IP Library Granted Patent US 12,296,058
Granted Patent B2
US 12,296,058 · App. 17/841,103 · Granted May 13, 2025

Room and area disinfection utilizing pulsed light

Inventors: Mark A. Stibich (Santa Fe, NM); Charles Dale (San Antonio, TX); Edward C. Guerrero, Jr. (San Antonio, TX); Paul P. Froutan (Katy, TX); Sarah E. Simmons (San Antonio, TX); Boris Ciorneiu (Great Falls, VA)
Assignee: Xenex Disinfection Services Inc.
A61L2/10A23B2/53A61L2/24A23V2002/00A61L2202/14
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Quick Facts
Patent No.
US 12,296,058
App. No.
17/841,103
Granted
May 13, 2025
Kind
B2
Abstract

Room and/or area disinfection apparatuses are provided which generate pulses of germicidal light at a frequency greater than 3 Hz and project the pulses of light exterior to the disinfection apparatuses. In some cases, the apparatus includes processor executable program instructions for receiving data regarding characteristics of a space in which the disinfection apparatus is to be operated. In addition or alternatively, the apparatus may include a remote user interface to affect operation of the disinfection apparatus. In other cases, the apparatus may additionally or alternatively include a means for automatically moving the disinfection apparatus. In yet other additional or alternative cases, the disinfection apparatus may be void of an opaque component 360° around an elongated portion of the germicidal pulsed light source such that light emitted from the germicidal pulsed light source encircles the disinfection apparatus.

Claims (48)

1. A disinfection apparatus, comprising:

a germicidal pulsed light source arranged within the disinfection apparatus such that germicidal light generated from the germicidal pulsed light source is projected exterior to the disinfection apparatus;

trigger voltage circuitry for applying a trigger voltage to the germicidal pulsed light source at a set frequency greater than approximately 3 Hz;

power supply circuitry;

one or more electrical charge storage devices coupled to the power supply circuitry and to the germicidal pulsed light source;

pulse duration circuitry coupled between the one or more electrical charge storage devices and the germicidal pulsed light source;

a processor; and

program instructions executable by the processor for receiving data regarding characteristics of a space in which the disinfection apparatus is to be operated.

2. The disinfection apparatus of claim 1 , wherein the program instructions are further for setting one or more operational parameters of the disinfection apparatus based on the received data.

3. The disinfection apparatus of claim 1 , wherein the one or more electrical charge storage devices and the pulse duration circuitry are configured to discharge a set amount of stored energy in a set amount of time to the pulsed germicidal light source such that a power flux of ultraviolet light projected per pulse from the pulsed germicidal light source in the wavelength range between 200 nm and 320 nm is between approximately 800 W/m 2 and approximately 5000 W/m 2 at a surface that is approximately 1.0 meter away from the pulsed disinfection source.

4. The disinfection apparatus of claim 1 , wherein the one or more electrical charge storage devices and the pulse duration circuitry are configured to discharge a set amount of stored energy in a set amount of time to the pulsed germicidal light source such that an energy flux of ultraviolet light projected per pulse from the pulsed germicidal light source in the wavelength range between 200 nm and 320 nm is between approximately 0.02 J/m 2 and approximately 1.5 J/m 2 at a surface that is approximately 1.0 meter away from the pulsed disinfection source.

5. The disinfection apparatus of claim 1 , wherein the set frequency is a frequency between greater than approximately 3 Hz and approximately 60 Hz.

6. The disinfection apparatus of claim 1 , wherein the set frequency is a frequency greater than approximately 60 Hz.

7. A disinfection apparatus, comprising:

a germicidal pulsed light source arranged within the disinfection apparatus such that germicidal light generated from the germicidal pulsed light source is projected exterior to the disinfection apparatus;

trigger voltage circuitry for applying a trigger voltage to the germicidal pulsed light source at a set frequency greater than approximately 3 Hz;

power supply circuitry;

one or more electrical charge storage devices coupled to the power supply circuitry and to the germicidal pulsed light source;

pulse duration circuitry coupled between the one or more electrical charge storage devices and the germicidal pulsed light source; and

a remote user interface to affect operation of the disinfection apparatus.

