The present application is a national stage filing of PCT/CN2018/124405, filed Dec. 27, 2018, which claims priority under 35 U.S.C. ยง 119 to CN Patent Application No. 201711461106.1, filed Dec. 28, 2017.
The present invention relates to an electrical connector, and more particularly to an electrical connector with a position assurance member.
In the technical field of electrical connection, a lever-type locking system has been used for electrically connecting mating parts of an electrical device together.
The lever-type electrical connection system generally has two electrical connection members mating with each other, one of which is provided with a pivoting lever, and when the two electrical connection members are engaged together, the lever pivots to a locked position, and the lever enables the two electrical connection members to be relatively locked in a fitting position. In addition, the electrical connection system is further provided with a position retaining member, and the position retaining member is used to lock the position of the lever, thereby ensuring that the electrical connection members that fit together will not be disengaged so as to further improve the connection reliability of the electrical connection system.
These electrical connection systems are widely applied in various vehicles. However, due to the limited narrow installation space in the vehicle, the assembly of the existing lever-locked electrical connection systems is often limited by the environment. Therefore, there is still a need to improve the existing lever-type electrical connection system such that it can be more flexibly applied in a limited space environment.
To overcome the shortcomings of the prior art, the present invention provides an electrical connector, comprising: a housing, with a locking portion provided thereon; a locking lever pivotally mounted on the housing, the locking lever pivoting between a first position and a second position, and the locking lever having a first arm and a second arm connected to opposite sides of the housing and a beam portion extending between the first arm and the second arm, with a channel being provided in the beam portion; and a connector position assurance member, the connector position assurance member having a locking edge, the connector position assurance member being inserted into the channel from an open end of the channel, and the connector position assurance member having a pre-installed position and a locked position in the channel, wherein when the locking lever pivots to the second position and the position assurance member enters into the locked position, the locking edge abuts against the locking portion in the channel, thereby locking a rotational motion of the locking lever.
According to one aspect of the present invention, the channel has a top, a bottom, and two open side ends, and the connector position assurance member is optionally inserted from either of the two open side ends.
According to another aspect of the present invention, the bottom of the channel has an opening, and when the locking lever pivots to the second position, the locking portion is received into the channel through the opening.
According to yet another aspect of the present invention, the connector position assurance member has two locking edges arranged in an opposite manner, each of the locking edges comprises a notch, and when the connector position assurance member is in the pre-installed position in the channel, one of the notches is aligned with the locking portion and receives the locking portion.
According to yet another aspect of the present invention, a top side of the connector position assurance member has a mounting portion, and the top of the channel is provided with a mounting hole that fits with the mounting portion. A bottom side of the connector position assurance member is provided with an elastic holding portion, the bottom of the channel has a limiting portion and an avoidance portion, when the connector position assurance member is in the pre-installed position, the elastic holding portion is fitted into the limiting portion, and when the connector position assurance member moves to the locked position, the elastic holding portion is fitted into the avoidance portion.
According to yet another aspect of the present invention, the housing is provided with a trigger protrusion, and when the locking lever with the connector position assurance member rotates to the second position and the connector position assurance member is in the pre-installed position, the trigger protrusion is received into the limiting portion and abuts against the elastic holding portion, such that the elastic holding portion moves out of the limiting portion.
According to yet another aspect of the present invention, the housing is provided with two trigger protrusions, and the two trigger protrusions are symmetrically arranged with respect to the locking portion.
According to yet another aspect of the present invention, two avoidance portions are provided, the avoidance portions are symmetrically arranged on two sides of the limiting portion with respect to the limiting portion, and the avoidance portions and the limiting portion are arranged on a straight line.
Further, one end of the connector position assurance member is provided with a tab as an operation portion. The other end thereof, as an insertion end, can flexibly insert through the channel end.
According to the present invention, the connector position assurance member is substantially entirely accommodated in the channel of the lever, with the position where the locking edge of the connector position assurance member is in contact with the locking portion being also in the channel of the beam portion of the locking lever. Therefore, the connector has a compact structure without increasing the peripheral size thereof.
In the present invention, both ends of the channel of the locking lever are open, with the mounting hole, the limiting portion and the avoidance portion therein being all symmetrically arranged with respect to the center line of the channel, and the trigger protrusions being also symmetrically arranged on the housing of the connector. In this way, the connector position assurance member can be optionally inserted from either end of the channel, and one corresponding trigger protrusion on the housing can abut against the elastic holding portion on the bottom side of the connector position assurance member so as to trigger the movement of the connector position assurance member from the pre-installed position to the locked position. The flexibility of installation of the connector position assurance member is greatly improved. Especially in a narrow space, such as in a vehicle, the direction of insertion of the connector position assurance member can be changed at will according to the actual use environment of the electrical connector.
