IP Library › Granted Patent US 11,517,053
Granted Patent B2
US 11,517,053 · App. 16/723,505 · Granted Dec 6, 2022

Pressure sensing for an aerosol delivery device

Inventors: Rajesh Sur (Winston-Salem, NC); Eric T. Hunt (Pfafftown, NC); Stephen B. Sears (Siler City, NC)
Assignee: RAI Strategic Holdings, Inc.
A24F40/60A24F40/50A24F40/51A61B5/087A61M15/06H01M10/0525H05B1/0244A24F40/10A61B2562/028A61B2562/0247A61M2205/3331A61M2230/40H01M2220/30H02J7/345
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,517,053
App. No.
16/723,505
Granted
Dec 6, 2022
Kind
B2
Abstract

An aerosol delivery device is provided. The aerosol delivery device comprises a control component and a digital pressure sensor. The digital pressure sensor is configured to measure a pressure imposed thereon, and generate a corresponding signal that indicates the pressure so measured. The control component or the digital pressure sensor is further configured to control at least one functional element of the aerosol delivery device based on the pressure indicated by the corresponding signal, or a condition of the aerosol delivery device or a user thereof determined from the corresponding signal. Control of the at least one functional element includes output of the pressure or the condition for presentation by a display.

Claims (34)

1. An aerosol delivery device comprising:

at least one housing enclosing a reservoir configured to retain an aerosol precursor composition;

a control component configured to operate in an active mode in which the control component is configured to cause the aerosol delivery device to produce an aerosol from the aerosol precursor composition; and

a digital pressure sensor configured to measure a pressure imposed thereon, and generate a corresponding signal that indicates the pressure so measured; and

wherein the control component or the digital pressure sensor is further configured to determine a condition of the aerosol delivery device or a user thereof from the corresponding signal, and control at least one functional element of the aerosol delivery device based on the pressure indicated by the corresponding signal, or the condition of the aerosol delivery device or the user thereof, wherein the digital pressure sensor includes variometer functionality, and the condition of the aerosol delivery device or the user thereof includes a rate of altitude change of the aerosol delivery device.

2. The aerosol delivery device of claim 1 , wherein the digital pressure sensor includes spirometer functionality, and the condition of the aerosol delivery device or the user thereof includes a breathing condition of the user.

3. The aerosol delivery device of claim 1 , wherein control of the at least one functional element further includes disabling a component of the aerosol delivery device.

4. The aerosol delivery device of claim 1 , wherein the digital pressure sensor is or includes a piezoresistive pressure sensor or a micro-electromechanical system-based (MEMS) capacitive pressure sensor wherein, in at least one instance, the piezoresistive pressure sensor having a wheatstone bridge circuit.

5. The aerosol delivery device of claim 1 further comprising a rechargeable power source configured to power the digital pressure sensor and including a lithium ion battery (LiB), thin-film solid state battery (SSB) or supercapacitor.

6. The aerosol delivery device of claim 1 , wherein the digital pressure sensor is selectively operable in a quiescent mode in which the digital pressure sensor is disabled, or an active or a continuous mode in which the digital pressure sensor is configured to obtain respectively a single measurement or multiple measurements of the pressure.

7. The aerosol delivery device of claim 1 , wherein in at least one instance in which the digital pressure sensor is operable in the continuous mode, the digital pressure sensor is configured to obtain the multiple measurements of the pressure at a predefined oversampling rate.

8. The aerosol delivery device of claim 1 , wherein in at least one instance in which the digital pressure sensor is operable in the continuous mode, the digital pressure sensor is configured to continuously cycle between the active mode and the quiescent mode.

9. An aerosol delivery device comprising:

at least one housing enclosing a reservoir configured to retain an aerosol precursor composition;

a control component configured to operate in an active mode in which the control component is configured to cause the aerosol delivery device to produce an aerosol from the aerosol precursor composition; and

a digital pressure sensor configured to measure a pressure imposed thereon, and generate a corresponding signal that indicates the pressure so measured, wherein the digital pressure sensor is selectively operable in a quiescent mode in which the digital pressure sensor is disabled, or an active or a continuous mode in which the digital pressure sensor is configured to obtain respectively a single measurement or multiple measurements of the pressure; and

wherein the control component or the digital pressure sensor is further configured to control at least one functional element of the aerosol delivery device based on the pressure indicated by the corresponding signal, or a condition of the aerosol delivery device or a user thereof determined from the corresponding signal.

