IP Library Granted Patent US 12,521,513
Granted Patent B2
US 12,521,513 · App. 18/185,486 · Granted Jan 13, 2026

Swivel elbow and connector assembly for patient interface systems

Inventors: Teck Fong (Sydney, AU); Stephen Gray (Sydney, AU); Adam Francis Barlow (Sydney, AU); Robert Thomas Burnham (Sydney, AU); Christopher Scott Skipper (Sydney, AU); David Anthony Pidcock (Sydney, AU); Tumul Gupta (Sydney, AU); Damien Julian Mazzone (Sydney, AU); Jose Ignacio Romagnoli (Sydney, AU); Christopher Samuel Cullen (Sydney, AU)
Assignee: ResMed Pty Ltd
A61M16/0816A61M16/0616A61M16/0622A61M16/0825A61M16/0875A61M16/208A61M16/0605A61M16/0683A61M2202/0225A61M2205/42A61M2207/00A61M2210/0618
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Quick Facts
Patent No.
US 12,521,513
App. No.
18/185,486
Granted
Jan 13, 2026
Kind
B2
Abstract

A patient interface includes a cushion configured to sealingly engage the patient's face, a support structure configured to support the cushion, the support structure being more rigid than the cushion, a plenum chamber formed at least in part by the cushion, and a connector configured to convey the pressurized respiratory gas to the plenum chamber. The connector includes a first portion formed from a first material and adapted to removably connect to the support structure. A plurality of vent holes are formed on the first portion. The connector also includes a continuous flexible portion that is formed from a second material, is more flexible than the first portion, and is configured to flex to permit engagement and disengagement of the first portion. The continuous flexible portion comprises a pair of opposing release buttons that are configured to be inwardly flexed to allow release of the connector from the support structure.

Claims (75)

1 . A patient interface configured to deliver a flow of pressurized respiratory gas to a patient's airways, the patient interface comprising:

a cushion configured to sealingly engage the patient's face;

a support structure configured to support the cushion, the support structure being more rigid than the cushion;

a plenum chamber formed at least in part by the cushion; and

a connector configured to convey the pressurized respiratory gas to the plenum chamber and comprising:

a first portion adapted to removably connect to the support structure, the first portion being formed from a first material and including a pair of cut-out portions;

a plurality of vent holes formed on the first portion;

a continuous flexible portion that is more flexible than the first portion, the continuous flexible portion being formed from a second material that is different than the first material; and

a pair of opposing release buttons that are configured to be inwardly flexed to allow release of the connector from the support structure,

wherein the first portion forms a skeleton that supports the continuous flexible portion,

wherein the first portion and the continuous flexible portion together enclose and form the part of a gas flow path extending through the connector, and

wherein each of the opposing release buttons is formed at a location on the connector at which the continuous flexible portion is molded over the cutout portions in the first portion.

2 . The patient interface of claim 1 , wherein a first end of the first portion is configured to be secured to the support structure, and wherein the first end of the first portion comprises a stop configured to prevent the connector from traveling through a connection with the support structure.

3 . The patient interface of claim 1 , wherein the continuous flexible portion is molded over the first portion.

4 . The patient interface of claim 1 , wherein the first portion is made of polycarbonate, polypropylene, or nylon.

5 . The patient interface of claim 1 , wherein the continuous flexible portion is made of silicone.

6 . The patient interface of claim 1 , wherein first portion comprises a second end configured to be connected to an air delivery tube.

7 . The patient interface of claim 6 , wherein the second end of the first portion comprises a swivel connection.

8 . The patient interface of claim 1 , further comprising an anti-asphyxia valve.

9 . The patient interface of claim 1 , wherein the connector is in the form of an elbow.

10 . The patient interface of claim 1 , wherein the patient interface is in the form of a nasal mask.

11 . The patient interface of claim 1 , wherein the patient interface is in the form of a full face mask.

12 . The patient interface of claim 1 , further comprising an anti-asphyxia valve,

wherein the connector is in the form of an elbow,

wherein a first end of the first portion is configured to be secured to the support structure,

wherein the first end of the first portion comprises a stop configured to prevent the connector from traveling through a connection with the support structure,

wherein the continuous flexible portion is molded over the first portion,

wherein the first portion is made of polycarbonate, polypropylene, or nylon,

wherein the continuous flexible portion is made of silicone,

wherein the first portion comprises a second end configured to be connected to an air delivery tube,

wherein the second end of the first portion comprises a swivel connection, and

wherein the patient interface is in the form of a nasal mask.

