Non-smokable electronic spray cigarette
Abstract
The invention relates to a non-smokable electronic spray cigarette which only comprises nicotine without harmful tar. The cigarette includes a smoke mouth integer comprised with a shell, a cell, a high frequency ionizer, nicotine solution storage and its container, control circuit, a display screen, a human contact sensor, a piezoelectric supersound atomizer, a high temperature vaporization nozzle and attachments, a electrothermal vaporization nozzle installed in the air suction end of the shell goes though a electric control pump or a valve with a measuring chamber and a liquid storage capsule which installs i nicotine solution and is connected to the electric control pump or valve with an one-way flow valve, the control circuit plate has four export ends individually connected with the high frequency ionizer, electric heater, pump or valve and the display screen, a human resistance sensor and a air flow sensor are connected to the input end. The advantages of the present invention are smoking without tar, reducing the cancerigenic risk, the user still feel smoking and excite, the cigarette need no lighting and has no fire danger.

Term
No projected expiry on record.
- Priority
- Filed
- Granted
- Today
43 claims: 28 independent, 15 dependent
- 1Електронна аерозольна сигарета, що не димить і являє собою інтегровану систему, яка включає:корпус, джерело живлення для забезпечення енергією електронної аерозольної сигарети, що не димить, високочастотний генератор, розміщений на панелі схеми керування і призначений для генерування високочастотного сигналу, контейнер для зберігання розчину нікотину, схему керування, розміщену на панелі схеми керування і призначену для керування роботою електронної аерозольної сигарети, що не димить, датчик потоку повітря, чутливий до контакту з тілом користувача елемент, пульверизатор для розпилювання розчину нікотину, високотемпературне сопло (17) для пароутворення, розміщене на кінці корпусу (6) для всмоктування повітря і сполучене з контейнером (13) для зберігання розчину нікотину, який містить розчин нікотину і оснащений клапаном (12) для впорскування рідини через електронний насос (11) або клапан, сполучений з дозуючою порожниною, пульверизатор, з'єднаний з високочастотним генератором на панелі (8) схеми керування, низку виводів схеми керування, з'єднаних з високочастотним генератором, електричним нагрівачем, електронним насосом чи клапаном, відповідно, тоді як чутливий до контакту з тілом користувача елемент (19) і датчик (18) потоку повітря з'єднані з вводами схеми керування.
- 2Електронна аерозольна сигарета, що не димить, за пунктом 1, в якій чутливий до контакту з тілом користувача елемент є датчиком опору чи ємнісним датчиком.
- 3Електронна аерозольна сигарета, що не димить, за пунктом 1, в якій високочастотний генератор на панелі (8) схеми керування є генератором триточкового типу з ємнісним зв'язком, генератором триточкового типу з індуктивним зв'язком або коливальним контуром трансформаторного типу з частотою від 35 кГц до 3,3 мГц.
- 4Електронна аерозольна сигарета, що не димить, за пунктом 1, в якій пульверизатор є п'єзоелектричним ультразвуковим пульверизатором, що складається з ультразвукового п'єзоелектричного елемента (20), прикріпленого ззовні сопла (17) для пароутворення, і схеми автоматичного підстроювання частоти в схемі керування, що резонує з ультразвуковим п'єзоелектричним елементом (20).
- 5Електронна аерозольна сигарета, що не димить, за пунктом 1, в якій клапан (12) для впорскування рідини є одноходовим клапаном для впорскування рідини, що ущільнюється сферичним або конусним елементом, що знаходиться під дією пружини.
- 6Електронна аерозольна сигарета, що не димить, за пунктом 1, в якій датчик (18) потоку повітря являє собою решітку з термочутливих резисторів у вигляді плівки, інтегрованих в єдину структуру.
- 7Електронна аерозольна сигарета, що не димить, за пунктом 1, в якій один вивід схеми керування з'єднаний з дисплеєм індикатора для візуалізації параметрів робочого стану електронної аерозольної сигарети, що не димить, в цифровому або графічному вигляді.
- 8Електронна аерозольна сигарета, що не димить, за пунктом 7, в якій дисплей індикатора є рідкокристалічним дисплеєм індикатора.
- 9Електронна аерозольна сигарета, що не димить, за пунктом 7, в якій параметри робочого стану електронної аерозольної сигарети, що не димить, включають ємність елемента, кількість разів паління на день, середній цикл користування, об'єм розчину нікотину і попередження щодо надмірного паління.
- 10Електронна аерозольна сигарета, що не димить, за пунктом 2, в якій електрод датчика опору чи ємнісного датчика (19), що утворює чутливий до контакту з тілом користувача елемент, складається з верхньої металевої плівки і нижньої металевої плівки, розміщених на кінці мундштука, зміна параметрів опору чи ємності, викликана контактом чутливого до контакту з тілом користувача елемента, вводиться в схему керування і чутливий до контакту з тілом користувача елемент є сенсорним вимикачем.
- 11Електронна аерозольна сигарета, що не димить, за пунктом 1, в якій електронний насос (11) обертається з низькою швидкістю, але великим крутним моментом, коли мотор чи лінійний мотор приводить в рух сповільнювач, який має велике передатне число, через зчіпну муфту.
- 12Електронна аерозольна сигарета, що не димить, за пунктом 11, в якій електронний насос (11) є перистальтичним насосом, плунжерним насосом, ексцентриковим насосом, гвинтовим насосом, п'єзоелектричним насосом, супермагнітостриктивним насосом, насосом з приводом на основі теплового розширення, насосом з приводом на основі теплового стискання або термобарботажним насосом.
- 13Електронна аерозольна сигарета, що не димить, за пунктом 12, в якій перистальтичний насос включає силіконову трубку, притискний ролик, черв'як і мотор.
- 14Електронна аерозольна сигарета, що не димить, за пунктом 12, в якій електронний насос чи клапан з приводом на основі теплового стискання виготовлений з нікель-титанового сплаву з пам'яттю форми чи сплаву на основі міді з пам'яттю форми і змонтований на силіконовій трубці, яка стискається дротом з нікель-титанового сплаву з пам'яттю форми чи сплаву на основі міді з пам'яттю форми під дією електротермічних стискань.
- 15Електронна аерозольна сигарета, що не димить, за пунктом 1, в якій сопло (17) для пароутворення являє собою трубку з внутрішнім діаметром 0,05-2 мм і ефективною робочою довжиною 3-20 мм, виготовленою з матеріалів, стійких до високої температури і таких, що мають низьку теплопровідність, яка містить всередині електричний нагрівальний елемент, оснащений соплом, а форми електричного нагрівального елемента і сопла є такими, що забезпечують випаровування і виприскування рідини.
