E-cigarette actuator
A device having a cavity configured to receive or to hold an e-cigarette, which includes a push-hold button to actuate vapor generation and/or formation. The device further comprises an automatic plunger capable of pressing the push-hold button based upon a command. The plunger may receive the command from a controller or alternatively from the airflow caused by the puff. A mechanism configured for positioning the automatic plunger proximate to the push-hold button is also incorporated into the device.
1 . An actuator system comprising:
a housing;
a cavity configured to hold an e-cigarette comprises a push-hold button, the push button being configured to actuate a heating element of the e-cigarette for initiating vapor formation;
an automatic plunger configured for pressing the push-hold button upon receiving a command from a controller; and
a mechanism configured for positioning the automatic plunger proximate to the said push-hold button.
2 . The actuator system of claim 1 , and further comprising:
a sensor configured to sense the movement of air within the housing and to generate a signal indicative of air movement; and
wherein the controller is configured to actuate the automatic plunger to press the push-hold button upon receiving the signal indicative of air movement.
3 . The actuator system of claim 1 , wherein the plunger is configured for movement and wherein said movement is in the range of approximately 0.2 mm to 10 mm.
4 . The actuator system of claim 1 , and further comprising a mechanism configured to utilize a signal external to the device to actuate the plunger.
5 . A method of actuating a device for vapor formation comprising:
providing a housing having a cavity configured to hold an e-cigarette comprising a push-hold button configured to actuate a heating element for vapor formation;
positioning the e-cigarette in the cavity;
providing an automatic plunger configured for pressing the push-hold button upon receiving a command from a controller; and
wherein the device further comprises a mechanism configured for positioning the automatic plunger proximate to the said push-hold button.
6 . The method of claim 5 , and further comprising:
generating a signal indicative of air movement by providing a sensor configured to sense the movement of air within the device;
transmitting the signal from the sensor to the controller; and
transmitting a signal to the automatic plunger and actuating the automatic plunger for generating vapor formation.
7 . The method of claim 5 , wherein the plunger is configured for movement and wherein said movement is in the range of approximately 0.2 mm to 10 mm.
8 . The method of claim 5 and further comprising generating a signal external to the device and transmitting the signal to the controller for actuating the automatic plunger for generating vapor formation.
9 . The method of claim 5 and generating vapor for a duration of a puff.