On demand aerosolized delivery inhaler
10286163 ยท 2019-05-14
Inventors
Cpc classification
A61M15/009
HUMAN NECESSITIES
A61M2205/3344
HUMAN NECESSITIES
A61M11/02
HUMAN NECESSITIES
A61M2205/3337
HUMAN NECESSITIES
A61M2205/12
HUMAN NECESSITIES
B05B7/2464
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A hand-held aerosolized inhaler that delivers an aerosolized solution to the user on demand when he or she inhales is provided. A pressure or flow sensor within the invention detects the change in air flow as the user inhales and triggers spraying the aerosol solution only when the inhaled breath stream will optimally entrain the sprayed aerosol. The pressure or flow sensor sends an electronic signal to turn on or off liquid and air pumps as the user breathes. Liquid, or liquid and air are pumped to the nozzle inside the invention to create an aerosolized mixture.
Claims
1. Apparatus comprising: a portable, hand-held aerosol inhaler having: a product reservoir containing a product to be delivered to a user, a product conduit connected to the reservoir, an air conduit, an air passageway through which outside air can flow through the apparatus, a mixing nozzle connected to the product reservoir via the product conduit and the air conduit for producing a first aerosolized mixture having a product and air mixture within the mixing nozzle and supplying the product and air mixture to the air passageway, wherein the product conduit and the air conduit are spaced from each other, wherein the product conduit and the air conduit each has a respective separate pathway directly connected to the mixing nozzle, and wherein the air passageway surrounds the mixing nozzle, a mouthpiece connected to the mixing nozzle via a throat for receiving the first aerosolized mixture with the product and air mixture and configured for aerosolized entrainment of the first aerosolized mixture with the product and air mixture in the outside air and forming a second aerosolized mixture and to pass the second aerosolized mixture into a mouth of a user during use, a pressure sensor connected to the air passageway and configured to detect inhaled breaths of the user, and to activate a selective dispensing of the second aerosolized mixture when the user inhales, and stopping delivery of the second aerosolized mixture when the user is not inhaling with sufficient negative pressure for entrainment, a product pump, wherein the product pump is configured to withdraw product from the reservoir by suction action of the product pump through the product conduit, and an air pump, wherein the air pump is connected to an inlet for supplying compressed air to the mixing nozzle through the air conduit.
2. The apparatus of claim 1, further comprising a collapsible bag in the reservoir containing the product, wherein the product pump is configured to withdraw product from the collapsible bag in the reservoir by the suction action of the product pump through the product conduit.
3. The apparatus of claim 2, wherein the product is a liquid and the reservoir is a liquid reservoir.
4. The apparatus of claim 3, wherein the liquid is configured to be pumped into the mixing nozzle from the product pump and air is configured to be compressed and pumped into the mixing nozzle by the air pump so that the liquid and air are combined to form the first aerosolized mixture and then expelled through an orifice of the mixing nozzle for creating the second aerosolized mixture for inhalation.
5. The apparatus of claim 1, wherein the pressure sensor is configured to send an electronic signal during inhalation by the user to activate the product pump and the air pump.
6. The apparatus of claim 1, further comprising a microcontroller which is configured to control amounts of air and liquid that are to be pumped into the mixing nozzle.
7. The apparatus of claim 1, further comprising two or more reservoirs containing different products connected to two or more product pumps respectively, wherein the two or more product pumps are configured to withdraw the different products from the two or more respective reservoirs.
8. The apparatus of claim 7, wherein the different products are two or more liquids and wherein a combination of the two or more liquids is configured to be created in the mixing nozzle when supplied by the two or more product pumps.
9. The apparatus of claim 1, further comprising rechargeable batteries to power the apparatus.
10. The apparatus of claim 1, wherein the aerosolized mixtures are an aerosolized medication.
11. The apparatus of claim 1, wherein the pressure sensor is an on/off diaphragm pressure switch.
12. The apparatus of claim 1, wherein the first and second aerosolized mixtures are configured to be dispensed only when negative pressure is measured by the pressure sensor.
13. A method comprising: providing an aerosol inhaler, the aerosol inhaler comprising: a product reservoir containing a product to be delivered to a user, a product conduit connected to the reservoir, an air conduit, an air passageway through which outside air can flow through the aerosol inhaler, a mixing nozzle connected to the product conduit and the air conduit for producing a first aerosolized mixture having a product and air mixture, wherein the product conduit and the air conduit are spaced from each other, and wherein the product conduit and the air passageway each has a respective separate pathway directly connected to the mixing nozzle, and wherein the air passageway surrounds the mixing nozzle, a mouthpiece connected to the mixing nozzle and to the air passageway via a throat, a pressure sensor connected to the air passageway to detect inhaled breaths of the user, a product pump, wherein the product pump is configured to withdraw product from the reservoir by suction action of the product pump through the product conduit, and an air pump, wherein the air pump is connected to an inlet for supplying compressed air to the mixing nozzle through the air conduit, forming a second aerosolized mixture by entraining the first aerosolized product and air mixture in the outside air from the air passageway, flowing the second aerosolized mixture through the throat and the mouthpiece into a user's mouth, when the user inhales through the mouthpiece, selectively dispensing the second aerosolized mixture when the user inhales producing sufficient flow to maintain entrainment, and stopping the delivery of the second aerosolized mixture when the user is not inhaling adequately for sufficient flow for entrainment.