8. The disinfection apparatus of claim 7 , further comprising an additional user interface to affect operation of the disinfection apparatus, wherein the additional user interface is integrated into a structure of the disinfection apparatus supporting the germicidal pulsed light source.

9. The disinfection apparatus of claim 7 , wherein the one or more electrical charge storage devices and the pulse duration circuitry are configured to discharge a set amount of stored energy in a set amount of time to the pulsed germicidal light source such that a power flux of ultraviolet light projected per pulse from the pulsed germicidal light source in the wavelength range between 200 nm and 320 nm is between approximately 800 W/m 2 and approximately 5000 W/m 2 at a surface that is approximately 1.0 meter away from the pulsed disinfection source.

10. The disinfection apparatus of claim 7 , wherein the one or more electrical charge storage devices and the pulse duration circuitry are configured to discharge a set amount of stored energy in a set amount of time to the pulsed germicidal light source such that an energy flux of ultraviolet light projected per pulse from the pulsed germicidal light source in the wavelength range between 200 nm and 320 nm is between approximately 0.02 J/m 2 and approximately 1.5 J/m 2 at a surface that is approximately 1.0 meter away from the pulsed disinfection source.

11. The disinfection apparatus of claim 7 , wherein the set frequency is a frequency between greater than approximately 3 Hz and approximately 60 Hz.

12. The disinfection apparatus of claim 7 , wherein the set frequency is a frequency greater than approximately 60 Hz.

13. A disinfection apparatus, comprising:

a germicidal pulsed light source arranged within the disinfection apparatus such that germicidal light generated from the germicidal pulsed light source is projected exterior to the disinfection apparatus;

trigger voltage circuitry for applying a trigger voltage to the germicidal pulsed light source at a set frequency greater than approximately 3 Hz;

power supply circuitry;

one or more electrical charge storage devices coupled to the power supply circuitry and to the germicidal pulsed light source;

pulse duration circuitry coupled between the one or more electrical charge storage devices and the germicidal pulsed light source; and

motorized wheels arranged along a bottom of the disinfection apparatus to provide automated mobility of the disinfection apparatus across at least a part of a room or area in which the apparatus is arranged.

14. The disinfection apparatus of claim 13 , further comprising a processor and program instructions executable by the processor for instructing the motorized wheels to move the disinfection apparatus along a predetermined route.

15. The disinfection apparatus of claim 13 , further comprising a processor and program instructions executable by the processor for instructing the motorized wheels to move the disinfection apparatus in accordance with characteristics of a room in which the apparatus is arranged.

16. The disinfection apparatus of claim 13 , wherein the one or more electrical charge storage devices and the pulse duration circuitry are configured to discharge a set amount of stored energy in a set amount of time to the pulsed germicidal light source such that a power flux of ultraviolet light projected per pulse from the pulsed germicidal light source in the wavelength range between 200 nm and 320 nm is between approximately 800 W/m 2 and approximately 5000 W/m 2 at a surface that is approximately 1.0 meter away from the pulsed disinfection source.

17. The disinfection apparatus of claim 13 , wherein the one or more electrical charge storage devices and the pulse duration circuitry are configured to discharge a set amount of stored energy in a set amount of time to the pulsed germicidal light source such that an energy flux of ultraviolet light projected per pulse from the pulsed germicidal light source in the wavelength range between 200 nm and 320 nm is between approximately 0.02 J/m 2 and approximately 1.5 J/m 2 at a surface that is approximately 1.0 meter away from the pulsed disinfection source.

18. The disinfection apparatus of claim 13 , wherein the set frequency is a frequency between greater than approximately 3 Hz and approximately 60 Hz.

