SEALED CABLE CONNECTOR, MANUFACTURING METHOD AND USE THEREOF
20220029334 ยท 2022-01-27
Inventors
Cpc classification
H01R13/5205
ELECTRICITY
H01R13/405
ELECTRICITY
H01R4/183
ELECTRICITY
H01R13/5216
ELECTRICITY
H01R13/719
ELECTRICITY
H01R13/516
ELECTRICITY
H01R13/521
ELECTRICITY
International classification
H01R13/405
ELECTRICITY
H01R13/516
ELECTRICITY
H01R13/52
ELECTRICITY
Abstract
The invention relates to a sealed cable connector, including electric cables; an electrically insulating housing; electrical terminals, each of the electrical terminals having an end portion that is electrically connected to an end portion of a corresponding electric cable; the housing having a frame forming a cavity that extends in a z-direction, wherein connected end portions of the electric cables and the electrical terminals are provided within in the cavity of the frame; wherein the electrical terminals have a planar shape in the cavity and are oriented in the x-direction and the z-direction, in that the housing is molded onto the connected electric cables and the electrical terminals, and in that an electrically isolating material is injected into the cavity such that it seals the connected end portions of the electric cables and the electrical terminals. A manufacturing method and use of the sealed cable connector is also provided.
Claims
1. A sealed cable connector (10), comprising: a plurality of electric cables (18, 20); an electrically insulating housing (12) having a connection portion that is pluggable and unpluggable in a x-direction to and from a mating connector; a plurality of electrical terminals (14, 16) that are mechanically connecting to the housing (12), each of the electrical terminals (14, 16) having an end portion that is electrically connected to an end portion of a corresponding electric cable (18, 20); the housing (12) having a frame (22) forming a cavity (22a) that extends in a z-direction and is delimited by the housing (12) in the x-direction and a y-direction, whereas the y-direction extends perpendicular to the x-direction and whereas the z-direction extends perpendicular the x-direction and the y-direction, wherein connected end portions of the electric cables (18, 20) and the electrical terminals (14, 16) are provided within in the cavity (22a) of the frame (22); characterized in that the electrical terminals (14, 16) have a planar shape in the cavity (22a) and are oriented in the x-direction and the z-direction, in that the housing (12) is molded onto the connected electric cables (18, 20) and the electrical terminals (14, 16), and in that an electrically isolating material is injected into the cavity (22a) such that it seals the connected end portions of the electric cables (18, 20) and the electrical terminals (14, 16).
2. The sealed cable connector according to claim 1, characterized in that the electric cables (18, 20) are electrically connected to the electrical terminals (14, 16) by welding.
3. The sealed cable connector according to claim 1, characterized in that the electrically isolating material injected into the cavity (22a) is a resin.
4. The sealed cable connector according to claim 1, characterized in that an upper cover (26) and a lower cover are clipped onto the frame (22) to close the cavity (22a), the upper cover (26) having an injection hole for injecting the electrically isolating material into the cavity (22a) and an air outlet hole.
5. The sealed cable connector according to claim 1, characterized in that the frame (22) has a first sidewall and a second sidewall which are opposite to each other and extend in the y-direction and the z-direction, a third sidewall and the fourth sidewall which are opposite to each other and extend in the x-direction and the z-direction, and the electrical terminals (14, 16) are oriented parallel to the third sidewall or the fourth sidewall.
6. The sealed cable connector according to claim 1, characterized in that at least one anti-interference filter (24) is housed in the cavity (22a) and is electrically connected to a pair of the electrical terminals (14, 16) by crimping.
7. A manufacturing method for a sealed cable connector, comprising the steps of: a) connecting end portions of a plurality of electric cables (18, 20) to end portions of a pluraliry of corresponding electrical terminals (14, 16); b) molding an electrically insulating housing (12) onto the connected electric cables (18, 20) and the electrical terminals (14, 16), the electrically insulating housing (12) having a connection portion that is pluggable and unpluggable in a x-direction to and from a mating connector, and having a frame (22) with a cavity (22a) extending in a z-direction to house the connected end portions of the electric cables (18, 20) and the electrical terminals (14, 16), the cavity (22a) being delimited by the housing (12) in the x-direction and a y-direction, whereas the y-direction extends perpendicular to the x-direction and whereas the z-direction extends perpendicular the x-direction and the y-direction, and the electrical terminals (14, 16) have a planar shape in the cavity (22a) and are oriented in the x-direction and the z-direction; and c) injecting an electrically isolating material into the cavity (22a) so to seal the connected end portions of the electric cables (18, 20) and the electrical terminals (14, 16).
8. The manufacturing method according to claim 7, further comprising a step prior to step (c) of mounting an upper cover (26) and a lower cover to two opposite sides of the cavity (22a), respectively.
