IP Library › Granted Patent US 9,675,114
Granted Patent B2
US 9,675,114 · App. 14/067,007 · Granted Jun 13, 2017

Real time variable voltage programmable electronic cigarette and method

Inventor: Ludovicus Josephine Felicien Timmermans (Antwerp, BE)
A24F47/008
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Quick Facts
Patent No.
US 9,675,114
App. No.
14/067,007
Filed
Oct 30, 2013
Granted
Jun 13, 2017
Kind
B2
Art Unit
1741
USPC
131/328
Abstract

A real time variable voltage programmable electronic cigarette device has a main body, a controller, a memory, a visual indicator, a multidirectional joystick for operating and programming the electronic cigarette, a visual indicator for real-time status feedback, and a USB connector for computer connectivity. Programming the device includes the ability to create vaping profiles. The programmable function enables a user to set the voltage output and power output level applied to the atomizer when energized.

Claims (58)

1. A real time variable voltage programmable electronic cigarette system ( 100 ), comprising an electronic cigarette ( 110 ), the electronic cigarette comprising:

a main body ( 112 ) having a first end ( 114 ) and a second end ( 116 ), the first end ( 114 ) comprising an atomizer connector ( 118 ) adapted to engage a mouthpiece ( 120 ), and the second end being adapted to receive a cap ( 122 ) with spring ( 124 );

a power source ( 126 ) adapted to fit inside the main body;

an electronic control unit ( 128 );

a housing ( 130 ) for storing the electronic control unit ( 128 ) and for electrically coupling the power source ( 126 ) and the atomizer connector ( 118 ), the housing adapted to fit inside the main body ( 112 );

the electronic control unit ( 128 ) comprising:

a multidirectional joystick ( 132 ) adapted to operate and program the electronic cigarette ( 110 ),

a visual indicator ( 134 ) adapted to provide a light signal,

a USB connector ( 136 ) exposed from the main body ( 112 ) and adapted to provide computer connectivity,

a controller ( 138 ) adapted to process input data from the joystick ( 132 ), and

a memory ( 140 ) adapted to keep at least one vaping profile ( 156 );

a mouthpiece ( 120 ) adapted to provide a path for a gaseous product, the mouthpiece ( 120 ) further comprising an atomizer ( 144 ) and a tank ( 146 ), the atomizer ( 144 ) is adapted to act as an electrical heating element, and the tank ( 146 ) being adapted to store an evaporable liquid solution;

wherein the USB connector ( 136 ) is adapted to receive information from a computer application ( 162 ); and

wherein the joystick ( 132 ) is adapted to be directed in a plurality of directions for directing a user interface.

2. The real time variable voltage programmable electronic cigarette ( 110 ) of claim 1 , wherein visual indicator ( 134 ) is a the tri-color RGB LED adapted to provide real-time status feedback from the electronic cigarette ( 110 );

wherein the tri-color RGB LED is adapted to combine the three colors red, green and blue to produce colors other than red, green and blue; and

wherein the tri-color LED has a transparent plastic piece used to reflect a light emitted outside the main body ( 112 ).

3. The real time voltage programmable electronic cigarette ( 110 ) of claim 2 wherein the visual indicator ( 134 ) is an RGB LED, and wherein it illuminates a default color and illuminates colors in a pattern to identify a status of the electronic cigarette ( 110 ).

4. The real time voltage programmable electronic cigarette ( 110 ) of claim 2 , wherein the tri-color RGB LED is adapted to display a brightness that reflects the strength of energy applied to the atomizer ( 144 ).

5. The real time variable voltage programmable electronic cigarette ( 110 ) of claim 1 , wherein the electronic cigarette ( 110 ) is programmable and adapted to create arbitrary waveforms ( 168 ) and save them to at least one vaping profile ( 156 ).

6. The real time variable voltage programmable electronic cigarette ( 110 ) of claim 5 , wherein the electronic cigarette ( 110 ) is adapted to enable the user to set a voltage ( 152 ) and power ( 154 ) to be applied to the atomizer ( 144 ).

7. The real time variable voltage programmable electronic cigarette ( 110 ) of claim 5 , wherein a desired voltage ( 152 ) setting and a desired power ( 154 ) setting are stored in the at least one vaping profile ( 156 ).

8. The real time variable voltage programmable electronic cigarette ( 110 ) of claim 5 , wherein at least one vaping profile ( 156 ) can be saved to the memory ( 140 ).

9. The real time variable voltage programmable electronic cigarette ( 110 ) of claim 5 , wherein at least one of the vaping profiles ( 156 ) can be reprogrammed.

10. The real time variable voltage programmable electronic cigarette ( 110 ) of claim 5 , wherein the controller ( 138 ) is selected from the group consisting of proportional-integral-derivative controller, fuzzy logic, sliding controller, and state feedback.

11. The real time variable voltage programmable electronic cigarette ( 110 ) of claim 5 , wherein the arbitrary waveforms ( 168 ) are oscillations and combinations of different levels of voltage ( 152 ) and power ( 154 ) in a span of time.

12. The real time variable voltage programmable electronic cigarette ( 110 ) of claim 11 , wherein the voltage ( 152 ) is in the range of about 0 to 8V, and the power ( 154 ) is in the range of about 0 to 25 W.

13. The real time variable voltage programmable electronic cigarette ( 110 ) of claim 11 , wherein each vaping profile ( 156 ) is limited by a duration of operation.

