WO2012058941A1 - 口吸式便携雾化器 - Google Patents

口吸式便携雾化器 Download PDF

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Publication number
WO2012058941A1
WO2012058941A1 PCT/CN2011/077010 CN2011077010W WO2012058941A1 WO 2012058941 A1 WO2012058941 A1 WO 2012058941A1 CN 2011077010 W CN2011077010 W CN 2011077010W WO 2012058941 A1 WO2012058941 A1 WO 2012058941A1
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WO
WIPO (PCT)
Prior art keywords
liquid
suction nozzle
single chip
signal
circuit
Prior art date
Application number
PCT/CN2011/077010
Other languages
English (en)
French (fr)
Inventor
邱伟华
Original Assignee
健宜(常州)电子科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 健宜(常州)电子科技有限公司 filed Critical 健宜(常州)电子科技有限公司
Priority to ES11837468.5T priority Critical patent/ES2555410T3/es
Priority to EP11837468.5A priority patent/EP2489391B1/en
Priority to PL11837468T priority patent/PL2489391T3/pl
Priority to RU2012124102/14A priority patent/RU2506958C1/ru
Priority to US13/424,712 priority patent/US9132248B2/en
Publication of WO2012058941A1 publication Critical patent/WO2012058941A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M15/00Inhalators
    • A61M15/06Inhaling appliances shaped like cigars, cigarettes or pipes
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/42Cartridges or containers for inhalable precursors
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/44Wicks
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/50Control or monitoring
    • A24F40/53Monitoring, e.g. fault detection
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M11/00Sprayers or atomisers specially adapted for therapeutic purposes
    • A61M11/04Sprayers or atomisers specially adapted for therapeutic purposes operated by the vapour pressure of the liquid to be sprayed or atomised
    • A61M11/041Sprayers or atomisers specially adapted for therapeutic purposes operated by the vapour pressure of the liquid to be sprayed or atomised using heaters
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M11/00Sprayers or atomisers specially adapted for therapeutic purposes
    • A61M11/04Sprayers or atomisers specially adapted for therapeutic purposes operated by the vapour pressure of the liquid to be sprayed or atomised
    • A61M11/041Sprayers or atomisers specially adapted for therapeutic purposes operated by the vapour pressure of the liquid to be sprayed or atomised using heaters
    • A61M11/042Sprayers or atomisers specially adapted for therapeutic purposes operated by the vapour pressure of the liquid to be sprayed or atomised using heaters electrical
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M15/00Inhalators
    • A61M15/0065Inhalators with dosage or measuring devices
    • A61M15/0068Indicating or counting the number of dispensed doses or of remaining doses
    • A61M15/0081Locking means
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/10Devices using liquid inhalable precursors
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M11/00Sprayers or atomisers specially adapted for therapeutic purposes
    • A61M11/005Sprayers or atomisers specially adapted for therapeutic purposes using ultrasonics
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M2205/00General characteristics of the apparatus
    • A61M2205/27General characteristics of the apparatus preventing use
    • A61M2205/276General characteristics of the apparatus preventing use preventing unwanted use
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M2205/00General characteristics of the apparatus
    • A61M2205/36General characteristics of the apparatus related to heating or cooling
    • A61M2205/3653General characteristics of the apparatus related to heating or cooling by Joule effect, i.e. electric resistance
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M2205/00General characteristics of the apparatus
    • A61M2205/70General characteristics of the apparatus with testing or calibration facilities
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M2205/00General characteristics of the apparatus
    • A61M2205/82Internal energy supply devices
    • A61M2205/8268Fuel storage cells

Definitions

  • the present invention relates to an atomizing device, and in particular to a mouth-suction portable atomizer.
  • nebulizers currently available on the market have problems: First, the liquid medicine is injected into the filling layer of the nozzle chamber, thereby showing that the liquid medicine is not fresh enough, and the storage capacity of the medicine liquid is small, and the liquid medicine is used. After the user has finished dropping the liquid into the nebulizer, the user can continue to use it. In this way, if the user wants to use the beauty outdoors or at work, he or she must bring a bottle of liquid medicine to ensure the use. Bring a bottle on the body and let the user drop the liquid. Second, the existing atomizers in the market are all threaded. When the user uses them, they must first screw the batteries to use them. This is extremely inconvenient, elegant, and unsanitary. Third, when the user uses the nebulizer, the liquid medicine stored in the filling layer cannot reach the uniform evenly. Description
  • An object of the present invention is to provide a mouth-suction portable atomizer which can uniformly guide a stored chemical solution to a heating device and which allows a user to use a relatively fresh drug solution.
  • the mouth suction type portable atomizer has a suction nozzle at one end of the casing, and a liquid storage box having a liquid storage cavity is arranged inside the casing, and one atomization device is connected to one end of the liquid storage box, and the atomization device is connected with a power supply device.
  • the power supply device comprises a casing, a battery disposed in the casing, a control circuit and a contact thimble, the output end of the control circuit is connected to the contact thimble, and the contact thimble is plugged and connected with the contact conductor;
  • the atomization device comprises an atomization component, atomizing
  • the assembly includes a liquid suction nozzle holder and a heat generating device, and one end of the liquid suction nozzle holder is provided with an atomization chamber, and the other end of the liquid suction nozzle holder is provided with a ventilation hole communicating with the atomization chamber, and the heat generating device is fixed at the atomization In the cavity
  • the atomizing device further includes a liquid guiding assembly, the liquid guiding assembly includes a liquid suction nozzle and a liquid guiding rope, one end of the liquid suction nozzle is inserted into the liquid storage cavity of the liquid storage box, and the contact portion of the liquid suction nozzle and the liquid storage box is formed.
  • the liquid seal is sealed, and the other end of the liquid suction nozzle is in communication with the atomization chamber of the liquid suction nozzle base.
  • the liquid guiding rope is wound around the heat generating device, and the two ends of the liquid guiding rope are inserted into the liquid suction nozzle.
  • the liquid storage container of the present invention since the liquid storage container of the present invention has no filler, the liquid medicine used by the user is relatively fresh.
  • the two ends of the liquid guiding cord are introduced into the liquid suction nozzle, and the liquid guiding rope can not only seal the liquid medicine in the liquid storage box, but also the liquid medicine does not flow along the liquid suction nozzle to the atomization under the action of gravity.
  • the liquid medicine in the liquid storage box can be guided to the heat generating device, because the liquid guiding rope is wound Description
  • the aspect is arranged on the heat generating device, so that the liquid medicine can uniformly reach the heat generating device through the action of the liquid guiding rope, so that the liquid droplets can be formed into small diameter droplets when the liquid medicine is heated, and the large diameter droplets are reduced. There is almost no, so that within the range of the normal negative pressure force, the liquid medicine that is sucked out can be heated to form a mist to reach the mouth of the person.
