Abstract:
PROBLEM TO BE SOLVED: To enhance workability when fitting a flat cable, in a connector for a flat cable.SOLUTION: An insertion part 10 fixed to an electronic apparatus and into which a flat cable 1 is inserted, and a flat cable housing space continuing from the insertion part 10 to the interior are formed in a housing 5. A terminal 6 is arranged in the housing 5 and connected with a wiring terminal provided in the electronic apparatus. When the flat cable 1 is inserted into the flat cable housing space through the insertion part 10, the terminal 6 is brought into contact with the connection terminal of the flat cable 1 and connected therewith. A flat cable mounting plane (lower step surface) 5a of the same height as the insertion part 10 is formed, on the insertion side thereof, in the housing 5.
Abstract:
PROBLEM TO BE SOLVED: To suppress wrong assembling to a terminal connector of a flexible integrated wiring without going through an inspecting process such as an appearance inspection. SOLUTION: A slider 20 has protrusions 23 formed on side faces connected to both end parts of a mounting face on which a terminal part of the flexible integrated wiring 40 is set. A cover 30 has lock arms 32 growing down and installed along the side face of the slider from both ends of a longitudinal member 31 extending in the width direction of the terminal part of the flexible integrated wiring. In the lock arm, an opening 33 in which a locking part 36 lockable with the protrusion 23 has its upper end extended and formed up to the end part of the long member. Then, in the flexible integrated wiring, a protruding part 45 which is narrower than the width of the opening 33 and long enough to interfere with the lock arm when the cover is assembled is formed at a position corresponding to the opening 33, and in the locking part 36, a recess part 39 is formed so as not to interfere with the protruding part 45 when the protruding part 45 is positioned in the opening. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To incur no increase in insertion resistance even if ample room is not allowed for a deforming gap in a symmetrical snap fit. SOLUTION: In the snap fit 1, snap pieces 3 with each leg 7 and each locking head 8 sandwich the deforming gap 4 and are symmetrically arranged to be used for fitting a fitting body 5 on a body 6 to be fitted thereby. A gap widened section 14 for partially widening the deforming gap is provided in an extremity of the snap piece. The presence of the gap widened section can avoid the generation of an increase in inserting resistance which is caused by the snap pieces coming in contact with each other before the locking head has completely penetrated a fitting hole 15 of the body to be fitted. COPYRIGHT: (C)2009,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a crimp terminal with branch function equipped with contact points in double, which can connect for branch with itself by the double contact points and can make compact by avoiding size enlargement in a length direction. SOLUTION: The crimp terminal 1 with branch function includes a crimp part 2 crimping an electric wire 5 being as a connection root, a first contact point 3 making direct connection for connection to the electric wire of the crimp at the crimp part, and a second contact point 4 making branch connection for connection branching to the direct connection. Each of the first and the second contact points is formed so as to position at the same position about an axis direction of the crimp part. COPYRIGHT: (C)2009,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To suppress deflection of flexible integrated wiring in the direction opposite to a mounting surface in a flexible integrated wiring connector.SOLUTION: A flexible integrated wiring connector 11 used in inserting and connecting a terminal part 13 of flexible integrated wiring 12 into a connector of a connection partner comprises: a mounting surface 14 on which terminal parts 13 of the flexible integrated wiring 12 are aligned and arranged; and a pair of engagement hooks 17 and 17 which are formed on both end sides of the mounting surface 14 in the arrangement direction of the terminal parts and engage with a pair of engagement holes 12a and 12b bored on both edge sides of the terminal parts 13 in the flexible integrated wiring 12. A protrusion 14b installed upright on the flexible integrated wiring 12 side is formed on both sides of the terminal parts 13 in the arrangement direction of the terminal parts on the mounting face 14. A width between the pair of engagement hooks 17 and 17 is designed to be slightly shorter than a width between the pair of engagement holes 12a and 12b bored in the flexible integrated wiring 12.
