IP Library Granted Patent US 7,389,027
Granted Patent B2
US 7,389,027 · App. 11/782,481 · Granted Jun 17, 2008

Method and apparatus for the monitoring and control of a process

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Quick Facts
Patent No.
US 7,389,027
App. No.
11/782,481
Granted
Jun 17, 2008
Kind
B2
Abstract

A pitch side optical system for use in diode laser spectroscopy consisting of more than one diode laser having select lasing frequencies with each diode laser being coupled to an end of a distinct input optical fiber. The pitch side optical system further consists of a multiplexer optically coupled to the other end of less than all of the input optical fibers with the multiplexer outputting multiplexed laser light to a pitch side optical fiber. The pitch side optical system further consists of a coupler optically coupled to the far end of the pitch side optical fiber and the far end of an unmultiplexed input optical fiber with the coupler combining the multiplexed laser light and the unmultiplexed laser light and outputting the combined light to a transmission optical fiber. Typically, the coupler is located near the combustion process. The pitch side optical system further consists of a pitch optic coupled to the transmission optical fiber. Typically, all optical fibers used in the pitch side optical system are single mode optical fibers.

Claims (23)

1. A pitch side optical system for use in diode laser spectroscopy comprising:

more than one diode laser having a select lasing frequency, each diode laser being coupled to a proximal end of a distinct input optical fiber;

a multiplexer optically coupled to a distal end of fewer than all of the input optical fibers, the multiplexer optically coupling multiplexed laser light from the fewer than all of the input optical fibers to a proximal end of a pitch side optical fiber;

a coupler optically coupled to a distal end of the pitch side optical fiber and a distal end of an un-multiplexed input optical fiber, the coupler optically coupling multiplexed laser light from the pitch side optical fiber and un-multiplexed laser light from the un-multiplexed input optical fiber to a proximal end of a transmission optical fiber; and

a pitch optic optically coupled to a distal end of the transmission optical fiber.

2. The pitch side optical system of claim 1 wherein the input optical fibers, the pitch side optical fibers and the transmission optical fibers are single mode optical fibers.

3. The pitch side optical system of claim 1 wherein the length of the transmitting optical fiber is selected to maintain mode noise below a select level.

4. The pitch side optical system of claim 3 wherein a wavelength of the multiplexed laser light ranges from 1240 nm to 5200 nm and a wavelength of the un-multiplexed laser light is less than 1240 nm.

5. The pitch side optical system of claim 3 wherein the length of the transmitting optical fiber is selected such that the un-multiplexed laser light does not become multi-modal during transmission through the transmitting optical fiber.

6. The pitch side optical system of claim 5 wherein the un-multiplexed input optical fiber is an SM 750 fiber and the multiplex optical fiber and the transmission optical fiber are SMF 28 optical fibers.

7. The pitch side optical system of claim 6 wherein the length of the transmission optical fiber is equal to or less than three meters.

8. A method of inputting light to a diode laser spectroscopy system comprising:

coupling light from each of more than one diode laser having a select lasing frequency to a proximal end of a distinct input optical fiber;

multiplexing the output of fewer than all of the input optical fibers;

coupling multiplexed laser light from the fewer than all of the input optical fibers to a proximal end of a pitch side optical fiber;

optically coupling multiplexed laser light from the pitch side optical fiber and un-multiplexed laser light from the un-multiplexed input optical fiber to a proximal end of a transmission optical fiber; and

coupling the output of the transmission optical fiber to a pitch optic.

9. The method of inputting light to a diode laser spectroscopy system of claim 8 wherein the input optical fibers, the pitch side optical fibers and the transmission optical fibers are single mode optical fibers.

10. The method of inputting light to a diode laser spectroscopy system of claim 8 wherein the length of the transmitting optical fiber is selected to maintain mode noise below a select level.

11. The method of inputting light to a diode laser spectroscopy system of claim 8 wherein a wavelength of the multiplexed laser light ranges from 1240 nm to 5200 nm and a wavelength of the un-multiplexed laser light is less than 1240 nm.

12. The method of inputting light to a diode laser spectroscopy system of claim 10 wherein the length of the transmitting optical fiber is selected such that the un-multiplexed laser light does not become multi-modal during transmission through the transmitting optical fiber.

13. The method of inputting light to a diode laser spectroscopy system of claim 12 wherein the un-multiplexed input optical fiber is an SM 750 fiber and the multiplex optical fiber and the transmission optical fiber are SMF 28 optical fibers.

14. The method of inputting light to a diode laser spectroscopy system of claim 13 wherein the length of the transmission optical fiber is equal to or less than three meters.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 2, 2020
From: JOHN ZINK COMPANY, LLC
To: ONPOINT TECHNOLOGIES, LLC
Reel/Frame 052813/0835 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 19, 2018
From: ZOLO TECHNOLOGIES, INC.
To: JOHN ZINK COMPANY, LLC
Reel/Frame 045630/0221 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 9, 2008
From: SAPPEY, ANDREW D.; HOWELL, JAMES; HOFVANDER, HENRIK; MASTERSON, BERNARD PATRICK
To: ZOLO TECHNOLOGIES, INC.
Reel/Frame 020926/0746 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 24, 2007
From: SAPPEY, ANDREW D.; HOWELL, JAMES; HOFVANDER, HENRIK; MASTERSON, BERNARD PATRICK
To: ZOLO TECHNOLOGIES, INC.
Reel/Frame 019868/0526 →