Referring to
In
The connector 1 comprises a plurality of contacts 11, an insulating housing 21 holding the contacts 11, and a pair of locking members 31 attached to the housing 21, and a conductive shell member 41 coupled to the housing 21. The housing 21 has a main body 22 of a generally rectangular plate-like shape, and a pair of lock receiving portions 23 formed on longitudinal opposite ends of the main body 22. The lock receiving portions 23 receive the locking members 31, respectively. The locking members 31 serve to lock the connector 1 and a mating connector (which is shown by reference numeral 61 in
The main body 22 has a plate-like fitting portion 25 to be fitted to a mating fitting portion of the mating connector, which will hereinafter be described. The fitting portion 25 has one surface on which the contacts 11 are arranged in parallel to one another in a longitudinal direction of the fitting portion 25 with a space left therebetween. The flat cable 51 has one end at which the conductors are exposed by removing the insulator cover 55. The conductors at the one end are connected to the contacts 11 in one-to-one correspondence.
Referring to
Each of the locking members 31 has a holding portion 32, a shaft portion 33 connected to one side of the holding portion 32, a locking portion 34 extending from the shaft portion 33 to one side thereof, an operating portion 36 extending from the other side of the holding portion 32, and an operation spring portion 35 extending from the operating portion 36 and bent in a generally U shape. The operating portion 36 serves to make the locking portion 34 engage and disengage the connector 1 and the mating connector 61.
The locking portion 34 is a part to be engaged with a mating locking portion of the mating connector. The shaft portion 33 is provided with a spring portion 33a formed by cutting and raising a plate portion of the locking member 31. The locking portion 34 has a hook portion 34a formed at its end. The hook portion 34a is adapted to be engaged with a mating engaging hole 61c formed in a mating engaging portion 61b of the mating connector 61 when the connector 1 is fitted to the mating connector 61.
The operating spring portion 35 continuously urges the locking portion 34 in an engaging direction in which the connector 1 is engaged with the mating connector 61, and exerts a spring force to return the locking portion 34 to a normal position after a locked state by the locking portion 34 is unlocked into an unlocked state. The operating spring portion 35 serves to make the operating portion 36 be smoothly moved or operated.
The operating portion 36 has a free end 36a bent along a U-shaped portion of the operating spring portion 35. The operating spring portion 35 and the free end 36a of the operating portion 36 are located in the lock receiving portion 31 irrespective of the locked state or the unlocked state.
The locking member 31 can be formed by punching a metal plate by a press and then forming the spring portion 33a by cutting and raising.
Referring to
As shown in
In the state where the locking member 31 is received in the lock receiving portion 23, the shaft portion 33 is received in the bearing portion 24a and rotatably held. Further, as shown in
Referring to
The first receiving portion 24e of the lock receiving portion 23 is provided with an inlet 23r corresponding to an inserting direction A of the locking member 31. The inlet 23r is formed at the first receiving portion 24e in the lock receiving portion 23 on the side opposite to a hook contacting portion 23p. When the locking member 31 is inserted through the inlet 23r with the hook portion 34a directed forward and the locking portion 34 is received in the second receiving portion 24f, the shaft portion 33 is fitted to the bearing portion 24a. In this state, the locking member 31 is held in the lock receiving portion 23 in the inserting direction A and a releasing direction opposite to the inserting direction A and held by the upper and the lower plate portions 23a and 23b in a vertical direction. The shaft portion 33 received in the bearing portion 24a becomes rotatable.
The holding portion 32 of the locking member 31, the shaft portion 33, the locking portion 34 except the hook portion 34a, and the free end 36a of the operating lever portion 36 are located inside the lock receiving portion 23 and prevented from being directly touched by a finger. Most part of the operating lever portion 36 of the locking member 31, except the free end 36a, protrudes through an opening 23m of the lock receiving portion 23 to the outside of the lock receiving portion 23.
The free end 35a of the operating spring portion 35 has a contact surface slightly inserted into a groove-like contact portion 23n formed on an inner wall surface 23j of the lock receiving portion 23. The groove of the contact portion 23n restricts vertical movement of the free end 35a to prevent deformation of the operating spring portion 35. The free end 36a of the operating portion 36 has an end face which is brought into contact with the inner wall surface 23j to prevent excessive pressing when the operating portion 36 is pressed and operated. The lock receiving portion 23 covers the locking member 31 in the vertical direction. In addition, in the inserting direction A, the locking member 31 is received in the lock receiving portion 23. Therefore, the locking member 31 is protected from an external force excepting an operating force acting to the operating portion 36. Further, the hook portion 34a of the locking member 31 is located near the locking portion 34. The lock receiving portion 23 is provided with the hook contact portion 23p to be brought into contact with the hook portion 34a at the locking position.
