IP Library › Granted Patent US 10,923,301
Granted Patent B2
US 10,923,301 · App. 16/182,394 · Granted Feb 16, 2021

Double throw switch operating mechanism

Inventors: Cameron Alan Esther (Lebanon, MO); Kevin Lee Moore (Lebanon, MO); Kevin Duane Wade (Lebanon, MO)
Assignee: The Durham Company
H01H21/36H01H1/2041H01H21/30H01H21/60H01H21/06H01H2221/072H01H2221/088H01H2225/01
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,923,301
App. No.
16/182,394
Granted
Feb 16, 2021
Kind
B2
Abstract

A switching mechanism includes an actuator rotatable between an off position and an on position; and a timing disc assembly that includes an actuator disc, a bias disc, and a switch disc arranged in a stack. The actuator disc is rotatably connected to the actuator. The bias disc is connected to at least one biasing mechanism. The switch disc is connected to a switch. The actuator disc is configured to engage the bias disc such that the actuator disc is configured to rotate the bias disc to an overcenter position of the at least one biasing mechanism. The overcenter position of the at least one biasing mechanism is configured to rotate the bias disc such that engagement between the bias disc and the switch disc is configured to rotate the switch disc between a closed position and an open position of the switch.

Claims (28)

1. A switching mechanism for actuating a switch, the switching mechanism comprising:

an actuator rotatable between an off position and an on position; and

a timing disc assembly comprising an actuator disc, a bias disc, and a switch disc arranged in a stack such that the actuator disc, the bias disc, and the switch disc overlay each other, the actuator disc being rotatably connected to the actuator such that the actuator disc is configured to rotate with the actuator, the actuator disc comprising a first actuator flange and a second actuator flange, the bias disc being connected to at least one biasing mechanism, the bias disc comprising a first bias flange and a second bias flange, the switch disc being connected to the switch, the switch disc comprising a switch flange, the first actuator flange of the actuator disc being configured to engage the first bias flange of the bias disc such that the actuator disc is configured to rotate the bias disc to an overcenter position of the at least one biasing mechanism, wherein the overcenter position of the at least one biasing mechanism is configured to rotate the bias disc such that engagement between the first bias flange of the bias disc and the switch flange of the switch disc is configured to rotate the switch disc from an open position of the switch to a closed position of the switch, the second actuator flange of the actuator disc being configured to engage the second bias flange of the bias disc such that the actuator disc is configured to rotate the bias disc to the overcenter position of the at least one biasing mechanism, wherein the overcenter position of the at least one biasing mechanism is configured to rotate the bias disc such that engagement between the second bias flange of the bias disc and the switch flange of the switch disc is configured to rotate the switch disc from the closed position to the open position of the switch.

2. The switching mechanism of claim 1 , wherein the bias disc is a first bias disc and the closed position of the switch is a first closed position, the timing disc assembly further comprising a second bias disc arranged within the stack and connected to the at least one biasing mechanism, the actuator disc being configured to engage the second bias disc such that the actuator disc is configured to rotate the second bias disc to the overcenter position of the at least one biasing mechanism, the overcenter position of the at least one biasing mechanism being configured to rotate the second bias disc such that engagement between the second bias disc and the switch disc is configured to rotate the switch disc between the open position and a second closed position of the switch.

3. The switching mechanism of claim 1 , wherein the bias disc is a first bias disc, the at least one biasing mechanism is a first biasing mechanism, and the closed position of the switch is a first closed position, the timing disc assembly further comprising a second bias disc arranged within the stack and connected to a second biasing mechanism, the actuator disc being configured to engage the second bias disc such that the actuator disc is configured to rotate the second bias disc to an overcenter position of the second biasing mechanism, the overcenter position of the second biasing mechanism being configured to rotate the second bias disc such that engagement between the second bias disc and the switch disc is configured to rotate the switch disc between the open position and a second closed position of the switch.

4. The switching mechanism of claim 1 , wherein the actuator disc is arranged within the stack between the bias disc and the switch disc.

