1. Field of the Invention
The present invention relates to a power connector and particularly to a power connector having an improved shield.
2. Description of Related Art
Power connectors are widely used in the field of electronics equipments to transmit direct current. Usually, a power connecter needs to be shielded by a shield for protecting itself against electromagnetic interference. The shield may be an integral type or a detached two-piece type due to a various configuration of the power connecter. A power connecter shielded by an integral shield is complicated in an assembly process, and this integral shield can not shield the power connecter reliably after itself being disassembled time after time, which will reduce a crippling resistance of the integral shield especially in bent portions and will even rupture the integral shield, so the detached two-piece shield is more and more popular. The detached two-piece shield comprises a front shield and a rear shield, and usually the front shield is retained only in right and left sides thereof and not retained in top and bottom sides, as a result, the front shield will occur an outwards overturn easily when the power connector is impacted by an outside force during a transportation/inserting-drawing/use process. U.S. Pat. No. 5,281,169 discloses an improved detached two-piece shield which can prevent a front shield from overturning outwards, However, accessional parts formed on each alone piece for engaging with each other are quite too much which increase difficulties in manufacture and complicate the figuration of the shield.
Hence, an improved power connector is required to overcome the disadvantages of the prior art.
An object of the present invention is to provide a power connector shielded by a two-piece shield which is in a simple configuration and can avoid outwards overturning to get a nicer electrical signal transmission.
Accordingly, to achieve above-mentioned objects, a power connector in accordance with present invention includes a housing, a plurality of contacts received in the housing and a shield. The housing approximate has a front face, a top face and two side faces and defines a tube-like receiving chamber through the front face thereof for an insertion of a complementary connector. The shield comprises a front shield and a U-shape rear shield. The front shield is formed with a rectangle face, a fringe and a pair of wings bent rearwardly respectively from a top edge and side edges of the rectangle face. When the front shield and the rear shield are assembled on the housing, the rectangle face of the front shield covers the front face of the housing, the fringe clings to the top face of the housing, the wings cling to the side faces of the housing. And the U-shape rear shield covers the top face and the side face of the housing, simultaneity, the rear shield further covers and fastens the fringe and the wings of the front shield to keep the front shield on the housing and prevent the front shield from overturning outwards. The configuration of the shield is simple, and the front shield is protected against overturn outwards that make the power connector transmits electrical signal stably.
Other objects, advantages and novel features of the present invention will become more apparent from the following detailed description of the present embodiment when taken in conjunction exploded with the accompanying drawings.
Referring to
Further referring to
The housing 10 still defines a rectangular space 121, which is through the rear face 12 and extends upwards through the top face 13 to form an opening 130. Furthermore, the rectangular space 121 is above the receiving chamber 16 and communicates with the receiving chamber 16 downwards. The opening 130 can act as radiator for dispelling the heat during the voltage transmitting.
Referring to
Referring to
Referring to
A pair of second slots 126, 127 are defined on opposed inner sidewalls (not labeled) on the lower portion of the rectangular space 121. The second slots 126, 127 are disposed in a same horizontal face and extend through the rear face 12 of the housing 10. A strip portion on the inner bottom wall (not labeled) of the rectangular space 121 adjacent to the second slot 126 depresses downwards and then extends outwards through the other side face 15, in that way, a second L-shape groove 128 is defined in the housing opposed to the first L-shape groove 125.
In assembly, the first and the second spring contacts 20, 30 are inserted into the housing 10 from the rear face 12 to be received in the housing 10. The body 21, 31 are respectively retained in the first slots 123, 124 and the second 126, 127, the L-shape linking portion 24, 32 are received in the first L-shape groove 125 and second L-shape groove 128 with the soldering tab 25, 33 extending beyond the housing 10 for soldering to a print circuit board (not shown). In such arrangement, the contacting portion 23 is set in the rectangular space 121 and abuts against the body 31 of the second spring contact 30.
Referring to
Referring to
Referring to
When the front shield 50 mounts on the housing 10, the rectangle face 56 covers the front face 11, the fringes 53 respectively cling to the step portions 131, 140 respectively formed on the top face 13 and the bottom face 14, and the wings 54 respectively cling to the side faces 15. The slots 55 of the wings engage with the protruding ridges 152 of the side face 15 to make the front shield 50 be hold onto the housing 10. The hole 51 has a same diameter with and coaxial with the receiving chamber 16 for a free insertion of complementary connector.
The rear shield 60 is in a U-shape comprising a top wall 61 and two sidewalls 62 respectively bent downwards from lateral ends of the top wall 61. Each sidewall 62 is formed with two positioning pieces 63, 63′ and a latch piece 64 disposed between the positioning pieces 63, 63′. The positioning pieces 63, 63′ extend vertically from bottom of the two side faces 62 for positioning the rear shield 60 to the print circuit board. Each sidewall 62 has an aperture 65 and a slice 66 protruding inwards from a position near the step face 122 and against the housing 10 (Referring to
When the rear shield 60 mounts on the housing 10, the top wall 61 and side walls 62 respectively covers the top face 13 and the side faces 15 of the housing 10, the apertures 65 of the sidewall 62 engage with corresponding protuberances 150 of the housing 10, and the latch pieces 64 are locked in the corresponding notches 141, 142 of the housing 10. By such way, the rear shield 60 is hold onto the housing 10 firmly. Simultaneity, the rear shield 60 further covers and fastens the fringes 53 on the top edge and the wings 54 of the front shield 50 which respectively cling to the top face 12 and side faces 15 of the housing 10.
When the power connector is impacted by an outside force during a transportation or inserting-drawing or use process, the front shield 50 will not occur an outwards overturn for that one fringe 53 and two opposed wings 54 of the front shield 50 is fastened to the housing 10 by the rear shield 60, that means three sides of the front shield 50 are retained firmly, so the power connector 1 can transmit electrical signal stably. Moreover, the configurations of the front shield 50 and the rear shield 60 are simple.
The disclosure is illustrative only, changes maybe made in detail, especially in matter of shape, size, and arrangement of parts within the principles of the invention. For example, the front shield 50 can disposed only one fringe bent from a top of the rectangle face 56.
Number | Date | Country | Kind |
---|---|---|---|
2004200803168 | Oct 2004 | CN | national |