Applicants claim priority under 35 U.S.C. ยง119 of Japanese Application No. 2007-175518 filed Jul. 3, 2007.
This invention relates to an electrical connector mountable to a circuit board of an electrical instrument or the like. In particular, the present invention relates to an electrical connector which is mounted on a circuit board, being disposed within a recess formed in the circuit board.
In order to reduce the height of an electrical connector mounted to a circuit board, a recess or opening is formed in the circuit board, especially, at an edge thereof, the electrical connector is being disposed within the recess. For example, the aforementioned electrical connector is disclosed in U.S. Pat. No. 5,702,271, U.S. Pat. No. 7,182,610, or JP 2004-327244 A, each of which is incorporated herein by reference in their entireties. Specifically, a shell of the electrical connector of JP 2004-327244 A has two fixed portions or two wings at opposite sides of the electrical connector; the fixed portions are soldered to the upper surface of the circuit board so that the electrical connector is secured to the circuit board.
However, the electrical connector of JP 2004-327244 A has a problem that its shell may be deformed by unexpected movement of a mating connector thereof. Therefore, there is a need for an electrical connector which has a better deformation resistant structure in comparison with the electrical connector of the JP 2004-327244 A.
According to one aspect of the present invention, an electrical connector mountable to a circuit board comprises contact pins, a housing holding the contact pins and a shell covering the housing at least in part. The shell comprises a first plate-like portion, a second plate-like portion and connection portions. The first plate-like portion extends in a predetermined direction and is provided with fixed portions at opposite ends thereof in the predetermined direction. The fixed portion is to be fixed to the circuit board. The second plate-like portion extends in the predetermined direction. Each of the connection portions connects the first and the second plate-like portion. The second plate-like portion is provided with force resist portions at opposite ends thereof in the predetermined direction. The force resist portions are configured so that, when a force is applied to the electrical connector along a direction from the first plate-like portion towards the second plate-like portion, the force resist portions resist the force.
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.
With reference to
The illustrated electrical connector 1 and a cable connector not shown constitute a board-to-cable connector assembly, wherein the cable connector is a mating connector of the electrical connector 1 and for connecting cables to conductive patterns on the circuit board 2 through the electrical connector 1.
With reference to
The illustrated housing 20 is made of non-conductive material such as resin. As shown in
The illustrated shell 30 is formed by stamping out a conductive mother plate, followed by bending the stamped plate. The shell 30 comprises an upper plate-like portion 31, a lower plate-like portion 32 and two connection portions 34 and has a fit opening 33. The fit opening 33 corresponds to the opening of the housing 20 and serves to receive and accommodate a fit portion of the mating connector therein. The connection portions 34 connect the upper and the lower plate-like portions 31, 32 at the fit end so that the fit opening 33 is positioned between the connection portions 34 in a longitudinal direction of the electrical connector 1.
With reference to
With reference to
As shown in
The lower plate-like portion 32 is provided with force resist portions 60 which are configured so that, when a downward force is applied to the electrical connector 1, the force resist portions 60 resist the downward force. In this embodiment, the force resist portions 60 are positioned at the outer ends of the lower guide portions 42 in the longitudinal direction. Each of the force resist portions 60 comprises a portion 61 and a hanger portion 62. The portion 61 extends from an edge of the lower guide portion 42 upwardly. The hanger portion 62 extends from the portion 61 horizontally and outwardly in the longitudinal direction.
When the electrical connector 1 is mounted to the circuit board 2, the illustrated hanger portion 62 rests on the circuit board 2 so that the hanger portion 62 hangs the lower plate-like portion 32 from the circuit board 2. The hanger portion 62 may be soldered to the circuit board 2.
In this embodiment, the second portion 52 of the fixed portion 50 and the hanger portion 62 are placed on the upper surface of the circuit board 2, i.e. the same surface of the circuit board 2 as each other. In addition, an edge 63 of the hanger portion 62 is positioned inside the first portion 51 of the fixed portion 50 in the longitudinal direction.
With the above-mentioned structure, even if the downward force is applied to the electrical connector 1, the lower plate-like portion 32 can resist the downward force.
In this embodiment, the hanger portion 62 is designed so that the hanger portion 62 rests on the circuit board 2 when the electrical connector 1 is mounted to the circuit board 2. However, the present invention is not limited thereto. The hanger portion 62 may be designed so that the hanger portion 62 is positioned above the circuit board 2 when the electrical connector is mounted to the circuit board 2, provided that, when the downward force is applied to the electrical connector 1, the hanger portion 62 is brought into contact with the circuit board 2 so that the hanger portion 62 hangs the lower plate-like portion 32 from the circuit board 2.
The second portion 52 of the fixed portion 50 and the hanger portion 62 may be placed on different surfaces of the circuit board 2 from each other. For example, the second portion 52 may be positioned on the upper surface of the circuit board 2, while the hanger portion 62 may be positioned on the lower surface of the circuit board 2. In this case, the hanger portion 62 is soldered to the lower surface of the circuit board 2.
The fixed portion 50 and the force resist portion 60 may have various shapes and/or may be arranged in a manner different from the above-mentioned embodiment. For example, the fixed portion 50 may be provided with an opening that is formed continuously in the first and the second portions 51, 52. In this case, the hanger portion 62 may have a particular shape, such as a protuberant shape, which is positionable within the opening of the fixed portion 50.
The present application is based on a Japanese patent application of JP2007-175518 filed before the Japan Patent Office on Jul. 3, 2007, the contents of which are 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 invention, and it is intended to claim all such embodiments that fall within the true scope of the invention.
Number | Date | Country | Kind |
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2007-175518 | Jul 2007 | JP | national |
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Number | Date | Country |
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4-332485 | Nov 1992 | JP |
2002-050441 | Feb 2002 | JP |
2004-327244 | Nov 2004 | JP |
Number | Date | Country | |
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20090011623 A1 | Jan 2009 | US |