IP Library › Granted Patent US 11,573,174
Granted Patent B2
US 11,573,174 · App. 17/156,955 · Granted Feb 7, 2023

Optical gas concentration measurement apparatus

Inventors: Alex S. Nikittin (San Jose, CA); Stefan Warnke (Scotts Valley, CA); Eric Wertz (Oakland, CA)
Assignee: Advanced Energy Industries, Inc.
G01N21/3504G01N33/0027G01N2201/0633G01N2201/0636G01N2201/0638
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Quick Facts
Patent No.
US 11,573,174
App. No.
17/156,955
Granted
Feb 7, 2023
Kind
B2
Abstract

An optical gas concentration measurement apparatus is disclosed. The optical gas concentration measurement apparatus includes a thermally insulated enclosure that has a gas sample cell situated within. A thermally-insulating, light-guiding element passes through an access port of the thermally insulated enclosure and is configured to direct light from a light source outside of the thermally insulated enclosure to the gas sample cell. A light detector outside of the thermally insulated enclosure is optically coupled to the gas sample cell and an electronic assembly outside of the thermally insulated enclosure is configured to receive information from the light detector.

Claims (22)

1. An optical gas concentration measurement apparatus comprising:

a thermally insulated enclosure having one or more access ports;

a gas sample cell situated within the thermally insulated enclosure, the gas sample cell comprising one or more optical windows and one or more gas flow ports;

a light source outside of the thermally insulated enclosure configured to provide light to the gas sample cell;

a first thermally-insulating, light-guiding element passing through a first access port of the thermally insulated enclosure, the first thermally-insulating, light-guiding element configured to direct light from the light source to the gas sample cell via the one or more optical windows;

a light detector outside of the thermally insulated enclosure configured to receive light from the gas sample cell via the one or more optical windows;

a second thermally-insulating, light-guiding element passing through a second access port of the thermally insulated enclosure, the second thermally-insulating, light-guiding element configured to direct light from the gas sample cell to the light detector, wherein the second thermally-insulating, light-guiding element has at least one of a tapered rectangular prism or a tapered square prism shape; and

an electronic assembly outside of the thermally insulated enclosure configured to receive information from the light detector.

2. The optical gas concentration measurement apparatus of claim 1 , further comprising:

one or more reflective elements configured to direct an optical path of the light within the gas sample cell.

3. The optical gas concentration measurement apparatus of claim 1 , wherein the first thermally-insulating, light-guiding element has a tapered cylindrical shape and is configured to collimate the light from the light source.

4. An optical gas concentration measurement apparatus comprising:

a thermally insulated enclosure having one or more access ports;

a gas sample cell situated within the thermally insulated enclosure, the gas sample cell comprising one or more optical windows and one or more gas flow ports;

a light source outside of the thermally insulated enclosure configured to provide light to the gas sample cell;

means for directing light from the light source to the gas sample cell via the one or more optical windows while thermally insulating the light source from the gas sample cell;

a light detector outside of the thermally insulated enclosure configured to receive light from the gas sample cell and provide information indicative of a chemistry within the gas sample cell;

means for receiving the light from the gas sample cell via the one or more optical windows and conveying the light to the light detector while thermally insulating the light detector from the gas sample cell, wherein the means for receiving comprises at least one of a tapered rectangular prism or a tapered square prism shape; and

an electronic assembly outside of the thermally insulated enclosure configured to receive the information indicative of a chemistry from the light detector and provide a user-readable output to convey the information to an operator of the measurement apparatus.

5. The optical gas concentration measurement apparatus of claim 4 comprising:

one or more reflective elements configured to direct an optical path of the light within the gas sample cell.

6. The optical gas concentration measurement apparatus of claim 4 , wherein the means for directing comprises a tapered cylindrical shape and is configured to collimate the light from the light source.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 7, 2021
From: NIKITTIN, ALEX S.; WARNKE, STEFAN; WERTZ, ERIC
To: ADVANCED ENERGY INDUSTRIES, INC.
Reel/Frame 056174/0251 →
Continuity (1)
Related Publication 20220236173A1 · Jul 28, 2022