5. The switching mechanism of claim 1 , further comprising at least one interlock device operatively connected to the actuator such that the at least one interlock device is configured to at least one of prevent the actuator from being rotated from the off position to the on position when a door of an enclosure is open or prevent the door from being opened when the actuator is in the on position.

6. The switching mechanism of claim 1 , wherein the actuator comprises a lever having a handle.

7. The switching mechanism of claim 1 , wherein the at least one biasing mechanism comprises a helical spring.

8. A switch assembly comprising:

a switch having an open position and a closed position; and

a switching mechanism operatively connected to the switch for actuating the switch between the open position and the closed position, the switching mechanism comprising:

an actuator rotatable between an off position wherein the switch is in the open position and an on position wherein the switch is in the closed position; and

a timing disc assembly comprising an actuator disc, a bias disc, and a switch disc arranged in a stack such that the actuator disc, the bias disc, and the switch disc overlay each other, the actuator disc being rotatably connected to the actuator such that the actuator disc is configured to rotate with the actuator, the actuator disc comprising a first actuator flange and a second actuator flange, the bias disc being connected to at least one biasing mechanism, the bias disc comprising a first bias flange and a second bias flange, the switch disc being connected to the switch, the switch disc comprising a switch flange, the first actuator flange of the actuator disc being configured to engage the first bias flange of the bias disc such that the actuator disc is configured to rotate the bias disc to an overcenter position of the at least one biasing mechanism, wherein the overcenter position of the at least one biasing mechanism is configured to rotate the bias disc such that engagement between the first bias flange of the bias disc and the switch flange of the switch disc is configured to rotate the switch disc from the open position to the closed position of the switch, the second actuator flange of the actuator disc being configured to engage the second bias flange of the bias disc such that the actuator disc is configured to rotate the bias disc to the overcenter position of the at least one biasing mechanism, wherein the overcenter position of the at least one biasing mechanism is configured to rotate the bias disc such that engagement between the second bias flange of the bias disc and the switch flange of the switch disc is configured to rotate the switch disc from the closed position to the open position of the switch.

9. The switch assembly of claim 8 , wherein the bias disc is a first bias disc and the closed position of the switch is a first closed position, the timing disc assembly further comprising a second bias disc arranged within the stack and connected to the at least one biasing mechanism, the actuator disc being configured to engage the second bias disc such that the actuator disc is configured to rotate the second bias disc to an overcenter position of the at least one biasing mechanism, wherein the overcenter position of the at least one biasing mechanism is configured to rotate the second bias disc such that engagement between the second bias disc and the switch disc is configured to rotate the switch disc between the open position and a second closed position of the switch.

10. The switch assembly of claim 8 , wherein the bias disc is a first bias disc, the at least one biasing mechanism is a first biasing mechanism, and the closed position of the switch is a first closed position, the timing disc assembly further comprising a second bias disc arranged within the stack and connected to a second biasing mechanism, the actuator disc being configured to engage the second bias disc such that the actuator disc is configured to rotate the second bias disc to an overcenter position of the second biasing mechanism, the overcenter position of the second biasing mechanism being configured to rotate the second bias disc such that engagement between the second bias disc and the switch disc is configured to rotate the switch disc between the open position and a second closed position of the switch.

11. The switch assembly of claim 8 , wherein the actuator disc is arranged within the stack between the bias disc and the switch disc.

12. The switch assembly of claim 8 , wherein the switching mechanism comprises at least one interlock device operatively connected to the actuator such that the at least one interlock device is configured to at least one of prevent the actuator from being rotated from the off position to the on position when a door of an enclosure is open or prevent the door from being opened when the actuator is in the on position.

