This application claims priority to prior Japanese patent application JP 2004-59648, the disclosure of which is incorporated herein by reference.
This invention relates to a connector apparatus having a mating detecting member for detecting a mated state and an unmated state of a connector and a mating connector.
Japanese Patent Publication (JP-B) No. H7-19631 corresponding to U.S. Pat. No. 4,634,204 discloses an electrical connector apparatus comprising a male connector, a female connector to be mated with the male connector, and a mating detecting member for detecting a mated state of the male connector and the female connector.
The mating detecting member is slidable in a mating direction and an unmating direction opposite to the mating direction. When the male and the female connectors are mated to each other, the mating detecting member is inserted into the male connector to detect complete mating of the male and the female connectors. Thus, the mating detecting member is a component for assuring (confirming) that these connectors are completely mated at a proper position. The mating detecting member is called connector position assurance (CPA).
Further, the mating detecting member allows an operator to find an unmated state where the male and the female connectors are not properly mated.
However, the above-mentioned mating detecting member is disadvantageous in the following respects. Even if the male and the female connectors are in an unmated state, the mating detecting member can slide in the mating direction to be inserted into the male connector if an excessive force is applied by the operator. In this event, it is impossible to detect and confirm the mated state or the unmated state of the male and the female connectors.
When the male connector is released and removed from the female connector, the mating detecting member is not held by the male connector. Therefore, the mating detecting member may possibly be lost.
In the state where the electrical connector is mounted to an electronic apparatus, the mating detecting member may be released and separated from the male connector under an external force exerted by unexpected vibration, mechanical shock, or the like.
As described above, the mating detecting member is inserted into the male connector after the male and the female connectors are mated to each other. It is desired but is not realized that the mating detecting member can be inserted into the male connector with a small force so as to easily perform a normal operation.
It is therefore an object of this invention to provide a connector apparatus with a mating detecting member, which is capable of reliably achieving all of functions of detecting a mated state and an unmated state of a first connector and a second connector by the mating detecting member, preventing the mating detecting member at a mating assurance position from being easily displaced therefrom, and preventing the mating detecting member at a standby position from being easily released from the first connector.
It is another object of this invention to provide a connector apparatus with a mating detecting member, which is capable of preventing the mating detecting member from being released due to an external force exerted by vibration, mechanical shock, or the like.
It is still another object of this invention to provide a connector apparatus with a mating detecting member, which is capable of inserting the mating detecting member with a small force so as to easily perform a normal operation.
According to this invention, there is provided a connector apparatus comprising a first connector, a second connector to be mated with and unmated from the first connector in a mating direction and an unmating direction opposite to the mating direction, and a mating detecting member coupled to the first connector and slidable along the first connector in the mating and the unmating directions. In the connector apparatus, the first connector has a lock lever to be engaged with the second connector. The mating detecting member includes a detecting portion for detecting the mated state and the unmated state of the first and the second connectors, a holding portion for locking the first connector at a standby position where the first and the second connectors are in the unmated state, and an operating portion for locking the first connector at an assurance position where the first and the second connectors are in the mated state, the detecting portion having a locking portion to be engaged with the lock lever at the assurance position so that the mating detecting member is engaged with the first connector and prevented from being returned to the standby position, the holding portion being displaced in a direction different from the mating and the unmating directions to be engaged with the first connector, the operating portion making the mating detecting member be slidable from the standby position when the first connector is mated to the second connector.
Now, description will be made of a few preferred embodiments of this invention with reference to the drawing.
Referring to
Referring to
As illustrated in
The first mating portion 13 is inserted into the second connector 31 in a mating direction depicted by an arrow A in
The outer frame portion 15 surrounds the first mating portion 13 except a front part in the mating direction A, in other words, surrounds a part of the first mating portion 13 forward in the unmating direction B. The outer frame portion 15 is provided with a flange portion 15a formed at its end in the unmating direction B. The flange portion 15a is perpendicular to the mating and the unmating directions A and B.
