IP Library Granted Patent US 12,468,273
Granted Patent B2
US 12,468,273 · App. 17/699,618 · Granted Nov 11, 2025

Mobile air-filtering patient isolation system, mobile air-filtering laboratory isolation system, and mobile room air-filtering system, including improved air filtration unit

Inventors: Stephane Hauville (Byfield, MA); Antoine Hauville (La Londe, FR); Cédric Herry (Val de Reuil, FR)
Assignee: FIPAK Research And Development Company
G05B15/02B08B15/00F24F3/16F24F7/06F24F11/77H04W4/70F24F11/32F24F11/39F24F11/52F24F2221/14Y02B30/70Y10S55/34
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Quick Facts
Patent No.
US 12,468,273
App. No.
17/699,618
Granted
Nov 11, 2025
Kind
B2
Abstract

A mobile air-filtering isolation system, the system including a base; a frame extending upwardly from the base; an air filtration unit mounted to the frame; and at least one flexible curtain extending downward from the air filtration unit, whereby to form an enclosure.

Claims (52)

1 . A mobile and foldable air-filtering isolation system for isolating an object in a room, the system comprising:

a base comprising at least one leg, the at least one leg comprising at least one wheel for rolling the base on the surface of the floor in the room;

a frame extending upwardly from the base, the frame comprising (i) at least one vertical riser having a longitudinal axis, and (ii) a top support having a longitudinal axis;

an air filtration unit mounted to the top support of the frame, wherein the air filtration unit comprises:

an air inlet formed in the housing;

an air outlet formed in the housing;

a passageway extending through the housing and connecting the air inlet to the air outlet;

a filter disposed in the passageway for purifying the air in the passageway;

a suction fan disposed within the passageway for drawing air into the air inlet through the filter and out of the air outlet;

a sensor for monitoring at least one of (i) the presence of chemicals in the room, (ii) the presence of biologics in the room, (iii) proper function of the air filtration unit, and (iv) the concentration of carbon dioxide in the room; and

an ultraviolet (UV) light source for sterilizing the filter;

wherein the air filtration unit is wirelessly connected to a monitoring and control system;

wherein the at least one vertical riser is configured to be selectively telescoped upwardly and downwardly so as to enable the height of the air filtration unit to be adjusted;

wherein the top support is hingedly mounted to the vertical riser such that the air filtration unit may be disposed in (i) a deployed position in which the longitudinal axis of the top support extends generally perpendicular to the longitudinal axis of the at least one vertical riser and parallel to the surface of the floor in the room, or (ii) a collapsed position in which the longitudinal axis of the top support extends generally parallel to the longitudinal axis of the at least one vertical riser;

wherein the base is hingedly mounted to the frame such that the base may be disposed in (i) a deployed position in which the at least one leg extends generally perpendicular to the longitudinal axis of the at least one vertical riser and parallel to the surface of the floor in the room, or (ii) a collapsed position in which the at least one leg extends generally parallel to the longitudinal axis of the at least one vertical riser;

at least one curtain configured to be mounted to the air filtration unit when the air filtration unit is in the deployed configuration, such that when the air filtration unit is in the deployed configuration and the at least one curtain is mounted to the air filtration unit, the air filtration unit and the at least one curtain together form an enclosure around the object to be isolated in the room; and

a storage container for storing the at least one curtain;

wherein the air filtration unit is configured to (i) withdraw air from at least one of the enclosure and the room, (ii) filter the withdrawn air, and (iii) return the filtered air to the room or the enclosure; and

further wherein the air filtration unit is configured to (i) withdraw air from at least one of the enclosure and the room, (ii) purify the withdrawn air by capturing at least one of viruses and microorganisms to the filter, (iii) activate the UV light source to irradiate the viruses and microorganisms captured on the filter, whereby to sterilize the filter, and (iv) return the purified air to the room or the enclosure.

2 . The system of claim 1 wherein the at least one curtain is flexible.

3 . The system of claim 1 wherein the filter is configured to trap at least one selected from the group consisting of chemicals, viruses, microorganisms, medications, vapor droplets and particulates.

4 . The system of claim 1 further comprising a battery for powering the air filtration unit.

5 . The air filtration unit of claim 1 wherein the sensor is further configured to monitor proper function of at least one of the suction fan and the filter.

6 . The system of claim 1 wherein the filter comprises at least one from the group consisting of a High-Efficiency Particulate Air (“HEPA”) filter, an Ultra Low Particulate Air (“ULPA”) filter and a molecular filter.