  • the liquid guiding sleeve functions to recover the chemical liquid and guide the recovered chemical liquid to the heating device. Moreover, the method of guiding the liquid sleeve is completed by the action of the gravity of the liquid medicine, and it is not necessary to artificially use the negative pressure force to heat atomize the recovered liquid, which has the advantage of labor saving.
  • Another object of the present invention is to provide a control circuit for the atomizer and a control method for the atomizer in order to prevent the key switch from being turned on by mistake.
  • the technical solution is as follows:
  • control circuit for the atomizer, the control circuit comprising a push button switch for issuing a switch signal for turning on or off the control circuit;
  • a single-chip microcomputer with a locking function connected to the button switch after receiving the signal from the button switch, the single-chip microcomputer enters the locked state without an output signal, or unlocks;
  • the control method of the atomizer includes the following steps:
  • Step (1) initializing the system: the time when the single-chip microcomputer sets the circuit to enter the lock, and setting the time for unlocking the circuit; Instruction manual
  • Step (2) the single chip detects the signal from the button switch output: in the locked state, the single chip receives the Y signal from the button switch in Q seconds, and the single chip unlocks; after unlocking, the single chip receives the button again.
  • the signal of the switch the circuit turns on the single chip to output an electrical signal to the transistor;
  • Step (3) the transistor amplifies the signal from the single chip microcomputer and supplies power to the load.
  • the single chip receives the X times switching signal from the button switch in P seconds, and the single chip enters the locked state, output signal.
  • Figure 1 is a schematic view showing the structure of the atomizer of the present invention
  • FIG. 2 is a schematic structural view of an atomizing device in the present invention
  • FIG. 3 is a schematic view showing the assembly structure of the atomizer and the power supply device of the present invention.
  • Figure 4 is a schematic diagram of a control circuit in the present invention.
  • Figure 5 is a flow chart of the control circuit
  • 10 is a casing
  • 11 is a nozzle front cover
  • 12 is a nozzle back cover
  • 20 is a liquid storage box, 21 is a box body, 22 is a box cover, 23 is a liquid isolation film, 24 is an air flow passage;
  • 30 is an atomizing device, 310 is a liquid suction nozzle seat, 31 1 is a heat generating device, and 312 is a casing.
  • 313 is the atomization chamber, 314 is the vent hole, 315 is the liquid guiding hole;
  • 330 is the atomizer main body, 331 is Contact conductor, 332 is the contact conductor base, 333 is the air inlet hole;
  • 41 is the outer casing
  • 42 is the battery
  • 43 is the control circuit
  • 44 is the contact thimble.
  • the mouth-suction portable atomizer of the present invention After the atomizer of the present invention is connected to the power supply device, the stored chemical liquid is heated to form a mist state, and then enters a human mouth.
  • the chemical liquid may be of a health care type or may be used for removing bad breath. It can also be other types of liquid medicines that are beneficial to the human body.
  • the atomizer of the present invention is mainly composed of a casing 10, a liquid storage tank 20, and an atomizing device 30, and the present invention will be further described below by a detailed description of specific structures and functions.
  • the casing 10 is made of a metal material, and the longitudinal section of the casing 10 has an elliptical shape, and may of course be a circle or a rectangle.
  • One end of the casing 10 is fixedly connected to the suction nozzle by a plugging method, and the suction nozzle is composed of a nozzle front cover 1 1 and a nozzle rear cover 12.
  • the nozzle front cover 11 and the nozzle rear cover 12 are provided with vent holes for transmitting a negative pressure force generated by the human mouth, and allowing the atomized liquid to pass through the vent hole to reach the person's mouth.
  • a liquid storage cartridge 20 having a liquid storage cavity is disposed inside the housing, and the liquid storage cartridge 20 is for storing a chemical liquid.
  • the liquid storage box 20 includes a box body 21 and a box cover 22 connected to the box body.
  • the box cover is provided with a through hole for inserting the liquid suction nozzle, and the through hole is provided with a liquid separation film 23 which can be broken, and the liquid is isolated.
  • the membrane 23 is ruptured by the liquid suction nozzle and a liquid seal is formed between the membrane 23 and the liquid suction nozzle.
  • the filling chamber of the present invention does not have any filling layer in the cavity, and the liquid medicine is directly present in the cavity, so that the liquid medicine can be prevented from remaining in the filling layer for a long time, and the liquid used by the user is relatively fresh.
  • the cross-sectional shape of the casing 21 is the same as the cross-sectional shape of the casing, and the casing 21 and the casing 10 may be a clearance fit or a transition fit, but in a transition fit manner, on the side wall surface of the liquid storage tank 21.
  • An air flow passage 24 through which the gas passes is provided.
  • one end of the liquid storage tank is connected to an atomizing device 30, and the liquid smoke in the liquid storage box is negative.
  • the atomizing device is composed of an atomizing component, a liquid guiding component and a connecting component.
  • the atomizing assembly is composed of a liquid suction nozzle holder 310, a heat generating device 31 1 and a sleeve 312.
  • the liquid suction nozzle base 310 is made of a ceramic material, and the liquid suction nozzle base 310 is provided with an atomization chamber 313 at the end thereof; the other end of the liquid suction nozzle holder 310 is provided with a ventilation hole 314 communicating with the atomization chamber, and the ventilation hole 314 is mainly It communicates with the atmosphere to achieve the purpose of forming a negative pressure during inhalation, and communicates with the atomization chamber through the vent hole.
  • a liquid guiding hole 315 communicating with the atomizing chamber is further disposed on the sidewall of the liquid suction nozzle seat, and the liquid guiding hole 315 is located at the opening of the outer wall surface of the liquid suction nozzle seat, and is smaller than the liquid guiding hole 315 at the inner wall surface of the liquid suction nozzle seat.
  • the heat generating device 311 is fixed in the atomizing chamber 313. In the embodiment, the heat generating device generates heat by the action of the current.
  • the heat generating device 311 can be a platinum wire or a nickel-chromium alloy or an iron-chromium-aluminum alloy wire containing a rare earth element. It can also be made into a sheet or a ring.
  • the sleeve 312 is sleeved on the outer wall surface of the nozzle holder 310. The sleeve 312 can absorb a portion of the heat from the nozzle holder 310, and the heat on the nozzle holder 310 is directly transmitted to the housing.
  • the liquid guiding assembly includes a liquid suction nozzle, a liquid guiding cord 320, and a liquid guiding sleeve 321 .
  • the liquid suction nozzle includes a liquid guiding tube 322 and a seat body 323.
  • One end of the liquid guiding tube 322 is connected to the base body, and the other end of the liquid guiding tube is a free end, and the end surface of the free end is a slope surface or a triangle.
  • the free The end face of the end is a ramp face.
