IP Library Granted Patent US 10,360,780
Granted Patent B2
US 10,360,780 · App. 16/014,991 · Granted Jul 23, 2019

Fire detection device and notification system

Inventors: Nandita Chakravarthy Balaji (Charlotte, NC); Shreyas Narayan Bhasin (Charlotte, NC); Kevin James Kaspar (Charlotte, NC); Zoe Paige Sherman (Matthews, NC)
G08B17/06G08B17/10G08B25/009G08B25/10G08B25/14G08B29/145
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Quick Facts
Patent No.
US 10,360,780
App. No.
16/014,991
Granted
Jul 23, 2019
Kind
B2
Abstract

Embodiments of the present invention relate to, in general, a fire detection device and notification system configured for generating alerts based on detected environmental conditions (e.g., temperature, humidity, presence of flame or smoke or combustion gas). In some embodiments, the fire detection device employs various sensor devices (e.g., temperature, humidity, flame, smoke, gas, and the like) to collect environmental data and determine whether the detected environmental conditions indicate the presence of or the increased possibility of a fire. In some embodiments, the invention further comprises a notification system for automatically generating and transmitting alerts to one or more computing devices (e.g., responder dispatch systems) based on the detection of hazardous conditions.

Claims (24)

1. A fire detection device network comprising a plurality of fire detection devices configured to communicate over a network, each of the plurality of fire detection devices comprising:

at least one sensor device;

a memory device with computer-readable program code stored thereon;

a communication device configured to communicate via the network; and

a processing device operatively coupled to the at least one sensor device, the memory device, and the communication device, wherein the processing device is configured to execute the computer-readable program code stored in the memory device to:

collect environmental data via the at least one sensor device;

determine a hazardous environmental condition based on the environmental data;

based on determining the hazardous environmental condition, generate an alert, wherein the alert comprises a location associated with at least one of the plurality of fire detection devices; and

transmit the alert,

wherein at least some of the plurality of fire detection devices are configured to remain in a dormant state until determining a hazardous environmental condition, and

wherein a first fire detection device in an active state is configured to utilize processing power of a second fire detection device in the dormant state over the network.

2. The fire detection device network of claim 1 , wherein said the processing device is further configured to execute the computer-readable program code to:

determine a hazardous environmental condition based on the environmental data;

based on determining the hazardous environmental condition, generate an alert, wherein the alert comprises both the environmental data and a location associated with at least one of the plurality of fire detection devices; and

transmit the alert.

3. The fire detection device network of claim 1 , wherein the hazardous environmental condition is transmitted from the first fire detection device in the active state to the second fire detection device in the dormant state, wherein receiving the hazardous environmental condition causes the second fire detection device to operate in the active state, and wherein the second fire detection device is configured to collect and processes environmental data in the active state.

4. The fire detection device network of claim 1 , wherein the computing device comprises an interactive user application stored thereon configured to receive the environmental data.

5. The fire detection device network of claim 4 , wherein the interactive user application is configured to generate a map based on the environmental data.

6. The fire detection device network of claim 1 , wherein at least one of the fire detection devices further comprises:

a vessel forming an interior cavity;

a secondary enclosure positioned within the interior cavity and at least partially housing the at least one sensor, the secondary enclosure and the vessel forming a space therebetween; and

a fireproof or fire resistant insulation positioned within the space.

7. The fire detection device network of claim 6 , wherein the fireproof or fire resistant insulation is a sprayable foam insulation, the sprayable foam insulation expandable to fill the space.

8. The fire detection device network of claim 1 , wherein the at least one sensor is selected from the group consisting of a humidity sensor, a gas sensor, an anemometer, a weather vane, a pressure sensor, a photoelectric sensor, a capacitance sensor, an electric field sensor, a magnetic field sensor, a piezoresistive or piezoelectric sensor, a pH sensor, an image capture device, a sound recording device, a proximity sensor, a motion sensor, a radio frequency sensor, a radiation sensing device, or a biological contaminant sensing device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 25, 2023
From: BALAJI, NANDITA CHAKRAVARTHY; BHASIN, SHREYAS NARAYAN; KASPAR, KEVIN JAMES; SHERMAN, ZOE PAIGE
To: INFERNOGUARD INC.
Reel/Frame 062480/0606 →
Continuity (2)
Provisional Application 62523814 · Jun 23, 2017
Related Publication 20180374330A1 · Dec 27, 2018
Cited By (2)
US 12,235,408 US 12,640,025