19. The disinfection apparatus of claim 13 , wherein the set frequency is a frequency greater than approximately 60 Hz.

20. A disinfection apparatus, comprising:

a germicidal pulsed light source arranged within the disinfection apparatus such that germicidal light generated from the germicidal pulsed light source is projected exterior to the disinfection apparatus, and wherein the disinfection apparatus is void of an opaque component 360° around an elongated portion of the germicidal pulsed light source such that light emitted from the germicidal pulsed light source encircles the disinfection apparatus;

trigger voltage circuitry for applying a trigger voltage to the germicidal pulsed light source at a set frequency greater than approximately 3 Hz;

power supply circuitry;

one or more electrical charge storage devices coupled to the power supply circuitry and to the germicidal pulsed light source; and

pulse duration circuitry coupled between the one or more electrical charge storage devices and the germicidal pulsed light source.

21. The disinfection apparatus of claim 20 , wherein the one or more electrical charge storage devices and the pulse duration circuitry are configured to discharge a set amount of stored energy in a set amount of time to the pulsed germicidal light source such that a power flux of ultraviolet light projected per pulse from the pulsed germicidal light source in the wavelength range between 200 nm and 320 nm is between approximately 800 W/m 2 and approximately 5000 W/m 2 at a surface that is approximately 1.0 meter away from the pulsed disinfection source.

22. The disinfection apparatus of claim 20 , wherein the one or more electrical charge storage devices and the pulse duration circuitry are configured to discharge a set amount of stored energy in a set amount of time to the pulsed germicidal light source such that an energy flux of ultraviolet light projected per pulse from the pulsed germicidal light source in the wavelength range between 200 nm and 320 nm is between approximately 0.02 J/m 2 and approximately 1.5 J/m 2 at a surface that is approximately 1.0 meter away from the pulsed disinfection source.

23. The disinfection apparatus of claim 20 , wherein the set frequency is a frequency between greater than approximately 3 Hz and approximately 60 Hz.

24. The disinfection apparatus of claim 20 , wherein the set frequency is a frequency greater than approximately 60 Hz.

Assignments (5)
ASSIGNMENT AND ASSUMPTION OF SECURITY AGREEMENT, IP SECURITY AGREEMENT AND COLLATERAL AGENT AGREEMENT Recorded May 26, 2026
From: MALIN LIFE SCIENCES HOLDINGS LIMITED
To: XDS COLLATERAL, LLC
Reel/Frame 075626/0146 →
ASSIGNMENT AND ASSUMPTION OF SECURITY AGREEMENT, IP SECURITY AGREEMENT AND COLLATERAL AGENT AGREEMENT Recorded Mar 2, 2026
From: MALIN LIFE SCIENCES (US), INC.
To: MALIN LIFE SCIENCES HOLDINGS LIMITED
Reel/Frame 075060/0415 →
SECURITY INTEREST Recorded Feb 13, 2025
From: XENEX DISINFECTION SERVICES INC.
To: MALIN LIFE SCIENCES (US), INC.
Reel/Frame 070629/0867 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 15, 2022
From: STIBICH, MARK A.; DALE, CHARLES; GUERRERO, EDWARD C., JR.; FROUTAN, PAUL P.; SIMMONS, SARAH E.; CIORNEIU, BORIS
To: XENEX DISINFECTION SERVICES LLC.
Reel/Frame 060212/0396 →
CHANGE OF NAME Recorded Jun 15, 2022
From: XENEX DISINFECTION SERVICES LLC.
To: XENEX DISINFECTION SERVICES INC.
Reel/Frame 060511/0824 →
Continuity (6)
Continuation 16298171 · Mar 11, 2019
Continuation 15989394 · May 25, 2018
Division 15454158 · Mar 9, 2017
Continuation PCTUS2015051010 · Sep 18, 2015
Provisional Application 62052036 · Sep 18, 2014
Related Publication 20220323625A1 · Oct 13, 2022
References Cited (3)
US 20150367008A1 · Romo · 2015 [cited by examiner]
European Patent Office, Office Action for European Patent Application No. 20 176 757.1 dated Jul. 8, 2022, 3 pages. [cited by applicant]
European Patent Office, Office Action for European Patent Application No. 20 176 757.1 dated Mar. 29, 2023, 5 pages. [cited by applicant]
Cited By (1)
US 12,507,815