IP Library Granted Patent US 11,305,085
Granted Patent B2
US 11,305,085 · App. 17/474,317 · Granted Apr 19, 2022

Mask system with snap-fit shroud

Inventors: Eva Ng (Sydney, AU); David James Lockwood (Gosford, AU); Jamie Graeme Wehbeh (Sydney, AU); Zoran Valcic (Sydney, AU); Errol Savio Alex D'Souza (Sydney, AU); Matthew Eves (Sydney, AU); Mahsita Sari (Sydney, AU)
Assignee: ResMed Pty Ltd
A61M16/0622A61M16/0057A61M16/0066A61M16/06A61M16/0611A61M16/0616A61M16/0683A61M16/0694A61M16/0816A61M16/0858A61M16/0875A61M16/20A61M16/0633A61M16/0825A61M16/0841A61M2016/0661
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Quick Facts
Patent No.
US 11,305,085
App. No.
17/474,317
Granted
Apr 19, 2022
Kind
B2
Abstract

A shroud for a mask system includes a retaining portion structured to retain a frame, a pair of upper headgear connectors each including an elongated arm and a slot at the free end of the arm adapted to receive a headgear strap, and a pair of lower headgear connectors each adapted to attach to a headgear strap. The retaining portion, the upper headgear connectors, and the lower headgear connectors are integrally formed as a one piece structure.

Claims (70)

1. A mask system comprising:

a cushion module comprising:

a cushion constructed of a flexible material to form a seal with a patient's face in use, wherein the cushion is constructed to engage along a nasal bridge region of the patient's lace when in use, the cushion including a concertina section provided in a nasal bridge region of the cushion, the concertina section including one or more folds that provide a degree of flexibility or movement to the cushion, and

a frame connected to the cushion and forming a breathing chamber, the frame constructed from a more rigid material than the cushion, and the frame including a circular frame opening configured to in-use allow a flow of breathable gas into the breathing chamber;

a shroud module constructed from a more rigid material than the cushion and including a circular opening, the shroud module including a forehead support, and the shroud module including headgear connectors, wherein an underside of the shroud module faces the breathing chamber and includes a protrusion structured to be received within a slot on the frame, the protrusion being spaced inboard of an outer edge of the shroud module and extending towards the breathing chamber when received within the slot, an exterior of the shroud module structured to cover the protrusion and the slot when the protrusion is received in the slot;

headgear for holding the cushion module in a sealing position in order to enable the flow of breathable gas at positive pressure to be delivered to the patient's airways, the headgear including a pair of upper straps adapted to contact the patient's head superior to the patient's ears and a pair of lower straps adapted to contact the patient's head inferior to the patient's ears, the pair of upper straps and the pair of lower straps removably connected to the shroud module; and

an elbow module constructed from a more rigid material than the cushion, the elbow module comprising:

a first end being rotatably engaged with the shroud module to allow for 360° of relative rotation between the elbow module and the shroud module, and

a second end adapted to be connected to an air delivery tube to deliver breathable gas to the patient.

2. The mask system of claim 1 , wherein the cushion is a full-face cushion adapted to engage the patient's face generally along nasal bridge, cheek, and lower lip regions of the patient's face, and wherein a port of the elbow module is selectively closed by a flap portion of an anti-asphyxia valve depending on a presence of pressurized gas.

3. The mask system of claim 2 , wherein the elbow module includes a slot to receive the flap portion of the anti-asphyxia valve.

4. The mask system of claim 2 , wherein the shroud module includes a receiving hole, superior to the circular opening, for aligning with a vent arrangement of the frame.

5. The mask system of claim 2 , wherein a plurality of vent holes are oriented relative to an axis through the circular frame opening at an angle of 45° on an outer surface of the frame in order to direct exhausted air away from the patient.

6. The mask system of claim 5 , wherein each hole of the plurality of vent holes is contoured or tapered along its length.

7. The mask system of claim 1 , wherein the cushion is a nasal cushion.

8. The mask system of claim 7 , wherein the elbow module further includes a vent arrangement.

9. The mask system of claim 7 , wherein the protrusion includes a first tang and a second tang oriented generally transverse to the first tang.

10. The mask system of claim 1 , wherein each upper strap of the pair of upper straps includes a hook and loop material, and each lower strap of the pair of lower straps includes a hook and loop material.

