CABLE ASSEMBLY WITH STRAIN RELIEF
20200119480 ยท 2020-04-16
Inventors
- Michael L. Mellott (Youngstown, OH, US)
- Glenn E. Robison (Youngstown, OH, US)
- Jannik Renfordt (Solingen, DE)
Cpc classification
H01R13/5825
ELECTRICITY
H01R43/16
ELECTRICITY
H01R13/5219
ELECTRICITY
H01R13/052
ELECTRICITY
H01R13/28
ELECTRICITY
H01R13/113
ELECTRICITY
H01R13/62
ELECTRICITY
H01R13/193
ELECTRICITY
H01R13/53
ELECTRICITY
H01R13/26
ELECTRICITY
H01R13/5202
ELECTRICITY
H01R13/5812
ELECTRICITY
H01R24/66
ELECTRICITY
International classification
H01R24/66
ELECTRICITY
H01R13/26
ELECTRICITY
H01R13/58
ELECTRICITY
H01R13/193
ELECTRICITY
H01R13/52
ELECTRICITY
H01R43/16
ELECTRICITY
H01R13/28
ELECTRICITY
H01R13/53
ELECTRICITY
Abstract
A cable assembly includes a cable, a connector-body, a cable-seal, and a retainer. The connector-body is attached to the cable. The cable-seal is disposed within the connector-body and surrounds the cable. The cable-seal is configured to inhibit entry of a contaminant into the connector-body. The retainer is in direct contact with the cable, the connector-body and the cable-seal. The retainer is configured to retain the cable-seal within the connector-body. The retainer is configured to be installed onto the cable and is attached to the connector-body. The retainer contains cable-clamps mounted to a pair of opposed inclined-surfaces located on an inner-surface of the retainer. The cable-clamps include inclined-ramps configured to engage the inclined-surfaces. The inclined-ramps move along the inclined-surfaces, thereby causing the cable-clamps to impart a radial-force normal to the cable when the retainer is attached to the connector-body.
Claims
1. A cable assembly (10), comprising: a cable (14); a connector-body (16) attached to the cable (14); a cable-seal (13) disposed within the connector-body (16) and surrounding the cable (14); and a retainer (12) in direct contact with the cable (14), the connector-body (16) and the cable-seal (13), wherein the retainer (12) is configured to retain the cable-seal (13) within the connector-body (16) and further configured to attach to the connector-body (16), wherein the retainer (12) contains cable-clamps (24) longitudinally and slideably mounted to a pair of opposed inclined-surfaces (26) located on an inner-surface (28) of the retainer (12) and inclined relative to a longitudinal-axis (56) of the cable (14), wherein the cable-clamps (24) include inclined-ramps (58) configured to engage the inclined-surfaces (26), and wherein the inclined-ramps (58) move along the inclined-surfaces (26), thereby causing the cable-clamps (24) to impart a radial-force (76) normal to the cable (14) when the retainer (12) is attached to the connector-body (16).
2. The cable assembly (10) in accordance with claim 1, wherein the retainer (12) is configured to be moved along the cable (14).
3. The cable assembly (10) in accordance with claim 1, wherein the inclined-ramps (58) are oriented generally parallel to the inclined-surfaces (26).
4. The cable assembly (10) in accordance with claim 1, wherein a leading-edge (72) of the inclined-ramps (58) engage a trailing-edge (74) of the connector-body (16) when the retainer (12) is attached to the connector-body (16).
5. The cable assembly (10) in accordance with claim 1, wherein the cable-clamps (24) further include a face (84) extending perpendicular to the longitudinal-axis (56) of the cable (14) and wherein the face (84) is configured to engage the cable-seal (13) when the retainer (12) is attached to the connector-body (16).
6. The cable assembly (10) in accordance with claim 1, wherein the retainer (12) includes a first-half (30) and a separate opposed second-half (32), wherein the first-half (30) is configured to mate with the opposed second-half (32).
7. The cable assembly (10) in accordance with claim 6, wherein the first-half (30) and the opposed second-half (32) include a first-locking-tab on a bottom-side (36), wherein the first-locking-tab is configured to engage a first-locking-ramp (38) on an outer-surface (40) of the connector-body (16).
8. The cable assembly (10) in accordance with claim 6, wherein the first-half (30) and the opposed second-half (32) include a second-locking-tab (42A) and a second-locking-ramp (44A) on both a first-side (46) and a second-side (48) opposite the first side of an outer-surface (40) of the first-half (30) and opposing-second-half (32).
9. The cable assembly (10) in accordance with claim 8, wherein the first-side (46) is characterized by the second-locking-tab (42A) being located in a forward-position (52) and the second-side (48) is characterized by the second-locking-ramp (44A) being located in the forward-position (52).
10. The cable assembly (10) in accordance with claim 8, wherein the second-side (48) is characterized by the second-locking-tab (42A) being located in a forward-position (52) and the first-side (46) is characterized by the second-locking-ramp (44A) being located in the forward-position (52).
11. The cable assembly (10) in accordance with claim 1, wherein the cable assembly (10) further includes a plurality of cables (14) and the retainer (12) further includes a clip-lock (86) disposed between the plurality of cables (14).
12. The cable assembly (10) in accordance with claim 11, wherein, the clip-lock (86) includes a first-clip (86A) and a corresponding second-clip (86B) opposed to the first-clip (86A) and wherein the first-clip (86A) and the corresponding second-clip (86B) are configured to engage one another when the retainer (12) is installed onto the cable (14).
13. The cable assembly (10) in accordance with claim 1, wherein the cable-clamps (24) are moved from a pre-stage position (54) to a clamped-position (70) when the retainer (12) is attached to the connector-body (16).