- 16Електронна аерозольна сигарета, що не димить, за пунктом 15, в якій електричний нагрівальний елемент в соплі (17) для пароутворення виготовлений з дроту з нікель-хромового сплаву, залізо-хром-алюмінієвого сплаву, нержавіючої сталі, золота, платини чи вольфрам-молібденового сплаву і має форму лінійної конфігурації, односпіральної конфігурації, групової конфігурації чи групової спіральної конфігурації, серед яких кращими є лінійна і групова спіральна конфігурації.
- 17Електронна аерозольна сигарета, що не димить, за пунктом 16, в якій дріт з нікель-хромового сплаву, залізо-хром-алюмінієвого сплаву, нержавіючої сталі, золота, платини чи вольфрам-молібденового сплаву передбачений на внутрішній стінці сопла.
- 18Електронна аерозольна сигарета, що не димить, за пунктом 16, в якій дріт з нікель- хромового сплаву, залізо-хром-алюмінієвого сплаву, нержавіючої сталі, золота, платини чи вольфрам-молібденового сплаву передбачений ззовні сопла, досягаючи відповідного часу реакції в режимі подачі енергії після короткочасного попереднього нагрівання.
- 19Електронна аерозольна сигарета, що не димить, за пунктом 15, в якій електричний нагрівальний елемент являє собою покриття, нанесене на внутрішню стінку сопла, яке може бути виготовлене з електротермічних керамічних матеріалів, отриманих каталізом з фазовим переносом керамічних напівпровідникових матеріалів чи стійкої до корозії металевої плівки.
- 20Електронна аерозольна сигарета, що не димить, за пунктом 18, в якій стійка до корозії металічна плівка виготовлена з золота, нікелю, хрому, платини чи молібдену.
- 21Електронна аерозольна сигарета, що не димить, за пунктом 18, в якій покриття може бути нанесене за допомогою витратного процесу спікання, процесу спікання хімічно осадженого шару та процесу іонного напилювання.
- 22Електронна аерозольна сигарета, що не димить, за одним з пунктів 18-21, в якій сопло для пароутворення є високотемпературним соплом для пароутворення, і умови для функціонування високотемпературного сопла створюються під час нагрівання.
- 23Електронна аерозольна сигарета, що не димить, за пунктом 21, в якій сопло для пароутворення виготовляється з металу з високим опором і отримує струм для нагрівання, безпосередньо, без використання для електричного нагрівання будь-якого провідника.
- 24Електронна аерозольна сигарета, що не димить, за пунктом 1, в якій, коли користувач палить, чутливий до контакту з тілом елемент запускає схему керування для видачі двох сигналів керування, відповідно, один з яких використовується для подачі енергії на електричний нагрівальний елемент високотемпературного сопла для пароутворення, а другий приводить в дію мікронасос, який нагнітає розчин нікотину з контейнера для розчину нікотину в високотемпературне сопло для пароутворення, після чого розчин нікотину випаровується на електричному нагрівальному елементі високотемпературного сопла для пароутворення і потім виштовхується з отвору.
- 25Електронна аерозольна сигарета, що не димить, за пунктом 4, в якій ультразвуковий п'єзоелектричний елемент забезпечує достатній контакт крупних крапель розчину нікотину в нестабільному потоці нагрітого повітря під високим тиском з електричним нагрівальним елементом і таким чином їх випаровування, забезпечує безпосереднє подрібнення і розпилення крапель розчину нікотину в високотемпературному соплі для пароутворення, а також те, щоб краплі розчину нікотину уникали доведення до температури, вищої за температуру їх кипіння.
- 26Електронна аерозольна сигарета, що не димить, за пунктом 4, в якій датчик потоку повітря є чутливим до розведеного повітря з впускного отвору, коли користувач палить, прийнятий сигнал від цього датчика подається на ввід схеми керування і використовується для припинення подачі живлення на мікронасос і електричний нагрівальний елемент після певного відстрочення.
- 27Електронна аерозольна сигарета, що не димить, за пунктом 12, в якій електронний насос з приводом на основі теплового стискання є перистальтичним насосом з приводом на основі електротермічного стискання, виготовленим із дротів з нікель-титанового сплаву з пам'яттю форми чи сплаву на основі міді з пам'яттю форми, з гелевою трубкою, яка перетискається в трьох точках в певному порядку в процесі електротермічного стискання з утворенням напірної камери для виштовхування рідини.
- 28Електронна аерозольна сигарета, що не димить, за пунктом 12, в якій електронний насос з приводом на основі теплового розширення утворює напірну камеру для виштовхування рідини, коли мікроконтейнер з воднем, оснащений електричним нагрівальним елементом, блокує вхід для рідини і відкриває вихід для рідини під час теплового розширення.
- 29Електронна аерозольна сигарета, що не димить, за пунктом 12, в якій термобарботажний насос утворює напірну камеру для виштовхування рідини за рахунок швидкого випаровування рідини з плівки під дією електричного нагрівання.
- 30Електронна аерозольна сигарета, що не димить, за пунктом 1, в якій дозуюча порожнина, суміжна з клапаном і сполучена з ним, має форму циліндра з входом для рідини і виходом для рідини і містить поршень з мікроотворами та з'єднану з ним пружину для повернення поршня у вихідне положення.
- 31Електронна аерозольна сигарета, що не димить, за будь-яким з попередніх пунктів, в якій схема керування і ультразвуковий мікронасос інтегровані на єдиному силіконовому чипі з використанням концепції мікромеханічної системи.
- 32Електронна аерозольна сигарета, що не димить, за будь-яким з попередніх пунктів, в якій мікронасос активується після 0,1-0,5-секундного відстрочення, коли починає працювати електронагрівач, а електронагрівач вимикається через 0,2-0,5 секунди після вимикання схеми керування мікронасоса.
- 33Електронна аерозольна сигарета, що не димить, за пунктом 1, в якій контейнер (13) для зберігання розчину нікотину виготовлений з полімерів, які можуть бути захищеними від проникнення нікотину
- 34Електронна аерозольна сигарета, що не димить, за пунктом 33, в якій такими полімерами є силіконовий каучук.
- 35Електронна аерозольна сигарета, що не димить, за будь-яким з попередніх пунктів, в якій об'єм контейнера для зберігання розчину нікотину передбачається таким, щоб контейнер вимагав поповнення один раз на день.
- 36Електронна аерозольна сигарета, що не димить, за будь-яким з попередніх пунктів, в якій об'єм контейнера для зберігання розчину нікотину передбачається таким, щоб контейнер вимагав поповнення один раз на кілька днів.
