IP Library Granted Patent US 9,741,519
Granted Patent B2
US 9,741,519 · App. 15/407,460 · Granted Aug 22, 2017

Lockout relay device

Inventors: Carlos Baltazar Castro Maciel (Soledad de Graciano Sanchez, MX); Marco Antonio Hidrogo Ordaz (Gomez Palacio, MX); Gerardo Rodriguez Najera (San Nicolas de los Garza, MX); Sergio David Esquivel Alvarez (Valle de Campestre, MX); Jose Ramon Martinez Ramirez (San Luis Potosi, MX); Hector Jaime Alba (San Luis Potosi, MX); Jorge Luis Soto Murrieta (San Luis Potosi, MX)
Assignee: Schweitzer Engineering Laboratories, Inc.
H01H71/10H01H50/16H01H50/641H01H71/50
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Quick Facts
Patent No.
US 9,741,519
App. No.
15/407,460
Granted
Aug 22, 2017
Kind
B2
Abstract

This disclosure relates to various embodiments of lockout relay devices. In one embodiment, a lockout relay device may transition between a closed position and a lockout position in response to an action of a deck device. The lockout relay may further be configured to transition from the lockout position to the closed position only in response to one of a manual adjustment and a reset operation. A manual actuator may permit a manual transition of the lockout relay device from the closed position to the lockout position and from the lockout position to the closed position. The lockout relay device may remain in the lockout position until the occurrence of one of a manual adjustment and a reset operation.

Claims (46)

1. A rotary lockout relay device configured to transition from a lockout position to a closed position in response to one of a manual adjustment and a reset operation, the lockout relay device comprising:

a rotary shaft configured to rotate between a first rotational position corresponding to the closed position and a second rotational position corresponding to the lockout position;

a manual actuator coupled to the rotary shaft and configured to permit a manual transition of the lockout relay device from the lockout position to the closed position;

a linear actuation component configured to initiate a reset operation by generation of a linear motion;

a lockout mechanism configured to translate the linear motion of the linear actuation component to a rotational motion of the rotary shaft and to cause the lockout relay device to transition from the lockout position to the closed position, the lockout mechanism comprising:

a coupling component affixed to the linear actuation component;

a protruding component extending from the coupling component;

a rotational arm coupled to the rotary shaft;

wherein the rotational arm is in contact with the protruding component only in the lockout position, and the linear motion causes the protruding component to exert a force on the rotational arm, and the force results in rotation of the rotary shaft from the second position to the first position.

2. The rotary lockout relay device of claim 1 , wherein the linear actuation component comprises a solenoid.

3. The rotary lockout relay device of claim 1 , wherein the linear motion causes the rotational arm to rotate in a direction toward the linear actuation component.

4. The rotary lockout relay device of claim 1 , further comprising a spring configured to compress in response to the linear motion and to exert a restoring force configured to cause the coupling component and protruding component to return to an original position upon termination of the linear motion.

5. The rotary lockout relay device of claim 1 , wherein rotation of the rotary shaft in a first direction is restricted by a first rotation limitation component and rotation of the rotary shaft in a second direction is restricted by a second rotation limitation component.

6. The rotary lockout relay device of claim 5 , wherein one of the first rotation limitation component and the second rotation limitation component comprises the protruding component.

7. The rotary lockout relay device of claim 1 , wherein the linear actuation component is disposed at an angle with respect to a housing of the lockout relay device.

8. The rotary lockout relay device of claim 1 , wherein the rotary shaft is configured to actuate a plurality of rotary deck devices.

9. The rotary lockout relay device of claim 1 , wherein the plurality of deck devices comprise a plurality of contact modules.

