IP Library Granted Patent US 6,898,338
Granted Patent B2
US 6,898,338 · App. 10/151,475 · Granted May 24, 2005

Fabry-Perot sensing element based on a large-diameter optical waveguide

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Quick Facts
Patent No.
US 6,898,338
App. No.
10/151,475
Granted
May 24, 2005
Kind
B2
Abstract

An optical sensing device including a force-applying assembly for providing a force and a Fabry-Perot (FP) element including a large-diameter waveguide having a core and having a cavity in line with the core, the cavity having reflective surfaces and having an optical path length related to the distance between the reflective surfaces, the FP element being coupled to the force so that the optical path length changes according to the force, the FP element for providing an output optical signal containing information about a parameter that relates to the force. Sometimes the large-diameter waveguide is formed by collapsing a glass tube, having a bore and having an outer diameter of about one millimeter, onto a pair of optical fibers arranged in tandem in the bore and separated by a predetermined distance, and respective end faces of the optical fibers form the cavity and are coated with a wholly or partially reflective material.

Claims (51)

1. An optical sensing device, comprising:

a force-applying assembly for providing a force; and

a Fabry-Perot (FP) element including a large-diameter waveguide having a core and having a cavity in line with the core, the cavity having reflective surfaces and having an optical path length related to the distance between the reflective surfaces, the FP element being coupled to the force so that the optical path length changes according to the force, the FP element for providing an output optical signal containing information about a parameter that relates to the force, wherein the large-diameter waveguide structure has Bragg gratings.

2. An optical sensing device, comprising:

a force-applying assembly for providing a force; end

a Fabry-Perot (FP) element including a large-diameter waveguide having a core and having a cavity in line with the core, the cavity having reflective surfaces and having an optical path length related to the distance between the reflective surfaces, the FP element being coupled to the force so that the optical path length changes according to the force, the FP element for providing an output optical signal containing information about a pressure that relates to the force, wherein the optical sensing device includes as part or all of the cavity an air gap and further wherein the optical sensing device comprises a material arranged in the air gap that has an index of refraction that changes depending on the pressure.

3. An optical sensing device comprising:

a force-applying assembly for providing a force; and

a Fabry-Perot (FP) element including a large-diameter waveguide having a core and having a cavity in line with the core, the cavity having reflective surfaces and having an optical path length related to the distance between the reflective surfaces, the FP element being coupled to the force so that the optical path length changes according to the force, the FP element for providing an output optical signal containing information about a parameter that relates to the force, wherein the large-diameter waveguide has a slot therein that forms the cavity, and wherein the slot has a Bragg grating formed therein along the length of the large-diameter waveguide.

4. An optical sensing device comprising:

a force-applying assembly for providing a force; and

a Fabry-Perot (FP) element including a large-diameter waveguide having a core and having a cavity in line with the core, the cavity having reflective surfaces and having an optical path length related to the distance between the reflective surfaces, the FP element being coupled to the force so that the optical path length changes according to the force, the FP element for providing an output optical signal containing information about a parameter that relates to the force, wherein the large-diameter waveguide has a slot therein that forms the cavity, and wherein the large-diameter waveguide includes a pair of fiber Bragg gratings arranged on opposite sides of the slot so as to provide the reflective surfaces of the cavity.

5. An optical sensing device, comprising:

a force-applying assembly for providing a force; and

a Fabry-Perot (FP) element including a large-diameter waveguide having a core and having a cavity in line with the core, the cavity having reflective surfaces and having an optical path length related to the distance between the reflective surfaces, the FP element being coupled to the force so that the optical path length changes according to the force, the FP element for providing an output optical signal containing information about a parameter that relates to the force, wherein the optical sensing device includes as part or all of the cavity an air gap and further wherein the optical sensing device comprises a material arranged in the air gap that has an optical characteristic that changes depending on the parameter, wherein the force-applying assembly comprises a pressure housing having the material therein, the pressure housing including a pressure port for responding to pressure.

6. A multiplexed FP sensor system having a plurality of FP sensors, each FP sensor having a cavity and comprising:

a large-diameter waveguide having end faces separated by a predetermined but variable distance, the end faces delimiting all or part of the cavity of the FP sensor, wherein each FP sensor produces fringes with different frequencies in an optical frequency domain;

wherein the cavity is responsive to an optical signal, and further responsive to a force applied to the large-diameter waveguide that causes a change in the optical path length of the cavity, for providing an output optical signal containing information about a parameter that relates to the force applied to the large-diameter waveguide.

