The technical field relates to a wire-end connector, and more particularly relates to an electrical connector and a cable grounding structure thereof.
In the electrical connector currently applied to the wire end, a cable with a covering layer made of aluminum foil or copper foil can be used to achieve the shielding effect and avoid signal interference. However, it requires stable contact with the grounding end of the electrical connector and effective conductive grounding.
In the related art, a grounding plate is mainly added to contact with the covering layer of each cable, and thus it is difficult to ensure that each cable has a stable contact with the covering layer. Furthermore, the existing designs of the cables do not have a precise clamping or positioning effect, so that the grounding plate may push against the cables and cause a skewness easily when the grounding plate contacts the covering layer of each cable, thus affecting the precise soldering with the electrical connector, and even resulting in yield reduction.
In view of the aforementioned problems, the discloser proposed this disclosure based on his expert knowledge and elaborated researches to overcome the problems of the related art.
The primary objective of this disclosure is to provide an electrical connector and a cable grounding structure of the electrical connector. Through a design with clamping and elastic abutting effects, the electrical connector and the cable may achieve a good grounding contact on the covering layer of the cable which is made of aluminum foil or copper foil, and this design may also prevent the cable from being skewed and other factors that affect the soldering yield.
To achieve the aforementioned objective, this disclosure discloses an electrical connector that includes a connection body, a cable rack, a plurality of cables, and at least one grounding structure; the connection body has a terminal block, and a plurality of terminals installed on the terminal block and each terminal is extended from the front edge of the terminal block, and each terminal has a soldering portion disposed on the rear edge of the terminal block; the cable rack is installed to the rear edge of the terminal block; each cable is disposed on the cable rack and has a cable core segment exposed toward the connection body, and a covering layer covers the cable core segment; and the grounding structure bridges the connection body with the cables and has a bridging portion, at least one clamping portion disposed on the bridging portion, at least one docking portion extended from the bridging portion toward the connection body, and an elastic portion disposed opposite to the clamping portion. The clamping portion of the grounding structure clamps the covering layer of each cable, and the elastic portion is pressed on the covering layer in a direction opposite to the clamping portion, and the docking portion of the grounding structure and the cable core segment of each cable are electrically connected to the soldering portion of each terminal.
To achieve the aforementioned objective, this disclosure also discloses a cable grounding structure of the electrical connector, and the electrical connector includes a connection body and a plurality of cables electrically connected to the connection body, and the cable includes a covering layer, and the grounding structure is provided to be bridged between the connection body and the cable, and the grounding structure includes: a bridging portion; at least one clamping portion disposed on the bridging portion and provided to be clamped on the covering layer of the cable; at least one docking portion extended from the bridging portion toward the connection body, and electrically connected to the connection body; and an elastic portion disposed opposite to the clamping portion, and attached and pressed against the covering layer of the cable in a direction opposite to the clamping portion.
The technical contents of this disclosure will become apparent with the detailed description of embodiments accompanied with the illustration of related drawings as follows. It is intended that the embodiments and drawings disclosed herein are to be considered illustrative rather than restrictive.
With reference to
In
The cable rack 2 is installed at the rear edge of the terminal block 10 and provided for each cable 3 to span across, such that each cable is aligned precisely with the soldering portion 12 of each terminal 11 for the purpose of soldering. In an embodiment of this disclosure as shown in
Further, the grounding structure 4 may be made by stamping and bending a metal sheet. The grounding structure 4 may be bridged between the connection body 1 and each cable 3, and may also be mounted on the rack body 20 of the cable rack 2. In
In
In
By the aforementioned structure, the electrical connector and cable grounding structure of this disclosure is obtained.
As shown in
In summation of the description above, this disclosure achieves the expected effects, overcomes the drawbacks of the related art.
While this disclosure has been described by means of specific embodiments, numerous modifications and variations could be made thereto by those skilled in the art without departing from the scope and spirit of this disclosure set forth in the claims.
Number | Date | Country | Kind |
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202221520284.3 | Jun 2022 | CN | national |
Number | Name | Date | Kind |
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7192301 | Kuroda | Mar 2007 | B2 |
7435132 | Fong | Oct 2008 | B1 |
8900007 | Nonen | Dec 2014 | B2 |
20220352662 | Zhang | Nov 2022 | A1 |
Number | Date | Country |
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113036539 | Jun 2021 | CN |
Entry |
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CN 113036539 A with machine translation. |
Number | Date | Country | |
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20230411872 A1 | Dec 2023 | US |