- 37Електронна аерозольна сигарета, що не димить, за будь-яким з пунктів 1 чи 15, в якій сопло (17) для пароутворення виготовлене із звичайної кераміки, або в якій сопло для пароутворення виготовлене з глиноземно-силікатної кераміки, оксиду титану, оксиду цирконію, кераміки на основі оксиду ітрію, плавленого кремнію, двоокису кремнію чи плавленого оксиду алюмінію у формі прямої трубки чи спіралі, або в якій сопло для пароутворення виготовлене з політетрафторетилену, вуглецевого волокна, скловолокна чи інших матеріалів з подібними властивостями.
- 38Електронна аерозольна сигарета, що не димить, за пунктом 1, яка додатково включає червоний світлодіод, розміщений на передньому кінці корпусу (6).
- 39Електронна аерозольна сигарета, що не димить, за пунктом 38, в якій світлодіод мигає при затягуванні електронною аерозольною сигаретою, що не димить.
- 40Електронна аерозольна сигарета, що не димить, за пунктом 38, в якій схема керування забезпечує подачу на червоний світлодіод пилкоподібного сигналу з циклом 1, 2 секунди, щоб він мигав, поступово змінюючи яскравість світіння.
- 41Електронна аерозольна сигарета, що не димить, за пунктом 1, в якій корпус виконаний як єдине ціле і нагадує мундштук, люльку чи авторучку.
- 42Електронна аерозольна сигарета, що не димить, за будь-яким з попередніх пунктів, в якій джерелом живлення є батарейка одноразового використання або батарейка, що перезаряджається.
- 43Електронна аерозольна сигарета, що не димить, за будь-яким з попередніх пунктів, яка може наповнюватись звичайним лікарським препаратом і функціонувати як апарат для введення лікарського препарату в легені.
Independent claims43
162 paragraphs in 14 sections, as filed
UKRAINE
(19) and A (11) 89752 (13) C2
(51) IPC (2009)
A24B 15/00
MINISTRY OF EDUCATION SCIENCE OF UKRAINE
STATE DEPARTMENT OF INTELLECTUAL PROPERTY
DESCRIPTION
TO THE INVENTORY PATENT
(54) ELECTRONIC AEROSOL SIGARET WHICH DOES NOT WAIT
1
(21) a200511258
(22) March 8, 2004
(24) 10/03/2010
(86) PCT / SICH2004 / 000182, 08.03.2004
(31) 03111582.9
(32) April 29, 2003
(33) SICH
(46) March 10, 2010, No.5, 2010
(72) BEST PARTNERS WORDWAYD LIMITED, US
(73) BEST PARTNERS WORODSWAY LIMITED, US
(56) of 5080114, January 24, 1992
MO 0049901, August 31, 2004
CA 2562581, dated 15/11/1989
МО 2004080216, 23.09.2004
MO 03034847, 01.05.2003
(57) 1. An electronic aerosol cigarette that is not di-instant and is an integrated system that includes:
corps,
power supply to provide energyless electronic smoke aerosol cigarette, high-frequency generator, located on the pail of the control circuit and designed for generating a high-frequency signal, a container for storing a solution of nicotine, a control circuit, located on the control panel and designed to control the operation of the electronic aerosol cigarette, which do not smoke
air flow sensor
sensitive to contact with the user's body,
sprayer for spraying a nicot solution, well,
a high-temperature nozzle (17) for steaming , located at the end of the pulley (6) for air suction and coupled to a container (13) for storing a nicotine solution containing a nicotine solution and equipped with a valve (12) for fluid injection through an electronic -sock (11) or valve, connected to the dosing chickpea,
a spray device connected to a high-frequency generator on the panel (8) of the control circuit, a series of outputs of the control circuit coupled to a high-frequency generator, an electric heater, an electronic pump or a valve, respectively, while a body-sensitive
2
the user element (19) and the sensor (18) of the airflow
connected to the inputs of the control circuit.
2. An electronic aerosol cigarette which is not di-instant, according to item 1, in which the contact sensitive with the user's cell is an impedance sensor by a chimerical sensor.
3. A non-divergent electronic aerosol cigarette according to claim 1, wherein the high-frequency generator on the panel (8) of the control circuit is a three-point generator with a capacitive coupling, a three-point generator with an inductive coupling or oscillatory Transformer type circuit with frequency from 35kg to 3,3mG c.
4. A non-divergent electronic aerosol cigarette according to claim 1, wherein the spray is a piezoelectric ultrasonic spray, consisting of an ultrasonic piezoelectric element (20) attached to the outside of the nozzle (17) for vaporization , and schemes of automatic frequency adjustment in the control circuit, which resonates with the ultrasonic piezoelectric element (20).
5. A non-divergent electronic aerosol cigarette according to claim 1, wherein the liquid injection valve (12) is a one-way valve for spraying the fluid compacted by a spherical or conical element under the action of the springs.
6. An electronic aerosol cigarette that is not di-instant, according to claim 1, in which the wind-flow sensor (18) is a grid of thermosensitive resistors in the form of a film integrated into a single structure.
7. A non-divergent electronic aerosol cigarette according to claim 1, wherein one output of the control circuit is connected to the indicator display for visualizing the parameters of the operating state of the non-smoked electric aerosol cigarette in a digital or graphical form.
8. An electronic short-spray aerosol cigarette according to claim 7, wherein the display of the indicator is a liquid crystal display of the indicator.
9. A non-divergent electronic aerosol cigarette according to claim 7, wherein the operating parameters of an electrically non-smokeless aerosol cigarette include an element capacity, a number of times of smoking per day, an average cycle of co-
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use, volume of nicotine solution and over-smoking in excess.
10. An electronic aerosol cigarette that is not di-instant, according to item 2, in which
electrode of the resistance sensor or capacitive sensor (19), forming a contact sensitive with the user element, consists of an upper metal film and a lower metal film placed at the end of the mouthpiece, the change in the parameters of resistance or capacity, caused by contact sensitive to contact with the body of the user element, is introduced into the control scheme and
sensitive to contact with the user's body with a touch-sensitive switch.
11. An electron aerosol cigarette, not di-instant, according to claim 1, in which the electronic pump (11) rotates at a low speed, but a large torque when the motor or linear motor drives a retarder having a large transverse number through a coupling sleeve.
12. The non-divergent electronic aerosol cigarette according to claim 11, wherein the electronic pump (11) is a peristaltic pump, a plunger pump, an eccentric pump, a screw pump, a piezoelectric pump, a supermagnetoscope pump, pump driven on the basis of thermal expansion, a pump driven on the basis of thermal compression or thermobarbage pump.
13. An electronic aerosol cigarette that is not di-instant, according to claim 12, wherein the peristaltic pump includes a silicone tube, a clamping roller, a tether and a motor.
