Claims
- 1. A cooking oven comprising:
a heat insulated cabinet having a top, bottom, rear and side walls and an access door attached to the front of the cabinet; a plurality of heating panels spaced-apart within said cabinet, each of said panels having an upper and a lower surface and comprising means for heating said upper surface of each of said panels and means for heating said lower surface of each of said panels, said upper surface and said lower surface of each panel being separated by insulation; means connected to said heating panels for separately controlling the heat output of each upper surface of each of said plurality of heating panels; and means connected to said heating panels for separately controlling the heat output of each lower surface of each of said plurality of panels.
- 2. The cooking oven as recited in claim 1 wherein said oven comprises means for providing a convection heating mode of operation.
- 3. The cooking oven as recited in claim 1 wherein said oven comprises a control panel positioned adjacent to said access door for providing a user interface with controls and displays.
- 4. The cooking oven as recited in claim 3 wherein said oven comprises a processor connected to said control panel for operating said cooking oven in response to signals received from said control panel.
- 5. The cooking oven as recited in claim 3 wherein said control panel monitors the electrical current or continuity powering each panel as a means for reconfiguring the size of each of the heating zones formed between said spaced-apart panels.
- 6. The cooking oven as recited in claim 1 wherein said upper surface of said panels provides conduction heating for a first cooking tray placed on said upper surface of a first one of said heating panels and said lower surface of said first one of said panels provides radiant heating for a second cooking tray placed on an adjacent second one of said panels under said lower surface of said first one of said heating panels.
- 7. The cooking oven as recited in claim 1 wherein said upper surface of said panels comprises means for providing conduction and radiant heating for a first cooking tray placed on said upper surface of a first one of said heating panels and said lower surface of said first one of said panels provides radiant heating for a second cooking tray placed on an adjacent second one of said panels under said lower surface of said first one of said heating panels.
- 8. The cooking oven as recited in claim 1 wherein said upper surface of said panels provides radiant heating for a first cooking tray placed slightly above said upper surface of a first one of said heating panels and said lower surface of said first one of said panels provides radiant heating for a second cooking tray placed on or slightly above an adjacent second one of said panels under said lower surface of said first one of said heating panels.
- 9. The cooking oven as recited in claim 1 wherein said means for separately controlling said heat output of said upper surface of said plurality of heating panels comprises a software routine operating in response to control signals from a user interface panel.
- 10. The cooking oven as recited in claim 1 wherein said means for separately controlling said heat output of said lower surface of said plurality of heating panels comprises a software routine operating in response to control signals from a user interface panel.
- 11. The cooking oven as recited in claim 1 wherein each of said upper surface of each of said panels and each of said lower surface of each of said panels comprises:
a metal substrate; a dielectric applied to said metal substrate; and a thermal film ink bonded to said dielectric.
- 12. The cooking oven as recited in claim 11 wherein said dielectric comprises a borosilicate glass.
- 13. The cooking oven as recited in claim 1 wherein said upper surface of said panels and said lower surface of said panels comprises a resistive element embedded in an insulative bed.
- 14. The cooking oven as recited in claim 1 wherein said oven comprises means for enabling each of said panels to be connected or disconnected from said cooking oven.
- 15. A heating panel of a cooking oven having upper and lower surfaces comprising:
means for separately heating said upper surface and said lower surface, said upper surface and said lower surface being separated by insulation; and means for controlling said heating means in response to operator inputs to a user interface panel.
- 16. The heating panel as recited in claim 15 wherein said upper surface comprises peaks and valleys for providing conductive and radiant heating.
- 17. The heating panel as recited in claim 15 wherein each surface comprises:
a metal substrate; a dielectric applied to said metal substrate; and a thermal film ink bonded to said dielectric.
- 18. The heating panel as recited in claim 17 wherein said dielectric comprises a borosilicate glass.
- 19. The heating panel as recited in claim 15 wherein each of said upper surface and said lower surface of said heating panel comprises a resistive element embedded in an insulative bed.