13 . A patient interface system configured to deliver pressurized gas to a patient, the patient interface system comprising:

the patient interface of claim 1 ;

a positioning and stabilizing structure configured to support the patient interface on the patient's head; and

an air delivery tube attachable to the connector.

14 . The patient interface of claim 1 , wherein the cutouts in the first portion are U-shaped or C-shaped.

15 . The patient interface of claim 1 , wherein the connector further comprises a catch configured to secure the connector to the plenum chamber, and wherein the catch is configured so that pressing the opposing release buttons moves the catch to release the connector from the plenum chamber.

16 . A patient interface configured to deliver a flow of pressurized respiratory gas to a patient's airways, the patient interface comprising:

a cushion configured to sealingly engage the patient's face;

a support structure configured to support the cushion, the support structure being more rigid than the cushion;

a plenum chamber formed at least in part by the cushion; and

a connector configured to convey the pressurized respiratory gas to the plenum chamber and comprising:

a first portion adapted to removably connect to the support structure, the first portion being formed from a first material and including a pair of cut-out portions;

a flexible portion formed from a second material that is more flexible than the first material;

a pair of opposing buttons that are configured to be inwardly flexed to allow disengagement of the connector from the support structure; and

a valve comprising a flange and a flap portion extending from the flange, the valve being secured to the first portion at the flange,

wherein the flange of the valve is received in an opening in the first portion so that an outer surface of the flange is substantially flush with an outer surface of the first portion,

wherein the first portion forms a skeleton over-moulded by or otherwise formed with the flexible portion,

wherein the first portion and the flexible portion together enclose the part of a gas flow path extending through the connector, and

wherein each of the opposing release buttons is formed at a location on the connector at which the flexible portion is molded over the cutout portions in the first portion.

17 . The patient interface of claim 16 , wherein a first end of the first portion is configured to interface or connect with the support structure, and wherein the first end of the first portion comprises a stop configured to prevent the connector from traveling through a connection with the support structure.

18 . The patient interface of claim 16 , wherein the flexible portion is molded over the first portion.

19 . The patient interface of claim 16 , wherein the first portion is made of polycarbonate, polypropylene, or nylon.

20 . The patient interface of claim 16 , wherein the flexible portion is made of silicone.

21 . The patient interface of claim 16 , wherein first portion comprises a second end configured to be connected to an air delivery tube.

22 . The patient interface of claim 21 , wherein the second end of the first portion comprises a swivel connection.

23 . The patient interface of claim 16 , wherein the valve is in the form of an anti-asphyxia valve.

24 . The patient interface of claim 16 , wherein the connector is in the form of an elbow.

25 . The patient interface of claim 16 , wherein the patient interface is in the form of a nasal mask.

26 . The patient interface of claim 16 , wherein the patient interface is in the form of a full face mask.

27 . The patient interface of claim 16 , wherein a first end of the first portion is configured to interface or connect with the support structure,

wherein the first end of the first portion comprises a stop configured to prevent the connector from traveling through a connection with the support structure,

wherein the flexible portion is molded over the first portion,

wherein the first portion is made of polycarbonate, polypropylene, or nylon,

wherein the flexible portion is made of silicone,

wherein first portion comprises a second end configured to be connected to an air delivery tube,

wherein the second end of the first portion comprises a swivel connection,

wherein the valve is in the form of an anti-asphyxia valve,

wherein the connector is in the form of an elbow, and

wherein the patient interface is in the form of a nasal mask.

28 . A patient interface system configured to deliver pressurized gas to a patient, the patient interface system comprising:

the patient interface of claim 16 ;

a positioning and stabilizing structure configured to support the patient interface on the patient's head; and

an air delivery tube attachable to the connector.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 17, 2023
From: BARLOW, ADAM FRANCIS; BURNHAM, ROBERT THOMAS; ROMAGNOLI, JOSE IGNACIO; PIDCOCK, DAVID ANTHONY; GRAY, STEPHEN; FONG, TECK; SKIPPER, CHRISTOPHER SCOTT; GUPTA, TUMUL; MAZZONE, DAMIEN JULIAN; CULLEN, CHRISTOPHER
To: RESMED LIMITED
Reel/Frame 063015/0547 →
CHANGE OF NAME Recorded Mar 17, 2023
From: RESMED LIMITED
To: RESMED PTY LTD
Reel/Frame 063116/0631 →
Continuity (7)
Continuation 17568277 · Jan 4, 2022
Continuation 16407240 · May 9, 2019
Continuation 14131507
Provisional Application 61648807 · May 18, 2012
Provisional Application 61521139 · Aug 8, 2011
Provisional Application 61505711 · Jul 8, 2011
Related Publication 20230211109A1 · Jul 6, 2023
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