14. A non-divergent electronic aerosol cigarette according to claim 12, wherein the electronic pump or the valve with a thermal compression actuator is made of a nickel-titanium alloy with a memory of the form or alloy on the basis of copper with memory shaped and mounted on a silicon tube, which is compressed by a nickel-titanium alloy wire with a memory shape or alloyed basis of copper with memory shape under the action of electro-rotoric compression.
15. An electron aerosol cigarette, not di-instant, according to claim 1, in which the nozzle (17) for vaporization is a tube with an internal diameter of 0.05-2 mm and an effective working length of 3-20 mm, made of materials resistant to high temperature and those having a low thermal conductivity, which contains inside an electric heating element, is equipped with a drill, and the shape of the electric heating element and nozzles are such that provide for steaming and spraying the liquid.
16. An electrically non-instantaneous aerosol cigarette according to claim 15, wherein the electric heating element in the vaporization nozzle (17) is made of a wire of nickel-chromium alloy, iron-chrome-aluminum alloy, stainless steel, and gold , platinum or tungsten-molybdenum alloy and has the form of linear con-shaping, single-spinal configuration, group configuration or group spiral configuration,
among which the best are linear and group spiral configurations.
17. An electronic non-diamond aerosol cigarette according to claim 16, wherein the nickel-chromium alloy iron, chrome-aluminum alloy, stainless steel, gold, platinum, or tungsten-molybdenum alloy is provided on the inside wall nozzles
18. An electrically non-diamond aerosol cigarette according to claim 16, wherein the coil of nickel-chrome alloy, iron-chrome-aluminum alloy, stainless steel, gold, platinum, or tungsten-molybdenum alloy is provided with an outside coil, reaching the corresponding reaction time in the mode of power supply after a short preheating.
19. An electrically non-instantaneous aerosol cigarette according to claim 15, wherein the electric heating element is a coating, is applied to the inner wall of the nozzle, which can be made of electrothermal ceramic materials obtained by catalysis with phase transfer of ceramic semiconductor materials resistant to corrosion of metal film.
20. An aerosolless short-circuited aerosol cigarette according to claim 18, wherein the corrosion resistant metal film is made of gold, nickel, chromium, platinum, or molybdenum.
21. A low-light electronic aerosol cigarette, according to item 18, in which the coating may be applied by means of an expense process of the quest, the process of sintering of the chemically deposited layer and the process of ion spraying.
22. An electronic aerosol cigarette that is not di-instant according to one of claims 18-21, wherein the nozzle for evaporation is a high-temperature nozzle for vaporization, and conditions for the operation of the high-temperature nozzle are created during heating.
23. An electron aerosol cigarette, not di-instant, according to claim 21, wherein the nozzle for steaming is made of high resistance metal and receives a current for heating, directly, without being used for the electric heating of any conductor.
24. A low-light electronic aerosol cigarette according to claim 1, wherein, when the user is heating, a body-sensitive element, starts a control circuit for issuing two control signals, respectively, one of which is used to supply energy to an electric heating element of a high-temperature liquid for vapor formation, and the second leads to the action of a micropump that pours out a solution of nicotine from a container for a solution of nicotine in a high-temp nozzle for vapor formation, after which the solution of nicotine evaporates on electric heating element of the high-temperature cavity for steam generation and then pushed out from the outlet.
25. An electrically non-divergent aerosol cigarette according to claim 4, in which the ultrasonic piezoelectric element provides a sufficiently close contact droplets of a nicotine solution in an unstable flow of heated air under high pressure from an oil-
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cryogenic heating element and thus their evaporation, provides direct sub-brewing and spraying of drops of a solution of nicotine in a high-temperature nozzle for vaporization, and also that drops of a solution of nicotine avoidsconducting to a temperature higher than the temperature of their boiling.
26. The non-divergent electronic aerosol cigarette according to claim 4, wherein the air flow sensor is sensitive to the diluted air from the inlet opening, when the user is smoking, the received signal from this sensor is fed to the input of the control circuit and used to terminate feed on a micropump and an electric heating element after a certain delay.
27. A non-divergent electronic aerosol cigarette according to claim 12, in which an electronic pump with a thermal compression drive is a peristaltic pump with an electrically-rigid compression drive made of nickel-titanium alloy wires with memory forms of copper-based copper with memory shape, with a gel-tube, which is squeezed in three points in a certain order in the process of electrothermal stacking with the formation of a pressure chamber for fluid recovery.
28. A non-divergent electronic aerosol cigarette according to claim 12, in which an electronic pump with a thermal expansion drive generates a pressure chamber for pushing the liquid when a microcontainer with hydrogen, equipped with an electric heating element, blocks the entrance to the liquid and opens the outlet for the liquid under the incremental expansion.
29. An electrically non-instantaneous aerosol cigarette according to claim 12, wherein the thermoplastic pump forms a pressure chamber for pushing the liquid out by the rapid evaporation of the liquid from the film under the action of electric heating.
30. An electronic short-spray aerosol cigarette according to claim 1, in which the dosing hollow, adjacent to and in conjunction with the valve, has a form of a cylinder with an inlet for the liquid and an output for the liquid, and contains a piston with microenvironments and a spring with which it is connected to return. piston in out position.
31. A non-divergent electronic aerosol cigarette according to any one of the preceding claims in which the control circuit and the ultrasonic micropump are integrated into a single silicon chip using the concept of a micromechanical system.
32. A non-di-instant electronic aerosol cigarette according to any one of the preceding claims in which the microswitch is activated after 0.1-0.5 seconds of delay when the electric heater starts to work and the electric heater is switched off due to 0.2-0, 5 seconds after switching off the control circuit of the microswitch.
33. The non-divergent electronic aerosol cigarette according to claim 1, in which the container (13) for storing the nicotine solution is made of polymers which can be protected from penetration of the no-cote
34. An instantaneous, short-circuited electronic aerosol cigarette according to claim 33, in which such polymers are silicone rubber.
35. An electronic aerosol cigarette that is not di-instant, according to any one of the preceding claims, in which the contents of the container for storing the nicotine solution are assumed to allow the container to replenish once a day.
36. An electronic aerosol cigarette that is not di-instant, according to any one of the preceding claims, in which the contents of the container for storage of the nicotine solution are assumed to allow the container to replenish once a few days.
37. A non-divergent electronic instantaneous aerosol cigarette according to any one of claims 1 or 15, in which the vaporization nozzle (17) is made of conventional ceramics, or in which the vaporization nozzle is prepared from alumina-silicate ceramics, oxide titanium, zirconium oxide, ceramics on the basis of yttrium oxide, fused silicon, bicomponent of silicon or fused alumina in the form of a straight tube or a spiral, or in which the vaporization co-source is made of polytetrafluoroethylene, carbon fiber, glass fiber or other materials with similar properties .
