Fixed-amount pressurized atomization device
10960149 ยท 2021-03-30
Assignee
Inventors
Cpc classification
B05B7/2408
PERFORMING OPERATIONS; TRANSPORTING
B05B17/0607
PERFORMING OPERATIONS; TRANSPORTING
B05B7/00
PERFORMING OPERATIONS; TRANSPORTING
B05B7/2405
PERFORMING OPERATIONS; TRANSPORTING
International classification
A61M11/00
HUMAN NECESSITIES
B05B17/06
PERFORMING OPERATIONS; TRANSPORTING
B05B7/24
PERFORMING OPERATIONS; TRANSPORTING
B05B7/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A liquid introducing device transfers a fixed amount of liquid medicine into atomized particles. The liquid medicine is connected to the liquid introducing device which allows the users to quickly replace the bottles and avoid cross infection between different medicines. The liquid introducing device is powered by electric power to atomize the liquid quickly. The liquid introducing device includes a chamber which cooperated with an electro-magnetic valve switch which controls a fixed amount of air in the chamber such that the fixed amount of the air can be pressurized and output stably. The pressurized air passes through the tube without delay and loss.
Claims
1. A liquid introducing device comprising: an introducing unit having a housing, the housing having a removable cap at a first end thereof, a bottle for receiving liquid therein being connected to the housing and located above the removable cap, a second end of the housing having an air introducing port which is connected with an exterior air source, a connection wire adapted to be connected to an exterior power source at the second end of the housing, the housing having a tube, a seat, a chamber, and a circuit control unit received therein, the tube integrally connected with the seat, one end of the tube connected to a first end of the chamber, the circuit control unit located beside the chamber, a second end of the chamber connected with the air introducing port, the circuit control unit electrically connected to the connection wire, wherein the seat has a clamp and a wall member whereby the bottle is positioned to directly contact the clamp and the wall member and released from the clamp and the wall member; and wherein a base is connected to an outside of the tube, the base having a vibration plate which includes multiple orifices, the base having a passage defined centrally therein which communicates with the tube.
2. The liquid introducing device as claimed in claim 1, wherein a frame is connected to the outside of the tube, a circuit board held by the frame and electrically connected to the vibration plate.
3. The liquid introducing device as claimed in claim 2, wherein the seat is connected to the base.
4. The liquid introducing device as claimed in claim 2, wherein the circuit control unit has a spring connector which secures or separates the circuit board.
5. The liquid introducing device as claimed in claim 1, wherein the circuit control unit has an electro-magnetic valve switch and a valve opening, the valve opening being located between the tube and the chamber, and controlled by the electro-magnetic valve switch so as to control a release of air in the chamber, the circuit control unit controlling an amount of the air to be released.
6. The liquid introducing device as claimed in claim 1, wherein the exterior air source connected to the air introducing port includes a movable air source.
7. The liquid introducing device as claimed in claim 6, wherein the movable air source includes an arm wrap, a pressurized air bottle receiving member, an air source control member, a pressurized air bottle and a pressure regulating valve, the pressure regulating valve has an air outlet which is connected to the air introducing port of the introducing unit.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
(9) Referring to
(10) The housing 10 has a removable cap 11 at the first end thereof, and a hole is defined in the removable cap 11 for the injection of the atomized mixture of liquid and air. The removable cap 11 can be easily removed for checking the interior of the housing 10. A bottle 12 for receiving liquid or medicine therein is connected to the housing 10 and located above the removable cap 11. The second end of the housing 10 has an air introducing port 13 which is connected with an exterior air source. A connection wire 14 is connected to the second end of the housing 10 so as to be connected to an exterior power source (not shown).
(11) As shown in
(12) As shown in
(13) The diameter of each of the orifices of the vibration plate 231 is below 25 m, and the number of the orifices is below 800. The vibration plate 231 vibrates by ultra-sonic waves so as to oscillate the liquid to be atomized particles which are suitable for being absorbed by patients' skin.
(14) As shown in
(15) As shown in
(16) The circuit control unit 5 is located beside the chamber 4 and electrically connected with the connection wire 14 such that the exterior power source provides electric power to the circuit control unit 5. The circuit control unit 5 has an electro-magnetic valve switch 51, a valve opening 52 and a spring connector 242. The valve opening 52 is located between the tube 2 and the chamber 4, and controlled by the electro-magnetic valve switch 51 so as to control the release of air in the chamber 4. The circuit control unit 5 controls the amount of the air to be released. The spring connector 242 is designed to be in contact with the circuit board 241 or to be separated from the circuit board 241.
(17) When in operation, the circuit control unit 5 is powered by the exterior power source and introduces air from the exterior air source into the device from the air introducing port 13. In the same time, the electro-magnetic valve switch 51 opens the valve opening 52 to release the pre-stored air in the chamber 4 so as to maintain the air under stable pressure. The vibration plate 231 vibrates by the ultra-sonic waves to atomize the liquid released from the bottle 12, and the atomized liquid is then sent to the tube 2, and the air released from the chamber 4 mixes the atomized liquid, the mixture is then ejected from the tube 2.
(18) When the bottle 12 needs to be replaced, the tube 2 together with the bottle 12 are separated from the chamber 4. For safety and sanitation concern, the tube 2 and the bottle 12 are disposable.
(19) When the tube 2 is removed, the circuit board 241 is separated from the spring connector 242 so that the circuit is opened. When the new tube 2 and bottle 12 are installed and connected to the chamber 4, the circuit board 241 is connected to the spring connector 242 again, and the circuit is re-activated automatically.
(20) It is noted that the exterior air source that is connected to the air introducing port 13 can be a movable air source 6 or a fixed air source. The fixed air source is the pressurized steel bottle as commonly seen, which is heavy and difficult to move. The fixed air source is connected to the air introducing port 13 by a proper pipe.
(21) As shown in
(22) The advantages of the present invention are that the liquid introducing device combines the medicine bottle and the introducing unit so that the replacement of the bottles is quick and efficient, and the risk of cross infection is eliminated.
(23) The liquid introducing device is connected with an electric power source so that the wiring is simplified and the time required to atomize the liquid medicine is shortened.
(24) The liquid introducing device includes a chamber which is cooperated with an electro-magnetic valve switch so as to pre-store the air in the chamber and the air is output under stable pressure such that when the air passes through the tube, the loss and delay of the air in the tube are reduced.
(25) While we have shown and described the embodiment in accordance with the present invention, it should be clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.