11. The mask system of claim 1 , wherein the headgear connectors include lower headgear connectors that extend from a lower end of the shroud module, the pair of lower straps adapted to connect to the lower headgear connectors.

12. The mask system of claim 11 , wherein each lower strap of the pair of lower straps includes a clip adapted to couple with the lower headgear connectors of the shroud module.

13. The mask system of claim 1 , wherein the frame and the cushion are co-molded with one another.

14. The mask system of claim 1 , wherein the headgear connectors are molded to the shroud module.

15. The mask system of claim 1 , wherein the first end of the elbow module has a distal shoulder adapted to extend at an edge of the frame to retain the elbow module to the frame.

16. The mask system of claim 1 , wherein the frame further includes a collar projecting from a surface of the frame and surrounding the circular frame opening, the first end of the elbow module being releasably and rotatably engaged to the collar with a snap-fit.

17. The mask system of claim 1 , wherein the headgear further includes a pair of rear straps adapted to pass behind the patient's head.

18. The mask system of claim 1 , wherein the shroud is non-rotatably mounted on an outer surface of the frame with a tight, conforming fit.

19. The mask system of claim 1 , wherein the first end of the elbow module passes through the circular opening of the shroud module, the first end passes through the circular frame opening and being releasably and rotatably engaged to the frame with a snap-fit.

20. The mask system of claim 1 , wherein

the cushion is a nasal cushion, the frame and the nasal cushion are co-molded with one another, the frame further includes a collar projecting from a surface of the frame and surrounding the circular frame opening;

the elbow module further includes a vent arrangement;

lower headgear connectors extend from a lower end of the shroud module, and the lower headgear connectors are molded to the shroud module;

the pair of upper straps include a hook and loop material, and the pair of lower straps include a hook and loop material and are adapted to connect to the lower headgear connectors; and

the headgear further includes a pair of rear straps adapted to pass behind the patient's head.

21. The mask system of claim 20 , wherein the first end of the elbow module is releasably and rotatably engaged to the collar with a snap-fit, the first end of the elbow module has a distal shoulder adapted to extend at an edge of the frame to retain the elbow module to the frame.

22. The mask system of claim 1 , wherein

the cushion is a full-face cushion adapted to engage the patient's face generally along nasal bridge, cheek, and lower lip regions of the patient's face, frame and the full-face cushion are co-molded with one another, the frame further includes a collar projecting from a surface of the frame and surrounding the circular frame opening;

a port of the elbow module is selectively closed by a flap portion of an anti-asphyxia valve depending on a presence of pressurized gas, the elbow module includes a slot to receive the flap portion of the anti-asphyxia valve;

the shroud module includes a receiving hole, superior to the circular opening, for aligning with a vent arrangement of the frame;

lower headgear connectors extend from a lower end of the shroud module, and the lower headgear connectors are molded to the shroud module;

the pair of upper straps include a hook and loop material, and the pair of lower straps include a hook and loop material and are adapted to connect to the lower headgear connectors; and

the headgear further includes a pair of rear straps adapted to pass behind the patient's head.

23. The mask system of claim 22 , wherein the first end of the elbow module is releasably and rotatably engaged to the collar with a snap-fit, the first end of the elbow module has a distal shoulder adapted to extend at an edge of the frame to retain the elbow module to the frame.

24. A device for treating sleep disorder breathing, the device comprising:

the mask system of claim 1 ;

the air delivery tube connected to the second end; and

a flow generator for delivering pressurized breathable gas to the patient wearing the mask system via the air delivery tube, the flow generator being adapted to deliver the pressurized breathable gas to the patient's airways at about 2-30 cm H2O above atmospheric pressure.

25. A mask system comprising:

a cushion module comprising:

a cushion constructed of a flexible material to form a seal with a patient's face in use, wherein the cushion k constructed to engage along a nasal bridge region of the patient's lace when in use, and

a frame connected to the cushion and forming a breathing chamber, the frame constructed from a more rigid material than the cushion, and the frame including a frame opening configured to in-use allow a flow of breathable gas into the breathing chamber;

a shroud module constructed from a more rigid material than the cushion and including a shroud opening, the shroud module including a forehead support, and the shroud module including headgear connectors, wherein an underside of the shroud module faces the breathing chamber and includes a protrusion structured to be received within a slot on the frame, the protrusion being spaced inboard of an outer edge of the shroud module and extending towards the breathing chamber when received within the slot, an exterior of the shroud module structured to cover the protrusion and the slot when the protrusion is received in the slot;

