IP Library › Granted Patent US 11,707,090
Granted Patent B2
US 11,707,090 · App. 16/878,639 · Granted Jul 25, 2023

Permeable element based vaporization process and device

Inventor: David Crowe (Lake Forest Park, WA)
A24F40/44A24F40/46A24F40/485C03B19/06C03B19/066H05B3/0014H05B2203/002
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Quick Facts
Patent No.
US 11,707,090
App. No.
16/878,639
Granted
Jul 25, 2023
Kind
B2
Abstract

The present invention discloses an atomizer. The atomizer includes a concentrate reservoir volume that is in fluid communication with a concentrate vaporization assembly. The concentrate vaporization assembly includes a frit adapted to absorb concentrate from the concentrate reservoir volume. The concentrate vaporization assembly further includes a heating element adapted to heat the frit and absorbed concentrate. The atomizer further includes a vapor collection and discharge assembly including a vapor accumulation chamber in fluid communication with the frit and a vapor evacuation channel in fluid communication with the vapor accumulation chamber and in fluid communication with an egress port. The heating element is activated by a user control of a switch on a battery, which causes the concentrate contained within the frit filter to vaporize, and the user inhales resulting vapor by inhaling at the egress port of the vapor evacuation channel.

Claims (47)

1. An atomizer ( 102 ) comprising:

a concentrate reservoir volume ( 210 ) configured for holding concentrate, wherein said concentrate reservoir volume ( 210 ) is in fluid communication with a concentrate vaporization assembly, said concentrate vaporization assembly comprising:

a frit filter ( 220 ) adapted to absorb concentrate from said concentrate reservoir volume ( 210 ), and

a heating element ( 240 ) proximal to said frit filter ( 220 ), and adapted to heat said frit filter ( 220 ) and absorbed concentrate; and

a vapor collection and discharge assembly comprising:

a vapor accumulation chamber ( 245 ) in fluid communication with said frit filter ( 220 ), and

a vapor evacuation channel ( 250 ) in fluid communication with said vapor accumulation chamber and in fluid communication with an egress port ( 290 ), and

a supply port ( 230 ),

wherein said supply port ( 230 ) is in direct fluid communication with said frit filter ( 220 ) positioned such as to allow free flow of said concentrate from said concentrate reservoir volume ( 210 ) into a concentrate preheating chamber ( 270 ), and wherein said concentrate preheating chamber ( 270 ) is a cylindrical reservoir volume formed by said frit filter ( 220 ) on its lower face, and said heating element ( 240 ) at its upper face.

2. The atomizer ( 102 ) of claim 1 , wherein said frit filter ( 220 ) is sintered glass.

3. The atomizer ( 102 ) of claim 2 , wherein said frit filter ( 220 ) is sintered quartz glass.

4. The atomizer ( 102 ) of claim 1 , wherein said heating element ( 240 ) is embedded within said frit filter ( 220 ).

5. The atomizer ( 102 ) of claim 4 , wherein said frit filter ( 220 ) is in a shape of a hollow cylinder.

6. The atomizer ( 102 ) of claim 5 , wherein said frit filter ( 220 ) has a minimum feature radius of 1 mm.

7. The atomizer ( 102 ) of claim 1 , wherein said concentrate preheating chamber ( 270 ) is in proximal to said frit filter ( 220 ) for receiving said concentrate from said concentrate reservoir volume ( 210 ).

8. The atomizer ( 102 ) of claim 1 , wherein said heating element ( 240 ) is helical in shape and positioned proximally and coaxially with said frit filter ( 220 ).

9. The atomizer ( 102 ) of claim 1 , wherein said heating element ( 240 ) is configured as a coil, captured by a glass plate ( 260 ).

10. The atomizer ( 102 ) of claim 1 , wherein said heating element ( 240 ) is potted and freely exposed or embedded within said concentrate preheating chamber ( 270 ) such that heat output from said heating element ( 240 ) is transferred to said frit filter ( 220 ).

