IP Library Granted Patent US 11,878,112
Granted Patent B2
US 11,878,112 · App. 17/678,519 · Granted Jan 23, 2024

Mist inhaler devices

Inventors: Mohammed Alshaiba Saleh Ghannam Almazrouei (Abu Dhabi, AE); Sajid Bhatti (Abu Dhabi, AE); Jeff Machovec (Abu Dhabi, AE); Clement Lamoureux (Abu Dhabi, AE); Imad Lahoud (Abu Dhabi, AE)
Assignee: Shaheen Innovations Holding Limited
A61M15/0085A24B15/167A24F40/05A24F40/10A24F40/44A24F40/48A24F40/50A24F40/51A24F40/53A24F40/65A61M11/005A61M15/001A61M15/002A61M15/0021A61M15/0081B05B12/08B05B17/0646B05B17/0661B05B17/0669B05B17/0684A61M15/06A61M2205/0294A61M2205/276A61M2205/3368A61M2205/3375A61M2205/60A61M2205/8206A61M2205/8212A61M2205/8237B06B2201/77
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Quick Facts
Patent No.
US 11,878,112
App. No.
17/678,519
Granted
Jan 23, 2024
Kind
B2
Abstract

A mist inhaler device ( 200 ) for generating a mist including a therapeutic for inhalation by a user. The device includes a mist generator device ( 201 ) and a driver device ( 202 ). The driver device ( 202 ) is configured to drive the mist generator device ( 201 ) at an optimum frequency to maximise the efficiency of mist generation by the mist generator device ( 201 ).

Claims (30)

1. A mist generator device comprising:

a mist generator housing which is elongate and comprises an air inlet port and a mist outlet port;

a liquid chamber provided within the mist generator housing, the liquid chamber containing a liquid to be atomized;

a sonication chamber provided within the mist generator housing;

a capillary element extending between the liquid chamber and the sonication chamber, the capillary element having a leading end, an opposite trailing end, and a central longitudinal axis passing through the ends, the capillary element is generally planar with a first portion having a generally rectangular shape which terminates at the leading end in a second portion having a partly circular shape with a diameter, the first portion terminates at the trailing end to form an enlarged end having a width, each of the diameter of the second portion and the width of the enlarged end, respectively, being greater than a maximum width of the first portion transverse to the central longitudinal axis of the capillary element, the enlarged end of the capillary element is within the liquid chamber and the second portion of the capillary element is within the sonication chamber;

an ultrasonic transducer having a generally planar atomization surface which is provided within the sonication chamber, the ultrasonic transducer being mounted within the mist generator housing, wherein at least part of the partly circular-shaped second portion of the capillary element is superimposed on at least a part of the atomization surface, and wherein the ultrasonic transducer is configured to vibrate the atomization surface to atomize the liquid carried by the second portion of the capillary element to generate a mist comprising the atomized liquid and air within the sonication chamber; and

an airflow arrangement within the mist generator housing which provides an air flow path between the air inlet port, the sonication chamber and the mist outlet port, wherein the airflow arrangement is configured to guide a direction of a flow of air along the airflow path such that the flow of air is substantially perpendicular to the atomization surface of the ultrasonic transducer as the flow of air passes into the sonication chamber.

2. The mist generator device of claim 1 , wherein the capillary element is at least 75% bamboo fiber.

3. The mist generator device of claim 1 , wherein the sonication chamber is unobstructed to permit the flow of air directly to the atomization surface of the ultrasonic transducer as the flow of air passes into the sonication chamber.

4. The mist generator device of claim 1 , wherein the first and second portions of the capillary element each have a thickness of approximately 0.28 mm.

5. The mist generator device of claim 1 , wherein the capillary element is folded with a first part of the capillary element being superimposed on a second part of the capillary element such that the capillary element has two layers.

6. The mist generator device of claim 5 , wherein an overall thickness of the two layers of the capillary element is approximately 0.56 mm.

7. The mist generator device of claim 1 , wherein the mist generator device further comprises:

a transducer holder which is held within the mist generator housing, wherein the transducer holder holds the ultrasonic transducer and retains the second portion of the capillary element superimposed on part of the atomization surface; and

a divider portion which provides a barrier between the liquid chamber and the sonication chamber, wherein the divider portion comprises a capillary aperture through which part of the first portion of the capillary element extends.

