IP Library Granted Patent US 12,553,826
Granted Patent B2
US 12,553,826 · App. 18/462,206 · Granted Feb 17, 2026

Multi-beam smoke detector

Inventors: Siddhesh Nagale (Pune, IN); Vicky Gaikwad (Pune, IN); Vinod Waghmare (Pune, IN)
Assignee: Tyco Fire & Security GmbH
G01N21/4738G08B17/103
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Quick Facts
Patent No.
US 12,553,826
App. No.
18/462,206
Granted
Feb 17, 2026
Kind
B2
Abstract

Example implementations include a method and apparatus for operating a smoke detector, comprising a first beam emitter and a second beam emitter. The first beam emitter may be configured to: (i) radiate a first beam in a first direction toward a first reflecting element, and (ii) receive a first reflection of the first beam from the first reflecting element. The second beam emitter may be configured to: (i) radiate a second beam in a second direction toward a second reflecting element, wherein the first direction is different than the second direction, and (ii) receive a second reflection of the second beam from the second reflecting element.

Claims (60)

1 . A smoke detector, comprising:

a first beam emitter configured to detect smoke in a first region of a structure:

radiate a first beam in a first direction toward a first reflecting element; and

receive a first reflection of the first beam from the first reflecting element; and

a second beam emitter configured to detect smoke in a second region of the structure different from the first region:

radiate a second beam in a second direction toward a second reflecting element, wherein the first direction is different than the second direction; and

receive a second reflection of the second beam from the second reflecting element, wherein the smoke detector is securely fixed to the structure such that, during operation of the smoke detector, there is a continuous one-to-one correspondence between the first beam emitter and the first reflecting element, and a continuous one-to-one correspondence between the second beam emitter and the second reflecting element.

2 . The smoke detector of claim 1 , further comprising:

a housing containing multiple beam emitters including the first beam emitter and the second beam emitter, wherein each of the multiple beam emitters is configured to radiate a beam in a unique direction relative to other of the multiple beam emitters.

3 . The smoke detector of claim 2 , further comprising:

multiple reflecting elements including the first reflecting element and the second reflecting element, wherein each of the multiple reflecting elements are configured to:

receive a beam from a corresponding one of the multiple beam emitters; and

reflect the received beam back to the corresponding one of the multiple beam emitters.

4 . The smoke detector of claim 1 , wherein the first direction is angled N degrees away from the second direction, and wherein there is no overlap between the first region and the second region.

5 . The smoke detector of claim 1 , further comprising:

one or more memories, individually or in combination, having instructions; and

one or more processors, individually or in combination, configured to execute the instructions and cause the smoke detector to:

determine whether an intensity of the first reflection is below a threshold value;

if the intensity is less than the threshold value, trigger an alert; and

if the intensity is equal to or greater than the threshold value, refrain from triggering the alert.

6 . The smoke detector of claim 5 , wherein the intensity of the first reflection is indicative of whether the first beam has passed through smoke.

7 . The smoke detector of claim 5 , wherein the one or more processors, being configured to trigger the alert, are further configured to:

transmit a message indicating a fire to a fire department or other emergency service.

8 . A method of operating a smoke detector, comprising:

radiating, via a first beam emitter, a first beam in a first direction toward a first reflecting element, wherein the first beam emitter is configured to detect smoke in a first region of a structure;

receiving, via the first beam emitter, a first reflection of the first beam from the first reflecting element, wherein there is a continuous one-to-one correspondence between the first beam emitter and the first reflecting element;

radiating, via a second beam emitter, a second beam in a second direction toward a second reflecting element, wherein the first direction is different than the second direction, and wherein second beam emitter configured to detect smoke in a second region of the structure different from the first region; and

receiving, via the second beam emitter, a second reflection of the second beam from the second reflecting element, wherein there is a continuous one-to-one correspondence between the second beam emitter and the second reflecting element.

9 . The method of claim 8 , wherein the smoke detector comprises a housing containing multiple beam emitters including the first beam emitter and the second beam emitter, wherein each of the multiple beam emitters is configured to radiate a beam in a unique direction relative to other of the multiple beam emitters.

10 . The method of claim 8 , wherein the first direction is angled N degrees away from the second direction.

11 . The method of claim 8 , wherein the method further comprises:

determining whether an intensity of the first reflection is below a threshold value;

if the intensity is less than the threshold value, triggering an alert; and

if the intensity is equal to or greater than the threshold value, refraining from triggering the alert.

12 . The method of claim 11 , wherein the intensity of the first reflection is indicative of whether the first beam has passed through smoke.

13 . The method of claim 11 , wherein triggering the alert further comprises transmitting a message indicating a fire to a fire department or other emergency service.

14 . A smoke detection system, comprising:

means for detecting smoke in a first region of a structure, comprising:

means for radiating a first beam in a first direction toward a first reflecting element; and

means for receiving a first reflection of the first beam from the first reflecting element, wherein there is a continuous one-to-one correspondence between the means for detecting smoke in the first region and the first reflecting element; and

means for detecting smoke in a second region of the structure different from the first region of the structure, comprising:

means for radiating a second beam in a second direction toward a second reflecting element, wherein the first direction is different than the second direction; and

means for receiving a second reflection of the second beam from the second reflecting element, wherein there is a continuous one-to-one correspondence between the means for detecting smoke in the second region and the second reflecting element.

15 . The smoke detection system of claim 14 , further comprising:

means for containing: means for radiating the first beam, means for receiving the first reflection, means for radiating the second beam, and means for receiving the second reflection.

16 . The smoke detection system of claim 14 , wherein the first direction is angled N degrees away from the second direction.

17 . The smoke detection system of claim 14 , further comprising:

means for determining whether an intensity of the first reflection is below a threshold value;

means for triggering an alert if the intensity is less than the threshold value; and

means for refraining from triggering the alert if the intensity is equal to or greater than the threshold value.

18 . The smoke detection system of claim 17 , wherein the intensity of the first reflection is indicative of whether the first beam has passed through smoke.

19 . The smoke detection system of claim 17 , further comprising means for transmitting a message indicating a fire to a fire department or other emergency service.

20 . The smoke detection system of claim 17 , wherein:

means for radiating the first beam in a first direction comprises a first beam emitter;

means for receiving the first reflection of the first beam comprises the first beam emitter;

means for radiating the second beam in the second direction comprises a second beam emitter;

means for receiving the second reflection of the second beam comprises the second beam emitter;

means for determining whether the intensity of the first reflection is below a threshold value comprises one or more memories, individually or in combination, having instructions, and one or more processors, individually or in combination, configured to execute the instructions;

means for triggering an alert comprises the one or more memories and the one or more processors; and

means for refraining from triggering the alert comprises the one or more memories and the one or more processors.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 6, 2024
From: JOHNSON CONTROLS TYCO IP HOLDINGS LLP
To: TYCO FIRE & SECURITY GMBH
Reel/Frame 068867/0311 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 1, 2024
From: JOHNSON CONTROLS TYCO IP HOLDINGS LLP
To: TYCO FIRE & SECURITY GMBH
Reel/Frame 066616/0232 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 8, 2023
From: NAGALE, SIDDHESH; GAIKWAD, VICKY; WAGHMARE, VINOD
To: JOHNSON CONTROLS TYCO IP HOLDINGS LLP
Reel/Frame 064841/0933 →
Continuity (1)
Related Publication 20250076196A1 · Mar 6, 2025
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