The detecting locking portion 17 has a base portion 17a disposed above the first mating portion 13 and extending in the mating and the unmating directions A and B, and a lock lever 18 extending to face the base portion 17a.
The base portion 17a is located at a predetermined space from an upper outer surface of the first mating portion 13. In the mating direction A, the base portion 17a is located behind a mating end face 13b of the first mating portion 13. In the unmating direction B, the base portion 17a protrudes outward from an end face of the flange portion 15a.
The lock lever 18 is a portion to be engaged with the second connector 31 and to lock the second connector 31. The lock lever 18 is connected to one end of the base portion 17a in the mating direction A and extends to face the base portion 17a. The lock lever 18 is provided with a lever locking portion 18a formed at an intermediate position of the lock lever 18 in the mating and the unmating directions A and B. The lock lever 18 is provided with a lever operating portion (locking portion) 18b formed at its end in the unmating direction B and adapted to be pressed towards the base portion 17a.
The mating detecting member 21 is slidably held by the first connector 11. As shown in
The operating base portion 23 extends long in a direction C perpendicular to an axis X parallel to the mating and the unmating directions A and B. The center portion 24 extends along the axis X from the one surface of the operating base portion 23 in the mating direction A.
The detecting spring portion 25 extends from the center portion 24 along the axis X. The detecting spring portion 25 is a portion for detecting a mated state and an unmated state of the first connector 11 and the second connector 31. The detecting spring portion 25 is adapted to be engaged with the lock lever 18 of the first connector 11.
The detecting spring portion 25 has a detecting locking portion 25a as a protrusion formed near its end in the mating direction A to be engaged with the lever locking portion 18a of the lock lever 18.
The holding spring portions 27 are connected to one end of the center portion 24 in the mating direction A and extend in the unmating direction B to be opened outward. The holding spring portions 27 are located on opposite sides of the axis X. The holding spring portions 27 lock the detecting member 21 to the first connector 11 in the unmated state. Specifically, the holding spring portions 27 are displaced in the direction C different from sliding movement of the mating detecting member 21 in the mating and the unmating directions A and B to be engaged with the first connector 11.
The operating spring portions 29 are connected to the one surface of the operating base portion 23 in the mating direction A and extend along the axis X on opposite sides of the axis X. The operating spring portions 29 serve to lock the mating detecting member 21 to the first connector 11. The operating spring portions 29 have hook-like protrusions 29a formed at their ends and protruding inward. Each of the protrusions 29a has an outer inclined edge 29b formed on its outer surface and gently curved so as to be easily inserted in the mating direction A. Each of the protrusions 29a has an inner inclined edge 29c formed on its inner surface and acutely curved so as to prevent the mating detecting member 21 from being released from the first connector 11 in the unmating direction B.
As shown in
The inner wall portions 19 have holding protrusions 19a formed at their ends in the unmating direction B and protruding inward, and operating protrusions 19b formed at their intermediate positions and protruding outward from outer surfaces of the inner wall portions 19. The operating protrusions 19b have inclined edges 19c formed on one surface facing the unmating the other surface facing the mating direction A.
As shown in
The second mating portion 33 receives the first mating portion 13 of the first connector 11 inserted in the mating direction A to be mated thereto. The mating detecting portion 35 receives the detecting locking portion 17 inserted in the mating direction A to be mated thereto.
The mating detecting portion 35 has an upper outer wall 31a provided with a window 37 opened between an outside and an inside of the mating detecting portion 35. The second connector 31 has a wall 31e facing the mating direction A and provided with a plurality of holes 31f adapted to receive a plurality of mating contacts (not shown) inserted therethrough.
Now, each of functions of preventing the mating detecting member 21 from being easily released from the first connector 11, detecting the mated state, and preventing the first connector 11 at an assurance position from easily moving therefrom will be described with reference to the drawing.
Herein, the assurance position represents a state where the first connector 11 and the second connector 31 are completely mated with each other. A standby position represents a state where the first connector 11 and the second connector 31 are not mated.