7. A multiplexed Fabry-Perot (FP) sensor system comprising:

a plurality of FP sensors, each FP sensor having a cavity and comprising:

a large-diameter waveguide having end faces separated by a predetermined but variable distance, the end faces delimiting all or part of the cavity of the FP sensor, wherein a cladding around a core of the large-diameter waveaulde has an outer diameter of at least 0.3 millimeters;

wherein the cavity is responsive to an optical signal, and further responsive to a force applied to the large-diameter waveguide that causes a change in the optical path length of the cavity, for providing an output optical signal containing information about a

parameter that relates to the force applied to the large-diameter waveguide

a broadband source, and coupled in series, a wavemeter/spectrometer, a Fourier transform module, a frequency band filter, and an inverse Fourier transform module;

wherein the broadband source provides a broadband optical signal;

wherein each FP sensor responds to the broadband optical signal and the combination of FP sensors provides a composite output optical signal that is a combination of the output optical signals provided by each sensor;

wherein the wavemeter/spectrometer responds to the composite output optical signal and provides a wavemeter/spectrometer signal containing information about the spectrum of the composite output optical signal;

wherein the Fourier transform module responds to the wavemeter/spectrometer signal and provides a Fourier transform signal containing information about the Fourier transform of the wavemeter/spectrometer signal;

wherein the frequency band filter responds to the Fourier transform signal and provides a frequency band filter signal containing information about a portion of the Fourier transform signal; and

wherein the inverse Fourier transform responds to the frequency band filter signal and provides an inverse Fourier transform signal containing information about the respective different output optical signals provided by each FP sensor.

8. An optical sensing device comprising:

a force-applying assembly for providing a force; and

a Fabry-Perot (FP) element including a large-diameter waveguide having a core and having a cavity in line with the core, the cavity having reflective surfaces and having an optical path length related to the distance between the reflective surfaces, the FP element being coupled to the force so that the optical path length changes according to the force, the FP element for providing an output optical signal containing information about a parameter that relates to the force, wherein the FP element comprises two outer sections of optical fiber and an intermediate section of optical fiber arranged end to end, and an at least partially reflective coating is provided at the juncture between each outer section and the intermediate section, and further comprising a dielectric tube collapsed onto the intermediate section of optical fiber and at least a portion of each of the outer sections of optical fiber.

9. An optical sensing device comprising:

a force-applying assembly for providing a force; and

a Fabry-Perot (FP) element including a large-diameter waveguide having a core and having a cavity in line with the core, the cavity having reflective surfaces and having an optical path length related to the distance between the reflective surfaces, the FP element being coupled to the force so that the optical path length changes according to the force, the FP element for providing an output optical signal containing information about a parameter that relates to the force, wherein the FP element comprises two outer sections of large-diameter optical waveguides and an intermediate section of large-diameter optical waveguide arranged end to end, and an at least partially reflective coating is provided at the juncture between each outer section and the intermediate section.

10. An optical sensing device comprising:

a force-applying assembly for providing a force; and

a Fabry-Perot (FP) element including a large-diameter waveguide having a core and having a cavity in line with the core, the cavity having reflective surfaces and having an optical path length related to the distance between the reflective surfaces, the FP element being coupled to the force so that the optical path length changes according to the force, the FP element for providing an output optical signal containing information about a parameter that relates to the force, wherein the FP element comprises an input optical fiber and an output optical fiber arranged end to end with an air gap between them and onto which a dielectric tube is collapsed and fused, wherein the output optical fiber has a Bragg grating, and further comprising an at least partially reflective coating provided within the air gap, on either of the ends of the two optical fibers terminating at the air gap.

11. An optical sensing device comprising:

a force-applying assembly for providing a force; and

a Fabry-Perot (FP) element including a large-diameter waveguide having a core and having a cavity in line with the core, the cavity having reflective surface and having an optical path length related to the distance between the reflective surfaces, the FP element being coupled to the force so that the optical path length changes according to the force, the FP element for providing an output optical signal containing information about a parameter that relates to the force, wherein the FP element comprises a large-diameter optical waveguide having a core, from which a section of the core has been removed to provide an air gap, leaving behind at least some of the adjacent cladding, and including a Bragg grating on one side of the air gap, and further comprising an at least partially reflective coating provided within the air gap, on either of the ends of the core of the large-diameter optical waveguide terminating at the air gap.

