IP Library › Granted Patent US 12,687,655
Granted Patent B2
US 12,687,655 · App. 18/357,273 · Granted Jul 21, 2026

Laser detection system

Inventor: John Petrachek (Etobicoke, CA)
Assignee: Atlas-Apex Roofing Inc.
G01V8/12G01W1/14G08C17/02
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Quick Facts
Patent No.
US 12,687,655
App. No.
18/357,273
Filed
Jul 24, 2023
Granted
Jul 21, 2026
Kind
B2
Examiner
PYO, KEVIN K
Art Unit
2878
USPC
250/221
Abstract

A monitoring system comprising a transmitter and a receiver, the transmitter including a laser transmitter assembly selectively securable to a transmitter post between a transmitter proximate position adjacent a base end of the post and a transmitter distal position adjacent a distal end of the post, the laser transmitter assembly including a laser source arranged to project a laser beam from the transmitter, the receiver to be located a transmission distance from the transmitter and including a laser receiver assembly selectively securable to a receiver post between a receiver proximate position adjacent a base end of the post and a receiver distal position adjacent a distal end of the post to be aligned with the laser transmitter assembly to receive the laser beam, the laser receiver assembly including a detector to detect the laser beam and generate a signal in response to a laser beam interruption event.

Claims (14)

1 . A snowfall accumulation monitoring system, comprising:

a transmitter to be mounted to a first surface in an outdoor environment, the transmitter including a laser transmitter assembly including a laser source arranged to generate a laser beam and an array of beam transmitters positioned to receive the laser beam from the laser source and split the laser beam into a plurality of spatially discrete laser subbeams and project the plurality of spatially discrete laser subbeams from the laser transmitter assembly; and

a receiver to be mounted to a second surface in the outdoor environment located a transmission distance from the laser transmitter assembly, the receiver including a laser receiver assembly to be aligned with the laser transmitter assembly to receive the plurality of spatially discrete laser subbeams, the laser receiver assembly including a detector to detect the laser beam and generate a signal in response to a laser beam interruption event; and

wherein the laser beam interruption event is a coincident interruption of each of the plurality of laser subbeams.

2 . The snowfall accumulation monitoring system of claim 1 , wherein the plurality of laser subbeams are generally parallel and spaced by at least a threshold spacing of at least 1 mm.

3 . The snowfall accumulation monitoring system of claim 1 , wherein the laser beam interruption event is a coincident interruption of each of the plurality of laser subbeams lasting at least 5 seconds.

4 . The snowfall accumulation monitoring system of claim 1 , wherein the transmitter is mounted to the first surface in the outdoor environment and the receiver is mounted to the second surface in the outdoor environment.

5 . The snowfall accumulation monitoring system of claim 4 , wherein each of the first and second surfaces are portions of a roof.

6 . The snowfall accumulation monitoring system of claim 1 , further comprising a motion detector to be mounted adjacent the transmitter and the receiver and generate a motion signal in response to detecting motion between the transmitter and the receiver, the communications system communicatively coupled to the motion detector to receive the motion signal.

7 . The snowfall accumulation monitoring system of claim 6 , wherein the communications system is operable to disregard the laser beam interruption event in response to receiving the motion signal.

8 . The snowfall accumulation monitoring system of claim 6 , wherein the communications system is operable to provide an update to a user indicating both the laser beam interruption event and the motion signal.

9 . The snowfall accumulation monitoring system of claim 1 , wherein:

the transmitter further includes a transmitter post having a base end for attaching to the first surface and a distal end spaced from the base end by a transmitter post length, the laser transmitter assembly selectively securable to the transmitter post between a transmitter proximate position adjacent the base end and a transmitter distal position adjacent the distal end; and

the laser receiver assembly further includes receiver post having a base end for attaching to the second surface and a distal end spaced from the base end by a receiver post length, the laser receiver assembly selectively securable to the receiver post between a receiver proximate position adjacent the base end and a receiver distal position adjacent the distal end to be aligned with the laser transmitter assembly to receive the laser beam.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 10, 2024
From: PETRACHEK, JOHN
To: ATLAS-APEX ROOFING INC.
Reel/Frame 066086/0491 →
Continuity (3)
Continuation 17210145 · Mar 23, 2021
Provisional Application 62993271 · Mar 23, 2020
Related Publication 20230367029A1 · Nov 16, 2023
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