Both the trigger protrusions and the locking portion are received inside the channel, which is thus possible to avoid the failure of these parts due to accidental touch.
The present invention will be further described below in conjunction with particular embodiments and the accompanying drawings, and more details are explained in the following description for the ease of fully understanding the present invention; however, the present invention can obviously be implemented in various different manners than that described herein, a person skilled in the art can make an similar extension and deduction without departing from the connotation of the present invention according to the practical applications, and therefore the scope of protection of the present invention should not be limited to the content of the particular embodiments herein.
As shown in
The locking lever 103 of the electrical connector 10 is mounted onto a housing 101 of the electrical connector 10 by means of a pivot structure, and as shown in
As shown in
According to an embodiment of the present invention, the locking lever 103 is particularly provided with a connector position assurance member 102, as shown in
The connector position assurance member 102 has two positions in the channel 1032: a pre-installed position and a locked position. When the connector position assurance member 102 is in the pre-installed position, as shown in
Referring to
In this embodiment, the limiting portion 1034 is an elongated hole centrally arranged at the bottom of the beam portion 1036, and the avoidance portion is a square hole mating with an elastic holding portion 1024.
As an alternative, the limiting portion 1034 may also be configured in another form, such as two symmetrically arranged square holes. In addition, the opening 1037 receiving the locking portion 1012 and the limiting portion 1034 receiving the elastic holding portion 1024 may also be independently arranged at the bottom of the channel 1032.
Referring to
In addition, one end of the connector position assurance member 102 is provided with a tab 1025, as an operation portion, suitable for being pushed by an operator with a finger.
In addition, as can be seen from
Next, the locking operation of the electrical connector 10 of the present invention will be described in detail with reference to
Before the two connectors 10, 20 are mated, the locking lever 103 is in the first position as shown in
At this moment, the connector position assurance member 102 may have been inserted into the pre-installed position of the channel 1032 of the beam portion 1036.
When the locking lever 103 rotates to the second position, the trigger protrusion 1011 on the housing 101 is received into the limiting portion 1034 at the bottom of the channel 1032 and abuts against the elastic holding portion 1024 on the connector position assurance member 102, and the elastic holding portion 1024 is elastically deformed towards the interior of the channel 1032 and moves out of the limiting portion 1034. Next, an operator pushes the connector position assurance member 102 in a direction along the channel of the beam portion 1036, such that the elastic holding portion 1024 is snapped into the bottom avoidance portion of the channel 1032. At this moment, the locking edge 1021 on one side of the connector position assurance member 102 abuts against the locking portion 1012, thereby locking the locking lever 103 in the second position.
According to the present invention, the connector position assurance member 102 is substantially entirely accommodated in the channel 1032 of the lever, with the position where the locking edge 1021 of the connector position assurance member 102 is in contact with the locking portion 1012 being also in the channel 1032 of the beam portion 1036 of the locking lever 103. Therefore, the connector has a compact structure without increasing the peripheral size thereof.
In the present invention, both ends of the channel 1032 of the locking lever 103 are open, with the mounting hole, the limiting portion 1034 and the avoidance portion 1035 therein being all symmetrically arranged with respect to the center line of the channel 1032, and the trigger protrusions 1011 being also symmetrically arranged on the housing of the connector. In this way, the connector position assurance member 102 can be optionally inserted from either end of the channel 1032, and one corresponding trigger protrusions 1011 on the housing 101 can abut against the elastic holding portion 1024 on the bottom side of the connector position assurance member 102 so as to trigger the movement of the connector position assurance member 102 from the pre-installed position to the locked position. The flexibility of installation of the connector position assurance member 102 is greatly improved. Especially in a narrow space, such as in a vehicle, using the electrical connector according to the present invention, the direction of insertion of the connector position assurance member 102 can be changed at will according to the actual use environment of the electrical connector.
Both the trigger protrusions 1011 and the locking portion 1012 are received inside the channel 1032, which is thus possible to avoid the failure of these parts due to accidental touch.
The present invention has been disclosed above in terms of several embodiments which, however, are not intended to limit the present invention, and any person skilled in the art could make possible changes and alterations without departing from the spirit and scope of the present invention. Hence, any alterations, equivalent changes and modifications which are made to the above-mentioned embodiments in accordance with the technical substance of the present invention and without departing from the content of the technical solutions of the present invention, will fall within the scope of protection defined by the claims of the present invention.
Number | Date | Country | Kind |
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201711461106.1 | Dec 2017 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2018/124405 | 12/27/2018 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2019/129149 | 7/4/2019 | WO | A |
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