- 20. A cooking oven comprising:
a plurality of cooking zones, each of said cooking zones being formed by an upper heating panel and a lower heating panel; each heating panel comprises an upper heating surface and a lower heating surface separated by insulation; and means for separately controlling the heat output of said upper heating surface and said lower heating surface of said heating panel forming said cooking zones.
- 21. The cooking oven as recited in claim 20 wherein said oven comprises means for providing a convection heating mode of operation.
- 22. The cooking oven as recited in claim 20 wherein said oven comprises a control panel positioned adjacent to an access door for providing a user interface with controls and displays.
- 23. The cooking oven as recited in claim 20 wherein said cooking oven comprises means for varying the sizes of each of said cooking zones.
- 24. The cooking oven as recited in claim 20 wherein said upper heating surface of said heating panel provides conduction heating in a first one of said plurality of cooking zones for a first cooking tray placed on said upper heating surface of a first heating panel and said lower heating surface of said first heating panel provides radiant heating in a second one of said plurality of cooking zones for a second cooking tray placed on an adjacent second heating panel under said lower heating surface of said first heating panel.
- 25. The cooking oven as recited in claim 20 wherein said upper heating surface of said heating panel comprises means for providing conduction and radiant heating in a first one of said plurality of cooking zones for a first cooking tray placed on said upper heating surface of a first heating panel and said lower heating surface of said first heating panel provides radiant heating in a second one of said plurality of cooking zones for a second cooking tray placed on an adjacent second heating panel under said lower heating surface of said first heating panel.
- 26. The cooking oven as recited in claim 20 wherein said upper heating surface of said heating panel provides radiant heating in a first one of said plurality of cooking zones for a first cooking tray placed slightly above said upper heating surface of a first heating panel and said lower heating surface of said first heating panel provides radiant heating in a second one of said plurality of cooking zones for a second cooking tray placed on or slightly above an adjacent second heating panel under said lower heating surface of said first heating panel.
- 27. The cooking oven as recited in claim 20 wherein said means for separately controlling the heat output of said upper heating surface and said lower heating surface of each of said heating panels comprises a software routine operating in response to control signals from a user interface panel.
- 28. The cooking oven as recited in claim 20 wherein said upper heating surface of each panel and said lower heating surface of each panel comprises:
a metal substrate; a dielectric applied to said metal substrate; and a thermal film ink bonded to said dielectric.
- 29. The cooking oven as recited in claim 28 wherein said dielectric comprises a borosilicate glass.
- 30. The cooking oven as recited in claim 20 wherein said upper heating surface of each panel and said lower heating surface of each panel comprises a resistive element embedded in an insulative bed.
- 31. The cooking oven as recited in claim 20 wherein said oven comprises means for enabling each of said panels to be connected or disconnected from said cooking oven.
- 32. A cooking oven comprising:
at least one cooking zone, formed by a lower heating element of a first heating panel and an upper heating element of a second heating panel positioned below said first heating panel in said oven; each heating panel comprises an upper heating surface and a lower heating surface separated by insulation; and means for independently controlling the heat output of said upper heating surface and said lower heating surface of each heating panel forming said cooking zone.
- 33. The cooking oven as recited in claim 32 wherein said oven comprises means for providing a convection heating mode of operation.
- 34. The cooking oven as recited in claim 32 wherein said oven comprises a control panel positioned adjacent to an access door for providing a user interface with controls and displays.
- 35. The cooking oven as recited in claim 32 wherein said upper heating surface of said second heating panel provides conduction heating for a cooking tray placed on said upper heating surface of said second heating panel and said lower heating surface of said first heating panel provides radiant heating for said cooking tray placed on said second heating panel below said lower heating surface of said first heating panel.
- 36. The cooking oven as recited in claim 32 wherein said upper heating surface of said second heating panel comprises means for conduction and radiant heating for a cooking tray placed on said upper heating surface of said second heating panel and said lower heating surface of said first heating panel provides radiant heating for said cooking tray placed on said second heating panel below said lower heating surface of said first heating panel.
- 37. The cooking oven as recited in claim 32 wherein said upper heating surface of said second heating panel provides radiant heating for a cooking tray placed slightly above said upper heating surface of said second heating panel and said lower heating surface of said first heating panel provides radiant heating for said cooking tray placed slightly above said second heating panel below said lower heating surface of said first heating panel.
