Cooking appliance and method for controlling the same
US-2023213206-A1 · Jul 6, 2023 · US
US12564196B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12564196-B2 |
| Application number | US-202017138580-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 30, 2020 |
| Priority date | Dec 30, 2020 |
| Publication date | Mar 3, 2026 |
| Grant date | Mar 3, 2026 |
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A cooking system includes a housing having a hollow interior, a heating element operable to heat to said hollow interior, a food support surface arranged within said hollow interior, and a combustible substrate module removably positionable in said housing. When positioned in the housing, the combustible substrate module is arranged in fluid communication with the hollow interior and the combustible substrate module is disposed remote of the food support surface.
Opening claim text (preview).
What is claimed is: 1 . A cooking system comprising: a housing including a lid hinged to a base, the housing having a hollow interior; a first heating element disposed on the lid within said hollow interior, said first heating element being operable to heat to said hollow interior; a fan disposed on the lid within the hollow interior and adjacent the first heating element, the fan being operable to circulate heated air within the hollow interior; a food support surface arranged within said hollow interior beneath the first heating element and the fan; a second heating element disposed beneath the food support surface, said second heating element being operable to heat the food support surface; and a combustible substrate module coupled to the lid; wherein when positioned in said housing, said combustible substrate module is arranged in fluid communication with said hollow interior, and wherein when said combustible substrate module is positioned in said housing, said combustible substrate module is disposed remote of said food support surface. 2 . The cooking system of claim 1 , wherein the first heating element is configured to ignite a combustible material disposed within said combustible substrate module. 3 . The cooking system of claim 2 , wherein the first heating element is spaced separately from said combustible substrate module. 4 . The cooking system of claim 2 , further comprising a radiation shield arranged between said first heating element and said combustible substrate module, said radiation shield having an opening located directly adjacent said first heating element of said combustible substrate module. 5 . The cooking system of claim 1 , wherein said combustible substrate module further comprises a body including a cavity. 6 . The cooking system of claim 5 , further comprising at least one divider arranged within said cavity to define a first compartment and a second compartment, said divider including a plurality of openings such that said first compartment and said second compartment are arranged in fluid communication via said plurality of openings. 7 . A cooking system comprising: a housing having a hollow interior; a heating element disposed within said hollow interior, said heating element being operable to heat to said hollow interior; a fan disposed within the hollow interior and adjacent the heating element, the fan being operable to circulate heated air within the hollow interior; a food support surface arranged within said hollow interior beneath the heating element and the fan; a combustible substrate module coupled to said housing, said combustible substrate module being configured to retain ignited fuel; an ignition source arranged within said housing and operably coupled to said combustible substrate module; and a temperature sensor disposed within the housing, the temperature sensor being configured to detect an ignition status of the fuel disposed within the combustible substrate module, wherein, in response to ignition being detected within the combustible substrate module, the ignition source is configured to be de-energized and the fan is configured to be energized. 8 . The cooking system of claim 7 , wherein said temperature sensor is configured to distinguish between heat generated by said ignition source and heat generated by said ignition within the combustible substrate module. 9 . The cooking system of claim 7 , wherein said ignition source is energized in response to determining that the fuel within said combustible substrate module has fully combusted. 10 . The cooking system of claim 7 , wherein operation of said heating element is controlled in response to a status of said ignited fuel. 11 . The cooking system of claim 10 , wherein said heating element is energized in response to determining that said fuel within said combustible substrate module is ignited. 12 . The cooking system of claim 10 , wherein said heating element is energized in response to determining that said fuel within said combustible substrate module has fully combusted.
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