  • the end face of the free end is a sloped surface or a triangular shape, which facilitates easy breakage of the liquid separation film 23 on the cover 22.
  • the contact portion of the liquid suction nozzle and the liquid storage container forms a liquid seal
  • SP the free end of the liquid guiding tube breaks the liquid separation film 23 on the cover 22, and is inserted into the liquid storage cavity of the casing 21 due to liquid isolation.
  • the film 23 is made of rubber, so that the contact portion of the liquid guiding tube and the liquid separating film 23 forms a liquid seal.
  • the other end of the liquid suction nozzle communicates with the atomization chamber of the liquid suction nozzle base, because the seat body 323 is located above the cavity of the atomization chamber 313 or is in contact with the cavity of the atomization chamber 313 (since the surface area of the housing is smaller than the atomization chamber) The area of the cavity of the 313 does not block the cavity of the atomization chamber, and the seat can communicate with the nozzle holder.
  • the middle portion of the liquid guiding cord 320 is wound around the heat generating device 311, and the two ends of the liquid guiding cord are introduced into the liquid suction nozzle, that is, two of the liquid guiding liquid rope
  • the ends are introduced into the catheter 322.
  • the liquid guiding rope can not only seal the liquid medicine in the casing 21, but also the liquid will not flow along the liquid suction nozzle into the atomizing chamber 313 under the action of gravity, and the casing 21 can be also under the action of the negative pressure.
  • the liquid medicine is guided to the heat generating device.
  • the liquid medicine can uniformly reach the heat generating device through the action of the liquid guiding rope, so that the liquid medicine is heated.
  • Both of the droplets having a small diameter can be formed, and the droplets of the large diameter are reduced to almost no extent, so that the liquid medicine sucked out can be heated to form a mist to reach the mouth of the person within the range of the normal negative pressure force.
  • the liquid guiding sleeve 321 which can store the large diameter suspended liquid droplets is sleeved on the outer wall surface of the liquid suction nozzle seat, so that the liquid guiding sleeve 321 is located at the liquid suction nozzle seat and the sleeve Between tubes 312.
  • the liquid guiding sleeve is made of a nickel mesh having a plurality of layers of foam.
  • the heating of the liquid is incomplete, and the formed mist contains too many large diameter droplets.
  • these large diameter droplets flow with the negative pressure airflow, also due to gravity
  • the action falls onto the liquid guiding sleeve 321 , and the unheated chemical liquid can be adsorbed by the liquid guiding sleeve, and the liquid medicine reaches the vicinity of the heating device in the atomizing chamber through the liquid guiding sleeve and the liquid guiding hole 315, thereby being The heating device heats the atomization. Therefore, the liquid guiding sleeve 321 functions to collect the liquid medicine and guide the recovered liquid medicine to the heating device. Moreover, the manner of passing the liquid guiding sleeve 321 is completed by the action of the gravity of the liquid medicine, and it is not necessary to artificially use the negative pressure force to heat atomize the recovered liquid, which has the labor-saving advantage.
  • connection assembly of the atomization device 30 fixed to the other end of the housing 10: the connection assembly includes an atomizer body 330, a contact conductor 331 that connects the heat generating device 311 by a wire, and a contact conductor base 332.
  • One end of the atomizer body 330 located in the housing is formed with a cavity for receiving and holding the atomizing assembly.
  • the sleeve 312 and other components of the atomizing assembly are secured in the cavity, and the sleeve 312 is mated with the cavity in an interference manner.
  • the side wall of the atomizer body is provided with an air inlet hole 333 communicating with the cavity, and the air inlet hole is used for conducting the atmosphere.
  • the contact conductor base 332 is fixed to the other end of the atomizer body exposed to the housing 10.
  • the contact conductor 331 is fixed on the contact conductor base 332, and the contact conductors 331 are two for respectively connecting the positive and negative poles of the power source, respectively.
  • a hole for accessing the thimble is provided on the contact conductor.
  • the outer surface of the atomizer main body 330 is provided with a step, the atomizer main body 330 is first for supporting the atomizing assembly, and the second is for connecting the power supply device.
  • an end portion of the atomizer main body 330 exposed to the casing 10 is connected to a power supply device including a casing 41, a battery 42 disposed in the casing, a control circuit 43, and a contact pin 44.
  • a power supply device including a casing 41, a battery 42 disposed in the casing, a control circuit 43, and a contact pin 44.
  • One end of the outer casing 41 is provided with a space for the atomizer main body 330 to be inserted, and the atomizer main body 330 is connected to the outer casing 41 in a plug-and-pull form.
  • the contact thimble is inserted into the contact conductor. In the hole.
  • the control circuit is connected to the battery, and the output of the control circuit is connected to the contact pin.
  • the control circuit includes a button switch SW for issuing a switch signal for turning on or off the control circuit; and a single-chip microcomputer IC1 having a locking function connected to the button switch, after receiving the signal from the button switch, The microcontroller itself enters the locked state without an output signal, or unlocks; a transistor Q1 with signal amplification connected to the output of the microcontroller.
  • the control circuit further includes a detector Q2 for detecting a short circuit of the battery voltage and the output, and a light-emitting diode Q2 for indicating the operating state of the control circuit, and the detector D1 and the light-emitting diode D1 are respectively connected to the single chip microcomputer.
  • the working process of the atomizer of the present invention is (the arrow in Fig. 1 indicates the flow direction of the airflow and the formed aerosol):
  • the user connects the mouth suction portable atomizer with the power supply device, activates the button switch, and releases the circuit. locking.
  • the push button switch is pressed again, a current flows through the contact conductor 331, and the heat generating device 311 in the atomizing unit is turned on to generate heat. Due to the negative pressure force, the liquid medicine in the liquid storage chamber chamber passes through the liquid suction nozzle, Instruction manual
  • the liquid guiding cord 320 guides the liquid medicine to the heat generating device 311, and instantaneously atomizes the liquid medicine under the action of the high temperature of the electric heating device 311.
  • the aerosol formed by the small-diameter droplets suspended in the negative pressure gas stream flows through the gas flow passage 24 into the nozzle front cover 11, and then flows into the nozzle back cover 12, and is finally sucked into the mouth by the user.
  • the nozzle can be unplugged according to the user's own wishes, and the liquid medicine can be added to the liquid storage box. If the user does not want to continue using the liquid medicine of this taste after use, the product can be changed.
  • a new liquid storage device continues to be used, and the old disposable atomizer can be thrown into a recyclable waste bin, which can be decomposed after recycling, without environmental pollution.
  • the present invention further provides a control circuit for an atomizer, the control circuit comprising a button switch SW for issuing a switch signal for turning on or off the control circuit;
  • the single-chip microcomputer IC1 with locking function after receiving the signal from the button switch, the single-chip microcomputer enters the locked state without the output signal, or unlocks; the transistor Q1 with signal amplification function connected with the output end of the single chip microcomputer.
