IP Library › Granted Patent US 10,827,567
Granted Patent B2
US 10,827,567 · App. 15/785,956 · Granted Nov 3, 2020

Autonomous cavity resonator and heat map

Inventors: Milo Eadan (Arcata, CA); Francis Eugene Toriello (Syracuse, NY)
Assignees: Milo Eadan; Francis Eugene Toriello
H05B6/6447H05B6/6402H05B6/6411H05B6/6482H05B6/6494H05B6/6444
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Quick Facts
Patent No.
US 10,827,567
App. No.
15/785,956
Granted
Nov 3, 2020
Kind
B2
Abstract

An automated microwave oven configured to autonomously determine a duration of time for heating an object based on a location of the object in a microwave cavity. The heating duration may be a function of cumulative energy estimated to be experienced by the object due to the object location, e.g., radial distance from center, under rotational motion of the rotating tray. A concentric energy visualization is provided on an interior surface of the microwave cavity, representing a function of cumulative energy experienced under rotational motion of a rotating tray about its center-line. The visualization may comprise a plurality of rings concentric about the center-line, each concentric ring representing a constant value of the function of cumulative energy, oscillating in value along the radial length of the rotating tray.

Claims (10)

1. A microwave oven comprising:

a visualization imprinted on an interior surface of a cavity of the microwave oven,

wherein the visualization represents a function of cumulative energy experienced under rotational motion of a rotating tray in the microwave oven about a center-line of the rotating tray that is orthogonal to the top surface of the rotating tray at its center-point,

wherein the visualization comprises a plurality of rings concentric about the center-line, each concentric ring visualizes a constant value of the function of cumulative energy, and the plurality of rings visualize a plurality of different values of the function of cumulative energy that oscillate along a line from the radial center to the radial edge of the rotating tray,

wherein the function of cumulative energy is based on an aggregated energy density of multiple resonant modes of the microwave oven experienced under a cumulative angular rotation about the center-line of the rotating, and wherein the function of cumulative energy is a function of Σ i ∫ 0 2π U i dθ, where i represents each of the multiple resonant modes of the microwave oven, U i represents the energy density of resonant mode i, and θ represents an angular rotation of the rotating tray about the center-line.

2. The microwave oven of claim 1 , wherein the aggregated energy density of the resonant modes is computed in cartesian coordinates and the function of cumulative energy is computed in polar coordinates.

3. The microwave oven of claim 1 , wherein the function of cumulative energy is computed along a horizontal cross-section in the microwave cavity.

4. The microwave oven of claim 1 , wherein the function of cumulative energy is aggregated over a vertical range in the microwave cavity.

5. The microwave oven of claim 1 having a second visualization imprinted on a second interior surface of the cavity of the microwave oven, the second visualization representing a function of cumulative energy estimated to be experienced by a stationary object in the microwave cavity.

6. The microwave oven of claim 5 , wherein the second visualization comprises a lattice of hot-spots or cold-spots.

Continuity (1)
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