IP Library Granted Patent US 12,073,700
Granted Patent B2
US 12,073,700 · App. 17/058,491 · Granted Aug 27, 2024

Chambered high sensitivity fiber optic smoke detection

Inventors: Michael J. Birnkrant (Wethersfield, CT); Jennifer M. Alexander (Glastonbury, CT)
Assignee: CARRIER CORPORATION
G08B17/107G01N21/53G08B13/187G08B25/04G08B26/006G01N2201/084
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Quick Facts
Patent No.
US 12,073,700
App. No.
17/058,491
Granted
Aug 27, 2024
Kind
B2
Abstract

A detection system for measuring one or more conditions within a predetermined area includes at least one fiber optic cable for transmitting light to and receiving scattered light from one or more nodes and a cover plate having an internal cavity. The cover plate surrounds the one or more nodes such that the one or more nodes are in communication with the internal cavity. A control system is operably coupled to the at least one fiber optic cable so that the scattered light received by the one or more nodes is transmitted to the control system. The control system analyzes the scattered light to evaluate a condition at the one or more nodes.

Claims (25)

1. A detection system for measuring one or more conditions within a predetermined area comprising:

at least one fiber optic cable including at least one optic core for transmitting light to and receiving scattered light from one or more nodes, the one or more nodes being formed in a mounting surface, the light being emitted from the one or more nodes via at least one emitter cone and the scattered light being received by the one or more nodes via at least one receiver cone;

a cover plate having an internal cavity and an end surface, the end surface being affixed to the mounting surface and surrounding the one or more nodes such that the one or more nodes are in communication with the internal cavity, wherein a sensing volume where the at least one emitter cone and the at least one receiver cone extends outside of the cover plate; and

a control system operably coupled to the at least one fiber optic cable so that the scattered light received by the one or more nodes is transmitted to the control system, wherein the control system analyzes the scattered light to evaluate a condition at the one or more nodes.

2. The detection system of claim 1 , wherein the cover plate is generally concave in shape.

3. The detection system of claim 1 , wherein the one or more nodes includes a plurality of nodes, and each of the plurality of nodes is surrounded by the cover plate.

4. The detection system of claim 1 , wherein the one or more nodes includes a plurality of nodes and at least one of the plurality of nodes is not surrounded by the cover plate.

5. The detection system of claim 1 , wherein the cover plate is removably mounted adjacent the one or more nodes.

6. The detection system of claim 1 , wherein a diameter of the cover plate is greater than the one or more nodes.

7. The detection system of claim 1 , wherein the cover plate includes a plurality of perforations.

8. The detection system of claim 7 , wherein the plurality of perforations are sized to allow particles from an atmosphere exterior to the cover plate to transfer into the internal cavity.

9. The detection system of claim 8 , wherein the plurality of perforations are sized to form a partial barrier between the internal cavity and the atmosphere exterior to the cover plate.

10. The detection system of claim 1 , wherein the cover plate limits a transmission of ambient light into the internal cavity.

11. The detection system of claim 1 , wherein the cover plate absorbs one or more wavelengths of light emitted by the one or more nodes.

12. The detection system of claim 1 , wherein the cover plate is anti-reflective at one or more wavelengths of light emitted by the one or more nodes.

13. The detection system of claim 1 , wherein the cover plate is transparent to one or more wavelengths of light emitted by the one or more nodes.

14. The detection system of claim 1 , wherein the cover plate is configured to restrict a transfer of solid objects into the internal cavity.

15. A method of measuring a condition comprising:

transmitting light from one or more nodes of a fiber optic cable into an internal cavity defined by a cover plate surrounding the one or more nodes, the one or more nodes being formed at a mounting surface and an end surface of the cover plate being connected to the mounting surface;

the light being emitted from the one or more nodes via at least one emitter cone and scattered light being received by the one or more nodes via at least one receiver cone

scattering the light within the internal cavity;

receiving a portion of the scattered light from the internal cavity via the at least one receiver cone, wherein a sensing volume where the at least one emitter cone overlaps the at least one receiving cone extends outside of the cover plate;

communicating the scattered light to a control system; and

analyzing the scattered light to evaluate a condition within the internal cavity adjacent the node.

16. The method of claim 15 , further comprising absorbing another portion of the scattered light at the cover plate.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 10, 2025
From: CARRIER CORPORATION; CARRIER GLOBAL CORPORATION; CARRIER FIRE & SECURITY EMEA; CARRIER FIRE & SECURITY, LLC; CARRIER CANADA CORPORATION; CLIMATE, CONTROLS & SECURITY ARGENTINA S.A.; KIDDE IP HOLDINGS , INC.; KIDDE LTD.; KIDDE PRODUCTS LTD.; CARRIER TRANSICOLD AUSTRIA GMBH; CARRIER TRANSICOLD FRANCE SCS
To: KIDDE FIRE PROTECTION, LLC
Reel/Frame 072828/0591 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 25, 2020
From: BIRNKRANT, MICHAEL J.; ALEXANDER, JENNIFER M.
To: CARRIER CORPORATION
Reel/Frame 054466/0830 →
Continuity (2)
Provisional Application 62697602 · Jul 13, 2018
Related Publication 20210201645A1 · Jul 1, 2021