headgear for holding the cushion module in a sealing position in order to enable the flow of breathable gas at positive pressure to be delivered to the patient's airways, the headgear including a pair of upper straps adapted to contact the patient's head superior to the patient's ears and a pair of lower straps adapted to contact the patient's head inferior to the patient's ears, the pair of upper straps and the pair of lower straps removably connected to the shroud module; and

an elbow module comprising:

a first end being rotatably engaged with the shroud module to allow for 360° of relative rotation between the elbow module and the shroud module, and

a second end adapted to be connected to an air delivery tube to deliver breathable gas to the patient.

26. The mask system of claim 25 , wherein

the cushion is a nasal cushion and includes a concertina section provided in a nasal bridge region of the cushion, the concertina section including one or more folds that provide a degree of flexibility or movement to the cushion, the frame and the nasal cushion are co-molded with one another, the frame further includes a collar projecting from a surface of the frame and surrounding the frame opening, wherein the frame opening is circular;

the elbow module is constructed from a more rigid material than the cushion and further includes a vent arrangement;

lower headgear connectors extend from a lower end of the shroud module, and the lower headgear connectors are molded to the shroud module;

the pair of upper straps include a hook and loop material, and the pair of lower straps include a hook and loop material and are adapted to connect to the lower headgear connectors; and

the headgear further includes a pair of rear straps adapted to pass behind the patient's head.

27. The mask system of claim 26 , wherein the first end of the elbow module is releasably and rotatably engaged to the collar with a snap-fit, the first end of the elbow module has a distal shoulder adapted to extend at an edge of the frame to retain the elbow module to the frame.

28. The mask system of claim 25 , wherein

the cushion is a full-face cushion and includes a concertina section provided in a nasal bridge region of the cushion, the concertina section including one or more folds that provide a degree of flexibility or movement to the cushion, the full-face cushion is adapted to engage the patient's face generally along nasal bridge, cheek, and lower lip regions of the patient's face, frame and the full-face cushion are co-molded with one another, the frame further includes a collar projecting from a surface of the frame and surrounding the frame opening, wherein the frame opening is circular;

a port of the elbow module is selectively closed by a flap portion of an anti-asphyxia valve depending on a presence of pressurized gas, the elbow module includes a slot to receive the flap portion of the anti-asphyxia valve, and the elbow module is constructed from a more rigid material than the cushion;

the shroud module includes a receiving hole, superior to the shroud opening, for aligning with a vent arrangement of the frame;

lower headgear connectors extend from a lower end of the shroud module, and the lower headgear connectors are molded to the shroud module;

the pair of upper straps include a hook and loop material, and the pair of lower straps include a hook and loop material and are adapted to connect to the lower headgear connectors; and

the headgear further includes a pair of rear straps adapted to pass behind the patient's head.

29. The mask system of claim 28 , wherein the first end of the elbow module is releasably and rotatably engaged to the collar with a snap-fit, the first end of the elbow module has a distal shoulder adapted to extend at an edge of the frame to retain the elbow module to the frame.

Assignments (3)
CHANGE OF NAME Recorded Oct 5, 2021
From: RESMED LIMITED
To: RESMED PTY LTD
Reel/Frame 057715/0244 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 14, 2021
From: D'SOUZA, ERROL SAVIO ALEX; EVES, MATTHEW; NG, EVA; SARI, MAHSITA; WEHBEH, JAMIE GRAEME; VALCIC, ZORAN
To: RESMED LIMITED
Reel/Frame 057474/0988 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 14, 2021
From: LOCKWOOD, DAVID JAMES
To: RESMED LIMITED
Reel/Frame 057511/0255 →
Continuity (12)
Continuation 17361420 · Jun 29, 2021
Continuation 15964887 · Apr 27, 2018
Continuation 15724732 · Oct 4, 2017
Continuation 15682117 · Aug 21, 2017
Continuation 15440972 · Feb 23, 2017
Continuation 13964280 · Aug 12, 2013
Continuation 13745077 · Jan 18, 2013
Continuation 12736024
Provisional Application 61136617 · Sep 19, 2008
Provisional Application 61071893 · May 23, 2008
Provisional Application 61064406 · Mar 4, 2008
Related Publication 20210402123A1 · Dec 30, 2021