  • the control circuit further includes a detector Q2 for detecting whether the battery voltage and the output are short-circuited, and a light-emitting diode Q2 for indicating the operating state of the control circuit, and the detector D1 and the light-emitting diode D1 are respectively connected to the single chip microcomputer.
  • the present invention also provides a method of controlling the atomizer of the following two embodiments.
  • the two control methods mainly prevent the user from inadvertently touching the switch button in daily life, thereby causing the atomizer to start working.
  • Embodiment 1 is a diagrammatic representation of Embodiment 1:
  • Step 1 initializing the system: the time when the single-chip microcomputer sets the circuit to enter the lock, and setting the time for unlocking the circuit;
  • Step 2 The MCU detects the signal from the button switch output: The MCU in the locked state receives the switch signal from the button switch for 5 times in 1.5 seconds, and the MCU unlocks. Due to locking and Description
  • the unlocking is performed by turning on the key switch 5 times within 1.5 seconds. Therefore, if the user turns the switch on once or twice due to a misoperation, the MCU will not unlock. And since the time is short, there is no such a case that the key switch is turned on 5 times within 1.5 seconds due to an erroneous operation, and therefore, this setting is relatively safe.
  • the MCU After unlocking, the MCU receives the signal from the button switch again, and the circuit turns on the MCU to output an electrical signal to the transistor.
  • step 20 it is detected whether the circuit is turned on, that is, the single chip determines whether the level on the second pin is low.
  • Step 21 If the detection result in step 20 is yes, the single chip outputs the obtained battery voltage to the detector, determines whether the battery voltage is lower than 3.3V through the detector Q2, and transmits the determination result to the single chip machine;
  • Step 210 if the judgment result of the continuous three consecutive steps is all yes, the single chip enters the low voltage protection state, and the single chip microcomputer controls the LED flashing 40 times, the frequency is 2 Hz;
  • Step 22 if the judgment result of the step 21 is no, the circuit is judged to be short-circuited by the detector Q2, and the judgment result is sent to the single-chip microcomputer;
  • Step 220 if the judgment result in step 22 is YES, the single-chip microcomputer enters the short-circuit protection state, and simultaneously controls the LED flashing 3 times, the frequency is 3 Hz;
  • step 22 the single chip outputs a signal to the light emitting diode, so that the light emitting diode gradually brightens, reaches the brightest within 0.6 seconds, and the fifth pin of the single chip becomes low level, the single chip IC1 to the transistor Q1 output signal;
  • step 3 the transistor Q1 amplifies the signal from the single chip microcomputer and supplies power to the load. If it is not needed, the MCU receives the switch signal from the button switch for 5 times in 1.5 seconds. The MCU enters the locked state and has no output signal. After the circuit is locked, the circuit can be prevented from being turned on immediately due to misoperation, so the atomizer will not work due to misoperation, and it will avoid scalding the user. If you continue to use it, then Description