10. The aerosol delivery device of claim 9 , wherein control of the at least one functional element further includes disabling a component of the aerosol delivery device.

11. The aerosol delivery device of claim 9 , wherein in at least one instance in which the digital pressure sensor is operable in the continuous mode, the digital pressure sensor is configured to obtain the multiple measurements of the pressure at a predefined oversampling rate.

12. The aerosol delivery device of claim 9 , wherein in at least one instance in which the digital pressure sensor is operable in the continuous mode, the digital pressure sensor is configured to continuously cycle between the active mode and the quiescent mode.

13. The aerosol delivery device of claim 9 , wherein the digital pressure sensor is or includes a piezoresistive pressure sensor or a micro-electromechanical system-based (MEMS) capacitive pressure sensor wherein, in at least one instance, the piezoresistive pressure sensor having a wheatstone bridge circuit.

14. The aerosol delivery device of claim 9 further comprising a rechargeable power source configured to power the digital pressure sensor and including a lithium ion battery (LiB), thin-film solid state battery (SSB) or supercapacitor.

15. A control body coupled or coupleable with a cartridge to form an aerosol delivery device, the cartridge containing an aerosol precursor composition, the control body comprising:

a housing; and within the housing,

a control component configured to operate in an active mode in which the control component is configured to cause the aerosol delivery device to produce an aerosol from the aerosol precursor composition; and

a digital pressure sensor configured to measure a pressure imposed thereon, and generate a corresponding signal that indicates the pressure so measured; and

wherein the control component or the digital pressure sensor is further configured to determine a condition of the aerosol delivery device or a user thereof from the corresponding signal, and control at least one functional element of the aerosol delivery device based on the pressure indicated by the corresponding signal, or the condition of the aerosol delivery device or the user thereof, wherein the digital pressure sensor includes variometer functionality, and the condition of the aerosol delivery device or the user thereof includes a rate of altitude change of the aerosol delivery device.

16. The control body of claim 15 , wherein the digital pressure sensor includes spirometer functionality, and the condition of the aerosol delivery device or the user thereof includes a breathing condition of the user.

17. The control body of claim 15 , wherein control of the at least one functional element further includes disabling a component of the aerosol delivery device.

18. The control body of claim 15 , wherein the digital pressure sensor is or includes a piezoresistive pressure sensor or a micro-electromechanical system-based (MEMS) capacitive pressure sensor wherein, in at least one instance, the piezoresistive pressure sensor having a wheatstone bridge circuit.

19. The control body of claim 15 further comprising a rechargeable power source configured to power the digital pressure sensor and including a lithium ion battery (LiB), thin-film solid state battery (SSB) or supercapacitor.

20. The control body of claim 15 , wherein the digital pressure sensor is selectively operable in a quiescent mode in which the digital pressure sensor is disabled, or an active or a continuous mode in which the digital pressure sensor is configured to obtain respectively a single measurement or multiple measurements of the pressure.

21. The control body of claim 15 , wherein in at least one instance in which the digital pressure sensor is operable in the continuous mode, the digital pressure sensor is configured to obtain the multiple measurements of the pressure at a predefined oversampling rate.

22. The control body of claim 15 , wherein in at least one instance in which the digital pressure sensor is operable in the continuous mode, the digital pressure sensor is configured to continuously cycle between the active mode and the quiescent mode.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 13, 2022
From: SUR, RAJESH; HUNT, ERIC T.; SEARS, STEPHEN B.
To: RAI STRATEGIC HOLDINGS, INC.
Reel/Frame 061074/0308 →
Continuity (2)
Continuation 15355748 · Nov 18, 2016
Related Publication 20200120986A1 · Apr 23, 2020
Cited By (1)
US 12,520,880