14. The method of claim 13, further comprising activating the air pump and the product pump by the pressure sensor, and detecting the inhaled breaths.
15. The method of claim 14, wherein the product is a liquid and the reservoir is a liquid reservoir, and the product pump is a liquid pump.
16. The method of claim 15, wherein liquid pumped into the mixing nozzle from the liquid pump and air pumped into the mixing nozzle by the air pump are combined to make the first aerosolized mixture.
17. The method of claim 16, wherein the aerosol inhaler further comprises a microcontroller which controls the amounts of air and liquid that are pumped into the mixing nozzle.
18. The method of claim 15, wherein upon activation, the pressure sensor sends an electronic signal to power the liquid pump and the air pump.
19. The method of claim 13, wherein the aerosol inhaler further comprises two or more reservoirs containing different products connected to two or more product pumps, wherein the two or more product pumps withdraw the different products from the two or more respective reservoirs.
20. The method of claim 19, wherein the different products are two or more liquids and wherein a combination of the two or more liquids is created in the mixing nozzle.
21. The method of claim 13, further comprising providing rechargeable batteries to power the pumps.
22. The method of claim 13, wherein the aerosolized mixtures are an aerosolized medication.
23. The method of claim 13, wherein the pressure sensor comprises an on/off diaphragm pressure switch.
24. The method of claim 13, comprising dispensing the second aerosolized mixture only when sufficient negative pressure is measured by the pressure sensor.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(6) The following item numbers relate to the drawings. 1 Mouthpiece 2 Sensor 3 op-amp/comparator circuit 4 Liquid Pump 5 Air Pump 6 Cartridge 7 Collapsible Reservoir 8 Mixing Nozzle 9 Throat for aerosol entrainment 10 Sine Wave Symbol representing negative pressure of inhalation 11 Ambient Air or Atmospheric Air (Dot Texture) 12 Air Passage to direct outside air 11 past sensor 2 13 motor control unit for air pump 14 motor control unit for liquid pump 15 batteries 16 microcontroller 18 pump motor for liquid pump 4 19 pump motor for air pump 5 20 Inhalation Pressure Signature (Suction Breathing Signature) 21 liquid (wave texture) 22 cartridge receiver 23 liquid and air mixing in mixing nozzle chamber (darker bubble texture) 25 aerosol mixture mixed with ambient air drawn into the mouthpiece (lighter bubble texture) 26 sensor activated on/off transistor switch 27 transformer battery charger assembly 28 voltage differential from sensor 29 inhalation flow velocity 30 charging circuitry 31 product conduit 32 air conduit 33 air pump inlet 34 compressed air
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(8) Drawing air with a user's mouth through mouthpiece 1 activates sensor 2, and sensor 2 actuates motors 18 and 19 to drive liquid and air pumps 4 and 5 to pump liquid from collapsible reservoir 7 in cartridge 6 and air 11 into mixing nozzle 8.
(9) Negative pressure of inhalation, represented by the negative portion of sine wave symbol 10, triggers a change in pressure detected by the pressure sensor module 2, which sends an electrical impulse as a voltage differential 28 to the op-amp/comparator circuit 3. The comparator portion of the op-amp/comparator circuit electronically turns on or off the liquid pump 4 and the air pump 5 to maintain aerosol dispensing only when inhalation negative pressure is sufficient to insure adequate entrainment to deliver the inhaled product aerosol mixture from the liquid reservoir 7 in cartridge 6 to the lung. An on/off diaphragm pressure switch may be used for aerosolization spray activation. Breathing pressure signature creates air flow through the device. The plot in the lower left of
(10) The mixing nozzle 8 mixes compressed atmospheric air 34 from the air pump 5 and liquid 21 from the liquid pump 4 and releases the mix 25 that is entrained in the inhalation stream through the mouth piece 1. The mouthpiece 1 draws atmospheric air 11 from outside air through an air passage 12 that directs the inhaled atmospheric air 11 past sensor 2 and around the mixing nozzle 8. This channels air to optimize entrainment of the aerosolized fluid mixed with air in the mixing nozzle 8 creating the entrained mix of ambient air 11 and aerosolized fluid mixed with air 25.
(11) Pump motor 19 powers air pump 5 while pump motor 18 powers liquid pump 4. Pump motors 18 and 19 are supplied with separate motor control units: motor control unit 13 for air pump motor 19 and motor control unit 14 for liquid pump motor 18. These motor control units contain the necessary voltage regulation and pulse width modulation circuitry to insure accurate liquid delivery and optimum power use. To meter flow for pharmacologic applications, the motor control units may incorporate one or more stepper motors or servo motor controllers to precisely meter and record the liquid quantity delivered, the inhalation pressure required, and the time events occurred. These additional functions entail the addition of a low power, low cost microcontroller 16. Side lines on microcontroller 10 are micro controller input/output lines to sensing, motor control and other advanced features as needed.
(12) Power for the invention comes from batteries 15 which can be replaceable, rechargeable, or rechargeable in the system.
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(17) While the invention has been described with reference to specific embodiments, modifications and variations of the invention may be constructed without departing from the scope of the invention.