IP Library › Granted Patent US 12,544,601
Granted Patent B2
US 12,544,601 · App. 18/106,483 · Granted Feb 10, 2026

System and method of a ring architecture of a fixed piping system implemented within a safety system of a structure to continuously supply breathable air therewithin

Inventor: Anthony J. Turiello (Redwood City, CA)
Assignee: Rescue Air Systems, Inc.
A62B15/00F24F3/00F24F7/04F24F11/35F24F13/0227F24F2120/20
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Quick Facts
Patent No.
US 12,544,601
App. No.
18/106,483
Filed
Feb 7, 2023
Granted
Feb 10, 2026
Kind
B2
Art Unit
3762
USPC
454/257
Abstract

A safety system implemented within a structure includes a source of breathable air, and a fixed piping system to supply the breathable air from the source to each interior region of a number of interior regions across the structure. The fixed piping system is implemented in a ringed architecture including a first portion of the fixed piping system proximate the each interior region and a second portion thereof farther away from the each interior region. In accordance with the ringed architecture, the first portion and the second portion are implemented as a continuous ring with respect to the source of the breathable air such that, even during a compromise of a first sub-portion of the first portion, unaffected by the compromise, the breathable air continues to be supplied to a second sub-portion of the first portion by way of the second portion.

Claims (42)

1 . A safety system implemented within a structure comprising:

a source of breathable air;

a fixed piping system to supply the breathable air from the source to each interior region of a plurality of interior regions across the structure, the fixed piping system implemented in a ringed architecture comprising a first portion of the fixed piping system proximate the each interior region of the plurality of interior regions and a second portion of the fixed piping system farther away from the each interior region of the plurality of interior regions relative to the first portion, and, in accordance with the ringed architecture, the first portion and the second portion being implemented as a continuous ring with respect to the source of the breathable air such that, during a compromise of a first sub-portion of the first portion of the fixed piping system relevant to at least one interior region of the plurality of interior regions unaffected by the compromise, the breathable air continues to be supplied to a second sub-portion of the first portion of the fixed piping system by way of the second portion of the fixed piping system; and

a hardware controller to control an indicator light corresponding to the first sub-portion that is affected by the compromise, responsive to a signal indicating the compromise at the first sub-portion.

2 . The safety system of claim 1 , further comprising the hardware controller to detect an event related to the compromise one of: solely and in conjunction with a data processing device communicatively coupled thereto.

3 . The safety system of claim 2 , wherein, in response to the detection, the at least one of: the hardware controller and the data processing device cuts off the breathable air to the first sub-portion of the first portion of the fixed piping system.

4 . The safety system of claim 1 , wherein the fixed piping system is implemented along a plurality of interior walls of the structure.

5 . The safety system of claim 1 , comprising the safety system being implemented within one of: a shopping mall, a hypermart, an extended shopping facility, a storage center, a fulfillment center, a warehouse, a tunnel, a marine craft and a mine serving as the structure.

6 . The safety system of claim 3 , wherein the at least one of: the hardware controller and the data processing device cuts off the breathable air to the first sub-portion based on controlling at least one valve associated with the first sub-portion of the first portion of the fixed piping system.

7 . The safety system of claim 6 , wherein at least one of:

each of the at least one valve is proximate a fill station that provides access to the breathable air,

the fixed piping system is implemented within a fire-rated enclosure;

the ringed architecture of the fixed piping system involves a mesh configuration of the fixed piping system, and

the mesh configuration involves the first portion and the second portion forming the continuous ring along with a shell ring formed proximate the first portion and the second portion.

8 . A safety system implemented within a structure comprising:

a source of breathable air;

a fixed piping system to supply the breathable air from the source to each interior region of a plurality of interior regions of the structure, the fixed piping system implemented in a ringed architecture comprising a first portion of the fixed piping system proximate the each interior region of the plurality of interior regions and a second portion of the fixed piping system farther away from the each interior region of the plurality of interior regions, and, in accordance with the ringed architecture, the first portion and the second portion being implemented as a continuous ring with respect to the source of the breathable air such that, even during a compromise of a first sub-portion of the first portion of the fixed piping system relevant to at least one interior region of the plurality of interior regions proximate thereto, unaffected by the compromise, the breathable air continues to be supplied to a second sub-portion of the first portion of the fixed piping system by way of the second portion of the fixed piping system; and

a hardware controller in conjunction with a data processing device communicatively coupled thereto, to detect an event related to the compromise and control an indicator light corresponding to the first sub-portion that is affected by the compromise, responsive to a signal indicating the compromise at the first sub-portion.