14. The real time variable voltage programmable electronic cigarette ( 110 ) of claim 13 , wherein each vaping profile ( 156 ) is limited by 12 seconds of operation, after which the electronic cigarette ( 110 ) will automatically stop, and wherein the vaping profile ( 156 ) is defined by ( 120 ) points and every point represents 100 ms.

15. The real time variable voltage programmable electronic cigarette ( 110 ) of claim 5 , wherein the electronic cigarette ( 110 ) is adapted to be programmed by a method selected from the group consisting of stand-alone programming on the electronic cigarette ( 110 ) and programming through the computer application ( 162 ).

16. The real time variable voltage programmable electronic cigarette ( 110 ) of claim 15 , wherein standalone programming comprises programming by the joystick ( 132 );

wherein standalone programming may be achieved by a manner selected from the group consisting of a) increasing or decreasing voltage ( 152 ) and power ( 154 ) by steps, the steps being 0.1V per step and 0.3 W per step, and b) increasing or decreasing continuously until a maximum voltage ( 152 ) and power 154 is reached or a minimum voltage ( 152 ) and power ( 154 ) is reached; and

wherein the minimum voltage is 0V and the maximum voltage is 8V and the minimum power is 0 W and the maximum power is 25 W.

17. The real time voltage programmable electronic cigarette ( 110 ) of claim 1 , wherein the atomizer connector ( 118 ) is a universal atomizer connector.

18. A method for delivering an evaporable substance comprising:

providing a real time variable voltage programmable electronic cigarette ( 110 ), the electronic cigarette ( 110 ) comprising:

a main body ( 112 ) having a first end ( 114 ), the first end ( 114 ) having an atomizer connector ( 118 ) and a second end ( 116 ) having a cap ( 122 ), the cap ( 122 ) having a spring ( 124 ) attached thereto, an opening for a power source ( 126 ) being located on the second end ( 116 );

a housing ( 130 ) for housing the electronic control unit ( 128 ) and for electrically coupling the power source ( 126 ) and atomizer connector ( 118 ), the housing ( 130 ) adapted to fit inside the main body ( 112 );

a USB connector ( 136 ) on a side of the main body ( 112 ), the USB connected adapted for communication with a computer application ( 162 );

a joystick ( 132 ) located on a side of the main body ( 112 ) and aligned with a visual indicator ( 134 );

a mouthpiece ( 120 ) detachably affixed to the first end ( 114 ) of the main body ( 112 ), the mouthpiece ( 120 ) defining a channel therein and being open at one end and further comprising an atomizer ( 144 ) and a tank ( 146 );

the visual indicator ( 134 ) adapted to provide real time status feedback; and

the joystick ( 132 ) configured to activate at least one vaping profile ( 156 ), the vaping profile ( 156 ) representing information to be communicated to the atomizer ( 144 ) directing the atomizer ( 144 ) to produce heat and information to be communicated to the visual indicator ( 134 ) to illuminate;

whereby heated air is directed into proximity with an evaporable substance located in the tank ( 146 ); and

whereby at least a portion of the evaporable substance boils and produces a vapor, the vapor exiting the main body ( 112 ) by way of the mouthpiece ( 120 ).

19. The method of claim 18 , wherein vaping profile comprises an arbitrary waveform ( 168 ) that defines a vaping energy applied to the atomizer ( 144 );

wherein the vaping profile has a maximum duration of 12 seconds, the 12 seconds being defined by ( 120 ) points at 100 ms per point;

wherein the vaping profiles can be defined in terms of voltage ( 152 ) or of power ( 154 );

wherein the definable voltage ( 152 ) range is 0V to 8V and the definable power ( 154 ) range is 0 to 25 W; and

wherein the arbitrary waveform ( 168 ) defines an option for a user to define whether an amplitude of the vaping profile ( 156 ) will be defined in terms of voltage ( 152 ) or in terms of power ( 154 ).

20. The method of claim 19 , wherein a user can define any desired waveform ( 168 ) within the definable voltage ( 152 ) and power ( 154 ) ranges using the computer application ( 162 ).

21. The method of claim 19 , wherein the vaping profile ( 156 ) defines a color of a light shown from the visual indicator ( 134 ) while the visual indicator ( 134 ) is activated; and

wherein the vaping profile has a maximum duration of 12 seconds, the 12 seconds being defined by ( 120 ) points at 100ms per point, wherein each point is defined by a color, and wherein the electronic cigarette ( 110 ) is adapted to allow a user to define a color for each point using the computer application ( 162 ).

22. The method of claim 18 , wherein the vaping profile ( 156 ) defines a plurality of vaping modes ( 164 ), ( 166 );

wherein the vaping modes ( 164 ), ( 166 ) are standard vaping mode ( 164 ) and a real time vaping mode ( 166 ); and

wherein the real time variable voltage programmable electronic cigarette ( 110 ) is configured to a selected vaping mode ( 164 ),( 166 ) by way of the computer application ( 162 ) or by way of a sequence of movements applied through the joystick ( 132 ).

23. The method of claim 22 , wherein vaping profile ( 156 ) is in standard mode ( 164 ) when the joystick ( 132 ) is pushed center, up or down and wherein the vaping profile is in real time vaping mode ( 166 ) when the joystick ( 132 ) is pushed up down or center while the electronic cigarette ( 110 ) is in standard vaping mode ( 164 ).

24. The method of claim 18 , wherein the atomizer connector ( 118 ) is a universal atomizer connector.

Continuity (2)
Provisional Application 61723956 · Nov 8, 2012
Related Publication 20140123990A1 · May 8, 2014