Slot Motor Configuration for High Amperage Multi-Finger Circuit Breaker
US-2017271112-A1 · Sep 21, 2017 · US
US12412720B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12412720-B2 |
| Application number | US-202217991307-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 21, 2022 |
| Priority date | Dec 15, 2021 |
| Publication date | Sep 9, 2025 |
| Grant date | Sep 9, 2025 |
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A slot motor for use with secondary contacts in a circuit breaker includes a top slot motor component structured to be attached to a moving arm of the secondary contacts; and a U-shaped bottom slot motor component including a base and a pair of legs extending upward from the base, the U-shaped bottom slot motor component structured to be separated from the top slot motor component by vertical gaps between the top slot motor component and ends of the pair of legs, wherein the slot motor is structured to generate a magnetic field producing a force to maintain the secondary contacts in closed position upon passing high current through the moving arm.
Opening claim text (preview).
What is claimed is: 1. A slot motor for use with secondary contacts in a circuit breaker, comprising: a movable top slot motor component structured to be directly attached to a moving arm of the secondary contacts; and a stationary U-shaped bottom slot motor component including a base and a pair of legs extending upward from the base, the U-shaped bottom slot motor component structured to be separated from the top slot motor component by vertical gaps between the top slot motor component and ends of the pair of legs, wherein the slot motor is structured to generate a magnetic field producing a force to maintain the secondary contacts in a closed position during a high current event. 2. The slot motor of claim 1 , wherein the moving arm is disposed within the U-shaped bottom slot motor component. 3. The slot motor claim 1 , wherein the vertical gaps are in the same plane as a plane in which the moving arm is arranged. 4. The slot motor of claim 1 , wherein the vertical gaps are minimized to increase the magnetic field and the force. 5. The slot motor of claim 1 , wherein the ends of the pair of legs of the U-shaped bottom slot motor component are separated from the moving arm by horizontal gaps. 6. The slot motor of claim 5 , wherein the horizontal gaps have a same size. 7. The slot motor of claim 1 , wherein thicknesses of the top slot motor component and the U-shaped bottom slot motor component are maximized to increase the magnetic field and the force. 8. The slot motor of claim 7 , wherein the top slot motor component includes a center portion in which an actuator for the moving arm is arranged and a remaining portion around the center portion, and the center portion of the top slot motor component has a first thickness and the remaining portion has a second thickness larger than the first thickness. 9. The slot motor of claim 7 , wherein the base of the U-shaped bottom slot motor component comprises a first thickness at a center portion surrounding an end of the actuator and a remaining portion around the center portion, and the center portion has a first thickness and the remaining portion has a second thickness larger than the first thickness. 10. The slot motor of claim of 1 , wherein the bottom slot motor component is held in place to a housing of the circuit breaker via slots on external side surfaces of the pair of the legs. 11. The slot motor of claim 1 , further comprising one or more chamfers to at least one of the top slot motor component or the U-shaped bottom slot motor component, the one or more chamfers structured to make the slot motor to fit within the circuit breaker. 12. The slot motor of claim 1 , wherein the top slot motor component and the U-shaped bottom slot motor component are made of soft magnetic materials. 13. The slot motor of claim 1 , wherein the secondary contacts act as a remote switch for the circuit breaker.
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