Applicants claim priority under 35 U.S.C. ยง119 of Japanese Patent Application No. JP2012-139084 filed Jun. 20, 2012.
This invention relates to a connector configured to be fixed to an object such as a printed circuit board, a Flexible Printed Circuit (FPC) and a Flexible Flat Cable (FFC).
For example, a connector configured to be fixed to a circuit board is disclosed in JP-A H11(1999)-67365 (Patent Document 1), contents of which are incorporated herein by reference.
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The cover wall 930 is formed with a window 932 while the sidewall 920 is provided with an engagement piece 922. The engagement piece 922 is engaged with the window 932. According to Patent Document 1, this engagement prevents the cover wall 930 from moving along the sidewall 920.
It is impossible to form the engagement piece 922 having absolutely the same size as the window 932. Accordingly, the actually formed engagement piece 922 should have smaller size than the window 932. Moreover, as can be seen from the forming method of the shell 910 described in paragraph [0017] of Patent Document 1, although a front edge of the engagement piece 922 is engaged with a front end of the window 932, a gap is formed between the engagement piece 922 and an edge of the window 932 in the vertical direction. The cover wall 930 is therefore easily movable upward or downward along the sidewall 920. Accordingly, the shell 910 might be shaken or deformed when the connector 900 receives such a force that detaches the connector 900 from the object such as a circuit board.
It is therefore an object of the present invention to provide a connector having a structure which is preventable a shell of the connector from being deformed even when the connector receives such a force that detaches the connector from an object such as a circuit board.
One aspect of the present invention provides a connector fixable to an object and receivable a part of a mating connector inserted thereinto from a front end thereof in a front-rear direction. The connector comprises a contact, a holding member and a shell. The holding member holds the contact. The shell is attached to the holding member. The shell has a body portion and a fixing portion. The body portion covers, at least in part, the holding member. The fixing portion is configured to fix the body portion to the object. The body portion is provided with a first engaged portion. The fixing portion has a pressed portion and a second engaged portion. The pressed portion is configured to be secured to the object by screw to be pressed against the object. The second engaged portion is engaged with the first engaged portion so as to press the first engaged portion toward the object when the pressed portion is pressed against the object.
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 shell 40 according to the present embodiment is formed by bending an intermediate member which is stamped out from a single metal sheet. As shown in
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The lock hole 62 pierces the sidewall 52 in the pitch direction (Y-direction) while extending long in the front-rear direction (X-direction). The mating connector (not shown) according to the present embodiment comprises two lock pieces (not shown) corresponding to the lock holes 62, respectively. The lock pieces are formed at opposite ends of the mating connector in the pitch direction (Y-direction), respectively. When the connector 10 is under a mated state where the connector 10 receives (i.e. is mated with) the mating connector, the lock holes 62 according to the present embodiment receive the respective lock pieces of the mating connector to lock the mated state.
The engagement pieces 64 according to the present embodiment are formed from the sidewalls 52, respectively. More specifically, a part of the sidewall 52 is cut and bent to form the engagement piece 64. The engagement piece 64 protrudes outward in the pitch direction (Y-direction) from a front end of the lock hole 62 while extending obliquely rearward. The engagement piece 64 has two edges each perpendicular to the vertical direction (Z-direction), namely, an upper edge and a lower edge. The engagement piece 64 also has a front end and a rear end 66. The front end of the engagement piece 64 is located at the same position as the front end of the lock hole 62 in the front-rear direction (X-direction). The rear end 66 is located rearward of the front end of the lock hole 62 and located outward of the front end of the engagement piece 64 in the pitch direction (Y-direction).
The guide portions 68 according to the present embodiment guide the mating connector (not shown) upon an insertion of the mating connector. In detail, the guide portions 68 are provided at respective front ends (i.e. positive X-side ends) of the opposite sidewalls 52 so as to open outward in the pitch direction (Y-direction). As shown in
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The connector 10 according to the present embodiment is mateable with various types of the mating connectors (not shown). For example, the mating connector may be a cable connector connectable to a cable (not shown). If the cable connected to the mating connector is swayed, the connector 10 fixed to the circuit board (not shown) and mated with the mating connector might receive such a force (i.e. an upward force) that detaches the connector 10 from the circuit board. According to the present embodiment, even if the aforementioned upward force is applied to the connector 10, an engagement of the engagement piece 64 with the opening 92 keeps pushing down the body portion 50 toward the circuit board. Accordingly, it is possible to prevent the shell 40 from being deformed.
According to the present embodiment, both the guide portion 68 of the sidewall 52 and the front edge 94 of the facing portion 82 protrude forward while extending upward. Moreover, the facing portion 82 of the fixing portion 80 is securely fixed to the circuit board (not shown) by the flange 84. Accordingly, even if the body portion 50 is nearly pushed up along the positive Z-direction by the aforementioned upward force, the guide portion 68 is brought into abutment with and stopped by a lower end of the front edge 94. Accordingly, it is possible to prevent the shell 40 from being deformed more securely.
The aforementioned embodiment is able to be modified variously.
For example, according to the aforementioned embodiment, the first engaged portion is the engagement piece 64 while the second engaged portion is the opening 92. However, the first engaged portion and the second engaged portion may be formed differently by using members or parts which are engageable with each other. For example, the first engaged portion may be an opening while the second engaged portion may be an engagement piece.
Moreover, according to the aforementioned embodiment, the engagement piece 64 extends obliquely rearward from the front end thereof. However, the engagement piece 64 may extend differently. For example, the engagement piece 64 extends obliquely forward from the rear end thereof.
Moreover, the engaged portions according to the aforementioned embodiment, namely, the first engaged portion (engagement piece) 64 and the second engaged portion (opening) 92, are provided at a side part of the shell 40. However, one or both of the engaged portions may be provided on the other part of the shell 40. For example, the engaged portion may provided at a front part of the shell 40, which is the mating side with the mating connector (not shown). More specifically, the guide portion 68 may be partially bent toward the receive portion 14 so that the guide portion 68 may be formed with the engaged portion.
Moreover, according to the aforementioned embodiment, both the guide portion 68 of the sidewall 52 and the front edge 94 of the facing portion 82 are oblique to the vertical direction (Z-direction). However, for example, if the front edge 94 is not required to stop the movement of the guide portion 68, each of the guide portion 68 and the front edge 94 may not be oblique to the vertical direction (Z-direction).
The present application is based on a Japanese patent application of JP2012-139084 filed before the Japan Patent Office on Jun. 20, 2012, 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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2012-139084 | Jun 2012 | JP | national |
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Number | Date | Country | |
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