  • Step 4 During the execution of step 3, the single chip IC1 detects whether the key switch SW is disconnected at any time;
  • Step 41 if the detection result of step 4 is no, the single chip detects whether the circuit is continuously turned on for 10 seconds; if the detection result is no, returns to step 4 to continue the detection;
  • Step 42 If the detection result in the step 41 is YES, the LED is controlled to flash for 10 times, and after the flashing is finished, the standby state is entered;
  • Step 43 If the detection result of step 4 is YES, no signal is output to the transistor Q1, and the transistor Q1 is turned off to enter the standby state. After entering the standby state, you can choose to turn on the button switch SW to continue to turn on the circuit. If not, the button switch will be turned on 5 times in 1.5 seconds to make the circuit enter the locked state.
  • Step 5 The MCU detects whether the No. 5 pin has a current input. If there is a current input, the external power supply charges the battery. At this time, the No. 5 pin output signal of the MCU turns on the transistor Q1 to charge the battery. Check whether there is current input every 6 seconds, and it is detected that no current flows into the standby state, or return to step 20.
  • Embodiment 2 is a diagrammatic representation of Embodiment 1:
  • This embodiment is identical to the above embodiment in that the circuit locking and locking circuit is disengaged from the above embodiment.
  • the MCU detects the signal from the button switch output: The MCU receives the first continuous signal from the button switch output in 4 seconds, the MCU unlocks, after the lock is released, the MCU receives the signal from the button switch again, the circuit Turn on the microcontroller to output an electrical signal to the transistor. The transistor amplifies the signal from the microcontroller and outputs it to the load. If the MCU receives the second continuous signal from the button switch output in 8 seconds, the MCU enters the locked state and has no output signal; Description
  • the single chip machine can make the decision of locking the circuit.

Description

说 明 书 口吸式便携雾化器 技术领域 本发明涉及一种雾化装置, 具体涉及一种口吸式便携雾化器。
背景技术 现在人们的生活及社会活动的加强, 人与人之间的交往也越来越重要, 而 口腔异味等问题另许多人困惑不堪, 虽然也有口香糖、 润喉片等物品可以解决 一时之需, 但其废弃物又随之产生新的环境污染, 如吃过的口香糖, 包装锡板 等。
早期有人提出将药液经过机械装置加热供使用者使用, 虽然使用者在使用 习惯上易于接受, 但由于传统的机械结构性能不稳定, 极易损坏, 操作烦琐。 使使用者造成损失。 随着科技的发展, 出现了超声雾化器。 与机械装置加热实 现液体雾化不同的是, 基于特定频率下超声波对液体的振荡激发作用, 可以产 生对应的雾化微滴, 从而输送到人体口腔内产生吸烟的感觉。 这种雾化方案有 些类似与家庭中常见的超声加热器, 但超声雾化器存在雾化量偏小, 而且能量 利用不充分的问题。
目前市场上现有的一些雾化器, 存在问题有: 第一、 药液是注射到吸嘴腔 体内的填充层里, 由此可见药液不够新鲜, 而且药液存储容量小, 药液用完了 使用者必须往雾化器里滴药液, 才能继续使用, 这样一来使用者如果想在户外 或上班时使用美容, 就得带上一瓶药液, 才能保证使用。 身上带上一瓶而且还 要使用者自己滴液。 第二、 市场现有的雾化器的结构都是螺紋连接, 使用者在 使用的时候, 先要拧好电池才能使用, 这样极不方便、 雅观、 而且还有点不卫 生。 第三、 使用者在使用雾化器时, 储存在填充层中的药液不能均匀地到达加 说 明 书
热器上, 因此导至药液被加热时不能形成直径很小的微滴, 大直径的微滴无法 伴随人口的负压作用进入到人的口中, 大直径的微滴在重力的作用下落到加热 器附近无法进行加热。
发明内容
本发明的目的在于提供一种口吸式便携雾化器, 本发明能将存储的药液均 匀地引导到加热装置上, 并且使用者能够使用到较为新鲜的药液。
实现本发明目的的技术方案如下:
口吸式便携雾化器, 壳体的一端设置吸嘴, 壳体内部设置具有储液空腔的 储液盒, 该储液盒一端连接一个雾化装置, 雾化装置与一个供电装置连接, 该 供电装置包括外壳, 以及设置在外壳中的电池、 控制电路以及接触顶针, 控制 电路的输出端连接接触顶针, 接触顶针与接触导体插拔连接; 所述雾化装置包 括雾化组件, 雾化组件包括吸液嘴座以及发热装置, 所述吸液嘴座一端设有雾 化腔, 吸液嘴座的另一端设有与雾化腔连通的通气孔, 所述发热装置固定在该 雾化腔中;