8. The mist generator device of claim 1 , wherein the plane of the atomization surface is substantially parallel with a longitudinal length of the mist generator housing.

9. The mist generator device of claim 1 , wherein the capillary aperture is an elongate slot having a width of 0.2 mm to 0.4 mm.

10. The mist generator device of claim 1 , wherein the airflow arrangement is configured to guide the direction of the flow of air along the airflow path such that the flow of air from the air inlet port is substantially parallel with a longitudinal axis of the mist generator housing prior to passing into the sonication chamber.

11. The mist generator device of claim 10 , wherein the airflow arrangement is configured to guide the direction of the flow of air along the airflow path such that the flow of air from the sonication chamber is substantially parallel with a longitudinal axis of the mist generator housing from the sonication chamber to the air outlet port.

12. The mist generator device of claim 1 , wherein the ultrasonic transducer is circular and has a diameter of substantially 16 mm.

13. The mist generator device of claim 1 , wherein the liquid chamber contains a liquid having a liquid viscosity between 1.05 Pa·s and 1.412 Pa·s and a liquid density between 1.1 g/ml and 1.3 g/ml.

14. The mist generator device of claim 1 , wherein the mist generator device further comprises:

an identification arrangement which is provided with the mist generator housing to identify the mist generator device, the identification arrangement comprising:

a one-time time programmable integrated circuit (OTP IC) having a memory which stores a unique identifier for the mist generator device the one-time programmable integrated circuit (OTP IC) comprising a digital core which includes a cryptographic authenticator; and

an electrical connection which provides an electronic interface for communication with the one-time programmable integrated circuit (OTP IC) and a driver device.

15. The mist generator device of claim 14 , wherein the memory of the one-time programmable integrated circuit (OTP IC) stores a record of a state of the mist generator device which is indicative of at least one of a historic use of the mist generator device and a volume of the liquid within the liquid chamber.

16. The mist generator device of claim 1 , wherein the capillary element includes angled portions transitioning from the first portion to the enlarged end.

17. The mist generator device of claim 16 , wherein the angled portions are spaced apart a distance that is greater than the maximum width of the first portion transverse to the central longitudinal axis of the capillary element.

18. The mist generator device of claim 1 , wherein the airflow arrangement is configured to guide a direction of a flow of air along the airflow path such that the flow of air is substantially perpendicular and concentric to the atomization surface of the ultrasonic transducer as the flow of air passes into the sonication chamber.

19. The mist generator device of claim 1 , wherein the airflow arrangement further comprises a first portion initiating at the air inlet port, the first portion of the airflow arrangement having a longitudinal axis that is substantially parallel to the central longitudinal axis of the housing and passing through the air inlet port, the first portion continuing to a second portion of the airflow arrangement and being in direct communication with the sonication chamber, the second portion of the airflow arrangement having a central longitudinal axis that is substantially perpendicular to the central longitudinal axis of the housing and is substantially perpendicular to the plane of the atomisation surface of the ultrasonic transducer, the central longitudinal axis of the second portion intersecting at least a portion of the atomization surface and being concentric with the central longitudinal axis of the ultrasonic transducer such that the direction of the flow of air into the sonication chamber is substantially perpendicular to the plane of the atomisation surface of the ultrasonic transducer, the first portion of the airflow arrangement extending from the bottom end to the second portion of the airflow arrangement.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 23, 2022
From: LAHOUD, IMAD; ALSHAIBA SALEH GHANNAM ALMAZROUEI, MOHAMMED; BHATTI, SAJID; MACHOVEC, JEFF; LAMOUREUX, CLEMENT
To: SHAHEEN INNOVATIONS HOLDING LIMITED
Reel/Frame 059078/0984 →
Priority Claims (3)
EP 20168231 · Apr 6, 2020 · regional
EP 20168245 · Apr 6, 2020 · regional
EP 20168938 · Apr 9, 2020 · regional
Continuity (8)
Continuation 17552281 · Dec 15, 2021
Continuation In Part 17220189 · Apr 1, 2021
Continuation In Part 17122025 · Dec 15, 2020
Continuation In Part PCTIB2019060812 · Dec 15, 2019
Continuation In Part PCTIB2019060808 · Dec 15, 2019
Continuation In Part PCTIB2019060810 · Dec 15, 2019
Continuation In Part PCTIB2019060811 · Dec 15, 2019
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