38. A short-circuited electronic aerosol cigarette according to item 1, which additionally includes a red LED, is located at the front end of the housing (6).
39. An electronic aerosol cigarette that is not di-instant, according to item 38, in which the LED flashes with a non-smoking electronic aerosol cigarette.
40. A short-circuited electronic aerosol cigarette according to item 38, in which the control circuitprovides a red-light-emitting diode of a saw-like signal with a cycle of 1, 2 seconds, so that it flashes, gradually changing the brightness of the glow.
41. The short-circuited electronic aerosol cigarette, according to item 1, in which the body is made as a unit and reminiscent of a mouthpiece, foam or auto-handle.
42. A non-divergent electronic aerosol cigarette according to any one of the preceding claims in which the power supply source is a single-use battery or a rechargeable battery.
43. An electronic aerosol cigarette that is not di-instant, according to any one of the preceding paragraphs, which can be filled with an ordinary drug and function as a device for administering a medicinal drug in the lungs.
The present invention relates to a non-smoking electronic aerosol cigarette that contains only nicotine and does not contain resins.
Despite the well-known "danger of health for a person," the number of smokers in the world reaches one billion and grows annually. World Health Organization (VO-
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OZ) on March 3, 2003, concluded a worldwide Conceptual Convention on Tobacco Control According to WHO statistics, approximately 4.9 million people die every year from illnesses caused by smoking. But, although smoking can cause serious respiratory illness and cancer, it is still very difficult for smokers to completely refuse this malicious habit.
The active ingredient in cigarettes is nicotine. In the course of smoking, nicotine, along with a large number of az-azole droplets of resins formed with gases cigarettes, pass into the alveoli of the smoker's lungs and rapidly absorb them. Having hit this way in the blood, nicotine is acting on the recipe of the central nervous system of the smoker, which results in a state of relaxation and intoxication, similar to that which creates a laughing gas.
Nicotine is an alkaloid with low molecular weight. In small doses, it is not harmful to the human organism, and the period of its half-life and blood is quite short. The main harmful reagent in tobacco is a resin consisting of a series of ingredients, among which dozens are carcinogenic substances. To date, it has been proven that for smokeless people, passive smoking may be even more harmful than for smokers.
Until then, numerous types of cigarette replacements containing only nicotine were offered without a resin, and some of them, such as "nicotine patch", "nicotine mouthwash", "high pressure spray reservoir with an aerosol agent and pro-pellet "," nicotine gum "," nicotine drink "and others, were made from pure nicotine. However, although these cigarette substitutes did not contain resins, their main disadvantage was that due to the slow absorption of nicotine they did not allow to reach the effective peak concentration in the blood of the smoker and, thus, the smoker did not receive the expected effect of their use. In addition, these substitutes did not give the smoker the satisfaction that he receives from the traditional process of smoking, accompanying, for example, an act of inhalation or absorption. This, obviously,
It is an object of the present invention to provide an electrically-free aerosol cigarette that does not require a paste that can be used as a substitute for a cigarette for those wishing to quit smoking or simply as a substitute for a cigarette, is deprived of the aforementioned disadvantages and is a beneficial analogue of a tea cigarette very similar to her external appearance. The non-smoking electronic aerosol cigarette has a solid prefabricated structure that looks like a cigarette mouthpiece. It has the following components: casing; power supply, high-frequency generator, solution tank, nicotine, control circuit; indicator display, air flow sensor, touch sensor contact with the user's body, piezoelectric ultrasonic spray; high-temperature evaporous nozzle with additional accessories, where the electrotechnical evaporation nozzle is arranged in recognition
mhenium for absorption of the end part of the casing, is connected with a reservoir of liquid containing a solution of nicotine and has a one-way valve for injection of a liquid, through an electronic pump or a valve connected to the dosing cavity; ultrasonic piezoelectric element, attached to the outer side of the evaporation nozzle and connected to the high-frequency generator control circuit. In this case, the four outputs of the control circuit are connected in accordance with a high-frequency generator, an electric heater, a pump-som or a valve and an indicator display, a resistive sensor contact with the user and the air flow sensor connected with the corresponding inputs of the control circuit, The end of the case also contains a nutrition element and a red light-emitting diode (LED). The control circuit supplies a start-up current to an electric heater and a pump in an evaporator nozzle to inject a solution of nicotine from the reservoir of its retention in the evaporator nozzle. Under the influence of high temperature and high-frequency oscillations in the evaporating liquid nozzle, it quickly evaporates, goes outside and then it condenses, forming a ball aerosol. The control circuit is driven by signals from a connected resistor sensor and a sensor of airflow. For digital or graphic indica- tion of operating conditions and the number of pre-initiation times, there is also a liquid crystal display. The power source for the pump, the high-frequency generator and the electric heater through the control circuit can be a single-use battery or a rechargeable battery.
The inlet also offers a simplified electronic aerosol cigarette, which does not require burning. This cigarette has an electric heater evaporator. The evaporation nozzle of a cigarette is combined with an electric heat pump with a dosing cavity and then with a reservoir containing a solution, a nicotine, made of a strong strength-cagel breakdown. Alternatively, a pump with a dosing cavity may be replaced by a dosing device with an electromagnetic or an electrothermal valve. For the provision of automatic fluidising from the reservoir to contain the dilution, compressed air or an antistatic element may be used. In this case, the best material for the realistic element is a nickel-titanium alloy with a memory shape. In addition, such guaranty contains a control scheme that supplies the operating current for the electric heater and pump or valve. Activation of the control circuit is carried by a resistive sensor connected to it. The source of power connected to the control circuitry is a rechargeable battery.
Thus, the advantage of the present invention is that the proposed cigarette is non-tar and, therefore, can significantly reduce the carcinogenic risk. In addition, when using it, the smoker feels this excitation, as in the smoking of traditional cigarettes, and the absence of need for its ignition makes it fire-safe. .
Insignificant changes in the reservoir for holding the solution, in the design of the cigarette and in the structure of its solution allows to fill it with conventional copper-
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and use as a device for the delivery of drugs in the lungs.
1 shows a cigarette schematic diagram according to the first example of the present invention.
2 is a block diagram of an electrical part of a cigar according to the present invention.
FIG. 3 is a schematic representation of a construction of a high temperature evaporator nozzle and an electro-thermal element according to the present invention. FIG.
FIG. 4 is a schematic view of a shape memory alloy sleeve in accordance with the present invention. FIG.
5 is a schematic representation of a hose-on-socket from an alloy with a shape memory according to the present invention.
6 is a schematic representation of a hose nose in accordance with the present invention. FIG.
7 is a block diagram of an electronic cigarette according to a second exemplary embodiment of the present invention.
