This application claims the priority benefit of China application serial no. 202210371940.6, filed on Apr. 11, 2022. The entirety of the above-mentioned patent application is hereby incorporated by reference herein and made a part of this specification.
The present disclosure relates to an electrical connector.
As information technology continues to advance, additional functions may be expanded through external electronic devices with various functions to improve the performance of a computer or digital electronic products. Electrical connectors are usually provided on computers or electronic products to form connection with external electronic devices.
As a standard input/output connecting port, the Universal Serial Bus (USB) connecting port has been widely used in many electronic products to realize the mutual transmission of signals. Products with different product environments have different performance requirements for electrical connectors. For example, they might need to be waterproof and dustproof. In addition, as it is the trend to miniaturize electrical connectors, their structural strength and stability are also given high quality standards.
The disclosure provides an electrical connector that forms a sealing structure for the electrical connector with a flange of the housing and waterproof sealant.
The electrical connector according to the disclosure includes an insulator, a plurality of terminals, a first housing, a waterproof sealant, and a second housing. The terminals are disposed in the insulator. The first housing surrounds the insulator and the terminals. The first housing has a connecting port and a flange. The connecting port is configured to connect to another electrical connector, and the flange is disposed along the connecting port. The waterproof sealant is disposed onto the first housing along the connecting port and abuts the flange. The second housing is disposed on the first housing, and the waterproof sealant is kept at a distance from the second housing.
In an embodiment of the disclosure, the first housing is an integrated metal draw-out housing, and the flange extends outward from the annular structure of the first housing by facing away from the connecting port.
In an embodiment of the disclosure, the waterproof sealant is a liquid silicone rubber injection molding (LIM).
In an embodiment of the disclosure, the second housing covers part of the first housing and part of the insulator.
In an embodiment of the disclosure, the second housing is a stamped and bent metal housing welded to the first housing.
In an embodiment of the disclosure, the waterproof sealant has a convex portion protruding from the flange and away from the connecting port.
In an embodiment of the disclosure, the connecting port is configured to connect to another electrical connector along a docking axis, and the flange blocks the waterproof sealant in the docking axis.
In an embodiment of the disclosure, the insulator includes a base and a tongue, the tongue extends from the base, forms a stepped structure, and penetrates the first housing, and the base has another stepped structure facing away from the tongue.
In an embodiment of the disclosure, part of the second housing covers the first housing, and another part of the second housing covers the insulator and is suitable for the other stepped structure.
Based on the above, the first housing of the electrical connector is formed with a flange at the connecting port during manufacture, and the waterproof sealant is disposed along the flange and is kept at a distance from the second housing. In this way, the flange is adapted as a structure for carrying and blocking the waterproof sealant, which not only simplifies the manufacturing process but also further strengthens the bonding and structural strength between the waterproof sealant and the first housing.
Here, the waterproof sealant 130 is a liquid silicone rubber injection molding (LIM). After the first housing 110 is fabricated, the waterproof sealant 130 may be formed on the outer wall surface of the first housing 110 with a liquid silicone molding process, and then the rest of the components may be assembled in sequence. More specifically, the first housing 110 of this embodiment is an integral metal draw-out housing, and the flange 111 extends outwardly from the annular structure 113 of the first housing 110 by facing away from the connecting port 112. In other words, the flange 111 is formed along a circumference of the front end portion of the first housing 110. In this way, when the waterproof sealant 130 is fabricated on the first housing 110, a closed space may be formed as the mold is matched with the flange 111, which facilitates the injection of the liquid silicone into the closed space. Here, because the flange 111 extends outward from the connecting port 112, the injected liquid silicone is prevented effectively from overflowing into the first housing 110 through the connecting port 112 during the molding process of the waterproof sealant 130.
Furthermore, as shown in
As shown in
Again in
Again, in
In addition, there is a distance d1 between the waterproof sealant 130 and the second housing 120 along the docking axis AX in this embodiment. In other words, the second housing 120 stacked on the first housing 110 and the waterproof sealant 130 disposed onto the first housing 110 are not in contact with each other. This is to avoid interference with the waterproof sealant 130 when the second housing 120 is assembled to the first housing 110, which is unfavorable for the bonding processes such as welding of the first housing 110 and the second housing 120. In other words, during the preliminary design of the electrical connector 100, the distance d1 needs to be reserved on the first housing 110 for the predetermined position of the waterproof sealant 130 and the second housing 120 to avoid the structural instability caused by the structural overlap between the second housing 120 and the waterproof sealant 130.
Also, as shown in
To sum up, in the embodiment of the disclosure, the first housing of the electrical connector is formed with a flange at the connecting port during manufacture, and the waterproof sealant is disposed along the flange, so that the flange is adapted as a structure to carry and block the waterproof sealant.
Furthermore, the electrical connector is further combined with a second housing and stacked on the first housing, and the second housing partially covers the first housing and the insulator, allowing the electrical connector to be inserted through the pins of the second housing and electrically connected to the circuit board, in which a distance is kept between the second housing and the waterproof sealant to avoid the instability of the combined structure caused by the overlap between the two structures.
Accordingly, in addition to simplifying the manufacturing process, the electrical connector of the disclosure is able to further strengthen the bonding and structural strength between the waterproof sealant and the first housing.
Number | Date | Country | Kind |
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202210371940.6 | Apr 2022 | CN | national |