10. A rotary lockout relay device configured to transition from a lockout position to a closed position only in response to one of a manual adjustment and a reset operation, the lockout relay device comprising:

a housing;

a linear electrical actuator disposed within the housing and at an angle with respect to the housing, the linear electrical actuator configured to generate a linear motion upon electrical activation;

a rotary shaft coupled to the lockout mechanism;

a lockout mechanism coupled to the rotary shaft and configured to:

cause the lockout relay device to transition to the lockout position based on an action in response to an electrical condition;

cause the lockout relay device to remain in the lockout position until the occurrence of a reset operation initiated by activation of the linear electrical actuator; and

cause the lockout relay device to transition from the lockout position to the closed position in response to the reset operation based on the linear motion of the linear electrical actuator;

wherein the lockout mechanism is in contact with the linear electrical actuator only in the lockout position and the linear motion of the linear electrical actuator is translated to a rotational motion of the rotary shaft due to the angle of the linear electrical actuator with respect to the housing.

11. The rotary lockout relay device of claim 10 , wherein the electrical condition comprises an electrical fault.

12. The rotary lockout relay device of claim 10 , wherein the rotary shaft is further configured to transition at least one deck device from a closed position to a lockout position in response to the electrical condition.

13. The rotary lockout relay device of claim 10 , wherein a first rotational position of the rotary shaft corresponds to the closed position and a second rotational position of the rotary shaft corresponds to the lockout position.

14. The rotary lockout relay device of claim 10 , wherein rotation of the rotary shaft in a first direction is restricted by a first rotation limitation component and rotation of the rotary shaft in a second direction is restricted by a second rotation limitation component.

15. The rotary lockout relay device of claim 14 , wherein the first rotation limitation component is coupled to the housing and the second rotation limitation component is coupled to the linear electrical actuator.

16. The rotary lockout relay device of claim 10 , wherein the linear electrical actuator comprises a solenoid.

17. The rotary lockout relay device of claim 10 , further comprising a rotary arm coupled to the rotary shaft, the rotary arm configured to translate the linear motion to a rotational motion.

18. The rotary lockout relay device of claim 17 , wherein the linear motion causes the rotational arm to rotate in a direction toward the linear actuation component.

19. The rotary lockout relay device of claim 10 , further comprising a spring configured to compress in response to the linear motion and to exert a restoring force configured to cause the linear electrical actuator to return to an original position upon termination of the linear motion.

20. A rotary lockout relay device configured to transition from a lockout position to a closed position in response to one of a manual adjustment and a reset operation, the lockout relay device comprising:

a housing;

a rotary shaft configured to rotate between a first rotational position corresponding to the closed position and a second rotational position corresponding to the lockout position;

an electrical actuator disposed within the housing and at an angle with respect to the housing, the electrical actuator configured to generate a motion upon electrical activation;

a lockout mechanism configured to:

cause the lockout relay to transition to the lockout position based on an action in response to an electrical condition;

cause the rotary shaft to rotate and to transition from the closed position to the second rotational position in response to the electrical condition;

cause the lockout relay device to remain in the lockout position until the occurrence of a reset operation initiated by activation of the electrical actuator;

cause the lockout relay device to transition from the lockout position to the closed position in response to the reset operation based on the motion of the electrical actuator; and

cause the rotary shaft to rotate and to transition from the second rotational position to the closed position in response to the reset operation;

wherein the lockout mechanism is in contact with the electrical actuator only in the lockout position and the motion of the electrical actuator is translated to a rotational motion of the rotary shaft due to the angle of the electrical actuator with respect to the housing.

Assignments (2)
NOTICE OF GRANT OF SECURITY INTEREST IN PATENTS Recorded Jun 4, 2018
From: SCHWEITZER ENGINEERING LABORATORIES, INC.
To: CITIBANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 047231/0253 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 17, 2017
From: CASTRO MACIEL, CARLOS BARTAZAR; HIDROGO ORDAZ, MARCO ANTONIO; RODRIGUEZ NAJERA, GERARDO; ESQUIVEL ALVAREZ, SERGIO DAVID; MARTINEZ RAMIREZ, JOSE RAMON; ALBA, HECTOR JAIME; SOTO MURRIETA, JORGE LUIS
To: SCHWEITZER ENGINEERING LABORATORIES, INC.
Reel/Frame 041378/0903 →
Continuity (2)
Continuation 15000485 · Jan 19, 2016
Related Publication 20170207053A1 · Jul 20, 2017