IP Library › Granted Patent US 10,478,515
Granted Patent B2
US 10,478,515 · App. 15/622,004 · Granted Nov 19, 2019

Multi wave sterilization system

Inventors: Michael Shur (Latham, NY); Maxim S. Shatalov (Columbia, SC); Timothy James Bettles (Columbia, SC); Yuri Bilenko (Columbia, SC); Saulius Smetona (Concord, NC); Alexander Dobrinsky (Loudonville, NY); Remigijus Gaska (Columbia, SC)
Assignee: Sensor Electronic Technology, Inc.
A61L2/10A61L9/20A61L2202/14F25D3/00F25D3/04G05D23/00
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 10,478,515
App. No.
15/622,004
Granted
Nov 19, 2019
Kind
B2
Abstract

Ultraviolet radiation is directed within an area. The target wavelength ranges and/or target intensity ranges of the ultraviolet radiation sources can correspond to at least one of a plurality of selectable operating configurations including a virus destruction operating configuration and a bacteria disinfection operating configuration. Each configuration can include a unique combination of the target wavelength range and target intensity range.

Claims (39)

1. A system comprising:

a set of ultraviolet radiation sources configured to generate ultraviolet radiation directed within a storage area; and

a monitoring and control system for managing the storage area by performing a method comprising:

enabling selection of each of a plurality of selectable operating configurations, the plurality of selectable operating configurations including: a virus destruction operating configuration, a bacteria disinfection operating configuration, and a condition monitoring operating configuration, wherein each operating configuration includes a unique combination of a target wavelength, a target intensity range, and a target pattern for the ultraviolet radiation;

monitoring a set of current conditions of at least one of: the storage area or a set of items located in the storage area, wherein the set of current conditions includes a visual appearance of the at least one of: the storage area or the set of items located in the storage area; and

controlling ultraviolet radiation generated by the set of ultraviolet radiation sources using a selected one of the plurality of selectable operating configurations and the set of current conditions.

2. The system of claim 1 , further comprising at least one of: a visual camera or a chemical sensor for acquiring data used in monitoring the set of current conditions.

3. The system of claim 1 , wherein a target intensity range of the ultraviolet radiation in the condition monitoring operating configuration is lower than both: a target intensity range of the ultraviolet radiation in the virus destruction operating configuration and a target intensity range of the ultraviolet radiation in the bacteria disinfection operating configuration.

4. The system of claim 3 , wherein the target intensity range of the virus destruction operating configuration is higher than the target intensity range of the ultraviolet radiation in the bacteria disinfection operating configuration.

5. The system of claim 1 , wherein the set of ultraviolet radiation sources includes a first ultraviolet radiation source and a second ultraviolet radiation source configured to emit ultraviolet radiation of different peak wavelengths.

6. The system of claim 5 , wherein the monitoring and control system is configured to independently control the first ultraviolet radiation source and the second ultraviolet radiation source.

7. The system of claim 1 , further comprising an ultraviolet radiation detector configured to detect a level of ultraviolet radiation within the storage area, wherein the monitoring and control system processes data corresponding to the level of ultraviolet radiation to determine a presence of at least one of: bacteria or a virus.

8. The system of claim 1 , wherein at least one ultraviolet radiation source in the set of ultraviolet radiation sources is configured to generate ultraviolet radiation to excite a fluorescence, wherein the monitoring and control system processes data corresponding to a level of fluorescence to determine a presence of at least one of: bacteria or microorganisms.

9. The system of claim 1 , further comprising a catalyst located within the storage area configured to enhance a suppression of biological activity.