7 . A method for isolating an object in a room, the method comprising:

providing a mobile and foldable air-filtering isolation system for isolating the object in the room, the system comprising:

a base comprising at least one leg, the at least one leg comprising at least one wheel for rolling the base on the surface of the floor in the room;

a frame extending upwardly from the base, the frame comprising (i) at least one vertical riser having a longitudinal axis, and (ii) a top support having a longitudinal axis;

an air filtration unit mounted to the top support of the frame, wherein the air filtration unit comprises:

an air inlet formed in the housing;

an air outlet formed in the housing;

a passageway extending through the housing and connecting the air inlet to the air outlet;

a filter disposed in the passageway for purifying the air in the passageway;

a suction fan disposed within the passageway for drawing air into the air inlet through the filter and out of the air outlet;

a sensor for monitoring at least one of (i) the presence of chemicals in the room, (ii) the presence of biologics in the room, (iii) proper function of the air filtration unit, and (iv) the concentration of carbon dioxide in the room; and

an ultraviolet (UV) light source for sterilizing the filter;

wherein the air filtration unit is wirelessly connected to a monitoring and control system;

wherein the at least one vertical riser is configured to be selectively telescoped upwardly and downwardly so as to enable the height of the air filtration unit to be adjusted;

wherein the top support is hingedly mounted to the vertical riser such that the air filtration unit may be disposed in (i) a deployed position in which the longitudinal axis of the top support extends generally perpendicular to the longitudinal axis of the at least one vertical riser and parallel to the surface of the floor in the room, or (ii) a collapsed position in which the longitudinal axis of the top support extends generally parallel to the longitudinal axis of the at least one vertical riser;

wherein the base is hingedly mounted to the frame such that the base may be disposed in (i) a deployed position in which the at least one leg extends generally perpendicular to the longitudinal axis of the at least one vertical riser and parallel to the surface of the floor in the room, or (ii) a collapsed position in which the at least one leg extends generally parallel to the longitudinal axis of the at least one vertical riser;

at least one curtain configured to be mounted to the air filtration unit when the air filtration unit is in the deployed configuration, such that when the air filtration unit is in the deployed configuration and the at least one curtain is mounted to the air filtration unit, the air filtration unit and the at least one curtain together form an enclosure around the object to be isolated in the room;

a storage container for storing the at least one curtain;

positioning the enclosure around the object to be isolated in the room; and

operating the air filtration unit so as to either (i) withdraw air from the enclosure into the air filtration unit, purify the withdrawn air and return the purified air to the room, (ii) withdraw air from the room into the air filtration unit, purify the withdrawn air and return the purified air to the enclosure, or (iii) withdraw air from at least one of the enclosure and the room, purify the withdrawn air by capturing at least one of viruses and microorganisms to the filter, activate the UV light source to irradiate the viruses and microorganisms captured on the filter, whereby to sterilize the filter, and return the purified air to the room or the enclosure.

8 . The method of claim 7 wherein the object is a hospital bed and a patient is on the hospital bed.

9 . The method of claim 8 further comprising delivering a medication to the patient while operating the air filtration unit.

10 . The method of claim 7 wherein positioning the enclosure around the object to be isolated in the room comprises moving the top support to the deployed position and mounting the at least one curtain to the air filtration unit.

11 . The method of claim 10 wherein the at least one curtain is removably fastened to the air filtration unit.

12 . The method of claim 10 wherein after operating the air filtration unit, the method further comprises removing the at least one curtain from the air filtration unit, moving the top support to the collapsed position, moving the base to the collapsed position, and storing the system.

13 . The method of claim 7 wherein the filter is further configured to capture at least one selected from the group consisting of chemicals, medications, vapor droplets and particulates.

14 . The method of claim 7 further comprising modifying the operation of the air filtration unit to account for at least of (i) the presence of chemicals in the room, (ii) the presence of biologics in the room, and (iii) the concentration of carbon dioxide in the room.

15 . The method of claim 7 wherein the filter comprises at least one from the group consisting of a High-Efficiency Particulate Air (“HEPA”) filter, an Ultra Low Particulate Air (“ULPA”) filter and a molecular filter.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2024
From: HAUVILLE, ANTOINE
To: FIPAK RESEARCH AND DEVELOPMENT COMPANY
Reel/Frame 067255/0232 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2024
From: HERRY, CÉDRIC
To: FIPAK RESEARCH AND DEVELOPMENT COMPANY
Reel/Frame 067255/0516 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2024
From: HAUVILLE, STEPHANE
To: FIPAK RESEARCH AND DEVELOPMENT COMPANY
Reel/Frame 067255/0551 →
Continuity (9)
Continuation 17474445 · Sep 14, 2021
Continuation 16736104 · Jan 7, 2020
Continuation 15640725 · Jul 3, 2017
Continuation 14635206 · Mar 2, 2015
Continuation In Part 14281416 · May 19, 2014
Provisional Application 61824997 · May 18, 2013
Provisional Application 61946292 · Feb 28, 2014
Provisional Application 63163238 · Mar 19, 2021
Related Publication 20220206446A1 · Jun 30, 2022
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