12. An optical sensing device comprising:

a force-applying assembly for providing a force; and

a Fabry-Perot (FP) element including a large-diameter waveguide having a core and having a cavity in line with the core, the cavity having reflective surfaces and having an optical path length related to the distance between the reflective surfaces, the FP element being coupled to the force so that the optical path length changes according to the force, the FP element for providing an output optical signal containing information about a parameter that relates to the force, wherein the FP element comprises two large-diameter optical waveguides fusion-spliced together end-to-end, each having a core, wherein a section of the core has been removed from one of the large-diameter optical waveguides to provide an air gap, the removing being performed so as to leave behind at least some of the adjacent cladding, and wherein a Bragg grating is provided in the core of one of the large-diameter optical waveguides, and further comprising an at least partially reflective coating provided within the air gap, on either of the ends of the cores of the large-diameter optical waveguides terminating at the air gap.

13. An optical sensing device comprising:

a force-applying assembly for providing a force; and

a Fabry-Perot (FP) element including a large-diameter waveguide having a core and having a cavity in line with the core, the cavity having reflective surfaces and having an optical path length related to the distance between the reflective surfaces, the FP element being coupled to the force so that the optical path length changes according to the force, the FP element for providing an output optical signal containing information about a parameter that relates to the force, wherein the FP element comprises a pair of large-diameter optical waveguides fusion-spliced together end-to-end with a non-waveguide element, the large-diameter optical waveguides having a core, wherein a section of the non-waveguide element has been removed so as to provide an air gap, and wherein a Bragg grating is provided in the core of the large-diameter optical waveguide, and further comprising a partially reflective coating provided within the air gap on the end of the core of the large-diameter optical waveguide terminating at the air gap, and a reflective coating on the end of the non-waveguide element terminating at the air gap.

14. An optical sensing device comprising:

a force-applying assembly for providing a force; and

a Fabry-Perot (FP) element including a large-diameter waveguide having a core and having a cavity in line with the core, the cavity having reflective surfaces and having an optical path length related to the distance between the reflective surfaces, the FP element being coupled to the force so that the optical path length changes according to the force, the FP element for providing an output optical signal containing information about a parameter that relates to the force, wherein the FP element comprises two large-diameter optical waveguides fusion-spliced together end-to-end, each having a core, wherein a section of the core has been removed from at least one of the large-diameter optical waveguides to provide an air gap, the removing being performed so as to leave behind at least some of the adjacent cladding, and further comprising an at least partially reflective coating on each of the ends of the cores of the large-diameter optical waveguides terminating at the air gap.