8 is a block diagram of an electronic cigarette type according to a third exemplary embodiment of the present invention.
9 is a schematic diagram of a simplified electronic cigarette of a compressible type according to a fourth embodiment of the present invention.
FIG. 10 is a block diagram of a dosage cavity in an electronic cigarette according to a fourth exemplary embodiment of the present invention. FIG.
The high-frequency generator of the control circuit-8 can be a three-point generator with a capacitanceconnection, a three-point generator with an inductiveconnection or a generator of transformer type withfrequency of generation from 35kHz to 3,3 MHz. The circuitry comprises a contour of automatic frequency adjustment with a resonator on a piezoelectric element 20. The nicotine-containing reservoir 13 can be made of silicone rubber or another polymer that can be tampered with from penetration of nicotine. One-way valve 12 for fluid injection is sealed by a chip or a conical element pressed by a spring. Sensor 18 of the air stream may be made in the form of an integrated lattice of thermosensitive film resistors. Electro-resistive or capacitive touch sensor 19 contact with the user's body consists of an upper metal film and a lower metal film and is located at the end of the mouthpiece of the cigar-te. Changes in the value of electrical resistance or capacitance due to contact with the user's body transmitted to the input of the control circuit, from which the sensor switches completely. An electric pump 11 with a conventional or linear motor drives a delay device with a high-speed ratio through an axial coupler coupling to provide a low-speed rotation with a large twisting moment. This pump can be hose-type, plunger type, eccentric type or quartz-type. In addition, it can also be a ri-guy piezoelectric pump, a super-magnetostriction pump, pump with a heat expansion drive, a pump with a heat-driven drive or a thermoblast pump. An electric nose or valve may be thermosensitive
type Such a valve is formed on a tube of strength-konovogo rubber nickel-titanium or copperplate with the shape of the memory and works on the principles of using the forces of thermal electric compression. The electrochemical evaporator nozzle 17 is made of high temperature heat resistant materials with low thermal conductivity. The nozzle 17 has a tube-like shape with an internal diameter of 0.05-2 mm and an effective working length of 3-20 mm. Inside the arranged electric heating element, the form of the heating element and the shape of the bulb of the nozzle are designed in such a way as to ease the evaporation and outflow of the liquid. The vapor nozzle 17 can be made of conventional ceramics or of aluminosilicate ceramics, ceramic oxide of titanium, zirconium dioxide or oxyditrile, fused silicon, silicon dioxide, plated aluminum oxide. The evaporating nozzle 17 may be a straight or spiral tube and can also be made of polytetrafluoroethylene, carbon fiber, glass fiber or other materials with similar properties. The electrically heated element, arranged inside the evaporator nozzle 17, can be made of a wire of chromium-nickel alloy, iron-chrome-aluminum alloy, stainless steel, gold, platinum, tungsten-molybdenum alloy, etc. and may have rectilinear, single-spinal, duplex-fusion form, shape of a beam or spiral beam, among which the most straightforward form and shape of the beam. The function of heating the electron-heater element can be carried out with the help of a heating coating applied to the inner tube of the tube. Such coating can be made from electrochemical ceramic material, semiproductive material, corrosion-resistant metal foil, for example, of gold, nickel, chromium, platinum or molybdenum. Such a coating may be formed by means of the process of coating with sintering, the process of chemical precipitation with sintering or the process of ion spraying. The above substances can be applied to the inner wall of the evaporator nozzle with any of the above-mentioned process. A nozzle made of high-resistive metal may not have a separate heating element applied to it and self-serve as a conductor for heating current. Alternatively, the aforementioned mothers may be used from the outside of the socket by any of the above-mentioned paths, and the corresponding response time can be achieved also in the mode of power supply with short-term pre-heating. The nicotine solution used in the process of dispersal,
EXAMPLE 1 Structural Cigarettes in this embodiment of the invention are shown in FIG
The operation of this electronic cigar is carried out in this way. When the smoker takes a blue-reed in his mouth, the resistive sensor 19 is activated
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control circuit 8. At the same time, at the output of the control circuit 8, two signals of the excitation voltage are produced - one for supplying the electro-heating element of the evaporating nozzle 17, and another with the inclusion of the micropump 11 (shown in Fig.6). When the pump is switched on, the nicotine solution from its retention vessel 13 is pushed into the inlet 17. On the heating element of the nozzle, this solution evaporates, becoming a high-temperature steam that is ejected through the closed end of the nozzle. The air emitted in the air is rising and condensing in a microcavity aerosol. In this case, under the action of the mounted dipole of the ultrasonic piezoelectric element20, firstly, large drops of fluid in a thermally unstable flow of air under high pressure are in a sufficiently dense contact with an element-heating element and as a result, and secondly, the liquid drops in the nozzle 17 are directly broken up and sprayed, and finally, thirdly, the probability of occurrence of the phenomenon of boiling with impulses with the temperature of the liquid above the boiling point is eliminated. The effect of continuous spraying allows drops of an aerosol diameters of 0.2-3 μm to pass easily into alveolipesium and to absorb in them. The flow sensor 18 of the air is sensitive to the airborne discharges that flow from the air inlet 16, when the actuation occurs. The signals of this sensor are transmitted to the control circuit, which thus, through a certain delay period, stops the supply of the micropump and electric heater. The inclusion and exclusion of the micro pump and the electric heater are carried out in the following mutual relation of the delay periods: after the inclusion of the electric heater, the micro pump is switched on after the end of the delay period of 0.1-0.5 s; after that, the electric heater is switched off due to the period of the harness 0.2-0.5 s when the control circuit of the micron-som is switched off, which ensures the possibility of full evaporation of the liquid without the residue after it is sprayed. The reservoir for solvent-nicotine maintenance can have different sizes depending on requirements. Tank filling with nicotine solution may be carried out once a day or twenty days. The liquid crystal display 10 can provide indication of such operating parameters as the actual battery charge 5, the amount of suction per day, the average cycle of use and warning of excessive smoking. At the same time whenever the suction lights the red LED 3, and the control circuit produces a saw-like signal for a duration of 1.2 seconds, which provides a gradual change in the light of the LED, simulating the burning process of the traditional cigarette. In FIG. 1, the display shows: a charger 1, a charging socket 2, a spring 4, a housing b, a thread 7, a switch 9, a passage tube 14, and an aperture 15. FIG. 6 shows: a silica gel tube 601, a press roller 602, a worm 603 and the 604 engine.
The cigarette design according to the invention does not exclude the possibility of integrating the control circuit and the ultrasonic micropump on one chip with the help of a microelectronic mechanical system (MEME: MIGO: Eigensmospas Messparaisai Zuivets).
