1. Field of the Invention
The present invention relates generally to a cable connector assembly, and particularly to a Micro Universal Serial Bus (Micro USB) connector assembly with an improved spacer.
2. Description of Prior Art
The cable connector assembly with an Universal Serial Bus (USB) connector has been used in electronics for years, such as cell phones, MP3, and DVD player. Nowadays, the size of cable connector assembly becomes much smaller and smaller to meet the miniaturization requirement of the electronic device, so a Micro Universal Serial Bus (Micro USB) connector assembly comes forth and is used widely.
The Micro USB connector generally comprises an insulative housing, a plurality of contacts received in the housing, a pair of latches located at the opposite sides of the housing, and a top and bottom shells shielding the housing. The insulative housing forms a base portion with a plurality of terminal channels thereon, and the contacts are inserted into the channels and retained by the housing. The disadvantage of this connector as follows: each contact of the connector has a soldering portion, and these soldering portions are arranged into upper and lower rows, and this means the conductive wires from a cable have to me soldered to the upper and lower soldering portions respectively.
Hence, it is desirable to have an improved cable connector assembly to overcome the above-mentioned disadvantages of the prior art.
Accordingly, the object of the present invention is to provide a cable connector assembly having a spacer for holding the contacts on the housing firmly.
The other object of the present invention is to provide a cable connector assembly with an improved contacts arrangement for soldering conveniently.
In order to achieve the above-mentioned object, a cable connector assembly comprises an insulative housing with a plurality of passages, a shell covering the insulative housing, a plurality of contacts received in the passages of the insulative housing, a spacer assembled to the insulative housing, and a cable electrically terminated with at least two of the contacts. The contact comprises a retaining portion and a soldering portion extending rearwards beyond the housing, the soldering portions are coplanar with each other. The spacer comprises a pressing portion and a vertical wall. The pressing portion engages on the retaining portion of the contact, and the vertical wall engages with the soldering portion of the contact.
Other objects, advantages and novel features of the invention will become more apparent from the following detailed description of the present embodiment when taken in conjunction with the accompanying drawings.
Reference will now be made to the drawing figures to describe the present invention in detail.
Referring to
Referring to
Each contact 2 is received in the passage 101 of the housing 1 and comprises a contacting portion 21 received in the mating portion 11 and a retaining portion 22 disposed transversely and equidistantly. The contacts 2 comprise a first contact 26 and a second contacts 27. The second contacts 27 further comprise an extending portion 25 extending downwardly form the retaining portion 22 and soldering portions 23 bending horizontally from the extending portions 25. The first contact 26 is used to keep the cable connector assembly 100 mating with a complementary connector (not shown) steadily, and it does not have the extending portion 25 and the soldering portion 23. These soldering portions 23 arrange in a first plane and are coplanar for soldering with the cable 6 conveniently, and the retaining portion 22 is disposed in a second plane parallel to the first plane.
The shell 3 is assembled to the insulative housing 1 in the front-to-rear direction, and comprises a top shell 31 and a bottom shell 32. The top shell 31 comprises a main portion 311, a front portion 310 located at the front end of the main portion 311, a rear portion 313 located at the rear end of the main portion 311, and a pair of side walls 312 extending downwardly from the main portion 311. The front portion 310 mates with the mating portion 11 of the housing 1, and it comprises an opening 3102 for receiving a complementary connector (not shown) in the front thereof and a pair of slot 3101 extending in the front-to-rear direction in the top surface thereof. The side wall 312 forms a gap 3121 for receiving the tuber 105 of the housing 1.
The bottom shell 32 is assembled on the top shell 31, and comprises a second main portion 321, a stop portion 322 located at the front end of the second main portion 321, a pair of second side walls 323 extending upwardly from the opposite sides of the second main portion 321 and a tight-fitting portion 324 located at the rear end of the second main portion 321. The second side wall 323 forms a plurality of retaining pieces 3231 for mating with the side wall 312 of the top shell 31. And the second side wall 323 further comprises a gap 3232 communicating with the gap 3121 of the top shell 31, and these gaps 3131, 3232 mate with the tuber 105 of the housing 1 for retaining the shell 3 on the housing 1. A receiving space (not labeled) is defined between the main portion 311 and the second main portion 321 for receiving the base portion 10 of the housing 1.
The pair of latches 4 are retained by grooves 102 of the housing 1, and each comprises a retaining arm 41, a spring arm 42 extending forwardly from the retaining arm 41, a hook portion 43 located at the end of the spring arm 42 and a bending portion 44 extending outwardly from the top end of the retaining arm 41. The hook portion 43 extends out of the top surface of the shell 3 through the slot 3101. The bending portion 44 mates with the step portion 103 of the housing 1 for holding the latch 4 on the insulative housing 1.
The spacer 5 is assembled to the insulative housing 1, and comprises a horizontal portion 51, a pressing portion 52 extending downwardly from the front end of the horizontal portion 51 and a vertical wall 53 extending downwardly from the rear end of the horizontal portion 51. The pressing portion 52 passes through the hole 104 of the housing 1 and presses on the retaining portion 22 of the contacts 2 for holding the contacts 2 in the passages 101 firmly, and it further comprises a plurality of recesses 521 at the bottom thereof for mating with the flanges 106. The vertical wall 53 covers the passages 101 to prevent the plastics material floating into the passages 101. And the bottom face of the vertical wall 53 engages with the top surface of the soldering portions 23 of the contacts 2, which supports on the extending portion 25 of the contact 2 to avoid the contacts 2 dropping out from the passages 101.
The assembly procedure of the cable connector assembly 100 as follows: first, the contacts 2 and the latches 4 are inserted into the insulative housing 1, and then the spacer 5 is assembled to the insulative housing 1. Second, the cable 6 is soldered to the soldering portion 23 of the contacts 2, at the same time, the top shell 31 and the bottom shell 32 are assembled together. Third, the shell 3 is assembled to the insulative housing 2 in the front-to-rear direction to finish the assembly procedure.
The spacer 5 prevents the contacts 2 removing from the insulative housing 1. The soldering portions 23 of the contacts 2 arrange in a line and are coplanar for soldering with the cable 6 conveniently.
It is to be understood, however, that even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and function of the invention, the disclosure is illustrative only, and changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
Number | Date | Country | Kind |
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200820040922.5 | Jun 2008 | CN | national |