This application claims the benefit of the filing date under 35 U.S.C. §119(a)-(d) of Chinese Patent Application No. 201520219163.9, filed on Apr. 13, 2015.
The present invention relates to a socket connector, and more particularly, to a socket connector comprising a shield housing for an electrical connector.
In a communication system, it is necessary to use an interface such as a known RJ45 connector to realize an electrical connection of communication lines. Generally, the RJ45 connector comprises a plug and a socket for receiving the plug. Improvement in electronic transmission speed of the RJ45 connector can be accomplished by improving electromagnetic interference (EMI) protection or a contact stability between the plug and the socket.
In order to improve the EMI protection performance, it is known in the art to provide as many elastic shield sheets as possible disposed on and electrically contacting the shield housing of the RJ45 socket connector. However, the shield housing of the socket connector is formed through punching and bending by a piece of metal, and the number of the shield elastic sheets formed by a conventional punching and bending method is restricted.
An object of the invention, among others, is to provide a shield housing and a socket connector comprising the shield housing capable of shielding electrical signals transmitted at a higher speed and over a longer distance. The disclosed shield housing comprises a first vertical wall, a second vertical wall opposite to the first vertical wall, and an interface wall connected between the first and second walls and having a receiving opening for receiving a plug connector, inner edges of the interface wall being provided with a plurality of elastic sheets bent and extending inwardly.
The invention will now be described by way of example with reference to the accompanying figures, of which:
The invention is explained in greater detail below with reference to embodiments of a socket connector. This invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided so that this disclosure will be thorough and complete and still fully convey the scope of the invention to those skilled in the art.
A socket connector 100 according to the invention is shown in
The insulation housing 1 has a receiving chamber 11 as shown in
The shield housing 3, as shown primarily in
Inner edges of the interface wall 33, as shown in
As shown in
In the embodiment illustrated in
The at least two second elastic sheets 36, shown in
The two outer elastic sheets 37, as shown in
Referring to
The assembly of the socket connector 100 will now be described. The shield housing 3 is constructed to clad an exterior of the insulation housing 1, as shown in
The use of the socket connector 100 will now be described. According to an exemplary embodiment of the disclosure, the socket connector 100 mates with a plug connector 200 to realize an electrical connection of communication lines.
As shown in
In an exemplary embodiment of the disclosure, the socket connector 100 is a RJ45 socket connector, and the plug connector 200 is a RJ45 plug connector. In this case, receiving chamber 11 of the socket connector 100 and the positioning portion 203 of the plug connector 200 both have a substantial-shape. The present embodiment is not so limited, it should be understood that the inventive concept of the disclosure is also suitable for other types of connectors.
The plug connector 200 is inserted into the receiving chamber 11 through the receiving opening 34. When inserted, the plurality of connection terminals 2 electrically connect with the connection terminals 202 of the plug connector 200.
The shield housing 3 electromagnetically shields the connection terminals 2 and the connection terminals 202. The first elastic sheet 35 elastically contacts with portions of the main body 201 located on either side of the positioning portion 203; the second arm 352 of the first elastic sheet 35 is deformed due to a press applied thereto by the main body 201. Since the first arm 351 connected to the second arm 352 is abutted against the surface of the interface wall 33, it is possible to increase an elastic contact force of the first elastic sheet 35 to the plug connector 200, which improves an EMI protection performance. The second elastic sheets 36 and third elastic sheets (not shown), by virtue of being positioned on a part of the side walls of the insulation housing 1, further increase the elastic contact force to the plug connector 200.
Additionally, it is possible to firmly mount the socket connector 100 on a mounting seat (not shown) by means of an elastic force of the outer elastic sheets 37. During mounting the socket connector 100 on the mounting seat (not shown), the outer elastic sheets 37 are pressed to be compressed into the recesses 12 by the mounting seat. It is possible to increase an elastic force of the outer elastic sheets 37 to firmly retain the socket connector on the mounting seat by providing a secondary elastic sheet 372.
Advantageously, in the shield housing 3 and the socket connector 100 according to various embodiments of the disclosure described above, through providing the first elastic sheet 35 having the substantial L-shape section, it is possible to increase the contact force of the first elastic sheet 35 applied to the plug connector 200 inserted into the socket connector 100 and improve the EMI protection performance, thereby satisfying requirements for shielding electrical signals transmitted at higher speed and longer distance.
Number | Date | Country | Kind |
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2015 2 0219163 | Apr 2015 | CN | national |
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Number | Date | Country | |
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20160301166 A1 | Oct 2016 | US |