雾化装置还包括导液组件, 该导液组件包括吸液嘴以及导液绳, 吸液嘴的 一端插入到储液盒的储液空腔中, 吸液嘴与储液盒的接触部位形成液密封, 吸 液嘴的另一端与吸液嘴座的雾化腔连通, 所述导液绳缠绕在发热装置上, 导液 绳的两个端部被弓 I入到吸液嘴中。
采用了上述方案, 由于本发明的储液盒中无填充物, 因此, 使用者使用的 药液较为新鲜。 导液绳的两个端部被引入到吸液嘴中, 导液绳不但可以封住储 液盒中的药液, 使药液在重力的作用下不会顺着吸液嘴流动到雾化腔中, 而且 在负压作用下还能将储液盒中的药液引导到发热装置上, 由于导液绳是以缠绕 说 明 书
的方面布置在发热装置上, 因此, 通过导液绳的作用能使药液均匀地到达发热 装置处, 使得药液被加热时均能形成直径很小的微滴, 而大直径的微滴减少到 几乎没有, 从而在正常负压作用力的范围内, 被吸出的药液均能被加热后形成 雾气到达人的口中。
另外, 通过导液套, 当药液在很大的负压作用力下被吸出时, 部分药液不 会被加热, 而伴随着负压气流进行流动, 这些药液在流动的过程中由于重力的 作用而落至导液套上; 或者加热装置温度不高对药液加热不完全, 导至形成的 雾气中含有过多的大直径的微滴, 这些大直径的微滴伴随负压气流流动时, 同 样也由于重力的作用而落至导液套上, 通过导液套可以将这些未被加热的药液 进行吸附, 药液经导液套以及导液孔到达雾化腔中的加热装置附近, 从而被加 热装置加热雾化。 因此, 导液套起到了回收药液, 并将回收的药液引导到加热 装置处的作用。 并且, 通过导液套的方式, 是全完在药液重力的作用下来完成 的, 无须人为使用负压作用力将回收的药液进行加热雾化, 有省力的好处。
本发明的另一目的是: 为了避免误操作而使按键开关接通, 还提供了一种 用于雾化器的控制电路和雾化器的控制方法, 其技术方案如下:
用于雾化器的控制电路, 所述控制电路包括按键开关, 该按键开关用于发 出接通或断开控制电路的开关信号;
以及与按键开关连接的具有锁定作用的单片机, 该单片机接收来自于按键 开关的信号后, 单片机自身进入锁定状态而无输出信号, 或者解除锁定;
以及与单片机输出端连接的具有信号放大作用的晶体管。
雾化器的控制方法, 包括以下步骤:
歩骤 (1 ) , 初始化系统: 单片机设置电路进入锁定的时间, 以及设置解除 电路锁定的时间; 说 明 书
步骤(2 ) , 单片机检测来自于按键开关输出的信号: 在锁定状态下的单片 机在 Q秒接收来自于按键开关的 Y次的开关信号, 单片机解除锁定; 解除锁定 后, 单片机再次接收来自于按键开关的信号, 电路接通单片机向晶体管输出电 信号;
步骤(3 ) , 晶体管将来自于单片机的信号进行放大后向负载供电, 当不再 使用时, 单片机在 P秒内接收的是来自于按键开关的 X次的开关信号, 单片机 进入锁定状态, 无输出信号。
采用了上述方案, 由于在使电路正常导通前, 需要经过操作按键开关进行 解锁才能使电路正常导通, 即使用户进行了误操作, 通过单片机对电路的锁定 作用, 不能使电路导通, 因此不会发生意外事故, 增加了用户的安全性。
附图说明
图 1为本发明的雾化器的结构示意图;
图 2为本发明中雾化装置的结构示意图;
图 3为本发明的雾化器与供电装置的装配结构示意图;
图 4为本发明中的控制电路的原理图;
图 5为控制电路的流程图;
附图中, 10为壳体, 11为吸嘴前盖, 12为吸嘴后盖;
20为储液盒, 21为盒体, 22为盒盖, 23为液体隔离膜, 24为气流通道; 30为雾化装置, 310为吸液嘴座, 31 1为发热装置, 312为套管, 313为雾 化腔, 314为通气孔, 315为导液孔; 320为导液绳, 321为导液套, 322为导液 管, 323为座体; 330为雾化器主体, 331为接触导体, 332为接触导体底座, 333为进气孔; 说 明 书
41为外壳, 42为电池, 43为控制电路, 44为接触顶针。
具体实施方式 下面结合附图和具体实施方式对本发明作进一步说明。
参照图 1至图 3, 本发明的口吸式便携雾化器。本发明的雾化器与供电装置 连接后, 对存储的药液进行加热而形成雾气的状态, 进而进入到人的口中, 药 液可以是保健类型的, 也可以是用于除去口腔异味的, 还可以是对人体有利的 其它类型的药液。 本发明的雾化器主要由壳体 10、 储液盒 20、 雾化装置 30三 个部分构成, 下面通过具体的结构和功能的详细描述对本发明作进一步说明。
参照图 1, 壳体 10采用金属材料制成, 壳体 10纵截面的形状为椭圆形, 当 然也可以是圆或者矩形等形状。 壳体 10的一端通过插接的方式固定连接吸嘴, 吸嘴由吸嘴前盖 1 1和吸嘴后盖 12组成。 在吸嘴前盖 11和吸嘴后盖 12上均设 置有通气孔, 这些通气孔用于传递人嘴发生的负压作用力, 以及使雾化的药液 通过通气孔到达人的口中。
参照图 1, 具有储液空腔的储液盒 20设置在壳体内部, 储液盒 20是用于存 储药液的。 储液盒 20包括盒体 21 以及与盒体连接的盒盖 22, 盒盖上设有供吸 液嘴插入的通孔, 该通孔处设有可被剌破的液体隔离膜 23, 液体隔离膜 23被吸 液嘴剌破后与吸液嘴之间形成液密封。 本发明的储液盒的空腔中没有设置任何 填充层, 药液直接存在空腔中, 这样可以避免药液长时间存留在填充层内不新 鲜, 使用者使用的药液较为新鲜。 盒体 21的截面形状与壳体的截面形装相同, 盒体 21 与壳体 10可以是间隙配合, 也可以是过渡配合, 但采用过渡配合的方 式时, 在储液盒 21的侧壁面上设置有供气体通过的气流通道 24。
参照图 1和图 2, 储液盒一端连接一个雾化装置 30, 储液盒中的烟液在负 说 明 书
压作用下输出到雾化装置中。 雾化装置由雾化组件、 导液组件和连接组件三部 分组成。
参照图 2, 雾化组件由吸液嘴座 310、 发热装置 31 1以及套管 312组成。 吸 液嘴座 310采用陶瓷材料制成, 吸液嘴座 310—端设有雾化腔 313 ; 吸液嘴座 310的另一端设有与雾化腔连通的通气孔 314, 通气孔 314主要是与大气相互连 通, 以达到吸气时形成负压的目的, 通过通气孔与雾化腔连通, 在人口吸气产 生负压时能轻使地形成负压, 使雾化的药液进入到人的口中。 吸液嘴座的侧壁 上还设有与雾化腔连通的导液孔 315,导液孔 315在吸液嘴座外侧壁面上的孔口, 小于导液孔 315在吸液嘴座内侧壁面上的孔口。 发热装置 311 固定在该雾化腔 313 中, 本实施例中, 发热装置是通过电流的作用产生热量, 因此, 发热装置 311可以采用铂丝或镍铬合金或含有稀土元素的铁铬铝合金丝制成,也可制成片 状体或环状。 套管 312套在吸液嘴座 310的外壁面上, 套管 312可以吸收吸液 嘴座 310传来的一部分热量, 减小吸液嘴座 310上的热量直接传递到外壳上。
参照图 2, 导液组件包括吸液嘴、 导液绳 320以及导液套 321。 吸液嘴包括 导液管 322以及座体 323, 导液管 322的一端与座体连接, 导液管的另一端为自 由端, 该自由端的端面为斜坡面或者三角形, 本实施例中, 自由端的端面为斜 坡面。 自由端的端面为斜坡面或三角形, 有利于轻松地剌破盒盖 22上的液体隔 离膜 23。 吸液嘴与储液盒的接触部位形成液密封, SP : 导液管的自由端剌破盒 盖 22上的液体隔离膜 23后, 插入到盒体 21的储液空腔中, 由于液体隔离膜 23 采用橡胶制成, 因此, 导液管与液体隔离膜 23的接触部位形成液密封。 吸液嘴 的另一端与吸液嘴座的雾化腔连通, 由于座体 323位于雾化腔 313 的腔口上方 或者与雾化腔 313 的腔口接触 (由于座体的表面积小于雾化腔 313 的腔口的面 积, 因此不会堵死雾化腔的腔口) , 座体即可与吸液嘴座连通。 说 明 书
