IP Library Granted Patent US 11,869,735
Granted Patent B2
US 11,869,735 · App. 17/265,116 · Granted Jan 9, 2024

Contactor

Inventors: Mark Stephen Del Giudice (Nutley, GB); John Hamilton Merrill (Burgess Hill, GB)
Assignee: Solid State PLC
H01H50/54H01H50/02H01H50/12H01H50/44
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Quick Facts
Patent No.
US 11,869,735
App. No.
17/265,116
Granted
Jan 9, 2024
Kind
B2
Abstract

A contactor ( 1 ) comprising a first contact member ( 3 ) fixed and connected to a first conductor ( 5 ) of an electrical circuit; a second contact member ( 7 ) connected to a second conductor ( 9 ) of the electrical circuit by a connector ( 11 ); wherein the second contact member moves between a break position, in which the first and second contact members are out of contact, and a make position, in which the first and second contact members are in contact; an actuator assembly ( 15 ) coupled to the second contact member such that actuation of the actuator assembly translates into movement of the second contact member; an electromagnetic arrangement comprising an electromagnetic coil ( 17 ) and at least a part of the actuator assembly, wherein, when the coil is energised, the coil generates a magnetic field and thereby the actuation assembly is caused to move under the influence of the magnetic field, which in turn causes the second contact member to move; a hermetically sealable enclosure ( 2 ); wherein the first and second contact members, the connector, and the actuation assembly are inside the enclosure; and the coil is outside the enclosure.

Claims (31)

1. A contactor comprising:

a first contact member, wherein the first contact member is fixed and connected to a first conductor of an electrical circuit;

a second contact member, wherein the second contact member is connected to a second conductor of the electrical circuit by a connector and wherein the second contact member moves between a break position, in which the first and second contact members are out of contact, and a make position, in which the first and second contact members are in contact;

an actuator assembly, wherein the actuator assembly is coupled to the second contact member such that actuation of the actuator assembly translates into movement of the second contact member;

an electromagnetic arrangement comprising an electromagnetic coil and at least a part of the actuator assembly, wherein, when the coil is energized, the coil generates a magnetic field and thereby the actuation assembly is caused to move under the influence of the magnetic field, which in turn causes the second contact member to move;

an enclosure, wherein the enclosure is hermetically sealable, wherein the first and second contact members, the connector, and the actuation assembly are inside the enclosure; and

wherein the coil is outside the enclosure; and

wherein the actuator assembly comprises a piston movable within the enclosure and having a magnetic element that is in electromagnetic communication with the coil and spaced from the second contact member by the piston coupled to the second contact member.

2. A contactor according to claim 1 , wherein the actuator assembly is actuated by the electromagnetic coil contactlessly.

3. A contactor according to claim 1 , wherein the connector is a deformable conductor.

4. A contactor according to claim 3 , wherein the connector is arranged to deform upon movement of the second contact member within the enclosure.

5. A contactor according to claim 3 , wherein the connector is flexible; optionally, wherein the connector is any one of a flexible bundle, a flexible braid or a spring.

6. A contactor according to claim 3 , wherein the connector is formed by conducting lamination; and/or wherein the connector is reversibly deformable.

7. A contactor according to claim 1 , wherein the second contact member is a single point contactor.

8. A contactor according to claim 1 , wherein the enclosure defines a single chamber and wherein the first and second contact members, the connector, and the actuation assembly are enclosed within the single chamber; optionally, wherein the first and second contact members, the connector, and the actuation assembly are completely confined within the single chamber.

9. A contactor according to claim 1 , wherein the enclosure has first and second opposite ends, wherein the first conductor and the first contact member are located at the first end of the enclosure and the second conductor and at least a portion of the connector are located at the second end of the enclosure; optionally, wherein the second contact member is movable along a longitudinal axis of the enclosure extending between the first end and the second end.

10. A contactor according to claim 1 , wherein the second contact member has a first end proximal to the first contact member and a second end distal of the first contact member and wherein the connector is attached to the second contact member at a location spaced from the first end of the second contact member.

11. A contactor according to claim 1 , wherein the contactor comprises an auxiliary contact mechanism having a signal circuit, wherein the auxiliary contact mechanism is configured to be actuated by the actuator assembly and upon said actuation to activate an external signal indicating the circuit status; optionally, wherein the auxiliary contact mechanism comprises

an auxiliary contact member located within the enclosure and connected to the actuator assembly so as to be movable upon movement of the actuator assembly; and

an auxiliary electrode;

wherein movement of the actuator assembly causes the auxiliary contact member to move between a disengaged position, in which the auxiliary contact member and the auxiliary electrode are out of contact and no electric current is generated in the signal circuit and an engaged position, in which the auxiliary contact member and the auxiliary electrode are in contact and an electric current is generated in the signal circuit, wherein the auxiliary contact mechanism has a signal generating component configured to activate an external signal indicating the circuit status based on the presence or the absence of an electric current in the signal circuit.

12. A contactor according to claim 1 , wherein

the piston is movable within the enclosure along a longitudinal axis of the enclosure.

13. A contactor according to claim 1 , wherein the first contact member is configured to provide a heat sink capable to dissipate heat generated when the first and second contact members are in contact; wherein the heat sink is provided by the first contact member being made larger than the second contact member so as to conduct heat away from the second contact member when the first and second contact members are in contact.

14. A contactor according to claim 1 , wherein a heat sink is provided by a conductive extension of the first contact member, the conductive extension extending within the enclosure in the direction away from the first contact member and the second contact member.

15. A contactor according to claim 10 , wherein a conductive extension lines at least a portion of the enclosure; optionally, wherein the conductive extension is of a complementary shape to at least a portion of an internal wall of the enclosure.

16. A contactor according to claim 1 , wherein the enclosure is directly coupled to the first conductor.

17. A contactor according to claim 1 , wherein a defined and controlled environment is provided within the enclosure.

18. A contactor according to claim 12 , wherein the enclosure is under vacuum or filled with at least one gas.

19. A contactor according to claim 1 , wherein the enclosure is formed from a thermally and electrically conductive material.

20. A contactor according to claim 1 , wherein the enclosure is tubular.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 1, 2023
From: WILLOW TECHNOLOGIES LIMITED
To: SOLID STATE PLC
Reel/Frame 065416/0825 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 3, 2022
From: DEL GIUDICE, MARK STEPHEN; MERRILL, JOHN HAMILTON
To: WILLOW TECHNOLOGIES LIMITED
Reel/Frame 059311/0365 →
Priority Claims (1)
GB 1812605 · Aug 2, 2018 · national
Continuity (1)
Related Publication 20210313132A1 · Oct 7, 2021