Assignments (13)
PATENT SECURITY INTEREST ASSIGNMENT AGREEMENT Recorded Apr 26, 2023
From: DEUTSCHE BANK TRUST COMPANY AMERICAS
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 063470/0629 →
RELEASE OF SECURITY INTEREST Recorded Oct 1, 2021
From: WILMINGTON TRUST, NATIONAL ASSOCIATION
To: WEATHERFORD TECHNOLOGY HOLDINGS, LLC; WEATHERFORD NETHERLANDS B.V.; WEATHERFORD NORGE AS; HIGH PRESSURE INTEGRITY, INC.; PRECISION ENERGY SERVICES, INC.; WEATHERFORD CANADA LTD; WEATHERFORD SWITZERLAND TRADING AND DEVELOPMENT GMBH; PRECISION ENERGY SERVICES ULC; WEATHERFORD U.K. LIMITED
Reel/Frame 057683/0423 →
SECURITY INTEREST Recorded Oct 1, 2021
From: WEATHERFORD TECHNOLOGY HOLDINGS, LLC; WEATHERFORD NETHERLANDS B.V.; WEATHERFORD NORGE AS; HIGH PRESSURE INTEGRITY, INC.; PRECISION ENERGY SERVICES, INC.; WEATHERFORD CANADA LTD.; WEATHERFORD SWITZERLAND TRADING AND DEVELOPMENT GMBH; WEATHERFORD U.K. LIMITED
To: WILMINGTON TRUST, NATIONAL ASSOCIATION
Reel/Frame 057683/0706 →
RELEASE OF SECURITY INTEREST Recorded Aug 28, 2020
From: WELLS FARGO BANK, NATIONAL ASSOCIATION
To: WEATHERFORD TECHNOLOGY HOLDINGS, LLC; WEATHERFORD NETHERLANDS B.V.; WEATHERFORD NORGE AS; HIGH PRESSURE INTEGRITY, INC.; PRECISION ENERGY SERVICES, INC.; WEATHERFORD CANADA LTD.; WEATHERFORD SWITZERLAND TRADING AND DEVELOPMENT GMBH; PRECISION ENERGY SERVICES ULC; WEATHERFORD U.K. LIMITED
Reel/Frame 053838/0323 →
SECURITY INTEREST Recorded Aug 28, 2020
From: WEATHERFORD TECHNOLOGY HOLDINGS, LLC; WEATHERFORD NETHERLANDS B.V.; WEATHERFORD NORGE AS; HIGH PRESSURE INTEGRITY, INC.; PRECISION ENERGY SERVICES, INC.; WEATHERFORD CANADA LTD.; WEATHERFORD SWITZERLAND TRADING AND DEVELOPMENT GMBH; PRECISION ENERGY SERVICES ULC; WEATHERFORD U.K. LIMITED
To: WILMINGTON TRUST, NATIONAL ASSOCIATION
Reel/Frame 054288/0302 →
SECURITY INTEREST Recorded Dec 26, 2019
From: WEATHERFORD TECHNOLOGY HOLDINGS, LLC; WEATHERFORD NETHERLANDS B.V.; WEATHERFORD NORGE AS; HIGH PRESSURE INTEGRITY, INC.; PRECISION ENERGY SERVICES, INC.; WEATHERFORD CANADA LTD.; WEATHERFORD SWITZERLAND TRADING AND DEVELOPMENT GMBH; PRECISION ENERGY SERVICES ULC; WEATHERFORD U.K. LIMITED
To: DEUTSCHE BANK TRUST COMPANY AMERICAS, AS ADMINISTRATIVE AGENT
Reel/Frame 051419/0140 →
SECURITY INTEREST Recorded Dec 18, 2019
From: WEATHERFORD TECHNOLOGY HOLDINGS LLC; WEATHERFORD NETHERLANDS B.V.; WEATHERFORD NORGE AS; HIGH PRESSURE INTEGRITY INC.; PRECISION ENERGY SERVICES INC.; WEATHERFORD CANADA LTD.; WEATHERFORD SWITZERLAND TRADING AND DEVELOPMENT GMBH; PRECISION ENERGY SERVICES ULC; WEATHERFORD U.K. LIMITED
To: WELLS FARGO BANK NATIONAL ASSOCIATION AS AGENT
Reel/Frame 051891/0089 →
RELEASE AND REASSIGNMENT OF PATENTS Recorded Sep 29, 2017
From: WEBSTER BANK, NATIONAL ASSOCIATION
To: CIDRA CORPORATE SERVICES, INC.
Reel/Frame 044097/0723 →
PATENT COLLATERAL ASSIGNMENT AND SECURITY AGREEMENT Recorded Oct 8, 2015
From: CIDRA CORPORATE SERVICES, INC.
To: WEBSTER BANK, NATIONAL ASSOCIATION
Reel/Frame 036818/0469 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 4, 2014
From: WEATHERFORD/LAMB, INC.
To: WEATHERFORD TECHNOLOGY HOLDINGS, LLC
Reel/Frame 034526/0272 →
CORRECTIVE ASSIGNMENT TO CORRECT THE EXECUTION DATE OF JAMES S. SIRKIS FROM 02/06/2012 TO 02/10/2012 PREVIOUSLY RECORDED ON REEL 027771 FRAME 0463. ASSIGNOR(S) HEREBY CONFIRMS THE NUNC PRO TUNC ASSIGNMENT EFFECTIVE DATE: 06/18/2001. Recorded Feb 29, 2012
From: KERSEY, ALAN D.; PUTNAM, MARTIN A.; SIRKIS, JAMES S.; FERNALD, MARK R.; BRUCATO, ROBERT N.
To: WEATHERFORD/LAMB, INC.
Reel/Frame 027784/0478 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE PREVIOUSLY RECORDED ON REEL 027684 FRAME 0935. ASSIGNOR(S) HEREBY CONFIRMS THE NUNC PRO TUNC ASSIGNMENT EFFECTIVE DATE: 06/18/2001. Recorded Feb 28, 2012
From: KERSEY, ALAN D.; PUTNAM, MARTIN A.; SIRKIS, JAMES S.; FERNALD, MARK R.; BRUCATO, ROBERT N.
To: WEATHERFORD/LAMB, INC.
Reel/Frame 027771/0463 →
NUNC PRO TUNC ASSIGNMENT Recorded Feb 10, 2012
From: KERSEY, ALAN D.; PUTNAM, MARTIN A.; SIRKIS, JAMES S.; FERNALD, MARK R.; BRUCATO, ROBERT N.
To: CIDRA CORPORATE SERVICES, INC.
Reel/Frame 027684/0935 →