13. The switch assembly of claim 8 , wherein the actuator comprises a lever having a handle.

14. The switch assembly of claim 8 , wherein the at least one biasing mechanism comprises a helical spring.

15. A switch assembly comprising:

a switch comprising a first set of electrical contacts and a second set of electrical contacts, the switch having an off position wherein the first set of electrical contacts is open and the second set of electrical contacts is open, the switch having a first closed position wherein the first set of electrical contacts is closed and the second set of electrical contacts is open, the switch having a second closed position wherein the first set of electrical contacts is open and the second set of electrical contacts is closed; and

a switching mechanism operatively connected to the switch for actuating the switch between the off position and the first closed position and the second closed position, the switching mechanism comprising an actuator and a timing disc assembly, wherein the timing disc assembly comprises an actuator disc, a bias disc, and a switch disc arranged in a stack such that the actuator disc, the bias disc, and the switch disc overlay each other, the actuator disc being rotatably connected to the actuator such that the actuator disc is configured to rotate with the actuator, the actuator disc comprising a first actuator flange and a second actuator flange, the bias disc comprising a first bias flange and a second bias flange, the switch disc being connected to the switch, the switch disc comprising a switch flange, the actuator disc being configured to rotate the switch disc such that the switch disc moves the switch between the off position and the first closed position and the second closed position of the switch, the first actuator flange being configured to engage the first bias flange and the first bias flange is configured to engage the switch flange to rotate the switch disc from the off position to the first closed position of the switch, the second actuator flange being configured to engage the second bias flange and the second bias flange is configured to engage the switch flange to rotate the switch disc from the first closed position to the off position of the switch.

16. The switch assembly of claim 15 , wherein the bias disc is a first bias disc and the timing disc assembly further comprises a second bias disc arranged within the stack, the first and second bias discs being connected to at least one biasing mechanism, the actuator disc being configured to engage the first bias disc such that the actuator disc is configured to rotate the first bias disc to an overcenter position of the at least one biasing mechanism, the overcenter position of the at least one biasing mechanism being configured to rotate the first bias disc such that engagement between the first bias disc and the switch disc is configured to rotate the switch disc between the off position and the first closed position of the switch, the actuator disc being configured to engage the second bias disc such that the actuator disc is configured to rotate the second bias disc to an overcenter position of the at least one biasing mechanism, the overcenter position of the at least one biasing mechanism being configured to rotate the second bias disc such that engagement between the second bias disc and the switch disc is configured to rotate the switch disc between the off position and the second closed position of the switch.

17. The switch assembly of claim 15 , wherein the bias disc is a first bias disc and the timing disc assembly further comprises a second bias disc arranged within the stack, the first and second bias discs being connected to first and second biasing mechanisms, respectively, the actuator disc being configured to engage the first bias disc such that the actuator disc is configured to rotate the first bias disc to an overcenter position of the first biasing mechanism, the overcenter position of the first biasing mechanism being configured to rotate the first bias disc such that engagement between the first bias disc and the switch disc is configured to rotate the switch disc between the off position and the first closed position of the switch, the actuator disc being configured to engage the second bias disc such that the actuator disc is configured to rotate the second bias disc to an overcenter position of the second biasing mechanism, the overcenter position of the second biasing mechanism being configured to rotate the second bias disc such that engagement between the second bias disc and the switch disc is configured to rotate the switch disc between the off position and the second closed position of the switch.

18. The switch assembly of claim 15 , wherein the switching mechanism comprises at least one interlock device operatively connected to the actuator such that the at least one interlock device is configured to at least one of prevent the actuator from being rotated when a door of an enclosure is open or prevent the door from being opened when the switch is in the first closed position or the second closed position.

19. The switch assembly of claim 15 , wherein the actuator comprises a lever.

20. The switch assembly of claim 15 , wherein the timing disc assembly further comprises at least one biasing mechanism.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 6, 2018
From: ESTHER, CAMERON ALAN; MOORE, KEVIN LEE; WADE, KEVIN DUANE
To: THE DURHAM CO.
Reel/Frame 047438/0548 →
Continuity (2)
Provisional Application 62582469 · Nov 7, 2017
Related Publication 20190139725A1 · May 9, 2019
Cited By (1)
US 12,354,816