HOT-WIRE CONTROL FOR AN ELECTRONIC CIGARETTE
An electronic cigarette (“e-Cig”) may include functionality for monitoring and controlling the thermal properties of the e-Cig. The system and method described herein may monitor a temperature based on a resistor (i.e. hot wire) near the wick and model the thermal cycle of an e-Cig. The model can be used for controlling the temperature of the c-Cig and preventing burning. The temperature control may dictate optimal conditions for atomization and smoke generation in an e-Cig while avoiding hotspots and burning to the atomizer or cartomizer.
1 - 21 . (canceled)
22 . An electronic device comprising:
a heating element; and
a controller configured to
measure a resistance of the heating element during a first time interval,
determine a temperature of the heating element based on the resistance of the heating element,
compute a heat transfer time constant of the heating element based on the temperature of the heating element, and
determine whether to output an alert, shutdown the electronic device, or both output the alert and shutdown the electronic device, based on the temperature of the heating element and the heat transfer time constant.
23 . The electronic device of claim 22 , wherein the heating element is a heating coil.
24 . The electronic device of claim 22 , wherein
the heating element is configured to heat a vapor-forming material to generate a vapor; and
the controller is configured to
determine whether the vapor-forming material is depleted based on the temperature of the heating element, and
output the alert, shut down the electronic device, or both output the alert and shut down the electronic device, in response to determining that the vapor-forming material is depleted.
25 . The electronic device of claim 24 , wherein the vapor-forming material is a liquid formulation.
26 . The electronic device of claim 25 , wherein the heating element is a heating coil.
27 . The electronic device of claim 26 , further comprising:
a reservoir configured to hold the liquid formulation; and
a wick configured to draw the liquid formulation from the reservoir; wherein
the heating coil is wound around the wick, and configured to heat the liquid formulation drawn from the reservoir.
28 . The electronic device of claim 27 , wherein windings of the heating coil around the wick are spaced apart unevenly along a length of the wick.
29 . The electronic device of claim 24 , wherein the controller is configured to
apply a heating current to the heating element to heat the vapor-forming material during a plurality of heating time intervals, and
cease application of the heating current to the heating element during the first time interval.
30 . A method of operating an electronic device including a heating element and a controller, the method comprising:
measuring, by the controller, a resistance of the heating element during a first time interval;
determining, by the controller, a temperature of the heating element based on the resistance of the heating element;
computing, by the controller, a heat transfer time constant of the heating element based on the temperature of the heating element; and
determining, by the controller, whether to output an alert, shutdown the electronic device, or both output the alert and shutdown the electronic device, based on the temperature of the heating element and the heat transfer time constant.
31 . The method of claim 30 , further comprising:
heating, by the heating element, a vapor-forming material; and wherein the determining includes
determining whether the vapor-forming material is depleted based on the temperature of the heating element, and
outputting the alert, shutting down the electronic device, or both outputting the alert and shutting down the electronic device in response to determining that the vapor-forming material is depleted.
32 . The method of claim 31 , wherein the vapor-forming material is a liquid formulation.
33 . The method of claim 31 , further comprising:
applying a heating current to the heating element to heat the vapor-forming material during a plurality of heating time intervals, and
ceasing application of the heating current to the heating element during the first time interval.
34 . An electronic device comprising:
a reservoir configured to hold a liquid formulation;
a wick configured to draw the liquid formulation from the reservoir; and
a heating coil wound around the wick, and configured to heat the liquid formulation drawn from the reservoir, wherein
windings of the heating coil around the wick are spaced apart unevenly along a length of the wick.
35 . The electronic device of claim 34 , further comprising:
a controller configured to
measure a resistance of the heating coil during a first time interval,
determine a temperature of the heating coil based on the resistance of the heating coil,
compute a heat transfer time constant of the heating coil based on the temperature of the heating coil, and
determine whether to output an alert, shutdown the electronic device, or both output the alert and shutdown the electronic device, based on the temperature of the heating coil and the heat transfer time constant.
36 . The electronic device of claim 35 , wherein
the controller is configured to
determine whether the liquid formulation is depleted based on the temperature of the heating coil, and
output the alert, shut down the electronic device, or both output the alert and shut down the electronic device, in response to determining that the liquid formulation is depleted.
37 . The electronic device of claim 35 , wherein the controller is configured to
apply a heating current to the heating coil to heat the liquid formulation during a plurality of heating time intervals, and
cease application of the heating current to the heating coil during the first time interval.