IP Library Patent Application 18951448
Patent Application
App. No. 18/951,448

Medical Nebulizer for Fast Drug Delivery

Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US None
App. No.
18/951,448
Abstract

A nebulizer is provided to atomize a liquid medication for rapid delivery of an aerosol spray to a user via inhalation. The nebulizer includes a jar having a compressed gas passage. A jet cooperates with the jar and has a jet orifice through which the liquid medication and the compressed gas are discharged to form an aerosol flow. The cap is connected to the jar to define an inner chamber. The cap includes an entrainment port for ambient room air, and a chimney in fluid communication with the entrainment port and the inner chamber. A deflector base having an impingement member is located adjacent to the entrainment chimney and is spaced below an opening thereof by a predetermined distance to provide a flow of the ambient room air to be entrained in the aerosol flow in order to enhance nebulization speed while maintaining a desired aerosol particle size.

Claims (59)

1 . A nebulizer configured to atomize a liquid medication for inhalation by a user, the nebulizer comprising:

a reservoir configured to hold a liquid medication;

a jet configured to receive pressurized gas;

an entrainment port;

an entrainment chimney fluidly coupled to the entrainment port, the entrainment chimney extending below the entrainment port;

an entrainment vent fluidly coupled to the entrainment chimney and an inner chamber of the nebulizer, the entrainment vent extending through a longitudinal wall of the entrainment chimney;

wherein the nebulizer is configured to create a pressure differential between the inner chamber and external ambient air that pulls the external ambient air through the entrainment port, into the entrainment chimney, through the entrainment vent, and into the inner chamber.

2 . The nebulizer of claim 1 , wherein the entrainment port is positioned on a first side of the nebulizer and further comprising:

an aerosol port positioned on a second side of the nebulizer opposite the first side, the aerosol port being configured to receive a user interface, the aerosol port being fluidly coupled to the inner chamber; and

wherein the longitudinal wall of the entrainment chimney is positioned between the entrainment port and the aerosol port.

3 . The nebulizer of claim 1 , wherein the entrainment port is configured to provide an inhalation pathway for inhalation through the entrainment port and an exhalation pathway for exhalation out of the nebulizer through the entrainment port.

4 . The nebulizer of claim 3 , wherein the nebulizer is configured to continuously nebulize and atomize the liquid medication during inhalation and exhalation of a user of the nebulizer.

5 . The nebulizer of claim 3 , further comprising an aerosol port configured to receive a user interface, the aerosol port being fluidly coupled to the inner chamber; and

wherein exhaled air passes through the aerosol port, through the entrainment vent, up the entrainment chimney, and out the entrainment port.

6 . The nebulizer of claim 5 , further comprising:

an impingement member aligned with the jet, wherein aerosol particles are configured to impinge upon a surface of the impingement member to further atomize the aerosol particles;

a deflector base coupled to and extending from the impingement member, the deflector base being configured to prevent an aerosol spray from entering an entrainment flow path within the entrainment chimney; and

wherein the impingement member blocks a second opening defined by the entrainment vent and positioned within the entrainment chimney to prevent liquid medication from being driven out through the entrainment chimney during exhalation of a user.

7 . The nebulizer of claim 1 , further comprising an aerosol port fluidly coupled to the inner chamber and configured to receive a user interface; and

wherein the entrainment vent is open in a direction transverse to a longitudinal axis of the entrainment chimney, such that ambient air flowing through the entrainment vent and towards the aerosol port flows in the same direction as ambient air flowing through the aerosol port.

8 . The nebulizer of claim 1 , wherein the entrainment vent is positioned below the entrainment port; and

wherein a height of the entrainment vent is:

greater than 0 inches and less than or equal to 0.45 inches; or

approximately 0.12 inches.

9 . The nebulizer of claim 1 , wherein a longitudinal axis of the entrainment port is perpendicular to the longitudinal axis of the entrainment chimney.

10 . The nebulizer of claim 1 , further comprising:

a jar including the reservoir; and

a cap removably coupled to the jar, the cap including the entrainment port, the entrainment chimney, the entrainment vent; and

wherein when the jar and the cap are coupled together, the jar and the cap define the inner chamber of the nebulizer.

