This application claims the benefit of the filing date under 35 U.S.C. ยง119(a)-(d) of Chinese Patent Application No. 201620147047.5, filed on Feb. 26, 2016.
The present invention relates to a connector, and more particularly, to a C form-factor pluggable connector.
C form-factor pluggable (CFP) connectors are available in CFP, CFP2, and CFP 4 variants. Generally, a CFP2 connector or a CFP4 connector comprises a housing, also referred to as a cage, and partition plates. The partition plates are arranged between a top wall and a bottom wall of the housing to divide the inner space of the housing into a plurality of receiving chambers. Each receiving chamber is adapted to accommodate a terminal and comprises an insertion port through which a contacting terminal of a mating connector is inserted into the receiving chamber to come into contact with the terminal in the receiving chamber.
The insertion port of the CFP2 or CFP4 connector is required to be installed in an installing opening of an equipment housing to fix the CFP2 connector or CFP4 connector to the equipment housing. Generally, elastic pieces adapted to resist electromagnetic interference are provided between the outer circumference wall of the insertion port and an inner wall of the installing opening, so that the CFP2 connector or CFP4 connector has a resistance to electromagnetic interference and forms a more reliable electrical connection.
According to industry regulations, the width of the insertion port of each housing chamber of a CFP2 connector or CFP4 connector case (or cage) is 42.2 mm, which is nearly three times the width of the insertion port of an existing CFP connector or SFP connector. Since the insertion port of the case of the CFP2 connector or CFP4 connector has a larger width, when the insertion port of the case is mounted in the mounting opening of the apparatus housing, the outer peripheral wall of the insertion port of the case is subjected to deformation towards the inside of the connector under a compressing force, thus affecting the insertion of the plug of the mating connector.
In order to reduce the deformation of the outer peripheral wall of the insertion port of the case, a plate with larger thickness is used to manufacture the case. However, since the distance between the bottom wall of the case and the circuit board is constant, if the wall thickness of the case is increased, the length of the tongue-like connecting piece of the partition plate exposed from the bottom wall of the case becomes small, and the partition plate cannot be reliably connected to the bottom wall of the case.
An object of the invention, among others, is to provide a connector having a partition plate which may be reliably connected to a bottom case even when the thickness of the bottom case is increased. The disclosed connector comprises a case having a top case and a bottom case and a partition plate disposed between the top case and the bottom case separating an inside space of the case into a plurality of receiving chambers. The bottom case has a first slot. The partition plate has a first side edge facing the bottom case and a first elastic hook formed on the first side edge. The first elastic hook is inserted into and elastically engages the first slot to connect the partition plate to the bottom case.
The invention will now be described by way of example with reference to the accompanying Figures, of which:
Embodiments of the present invention will be described hereinafter in detail with reference to the attached drawings, wherein like reference numerals refer to the like elements. The present invention may, however, be embodied in many different forms and should not be construed as being limited to the embodiments set forth herein; rather, these embodiments are provided so that the disclosure will be thorough and complete, and will fully convey the concept of the invention to those skilled in the art.
A connector 100 according to the invention is shown generally in
The case 100, 200 has a front end adapted to be mounted in a mounting opening of an equipment housing. The case 100, 200 comprises a top case 100 and a bottom case 200 assembled with each other. The partition plate 300 is disposed between the top case 100 and the bottom case 200 to separate an inside space of the case 100, 200 into the plurality of receiving chambers 1. In the embodiment shown in
The partition plate 300, as shown in
An elastic cantilever 211 bent toward the inside of the connector is formed on the edge of the first slot 210. As clearly shown in
Also shown in
As shown in
As shown in
The partition plate 300, as shown in
The elastic pieces 400 are resistant to electromagnetic interference and are disposed around an outer peripheral wall of the front end of the case 100, 200, as shown in
Advantageously, in the connector according to the present invention, the thicknesses of the case 100, 200 described above prevent the bottom case 200 from being deformed toward the inside of the connector by the compressing force of the equipment housing. Additionally, because the first elastic hook 311 engages the first slot 210, the partition plate 300 may be reliably connected to the bottom case 200 even when the thickness of the bottom case 200 is increased.
Number | Date | Country | Kind |
---|---|---|---|
201620147047.5 | Feb 2016 | CN | national |