IP Library Patent Application 13960560
Patent Application
App. No. 13/960,560

WIRELESS ELECTRICAL TEMPERATURE REGULATOR FOR FOOD AND BEVERAGES

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Quick Facts
Patent No.
US None
App. No.
13/960,560
Abstract

A cup or plate for heating food or beverages is disclosed. The cup/plate contains a heating component, which may keep consumable goods, such as food and beverages at a desired temperature. An insulated external layer may be placed between the heating component and the external portion of the cup/plate. A wireless power receiver may be coupled to the heater component to receive an electrical power source and transfer it to the heater component. A transmitter element may form pockets of energy at the location of the different receivers to be used as power sources.

Claims (30)

1 . A method for wireless electrical temperature regulation, comprising the steps of:

Emitting power RF waves from a transmitter generating pockets of energy through pocket-forming to converge in 3-d space;

coupling receivers to a food or beverage receptacle;

capturing the pockets of energy at the receivers; and

powering or charging a heating or cooling regulating component connected to the receiver within the receptacle.

2 . The method for wireless electrical temperature regulation of claim 1 , wherein the heating regulating component is an electrical resistance to dissipate electrical energy as heat within the receptacle.

3 . The method for wireless electrical temperature regulation of claim 1 , wherein the receptacle is a cup for heating a beverage.

4 . The method for wireless electrical temperature regulation of claim 1 , wherein the container is a plate for heating the food.

5 . The method for wireless electrical temperature regulation of claim 1 , wherein the cooling regulating component is a thermoelectric cooler within the receptacle operated by the Peltier effect.

6 . The method for wireless electrical temperature regulation of claim 1 , wherein the receiver communicates to the transmitter through short RF signals sent through antenna elements within the receiver to regulate heating or cooling power.

7 . The method for wireless electrical temperature regulation of claim 6 , wherein the short RF signals are standard wireless communication protocols including Bluetooth, Wi-Fi, ZigBee or FM radio.

8 . The method for wireless electrical temperature regulation of claim 1 , further includes the step of utilizing adaptive pocket-forming to regulate the pockets of energy to power the receiver for heating or cooling the receptacle.

9 . The method for wireless electrical temperature regulation of claim 1 , further including the step of regulating the temperature of the receptacle with an electrical switch on a housing of the receptacle for turning heat or cooling on or off.

10 . The method for wireless electrical temperature regulation of claim 3 , wherein the cup includes an external layer to serve as a thermal insulator.

11 . The method for wireless electrical temperature regulation of claim 1 , wherein the temperature regulating component uses gas expansion or magnetic cooling.

12 . A wireless electrical temperature regulator, comprising:

a transmitter for pocket-forming to send controlled radio frequency waves to converge into pockets of energy in 3-d space; and

a receiver for capturing the pockets of energy to charge or power the temperature regulator within a receptacle housing to heat or cool a food or a beverage.

13 . The wireless electrical temperature regulator of claim 12 , wherein the receiver is embedding in the housing with an electric switch to turn on and off the power.

14 . The wireless electrical temperature regulator of claim 12 , wherein the temperature regulator includes an electrical resistance to dissipate electrical energy as heat.

15 . The wireless electrical temperature regulator of claim 12 , wherein the temperature regulator includes a thermoelectric cooler.

16 . The wireless electrical temperature regulator of claim 12 , wherein the temperature regulator uses the Peltier effect to heat or cool the receptacle.

17 . The wireless electrical temperature regulator of claim 15 , wherein the temperature regulator utilizes gas expansion or magnetic cooling to regulate the temperature of the receptacle.

18 . An apparatus for wireless electrical temperature regulation, comprising:

a pocket-forming transmitter for transmitting power RF waves to form pockets of energy to power the apparatus;

a receiver connected to a receptacle for capturing the pockets of energy; and

a temperature regulating component connected to the receiver for heating or cooling the receptacle, containing a food or beverage.

19 . The apparatus for wireless electrical temperature regulation of claim 18 , further including an electrical switch connected to the receiver for turning on or off the power to the temperature regulating component.

20 . The apparatus for wireless electrical temperature regulation of claim 18 , wherein the receptacle includes a sensor to determine and to set the temperature for the food or beverage.

21 . The apparatus for wireless electrical temperature regulation of claim 18 , wherein the temperature regulating component utilizes the Peltier effect, gas expansion or magnetic cooling to regulate the temperature of the receptacle.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 28, 2017
From: BREWER, GREGORY S.
To: ENERGOUS CORPORATION
Reel/Frame 044047/0729 →
CHANGE OF NAME Recorded Dec 3, 2015
From: DVINEWAVE INC.
To: ENERGOUS CORPORATION
Reel/Frame 037208/0205 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 8, 2013
From: LEABMAN, MICHAEL A.
To: DVINEWAVE INC.
Reel/Frame 030994/0005 →