IP Library Granted Patent US 11,042,129
Granted Patent B2
US 11,042,129 · App. 16/432,701 · Granted Jun 22, 2021

Redundant wireless safety system for manufacturing environment

Inventor: Eric M. Moran (Camano Island, WA)
Assignee: Control Dynamics, Inc.
G05B9/03B66F11/042H04W4/80B66F9/0755B66F17/006
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Quick Facts
Patent No.
US 11,042,129
App. No.
16/432,701
Granted
Jun 22, 2021
Kind
B2
Abstract

Systems and methods for a redundant wireless safety system that provides a second level of safety protocol when a worker is exposed to a more dangerous work environment. In an embodiment, such a machine may be configured to perform a specific manufacturing function wherein the machine may include first and second transceivers for maintaining enabling signals for functionality of the machine. The system may further include a base station (e.g., remote control) configured to operate in conjunction with the machine that in turn includes third and fourth transceivers also configured to maintain enabling signals for machine functionality. Machine functionality may be interrupted by an interrupt switch disposed in the machine. That is, the interrupt switch may be configured to enable functionality of the machine if and only if the first transceiver maintains periodic communication with the third transceiver and if the second transceiver maintains periodic communication with the fourth transceiver.

Claims (34)

1. A safety system, comprising:

a machine configured to perform a manufacturing function;

a base station configured to operate in conjunction with the machine;

a first transceiver disposed in the machine;

a second transceiver disposed in the machine;

a third transceiver disposed in the base station;

a fourth transceiver disposed in the base station; and

an interrupt switch disposed in the machine and configured to enable functionality of the machine if and only if the first transceiver maintains periodic communication with the third transceiver and if the second transceiver maintains periodic communication with the fourth transceiver.

2. The safety system of claim 1 , further comprising a light disposed in the machine configured to be illuminated if and only if the first transceiver maintains periodic communication with the third transceiver and if the second transceiver maintains periodic communication with the fourth transceiver.

3. The safety system of claim 1 , further comprising a contact disposed in the machine configured to be closed if and only if the first transceiver maintains periodic communication with the third transceiver and if the second transceiver maintains periodic communication with the fourth transceiver.

4. The safety system of claim 1 , further comprising a light disposed in the base station configured to be illuminated if and only if the first transceiver maintains periodic communication with the third transceiver and if the second transceiver maintains periodic communication with the fourth transceiver.

5. The safety system of claim 1 , further comprising a contact disposed in the base station configured to be closed if and only if the first transceiver maintains periodic communication with the third transceiver and if the second transceiver maintains periodic communication with the fourth transceiver.

6. The safety system of claim 1 , wherein the communication further comprises a near-field electronic communication.

7. The safety system of claim 1 , wherein the communication further comprises a wireless electronic communication.

8. The safety system of claim 1 , wherein the communication further comprises an electronic communication compatible with an IEEE 1492 standard.

9. The safety system of claim 1 , wherein machine further comprises a personnel lift system.

10. The safety system of claim 1 , wherein the machine further comprises a harness having a multiple verification point system that is configured to enable functionality of the first transceiver when the multiple points of verification are satisfied.

11. The safety system of claim 1 , wherein the machine further comprises a harness having a multiple verification point system that is configured to enable functionality of the second transceiver when the multiple points of verification are satisfied.

12. The safety system of claim 1 , wherein the periodic communication comprises a plurality of handshake pings every second wherein a threshold of missed handshake pings will trigger an interrupt.

13. A safety system, comprising:

a machine configured to perform a manufacturing function;

a safety rail configured to operate in conjunction with the machine;

a first transceiver disposed in the machine;

a second transceiver disposed in the machine;

a third transceiver disposed in the safety rail;

a fourth transceiver disposed in the safety rail; and

an interrupt switch disposed in the machine and configured to enable functionality of the machine if and only if the first transceiver maintains periodic communication with the third transceiver and if the second transceiver maintains periodic communication with the fourth transceiver.

14. The safety system of claim 13 , wherein the communication further comprises a near-field electronic communication.

15. The safety system of claim 13 , wherein the communication further comprises a wireless electronic communication.

16. The safety system of claim 13 , wherein the communication further comprises an electronic communication compatible with an IEEE 1492 standard.

17. The safety system of claim 13 , wherein machine further comprises a personnel lift system.

18. The safety system of claim 13 , wherein the machine further comprises a harness having a multiple verification point system that is configured to enable functionality of the first transceiver when the multiple points of verification are satisfied.

19. The safety system of claim 13 , wherein the machine further comprises a harness having a multiple verification point system that is configured to enable functionality of the second transceiver when the multiple points of verification are satisfied.

20. The safety system of claim 13 , wherein the periodic communication comprises a plurality of handshake pings every second wherein a threshold of missed handshake pings will trigger an interrupt.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 14, 2019
From: MORAN, ERIC M.
To: CONTROL DYNAMICS INC.
Reel/Frame 049475/0613 →
Continuity (1)
Related Publication 20200387118A1 · Dec 10, 2020
Cited By (2)
US 12,371,311 US 12,428,278