IP Library Granted Patent US 10,201,185
Granted Patent B2
US 10,201,185 · App. 14/710,136 · Granted Feb 12, 2019

Vaporizer device

Inventors: Andrew L. Bleloch (Redwood City, CA); Neeraj S. Bhardwaj (Redwood City, CA); Gabriel Brown (Palo Alto, CA)
Assignee: Loto Labs, Inc.
A24F47/008A61M11/042A61M15/06F22B1/281H05B6/06H05B6/108A61L9/037A61M2205/3368A61M2205/3375A61M2205/3569A61M2205/3592A61M2205/50A61M2205/505A61M2205/584A61M2205/8206
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Quick Facts
Patent No.
US 10,201,185
App. No.
14/710,136
Granted
Feb 12, 2019
Kind
B2
Abstract

A vaporizer device includes a cartridge configured to hold a vaporizable substance, a wick element coupled to the cartridge, where the wick element is configured to contact the vaporizable substance located in the cartridge and an induction heating element inductively coupled to the wick element, where the wick element is configured to heat the vaporizable substance based on induction heating of the wick element by the induction heating element.

Claims (45)

1. A vaporizer device comprising:

a housing;

a cartridge located within the housing and configured to hold a vaporizable substance;

a wick element located within the cartridge, wherein the wick element is configured to contact the vaporizable substance located in the cartridge, and wherein the wick element comprises a susceptor material;

an induction heating element located within the housing and inductively coupled to the wick element and not in contact with the wick element, wherein the cartridge is positioned such that the induction heating element is around at least a portion of the cartridge, and wherein the wick element is at least partially surrounded by the induction heating element, wherein the induction heating element comprises an induction coil; and

a power source electrically connected to the induction heating element;

wherein the wick element is configured to heat the vaporizable substance based on induction heating of the wick element by the induction heating element;

wherein the cartridge comprises a reservoir, and wherein the wick element is contained within the reservoir and is configured to transfer the vaporizable substance from the reservoir based on a capillary action of the wick element; and

wherein the induction heating element receives an alternating current from the power source and creates an electromagnetic induction field around the wick element, and wherein the wick element generates heat based on the electromagnetic induction field.

2. The vaporizer device of claim 1 , further comprising an insulating member disposed between the wick element and the induction heating element.

3. The vaporizer device of claim 2 , wherein the induction coil is disposed about the insulating member.

4. The vaporizer device of claim 3 , wherein the insulating member defines an inside surface and wherein the wick element is positioned adjacent to the inside surface of the insulating member.

5. The vaporizer device of claim 1 , wherein the wick element comprises a magnetic material or a metallic conductor.

6. The vaporizer device of claim 5 , wherein the wick element has a material configuration, wherein the material configuration is selected from the group consisting of a mesh, a plurality of strands, a porous solid material, and any combination thereof.

7. The vaporizer device of claim 1 , wherein the induction heating element is configured to heat the wick element to cause the vaporizable substance to produce a vapor for inhalation by a human being when the vaporizable substance is heated to a predetermined temperature.

8. The vaporizer device of claim 7 , wherein the vaporizable substance is selected from the group consisting of a liquid, a wax, a plant material, and any combination thereof.

9. The vaporizer device of claim 1 , further comprising at least one additional heating element.

10. The vaporizer device of claim 9 , wherein the at least one additional heating element is a resistive heating element or another induction heating element.

11. The vaporizer device of claim 1 , further comprising a processor coupled to the induction heating element, wherein the processor is configured to control operation of the induction heating element.

12. The vaporizer device of claim 11 , wherein the processor is programmed to restrict operation of the induction heating element to a specific user of the vaporizer device.

13. The vaporizer device of claim 12 , wherein the processor is programmed to cause the induction heating element to apply a predetermined heating profile to the vaporizable substance.

14. The vaporizer device of claim 13 , wherein the predetermined heating profile is based on the vaporizable substance.

15. A vaporizer device comprising:

a housing;

a cartridge located within the housing and configured to hold a vaporizable substance;

a wick element comprising a susceptor material, wherein the wick element is contained within the cartridge, wherein the wick element is configured to contact the vaporizable substance held in the cartridge, and wherein the wick element is configured to heat the vaporizable substance based on induction heating of the wick element;

an induction heating element located within the housing not in contact with the wick element, wherein the cartridge is positioned such that the induction heating element is around at least a portion of the cartridge, and wherein the wick element is at least partially surrounded by the induction heating element, wherein the induction heating element comprises an induction coil; and

a power source coupled to the induction heating element;

wherein the induction heating element receives an alternating current from the power source and creates an electromagnetic induction field around the wick element, and wherein the wick element generates heat based on the electromagnetic induction field.

16. The vaporizer device of claim 15 , further comprising a processor coupled to the induction heating element, wherein the processor is programmed to control operation of the induction heating element.

17. The vaporizer device of claim 16 , wherein the processor is programmed to cause the induction heating element to apply a predetermined heating profile to the vaporizable substance.

18. The vaporizer device of claim 15 , wherein the cartridge comprises content information associated with the cartridge.

19. The vaporizer device of claim 18 , further comprising a processor coupled to the induction heating element to control operation of the induction heating element, wherein the processor is programmed to:

read the content information of the cartridge;

cause the induction heating element to apply a predetermined heating profile to the vaporizable substance according to the content information of the cartridge.

20. The vaporizer device of claim 15 , wherein the vaporizable substance is selected from the group consisting of a liquid, a wax, a plant material, and any combination thereof.

21. A vaporizer device comprising:

a housing;

a cartridge located within the housing and configured to hold a vaporizable substance;

a wick element comprising a susceptor material, wherein the wick element is contained within the cartridge and wherein the wick element is configured to heat the vaporizable substance based on induction heating of the wick element;

an induction heating element located within the housing not in contact with the wick element, wherein the cartridge is positioned such that the induction heating element is around at least a portion of the cartridge; and

a power source coupled to the induction heating element; and

a valve coupled to the cartridge, wherein the valve is configured to control airflow;

wherein the cartridge comprises a reservoir, and wherein the wick element is contained within the reservoir and is configured to transfer the vaporizable substance from the reservoir based on a capillary action of the wick element; and

wherein the induction heating element receives an alternating current from the power source and creates an electromagnetic induction field around the wick element, and wherein the wick element generates heat based on the electromagnetic induction field.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 26, 2022
From: LOTO LABS, INC.
To: PHILIP MORRIS PRODUCTS, S.A.
Reel/Frame 061542/0630 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 10, 2017
From: BLELOCH, ANDREW L.; BHARDWAJ, NEERAJ S.; BROWN, GABRIEL
To: LOTO LABS, INC.
Reel/Frame 044091/0744 →
Continuity (2)
Provisional Application 61991757 · May 12, 2014
Related Publication 20150320116A1 · Nov 12, 2015
Cited By (5)
US 12,239,782 US 12,382,993 US 12,520,880 US 12,660,855 US 12,714,145