9. Use of the sealed cable connector according to claim 1 for electrically connecting a device in a vehicle.
10. Use of the sealed cable connector according to claim 9, characterized in that, the device is a cooling fan module.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020] A preferred embodiment of the invention will now be described, by way of example only, with reference to figures of the accompanying drawings. In the figures, identical structures, elements or parts that appear in more than one figure are generally labeled with a same reference numeral in all the figures in which they appear. Dimensions of components and features shown in the figures are generally chosen for convenience and clarity of presentation and are not necessarily shown to scale. The figures are listed below.
[0021]
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DETAILED DESCRIPTION OF THE EMBODIMENTS
[0029] The subject matter will be described in conjunction with the accompanying drawings and the preferred embodiments. The described embodiments are only a few and not all of the embodiments of the present disclosure. All other embodiments obtained by those ordinarily skilled in the art based on the embodiments of the present disclosure without any creative efforts fall within the protection scope of the present disclosure. It is to be understood that, the drawings are provided for reference only and are not intended to be limiting of the invention. The dimensions shown in the drawings are only for convenience of illustration and are not intended to be limiting.
[0030] Referring to
[0031] The sealed cable connector 10 comprises a plurality of electric cables 18, 20 and a plurality of electrical terminals 14, 16. Each electrical terminal 14, 16 has an end portion electrically connected to an end portion of a corresponding electric cable 18, 20, preferably by welding.
[0032] The cartesian coordinate system xyz is defined in the
[0033] The sealed cable connector 10 further includes an electrically insulating housing 12 having a connection portion that is pluggable and unpluggable in the x-direction to and from a mating connector (not shown), and a frame 22 defining a cavity 22a that extends in the z-direction. The connected end portions of the electric cables 18, 20 and the electrical terminals 14, 16 are housed in the cavity 22a.
[0034] The electrically insulating housing 12 is molded onto the connected electric cables 18, 20 and the electrical terminals 14, 16, so as to form an integral structure.
[0035] An electrically isolating material is injected into the cavity 22a. The electrically isolating material may be a synthetic resin, which is solidified in the cavity 22a such that it seals the end portion of the electric cables (18, 20) to the end portion of the electrical terminals (14, 16) from the environment of the sealed cable connector 10.
[0036] The electrical terminals 14, 16 have a planar shape in the cavity 22a and are oriented in the xz-direction, so that the arrangement of the electrical terminals along the y-direction can be compacted, and therefore a size of the cavity 22a is minimized, the amount of electrically isolating material is minimized, and the sealed cable connector 10 has an overall size not larger than known cable connectors. In addition, the xz-orientation allows for arranging the electrical terminals 14, 16 in a stacking direction without jeopardizing the minimal insulation clearance between neighboring electrical terminals 14, 16, and helps to avoid air bubbles during the injection molding process of the electrically isolating material into the cavity 22a.
[0037] Preferably, the frame 22 has a first sidewall (not labeled) and a second sidewall (not labeled) which are opposite to each other and extend in a yz-direction, a third sidewall (not labeled) and the fourth sidewall (not labeled) which are opposite to each other and extend in the xz-direction, and the electrical terminals 14, 16 are oriented parallel to the third sidewall or the fourth sidewall.
[0038] Referring to
[0039] Referring to
[0040] Preferably, the upper cover 26 has an injection hole (not shown) suitable for injecting the electrically isolating material into the cavity 22a, and an air outlet hole, to prevent air bubbles from being trapped in the electrically isolating material.
[0041] The frame 22 has a plurality of protruding formations 28 projecting outwards from the frame 22, each of which is slidingly mounted to a corresponding groove of a support 30.
[0042] The present invention further provides a manufacturing method of the sealed cable connector, comprising the steps of:
[0043] a) connecting, perferably welding the end portions of a plurality of electric cables 18, 20 to the end portions of corresponding electrical terminals 14, 16;
[0044] b) molding an electrically insulating housing 12 onto the connected electric cables 18, 20 and the electrical terminals 14, 16, the electrically insulating housing 12 being pluggable and unpluggable in the x-direction to and from a mating connector and having a frame 22 with a cavity 22a extending in the z-direction to house the connected end portions of the electric cables 18, 20 and the electrical terminals 14, 16, the electrical terminals 14, 16 having a planar shape in the cavity 22a and are oriented in a xz-direction; and
[0045] c) injecting an electrically isolating material into the cavity 22a so to seal the connected end portions of the electric cables 18, 20 and the electrical terminals 14, 16.
[0046] Preferably, the manufacturing method further includes a step, prior to step (c), of mounting an upper cover 26 and a lower cover respectively to two opposite sides of the frame 22 to close the cavity 22a.
[0047] Preferably, the step c) is carried out by injecting the electrically isolating material through an injection hole formed in the top cover 26.
[0048] The present invention further provides a use of the sealed cable connector descrbied in the above embodiments, which is for electrically connecting a device in a vehicle. The device may be a cooling fan module, in particular a motor for driving the cooling fan moudule.
[0049] Although certain inventive embodiments of the present disclosure have been specifically described, the present disclosure is not to be construed as being limited thereto. Various changes or modifications may be made to the present disclosure without departing from the scope and spirit of the present disclosure.