11 . The nebulizer of claim 1 , wherein a cross-sectional area of the entrainment chimney is approximately 0.27 square inches;

wherein a cross-sectional area of the entrainment port is approximately 0.21 square inches; and

wherein a height of the entrainment vent is greater than 0 inches and less than or equal to 0.45 inches.

12 . A nebulizer configured to atomize a liquid medication for inhalation by a user, the nebulizer comprising:

an entrainment port;

an entrainment chimney fluidly coupled to the entrainment port, the entrainment chimney extending below the entrainment port;

an entrainment vent fluidly coupled to the entrainment chimney and an inner chamber of the nebulizer, the entrainment vent extending through a longitudinal wall of the entrainment chimney;

wherein the nebulizer is configured to create a pressure differential between the inner chamber and external ambient air that pulls the external ambient air through the entrainment port, into the entrainment chimney, through the entrainment vent, and into the inner chamber.

13 . The nebulizer of claim 12 , wherein the entrainment vent is open in a direction transverse to a longitudinal axis of the entrainment chimney.

14 . The nebulizer of claim 12 , further comprising:

a jar including a reservoir configured to hold a liquid medication; and

a cap removably coupled to the jar, the cap including the entrainment port, the entrainment chimney, the entrainment vent; and

wherein when the jar and the cap are coupled together, the jar and the cap define the inner chamber of the nebulizer.

15 . The nebulizer of claim 12 , wherein the entrainment port is configured to provide an inhalation pathway for inhalation through the entrainment port and an exhalation pathway for exhalation out of the nebulizer through the entrainment port.

16 . The nebulizer of claim 12 , wherein a longitudinal axis of the entrainment port is perpendicular to the longitudinal axis of the entrainment chimney.

17 . The nebulizer of claim 12 , further comprising:

an aerosol port fluidly coupled to the inner chamber and configured to receive a user interface;

a jet configured to receive pressurized gas;

an impingement member aligned with the jet, wherein aerosol particles are configured to impinge upon a surface of the impingement member to further atomize the aerosol particles;

a deflector base coupled to and extending from the impingement member towards the longitudinal wall of the entrainment chimney, the longitudinal wall of the entrainment chimney being positioned closer to the aerosol port than the entrainment port; and

wherein deflector base does not extend past the longitudinal wall of the entrainment chimney.

18 . A nebulizer configured to atomize a liquid medication for inhalation by a user, the nebulizer comprising:

an entrainment port positioned on a first side of the nebulizer;

an entrainment chimney fluidly coupled to the entrainment port, the entrainment chimney extending below the entrainment port;

an entrainment vent fluidly coupled to the entrainment chimney and an inner chamber of the nebulizer, the entrainment vent extending through a longitudinal wall of the entrainment chimney;

an aerosol port positioned on a second side of the nebulizer opposite the first side, the aerosol port being configured to receive a user interface, the aerosol port being fluidly coupled to the inner chamber;

wherein the longitudinal wall of the entrainment chimney is positioned between the entrainment port and the aerosol port; and

wherein the nebulizer is configured to create a pressure differential between the inner chamber and external ambient air that pulls the external ambient air through the entrainment port, into the entrainment chimney, through the entrainment vent, and into the inner chamber.

19 . The nebulizer of claim 18 , wherein the entrainment port is configured to provide an inhalation pathway for inhalation through the entrainment port and an exhalation pathway for exhalation out of the nebulizer through the entrainment port.

20 . The nebulizer of claim 18 , wherein the entrainment vent is open in a direction transverse to a longitudinal axis of the entrainment chimney.

Assignments (2)
PATENT SECURITY AGREEMENT Recorded May 28, 2026
From: MEDLINE INDUSTRIES, LP
To: WILMINGTON TRUST, NATIONAL ASSOCIATION, AS NOTES COLLATERAL AGENT
Reel/Frame 075643/0462 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 9, 2024
From: DWYER, DANIEL P.; HILLOCKS, ERIN
To: MEDLINE INDUSTRIES, LP
Reel/Frame 069524/0751 →