参照图 2, 对于导液组件中的导液绳 320: 导液绳 320的中部缠绕在发热装 置 311 上, 导液绳的两个端部被引入到吸液嘴中, 即导液绳的两个端部被引入 到导液管 322中。 导液绳不但可以封住盒体 21中的药液, 使药液在重力的作用 下不会顺着吸液嘴流动到雾化腔 313中, 而且在负压作用下还能将盒体 21中的 药液引导到发热装置上, 由于导液绳是以缠绕的方面布置在发热装置上, 因此, 通过导液绳的作用能使药液均匀地到达发热装置处, 使得药液被加热时均能形 成直径很小的微滴, 而大直径的微滴减少到几乎没有, 从而在正常负压作用力 的范围内, 被吸出的药液均能被加热后形成雾气到达人的口中。
参照图 2, 对于导液组件中的导液套 321 : 可以存储大直径悬浮液滴的导液 套 321套在吸液嘴座的外壁面上, 从而导液套 321位于吸液嘴座与套管 312之 间。 导液套采用具有多层泡沫的镍网制成。 当药液在很大的负压作用力下被吸 出时, 部分药液不会被加热, 而伴随着负压气流进行流动, 这些药液在流动的 过程中由于重力的作用而落至导液套 321 上; 或者加热装置温度不高对药液加 热不完全, 导至形成的雾气中含有过多的大直径的微滴, 这些大直径的微滴伴 随负压气流流动时, 同样也由于重力的作用而落至导液套 321 上, 通过导液套 可以将这些未被加热的药液进行吸附, 药液经导液套以及导液孔 315到达雾化 腔中的加热装置附近, 从而被加热装置加热雾化。 因此, 导液套 321起到了回 收药液, 并将回收的药液引导到加热装置处的作用。 并且, 通过导液套 321 的 方式, 是全完在药液重力的作用下来完成的, 无须人为使用负压作用力将回收 的药液进行加热雾化, 有省力的好处。
参照图 2,雾化装置 30的固定在壳体 10另一端的连接组件: 该连接组件包 括雾化器主体 330、通过导线连接发热装置 311的接触导体 331以及接触导体底 座 332。雾化器主体 330的位于壳体中的一端形成有容纳并保持雾化组件的腔体, 说 明 书
套管 312及其他雾化组件的零件固定在这个腔体中, 套管 312与腔体采用过盈 的方式进行配合。雾化器主体的侧壁上设有与腔体连通的进气孔 333, 这个进气 孔是用来导通大气的。 接触导体底座 332固定在雾化器主体的外露于壳体 10的 另一端, 接触导体 331 固定在接触导体底座 332上, 接触导体 331为两个, 分 别用于连接电源的正极和负极, 每个接触导体上均设有供接触顶针接入的孔。 另外, 雾化器主体 330的外侧面设有一个台阶, 雾化器主体 330第一是用于支 撑雾化组件, 第二是用于连接供电装置。
参照图 3, 雾化器主体 330的外露于壳体 10的端部连接一个供电装置, 该 供电装置包括外壳 41, 以及设置在外壳中的电池 42、 控制电路 43 以及接触顶 针 44。外壳 41的一端留有供雾化器主体 330插入的空间, 雾化器主体 330与外 壳 41形成插拔形式的连接, 雾化器主体 330插入到外壳 41 中以后, 接触顶针 插入到接触导体的孔中。 控制电路与电池连接, 控制电路的输出端连接接触顶 针。
参照图 4, 所述控制电路包括按键开关 SW, 用于发出接通或断开控制电路 的开关信号; 与按键开关连接的具有锁定作用的单片机 IC1, 该单片机接收来自 于按键开关的信号后, 单片机自身进入锁定状态而无输出信号, 或者解除锁定; 与单片机输出端连接的具有信号放大作用的晶体管 Ql。 控制电路还包括一个用 于检测电池电压和输出是否短路的检测器 Q2, 以及用于指示控制电路工作状态 的发光二极管 Q2, 检测器 D1及发光二极管 D1分别与单片机连接。
本发明的雾化器的工作过程为 (图 1 中的箭头表示了气流及形成的气溶胶 的流动方向) : 使用者将口吸式便携雾化器与供电装置连接, 启动按键开关, 解除电路锁定。 再次按下按键开关, 电流流过接触导体 331, 使雾化组件中的发 热装置 311导通而发热。 由于负压作用力, 使储液盒腔体内的药液通过吸液嘴、 说 明 书
导液绳 320将药液引导到发热装置 311上, 在电加热装置 311 的高温作用下, 使药液瞬间雾化。 小直径微滴悬浮在负压气流中形成的气溶胶经气流通道 24流 入吸嘴前盖 11, 再流入吸嘴后盖 12, 最终被使用者吸入到口中。 当药液使用完 之后, 可根据使用者的本人的意愿, 拔开吸嘴, 向储液盒内加药液, 用完之后 如果使用者不想继续使用这种口味的药液的时候, 可以换一个新的储液装置继 续使用, 旧的一次性雾化器可以丢入可回收的垃圾箱中, 回收后可以分解, 无 环境污染。
参照图 4和图 5, 本发明还提供一种专利用于雾化器的控制电路, 所述控制 电路包括按键开关 SW, 用于发出接通或断开控制电路的开关信号; 与按键开关 连接的具有锁定作用的单片机 IC1, 该单片机接收来自于按键开关的信号后, 单 片机自身进入锁定状态而无输出信号, 或者解除锁定; 与单片机输出端连接的 具有信号放大作用的晶体管 Ql。 控制电路还包括一个用于检测电池电压和输出 是否短路的检测器 Q2, 以及用于指示控制电路工作状态的发光二极管 Q2, 检 测器 D1及发光二极管 D1分别与单片机连接。
本发明还提供了以下两种实施方式的雾化器的控制方法, 这两种控制方法 主要是防止使用者在日常生活中会无意中碰到开关按键, 从而使雾化器开始工 作。
实施方式一:
包括以下步骤:
歩骤 1, 初始化系统: 单片机设置电路进入锁定的时间, 以及设置解除电路 锁定的时间;
歩骤 2, 单片机检测来自于按键开关输出的信号: 在锁定状态下的单片机在 1.5秒内接收来自于按键开关的 5次的开关信号, 单片机解除锁定。 由于锁定和 说 明 书
解锁均是在 1.5秒内接通按键开关 5次, 因此, 如果用户因为误操作使开关接通 1次或者两次, 单片机则不会解锁。 并且由于时间短, 由于误操作而在 1.5秒内 接通按键开关 5次的这种情况不会有, 因此, 这种设置比较保险。
解除锁定后, 单片机再次接收来自于按键开关的信号, 电路接通单片机向 晶体管输出电信号。
步骤 20, 检测电路是否接通, 即单片机判断其第 2号引脚上的电平是否为 低电平。
步骤 21, 如果歩骤 20检测结果为是, 则单片机将获取的电池的电压输出到 检测器, 通过检测器 Q2判断电池电压是否低于 3.3V, 并将判断结果输送到单 片机;
步骤 210, 如果歩骤 21连续三续的判断结果均为是, 则单片机进入低压保 护状态, 同时单片机控制发光二极管闪灯 40次, 频率为 2Hz;
步骤 22,如果步骤 21的判断结果为否,则通过检测器 Q2判电路是否短路, 并将判断结果输送到单片机;
步骤 220, 如果歩骤 22的判断结果为是, 单片机则进入短路保护状态, 同 时控制发光二极管闪灯 3次, 频率为 3Hz;
如果歩骤 22的判断结果为否, 单片机输出信号到发光二极管, 使发光二极 管逐渐增亮, 0.6秒内达到最亮, 同时单片机的第 5号引脚变为低电平, 单片机 IC1向晶体管 Q1输出信号;
歩骤 3, 晶体管 Q1将来自于单片机的信号进行放大后向负载供电。 如果无 需使用, 则使单片机在 1.5秒内接收的是来自于按键开关的 5次的开关信号, 单 片机进入锁定状态, 无输出信号。 电路锁定后, 即可避免因误操作使电路立即 接通, 因此雾化器不会因为误操作而工作, 避免烫伤使用者。 若继续使用, 则 说 明 书
进入步骤 4。
歩骤 4,在执行步骤 3的过程中, 单片机 IC1时刻检测按键开关 SW是否断 开;
步骤 41, 如果步骤 4的检测结果为否, 则单片机检测电路是否连续导通 10 秒; 如果检测结果为否, 则返回步骤 4继续检测;
步骤 42, 如果步骤 41的检测结果为是, 则控制发光二极管闪灯 10次, 闪 灯结束后进入待机状态;
步骤 43, 如果步骤 4的检测结果为是, 则单片机无信号输出到晶体管 Ql, 晶体管 Q1关闭进入待机状态。进入待机状态后可以选择接通按键开关 SW继续 使电路导通, 如果不使用, 则在 1.5秒内使按键开关连续接通 5次, 使电路进入 锁定状态。