Example 2. A simplified electronic cigarette
FIG. 7 shows a block diagram of a simplified electronic cigarette according to the invention, in which a high-frequency co-oscillator of ultrasonic dispersion and a piezoelectric ceramic element 20 are absent. To achieve the desired effect of flooding, a thin, on-heating wire in the nozzle is used here (Fig. 3), where between the heating wire and the inner wall of the nozzle there are one or more evaporation cavities in the sizes from 0.02 mm to 0.6 mm. The function of the missing airflow sensor 18 here replaces the delay in a certain initial signal of a resistive or capacitive sensor 119 through a control circuit, as a result of which this signal becomes a signal for termination of the cycle. In this configuration, the electronic cigarette is an evaporator 117, a heat pump pump 111 of the nickel- titanium wire with memory shape with ' The fluid holding tank 113 connected to this pump forms a liquid flow path. The two outputs of the control circuit 108 are connected one with the electric heater and the other with the pump or cluster, and with the input of the control circuit is connected a resistive touch sensor 119 of the contact with the user. On the front end of the cigarette, underneath its casing, there is a battery element 105
1 red SVD 103, integrated into a solid consist of cigarettes, which looks like a regular syringe mouthpiece, crib or fountain pen. The pump with a thermal actuator is a hose pump with electrothermal compression, executed from a nickel-titanium alloy with a memory of forms or from an alloy on the basis of copper with a memory of a form with a tube of gel, compressed at three points during the thermal insulation to form a pressure cavity to pump fluid. The change in the volume of this cavity in a pump with a thermal drive is determined by the amount of solution that is each time fed to the dispersion. As soon as the cigar is touched by the user's mouth, the resistive sensor 119 operates a control circuit 108, which supplies the operating current to the coil with a thermal drive and an electric heater, and the output of the control circuit goes through
2 from the time of the delay required for re-entry into operation of these elements at the next actuation suction. Alternatively, a pump with a heat-spreading drive or a thermoblast pump may be used. The pump with an extensible drive forms a pressure cavity for fluid leakage due to the blocking of the liquid inlet and the opening of the liquid during the expansion of the hydrogen microreservoir
3 built-in electric heater element. FIG. 7 shows: a charging socket 102, an I / O 110, a battery 105, a switch 109, a valve 112, and a refueling fluid 116, and an air gap 116.
3 shows: the heater wire leads 401, the heating wire 402, the thread 403, the base 404 and the nozzle 405. FIG. 5 shows: a support 501, a spin-sprinkler 502, a push-up plate 503, a silica gel 504, a stop plate 505, a pressurizing spring, a load-bearing spring 506, a coil 507
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w with memory shape, electrode A 508, electrode B509 and electrode with 510.
Example 3. Electronic cigarette made of nickel-titanium alloy with memory shape
The block diagram of this electronic cigarette is shown in FIG. The electrothermal evaporation nozzle 217 of this cigarette is coupled to a liquid holding reservoir 213 via a pneumatic clutch 220, and the upper elastic member 210 is coupled to the pressure plate 211, which is pressurized to the liquid holding tank 213, and the pneumatic valve is laid from the pneumatic film 214 of the magnetic steel ring 218, the steel needle valve 220 and the spring 221 return to the starting state. The padding element 210, made of a form-shaped nickel-titanium alloy, is used to apply a constant pressure to the retention vessel of fluid holding through the pressure plate 211. When the pneumatic valve opens, the liquid with nicotine passes into the vine A nozzle from a reservoir containing liquid through this pneumatic valve, evaporates and is condensed with the formation of a ball of aerosol with a high temperature. As soon as the cigarette hits the user's mouth, the resistive sensor sensor activates a control circuit that gives power to the electric heater. When the user is taking a suction, the ring of permanent magnet from the alloy of the nickel-iron-boron system draws the valve needle in response to the negative pressure, prik-laden to the pneumatic film. When the needle valve opens, the liquid is fed into the nozzle, after the return of the pneumatic valve to the outlet position, the power of the electric heater is cut off after 0.5 seconds of delay of the control circuit. FIG. 8 shows: LED 203, charging socket 202, battery 205, circuit control 208, switch 209, refueling valve 212, aperture 215, atmospheric coupling openings 216 and resistive touch sensor 219.
Example 4. An electronic aerosol cigarette using tank pressure
In this device (FIG. 9), the path of passage of ritines forms an electrothermal evaporation nozzle, which is connected to the metering cavity 320, an electrical valve 311 and a fluid storage tank 313. On the periphery around the reservoir storage of liquid is arranged a gas tank filled with nitrogen under high pressure, which is attached to this reservoir to facilitate the flow of liquid. When receiving electric
the valve of the control signal, this valve operates, the solution of nicotine passes into the dosing cavity from the reservoir of holding the liquid underpressure and pushes the piston, resultingthrough this electric valve on the other sidepost in the evaporation nozzle passes a constantlow liquid, which evaporates and condenses byformation of the aerosol . Dosage cavity valve has the shape of a cylinder with an input and output for a liquid. The piston has microwells, which are constantly located inside the cylinder, where the rotary spring is also attached to the piston to the starting position. The control circuit, which operates from the signal of the resistive sensor sensor 319, controls the state of the electric valve and the electric heater. Due to the slow flow of liquids through the piston microproducts, the pseudo-permeable cavity under the action of the force of the rotary spring returns to its original position in 5-8 seconds upon the completion of the refinement process. Fig. 9 shows: element 305, injection capacity 321, injection chamber 322, threaded hole 323, control circuit 308, and opening 316 coupling with the atmosphere.
4 is shown: a 406 silica gel tube 407, a push stop plate 407, a memory 408 wire, a shape, a support 409, a heating jack 410, a wire, and a pressure spring 411. Fig. 10 shows: input 701; a piston 702, a piston micro-drain 703, a dosing cavity 704, a proximal 705 return to the starting position and a output 706.
The nicotine solution used in the electron aerosol cigarette according to the present invention may have the following compositions:
1) 6% nicotine, 85% propylene glycol, 2% glycerin, 2% ethereal oil, 1% organic acid and 1% antioxidant;
2) 4% nicotine, 80% propylene glycol, 5% glycerin, 1% butyl valerate, 1% isopentyl hexone, 0.6% lauryl laurate, 0.4% benzyl benzoate, 0.5% methyloctcinate, 0.2% ethylene heptylate, 0,3% hexyl hexanoate, 2% geranyl butyrate, 0,5% mentol, 0,5% citric acid and 4% tobacco-tion;
3) 2% of nicotine, 90% of pylene glycol, 2.5% of citric acid, 1% of ethereal oil and 4.5% of tiu-ton essence,
4) 0.1% nicotine, 80% propylene glycol, 5% glycerin, 8% alcohol, 2.9% water, 1% ethereal oil, 1% tobacco essence and 2% organic acid
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| electric heater
FIG. 2
resistive or
Capacity
sensors and sensors and to
High frequency;
generator
management
gyzoelectricity
schematics
element
Γ ~ "
indicator display
pump or
valve
flow sensor
air
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89752
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Computer layout of T. Chopelov Signature Circulation 26 copies.