Abstract:
PROBLEM TO BE SOLVED: To provide a connector connection structure of a flat circuit body that can facilitate an operation to connect the flat circuit body, and reduce the manufacturing cost by decreasing the number of components.SOLUTION: There is provided a connector connection structure of a flat circuit body such that a slider 10 fitted to a tip portion 11 of the flat circuit body 10 is a unit component having a circuit body insertion hole 23, into which the tip portion 11 of the flat circuit body 10 is inserted, and a circuit body lock portion, mounted on an elastic deformation portion facing the circuit body insertion hole 23, formed in one body, and when the tip portion 11 of the flat circuit body 10 is inserted into the circuit board insertion hole, the circuit body lock portion formed on the tip portion 11 engages a slider engagement portion at the tip portion 11 to fix the flat circuit body 10 to the slider 20.
Abstract:
PROBLEM TO BE SOLVED: To provide a flat plate-like flexible wiring connector which can be mounted with ease and can prevent the degradation of connection reliability.SOLUTION: Provided is a flat plate-like flexible wiring connector 1 which comprises a flat plate-like flexible wire 10 and a slider 20. A terminal insertion part 30 comprises: a step part 31 which forms a front end lower face 30b of the terminal insertion part 30, and which is formed such that a step S between the front end lower face 30b and a mounting surface 21c becomes substantially equal to the thickness of the flat plate-like flexible wire 10; and a plurality of projecting pieces 40 each of which extends backward from the step part 31 in such a manner that a surface position P2 on an upper face 40d is aligned with a surface position P1 on the front end lower face 30b, and which are arranged in a scattered manner along the width direction of an end 10a so as not to overlap a terminal 11 when seen form the mounting surface 21c side. The end 10a is arranged in a surrounded part 41 which is surrounded by the mounting surface 21c, the upper face 40d and the step S.
Abstract:
PROBLEM TO BE SOLVED: To provide a flat cable waterproof connector structure capable of ensuring retention and sealing performance of a flexible flat cable and an integral molding section even if a tensile force (external force) is applied to the flexible flat cable.SOLUTION: A hole 23 is provided between conductors 21 of a flexible flat cable 2 in the flat cable waterproof connector structure, and a slit 24 is formed at the end of the flexible flat cable 2 in the width direction. A cable holding part 7 is formed of a seal portion 5 integrally molded of a resin or thermoplastic elastomer exhibiting high adhesion at a part of the conductor 21 and a terminal 3 including the joint 31 thereof, and a holding part 6 integrally molded of a high rigidity resin so as to cover the seal portion 5 and to span the hole 23 of the flexible flat cable 2 and the slit 24.
Abstract:
PROBLEM TO BE SOLVED: To make a terminal section of a flexible intensive wiring stick to a mounting surface of a slider of a terminal connection tool without using a spring member. SOLUTION: The terminal connection tool for the flexible intensive wiring has the slider 20 wherein the mounting surface 21 where the terminal section 41 of the flexible intensive wiring 40 is arranged and a projection 23 on a side of both end sections are formed, and a cover 30 wherein the terminal section of the flexible intensive wiring is pushed to the mounting surface of the slider. The cover has a longitudinal member 31 extending in a width direction of the terminal section of the flexible intensive wiring, and a lock arm 32 vertically arranged along a side face 22 of the slider from both ends of the longitudinal member and forming an opening 33 capable of locking on the projection 23. Elastically-deformable thin-walled sections which are thinner than the thickness at the center section side and form a space between the terminal section of the flexible intensive wiring mounted on the mounting surface and the cover are provided on both end sections of the longitudinal member. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide an FPC/FFC connector in which downsizing, cost reduction, and reduction of the number of components are attained, and the terminal portion of the FPC or the FFC can be held in a normal state and furthermore, unlocking can be carried out easily. SOLUTION: An operating part 13 is pressed to make a fulcrum portion 14 contact the outer surface of an upper wall 7 and function it as a fulcrum, and furthermore, by continuing pressing, when a lock arm 8 is elastically deformed, a retention lock part 10 moves upward by this. When the retention lock part 10 moves upward, the position of the retention lock part 10 becomes a non-engaging position to the position of a retention hole at the terminal portion of the FPC. Thereby, the terminal portion of the FPC can be pulled out from the housing inner space 11. COPYRIGHT: (C)2010,JPO&INPIT