11. A vaporizer ( 100 ) comprising:

an atomizer ( 102 );

a battery ( 110 ) adapted to supply electrical current to said atomizer ( 100 );

wherein, said atomizer ( 100 ) comprising

a concentrate reservoir volume ( 210 ) configured for holding concentrate, wherein said concentrate reservoir volume ( 210 ) is in fluid communication with a concentrate vaporization assembly, said concentrate vaporization assembly comprising:

a frit filter ( 220 ) adapted to absorb concentrate from said concentrate reservoir volume ( 210 ), and

a heating element ( 240 ) proximal to said frit filter ( 220 ), and adapted to heat said frit filter ( 220 ) and absorbed concentrate; and

a vapor collection and discharge assembly comprising:

a vapor accumulation chamber ( 245 ) in fluid communication with said frit filter, and

a vapor evacuation channel ( 250 ) in fluid communication with said vapor accumulation chamber and in fluid communication with an egress port ( 290 ), wherein said heating element ( 240 ) is activated by a user control of a switch on said battery ( 110 ), which causes said concentrate contained within said frit filter ( 220 ) to vaporize, and said user inhales resulting vapor by inhaling at said egress port ( 290 ) of said vapor evacuation channel ( 250 ), and

a supply port ( 230 ),

wherein said supply port ( 230 ) is in direct fluid communication with said frit filter ( 220 ) positioned such as to allow free flow of said concentrate from said concentrate reservoir volume ( 210 ) into a concentrate preheating chamber ( 270 ), and wherein said concentrate preheating chamber ( 270 ) is a cylindrical reservoir volume formed by said frit filter ( 220 ) on its lower face, and said heating element ( 240 ) at its upper face.

12. The vaporizer ( 100 ) of claim 11 , wherein said frit filter ( 220 ) is sintered glass.

13. The vaporizer ( 100 )) of claim 11 , wherein said frit filter ( 220 ) is sintered quartz glass.

14. The vaporizer ( 100 ) of claim 11 , wherein said heating element ( 240 ) is embedded within said frit filter ( 220 ).

15. The vaporizer ( 100 ) of claim 14 , wherein said frit filter ( 220 ) is in a shape of a hollow cylinder.

16. The vaporizer ( 100 ) of claim 15 , wherein said frit filter ( 220 ) has a minimum feature radius of 1 mm.

17. The vaporizer ( 100 ) of claim 11 , wherein said concentrate preheating chamber ( 270 ) is in proximal to said frit filter ( 220 ) for receiving said concentrate from said concentrate reservoir volume ( 210 ).

18. The vaporizer ( 100 ) of claim 11 , wherein said heating element ( 240 ) is at least helical in shape and positioned proximally and coaxially with said frit filter ( 220 ), a coil, captured by a glass plate ( 260 ), or

potted and freely exposed or embedded within said concentrate preheating chamber ( 270 ) such that heat output from said heating element ( 240 ) is transferred to said frit filter ( 220 ).

19. An atomizer comprising:

a concentrate reservoir volume ( 210 ) configured for holding concentrate, wherein said concentrate reservoir volume ( 210 ) is in fluid communication with a concentrate vaporization assembly, said concentrate vaporization assembly comprising:

a frit filter ( 220 ) adapted to absorb concentrate from said concentrate reservoir volume ( 210 ), and

a heating element ( 240 ) proximal to said frit filter ( 220 ), and adapted to heat said frit filter ( 220 ) and absorbed concentrate; and

a vapor collection and discharge assembly comprising:

a vapor evacuation channel ( 250 ) in fluid communication with an egress port ( 290 ), wherein said heating element ( 240 ) is activated by a user control of a switch on said battery ( 110 ), which causes said concentrate contained within said frit filter ( 220 ) to vaporize, and said user inhales resulting vapor by inhaling at said egress port ( 290 ) of said vapor evacuation channel ( 250 ), and

a supply port ( 230 ),

wherein said supply port ( 230 ) is in direct fluid communication with said frit filter ( 220 ) positioned such as to allow free flow of said concentrate from said concentrate reservoir volume ( 210 ) into a concentrate preheating chamber ( 270 ), and wherein said concentrate preheating chamber ( 270 ) is a cylindrical reservoir volume formed by said frit filter ( 220 ) on its lower face, and said heating element ( 240 ) at its upper face.

20. The vaporization process of claim 19 , wherein said frit filter ( 220 ) absorption of said concentrate through capillary action is induced by reduction of concentrate viscosity through application of heat to said concentrate.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 18, 2026
From: VUBER TECHNOLOGIES, LLC
To: 9FD, LLC
Reel/Frame 073824/0175 →
Continuity (4)
Continuation In Part 15860641 · Jan 2, 2018
Provisional Application 62593141 · Nov 30, 2017
Provisional Application 62543316 · Aug 9, 2017
Related Publication 20200281272A1 · Sep 10, 2020