The shell member 41 comprises a first plate portion 43 attached to the main body 22 to face a first surface 22a of the main body 22, and a second plate portion 44 attached to the main body 22 to face a second surface 22b opposite to the first surface 22a. The shell member 41 is formed by punching and then bending a metal plate into a plate-like shape so as to cover the main body 22 except the lock receiving portions 23 and the fitting portion 25. From the state illustrated in
The first plate portion 43 is provided with a plurality of claw portions 43a formed by cutting and raising the first plate portion 43. The claw portions 43a are brought into contact with the insulator cover 55 of the cable 51 through a plurality of windows 22d formed on the first surface 22a of the main body 22. The conductors at the one end of the cable 51 are connected to a part of the contacts 11 extending from the fitting portion 25 into the main body 22.
Now, description will be made of operations of locking and unlocking the connector 1 and the mating connector 61.
At first, from the locked state illustrated in
In the locked state by the locking member 31, the hook portion 34a is brought into contact with the hook contact portion 23p in the state where the free end 35a of the operating spring portion 35 enters into the contact portion 23n of the lock receiving portion 23 with a spring force. Therefore, the rotation of the locking member 31 is restricted to a predetermined rotation angle. In addition, the amount of protrusion of the hook portion 34a of the locking member 31 can be kept constant so that a stable locking strength is assured.
When the connector 1 and the mating connector 61 are fitted to each other and locked to each other, the mating engaging portion 61b of the mating connector 61 is inserted into the fitting portion 25 and between the lock receiving portions 23 when the locking member 31 is located at the locking position. By the above-mentioned operation, the locking portion 34 is pushed in the second receiving portion 24f by the mating engaging portion 61b. When the connector 1 and the mating connector 61 are fitted to each other and the hook portion 34a reaches the mating engaging hole 61c of the mating engaging portion 61b, the locking portion 34 rotates counterclockwise by the spring force of the operating spring portion 35 and the hook portion 34a is inserted into the mating engaging hole 61c to establish the locked state.
As described above, the shaft portion 33 and the bearing portion 24a are formed by only two components, i.e., each locking member 31 and the housing 21. The shell member 41 also serves to provide electric grounding and to enhance a mechanical strength of the housing 21. However, the connector 1 does not require the shell member 41 if electric grounding or the mechanical strength of the housing 21 need not be taken into account.
With the connector according to the exemplary embodiment mentioned above, the shaft portion 33 is received in the bearing portion 24a so that the locking member 31 is rotatably held. In addition, the spring portion 33a presses the shaft portion 33 towards the bottom surface of the bearing portion 24a. With this structure, the locking member 31 smoothly rotates and is prevented from being released from the housing 21.
Further, it is possible to maintain a constant amount of protrusion of the the hook portion 34a when it is rotated to the locking position. Therefore, the locked state can be securely maintained so that a stable locking strength is assured.
Further, simply by incorporating the locking member 31 into the lock receiving portion 23 of the housing 21, the shaft portion 33 is rotatably held by the bearing portion 24a. Therefore, the shaft portion 33 and the bearing portion 24a can be formed by only two components, i.e., each locking member 31 and the housing 21. It is therefore possible to simplify an assembling process and to reduce the number of components.
In the examplary embodiment mentioned above, the spring portion 33a is formed at the shaft portion 33 of the locking member 31. However, the spring portion 33a may be formed near the shaft portion 33. Alternatively, such spring portion may be formed at the lock receiving portion 23 of the housing 21. In case where the spring portion is formed at the lock receiving portion 23, it is a matter of course that the shaft portion 33 is elastically pressed by the spring portion.
The above-mentioned connector may be implemented as a plug connector which supports high-speed transmission and which is for transmitting an electric signal from an apparatus body to an electronic apparatus as a connection object.
While the present invention has thus far been described in connection with the exemplary embodiment thereof, it will readily be possible for those skilled in the art to put this invention into practice in various other manners.
Number | Date | Country | Kind |
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2006-256085 | Sep 2006 | JP | national |