10. A storage device comprising:

a storage area configured to store at least one item;

a set of ultraviolet radiation sources configured to generate ultraviolet radiation directed within the storage area; and

a monitoring and control system for managing the storage area by performing a method comprising:

enabling selection of each of a plurality of selectable operating configurations, the plurality of selectable operating configurations including: a virus destruction operating configuration, a bacteria disinfection operating configuration, and a condition monitoring operating configuration, wherein each operating configuration includes a unique combination of a target wavelength, a target intensity range, and a target pattern for the ultraviolet radiation;

monitoring a set of current conditions of at least one of: the storage area or a set of items located in the storage area, wherein the set of current conditions includes a visual appearance of at least one of: the storage area or the set of items located in the storage area; and

controlling ultraviolet radiation generated by the set of ultraviolet radiation sources using a selected one of the plurality of selectable operating configurations and the set of current conditions.

11. The storage device of claim 10 , further comprising at least one of: a visual camera or a chemical sensor for acquiring data used in monitoring the set of current conditions.

12. The storage device of claim 10 , wherein the set of current conditions further includes: a presence of biological activity, a location of the biological activity, a determination of a type of the biological activity, and a concentration of the biological activity.

13. The storage device of claim 10 , wherein the monitoring further includes analyzing the set of current conditions over a period of time, such that the set of current conditions includes an estimated amount of time an organism has been in a growth phase, a growth rate of biological activity, and a rate with which an area including the biological activity is spreading.

14. The storage device of claim 10 , further comprising a set of ultraviolet radiation detectors configured to detect a level of ultraviolet radiation within the storage area, wherein the monitoring and control system processes data corresponding to the level of ultraviolet radiation to determine a presence of at least one of: bacteria or a virus.

15. The storage device of claim 14 , wherein the set of ultraviolet radiation detector includes at least one ultraviolet photodiode and the set of ultraviolet radiation sources includes at least one ultraviolet light emitting diode.

16. The storage device of claim 10 , wherein at least one ultraviolet radiation source in the set of ultraviolet radiation sources is configured to generate ultraviolet radiation to excite a fluorescence, wherein the monitoring and control system processes data corresponding to a level of fluorescence to determine a presence of at least one of: bacteria or microorganisms.

17. The storage device of claim 10 , further comprising a catalyst located within the storage area configured to enhance a suppression of biological activity.

18. A refrigeration device comprising:

a storage area configured to store at least one refrigerated item;

a component configured to control at least one environmental condition of the storage area, wherein the at least one environmental condition includes at least one of:

a temperature, a humidity, a gas convection, or a fluid convection;

a set of ultraviolet radiation sources configured to generate ultraviolet radiation directed within the storage area; and

a monitoring and control system for managing the storage area by performing a method comprising:

enabling selection of each of a plurality of selectable operating configurations, the plurality of selectable operating configurations including: a virus destruction operating configuration, a bacteria disinfection operating configuration, and a condition monitoring operating configuration, wherein each operating configuration includes a unique combination of a target wavelength, a target intensity range, and a target pattern for the ultraviolet radiation;

monitoring a set of current conditions of at least one of: the storage area or a set of items located in the storage area, wherein the set of current conditions includes a change in visual appearance of at least one of: the storage area or the set of items located in the storage area; and

controlling ultraviolet radiation generated by the set of ultraviolet radiation sources using a selected one of the plurality of selectable operating configurations and the set of current conditions.

19. The refrigeration device of claim 18 , further comprising a set of ultraviolet radiation detectors configured to detect a level of ultraviolet radiation within the storage area, wherein the monitoring and control system processes data corresponding to the level of ultraviolet radiation to determine a presence of at least one of: bacteria or a virus.

20. The refrigeration device of claim 18 , wherein at least one ultraviolet radiation source in the set of ultraviolet radiation sources is configured to generate ultraviolet radiation to excite a fluorescence, wherein the monitoring and control system processes data corresponding to a level of fluorescence to determine a presence of at least one of: bacteria or microorganisms.

Continuity (3)
Continuation 14012652 · Aug 28, 2013
Provisional Application 61694235 · Aug 28, 2012
Related Publication 20170340761A1 · Nov 30, 2017
Cited By (2)
US 12,239,752 US 12,409,242