9 . The safety system of claim 8 , wherein, in response to the detection, the at least one of: the hardware controller and the data processing device cuts off the breathable air to the first sub-portion of the first portion of the fixed piping system.

10 . The safety system of claim 8 , wherein the fixed piping system is implemented along a plurality of interior walls of the structure.

11 . The safety system of claim 8 , comprising the safety system being implemented within one of: a shopping mall, a hypermart, an extended shopping facility, a storage center, a fulfillment center, a warehouse, a tunnel, a marine craft and a mine serving as the structure.

12 . The safety system of claim 9 , wherein the at least one of: the hardware controller and the data processing device cuts off the breathable air to the first sub-portion based on controlling at least one valve associated with the first sub-portion of the first portion of the fixed piping system.

13 . The safety system of claim 12 , wherein at least one of:

each of the at least one valve is proximate a fill station that provides access to the breathable air,

the fixed piping system is implemented within a fire-rated enclosure,

the ringed architecture of the fixed piping system involves a mesh configuration of the fixed piping system, and

the mesh configuration involves the first portion and the second portion forming the continuous ring along with a shell ring formed proximate the first portion and the second portion.

14 . A method of a safety system implemented within a structure comprising:

supplying breathable air from a source to each interior region of a plurality of interior regions of the structure through a fixed piping system;

implementing the fixed piping system in a ringed architecture comprising a first portion of the fixed piping system proximate the each interior region of the plurality of interior regions and a second portion of the fixed piping system farther away from the each interior region of the plurality of interior regions;

in accordance with the ringed architecture, forming a continuous ring involving both the first portion and the second portion with respect to the source of the breathable air such that, even during a compromise of a first sub-portion of the first portion of the fixed piping system relevant to at least one interior region of the plurality of interior regions proximate thereto, unaffected by the compromise, the breathable air continues to be supplied to a second sub-portion of the first portion of the fixed piping system by way of the second portion of the fixed piping system; and

controlling, using a hardware controller, an indicator light corresponding to the first sub-portion that is affected by the compromise, responsive to a signal indicating the compromise at the first sub-portion.

15 . The method of claim 14 , further comprising detecting, through at least one of: the hardware controller and a data processing device communicatively coupled thereto, an event related to the compromise.

16 . The method of claim 15 , comprising, in response to the detection, cutting off the breathable air to the first sub-portion of the first portion of the fixed piping system through the at least one of: the hardware controller and the data processing device.

17 . The method of claim 14 , comprising implementing the fixed piping system along a plurality of interior walls of the structure.

18 . The method of claim 14 , comprising implementing the safety system within one of: a shopping mall, a hypermart, an extended shopping facility, a storage center, a fulfillment center, a warehouse, a tunnel, a marine craft and a mine serving as the structure.

19 . The method of claim 15 , comprising, using the at least one of: the hardware controller and the data processing device, cutting off the breathable air to the first sub-portion based on controlling at least one valve associated with the first sub-portion of the first portion of the fixed piping system.

20 . The method of claim 19 , comprising at least one of:

each of the at least one valve being proximate a fill station that provides access to the breathable air;

the fixed piping system being implemented within a fire-rated enclosure;

the ringed architecture of the fixed piping system comprising a mesh configuration of the fixed piping system; and

the mesh configuration comprising the first portion and the second portion forming the continuous ring along with a shell ring formed proximate the first portion and the second portion.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 14, 2023
From: TURIELLO, ANTHONY J.
To: RESCUE AIR SYSTEMS, INC.
Reel/Frame 062680/0966 →
Continuity (6)
Continuation In Part 18103495 · Jan 31, 2023
Provisional Application 63388650 · Jul 13, 2022
Provisional Application 63358876 · Jul 7, 2022
Provisional Application 63357743 · Jul 1, 2022
Provisional Application 63356996 · Jun 29, 2022
Related Publication 20240001168A1 · Jan 4, 2024
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