IP Library › Granted Patent US 11,786,689
Granted Patent B2
US 11,786,689 · App. 17/127,562 · Granted Oct 17, 2023

Gas concentrator with removable cartridge adsorbent beds

Inventors: Brenton Alan Taylor (Kenwood, CA); Peter Hansen (Santa Barbara, CA); John Russell Stump (Santa Barbara, CA); Patrick Fitzlindon Burgess (Dunedin, FL); Daniel Wayne Chin (Goleta, CA)
Assignee: Inogen, Inc.
A61M16/101A61M16/10B01D53/047B01D53/0438B01D53/0476A61M16/107A61M16/16A61M2202/0208A61M2205/42A61M2205/8206B01D53/053B01D2253/108B01D2256/12B01D2257/102B01D2258/06B01D2259/402B01D2259/4533B01D2259/4541
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Quick Facts
Patent No.
US 11,786,689
App. No.
17/127,562
Granted
Oct 17, 2023
Kind
B2
Abstract

A portable oxygen concentrator designed for medical use where the adsorbent beds, are designed to be replaced by a patient. The concentrator is designed so that the power supply and adsorbent bed mount is one module and the compressor and air filter are part of another module configured to provide a unitary cooling and air supply system. Replacement beds may be installed easily by patients, and all gas seals will function properly after installation.

Claims (48)

1. A portable oxygen concentrator, comprising:

one of a PSA, VPSA or VSA core section comprising:

a housing;

a controller;

a user interface;

at least two adsorber beds;

at least one compressor;

an airblower;

a power supply module comprising at least one power supply;

an intake silencer, wherein the intake silencer and an exhaust muffler are a common structure; and

a compressor module comprising the at least one compressor and a compressor mount,

wherein the power supply module and the compressor module are configured to mate together, and when mated the combined modules and housing are configured to form a unitary cooling and acoustic damping air flow system and to direct cooling air over at least the adsorbent beds, the at least one compressor, and the at least one power supply; and

wherein the portable oxygen concentrator weighs less than 25 pounds, produces less than 50 dBA acoustic noise when operating, and has an output gas flow of 5 lpm or less.

2. The portable oxygen concentrator of claim 1 , further comprising an input to receive an output from an external rechargeable battery capable of running the portable oxygen concentrator for greater than 2 hours.

3. The portable oxygen concentrator of claim 2 , wherein the portable oxygen concentrator may be switched between operating from the at least one power supply and the external battery.

4. The portable oxygen concentrator of claim 1 , further comprising a compressor inlet filter mounted to an exterior of the portable oxygen concentrator.

5. The portable oxygen concentrator of claim 4 , further comprising an air filter, wherein an inlet and an outlet of the air filter are connected to an interior of the portable oxygen concentrator.

6. The portable oxygen concentrator of claim 4 , wherein the compressor inlet filter forms an ornamental surface of the exterior.

7. The portable oxygen concentrator of claim 1 , wherein the compressor module is interconnected to the power supply module via rails to provide a high amount of surface engagement to distribute shock load and prevent breakage of a chassis.

8. The portable oxygen concentrator of claim 1 , wherein the power supply module is configured to mate to a removable lower housing component comprising at least one of rubber vibration and noise isolating feet or wheels.

9. The portable oxygen concentrator of claim 1 , further comprising a diagnostics interface.

10. The portable oxygen concentrator of claim 9 , wherein the diagnostics interface is externally accessible.

11. A portable oxygen concentrator, comprising:

one of a PSA, VPSA or VSA core section comprising:

a housing;

a controller;

a user interface;

at least two adsorber beds;

at least one compressor;

an airblower;

a power supply module comprising at least one power supply;

a compressor inlet filter mounted to an exterior of the portable oxygen concentrator, wherein the compressor inlet filter forms a portion of a humidifier mount; and

a compressor module comprising the at least one compressor and a compressor mount,

wherein the power supply module and the compressor module are configured to mate together, and when mated the combined modules and housing are configured to form a unitary cooling and acoustic damping air flow system and to direct cooling air over at least the adsorbent beds, the at least one compressor, and the at least one power supply; and

wherein the portable oxygen concentrator weighs less than 25 pounds, produces less than 50 dBA acoustic noise when operating, and has an output gas flow of 5 lpm or less.

12. A portable oxygen concentrator, comprising:

one of a PSA, VPSA or VSA core section comprising:

a housing;

a controller;

a user interface;

at least two adsorber beds;

at least one compressor;

an airblower;

a power supply module comprising at least one power supply;

a diagnostics interface, wherein the diagnostics interface is externally accessible, and wherein the diagnostics interface mates to an external readout when the portable oxygen concentrator is serviced; and

a compressor module comprising the at least one compressor and a compressor mount,

wherein the power supply module and the compressor module are configured to mate together, and when mated the combined modules and housing are configured to form a unitary cooling and acoustic damping air flow system and to direct cooling air over at least the adsorbent beds, the at least one compressor, and the at least one power supply, and

wherein the portable oxygen concentrator weighs less than 25 pounds, produces less than 50 dBA acoustic noise when operating, and has an output gas flow of 5 lpm or less.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 25, 2022
From: TAYLOR, BRENTON ALAN; HANSEN, PETER; STUMP, JOHN RUSSELL; CHIN, DANIEL WAYNE; BURGESS, PATRICK FITZLINDON
To: INOGEN, INC.
Reel/Frame 060013/0896 →
Continuity (3)
Continuation 16017934 · Jun 25, 2018
Continuation 14142613 · Dec 27, 2013
Related Publication 20210244908A1 · Aug 12, 2021
Cited By (1)
US 12,502,503