IP Library › Granted Patent US 10,078,019
Granted Patent B2
US 10,078,019 · App. 15/612,354 · Granted Sep 18, 2018

Configurable chiral fiber tip-positioned sensor

Inventors: Victor Il'ich Kopp (Fair Lawn, NJ); Jonathan Singer (New Hope, PA); Daniel Neugroschl (Suffern, NY)
Assignee: Chiral Photonics, Inc.
G01K11/3206G01N21/21
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Quick Facts
Patent No.
US 10,078,019
App. No.
15/612,354
Granted
Sep 18, 2018
Kind
B2
Abstract

The inventive configurable chiral fiber sensor with a tip-positioned sensing element, is readily configurable for use in a variety of applications (such as applications involving pressure, temperature, and even axial twist sensing), and is particularly suitable for applications requiring highly precise and accurate sensor readings within corresponding predefined limited sensing ranges. Advantageously, the inventive configurable chiral fiber sensor with a tip-positioned sensing element, is operable to utilize a wide variety of light sources, photodetectors, and related devices for sensor interrogation.

Claims (22)

1. A configurable optical chiral fiber sensor, comprising:

at least one light source operable to generate a light signal having polarization characteristic parameters;

an optical fiber link of a length, having a first end connected o said at least one light source, and a second end;

an optical fiber sensing component, positioned at said second end of said optical fiber link, said optical fiber sensing component comprising:

a single mode optical fiber section positioned proximal to said second end of said optical fiber link;

a polarization maintaining optical fiber sensing element; and

a chiral fiber circular polarizer therebetween having a single mode end connected to said single mode optical fiber section and polarization maintaining end connected to said polarization maintaining optical fiber sensing element;

wherein said optical fiber sensing component is configured to cause a change in orientation of a linearly polarized light signal in response to at least one sensed event; and

a sensor interrogation system, operable to detect said change in the orientation of the linearly polarized light signal to produce a corresponding at least one proportional sensor output.

2. The configurable optical chiral fiber sensor of claim 1 , further comprising a linear polarizer.

3. The configurable optical chiral fiber sensor of claim 2 , wherein said optical fiber sensing component comprises said linear polarizer positioned between said second end of said optical fiber link and said single mode optical fiber section.

4. The configurable optical chiral fiber sensor of claim 1 , wherein said sensing element is operable to reflect at least one of linearly polarized light components into said chiral fiber circular polarizer.

5. The configurable optical chiral fiber sensor of claim 4 , wherein said change in said orientation of said linearly polarized light signal comprises a change in orientation of said reflected at least one of said linearly polarized light components attributable to said at least one sensed event.

6. The configurable optical chiral fiber sensor of claim 5 , further comprising a linear polarizer, wherein said sensor interrogation system comprises a circulator positioned between said light source and said linear polarizer.

7. The configurable optical chiral fiber sensor of claim 6 , wherein said sensor interrogation system comprises a detector connected to said circulator such that said detector is capable to sense said change in said orientation of said linearly polarized light signal.

8. The configurable optical chiral fiber sensor of claim 1 , wherein said at least one light source is operable to generate at least two different wavelengths and at least one of a plurality of photodetectors is operable to detect the at least two different wavelengths.

9. The configurable optical chiral fiber sensor of claim 8 , wherein said at least one light source is configured to polarize light at at least one wavelength of the at least two different wavelengths and to transmit but not polarize light at at least one other wavelength of the at least two different wavelengths.

10. The configurable optical chiral fiber sensor of claim 1 , wherein said configurable optical chiral fiber sensor does not comprise a transducer.

11. The configurable optical chiral fiber sensor of claim 1 , wherein said polarization maintaining optical fiber sensing element comprises a polarization maintaining fiber.

12. The configurable optical chiral fiber sensor of claim 1 , wherein the chiral fiber circular polarizer comprises an LER circular polarizer.

13. The configurable optical chiral fiber sensor of claim 1 , wherein the configurable optical chiral fiber sensor is sensitive to changes in temperature.

14. The configurable optical chiral fiber sensor of claim 1 , wherein the configurable optical chiral fiber sensor is sensitive to changes in pressure.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 12, 2018
From: KOPP, VICTOR IL'ICH; SINGER, JONATHAN; NEUGROSCHL, DANIEL
To: CHIRAL PHOTONICS, INC.
Reel/Frame 044901/0806 →
Continuity (2)
Continuation 13354688 · Jan 20, 2012
Related Publication 20170268937A1 · Sep 21, 2017
Cited By (2)
US 12,210,185 US 12,487,418