IP Library › Granted Patent US 12,298,013
Granted Patent B2
US 12,298,013 · App. 17/519,034 · Granted May 13, 2025

Oven appliance and methods of state-contingent operation

Inventor: Eric Scott Johnson (Louisville, KY)
Assignee: Haier US Appliance Solutions, Inc.
F24C7/088
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Quick Facts
Patent No.
US 12,298,013
App. No.
17/519,034
Granted
May 13, 2025
Kind
B2
Abstract

An oven appliance may include a cabinet, a plurality of chamber walls, a cooking surface, a heating element, and a controller. The plurality of chamber walls may be mounted within the cabinet. The plurality of chamber walls may define an oven chamber. The cooking surface may be defined in the oven chamber. The heating element may be mounted in thermal communication with the oven chamber to heat the cooking surface. The controller may be in operative communication with the heating element. The controller may be configured to initiate a cooking operation that includes determining a cooking stability state within the oven chamber, directing a preheating cycle within the oven chamber following determining the cooking stability state, selecting a parameter value according to the cooking stability state, and directing activation of the heating element in a cooking cycle according to the selected parameter value following the preheating cycle.

Claims (35)

1. An oven appliance comprising:

a cabinet;

a plurality of chamber walls mounted within the cabinet, the plurality of chamber walls defining an oven chamber;

a cooking surface defined in the oven chamber;

a heating element mounted in thermal communication with the oven chamber to heat the cooking surface; and

a controller in operative communication with the heating element, the controller being configured to initiate a cooking operation comprising

determining a cooking stability state within the oven chamber, the cooking stability state being a variable condition that is associated with relative recency of use of the oven appliance,

directing a preheating cycle within the oven chamber following determining the cooking stability state,

selecting a parameter value according to the cooking stability state, the parameter value being a control value influencing activation of the heating element by the controller, and

directing activation of the heating element in a cooking cycle according to the selected parameter value following the preheating cycle.

2. The oven appliance of claim 1 , wherein determining the cooking stability state comprises selecting between a steady state associated with relatively more recent use of the oven appliance and a transient state associated with relatively less recent use of the oven appliance, wherein determining the cooking stability state comprises detecting a temperature value above a predetermined threshold, and

wherein selecting the parameter value comprises selecting a steady-state parameter value programmed within the controller to correspond to the steady state.

3. The oven appliance of claim 2 , wherein the steady-state parameter value is a predetermined steady-state value, the predetermined steady state value being a constant value programmed within the controller.

4. The oven appliance of claim 2 , wherein the steady-state parameter value is a variable steady-state value, the variable steady-state value programmed as being contingent on a separate variable value.

5. The oven appliance of claim 4 , wherein the variable steady-state value is based on the determined cooking stability state prior to the preheating cycle.

6. The oven appliance of claim 1 , wherein determining the cooking stability state comprises selecting between a steady state associated with relatively more recent use of the oven appliance and a transient state associated with relatively less recent use of the oven appliance, wherein determining the cooking stability state comprises detecting a temperature value less than or equal to a predetermined threshold, and

wherein selecting the parameter value comprises selecting a transient temperature value programmed within the controller to correspond to the transient state.

7. The oven appliance of claim 6 , wherein the transient temperature value is a predetermined transient value the predetermined transient state value being a constant value programmed within the controller.

8. The oven appliance of claim 6 , wherein the transient temperature value is a variable transient value, the variable transient value programmed as being contingent on a separate variable value.

9. The oven appliance of claim 8 , wherein the variable transient value is based on the determined cooking stability state prior to the preheating cycle.

10. A method of operating an oven appliance comprising a plurality of chamber walls mounted within a cabinet and defining an oven chamber, a heating element mounted in thermal communication with the oven chamber, the method comprising:

determining a cooking stability state within the oven chamber, the cooking stability state being a variable condition that is associated with relative recency of use of the oven appliance;

directing a preheating cycle within the oven chamber following determining the cooking stability state;

selecting a parameter value according to the cooking stability state, the parameter value being a control value influencing activation of the heating element by a controller; and

directing activation of the heating element in a cooking cycle according to the selected parameter value following the preheating cycle.

11. The method of claim 10 , wherein determining the cooking stability state comprises selecting between a steady state associated with relatively more recent use of the oven appliance and a transient state associated with relatively less recent use of the oven appliance, wherein determining the cooking stability state comprises detecting a temperature value above a predetermined threshold, and

wherein selecting the parameter value comprises selecting a steady-state parameter value programmed within the controller to correspond to the steady state.

12. The method of claim 11 , wherein the steady-state parameter value is a predetermined steady-state value, the predetermined steady state value being a constant value programmed within the controller.

13. The method of claim 11 , wherein the steady-state parameter value is a variable steady-state value, the variable steady-state value programmed as being contingent on a separate variable value.

14. The method of claim 13 , wherein the variable steady-state value is based on the determined cooking stability state prior to the preheating cycle.

15. The method of claim 10 , wherein determining the cooking stability state comprises selecting between a steady state associated with relatively more recent use of the oven appliance and a transient state associated with relatively less recent use of the oven appliance, wherein determining the cooking stability state comprises detecting a temperature value less than or equal to a predetermined threshold, and

wherein selecting the parameter value comprises selecting a transient temperature value programmed within the controller to correspond to the transient state.

16. The method of claim 15 , wherein the transient temperature value is a predetermined transient value the predetermined transient state value being a constant value programmed within the controller.

17. The method of claim 15 , wherein the transient temperature value is a variable transient value, the variable transient value programmed as being contingent on a separate variable value.

18. The method of claim 17 , wherein the variable transient value is based on the determined cooking stability state prior to the preheating cycle.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 4, 2021
From: JOHNSON, ERIC SCOTT
To: HAIER US APPLIANCE SOLUTIONS, INC.
Reel/Frame 058021/0936 →
Continuity (1)
Related Publication 20230137454A1 · May 4, 2023
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