This invention relates to a connector which has a shell and a shielding means located rearward of the shell.
As a connector of this type, there is a connector disclosed in Patent Document 1. Referring to FIGS. 19 and 20, the connector 900 of Patent Document 1 has a shell (front shell) 910 and a back shell 920 which is located rearward of the shell 910 to function as a shielding means. In particular, as shown in FIG. 20, a paddle card (relay board) 950 or the like is disposed in the back shell 920.
Patent Document 1: JPA 2011-124147
in accordance with intended use or usage of the connector, elements accommodated in the back shell can be different, For example, there is a demand for a change of an external shape or size of the back shell in order to mount an integrated circuit (IC) on the paddle card. Taking a cost into consideration, it is desirable to deal with the demand by means of changing the back shell only. However, there is a problem that posture of the back shell becomes unstable when the back shell is changed only.
Therefore, the present invention aims at providing a connector having a simple structure capable of stabilizing posture of a back shell.
One aspect of the present invention provides a connector which is mateable with a mating connector in a front-rear direction. The connector comprises a front shell and a back shell. The back shell overlaps with the front shell in a predetermined direction orthogonal to the front-rear direction. The front shell is provided with a first contact portion and a fixed portion. The first contact portion surrounds a periphery of the fixed portion in a plane orthogonal to the predetermined direction. The back shell is provided with an opening portion and a second contact portion. The second contact portion surrounds a periphery of the opening portion in a plane orthogonal to the predetermined direction. The second contact portion is in contact with the first contact portion in the predetermined direction so that the fixed portion is visible within the opening portion in the predetermined direction and that the back shell is positioned with respect to the front shell. The fixed portion and the second contact portion are fixable to each other using a conductive fixing agent through the opening portion.
According to the present invention, in a state where the second contact portion of the back shell is in contact with the first contact portion of the front shell, the fixed portion of the front shell and the second contact portion of the back shell can be fixed to each other using a conductive fixing agent such as solder through the opening portion of the back shell. Thus, the back shell and the front shell are fixed to each other after positioning of the back shell with respect to the front shell is performed using the back shell and the front shell. Accordingly, posture of the back shell becomes stable.
Positioning of the back shell with respect to the front shell is performed using the back shell and the front shell. Accordingly, the posture of the back shell can be stabilized without changing the structure of the holding portion or the like of the connector in accordance with the size and shape of the back shell.
An appreciation of the objectives of the present invention and a more complete understanding of its structure may be had by studying the following description of the preferred embodiment and by referring to the accompanying drawings.
While the invention is susceptible to various modifications and alternative forms, specific embodiments thereof are shown by way of example in the drawings and will herein be described in detail. It should be understood, however, that the drawings and detailed description thereto are not intended to limit the invention to the particular form disclosed, but on the contrary, the intention is to cover all modifications, equivalents and alternatives falling within the spirit and scope of the present invention as defined by the appended claims.
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The main portion 42 of the front shell 40 is provided with first contact portions 50U and 50L, fixed portions 52U and 52L and two side protruding portions 54. As shown in
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As understood from the aforementioned description, in the present embodiment, the paddle card 100 is provided with four of the second pads 120 in total. One pair of one of the second pads 120 on the upper surface 102U and one of the second pads 120 on the lower surface 102L corresponds to one of the protruding portions 44. Each of the protruding portions 44 is juxtaposed, in the lateral direction, with two of the second pads 120 forming the pair corresponding thereto. The protruding portions 44 have a size larger than a thickness (a size in the Z-direction) of the paddle card 100 in the up-down direction. The protruding portions 44 protrude both upward and downward of the paddle card 100. Each of the protruding portions 44 extends in the X-Z plane while each of the second pads 120 extends in the X-Y plane. That is, the planes in which the protruding portions 44 extend and the planes in which the second pads 120 extend intersect with each other. Each of the protruding portions 44 is fixed to two of the second pads 120 forming the pair corresponding thereto by means of solder.
In an assembly process of the connector 10, there is a case where a force is applied to the paddle card 100 by swing of the cables 200 or the like. Even in such a case, since the second pads 120 are physically connected and fixed to the protruding portions 44 of the front shell 40 by means of solder, it can be reduced to concentrate a load on connection portions between the connection portions 24 of the contacts 20 and the first pads 110.
In addition, connection between the second pads 120 and the protruding portions 44 can be performed in a process same as a connection process for connecting the connection portions 24 of the contacts 20 to the first pad 110 or a connection process for connecting the core wires 210 of the cables 200 to the third pads 130. Accordingly, it is unnecessary to perform a process purely for connecting between the second pads 120 and the protruding portions 44 specially, and manufacturing cost does not increase significantly.