Referring to
As shown in
As described above, at the standby position, the detecting locking portion 25a is engaged with the lever locking portion 18a so that the mating detecting member 21 can not be inserted to the assurance position.
Referring to
Referring to
Referring to
Upon completion of mating between the first and the second connectors 11 and 31, the lever locking portion 18a of the lock lever 18 is engaged with the window 37 of the second connector 31 to be recovered into its original shape. On the other hand, a top edge 25c of the detecting locking portion 25a is kept pressed against the outer wall portion 31a of the second connector 31. At this time, the detecting spring portion 25 is disengaged from the lock lever 18.
Therefore, only when the first connector 11 is mated to the second connector 31, the detecting spring portion 25 is disengaged so that the mating detecting member 21 is movable. It is therefore possible to reliably execute the function of detecting the mated state. Thus, by the operating spring portions 29 and the operating protrusions 19b, the mating detecting member 21 can easily be inserted from the standby position and can not easily be removed from the assurance position.
Further, as illustrated in
If it is tried to move the mating detecting member 21 from the assurance position to the standby position, removal is difficult because of presence of the acute inclined edges 29c formed on the protrusions 29a of the operating spring portions 29.
When the mating detecting member 21 is located at the standby position, the operating spring portions 29 are engaged with the inclined edges 19c gently curved so that the mating detecting member 21 is slidable. When the mating detecting member 21 is located at the assurance position, the operating spring portions 29 are engaged with the acute inclined edges 19d so that the mating detecting member 21 is prevented from being returned to the standby position.
Referring to
In the connector apparatus according to the second embodiment, the detecting locking portion 25a of the detecting spring portion 25 has an acute inclined edge 25f with respect to the lever locking portion 18a of the lock lever 18. The mating detecting member 21 can not easily be removed because of presence of the acute inclined edge 25f. Herein, the acute inclined edge 25f is inclined from the detecting spring portion 25 in the unmating direction B.
Referring to
In the third embodiment, the inner wall portions 19 are inserted between the center portion 24 and the operating spring portions 29 of the mating detecting member 21 when the mating detecting member 21 is inserted into the detecting locking portion 17 of the first connector 11. The inner wall portions 19 have holding protrusions 19e formed at their ends in the unmating direction B and protruding outward. The protrusions 29a of the operating spring portions 29 are engaged with the holding protrusions 19e at the standby position so that the mating detecting member 21 is not easily released.
As described above, the connector apparatus according to this invention achieves the functions of detecting the mated state, preventing the first connector 11 at the assurance position from being easily moved, and preventing the mating detecting member 21 itself from being easily released from the first connector 11.
This invention is applicable to the connector apparatus capable of preventing the first and the second connectors in the mated state from being undesirably released by the vibration, the mechanical shock, or the like. In particular, the connector apparatus is suitable as a component mounted to a support panel of an automobile to connect electronic apparatuses to each other.
While this invention has thus far been described in conjunction with the preferred embodiments thereof, it will be readily possible for those skilled in the art to put this invention into practice in various other manners.
Number | Name | Date | Kind |
---|---|---|---|
4634204 | Detter et al. | Jan 1987 | A |
4963103 | Fink et al. | Oct 1990 | A |
5120240 | Reider | Jun 1992 | A |
5330360 | Marsh et al. | Jul 1994 | A |
5759058 | Childs et al. | Jun 1998 | A |
6234826 | Wilber et al. | May 2001 | B1 |
6290539 | Wilber et al. | Sep 2001 | B1 |
6514098 | Marpoe et al. | Feb 2003 | B1 |
6716052 | Kane | Apr 2004 | B1 |
Number | Date | Country |
---|---|---|
0732775 | Sep 1996 | EP |
1209770 | May 2002 | EP |
H7-19631 | Mar 1995 | JP |
Number | Date | Country | |
---|---|---|---|
20050196943 A1 | Sep 2005 | US |