IP Library Granted Patent US 11,058,845
Granted Patent B2
US 11,058,845 · App. 17/007,798 · Granted Jul 13, 2021

Respiratory pressure treatment system

Inventors: Andrew Roderick Bath (Sydney, AU); Mark Bertinetti (Sydney, AU); Paul Frederick Birchall (Sydney, AU); Tommy Chung Yeung Chui (Sydney, AU); Dawn Rosemary Churchill (Sydney, AU); Clementine Le Loc'h (Sydney, AU); Justin John Formica (Sydney, AU); Matthew Rolf Harrington (Sydney, AU); Ronald James Huby (Sydney, AU); Jeegarkumar Kapadia (Sydney, AU); Barton John Kenyon (Sydney, AU); Dimitri Marco Maurer (Gosford, AU); Saad Nasr (Sydney, AU); Joseph Samuel Ormrod (Sydney, AU); Jose Ignacio Romagnoli (Sydney, AU); Nathan John Row (Sydney, AU); Ian Malcolm Smith (Sydney, AU); Robert John Sparrow (Sydney, AU); Luke Andrew Stanislas (Sydney, AU); Zhuo Ran Tang (Sydney, AU); Ernie Wei-Chih Tsai (Sydney, AU); Hargopal Verma (Sydney, AU); Chengwei Zhu (Sydney, AU)
Assignee: ResMed Pty Ltd
A61M16/109A61M16/0066A61M16/024A61M16/0683A61M16/0875A61M16/16A61M16/0063A61M16/107A61M16/1055A61M2205/14A61M2205/3584A61M2205/3592A61M2205/42A61M2205/50A61M2205/505A61M2205/7518A61M2209/08H01Q1/38H01Q1/48
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Quick Facts
Patent No.
US 11,058,845
App. No.
17/007,798
Granted
Jul 13, 2021
Kind
B2
Abstract

A respiratory pressure therapy (RPT) device is disclosed for treatment of respiratory-related disorders. The RPT device includes a pressure generator, a pneumatic block, a chassis and a device outlet for delivering a supply of flow of gas to a patient interface. The RPT device also comprises a humidifier including a water reservoir.

Claims (76)

1. A respiratory pressure therapy (RPT) device for pressurising breathable air to treat a respiratory disorder in a patient, the RPT device comprising:

a water reservoir configured to hold a volume of water to be used for humidification of the breathable air;

a pressure generator configured to pressurise breathable air;

a chassis supporting the pressure generator and the chassis comprising:

an RPT device outlet configured to be connected to an air circuit to direct breathable air pressurised by the pressure generator to the patient, the RPT device outlet being positioned on a first side of the chassis, and the RPT device outlet comprising an outlet tube that is removably coupled to the chassis;

a visual display configured to visually display characters, symbols, and/or images, the visual display being positioned on a second side of the chassis that has a different orientation from the first side; and

a dock configured to receive the water reservoir; and

an external housing supported on the chassis, the pressure generator being enclosed by the external housing, and the external housing forming an opening such that the water reservoir is slidable into and out of the dock through the opening.

2. The RPT device of claim 1 , wherein the chassis comprises an input device configured to receive input to control operation of the RPT device.

3. The RPT device of claim 2 , wherein the input device is positioned on the second side of the chassis.

4. The RPT device of claim 2 , wherein the input device is positioned on a third side of the chassis that has a different orientation from the first side and the second side.

5. The RPT device of claim 2 , wherein the input device is a button, a switch, a dial, or a touchscreen.

6. The RPT device of claim 5 , wherein the input device is the touchscreen and the visual display includes the touchscreen.

7. The RPT device of claim 1 , wherein the visual display comprises a Liquid Crystal Display (LCD) screen or a Light Emitting Diode (LED) display.

8. The RPT device of claim 1 , wherein the first side and the second side are positioned opposite each other relative to the chassis.

9. The RPT device of claim 1 , wherein the first side and the second side are positioned opposite each other such that in use the visual display faces towards the patient and the RPT device outlet faces away from the patient.

10. The RPT device of claim 1 , wherein the chassis comprises an RPT device inlet configured to receive breathable air from externally of the RPT device to be pressurised by the pressure generator.

11. The RPT device of claim 1 , comprising a dock inlet positioned on the dock and configured to receive breathable air pressurised by the pressure generator from the water reservoir.

12. The RPT device of claim 11 , wherein the dock inlet is in pneumatic communication with the RPT device outlet through the chassis.

13. The RPT device of claim 11 , comprising a dock outlet positioned on the dock and configured to direct breathable air pressurised by the pressure generator into the water reservoir.

