IP Library Granted Patent US 12,088,954
Granted Patent B2
US 12,088,954 · App. 18/311,488 · Granted Sep 10, 2024

Infrared toaster

Inventors: Steven Shei (Fort Wayne, IN); Nick Mandarino (Carol Stream, IL); David E. Paton (Bartlett, IL); Benjamin Slotarski (Carol Stream, IL); Jason Pittenger (Carol Stream, IL)
Assignee: Marmon Foodservice Technologies, Inc.
H04N5/33A47J37/0807A47J37/0857A47J37/0871G06T7/0004G06T7/90H04N23/698G06T2207/10024G06T2207/10048G06T2207/30128G06V10/56G06V20/68
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Quick Facts
Patent No.
US 12,088,954
App. No.
18/311,488
Granted
Sep 10, 2024
Kind
B2
Abstract

An infrared toaster and a method of toasting use a support configured to hold a food product relative to an infrared source. A light source and a camera are arranged relative to the support to illuminate the food product and capture digital images of the food product. A processor receives and analyzes successive images from the camera. The processor operates the IR source to achieve a predetermined toasting level of the food product. The processor operates the IR source to terminate operation directing IR energy when the predetermined toasting level is reached.

Claims (25)

1. A toaster comprising:

a support configured to hold a food product;

an infrared (IR) source arranged relative to the support and operable to direct IR energy to the food product on the support;

a light source arranged relative to the support and configured to direct red light towards the support and configured to illuminate the food product on the support while the IR source operates to direct IR energy;

a sensor directed towards the support and operable to acquire data representative of an amount of light received by the sensor;

a processor that successively receives the data from the sensor, the processor analyzes the successively received data when red light is directed at the support to determine when the food product is received on the support, upon which the processor operates the IR source to direct IR energy to the food product on the support and operates the light source to illuminate the food product, the processor then analyzes the successively received data in comparison against a model representing various toasting levels, and based upon the analysis the processor operates the IR source to terminate operation directing IR energy when the received data reaches a predetermined toasting level in the model; and

an ejector operatively connected to the support and to the processor, wherein the processor operates the ejector to remove the food product from proximity to the IR source when the predetermined toasting level is reached.

2. The toaster of claim 1 , wherein the sensor is a light sensor and the data from the sensor is a measurement of light intensity received by the sensor.

3. The toaster of claim 1 , wherein the sensor is a camera and the data representative of an amount of light received by the sensor is image data.

4. The toaster of claim 1 , wherein a current toasting level is determined from the amount of light received by the sensor and the toasting levels represented in the model, wherein the model represents various toasting levels as a function of amounts of light received by the sensor and is a curve of determined amounts of reflected light from the food product representing a plurality of toasting levels.

5. The toaster of claim 1 , wherein data representative of an amount of light received by the sensor comprises values for red spectrum light, blue spectrum light, and green spectrum light.

6. The toaster of claim 5 , wherein the model further comprises weighting the values for each of red spectrum light, blue spectrum light, and green spectrum light.

7. The toaster of claim 1 , wherein the processor receives an indication of a type of the food product, and selects the model representing various toasting levels based upon the received indication.

8. The toaster of claim 1 , wherein the processor analyzes the data representative of an amount of light received by the sensor to determine an initial color of the food product on the support.

9. The toaster of claim 8 , wherein the processor determines a weighting value for at least one test spectrum analyzed by the processor to determine a current toasting level of the food product.

10. The toaster of claim 9 , wherein the at least one test spectrum comprises a green light test spectrum and a red light test spectrum.

11. The toaster of claim 8 , wherein the current toasting level of the food product is determined by the processor further based upon at least one brightness compensation factor.

12. The toaster of claim 11 , wherein the processor calculates the at least one brightness compensation factor based upon a reference brightness in the data representative of an amount of light received by the sensor and a current brightness in the data representative of an amount of light received by the sensor.

13. The toaster of claim 1 , wherein the IR source is a first IR source and further comprising a second IR source configured to direct IR energy towards the food product on the support, and the processor operates the second IR source to terminate operation directing IR energy when the received data reaches the predetermined toasting level in the model.

14. The toaster of claim 13 , wherein the processor operates the second IR source to a temperature setpoint.

15. The toaster of claim 13 , wherein the light sensor is a first light sensor positioned proximate to the first IR source and further comprising a second light sensor positioned proximate to the second IR source.

16. The toaster of claim 1 , further comprising a forced gas source to produce a flow of forced gas in the direction of the food product.

17. The toaster of claim 1 , wherein the light source illuminates the food product on the support in white light.

18. The toaster of claim 13 , further comprising a glass layer interposed between the first heat source and the food product on the support.

19. The toaster of claim 14 , further comprising a stainless steel layer interposed between the second heat source and the food product on the support.

Assignments (2)
MERGER AND CHANGE OF NAME Recorded Aug 7, 2023
From: PRINCE CASTLE LLC; CORNELIUS, INC.
To: MARMON FOODSERVICE TECHNOLOGIES, INC.
Reel/Frame 064505/0902 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 4, 2023
From: SHEI, STEVEN; SLOTARSKI, BENJAMIN; PITTENGER, JASON; PATON, DAVID E.; MANDARINO, NICHOLAS R.
To: PRINCE CASTLE LLC
Reel/Frame 064492/0434 →
Continuity (3)
Continuation 16814414 · Mar 10, 2020
Provisional Application 62817277 · Mar 12, 2019
Related Publication 20230344959A1 · Oct 26, 2023