IP Library Granted Patent US 10,894,107
Granted Patent B2
US 10,894,107 · App. 15/981,125 · Granted Jan 19, 2021

Fogging system providing atomized solution and ultraviolet light to treatment area

Inventors: Steve Grinstead (Oviedo, FL); Frances Grinstead (Oviedo, FL)
Assignee: GCMG COMPANIES, LLC
A61L2/208A61L2/10A61L2/183A61L2/22A61L2/24A61L9/14A61L9/20A61L2202/11A61L2202/14A61L2202/15A61L2202/16A61L2202/25A61L2209/134
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Quick Facts
Patent No.
US 10,894,107
App. No.
15/981,125
Granted
Jan 19, 2021
Kind
B2
Abstract

A system for disinfecting an enclosed area may include at least one ultraviolet (UV) light and a fogging device which may include a portable housing, an atomizing disinfectant generator carried by the portable housing, and a processor carried by the portable housing. The processor may be configured to initiate a treatment cycle during which the atomizing disinfectant generator dispenses atomized disinfectant fluid into the enclosed area, after a first time period activate the at least one UV light while the atomized disinfectant fluid is being dispensed into the enclosed area, and after a second time period later than the first time period deactivate the at least one UV light and prior to completion of the treatment cycle.

Claims (43)

1. A system for disinfecting an enclosed area comprising:

at least one ultraviolet (UV) light; and

a fogging device comprising

a portable housing,

an atomizing disinfectant generator carried by the portable housing,

an output circuit carried by the portable housing, and

a processor carried by the portable housing and configured to

initiate a disinfection cycle during which the atomizing disinfectant generator dispenses atomized disinfectant fluid into the enclosed area, the disinfection cycle including a saturation phase wherein the atomizing disinfectant generator operates to dispense atomized disinfectant fluid continuously to bring the enclosed area to a target saturation level and a pulse phase wherein the atomizing disinfectant generator operates to intermittently dispense atomized disinfectant fluid to maintain the enclosed area at the target saturation level,

after a first time period, activate the at least one UV light via the output circuit to irradiate the enclosed area and atomized disinfectant while the atomized disinfectant fluid is being dispensed into the enclosed area, and

after a second time period later than the first time period, deactivate the at least one UV light via the output circuit and prior to completion of the disinfection cycle.

2. The system of claim 1 wherein the at least one UV light is carried by the portable housing.

3. The system of claim 1 wherein the portable housing comprises a plurality of sides and a top; and

wherein the at least one UV light comprises a plurality of UV strip lights carried by the sides and top of the portable housing.

4. The system of claim 1 wherein the fogging device further comprises a power outlet carried by the portable housing and coupled to the output circuit; and wherein the processor activates the at least one UV light via the output circuit and the power outlet.

5. The system of claim 1 wherein the output circuit comprises a wireless communications transceiver.

6. The system of claim 1 wherein the disinfectant fluid comprises hydrogen peroxide.

7. The system of claim 1 wherein the atomizing disinfectant generator comprises:

a disinfectant fluid reservoir for holding the disinfectant fluid;

a compressor; and

an atomizing nozzle coupled to the disinfectant fluid reservoir and the compressor.

8. The system of claim 1 wherein the fogging device further comprises a first wireless transceiver carried by the portable housing and coupled to the processor;

and further comprising a wireless communications device comprising a second wireless transceiver configured to remotely communicate with the processor of the fogging device and cause the processor to initiate the treatment cycle.

9. A fogging device comprising:

a portable housing;

an atomizing disinfectant generator carried by the portable housing;

an output circuit carried by the portable housing; and

a processor carried by the portable housing and configured to

initiate a disinfection cycle during which the atomizing disinfectant generator dispenses atomized disinfectant fluid into the enclosed area, the disinfection cycle including a saturation phase wherein the atomizing disinfectant generator operates to dispense atomized disinfectant fluid continuously to bring the enclosed area to a target saturation level and a pulse phase wherein the atomizing disinfectant generator operates to intermittently dispense atomized disinfectant fluid to maintain the enclosed area at the target saturation level,

after a first time period, activate at least one ultraviolet (UV) light via the output circuit to irradiate the enclosed area and atomized disinfectant while the atomized disinfectant fluid is being dispensed into the enclosed area, and

after a second time period later than the first time period, deactivate the at least one UV light via the output circuit and prior to completion of the disinfection cycle.

10. The fogging device of claim 9 wherein the at least one UV light is carried by the portable housing.

11. The fogging device of claim 9 wherein the portable housing comprises a plurality of sides and a top;

and wherein the at least one UV light comprises a plurality of UV strip lights carried by the sides and top of the portable housing.

12. The fogging device of claim 9 further comprising a power outlet carried by the portable housing and coupled to the output circuit; and wherein the processor activates the at least one UV light via the output circuit and the power outlet.

13. The fogging device of claim 9 wherein the output circuit comprises a wireless transceiver.

14. A method for disinfecting an enclosed area using a fogging device and at least one ultraviolet (UV) light, the fogging device comprising a portable housing, an output circuit carried by the portable housing, and an atomizing disinfectant generator carried by the portable housing, the method comprising:

initiating a disinfection cycle during which the atomizing disinfectant generator dispenses atomized disinfectant fluid into the enclosed area, the disinfection cycle including a saturation phase wherein the atomizing disinfectant generator operates to dispense atomized disinfectant fluid continuously to bring the enclosed area to a target saturation level and a pulse phase wherein the atomizing disinfectant generator operates to intermittently dispense atomized disinfectant fluid to maintain the enclosed area at the target saturation level;

after a first time period, activating the at least one UV light via the output circuit to irradiate the enclosed area and atomized disinfectant from the fogging device while the atomized disinfectant fluid is being dispensed into the enclosed area; and

after a second time period later than the first time period, deactivating the at least one UV light via the output circuit from the fogging device and prior to completion of the disinfection cycle.

15. The method claim 14 wherein the at least one UV light is carried by the portable housing.

16. The method claim 14 wherein the portable housing comprises a plurality of sides and a top; and

wherein the at least one UV light comprises a plurality of UV strip lights carried by the sides and top of the portable housing.

17. The method claim 14 wherein the fogging device further comprises a power outlet carried by the portable housing and coupled to the output circuit; and wherein activating comprises activating the at least one UV light via the output circuit and the power outlet.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 16, 2018
From: GRINSTEAD, STEVEN; GRINSTEAD, FRANCES
To: GCMG COMPANIES, LLC
Reel/Frame 046172/0339 →
Continuity (6)
Continuation In Part 15658803 · Jul 25, 2017
Continuation 15043744 · Feb 15, 2016
Provisional Application 62200679 · Aug 4, 2015
Provisional Application 62115871 · Feb 13, 2015
Provisional Application 62506697 · May 16, 2017
Related Publication 20180353631A1 · Dec 13, 2018
Cited By (2)
US 12,636,391 US 12,691,464