14. The RPT device of claim 13 , wherein the water reservoir comprises a water reservoir inlet and a water reservoir outlet.

15. The RPT device of claim 14 , wherein the dock outlet is configured to direct breathable air pressurised by the pressure generator into the water reservoir via the water reservoir inlet when the water reservoir is received in the dock, and

wherein the dock inlet is configured to receive breathable air pressurised by the pressure generator from the water reservoir via the water reservoir outlet when the water reservoir is received in the dock.

16. The RPT device of claim 14 , further comprising a first face seal and a second face seal, the first face seal being configured to seal between the dock outlet and the water reservoir inlet, and the second face seal being configured to seal between the water reservoir outlet and the dock inlet when the water reservoir is received in the dock.

17. The RPT device of claim 16 , wherein the first face seal and the second face seal are positioned to seal between the dock outlet and the water reservoir inlet and between the water reservoir outlet and the dock inlet, respectively, when the water reservoir is received in the dock along a linear path.

18. The RPT device of claim 1 , wherein the dock and the water reservoir are shaped and dimensioned such that a portion of the water reservoir is positioned outside of the dock when the water reservoir is received in the dock.

19. The RPT device of claim 1 , wherein the water reservoir comprises a water reservoir base and a water reservoir lid connected to the water reservoir base with a hinge that allows the water reservoir lid to rotate relative to the water reservoir base between an open position and a closed position.

20. The RPT device of claim 19 , wherein the water reservoir comprises a compliant portion, the compliant portion being constructed from a resilient material and configured to seal between the water reservoir base and the water reservoir lid when the water reservoir lid is in a closed position on the water reservoir base.

21. The RPT device of claim 19 , wherein the water reservoir includes a friction grip configured to be positioned outside of the dock when the water reservoir is received in the dock.

22. The RPT device of claim 19 , wherein the water reservoir lid includes one of a protrusion and a recess and the dock includes the other one of the protrusion and the recess, the protrusion and the recess being configured to releasably engage one another when the water reservoir is received in the dock to secure the water reservoir in the dock.

23. The RPT device of claim 1 , further comprising a heating element supported on the chassis and configured to generate and conduct heat to the water reservoir when the water reservoir is received in the dock.

24. The RPT device of claim 1 , wherein the RPT device outlet is configured to be connected to the air circuit such that the water reservoir is removable from the dock while the air circuit remains attached to the RPT device outlet.

25. The RPT device of claim 1 , wherein the water reservoir is configured such that the water reservoir must be removed from the dock to be refilled.

26. The RPT device of claim 1 , wherein the chassis comprises a slot and the outlet tube comprises a latch portion configured to releasably engage the slot and removably couple the outlet tube to the chassis.

27. The RPT device of claim 1 , wherein the outlet tube comprises a face seal configured to seal against the water reservoir at a water reservoir outlet when the water reservoir is inserted into the dock.

28. The RPT device of claim 1 , comprising:

a dock inlet positioned on the dock and configured to receive breathable air pressurised by the pressure generator from the water reservoir;

a dock outlet positioned on the dock and configured to direct breathable air pressurised by the pressure generator into the water reservoir; and

a heating element supported on the chassis and configured to generate and conduct heat to the water reservoir when the water reservoir is received in the dock,

wherein:

the chassis comprises an input device configured to receive input to control operation of the RPT device,

the input device is a button, a switch, a dial, or a touchscreen,

the visual display comprises a Liquid Crystal Display (LCD) screen or a Light Emitting Diode (LED) display,

the first side and the second side are positioned opposite each other relative to the chassis,

the chassis comprises an RPT device inlet configured to receive breathable air from externally of the RPT device to be pressurised by the pressure generator,

the dock inlet is in pneumatic communication with the RPT device outlet through the chassis,

the water reservoir comprises a water reservoir inlet and a water reservoir outlet,

the dock outlet is configured to direct breathable air pressurised by the pressure generator into the water reservoir via the water reservoir inlet when the water reservoir is received in the dock,

the dock inlet is configured to receive breathable air pressurised by the pressure generator from the water reservoir via the water reservoir outlet when the water reservoir is received in the dock,

the dock and the water reservoir are shaped and dimensioned such that a portion of the water reservoir is positioned outside of the dock when the water reservoir is received in the dock,

the water reservoir comprises a water reservoir base and a water reservoir lid connected to the water reservoir base with a hinge that allows the water reservoir lid to rotate relative to the water reservoir base between an open position and a closed position, and

the water reservoir comprises a compliant portion, the compliant portion being constructed from a resilient material and configured to seal between the water reservoir base and the water reservoir lid when the water reservoir lid is in a closed position on the water reservoir base.

