IP Library Granted Patent US 10,444,080
Granted Patent B2
US 10,444,080 · App. 14/943,115 · Granted Oct 15, 2019

Thermal management for a wireless cooking probe

Inventors: Justin Tyler Brown (Louisville, KY); Christopher Nils Naber (Louisville, KY); Deanna Mariel Moya (Miami, FL)
Assignee: HAIER US APPLIANCE SOLUTIONS, INC.
G01K1/14A47J27/004A47J36/32G01K7/22G01K2207/06
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Quick Facts
Patent No.
US 10,444,080
App. No.
14/943,115
Granted
Oct 15, 2019
Kind
B2
Abstract

A battery-powered temperature probe for measuring the temperature of food products within a cooking utensil. The temperature probe includes a temperature sensor and a control housing positioned at opposite ends of a flexible arm. The flexible arm is magnetically attachable to the cooking utensil such that the temperature sensor is in thermal communication with the food products and the control housing is positioned outside of and below the top of the cooking utensil. A radiant heat shield may be included in the control housing and the control housing may be oriented such that temperature-sensitive components, such as the battery and display, experience reduced temperatures during operation.

Claims (22)

1. A temperature probe for measuring the temperature of food products within a cooking utensil, the temperature probe comprising:

a flexible arm having a first end comprising a first magnet and a second end comprising a second magnet, the flexible arm being removably attachable to the cooking utensil by positioning the first end within the interior of the cooking utensil such that it is secured by magnetic force and positioning the second end proximate an exterior side of the cooking utensil such that it is secured by magnetic force;

a temperature sensor extending from the first end of the flexible arm and being configured for measuring the temperature of the food products in the cooking utensil; and

a control housing extending from the second end of the flexible arm downward and away from the exterior side of the cooking utensil while the second end of the flexible arm is magnetically secured to the exterior side of the cooking utensil, the control housing comprising a controller operatively connected with the temperature sensor,

wherein the second end of the flexible arm defines a support surface configured for contacting the exterior side of the cooking utensil and extending the control housing away from the cooking utensil.

2. The temperature probe of claim 1 , wherein the control housing further comprises a battery, a display, and a radiant heat shield, the radiant heat shield being positioned within the control housing between the battery and the cooking utensil.

3. The temperature probe of claim 2 , wherein the radiant heat shield is an aluminum steel alloy plate.

4. The temperature probe of claim 1 , wherein the battery is a rechargeable lithium-ion battery.

5. The temperature probe of claim 1 , wherein the control housing is positioned below a top of the cooking utensil.

6. The temperature probe of claim 1 , wherein the control housing extends from the second end of the flexible arm such that a longitudinal axis of the control housing forms an extension angle relative to a vertical direction when the flexible arm is attached to the cooking utensil, the extension angle being greater than 45 degrees.

7. The temperature probe of claim 6 , wherein the extension angle is approximately 70 degrees.

8. The temperature probe of claim 1 , wherein the support surface comprises support feet that space the control housing from the exterior side of the cooking utensil.

9. A temperature probe for measuring the temperature of food products within a cooking utensil, the temperature probe comprising:

a thermistor configured for placement within the interior of the cooking utensil in thermal communication with the food products; and

a controller body defining a mounting base and a control housing, the mounting base comprising a mounting magnet and defining a support surface, the mounting magnet being magnetically attachable to an outer wall of the cooking utensil such that the support surface sits flush against the outer wall and the control housing extends downward and away from a vertical direction and the outer wall of the cooking utensil,

wherein the control housing comprises a battery, a display, and a control board in operative communication with the thermistor.

10. The temperature probe of claim 9 , wherein a radiant heat shield is positioned within the control housing between the battery and the cooking utensil.

11. The temperature probe of claim 10 , wherein the radiant heat shield is an aluminum steel alloy plate.

12. The temperature probe of claim 9 , further comprising a flexible arm having a first end having the thermistor extending therefrom and a second end attached to the controller body, the first end comprising a sensor magnet and being magnetically attachable to an interior side of the cooking utensil such that the thermistor may be selectively positioned within the food products.

13. The temperature probe of claim 9 , wherein the controller body is positioned below a top of the cooking utensil.

14. The temperature probe of claim 9 , wherein the controller body defines a longitudinal axis forming an extension angle relative to the vertical direction when the controller body is attached to the cooking utensil, the extension angle being greater than 45 degrees.

15. The temperature probe of claim 14 , wherein the extension angle is approximately 70 degrees.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 13, 2016
From: GENERAL ELECTRIC COMPANY
To: HAIER US APPLIANCE SOLUTIONS, INC.
Reel/Frame 038964/0533 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 17, 2015
From: BROWN, JUSTIN TYLER; NABER, CHRISTOPHER NILS; MOYA, DEANNA MARIEL
To: GENERAL ELECTRIC COMPANY
Reel/Frame 037056/0048 →
Continuity (1)
Related Publication 20170138797A1 · May 18, 2017
Cited By (2)
US 1,101,580 US 1,113,502