Secure locking sockets
View Patent ↗The invention relates generally to a lockable socket. In one example embodiment, to methods, apparatus, and systems to a safe electrical socket, wherein the socket may lock such that the plug, wires or connectors may not be accidently or forcibly removed without activation or deactivation of the locking structures. The locking mechanism may include a cam like actuator and locking mechanism that provides a secure and strong mechanism.
1. A socket, wherein the socket is made of:
a housing, wherein the housing includes:
one or more recesses that form a receptacle, wherein
the recesses are able to each accept a prong from a plug,
wherein the prong electrically contacts a conductor in the recess,
wherein the prong is inserted between two extrusions in the conductor,
a locking mechanism for each receptacle, wherein:
the locking mechanism is able to secure the plug in the receptacle in a locked state and
the locking mechanism is able to allow the plug to be removed from the receptacle in an unlocked state,
the locking mechanism includes one or more of:
an user operable latch extruding from a side of the housing,
wherein the latch is connected to a shaft, wherein
the shaft operably rotates a cam, such that the cam pressures one or more pivoting locking tabs,
wherein the profile of the cam pressing on the locking tabs provide increased force on the locking tabs in the locked state.
2. A socket as in claim 1 , wherein
the housing is a two piece clamshell.
3. A socket as in claim 1 , wherein
the locking mechanism is able to secure the plug in the receptacle from pulling forces on the socket and plug.
4. A socket as in claim 1 , wherein
there is one locking tab for each recess and wherein the locking tabs include:
a pin through the locking tab, captive to the housing, such that the locking tab pivots on the pin when pressured by the cam and
a spring connected to the locking tab that pressures the housing and the locking tab such that the locking tab is pressured to the cam and wherein:
when the locking mechanism is in the locked state the locking mechanism is pressured to remain in the locked state and
when the locking mechanism is in the unlocked state the locking mechanism is pressured to stay in the unlocked state.
5. A socket as in claim 1 , wherein
the locking tab pressures on the conductor extrusions, such that the conductor extrusions hold the prong.
6. A socket as in claim 1 , wherein
the locking tab pressures on the prong, such that locking tab holds the prong.
7. A socket as in claim 1 , wherein
the one or more recesses form a three pole with ground, NEMA 5-15, receptacle.
8. A socket as in claim 1 , wherein
the one or more recesses form a two pole, NEMA 1-15, receptacle.
9. A socket as in claim 1 , wherein
the housing houses one more receptacles with locking mechanisms in a stacked orientation.
10. A socket as in claim 1 , wherein
the housing houses one more receptacles with locking mechanisms in a side by side orientation.
11. A socket as in claim 1 , wherein
the housing houses two stacked oppositely oriented receptacles with locking mechanisms.
12. A socket as in claim 1 , wherein
the housing houses three receptacles with locking mechanisms side by side.
13. A socket as in claim 1 , wherein
the conductors are connected to one or more wire conductors through a crimp or solder connections, wherein wire conductors make up a wire which exits the housing.
14. A socket as in claim 13 , wherein
the housing with locking mechanism which is connected to the wire, which connects to a plug on the opposite end of the wire, such that electricity can flow to and from the prongs held in the locking receptacles and the plug on the opposite end of the wire.
15. A socket as in claim 1 , wherein
the housing is made of a plastic.
16. A socket, wherein the socket is made of:
a housing, wherein the housing includes:
one or more recesses that form a receptacle, wherein
the recesses are able to each accept a prong from a plug,
wherein the prong electrically contacts a conductor in the recess,
wherein the prong is inserted between two extrusions in the conductor, wherein
the conductors are connected to one or more wire conductors through a crimp or solder connections, wherein wire conductors make up a wire which exits the housing,
a locking mechanism for each receptacle, wherein: the locking mechanism includes:
an user operable latch extruding from a side of the housing,
wherein:
the latch is connected to a shaft, wherein
the shaft operably rotates a cam, such that the cam pressures one or more pivoting locking tabs,
the profile of the cam pressing on the locking tabs provide increased force on the locking tabs in the locked state and
the locking mechanism is able to secure the plug in the receptacle from pulling forces on the socket and plug and wherein the locking mechanism is able to secure the plug in the receptacle in a locked state and allow the plug to be removed from the receptacle in an unlocked state.
17. A socket as in claim 16 , wherein
there is one locking tab for each recess and wherein the locking tabs include:
a pin through the locking tab, captive to the housing, such that the locking tab pivots on the pin when pressured by the cam and
a spring connected to the locking tab that pressures the housing and the locking tab such that the locking tab is pressured to the cam and wherein:
when the locking mechanism is in the locked state the locking mechanism is pressured to remain in the locked state and
when the locking mechanism is in the unlocked state the locking mechanism is pressured to stay in the unlocked state.
18. A socket as in claim 16 , wherein
the locking tab pressures on the prongs such that locking tabs hold the prong.
19. A socket as in claim 16 , wherein
the housing houses one more receptacles with locking mechanisms.