14. The cable assembly (10) in accordance with claim 13, wherein the cable-clamps (24) are releasably locked in the pre-stage position (54) by locking-features (60) that project from a top-surface (62) of the inclined-ramps (58), the locking-features (60) disposed within apertures (64) defined by arms (66) overlaying the inclined-surfaces (26), the arms (66) project from a back-side (68) of the retainer (12), the apertures (64) configured to retain the locking-features (60) when the cable-clamps (24) are moved from the pre-stage position (54) to the clamped-position (70).
15. The cable assembly (10) in accordance with claim 1, wherein the retainer (12) includes a plurality of terminal position assurance posts (88) (TPA-posts (88)) configured to engage an inner-ferrule (90) disposed within the connector-body (16), the plurality of TPA-posts (88) extending from a back-side (68) of the retainer (12) parallel to the longitudinal-axis (56) of the cable (14).
16. The cable assembly (10) in accordance with claim 15, wherein the plurality of tpa-posts (88) pass through passages (92) formed in the cable-seal (13).
17. The cable assembly (10) in accordance with claim 1, wherein the cable-clamps (24) engage the cable (14) for a length of between 75% to 85% of an outer-diameter (78) dimension of the cable (14).
18. The cable assembly (10) in accordance with claim 1, wherein the cable-clamps (24) define a contact-surface (80), wherein the contact-surface (80) is in direct contact with the cable (14) and wherein the contact-surface (80) defines a plurality of grooves (82) extending below the contact-surface (80), whereby a portion of an outer-jacket (18) of the cable (14) is disposed within the plurality of grooves (82) when the cable-clamps (24) impart radial-force (76) normal to the cable (14).
19. A cable assembly (10), comprising: a cable (14); a connector-body (16); a cable-seal (13); and a retainer (12) in direct contact with the cable (14), the connector-body (16) and the cable-seal (13), wherein the retainer (12) is configured to retain the cable-seal (13) within the connector-body (16), wherein the retainer (12) contains cable-clamps (24) mounted to an inner-surface (28) of the retainer (12), and wherein the cable-clamps (24) impart a radial-force (76) normal to the cable (14) when the retainer (12) is attached to the connector-body (16).
20. The cable assembly (10) in accordance with claim 19, wherein the retainer (12) is configured to be installed after the cable (14) is attached to the connector-body (16).
Description
BRIEF DESCRIPTION OF DRAWINGS
[0003] The present invention will now be described, by way of example with reference to the accompanying drawings, in which:
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DETAILED DESCRIPTION
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[0014] The cable assembly 10 includes the cable 14. The cable 14 is a cable 14 suitable to conduct electrical-current or transmit electrical-signals in an electrical-system of an automobile. The cable 14 may be a solid cable 14, or may be a stranded cable 14. The cable 14 includes an outer-jacket 18 formed of a dielectric-material, such a flexible polymeric-material, that is capable of electrically isolating the electrical conductor from its surroundings. In an alternative embodiment, the cable 14 is an fiber-optic-cable capable of transmitting light-signals.
[0015] The cable assembly 10 also includes the connector-body 16 attached to the cable 14. The connector-body 16 may include electrical-terminals (not shown) disposed within a terminal-end 20 of the connector-body 16 that are attached to the cable 14 and configured to interconnect with corresponding electrical-terminals (not shown) of the electrical-system. The connector-body 16 is formed of any dielectric material capable of electrically isolating portions of the electrical-terminals, and is preferably a polyamide (NYLON) material.
[0016] The cable assembly 10 also includes the cable-seal 13 disposed within the connector-body 16 and surrounding the cable 14. The cable-seal 13 is configured to inhibit entry of a contaminant into the connector-body 16 (e.g. water, dust, etc.) and is formed of a flexible polymeric-material, such as a silicone-rubber. The cable 14 is inserted through a cylindrical through-opening formed in the cable-seal 13 and forms a seal between the cable 14 and the cable-seal 13. The cable-seal 13 also forms a seal between the connector-body 16 and the cable-seal 13.
[0017] The cable assembly 10 also includes the retainer 12 in direct contact with the cable 14, the connector-body 16 and the cable-seal 13. The retainer 12 is configured to retain the cable-seal 13 within the connector-body 16 and inhibit a movement of the cable-seal 13 that may be caused by vibrations and a routing of the cable 14.
[0018] The retainer 12 is further configured to be installed onto the cable 14, and has the added technical benefit of installation onto the cable 14 after the cable 14 is attached to the connector-body 16. This technical benefit removes the requirement of inserting the cable 14 through a one-piece-retainer prior to attaching any ferrules or electrical-terminals to the cable 14. The retainer 12 is further configured to attach to the connector-body 16, as will be described in more detail below.
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[0024] Referring back to
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[0027] Referring again to
[0028] Accordingly, a cable assembly 10 is provided. The cable assembly 10 is an improvement over other cable assemblies because the cable assembly 10 includes a two-piece retainer 12 with cable-clamps 24 that is configured to be installed onto the cable 14 after the cable 14 is assembled into the connector-body 16. The cable-clamps 24 provide strain relief for the cable 14, and especially for a large-diameter cable 14 (e.g. greater than 5 mm) typically used in high-voltage applications.
[0029] While this invention has been described in terms of the preferred embodiments thereof, it is not intended to be so limited, but rather only to the extent set forth in the claims that follow. Moreover, the use of the terms first, second, upper, lower, etc. does not denote any order of importance, location, or orientation, but rather the terms first, second, etc. are used to distinguish one element from another. Furthermore, the use of the terms a, an, etc. do not denote a limitation of quantity, but rather denote the presence of at least one of the referenced items.