WIRELESSLY COMMUNICATING BEVERAGE PROBE
A disclosed bottle opener includes a probe and a temperature sensor circuit coupled to the probe. The temperature sensor circuit is configured to measure a temperature of contents of a bottle. The bottle opener includes a corkscrew coupled to the body and configured to remove a stopper from the bottle. The bottle opener includes a communication circuit configured and arranged to wirelessly communicate with an external electronic device. The bottle opener includes a power circuit configured and arranged to supply power to the communication circuit, and the temperature sensor circuit.
1 . A probe configured to be received in an opening of a beverage container, comprising:
a stopper configured and arranged to fit at least partially through the opening of the beverage container after a native stopper has been removed from the beverage container, the stopper being configured and arranged to prevent a liquid in the container from flowing through the opening of the beverage container;
a communication circuit configured and arranged to wirelessly communicate with an external electronic device;
a temperature sensor circuit configured and arranged to measure a temperature of the beverage container; and
a power source configured and arranged to supply power to the communication circuit.
2 . The probe of claim 1 , further comprising a display configured and arranged to display the measured temperature.
3 . The probe of claim 2 , further comprising:
a housing in which the display is disposed, wherein the housing is rotatably coupled to the stopper via a bearing; and
a counterweight configured and arranged to maintain a relative stationary orientation of the housing while the housing rotates with respect to the stopper.
4 . The probe of claim 1 , wherein the communication circuit is configured and arranged to send a signal to the external electronic device in response to the temperature sensor circuit measuring a predetermined temperature.
5 . The probe of claim 1 , wherein the communication circuit is configured and arranged to trigger deactivation of an operation of the external electronic device.
6 . The probe of claim 1 , further comprising a lever that engages an articulable seal to prevent the liquid in the beverage container from flowing through the opening.
7 . The probe of claim 1 , wherein the temperature sensor circuit is configured to measure the temperature of the liquid by way of direct physical contact.
8 . An apparatus, comprising:
a housing;
a temperature sensor circuit coupled to the housing and configured to measure a temperature of a liquid in a bottle;
a corkscrew coupled to the housing and configured to remove a stopper from the bottle;
a communication circuit configured to wirelessly communicate with an external electronic device; and
a power circuit configured to supply power to the communication circuit and the temperature sensor circuit.
9 . The apparatus of claim 8 , wherein the temperature sensor circuit is configured to measure the temperature of the liquid while a stopper is in the bottle.
10 . The apparatus of claim 8 , wherein the temperature sensor circuit is configured to measure the temperature of the liquid while the corkscrew engages the stopper in the bottle.
11 . The apparatus of claim 8 , wherein the temperature sensor circuit is integral with the corkscrew.
12 . The apparatus of claim 8 , wherein:
the corkscrew is hollow;
the temperature sensor circuit is coupled to an end of the corkscrew; and
a connection between the temperature sensor circuit and the power circuit that passes through the corkscrew.
13 . The apparatus of claim 8 , further comprising a retainer hingedly coupled to the housing configured to:
receive a neck of the bottle; and
secure the neck of the bottle.
14 . A device to be received in an opening of a beverage container, comprising:
a probe configured to fit at least partially through the opening of the beverage container;
a communication circuit configured to wirelessly communicate with an external electronic device;
a temperature sensor circuit configured to measure a temperature of the beverage container;
a power circuit configured to supply power to the communication circuit; and
a lock including at least one displaceable arm to lock the probe to the beverage container, the lock being adjustable from a first unlocked condition, wherein the at least one displaceable arm is disengaged from the beverage container and the device can be removed from the beverage container, to a second, locked condition, wherein the at least one displaceable arm is engaged with the beverage container.
15 . The device of claim 14 , wherein the lock engages a radially outwardly extending flange of the beverage container.
16 . The device of claim 14 , wherein the lock engages a radially inwardly facing surface of the beverage container.
17 . The device of claim 14 , wherein the lock engages includes an inner surface of the beverage container.
18 . The device of claim 14 , wherein the lock engages a bottom of the beverage container.
19 . The device of claim 18 , wherein the lock engages a ridge or boss on a bottom of the beverage container.
20 . The device of claim 18 , wherein the lock engages an indentation formed on a bottom of the beverage container.