IP Library › Granted Patent US 10,830,450
Granted Patent B2
US 10,830,450 · App. 16/270,658 · Granted Nov 10, 2020

Power limited closed loop cooking with a gas burner

Inventor: Paul Bryan Cadima (Crestwood, KY)
Assignee: Haier US Appliance Solutions, Inc.
F24C3/12A62C3/006F23D14/72F23N5/245
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Quick Facts
Patent No.
US 10,830,450
App. No.
16/270,658
Granted
Nov 10, 2020
Kind
B2
Abstract

A gas burner assembly and a method of operating the same are provided. The gas burner assembly includes a gas burner and a fuel regulating device for providing a flow of fuel to the gas burner to heat a cooking utensil. The method is a closed loop cooking method that includes monitoring the temperature of the cooking utensil and adjusting the power output of the burner accordingly to drive the utensil temperature to a target cooking temperature or profile. However, the burner power is limited to a maximum fuel flow rate, e.g., to ensure safe operation and to prevent the flames from the gas burner from engulfing the sides of the cooking utensil.

Claims (38)

1. A cooktop appliance comprising:

a gas burner for receiving a cooking utensil;

a fuel regulating device operably coupled to the gas burner for regulating a flow of fuel to the gas burner; and

a controller operably coupled to the fuel regulating device, the controller being configured for:

obtaining a target cooking temperature;

obtaining a utensil identifier of the cooking utensil from a utensil communication module mounted on the cooking utensil, the utensil identifier comprising a diameter of the cooking utensil;

determining a maximum fuel flow rate for the cooking utensil based at least in part on the diameter of the cooking utensil;

receiving a measured temperature of the cooking utensil heated by the gas burner; and

regulating a flow rate of the flow of fuel using the fuel regulating device to adjust the measured temperature of the cooking utensil to the target cooking temperature, wherein the flow rate is limited to the maximum fuel flow rate for the cooking utensil.

2. The cooktop appliance of claim 1 , wherein determining the maximum fuel flow rate for the cooking utensil comprises:

using a lookup table correlating the utensil identifier to the maximum fuel flow rate.

3. The cooktop appliance of claim 1 , wherein determining the maximum fuel flow rate for the cooking utensil comprises:

setting the maximum fuel flow rate based at least in part on a smallest compatible utensil.

4. The cooktop appliance of claim 1 , wherein the target cooking temperature is a constant temperature.

5. The cooktop appliance of claim 1 , wherein the target cooking temperature is a time-varying temperature profile for performing an assisted cooking routine.

6. The cooktop appliance of claim 1 , wherein the controller further comprises:

a communication module in operative communication with the cooking utensil for implementing a closed loop cooking cycle.

7. The cooktop appliance of claim 1 , wherein the target cooking temperature is obtained from a mobile device in operative communication with the controller, the mobile device being remote from both the cooktop appliance and the cooking utensil.

8. The cooktop appliance of claim 1 , wherein the measured temperature is obtained by a temperature sensor which is separate from the gas burner.

9. The cooktop appliance of claim 8 , wherein the temperature sensor is mounted on or within the cooking utensil.

10. The cooktop appliance of claim 8 , wherein the temperature sensor is wirelessly connected to the controller.

11. The cooktop appliance of claim 1 , wherein the gas burner comprises:

a primary burner comprising a plurality of primary flame ports in fluid communication with a primary fuel chamber for receiving a flow of primary fuel.

12. The cooktop appliance of claim 1 , wherein the gas burner comprises:

a boost burner comprising a plurality of boost flame ports in fluid communication with a boost fuel chamber for receiving a flow of boost fuel; and

an air pump for selectively urging a flow of air into the boost fuel chamber.

13. A method of operating a gas burner assembly, the gas burner assembly comprising a gas burner and a fuel regulating device for providing a flow of fuel to the gas burner to heat a cooking utensil, the method comprising:

obtaining a target cooking temperature;

obtaining a utensil identifier of the cooking utensil from a utensil communication module mounted on the cooking utensil, the utensil identifier comprising a diameter of the cooking utensil;

determining a maximum fuel flow rate for the cooking utensil based at least in part on the diameter of the cooking utensil;

receiving a measured temperature of the cooking utensil;

operating the fuel regulating device to regulate a flow rate of the flow of fuel to adjust the measured temperature of the cooking utensil to the target cooking temperature; and

limiting the flow rate of the flow of fuel at or below the maximum fuel flow rate for the cooking utensil.

14. The method of claim 13 , wherein determining the maximum fuel flow rate for the cooking utensil comprises:

using a lookup table correlating the utensil identifier to the maximum fuel flow rate.

15. The method of claim 13 , wherein determining the maximum fuel flow rate for the cooking utensil comprises:

setting the maximum fuel flow rate based at least in part on a smallest compatible utensil.

16. The method of claim 13 , wherein the target cooking temperature is a time-varying temperature profile for performing an assisted cooking routine.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 8, 2019
From: CADIMA, PAUL BRYAN
To: HAIER US APPLIANCE SOLUTIONS, INC.
Reel/Frame 048272/0949 →
Continuity (1)
Related Publication 20200256563A1 · Aug 13, 2020
Cited By (3)
US 12,251,046 US 12,449,132 US 12,465,175