1. Technical Field
The present invention relates to connectors, in particular, to a connector for connecting to a connecting portion arranged at a distal end of a flexible printed circuit board.
2. Related Art
Conventionally, for a connector, for example, as shown in Japanese Patent Application Laid-Open No. 2002-190360, there is a printed wiring board connector, including a housing with a substrate insertion groove to be inserted with a printed wiring substrate having a terminal portion arranged with numerous printed wiring terminals on the front and the back, in which numerous contact pieces that oppose in a front and back direction of the printed wiring terminal in the substrate insertion groove of the housing and sandwich the terminal portions of the printed wiring substrate are lined, where one of the opposing contact pieces is formed as a sandwich operation contact piece and the other contact piece is separately formed at a position facing the sandwich operation contact piece as an opposing side contact piece, a sandwich operation that operates the sandwich operation contact piece to a side of sandwiching the terminal portion of the printed wiring substrate inserted in the substrate insertion groove is arranged, a terminal piece is integrally formed at each contact piece, and each terminal piece is projected to outside the housing, (refer to, for example, Japanese Patent
However, in the above described connector, when an operator 16, which is an operation lever, is rotated to the opening side before mounting the printed circuit board, as shown in FIGS. 4 and 6 of Japanese Patent Application Laid-Open No. 2002-190360, an upper surface of the operator 16 contacts an upper surface edge of a housing 4, which is a base, if the operation lever is mistakenly and excessively rotated. From principle of leverage, a component force in a horizontal direction acts on a contacting portion 20, which is a connection terminal, whereby the contacting portion 20 is pushed out from the housing 4, and the connector cannot be mounted on the printed circuit board.
In view of the above problem, it is an object of the present invention to provide a connector in which a connection terminal is not pushed out from the housing even if the operation lever is mistakenly and excessively rotated.
In order to solve the above problem, a connector according to the present invention includes a base having an opening to which a distal end of a flexible printed circuit board is inserted formed on a front surface, a plurality of insertion holes passing from the front surface to a rear surface adjacently arranged at a predetermined pitch, and a position regulating surface of one step lower formed at an edge of an upper surface on the rear surface side; a connection terminal to be inserted to the insertion hole from the rear surface side, the connection terminal being arranged in a projecting manner with a substantially T-shaped operation piece having, at a first end, a movable contacting point that pressure-contacts a connecting portion adjacently arranged at the distal end of the flexible printed circuit board; and an operation lever having an upper surface of the connection terminal as a rotation supporting point, including a cam portion for driving an operation receiving portion positioned at a second end of the operation piece, and being formed with a contact portion that rides on the position regulating surface of the base at an edge of the upper surface on the front surface side; wherein when the operation lever is rotated for opening, the contact portion of the operation lever rides on the position regulating surface of the base before the upper surface of the operation lever contacts the edge of the upper surface on the rear surface side of the base, so that the operation lever is lifted upward.
According to the present invention, even if the operation lever is excessively rotated to the opening side, the contact portion arranged at the edge of the upper surface on the front surface side of the operation lever rides on the position regulating surface of one step lower arranged at the upper surface of the base, whereby the operation lever is lifted upward. Thus a large component force does not act in the horizontal direction on the connection terminal, and the connection terminal is not pushed out to the outside, whereby the connector can be mounted on the printed circuit board.
As an embodiment of the present invention, a rotation recess acting as a rotation supporting point of the cam portion of the operation lever may be arranged at the upper surface of the connection terminal.
According to the present embodiment, the connection terminal is not pushed out to the outside, and the rotation operation of the operation lever becomes more accurate since the rotation recess is arranged.
An embodiment of the present invention will be described according to the accompanied drawings of
As shown in
As shown in
As shown in
As shown in
The base 11 has guide grooves 15a, 15b communicating to the first and the second insertion holes 13, 14, respectively, alternately arranged side by side at a predetermined pitch on the upper surface of the guide plate 15.
As shown in
As shown in
In particular, as shown in
Furthermore, the second connection terminal 30 has the upper surface from the rotation recess 38 to the end face on the second end 30b formed as a flat surface. Thus, an advantage in that the assembly of the operation lever 40, to be hereinafter described, is easy is obtained.
As shown in
As shown in
A method of assembling the above described components will be described below.
First, the first end 20a of the first connection terminal 20 is inserted to the first insertion hole 13 from the front surface side of the base 11. The slip-out preventing projection 21 arranged at the first connection terminal 20 thus is locked to a roof surface of the slip-out preventing portion 16 of the base 11, and the lock nail 26 is locked to the edge of the base 11, to be thereby positioned.
The first end 30a of the second connection terminal 30 is then inserted to the second insertion hole 14 along the guide groove 15b arranged in the guide plate 15 of the base 11. The protrusion 36 arranged at the intermediate part of the second connection terminal 30 then contacts the slip-out preventing recess 17 of the base 11, and the lock nail 37 locks the slip-out preventing recess 17 while pushing out the same in the up and down direction. At the same time, the lock nail 33 is locked to the edge of the base 11 to be thereby positioned (
In the present embodiment, the second end 30b of the second connection terminal 30 has a flat upper surface, a large geometric moment of inertia, and a large rigidity, and thus has an advantage of being less likely to buckle.
The operation receiving portions 24, 35 of the first and the second connection terminals 20, 30 are then respectively inserted to the pass-through holes 43 of the operation lever 40, the operation lever 40 is sled along the upper surface of the second connection terminal 30, and the operation receiving portions 24, 35 are pushed up by the cam portion 42 to be pushed in in an elastically deformed state. The cam portion 42 thereby fits into the rotation recess 37 of the second connection terminal 30, the rotation shaft 41 fits into the bearing slit 12b of the base 11, and the operation lever 40 is rotatably supported.
As shown in
In particular, when transporting the connector 10 over a long distance after the completion of the assembly, the second connection terminal 30 does not slip out from the base 11 even if microscopic vibration is applied on the operation lever 40 and the operation lever 40 repeats microscopic rotation operation.
Furthermore, even if an impact force more than expected, for example, an impact force from dropping of a package container is applied on the connector 10 individually stored in the package container (not shown), the position of the operation lever is always regulated with respect to the base 11, and thus the second connection terminal 30 does not slip out from the base 11.
A method of connecting and fixing the flexible printed circuit board 50 to the connector 10 will now be described based on
As shown in
In the present embodiment, since the cross-section of the cam portion 42 has a substantially elliptical shape, a distinct operation feeling is obtained as the rotation moment suddenly lowers when rotated by a predetermined angle.
When detaching the flexible printed circuit board 50 from the connector 10, the cam portion 42 is inverted by rotating the operation lever 40 in the opposite direction, whereby the bending moment on the operation receiving portions 24, 35 of the first and the second connection terminals 20, 30 is canceled, the connection state of the first and the second movable contacting points 25, 34 with respect to the first and the second connecting portions 52, 53 is released, and thereafter, the flexible printed circuit board 50 is pulled out.
According to the present embodiment, as shown in
The contact portion of the operation lever may be an acute angle or an obtuse angle, or may be a round surface. The position regulating surface of the base is not limited to a flat surface, and may be a tapered surface.
Furthermore, the position regulating surface may be formed at the operation lever, and the contact portion may be formed at the base.
The connector 10 according to the present invention is not limited to the connector described above, and is obviously applicable to other connectors.
Number | Date | Country | Kind |
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2007-339695 | Dec 2007 | JP | national |