IP Library Granted Patent US 12667683
Granted Patent B2
US 12667683 · App. 19/214,852 · Granted Jun 30, 2026

Noise-reducing air passage device and its components for use in ventilator systems

Inventor: David Luo (Newark, DE)
Assignee: WALLENBERG UNION LLC
A61M16/0066A61M16/0003A61M2202/0007A61M2202/02A61M2205/0216A61M2205/025A61M2205/103A61M2205/3331A61M2205/42
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Quick Facts
Patent No.
US 12667683
App. No.
19/214,852
Granted
Jun 30, 2026
Kind
B2
Abstract

A noise-reducing air passage device and its components for use in ventilator systems, including a housing with at least one inlet, at least one outlet, an inner wall, and an outer wall. The space enclosed by the inner wall of the housing forms a gas passage including at least one chamber to provide a space for gas accumulation and flow. A blower, the core component to provide positive pressure gas to the device, is secured within one of the at least one chamber. The gas passage also includes a ventilation component to divide the gas and streamline turbulent airflow. The ventilation component is among the noise-reducing components, which also include a support component to provide support and damp vibrations for the blower and an inlet component provided at the inlet.

Claims (51)

1 . A noise-reducing air passage device and its components for use in ventilator systems, configured to provide pressurized gas to an airway of a patient, the noise-reducing air passage device and its components comprising:

a housing, including at least one inlet, at least one outlet, an inner wall, and an outer wall, wherein a space enclosed by the inner wall of the housing forms a gas passage comprising at least one chamber to provide the space for gas accumulation and flow;

a blower, secured within one of the at least one chamber, wherein the blower has at least one inlet port and at least one outlet, and is configured to allow flow of gas into the blower from the at least one inlet port, pressurize the gas, and deliver the pressurized gas to the at least one outlet of the housing;

at least one ventilation component, wherein the at least one ventilation component is provided within the gas passage and is configured to divide at least part of the gas; and

at least one support component, configured as a perforated elastomer, wherein the at least one support component is provided within the at least one chamber to support the blower and to disperse vibrations during operation of the blower,

wherein a longitudinal axis of the at least one inlet of the housing transversely intersects a longitudinal axis of the at least one outlet of the blower in a top view plane, wherein the longitudinal axis of the at least one inlet and the longitudinal axis of the at least one outlet are both only oriented horizontally, and

wherein the housing is configured in a way such that the at least one outlet is at a higher elevation than the at least one inlet port along a z-axis.

2 . The noise-reducing air passage device and its components according to claim 1 , wherein an inlet component is provided at the inlet, and includes at least one outwardly expanding wall to guide the gas gently into the at least one chamber.

3 . The noise-reducing air passage device and its components according to claim 1 , wherein the housing comprises multiple gas passages configured to guide the gas and reduce noise.

4 . The noise-reducing air passage device and its components according to claim 2 , wherein the wall that extends outwardly of the inlet component is configured to form an angle between 0.5° and 75° with a central axis of the inlet component, and a length of the at least one portion of the wall that extends outwardly of the inlet component is between 3 mm to 10 mm.

5 . The noise-reducing air passage device and its components according to claim 1 , wherein the at least one inlet is configured to be indirectly connected to the at least one outlet of the blower.

6 . A noise-reducing air passage device and its components for use in ventilator systems, configured to provide pressurized gas to an airway of a patient, the noise-reducing air passage device and its components comprising:

a housing, including at least one inlet, at least one outlet, an inner wall, and an outer wall, wherein a space enclosed by the inner wall of the housing forms a gas passage comprising at least one chamber to provide the space for gas accumulation and flow; and

a blower, secured within one of the at least one chamber, having at least one outlet, and configured to allow flow of gas into the blower from an inlet port of the blower, pressurize the gas, and deliver the pressurized gas to the at least one outlet of the housing;

wherein the housing is configured to be connected to the at least one outlet of the blower through at least one external component;

wherein the gas passage does not include foam; and

wherein a longitudinal axis of the at least one inlet of the housing transversely intersects a longitudinal axis of the at least one outlet of the blower in a top view plane, wherein the longitudinal axis of the at least one inlet and the longitudinal axis of the at least one outlet are both only oriented horizontally, and

wherein the housing is configured in a way such that the at least one outlet and the at least one inlet port have a height difference along a z-axis.

7 . The noise-reducing air passage device and its components according to claim 6 , wherein the noise-reducing air passage device has a ventilation component to regulate the gas and to reduce noise through several parallel baffles.

8 . The noise-reducing air passage device and its components according to claim 7 , wherein the several parallel baffles have internal gaps and angled edges.

9 . The noise-reducing air passage device and its components according to claim 7 , wherein the noise-reducing air passage device is configured to be integrally formed with the ventilation component.