Ministry of Education and Science of Ukraine
State Department of Intellectual Property, st. Uritskogo, 45, Kyiv, SME, 03680, Ukraine
State Enterprise "Ukrainian Institute of Industrial Property", st. Glazunova, 1, Kyiv - 42, 01601
Contents14
3 sheets
Sheet 1 Sheet 2 Sheet 3
Every citation, both ways
| Document | Relation | Office | Cited during |
|---|---|---|---|
| US12274824B2 | Cited by | United States of America | Applicant |
| US11744964B2 | Cited by | United States of America | Applicant |
| US12447290B2 | Cited by | United States of America | Applicant |
| US11083856B2 | Cited by | United States of America | Applicant |
| US11039643B2 | Cited by | United States of America | Applicant |
| US12558496B2 | Cited by | United States of America | Applicant |
| US11253671B2 | Cited by | United States of America | Applicant |
| US11918737B2 | Cited by | United States of America | Applicant |
| US10278421B2 | Cited by | United States of America | Applicant |
| US12610989B2 | Cited by | United States of America | Applicant |
| US12089640B2 | Cited by | United States of America | Applicant |
| US12357777B2 | Cited by | United States of America | Applicant |
| US11744964B2 | Cited by | United States of America | Applicant |
| US10966459B2 | Cited by | United States of America | Applicant |
71 members in 24 offices
Priority claims2
| Document | Office | Kind | Date |
|---|---|---|---|
| 031115829 | China | – | |
| 03111582 | China | A |
Members71
| Document | Office | Kind | |
|---|---|---|---|
| CN1541577A | China | A | |
| AU2004234199A1 | Australia | A1 | |
| CA2518174A1 | Canada | A1 | |
| CA2752134A1 | Canada | A1 | |
| CA2874924A1 | Canada | A1 | |
| CA3040282A1 | Canada | A1 | |
| CA3060495A1 | Canada | A1 | |
| WO2004095955A1 | World Intellectual Property Organization (WIPO) | A1 | |
| WO2004095955A8 | World Intellectual Property Organization (WIPO) | A8 | |
| HK1070791A1 | Hong Kong, China | A1 | |
| TW200534801A | Taiwan Province of China | A | |
| RU2005115958A | Russian Federation | A | |
| EP1618803A1 | European Patent Office (EPO) | A1 | |
| BRPI0407944A | Brazil | A | |
| MXPA05009191A | Mexico | A | |
| PL379020A1 | Poland | A1 | |
| EA200501704A1 | Eurasian Patent Organization (EAPO) | A1 | |
| US2006196518A1 | United States of America | A1 | |
| JP2006524494A | Japan | A | |
| KR20070087265A | Republic of Korea | A | |
| EP1618803A4 | European Patent Office (EPO) | A4 | |
| EA009532B1 | Eurasian Patent Organization (EAPO) | B1 | |
| CN100381083C | China | C | |
| RU2336001C2 | Russian Federation | C2 | |
| EP1618803B1 | European Patent Office (EPO) | B1 | |
| AT415831T | Austria | T | |
| ATE415831T1 | Austria | T1 | |
| PT1618803E | Portugal | E | |
| DE602004018125D1 | Germany | D1 | |
| DK1618803T3 | Denmark | T3 | |
| ES2316969T3 | Spain | T3 | |
| PL1618803T3 | Poland | T3 | |
| SI1618803T1 | Slovenia | T1 | |
| MY138404A | Malaysia | A | |
| TWI320698B | Taiwan Province of China | B | |
| UA89752C2This record | Ukraine | C2 | |
| KR100971178B1 | Republic of Korea | B1 | |
| AU2004234199B2 | Australia | B2 | |
| CA2518174C | Canada | C | |
| US2012090630A1 | United States of America | A1 | |
| US2012273589A1 | United States of America | A1 | |
| PL213491B1 | Poland | B1 | |
| BRPI0407944B1 | Brazil | B1 | |
| US8511318B2 | United States of America | B2 | |
| US2013276804A1 | United States of America | A1 | |
| CY1108677T1 | Cyprus | T1 | |
| US2014261499A1 | United States of America | A1 | |
| US2014318560A1 | United States of America | A1 | |
| US8899239B2 | United States of America | B2 | |
| US8910641B2 | United States of America | B2 | |
| CA2752134C | Canada | C | |
| US9364027B2 | United States of America | B2 | |
| US2016213068A1 | United States of America | A1 | |
| US2016270451A1 | United States of America | A1 | |
| US9713346B2 | United States of America | B2 | |
| US9717279B2 | United States of America | B2 | |
| US2017290372A1 | United States of America | A1 | |
| US2018168234A1 | United States of America | A1 | |
| US2018192706A1 | United States of America | A1 | |
| US2018279690A1 | United States of America | A1 | |
| US10123569B2 | United States of America | B2 | |
| CA2874924C | Canada | C | |
| US10327478B2 | United States of America | B2 | |
| US10342264B2 | United States of America | B2 | |
| USRE47573E | United States of America | E | |
| US2020196663A1 | United States of America | A1 | |
| US10856580B2 | United States of America | B2 | |
| US2021093000A1 | United States of America | A1 | |
| US11039649B2 | United States of America | B2 | |
| CA3040282C | Canada | C | |
| CA3060495C | Canada | C |
Numbers
- Publication
- 89752
- Application
- 200511258
Titles3
- Ukrainian
- ЕЛЕКТРОННА АЕРОЗОЛЬНА СИГАРЕТА, ЩО НЕ ДИМИТЬ
- English
- NON-SMOKABLE ELECTRONIC SPRAY CIGARETTE
- Russian
- ЭЛЕКТРОННАЯ АЭРОЗОЛЬНАЯ СИГАРЕТА, КОТОРАЯ НЕ ДЫМИТ
Classification
- CPC, 18
- A61K9/007
- A24F40/51
- A24B15/167
- A24F40/10
- A24F40/90
- A24F40/60
- A24F40/485
- H05B1/0244
- H05B3/0014
- A24F40/42
- A61M15/06
- A61M15/008
- A61M2205/8206
- A61M2205/18
- H02J7/751
- H02J7/00
- A24F40/40
- H05B1/0202
- IPC, 6
- A24B15 00
- A24F40 10
- A24F40 485
- A24F40 60
- A24F40 90
- A61K9 00