29. A respiratory pressure therapy (RPT) device for pressurising breathable air to treat a respiratory disorder in a patient, the RPT device comprising:

a pressure generator configured to pressurise breathable air;

a chassis supporting the pressure generator and the chassis comprising:

an RPT device outlet configured to be connected to an air circuit to direct breathable air pressurised by the pressure generator to the patient, the RPT device outlet being positioned on a first side of the chassis, and the RPT device outlet comprising an outlet tube that is removably coupled to the chassis; and

a dock configured to receive a water reservoir; and

an external housing supported on the chassis, the pressure generator being enclosed by the external housing, and the external housing forming an opening such that the water reservoir is slidable into and out of the dock through the opening.

30. The RPT device of claim 29 , comprising:

a water reservoir configured to hold a volume of water to be used for humidification of the breathable air;

a visual display positioned on a second side of the chassis that has a different orientation from the first side;

a dock inlet positioned on the dock and configured to receive breathable air pressurised by the pressure generator from the water reservoir;

a dock outlet positioned on the dock and configured to direct breathable air pressurised by the pressure generator into the water reservoir; and

a heating element supported on the chassis and configured to generate and conduct heat to the water reservoir when the water reservoir is received in the dock,

wherein:

the chassis comprises an input device configured to receive input to control operation of the RPT device,

the input device is a button, a switch, a dial, or a touchscreen,

the visual display comprises a Liquid Crystal Display (LCD) screen or a Light Emitting Diode (LED) display,

the first side and the second side are positioned opposite each other relative to the chassis,

the chassis comprises an RPT device inlet configured to receive breathable air from externally of the RPT device to be pressurised by the pressure generator,

the dock inlet is in pneumatic communication with the RPT device outlet through the chassis,

the water reservoir comprises a water reservoir inlet and a water reservoir outlet, the dock outlet is configured to direct breathable air pressurised by the pressure generator into the water reservoir via the water reservoir inlet when the water reservoir is received in the dock,

the dock inlet is configured to receive breathable air pressurised by the pressure generator from the water reservoir via the water reservoir outlet when the water reservoir is received in the dock,

the dock and the water reservoir are shaped and dimensioned such that a portion of the water reservoir is positioned outside of the dock when the water reservoir is received in the dock,

the water reservoir comprises a water reservoir base and a water reservoir lid connected to the water reservoir base with a hinge that allows the water reservoir lid to rotate relative to the water reservoir base between an open position and a closed position, and

the water reservoir comprises a compliant portion, the compliant portion being constructed from a resilient material and configured to seal between the water reservoir base and the water reservoir lid when the water reservoir lid is in a closed position on the water reservoir base.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 31, 2020
From: BATH, ANDREW RODERICK; BERTINETTI, MARK; BIRCHALL, PAUL FREDERICK; CHUI, TOMMY CHUNG YEUNG; CHURCHILL, DAWN ROSEMARY; DESVOYES, CLEMENTINE; FORMICA, JUSTIN JOHN; HARRINGTON, MATTHEW ROLF; HUBY, RONALD JAMES; KAPADIA, JEEGARKUMAR; KENYON, BARTON JOHN; MAURER, DMITRI MARCO; NASR, SAAD; ORMROD, JOSEPH SAMUEL; ROW, NATHAN JOHN; SMITH, IAN MALCOLM; SPARROW, ROBERT JOHN; STANISLAS, LUKE ANDREW; TSAI, ERNIE WEI-CHIH; VERMA, HARGOPAL; ZHU, CHENGWEI
To: RESMED LIMITED
Reel/Frame 053646/0360 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 31, 2020
From: ROMAGNOLI, JOSE IGNACIO
To: RESMED LIMITED
Reel/Frame 053646/0385 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 31, 2020
From: TANG, ZHUO RAN
To: RESMED LIMITED
Reel/Frame 053646/0429 →
CHANGE OF NAME Recorded Aug 31, 2020
From: RESMED LIMITED
To: RESMED PTY LTD
Reel/Frame 053649/0325 →
Priority Claims (5)
AU 2013904923 · Dec 17, 2013 · national
AU 2014901997 · May 27, 2014 · national
AU 2014901998 · May 27, 2014 · national
AU 2014901999 · May 27, 2014 · national
AU 2014902071 · May 30, 2014 · national
Continuity (5)
Continuation 16907452 · Jun 22, 2020
Continuation 16853812 · Apr 21, 2020
Continuation 15104789
Provisional Application 61987245 · May 1, 2014
Related Publication 20200398016A1 · Dec 24, 2020
Cited By (1)
US 12,226,584