10 . The noise-reducing air passage device and its components according to claim 6 , wherein the at least one external component includes an outlet pipe connected to the at least one outlet, and wherein the outlet pipe is not integrally formed with the housing.

11 . The noise-reducing air passage device and its components according to claim 6 , wherein an inlet component is provided at the at least one inlet, and a hardness of the inlet component is between Shore A20 to Shore A80.

12 . The noise-reducing air passage device and its components according to claim 6 , wherein the gas passage includes at least one support component that has a non-uniform wall thickness.

13 . A noise-reducing air passage device and its components for use in ventilator systems, configured to provide pressurized gas to an airway of a patient, the noise-reducing air passage device and its components comprising:

a housing, including at least one inlet, at least one outlet, an inner wall, and an outer wall, wherein a space enclosed by the inner wall of the housing forms a gas passage comprising at least one chamber to provide the space for gas accumulation and flow; and

a blower, secured within one of the at least one chamber, configured to allow flow of gas into the blower from an inlet port of the blower, pressurize the gas, and deliver the pressurized gas to the at least one outlet of the housing;

wherein the at least one inlet and at least one outlet of the housing are provided on different wall surfaces;

wherein a structure of the at least one chamber is configured to divert airflow and reduce noise as the gas passes through;

wherein the gas flow path includes a segment of a vertical path configured to be at least 20 mm;

wherein a longitudinal axis of the at least one inlet of the housing transversely intersects a longitudinal axis of the at least one outlet of the blower in a top view plane, wherein the longitudinal axis of the at least one inlet and the longitudinal axis of the at least one outlet are both only oriented horizontally; and

wherein the housing is configured such that the at least one outlet and the at least one inlet have a height difference along a z-axis.

14 . The noise-reducing air passage device and its components according to claim 13 , wherein the housing of the noise-reducing air passage device forms part of a positive pressure ventilation device.

15 . The noise-reducing air passage device and its components according to claim 13 , wherein an inlet component is provided at the at least one inlet, and a length of at least one portion of a wall that extends outwardly of the inlet component is between 3 mm to 10 mm.

16 . The noise-reducing air passage device and its components according to claim 13 , wherein the gas passage includes at least one ventilation component that is configured to divide at least part of the gas.

17 . The noise-reducing air passage device and its components according to claim 13 , wherein the gas passage includes at least one support component that is configured to support the blower.

18 . The noise-reducing air passage device and its components according to claim 17 , wherein the at least one support component is configured as a perforated elastomer, and at least part of the at least one support component has a non-uniform wall thickness.

19 . A noise-reducing air passage device and its components for use in ventilator systems, configured to provide pressurized gas to an airway of a patient, the noise-reducing air passage device and its components comprising:

a housing, including at least one inlet, at least one outlet, an inner wall, and an outer wall, wherein a space enclosed by the inner wall of the housing forms a gas passage comprising at least one chamber to provide the space for gas accumulation and flow;

a blower, secured within one of the at least one chamber, and configured to allow flow of gas into the blower from an inlet port of the blower, pressurize the gas, and deliver the pressurized gas to the at least one outlet of the housing; and

at least one support component, configured as a perforated elastomer, wherein at least one support component is provided within the at least one chamber to support the blower and to disperse vibrations during operation of the blower;

wherein the gas passage does not include foam;

wherein the support component has at least two different wall thicknesses;

wherein a longitudinal axis of the at least one inlet of the housing transversely intersects a longitudinal axis of the at least one outlet of the blower in a top view plane, wherein the longitudinal axis of the at least one inlet and the longitudinal axis of the at least one outlet are both only oriented horizontally, and

wherein the housing is configured such that the at least one outlet is at a higher elevation than the at least one inlet along a z-axis.

20 . The noise-reducing air passage device and its components according to claim 19 , wherein the perforated elastomer of the support component has at least one hole to facilitate ventilation and to disperse vibrations, thereby preventing the blower from overheating and reducing noise.

21 . The noise-reducing air passage device and its components according to claim 19 , wherein the at least one support component includes at least one material selected from the group consisting of silicone, rubber, thermoplastic elastomer, thermoplastic polyurethane, and fluororubber.

22 . The noise-reducing air passage device and its components according to claim 19 , wherein a contact area between the at least one support component and the blower is at least 330 mm 2 .

23 . The noise-reducing air passage device and its components according to claim 19 , wherein an outlet pipe is provided at the at least one outlet of the housing and is configured to be integrally formed with the housing.

24 . The noise-reducing air passage device and its components according to claim 19 , wherein the gas passage has at least one ventilation component secured within the housing and including internal gaps, and wherein the internal gaps are configured to divide the gas that flows out from the at least one chamber.

25 . The noise-reducing air passage device and its components according to claim 19 , wherein the gas passage includes at least one inlet component configured to be indirectly connected to the at least one inlet of the housing.