catching portion is not engaged with the ferrule.

6. The cable connector assembly of claim 3 , wherein, with the axially facing end of the ferrule engaged with the second catching portion, the first catching portion is deformed outwardly by a force exerted by the ferrule after crimping of the outer terminal.

7. A cable connector assembly, comprising:

a coaxial connector having an inner terminal, an insulating housing surrounding the inner terminal, and an outer terminal surrounding the insulating housing, the inner terminal positionable within insulating housing within a predetermined range of longitudinal positions in an axial direction of the shielded cable wherein proper functionality of the coaxial connector is realized; and

a ferrule positioned inside the outer terminal and adapted to be crimped to an outer conductor of a shielded cable in a longitudinal position which maintains the inner terminal in the predetermined range of longitudinal positions, the outer terminal has a first catching portion and a second catching portion formed in different positions in an axial direction of the connector and catching on the ferrule to prevent the inner terminal from being displaced a position outside of the predetermined range of longitudinal positions, wherein a first catching portion and a second catching portion of the plurality of catching portions are separated in the longitudinal direction by a predetermined distance corresponding to the predetermined range of longitudinal positions of the inner terminal such that the inner terminal remains in the predetermined range of longitudinal positions with a rear facing end of the ferrule engaged with either of the first catching portion or the second catching portion.

8. The cable connector assembly of claim 7 , wherein the first and second catching portions each has a rear end that is a fixed end and a front end as a free end.

9. The cable connector assembly of claim 8 , wherein the first catching portion is arranged closer to a free end of the inner terminal than the second catching portion.

10. The cable connector assembly of claim 9 , wherein at least one of the first and second catching portions is a protrusion extending obliquely inward.

11. The cable connector assembly of claim 10 , wherein, with the axially facing end of the ferrule engaged with the first catching portion, the second catching portion is not engaged with the ferrule and extends obliquely inwardly.

12. The cable connector assembly of claim 10 , wherein, with the axially facing end of the ferrule engaged with the second catching portion, the first catching portion abuts an intermediate portion of the ferrule and does not extend obliquely inwardly.

13. The cable connector assembly of claim 7 , further comprising a shielded cable having an inner conductor connected to the inner terminal.

14. The cable connector assembly of claim 13 , wherein the shielded cable has an insulation layer surrounding the inner conductor and an outer conductor surrounding the insulation layer.

15. A method of forming a cable connector assembly comprising the steps of:

connecting an inner terminal of a coaxial connector to an inner conductor of a shielded cable;

positioning the inner terminal within an insulating housing of the coaxial connector and inside of an outer terminal of the coaxial connector, the inner terminal positioned within the insulating housing within a predetermined range of longitudinal positions in an axial direction of the shielded cable wherein proper functionality of the coaxial connector is realized;

crimping a ferrule onto an outer conductor of the shielded cable in a longitudinal position adapted to maintain the inner terminal in the predetermined range of longitudinal positions; and

crimping the outer terminal onto the ferrule, the outer terminal having a first catching portion and a second catching portion formed in different positions in an axial direction of the connector and catching on the ferrule to prevent the inner terminal from being displaced a position outside of the predetermined range of longitudinal positions, wherein a first catching portion and a second catching portion of the plurality of catching portions are separated in the longitudinal direction by a predetermined distance corresponding to the predetermined range of longitudinal positions of the inner terminal such that the inner terminal remains in the predetermined range of longitudinal positions with a rear facing end of the ferrule engaged with either of the first catching portion or the second catching portion.

16. The method of claim 15 , wherein:

the first catching portion is formed closer to a free end of the inner terminal than the second catching portion; and

each catching portion includes a protrusion having a free end extending obliquely inward.

17. The method of claim 16 , wherein the step of crimping the outer terminal includes engaging the axially facing end of the ferrule with the free end of the first catching portion, wherein the second catching portion is not engaged with the ferrule.

18. The method of claim 16 , wherein the step of crimping the outer terminal includes:

engaging the axially facing end of the ferrule with the free end of the second catching portion; and

engaging the free end of the first catching portion with an intermediate portion of the ferrule, wherein the ferrule deforms the free end of the first catching portion outwardly in a direction away from the ferrule.

Assignments (2)
CHANGE OF NAME Recorded Dec 18, 2024
From: TYCO ELECTRONICS JAPAN G.K.
To: TE CONNECTIVITY JAPAN G.K.
Reel/Frame 069811/0353 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 31, 2022
From: KUMAMOTO, TADASHI
To: TYCO ELECTRONICS JAPAN G.K.
Reel/Frame 060946/0569 →
Priority Claims (1)
JP 2019-199527 · Nov 1, 2019 · national
Continuity (2)
Continuation PCTJP2020040277 · Oct 27, 2020
Related Publication 20220255273A1 · Aug 11, 2022
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