- 38. The cooking oven as recited in claim 32 wherein each of said upper heating surface of each of said panels and each of said lower heating surface of each of said panels comprises:
a metal substrate; a dielectric applied to said metal substrate; and a thermal film ink bonded to said dielectric.
- 39. The cooking oven as recited in claim 38 wherein said dielectric comprises a borosilicate glass.
- 40. The cooking oven as recited in claim 32 wherein said upper heating surface of said first heating panel and said second heating panel and said lower heating surface of said first heating panel and said second heating panel comprise a resistive element embedded in an insulative bed.
- 41. The cooking oven as recited in claim 32 wherein said oven comprises means for enabling each of said panels to be connected or disconnected from said cooking oven.
- 42. A method of providing a cooking oven comprising the steps of:
providing a heat insulated cabinet having a top, bottom, rear and side walls and an access door attached to the front of said cabinet; positioning a plurality of heating panels spaced-apart within said cabinet, each of said panels having an upper and a lower surface and comprising means for heating said upper surface of each of said panels and means for heating said lower surface of each of said panels, said upper surface and said lower surface of each panel being separated by insulation; controlling individually said upper surface heating means for each of said panels; and controlling individually said lower surface heating means for each of said panels.
- 43. The method as recited in claim 42 wherein said method comprises the step of providing a convection heating mode of operation.
- 44. The method as recited in claim 42 wherein said method comprises the step of providing a control panel adjacent to said access door to provide a user interface with controls and displays.
- 45. The method as recited in claim 44 wherein said method comprises the step of providing a processor connected to said control panel for operating said cooking oven in response to signals received from said control panel.
- 46. The method as recited in claim 44 wherein said step of providing a control panel comprises the step of monitoring electrical current or continuity to each heating panel to facilitate reconfiguring the size of each heating zone formed between said heating panels.
- 47. The method as recited in claim 42 wherein said step of positioning a plurality of heating panels within said cabinet, each of said panels having an upper surface and a lower surface and comprising means for heating said upper surface and said lower surface further comprises the step of providing conduction heating for a first cooking tray placed on said upper surface of a first one of said heating panels and said lower surface of said first one of said panels providing radiant heating for a second cooking tray placed on an adjacent second one of the heating panels under said lower surface of said first one of said heating panels.
- 48. The method as recited in claim 42 wherein said step of positioning a plurality of heating panels within said cabinet, each of said panels having an upper surface and a lower surface and comprising means for heating said upper surface and said lower surface further comprises the step of providing means for conductive heating and radiant heating a first cooking tray placed on said upper surface of a first one of said heating panels and said lower surface of said first one of said panels providing radiant heating for a second cooking tray placed on an adjacent second one of the heating panels under said lower surface of said first one of said heating panels.
- 49. The method as recited in claim 42 wherein said step of positioning a plurality of heating panels within said cabinet, each of said panels having an upper surface and a lower surface and comprising means for heating said upper surface and said lower surface further comprises the step of providing radiant heating for a first cooking tray placed slightly above said upper surface of a first one of said heating panels and said lower surface of said first one of said panels providing radiant heating for a second cooking tray placed on or slightly above an adjacent second one of the heating panels under said lower surface of said first one of said heating panels.
- 50. The method as recited in claim 42 wherein said step of positioning a plurality of heating panels spaced-apart within said cabinet, each of said panels having an upper and a lower surface further comprises the step of providing said upper surface with peaks and valleys for conductive and radiant heating.
- 51. The method as recited in claim 42 wherein said step of controlling individually said upper surface heating means for each of said panels comprises the step of providing a software routine to operate in response to control signals from a user interface panel.
- 52. The method as recited in claim 42 wherein said step of controlling individually said lower surface heating means for each of said panels comprises the step of providing a software routine to operate in response to control signals from a user interface panel.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This is a nonprovisional patent application claiming priority of provisional application for patent Serial No. 60/318,078, filed Sep. 7, 2001.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60318078 |
Sep 2001 |
US |