IP Library › Granted Patent US 11,990,015
Granted Patent B2
US 11,990,015 · App. 17/481,577 · Granted May 21, 2024

Point heat detectors based on surface mounted thermistors

Inventors: Andrea Chiatti (Trieste, IT); Andrea Frison (Monfalcone, IT); Arturo Paderno (Charlotte, NC); Daniele Iurissevich (Trieste, IT); Fabio Bellemo (Charlotte, NC); Massimo Bressanutti (Sesto al Reghena, IT); Maurizio Berliavaz (Charlotte, NC); Stefano Pecorari (Charlotte, NC)
Assignee: Honeywell International Inc.
G08B17/06H05K1/181H05K2201/09272H05K2201/10022H05K2201/10151
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Quick Facts
Patent No.
US 11,990,015
App. No.
17/481,577
Granted
May 21, 2024
Kind
B2
Abstract

Devices, systems, and methods for providing point heat detectors based on surface mounted thermistors are described herein. One circuit board for a point heat detector of a fire sensing system includes a circuit board body having number of corners, at least one hole provided in the circuit board body proximate to one of the corners, and a surface mounted thermistor mounted on at least one corner.

Claims (34)

1. A circuit board for a point heat detector of a fire sensing system, comprising:

a circuit board body having number of corners;

at least one aperture provided in the circuit board body proximate to one of the corners;

a surface mounted thermistor mounted on at least one corner; and

wherein the circuit board body has an edge at its periphery and wherein the surface mounted thermistor is positioned on the corner having the aperture proximate thereto and positioned between the edge and the at least one aperture.

2. The circuit board for a point heat detector of claim 1 , wherein the circuit board body includes at least two apertures proximate to one of the corners and wherein the circuit board body includes a bridge between at least two of the apertures that has circuitry thereon to connect the surface mounted thermistor to another component of the circuit board body.

3. A point heat detector of a fire sensing system, comprising:

a detector housing; and

a circuit board body having number of corners;

at least one aperture provided in the circuit board body proximate to one of the corners;

a surface mounted thermistor mounted on at least one corner; and

wherein the circuit board body has an edge at its periphery and wherein the surface mounted thermistor is positioned on the corner having the aperture proximate thereto and positioned between the edge and the at least one aperture.

4. The point heat detector of claim 3 , wherein the detector housing includes at least one aperture in a side surface of the housing allowing at least one corner having the surface mounted thermistor thereon to protrude through the aperture.

5. The point heat detector of claim 3 , wherein the circuit board body is positioned inside the detector housing and wherein the detector housing includes at least one cut out portion allowing at least one corner having the surface mounted thermistor thereon to protrude through the at least one cut out portion.

6. The point heat detector of claim 5 , wherein the at least one cut out portion has an aperture allowing at least one corner having the surface mounted thermistor thereon to protrude through the aperture of the at least one cut out portion.

7. The point heat detector of claim 6 , wherein the housing has a bottom surface and wherein the bottom surface has at least one aperture proximate to the thermistor.

8. The point heat detector of claim 6 , wherein the circuit board has a thermistor mounted at each corner of the circuit board.

9. The point heat detector of claim 8 , wherein each corner of the circuit board has a number of aperture formed therein.

10. The point heat detector of claim 6 , wherein the at least one cut out portion has sloping portions that slope toward the aperture of the at least one cut out portion.

11. A point heat detector of a fire sensing system, comprising:

a detector housing;

a circuit board body having number of corners; and

a surface mounted thermistor mounted on at least one corner;

wherein the circuit board body has an edge at its periphery and wherein the surface mounted thermistor is positioned on the corner having the aperture proximate thereto and positioned between the edge and the at least one aperture; and

a controller and memory, the memory having instructions executable by the controller to:

collect data from the surface mounted thermistor mounted on at least one corner.

12. The point heat detector of claim 11 , wherein the controller analyzes a time value that the data was received to determine a direction of a heat source.

13. The point heat detector of claim 11 , wherein the point heat detector has surface mounted thermistors mounted on at least two corners and wherein the controller compares data received from the thermistors mounted on the at least two corners to determine a direction of a heat source.

14. The point heat detector of claim 11 , wherein the point heat detector has surface mounted thermistors mounted on at least two corners and wherein the controller combines data received from the thermistors mounted on the at least two corners to determine a direction of a heat source.

15. The point heat detector of claim 11 , wherein the point heat detector includes a digital compass and has surface mounted thermistors mounted on at least two corners and wherein the controller combines data received from the thermistors mounted on the at least two corners and the digital compass to determine a direction of a heat source.

16. The point heat detector of claim 11 , wherein the controller compares a measured thermistor temperature with an estimated thermistor temperature to determine a model thermistor temperature.

17. The point heat detector of claim 11 , wherein the controller determines a difference value by comparing a measured thermistor temperature with an estimated thermistor temperature.

18. The point heat detector of claim 17 , wherein the controller uses the difference value to update a sensor model.

19. The point heat detector of claim 17 , wherein the controller uses the difference value to update an air flow temperature estimating model.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 22, 2021
From: CHIATTI, ANDREA; FRISON, ANDREA; PADERNO, ARTURO; IURISSEVICH, DANIELE; BELLEMO, FABIO; BRESSANUTTI, MASSIMO; BERLIAVAZ, MAURIZIO; PECORARI, STEFANO
To: HONEYWELL INTERNATIONAL INC.
Reel/Frame 057560/0780 →
Continuity (1)
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