Dynamic connector for impact resistance
An example dynamic connector as an absorber of impacts, is provided. An example dynamic connector includes a housing configured to engage a substrate. In addition, the example dynamic connector includes a pluggable connector having at least one electrical conductor. In an instance in which the housing is engaged with the substrate, a dynamic connector may allow the pluggable connector to move relative to the substrate while maintaining electrical communication between the at least one electrical conductor and the substrate. In another example, a circuit board assembly including a dynamic connector for impact resistance is provided. Further, an example electronic device including a dynamic connector as an absorber for impacts is provided.
1 . A connector assembly comprising:
a housing configured to engage a substrate;
a pluggable connector comprising:
at least one electrical conductor configured to connect with a conductive contact pad of the substrate when the pluggable connector engages with the substrate;
wherein the pluggable connector is movable relative to the housing,
wherein in an instance in which the housing is engaged with the substrate, the pluggable connector is configured to move relative to the substrate while maintaining electrical communication between the at least one electrical conductor and the substrate, and
wherein one of the pluggable connector or the housing comprises one or more protrusions, and wherein the other of the pluggable connector and the housing comprises one or more slots configured to receive a corresponding one of the one or more protrusions.
2 . The connector assembly of claim 1 , wherein the one or more protrusions comprise a plurality of protrusions; wherein the one or more slots comprise a plurality of slots each configured to receive a corresponding one of the plurality of protrusions; and wherein the plurality of slots are oriented parallel to a common axis.
3 . The connector assembly of claim 2 , wherein the common axis is configured to be parallel to a top surface of the substrate.
4 . The connector assembly of claim 1 , wherein the one or more protrusions are spring-loaded.
5 . The connector assembly of claim 1 , wherein the pluggable connector defines a bottom side configured to be disposed adjacent the substrate, a top side opposite the bottom side, and a plurality of lateral sides between the top side and the bottom side, the connector assembly further comprising one or more housing support springs positioned between one or more of the plurality of lateral sides of the pluggable connector and the housing.
6 . The connector assembly of claim 1 , wherein the at least one electrical conductor further comprises:
a first portion configured to engage and electrically communicate with an electrical device connector; and
a second portion configured to engage the substrate.
7 . The connector assembly of claim 6 , wherein the second portion of the at least one electrical conductor comprises a conductor contact spring configured to maintain electrical communication between the pluggable connector and the substrate while the pluggable connector moves relative to the housing.
8 . A circuit board assembly comprising:
a substrate comprising a printed circuit board; and
a connector assembly comprising:
a housing configured to engage the substrate;
a pluggable connector comprising:
at least one electrical conductor configured to connect with a conductive contact pad of the substrate when the pluggable connector engages with the substrate;
wherein the pluggable connector is movable relative to the housing,
wherein in an instance in which the housing is engaged with the substrate, the pluggable connector is configured to move relative to the substrate while maintaining electrical communication between the at least one electrical conductor and the substrate, and
wherein one of the pluggable connector or the housing comprises one or more protrusions, and wherein the other of the pluggable connector and the housing comprises one or more slots configured to receive a corresponding one of the one or more protrusions.
9 . The circuit board assembly of claim 8 , wherein the substrate comprises a plurality of conductive contact pads comprising at least the conductive contact pad, and wherein the plurality of conductive contact pads are configured to maintain electrical communication between the pluggable connector and the substrate while the pluggable connector moves relative to the housing.
10 . The circuit board assembly of claim 9 , wherein the pluggable connector further comprises a plurality of electrical conductors, each electrical conductor of the plurality of electrical conductors having a first portion configured to engage and electrically communicate with an electrical device connector; and a second portion configured to engage and electrically communicate with the plurality of conductive contact pads of the substrate.
11 . The circuit board assembly of claim 10 , wherein in an instance in which the housing is engaged with the substrate, the plurality of conductive contact pads are disposed within the housing.
12 . The circuit board assembly of claim 10 , wherein the second portion of each electrical conductor of the plurality of electrical conductors comprises a conductor contact spring configured to maintain electrical communication between the pluggable connector and an associated conductive contact pad while the pluggable connector moves relative to the housing; and
wherein the pluggable connector defines a bottom side configured to be disposed adjacent the substrate, a top side opposite the bottom side, and a plurality of lateral sides between the top side and the bottom side, the connector assembly further comprising two or more housing support springs positioned between two or more of the plurality of lateral sides of the pluggable connector and the housing.
13 . An electronic device comprising:
a substrate; and
a connector assembly comprising:
a housing configured to engage the substrate;
a pluggable connector comprising:
at least one electrical conductor configured to connect with a conductive contact pad of the substrate when the pluggable connector engages with the substrate;
wherein the pluggable connector is movable relative to the housing,
wherein in an instance in which the housing is engaged with the substrate, the pluggable connector is configured to move relative to the substrate while maintaining electrical communication between the at least one electrical conductor and the substrate, and
wherein one of the pluggable connector or the housing comprises one or more protrusions, and wherein the other of the pluggable connector and the housing comprises one or more slots configured to receive a corresponding one of the one or more protrusions.
14 . The electronic device of claim 13 , wherein the substrate comprises a plurality of conductive contact pads comprising at least the conductive contact pad, and wherein the plurality of conductive contact pads are configured to maintain electrical communication between the pluggable connector and the substrate while the pluggable connector moves relative to the housing, wherein the at least one electrical conductor further comprises:
a first portion configured to engage and electrically communicate with an electrical device connector; and
a second portion configured to engage the substrate;
wherein the second portion of each electrical conductor of the at least one electrical conductor comprises a conductor contact spring configured to maintain electrical communication between the pluggable connector and an associated conductive contact pad while the pluggable connector moves relative to the housing; and
wherein the pluggable connector defines a bottom side configured to be disposed adjacent the substrate, a top side opposite the bottom side, and a plurality of lateral sides between the top side and the bottom side, the connector assembly further comprising two or more housing support springs positioned between two or more of the plurality of lateral sides of the pluggable connector and the housing.