IP Library Granted Patent US 9,208,671
Granted Patent B2
US 9,208,671 · App. 14/097,564 · Granted Dec 8, 2015

Redundant input pipe networks in aspirated smoke detectors

Inventors: Michele Susel (Trieste, IT); Federico Cernoia (Udine, IT)
Assignee: HONEYWELL INTERNATIONAL INC.
G08B17/10G01N1/26G08B29/16F21S8/04G01N2001/245
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Quick Facts
Patent No.
US 9,208,671
App. No.
14/097,564
Granted
Dec 8, 2015
Kind
B2
Abstract

An aspirated detecting system includes a multi-channel aspirated smoke detector with each channel including an air moving element, such as a fan, first and second sets of substantially identical air flow pipes where each set defines a plurality of spaced apart inflow ports. Control circuits activate a first element and then a second element to establish a transport time associated with at least one inflow port in response to the detector sensing a predetermined smoke condition. The control circuits include a storage unit which includes pre-stored timer values which are associated with respective transport times from an associated inflow port.

Claims (32)

1. An aspirated detector system comprising:

a first ambient air input network which includes a plurality of spaced apart intake points;

a second ambient air input network which includes a second plurality of spaced apart intake points, the first and second networks are substantially identical;

an ambient condition detector coupled to the networks, which includes first and second intake elements configured to draw ambient air from a respective network to the detector, wherein a transport time of a selected condition from an intake point of one network to the detector can be determined by detecting the selected condition with both networks; and

circuitry to actuate one intake element, and, in response to sensing the detected condition at the detector, to actuate the second intake element and a timer to establish the transport time.

2. A system as in claim 1 where the circuitry, in response to sensing the selected condition, at the detector, terminates operation of the timer.

3. A system as in claim 2 where contents of the timer are used to determine the transport time.

4. A system as in claim 3 where contents of the timer are used to determine the transport time.

5. A system as in claim 4 where the intake elements both rotate in a common direction.

6. A system as in claim 4 where the elements are selected from a class which includes, at least, fans, blowers, and aspirators.

7. A system as in claim 4 which includes operating the elements at a common speed.

8. A system as in claim 4 wherein the detector comprises one of a smoke sensor, or a gas sensor.

9. A system as in claim 8 where the detector comprises a multi-channel aspirated smoke sensor.

10. A system as in claim 9 wherein the timer comprises a counter and an associated source of timing pulses.

11. A system as in claim 1 wherein the intake elements rotate only in a common direction when the transport time is being determined.

12. A system as in claim 4 which includes second circuitry to establish a plurality of transport times where each transport time is associated with a predetermined intake point.

13. A system as in claim 5 which includes second circuitry to establish a plurality of transport times where each transport time is associated with a predetermined intake point.

14. An aspirated detecting system comprising:

a multi-channel aspirated smoke detector with each channel including an air moving element;

first and second sets of substantially identical air flow pipes where each set defines a plurality of spaced apart inflow ports;

control circuits to activate a first element and then a second element to establish a transport time associated with at least one inflow port in response to the detector sensing a predetermined ambient condition; and

where functioning of the sets of pipes can be interchanged.

15. An aspirated detecting system as in claim 14 where the air moving elements are substantially identical, and rotate in a common direction when determining a transport time.

16. An aspirated detecting system as in claim 15 where the control circuits activate the elements successively, and, start a timer when the second element is activated.

17. An aspirated detecting system as in claim 16 which includes a pre-stored table of possible timer values, each of which is associated with a transport time.

18. An aspirated detecting system as in claim 17 which includes a pre-stored table of possible timer values, each of which is associated with a transport time.

19. An aspirated detecting system comprising:

a multi-channel aspirated smoke detector with each channel including an air moving element, such as a fan;

first and second sets of substantially identical air flow pipes where each set defines a plurality of spaced apart inflow ports;

control circuits which activate a first element and then, in response to detected smoke, activate a second element to establish a transport time associated with at least one inflow port in response to the detector sensing a predetermined smoke condition;

wherein the control circuits include a storage unit which includes pre-stored timer values which are associated with respective transport times from an associated inflow port; and

where functioning of the sets of pipes can be interchanged.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 22, 2014
From: HONEYWELL INTERNATIONAL INC.
To: LIFE SAFETY DISTRIBUTION AG
Reel/Frame 034570/0872 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 5, 2013
From: SUSEL, MICHELE; CERNOIA, FEDERICO
To: HONEYWELL INTERNATIONAL INC.
Reel/Frame 031722/0489 →
Continuity (1)
Related Publication 20150161865A1 · Jun 11, 2015