IP Library › Granted Patent US 10,483,781
Granted Patent B2
US 10,483,781 · App. 16/375,268 · Granted Nov 19, 2019

Electrically heated aerosol-generating system

Inventor: Raphael Holzherr (Fontaines, CH)
Assignee: PHILIP MORRIS PRODUCTS S.A.
H02J7/007A24F47/008H02J7/0008H02J7/0047H02J7/0088H05B1/0244H02J7/0004H02J7/0091H05B2203/021
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Quick Facts
Patent No.
US 10,483,781
App. No.
16/375,268
Granted
Nov 19, 2019
Kind
B2
Abstract

A method of controlling an electrical system is provided, the electrical system including a primary charging device including a first rechargeable power supply, and a portable device including a second rechargeable power supply, the method including monitoring an ambient temperature adjacent the primary charging device, determining a charging current for charging the first rechargeable power supply of the primary charging device, in dependence on the ambient temperature, and charging the first rechargeable power supply of the primary charging device at the determined charging current. There is also provided a system and device for performing the method.

Claims (64)

1. A method of controlling an electrical system, the electrical system comprising a primary charging device comprising a first rechargeable power supply, and a portable device comprising a second rechargeable power supply, the method comprising:

monitoring an ambient temperature adjacent the primary charging device;

determining a charging current, for charging the first rechargeable power supply of the primary charging device, in dependence on the ambient temperature; and

charging the first rechargeable power supply of the primary charging device at the determined charging current,

wherein:

when the ambient temperature is within a first predetermined temperature range, the charging current is less than about 0.1 C,

when the ambient temperature is within a second predetermined temperature range, the charging current is greater than about 0.1 C, and

when the ambient temperature is above a predetermined temperature, preventing the charging of the first rechargeable power supply.

2. The method according to claim 1 , further comprising, when the first rechargeable power supply of the primary charging device is being charged, indicating to a user what charging current is being provided to the first rechargeable power supply.

3. The method according to claim 1 , further comprising:

determining a discharging current for the first rechargeable power supply of the primary charging device, for charging the second rechargeable power supply of the portable device; and

charging the second rechargeable power supply of the portable device at the determined discharging current,

wherein:

when the ambient temperature is within a third predetermined temperature range, the discharging current is between about 0.1 C and about 0.3 C;

when the ambient temperature is within a fourth predetermined temperature range, the discharging current is between about 0.8 C and about 1.2 C; and

when the ambient temperature is above a pre-determined temperature, preventing the discharging of the first rechargeable power supply.

4. The method according to claim 3 , further comprising, when the first rechargeable power supply of the primary charging device is being discharged, indicating to a user what discharging current is being provided to the second rechargeable power supply of the portable device.

5. The method according to claim 1 , further comprising:

monitoring the ambient temperature adjacent the portable device; and

providing a charging current to the second rechargeable power supply of the portable device for recharging the second rechargeable power supply, in dependence on the ambient temperature,

wherein:

when the ambient temperature adjacent the portable device is within a predetermined temperature range, providing a charging current of about 10 C to the second rechargeable power supply, and

when the ambient temperature adjacent the portable device is outside the predetermined temperature range, preventing the charging current from being supplied to the second rechargeable power supply.

6. The method according to claim 1 , wherein the monitoring the ambient temperature is performed with a frequency of about once per minute to about 5 times per minute.

7. The method according to claim 6 , wherein the determining a charging current is performed in dependence on a weighted average of the monitored ambient temperature.

8. A method of controlling a portable device of an electrical system, the portable device comprising an electrically heated aerosol-generating device configured to receive an aerosol-generating substrate, the device comprising a rechargeable power supply and at least one electrical heating element, the method comprising:

monitoring an ambient temperature adjacent the electrically heated aerosol-generating device; and

providing power to the at least one electrical heating element from the rechargeable power supply in dependence on the ambient temperature adjacent the electrically heated aerosol-generating device,

wherein:

when the ambient temperature adjacent the electrically heated aerosol-generating device is within a predetermined temperature range, providing the power to the at least one electrical heating element, and

when the ambient temperature adjacent the electrically heated aerosol-generating device is outside the predetermined temperature range, preventing the power from being supplied to the at least one electrical heating element.

