Electrical connector assembly
An electrical connector assembly is provided comprising a male connector having an insertion end with a latch-receiving channel and an electrical contact arrangement, and a female connector having an open receiving end housing a movable member. The movable member includes a forwardly projecting gate and a complementary electrical contact arrangement and is biased toward the receiving end by a biasing arrangement. A locking member having a latch portion cooperates with the gate to hold the latch captive in a forwardly biased state. Upon insertion of the male connector, continued movement retracts the movable member, freeing the latch to engage the latch-receiving channel and lock the connectors together.
1 . An electrical connector assembly, comprising:
a male connector comprising an insertion end having a latch receiving channel disposed in a bottom wall thereof and an electrical contact arrangement disposed on an engagement face of the male connector;
a female connector comprising:
an open receiving end configured to receive the insertion end of the male connector;
a movable member comprising an electrical contact arrangement disposed on an engagement face thereof and which is configured to move forwardly and rearwardly within the open receiving end, the movable member further comprising a gate that projects forwardly of the electrical contact arrangement and locates adjacent a bottom wall of the receiving end;
a locking member having a latch portion locatable in a bottom latch channel disposed in the bottom wall of the receiving end; and
wherein the movable member is biased toward the open receiving end of the female connector in a forwardly biased state by a movable member biasing arrangement and such that, in the forwardly biased state, the latch portion of the locking member is held captive in the bottom latch channel by the gate of the movable member; and
wherein, for connection of the electrical connector assembly, the insertion end of the male connector is inserted into the open end of the female connector and such that, once the respective electrical contact arrangements have connected, continued insertion of the insertion end causes the movable member to move rearwardly away from the open receiving end of the female connector, in turn causing the gate to move out of engagement with the latch portion allowing it to travel upwardly, by force of a locking member biasing arrangement, into a locked state received within the latch receiving channel of the male connector, thus preventing disengagement of the male connector from the female connector.
2 . An electrical connector assembly in accordance with claim 1 , wherein the latch portion connects to a pair of opposing side walls of the locking member so as to define an opening for receiving the insertion end of the male connector and wherein the opposing side walls are configured to be slidingly received within corresponding opposite side channels defined in the open receiving end of the female connector.
3 . An electrical connector assembly in accordance with claim 2 , wherein the locking member biasing arrangement applies a biasing force sufficient to cause an audible noise to be heard as a result of the latch portion contacting an upper wall of the latch receiving channel of the male connector as it travels upwardly.
4 . An electrical connector assembly in accordance with claim 3 , wherein the opposing side walls of the locking member meet with an actuator that extends upwardly through an opening in an upper wall of the open engagement end for overcoming the biasing of the locking member biasing arrangement to push the latch portion downwardly into the bottom latch channel for releasing the male and female connectors.
5 . An electrical connector assembly in accordance with claim 4 , wherein the locking member biasing arrangement comprises a spring which is disposed between the upper wall of the open engagement end and a portion of the actuator that extends generally parallel to the upper wall.
6 . An electrical connector assembly in accordance with claim 4 , further comprising a boot that covers the actuator and which is configured to prevent ingress of fluid through the opening in the upper wall.
7 . An electrical connector assembly in accordance with claim 4 , wherein the moveable member is slidable within a housing and wherein the movable member biasing arrangement comprises one or more compression springs disposed within the housing and which is/are configured to push the movable member away from a rear end of the housing.
8 . An electrical connector assembly in accordance with claim 7 , wherein once the latch portion is in the locked state, the compression spring(s) continues to apply a biasing force on the movable member to maintain the mated relationship between the respective electrical contact arrangements.
9 . An electrical connector assembly in accordance with claim 8 , wherein once the actuator has been depressed, the compression spring(s) pushes the movable member forwardly to thereby eject the male connector from the female connector.
10 . An electrical connector assembly in accordance with claim 8 , wherein once the compression spring(s) has pushed the movable member into the forwardly biased state, the gate is configured to impede the latch portion from returning to the locked state despite the upward biasing force applied by the locking member biasing arrangement and such that it is reset ready for reconnection of the male and female connectors.
11 . An electrical connector assembly in accordance with claim 1 , wherein a body of the male connector comprises a bore defined therein and extending axially from the insertion end of the male connector to a securing end of the body and wherein the electrical contact arrangement of the male connector is at least partially located within the bore.
12 . An electrical connector assembly in accordance with claim 11 , wherein the securing end comprises a threaded connector.
13 . An electrical connector assembly in accordance with claim 11 , wherein the electrical contact arrangement for one of the male or female connector comprises a pair of inwardly extending pin receiving recesses disposed on the engagement face and wherein the complementary electrical contact arrangement on the other connector comprises a pair of spring loaded pins configured to be received within the pin receiving recesses for creating an electrical connection.
14 . An electrical connector assembly in accordance with claim 11 , wherein the electrical contact arrangement for one of the male or female connector comprises an inwardly extending pin receiving recess disposed on the engagement face surrounded by an insulating ring which is in turn surrounded by an outer conducting ring and wherein the complementary electrical contact arrangement on the other connector comprises a spring loaded pin surrounded by an insulating ring which is in turn surrounded by an outer conducting ring, and wherein when the insertion end of the male connector is received within the open end of the female connector, the spring loaded pin locates in the inwardly extending pin receiving recess and the corresponding outer conducting rings bear upon one another for creating an electrical connection.
15 . An electrical connector assembly in accordance with claim 1 , wherein the electrical connector assembly is configured for electrically connecting a light housed within the female connector to a motorbike fairing.