1. Field of the Invention
The present invention relates generally to an electrical connector assembly, and particularly to such an electrical connector assembly with a plurality of springs.
2. Description of Related Arts
A so-called floating connector is known. The floating connector is used in a connector apparatus which comprises a plug (plug connector) and a receptacle (receptacle connector). In such a floating connector, either a plug connector or a receptacle connector is movably provided on a base in a floating state so as to be able to absorb misalignment between the floating connector and a mating connector to be connected when connecting these two connectors. As conventional floating connector, its disclosure in the following publication is known: U.S. Pat. No. 6,155,858. As disclosed in the above floating connector, rubber members or arms made of a resin material are used for producing a floating state. However, such a floating connector using the rubber members or arms has a problem that a good floating function cannot be maintained and a restoring function to a normal position is becoming decreased since the materials of the rubber members and the arms are likely to be deteriorated due to a long-term use. Further, there is another problem that it is difficult to precisely control a stroke of the floating action of the connector.
A floating connector with a pair of springs shown in U.S. Pat. No. 7,090,521 has solved problems mentioned above. The floating connector includes a connector having a base side, a flange-like connecting portion provided on the base side of the connector, a base for supporting the connecting portion, and a pair of coil springs provided between the connecting portion and the base for supporting the connector in a floating state. The coil springs are supported by coil spring receiving portions provided in the connecting portion and coil spring supporting bosses provided on the base so that the coil springs can extend and contract in an inserting direction of a mating connector to be connected as well as to bend laterally in swing directions of the connector. However, sometimes, the coil springs endure different compressive stresses when different mating connectors are inserted, and the inserting force is always changed in direction and intensity while the spring in prior arts keeps a fixed state, thus, resulting in a destroying effect on the electrical connector when the mating connector is inserted because of an excessively large or excessively small friction force. So, an improved electrical connector assembly is desired that a user can adjust the coefficient of elasticity of the coil springs to fit different inserting force.
Hence, an improved electrical connector assembly is desired.
Accordingly, an object of the present invention is to provide an electrical connector assembly to fit different inserting force.
To achieve the above object, an electrical connector assembly includes a top shell, a bottom shell forming a bottom plate defining a receiving room with the top shell, a connector module, a printed circuit board (PCB) electrically connecting with the connector module, a pair of mating screws and a pair of spring members. The top shell forms a cutout exposed along a vertical direction. The connector module is located vertically in the receiving room and extends through the cutout. The PCB includes a pair of limiting holes and the mating screws have threads and screw caps. The threads pass through the bottom plate and the corresponding limiting holes to lock with the top shell. The pair of spring members is supported by the mating screws, and compressed between a bottom surface of the PCB and a top surface of the screw caps.
Other objects, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
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In fact, the fixing board 31 is not so much needed, it only confines the first and the second connector modules 51, 61, the first and the second PCBs 52, 62 and the cable wires 71 in a special receiving room for more stability, we can also put the fixing bolts 312 receiving the fixing screws 42 and the mating bolts 313 receiving the mating screws 43 on the top shell 11, so that the first and the second connector modules 51, 61, the first and the second PCBs 52, 62 and the cable wires 71 are received in a receiving room formed by the top shell 11, the bottom shell 12 and the bottom plate 32. And another, we can also consider the bottom plate 32 as a part of the bottom shell 12, i.e., The bottom shell 12 with the bottom plate 32, shaped in a bowl, forms a receiving room with the top shell 11.
The base 73 is not so much needed that we can consider the base 73 as a part of the PCB 52, for the base 73 with the depressed portion 732 only provides a stress releasing force on the PCB 52 when the first complementary connector is inserted.
The springs 430, located between the first PCB 52 and the screw caps of the mating screws 43, by which a user can adjust the coefficient of elasticity of the springs 430 to fit different inserting force to prevent a destroying effect on the electrical connector when the complementary electrical connector is inserted.
While a preferred embodiment in accordance with the present invention has been shown and described, equivalent modifications and changes known to persons skilled in the art according to the spirit of the present invention are considered within the scope of the present invention as described in the appended claims.
| Number | Name | Date | Kind |
|---|---|---|---|
| 6155858 | Ozawa et al. | Dec 2000 | A |
| 6322382 | Viallet | Nov 2001 | B1 |
| 6527572 | Jou | Mar 2003 | B2 |
| 6592387 | Komenda et al. | Jul 2003 | B2 |
| 7090521 | Nishio et al. | Aug 2006 | B2 |
| 7121857 | Lewis | Oct 2006 | B1 |
| 7128602 | Cromwell et al. | Oct 2006 | B1 |
| 7201594 | van der Mee et al. | Apr 2007 | B2 |
| Number | Date | Country | |
|---|---|---|---|
| 20080057764 A1 | Mar 2008 | US |