IP Library › Granted Patent US 11,160,309
Granted Patent B2
US 11,160,309 · App. 15/311,992 · Granted Nov 2, 2021

Aerosol-generating system comprising a cartridge with an internal air flow passage

Inventors: Oleg Mironov (Neuchatel, CH); Michel Thorens (Moudon, CH); Ihar Nikolaevich Zinovik (Peseux, CH)
Assignee: PHILIP MORRIS PRODUCTS S.A.
A24F40/465A24F40/42H05B1/0244H05B6/108A24F40/10
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Quick Facts
Patent No.
US 11,160,309
App. No.
15/311,992
Granted
Nov 2, 2021
Kind
B2
Abstract

There is provided a cartridge for an electrically heated aerosol-generating system, the electrically heated aerosol-generating system including an aerosol-generating device, the cartridge being configured to be used with the device, wherein the device includes a device housing; an inductor coil positioned in the device housing; and a power supply connected to the inductor coil and configured to provide a high-frequency oscillating current to the inductor coil; the cartridge includes a cartridge housing containing an aerosol-forming substrate, the housing having an internal surface surrounding an internal passage through which air can flow; and a susceptor element configured to heat the aerosol-forming substrate.

Claims (30)

1. A cartridge, comprising:

a cartridge housing comprising an inner wall and an outer wall, the inner wall being disposed within the outer wall and defining an internal passage through which air can flow, the inner and outer walls defining a hollow space therebetween;

an aerosol-forming substrate contained within the hollow space;

a susceptor, disposed along at least a portion of the inner wall and surrounding or spanning a portion of the internal passage, configured to heat the aerosol-forming substrate; and

a capillary material within the cartridge housing being configured to convey the aerosol-forming substrate to the susceptor,

wherein the cartridge housing is configured to be removably inserted into a cavity defined by a device housing of an aerosol-generating device, the device housing including an inductor coil disposed therein and positioned around or adjacent to the cavity and positioned outside of the cartridge when the cartridge is received in the cavity, and the aerosol-generating device further including a power supply connected to the inductor coil and being configured to provide a high-frequency oscillating current to the inductor coil, and

wherein the susceptor is fluid permeable.

2. The cartridge according to claim 1 , wherein at least a portion of the inner wall of the cartridge housing is fluid permeable.

3. The cartridge according to claim 1 , wherein the susceptor forms part or all of the inner wall.

4. The cartridge according to claim 1 , wherein the susceptor comprises a mesh, a flat spiral coil, an interior foil, fibers, a fabric, or a rod.

5. The cartridge according to claim 1 , wherein the susceptor is provided as a sheet that extends across an opening in the cartridge housing.

6. The cartridge according to claim 1 , wherein the susceptor comprises a wick extending across the internal passage.

7. The cartridge according to claim 1 , wherein a shape of the inductor coil matches a shape of the susceptor.

8. An electrically heated aerosol-generating system, comprising:

a cartridge comprising:

a cartridge housing comprising an inner wall and an outer wall, the inner wall being disposed within the outer wall and defining an internal passage through which air can flow, the inner and outer walls defining a hollow space therebetween,

an aerosol-forming substrate contained within the hollow space, and

a susceptor, disposed along at least a portion of the inner wall and surrounding or spanning a portion of the internal passage, configured to heat the aerosol-forming substrate; a device housing including an inductor coil disposed therein;

a capillary material within the cartridge housing being configured to convey the aerosol-forming substrate to the susceptor; and

a power supply connected to the inductor coil and being configured to provide a high-frequency oscillating current to the inductor coil,

wherein the susceptor is fluid permeable,

wherein the inductor coil is configured to generate a magnetic field to cause the generation of heat in the susceptor in the cartridge, and

wherein the cartridge housing is configured to be removably inserted into the device housing.

9. The electrically heated aerosol-generating system according to claim 8 ,

wherein the device housing defines a cavity configured to receive at least a portion of the cartridge, and

wherein the inductor coil is positioned within, around, or adjacent to the cavity.

10. The electrically heated aerosol-generating system according to claim 8 , wherein the inductor coil is positioned outside of the cartridge when the cartridge is received in the cavity.

11. The electrically heated aerosol-generating system according to claim 10 , wherein the inductor coil surrounds the cartridge when the cartridge is received in the cavity.

12. The electrically heated aerosol-generating system according to claim 8 , wherein the inductor coil is within the internal passage when the cartridge is received in the cavity.

13. The electrically heated aerosol-generating system according to claim 8 , wherein the system is a handheld smoking system.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 17, 2016
From: MIRONOV, OLEG; THORENS, MICHEL; ZINOVIK, IHAR NIKOLAEVICH
To: PHILIP MORRIS PRODUCTS S.A.
Reel/Frame 040357/0908 →
Priority Claims (1)
EP 14169244 · May 21, 2014 · regional
Continuity (1)
Related Publication 20170105452A1 · Apr 20, 2017
Cited By (3)
US 12,201,154 US 12,256,780 US 12,310,407