IP Library Granted Patent US 11,287,409
Granted Patent B2
US 11,287,409 · App. 16/773,856 · Granted Mar 29, 2022

Hydrogen sulfide imaging system

Inventors: Robert Timothy Kester (Friendswood, TX); Nathan Adrian Hagen (Houston, TX)
Assignee: REBELLION PHOTONICS, INC.
G01N33/0044G01J3/021G01J3/0208G01J3/0286G01J3/2803G01J3/2823G01J3/32G01J3/36G01J3/42G01J5/0014G01J5/0806G01J5/0809G01J5/0896G01J5/522G01J5/602G01N21/3504H04N5/33H04N17/002G01J2003/1247G01J2003/2826G01J2003/2869G01J2005/0077G01J2005/604G01N2021/3531
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 11,287,409
App. No.
16/773,856
Granted
Mar 29, 2022
Kind
B2
Abstract

Various embodiments disclosed herein describe an infrared (IR) imaging system for detecting a gas. The imaging system can include an optical filter that selectively passes light having a wavelength in a range of 1585 nm to 1595 nm while attenuating light at wavelengths above 1600 nm and below 1580 nm. The system can include an optical detector array sensitive to light having a wavelength of 1590 that is positioned rear of the optical filter.

Claims (26)

1. An infrared (IR) imaging system for detecting carbon dioxide (CO2) gas, the IR imaging system comprising:

an optical detector array; and

an optical filter that selectively transfers light within a band of IR wavelengths to the optical detector array;

wherein, within the band of IR wavelengths, a convolution of the optical filter with an absorption spectrum of CO2 gas is greater than a convolution of the optical filter with an absorption spectrum of hydrogen sulfide (H2S), or methane (CH4), or sulfur dioxide (SO2), or water (H2O); and

wherein the convolution of the optical filter with the absorption spectrum of CO2 gas is in a range of 50 to 10,000 times greater than the convolution of the optical filter with the absorption spectrum of hydrogen sulfide (H2S).

2. The IR imaging system of claim 1 , wherein the convolution of the optical filter with the absorption spectrum of CO2 gas is in a range of 100 to 5,000 times greater than the convolution of the optical filter with the absorption spectrum of hydrogen sulfide (H2S).

3. The IR imaging system of claim 1 , wherein the convolution of the optical filter with the absorption spectrum of CO2 gas is in a range of 500 to 5,000 times greater than the convolution of the optical filter with the absorption spectrum of hydrogen sulfide (H2S).

4. The IR imaging system of claim 1 , wherein the optical filter selectively passes light having a wavelength in a range of 1400 nm to 1500 nm while attenuating light at wavelengths above 1500 nm and below 1400 nm.

5. The IR imaging system of claim 1 , wherein the optical filter selectively passes light having a wavelength in a range of 1900 nm to 2100 nm while attenuating light at wavelengths above 2100 nm and below 1900 nm.

6. The IR imaging system of claim 1 , wherein the optical filter selectively passes light having a wavelength in a range of 9 microns to 10 microns while attenuating light at wavelengths above 10 microns and below 9 microns.

7. The IR imaging system of claim 1 , further comprising an imaging lens that transfers the light to the optical detector array.

8. The IR imaging system of claim 1 , further comprising processing electronics configured to detect CO2 based at least in part on image data captured by the optical detector array.

9. An infrared (IR) imaging system for detecting carbon dioxide (CO2) gas, the IR imaging system comprising:

an optical detector array; and

an optical filter that selectively transfers light within a band of IR wavelengths to the optical detector array;

wherein the optical filter comprises a passband that transmits within the passband a first signal representative of carbon dioxide (CO2) and a second signal representative of one of hydrogen sulfide (H2 S), methane (CH4), water (H2O), and sulfur dioxide (SO2) the first signal comprising a first peak within the passband, the second signal comprising a second peak within the passband, wherein a ratio of the first peak to the second peak is in a range of 50 to 10,000.

10. The IR imaging system of claim 9 , wherein the ratio of the first peak to the second peak is in a range of 50 to 5,000.

11. The IR imaging system of claim 9 , wherein the ratio of the first peak to the second peak is in a range of 100 to 10,000.

12. The IR imaging system of claim 9 , wherein the ratio of the first peak to the second peak is in a range of 200 to 10,000.

13. The IR imaging system of claim 9 , wherein the ratio of the first peak to the second peak is in a range of 200 to 1,000.

14. The IR imaging system of claim 9 , wherein the ratio of the first peak to the second peak is in a range of 200 to 5,000.

15. The IR imaging system of claim 9 , wherein the ratio of the first peak to the second peak is in a range of 500 to 5,000.

16. The IR imaging system of claim 9 , wherein the optical filter selectively passes light having a wavelength in a range of 1400 nm to 1500 nm while attenuating light at wavelengths above 1500 nm and below 1400 nm.

17. The IR imaging system of claim 9 , wherein the optical filter selectively passes light having a wavelength in a range of 1900 nm to 2100 nm while attenuating light at wavelengths above 2100 nm and below 1900 nm.

18. The IR imaging system of claim 9 , wherein the optical filter selectively passes light having a wavelength in a range of 9 microns to 10 microns while attenuating light at wavelengths above 10 microns and below 9 microns.

19. The IR imaging system of claim 9 , further comprising processing electronics configured to detect CO2 based at least in part on image data captured by the optical detector array.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 16, 2020
From: KESTER, ROBERT TIMOTHY; HAGEN, NATHAN ADRIAN
To: REBELLION PHOTONICS, INC.
Reel/Frame 054075/0729 →
Continuity (3)
Continuation 15166092 · May 26, 2016
Provisional Application 62168620 · May 29, 2015
Related Publication 20200264149A1 · Aug 20, 2020
Cited By (3)
US 12,248,945 US 12,326,430 US 12,339,165