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In the predetermined direction, the fixed portions 52U overlap with the opening portions 72 while the fixed portions 52L overlap with the opening portions 82. Furthermore, the lower fixed portions 52L are located inside the opening portions 82 in the orthogonal plane. That is, the fixed portions 52L protrude into the opening portions 82. By fixing the fixed portions 52U and the second contact portions 74 to each other using solder through the opening portions 72 and fixing the fixed portions 52L and the second contact portions 84 to each other using solder through the opening portions 82, the back shell 60 can be connected to the front shell 40. In particular, regarding the lower member 80 of the back shell 60 and the front shell 40, since the fixed portions 52L protrude into the opening portions 82, a distance from the fixed portions 52L to lower surfaces of the second contact portions 84 can be shortened. Therefore, according to the present embodiment, it is easy to connect the fixed portions 52L and the second contact portions 84 to each other by means of solder.
In this manner, by bringing the first contact portions 50U and 50L into contact with the second contact portions 74 and 84 and fixing the fixed portion 52U and 52L to the second contact portions 74 and 84 by means of solder through the opening portions 72 and 82, posture of the back shell 60 can be stabilized.
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The back shell 60A has two main portions 90A and 92A which are plate-like and orthogonal to the predetermined direction. In detail, the back shell 60A has two members of an upper member 70A and a lower member 80A. The main portion 90A is provided in the upper member 70A while the main portion 92A is provided in the lower member 80A. The back shell 60A has a distance between the main portion 90A and the main portion 92A, and the distance is larger in comparison with a case of the aforementioned back shell 60 of
In detail, the upper member 70A of the back shell 60A has the main portion 90A and the coupling portions 94A. The main portion 90A is located apart from the opening portions 72 and the second contact portions 74 in the predetermined direction. The coupling portions 94A couple the second contact portions 74 and the main portion 90A to each other. The lower member 80A of the back shell 60A has the main portion 92A and the coupling portions 96A. The main portion 92A is located apart from the opening portions 82 and the second contact portions 84. The coupling portions 96A couple the second contact portions 84 and the main portion 92A to each other.
In particular, the coupling portions 94A and 96A according to the present embodiment have a cylindrical shape with a cross section of a trapezoidal shape in a plane including the predetermined direction (e.g. a plane such as the X-Y plane or the Y-Z plane). To be more specific, the coupling portions 94A and 96A of the present embodiment have the cylindrical shape with side surfaces of the trapezoidal shape. Even if a size of the back shell 60A is changed in the predetermined direction, relative positional relationship of the first contact portions 50U and 50L with respect to the second contact portions 74 and 84 can be adjusted in a state same as that in the case of the back shell 60 of
Although the specific explanation about the present invention is made above, the present invention is not limited thereto but susceptible to various modifications.
Although the solder is used to connect the front shell 40 and the back shell 60 or 60A to each other in the aforementioned embodiments, the present invention is not limited thereto but another conductive fixing agent may be used in place of the solder.
Although the first contact portions 50U and the fixed portions 52U are formed as the parts of the same plate-like portion in the aforementioned embodiments, the fixed portions 52U may protrude upward of the first contact portions 50U. Moreover, although the fixed portions 52L protrude downward of the first contact portions 50L in the aforementioned embodiments, the first contact portions 50L and the fixed portions 52L may be formed as parts of one and the same plate-like portion.
Although the second pads 120 are formed on the upper surface 102U and the lower surface 102L of the paddle card 100 in the aforementioned embodiments, they may be formed on side surfaces (edges orthogonal to the lateral direction) of the paddle card 100, for example.
The present application is based on a Japanese patent application of JP2014-115217 filed before the Japan Patent Office on Jun. 3, 2014, the content of which is incorporated herein by reference.
While there has been described what is believed to be the preferred embodiment of the invention, those skilled in the art will recognize that other and further modifications may be made thereto without departing from the spirit of the is invention, and it is intended to claim all such embodiments that fall within the true scope of the invention.
10, 10A Connector
15 Connector Body
20 Contact
22 Contact Point Portion
24 Connection Portion
30 Holding Portion
40 Front Shell (Shell)
42 Main Portion
44 Protruding Portion
50U, 50L First Contact Portion
52U, 52L Fixed Portion
54 Side Protruding Portion
60, 60A Back Shell
70, 70A Upper Member
72 Opening Portion
74 Second Contact Portion
76 Side Opening Portion
78 Side Protruding Portion
80, 80A Lower Member
82 Opening Portion
84 Second Contact Portion
86 Side Opening Portion
90A, 92A Main Portion
94A, 96A Coupling Portion
100 Paddle Card (Relay Board)
102U Upper Surface (Main Surface)
102L Lower Surface (Main Surface)
110 First Pad
120 Second Pad
130 Third Pad
200 Cable
210 Core Wire
Number | Date | Country | Kind |
---|---|---|---|
2014-115217 | Jun 2014 | JP | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/JP2015/064087 | 5/15/2015 | WO | 00 |