IP Library Granted Patent US 11,428,577
Granted Patent B2
US 11,428,577 · App. 15/999,528 · Granted Aug 30, 2022

Pyroelectric presence identification system

Inventors: Joseph V. Mantese (Ellington, CT); Alan Matthew Finn (Hebron, CT); Nicholas Charles Soldner (Southbury, CT)
Assignee: CARRIER CORPORATION
G01J5/34G01J5/0025G01J5/0805G06V20/00H04N5/33G01J2005/0077G01J2005/345
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Quick Facts
Patent No.
US 11,428,577
App. No.
15/999,528
Granted
Aug 30, 2022
Kind
B2
Abstract

A pyroelectric presence identification system includes focal plane array and a processor coupled to the focal plane array. The focal plane array includes a first image sensor and a plurality of second image sensors configured to convert radiant energy into an electrical signal. The processor is configured to control the focal plane array in a sleep mode wherein the first image sensor is utilized to detect gross motion of at least one presence and the plurality of second image sensors are de-energized.

Claims (31)

1. A pyroelectric presence identification system comprising:

a focal plane array including a first image sensor and a plurality of second image sensors, with the first image sensor and the plurality of second image sensors configured to convert radiant energy into an electrical signal;

a mechanical chopper disposed between a scene and the focal plane array; and

a processor coupled to the focal plane array and configured to control the focal plane array in a sleep mode wherein the first image sensor is utilized to detect gross motion of at least one presence and the plurality of second image sensors are de-energized, wherein once gross motion is detected, the presence identification system is configured to operate in a chopperless-active mode wherein at least the plurality of second image sensors are energized for detection and counting of the at least one presence, and a chopping mode wherein at least the plurality of second image sensors are energized for identification of the at least one presence.

2. The pyroelectric presence identification system set forth in claim 1 , wherein the first image sensor is configured to view a first portion of a scene and the plurality of second image sensors are configured to view a second portion of the scene.

3. The pyroelectric presence identification system set forth in claim 1 , wherein the first image sensor and the plurality of second image sensors are infrared sensors.

4. The pyroelectric presence identification system set forth in claim 3 , wherein the infrared sensors are passive infrared sensors.

5. The pyroelectric presence identification system set forth in claim 1 further comprising:

a battery for providing electrical power.

6. The pyroelectric presence identification system set forth in claim 1 further comprising:

a substrate platform with the focal plane array and the processor integrated onto the substrate platform.

7. The pyroelectric presence identification system set forth in claim 1 further comprising:

a wireless network configured to communicate with the processor to alter modes of operation.

8. The pyroelectric presence identification system set forth in claim 7 further comprising:

a battery for providing electrical power to at least the focal plane array.

9. The pyroelectric presence identification system set forth in claim 1 , wherein the first image sensor is configured to view a first scene and the plurality of second image sensors are configured to view a second scene.

10. The pyroelectric presence identification system set forth in claim 1 , wherein the first image sensor and the plurality of second image sensors are infrared sensors.

11. The pyroelectric presence identification system set forth in claim 10 , wherein the infrared sensors are passive infrared sensors.

12. The pyroelectric presence identification system set forth in claim 1 further comprising:

a battery for providing electrical power.

13. The pyroelectric presence identification system set forth in claim 1 further comprising:

a substrate platform with the focal plane array and the processor integrated onto the substrate platform.

14. A method of operating a pyroelectric presence identification system comprising:

monitoring a scene for gross motion by a first image sensor of a focal plane array of a detection device operating in a sleep mode;

sensing the gross motion by the first image sensor of the detection device;

detecting at least one presence by a plurality of second image sensors of the detection device operating in a chopperless-active mode; and

identifying the at least one presence by the plurality of second image sensors of the detection device operating in a chopping mode.

15. The method set forth in claim 14 , wherein the detection device when operating in the chopping mode is configured to identify the at least one presence.

16. The method set forth in claim 14 , wherein at least one first image sensor of the focal plane array is utilized and the plurality of second image sensors of the focal plane array are de-energized when operating in the sleep mode.

17. The method set forth in claim 16 , wherein the plurality of second image sensors are energized when operating in the chopperless-active mode.

18. The method set forth in claim 17 , wherein the plurality of second image sensors are energized when operating in the chopping mode.

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 072830/0556 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 13, 2018
From: MANTESE, JOSEPH V.; FINN, ALAN MATTHEW; SOLDNER, NICHOLAS CHARLES
To: CARRIER CORPORATION
Reel/Frame 046868/0066 →
Continuity (2)
Provisional Application 62296352 · Feb 17, 2016
Related Publication 20210208004A1 · Jul 8, 2021