9. An electrical system, comprising:

a portable device comprising a first rechargeable power supply; and

a primary charging device configured to receive the portable device, the primary charging device comprising:

a cavity configured to receive the portable device,

a second rechargeable power supply configured to charge the first rechargeable power supply of the portable device,

a temperature sensor configured to sense an ambient temperature adjacent the primary charging device, and

a controller configured to control the supply of power to the second rechargeable power supply from an external power source to recharge the second rechargeable power supply, in dependence on the ambient temperature adjacent the primary charging device,

wherein:

when the ambient temperature adjacent the primary charging device is within a first predetermined range, the controller is configured to provide a charging current of less than about 0.1 C,

when the ambient temperature adjacent the primary charging device is within a second predetermined range, the controller is configured to provide a charging current of greater than about 0.1 C, and

when the ambient temperature adjacent the primary charging device is above a predetermined temperature, preventing the charging of the second rechargeable power supply.

10. The system according to claim 9 , the primary charging device further comprising an indicator configured to indicate to a user what charging current is being provided to the second rechargeable power supply, when the second rechargeable power supply of the primary charging device is being charged.

11. The system according to claim 9 ,

wherein the primary charging device controller is further configured to control the supply of power from the second rechargeable power supply to the portable device to recharge the first rechargeable power supply, and

wherein:

when the ambient temperature adjacent the primary charging device is within a third predetermined temperature range, the controller is further configured to provide a discharging current between about 0.1 C and about 0.3 C to the first rechargeable power supply of the portable device,

when the ambient temperature adjacent the primary charging device is within a fourth predetermined temperature range, the controller is further configured to provide a discharging current between about 0.8 C and about 1.2 C to the first rechargeable power supply of the portable device, and

when the ambient temperature adjacent the primary charging device is above a predetermined temperature, the controller is further configured to prevent discharging of the second rechargeable power supply.

12. The system according to claim 11 , the primary charging device further comprising an indicator configured to indicate to a user what discharging current is being provided to the first rechargeable power supply of the portable device when the second rechargeable power supply of the primary charging device is being discharged.

13. The system according to claim 9 , the portable device further comprising another temperature sensor configured to sense an ambient temperature adjacent the portable device,

wherein the primary charging device controller is further configured to control the supply of power from the second rechargeable power supply to the first rechargeable power supply to recharge the first rechargeable power supply in dependence on the ambient temperature adjacent the portable device, and

wherein:

when the ambient temperature adjacent the portable device is within a predetermined temperature range, the controller is further configured to provide a charging current of about 10 C to the first rechargeable power supply, and

when the ambient temperature adjacent the portable device is outside the predetermined temperature range, the controller is further configured to prevent the charging current from being supplied to the first rechargeable power supply.

14. A portable device of an electrical system, wherein the portable device is an electrically heated aerosol-generating device configured to receive an aerosol-generating substrate, comprising:

a heating element;

a rechargeable power supply configured to supply power to the heating element;

a temperature sensor configured to sense an ambient temperature adjacent the electrically heated aerosol-generating device; and

a controller configured to control a supply of power from the rechargeable power supply to the heating element in dependence on the ambient temperature adjacent the electrically heated aerosol-generating device,

wherein:

when the ambient temperature adjacent the electrically heated aerosol-generating device is within a predetermined temperature range, the controller is further configured to supply power to the heating element, and

when the ambient temperature adjacent the electrically heated aerosol-generating device is outside the predetermined temperature range, the controller is further configured to prevent power from being supplied to the heating element.

15. The system according to claim 14 , further comprising an indicator configured to indicate to a user when the ambient temperature adjacent the device is outside the predetermined temperature range.

Priority Claims (1)
EP 14166694 · Apr 30, 2014 · regional
Continuity (2)
Division 15303439
Related Publication 20190252888A1 · Aug 15, 2019
Cited By (3)
US 12,245,638 US 12,302,459 US 12,520,880