歩骤 5, 单片机检测第 5号引脚是否有电流输入, 如果有电流输入, 则说明 外部电源向电池进行充电,这时单片机的第 5号引脚输出信号使晶体管 Q1导通, 给电池充电, 每 6秒种检测一次是否有电流输入, 一直检测到没有电流流入即 可进入待机状态, 或者返回步骤 20。
实施方式二:
这种实施方式在解除电路锁定和锁定电路与上面一种实施方式有所区别 外, 其余方式与上面的实施方式完全相同。
单片机检测来自于按键开关输出的信号: 在锁定状态下的单片机在 4秒接 收来自于按键开关输出的第一连续信号, 单片机解除锁定, 解除锁定后, 单片 机再次接收来自于按键开关的信号, 电路接通单片机向晶体管输出电信号。 晶 体管将来自于单片机的信号进行放大后输出到负载。 若单片机在 8秒接收的是 来自于按键开关输出的第二连续信号, 单片机进入锁定状态, 无输出信号; 即 说 明 书
长按按键开关 8秒, 使其在该时间内连续输出开关闭合的信号到单片机, 单片 机即可做出锁定电路的决定。

Claims

权 利 要 求 书
1. 口吸式便携雾化器, 壳体的一端设置吸嘴, 壳体内部设置具有储液空腔 的储液盒, 该储液盒一端连接一个雾化装置, 雾化装置与一个供电装置连接, 该供电装置包括外壳, 以及设置在外壳中的电池、 控制电路以及接触顶针, 控 制电路的输出端连接接触顶针, 接触顶针与接触导体插拔连接; 所述雾化装置 包括雾化组件, 雾化组件包括吸液嘴座以及发热装置, 所述吸液嘴座一端设有 雾化腔, 吸液嘴座的另一端设有与雾化腔连通的通气孔, 所述发热装置固定在 该雾化腔中;
其特征在于: 雾化装置还包括导液组件, 该导液组件包括吸液嘴以及导液 绳, 吸液嘴的一端插入到储液盒的储液空腔中, 吸液嘴与储液盒的接触部位形 成液密封, 吸液嘴的另一端与吸液嘴座的雾化腔连通, 所述导液绳缠绕在发热 装置上, 导液绳的两个端部被引入到吸液嘴中。
2. 根据权利要求 1所述的口吸式便携雾化器, 其特征在于: 所述导液组件 还包括可以存储大直径悬浮液滴的导液套, 该导液套套在吸液嘴座上, 所述吸 液嘴座的侧壁上设有与雾化腔连通的导液孔; 所述雾化组件还包括一个套管, 该套管套在导液套上。
3. 根据权利要求 1所述的口吸式便携雾化器, 其特征在于: 储液盒包括盒 体以及与盒体连接的盒盖, 盒盖上设有供吸液嘴插入的通孔, 该通孔处设有可 被剌破的液体隔离膜, 液体隔离膜被吸液嘴剌破后与吸液嘴之间形成液密封。
4. 根据权利要求 1所述的口吸式便携雾化器, 其特征在于: 所述吸液嘴包 括导液管以及座体, 导液管的一端与座体连接, 导液管的另一端为自由端, 该 自由端的端面为斜坡面或者三角形。
5. 根据权利要求 1至 4任意一项所述的口吸式便携雾化器, 其特征在于: 所述雾化装置还包括固定在壳体另一端的连接组件, 该连接组件包括雾化器主 体、 通过导线连接发热装置的接触导体, 所述雾化器主体的位于売体中的一端 形成有容纳并保持雾化组件的腔体, 接触导体固定在雾化器主体的外露于壳体 的另一端, 雾化器主体的侧壁上设有与腔体连通的进气孔。 权 利 要 求 书
6. 根据权利要求 5所述的口吸式便携雾化器, 其特征在于: 所述控制电路 包括按键开关, 用于发出接通或断开控制电路的开关信号;
与按键开关连接的具有锁定作用的单片机, 该单片机接收来自于按键开关 的信号后, 单片机自身进入锁定状态而无输出信号, 或者解除锁定;
与单片机输出端连接的具有信号放大作用的晶体管。
7. 根据权利要求 6所述的口吸式便携雾化器, 其特征在于: 控制电路还包 括一个用于检测电池电压和输出是否短路的检测器, 以及用于指示控制电路工 作状态的发光二极管, 检测器及发光二极管分别与单片机连接。
8. 一种如权利要求 1所述的雾化器的控制方法, 其特征在于, 包括以下步 骤:
步骤 (1 ), 初始化系统: 单片机设置电路进入锁定的时间, 以及设置解除 电路锁定的时间;
歩骤 (2 ), 单片机检测来自于按键开关输出的信号: 在锁定状态下的单片 机在 Q秒接收来自于按键开关的 Y次的开关信号, 单片机解除锁定; 解除锁定 后, 单片机再次接收来自于按键开关的信号, 电路接通单片机向晶体管输出电 信号;
步骤 (3 ), 晶体管将来自于单片机的信号进行放大后向负载供电, 当不再 使用时, 单片机在 P秒内接收的是来自于按键开关的 X次的开关信号, 单片机 进入锁定状态, 无输出信号。
9. 一种如权利要求 8所述的雾化器的控制方法, 其特征在于, 提供一个分 别与单片机进行连接的检测器和发光二极管, 包括以下歩骤:
步骤 (20 ) 检测电路是否接通;
步骤 (21 ), 如果歩骤 (20 ) 检测结果为是, 则单片机将获取的电池的电压 输出到检测器, 通过检测器判断电池电压是否低于 3. 3V, 并将判断结果输送到 单片机;
步骤 (210 ), 如果步骤 (21 ) 连续三续的判断结果均为是, 则单片机进入 低压保护状态, 同时单片机控制发光二 极管闪灯 40次。 权 利 要 求 书
10. 一种如权利要求 9所述的雾化器的控制方法, 其特征在于:
歩骤 (22 ), 如果歩骤 (21 ) 的判断结果为否, 则通过检测器判电路是否短 路, 并将判断结果输送到单片机;
歩骤 (220 ), 如果歩骤 (22 ) 的判断结果为是, 单片机则进入短路保护状 态, 同时控制发光二极管闪灯 3 次; 如果判断结果为否, 单片机输出信号到发 光二极管, 使发光二极管逐渐增亮, 同时进入歩骤 (3 ) 向负载供电。
11. 一种如权利要求 10所述的雾化器的控制方法, 其特征在于:
歩骤 (4), 单片机检测按键开关是否断开;
歩骤 (41 ), 如果歩骤 (4 ) 的检测结果为否, 则单片机检测电路是否连续 导通 10秒; 如果检测结果为否, 则返回歩骤 (4) 继续检测;
歩骤 (42 ), 如果歩骤 (41 ) 的检测结果为是, 则控制发光二极管闪灯 10 次, 闪灯结束后进入待机状态;
歩骤 (43 ), 如果歩骤 (4 ) 的检测结果为是, 则单片机无信号输出到晶体 管, 进入待机状态。
12. 一种如权利要求 8所述的雾化器的控制方法, 其特征在于, 包括以下 歩骤:
歩骤 (1 ), 初始化系统: 单片机设置电路进入锁定的时间, 以及设置解除 电路锁定的时间;
歩骤 (2 ), 单片机检测来自于按键开关输出的信号: 在锁定状态下的单片 机在 N秒接收来自于按键开关输出的第一连续信号, 单片机解除锁定, 解除锁 定后, 单片机再次接收来自于按键开关的信号, 电路接通单片机向晶体管输出 电信号;
歩骤 (3 ), 晶体管将来自于单片机的信号进行放大后输出到负载, 当不再 使用时, 若单片机在 M秒接收的是来自于按键开关输出的第二连续信号, 单片 机进入锁定状态, 无输出信号。
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CN102160906A (zh) 2011-08-24
ES2555410T3 (es) 2015-12-30
RU2012124102A (ru) 2013-12-20
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US9132248B2 (en) 2015-09-15
PL2489391T3 (pl) 2016-02-29
EP2489391B1 (en) 2015-09-16
RU2506958C1 (ru) 2014-02-20
US20120199663A1 (en) 2012-08-09
EP2489391A1 (en) 2012-08-22

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