IP Library › Granted Patent US 11,477,859
Granted Patent B2
US 11,477,859 · App. 16/523,011 · Granted Oct 18, 2022

Method for automatic pairing for communication between a cooking utensil and an element of an induction cooktop

Inventors: Jérémy Tadla (Lozanne, FR); Louis Schmerber (Sherbrooke, CA)
H05B6/062A47J36/321H05B2213/05
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Quick Facts
Patent No.
US 11,477,859
App. No.
16/523,011
Granted
Oct 18, 2022
Kind
B2
Abstract

A method for communication between a cooking utensil and an induction cooktop, includes: a step of arrangement of a cooking utensil on an element of the induction cooktop, a step of generation of a magnetic flux by the element on which the cooking utensil is arranged, a pairing request step including a sending of at least one pairing request frame by the communication module of the cooking utensil or the sending of at least one corresponding pairing request frame by the communication device of the induction cooktop, a step of listening by the communication device of the induction cooktop or, if applicable, by the communication module of the cooking utensil, the listening step including reception of the at least one pairing request frame or, if applicable, of the at least one corresponding pairing request frame, a pairing step between the cooking utensil and the induction cooktop including an exchange of information.

Claims (16)

1. A method for communication between a cooking utensil and an induction cooktop, the communication method comprising:

a step of arrangement of the cooking utensil on one of the elements of the induction cooktop, the cooking utensil comprising an energy source, a processing unit, a measuring device and a communication module, and the induction cooktop comprising a communication device,

a step of generation of a magnetic flux by the element on which the cooking utensil is arranged, performed either following a direct indication to the induction cooktop on the part of a user relating to an identification of the element on which the cooking utensil is arranged, or following a substep of scanning by sequential generation of magnetic fluxes by the different elements of the induction cooktop until the measuring device of the cooking utensil detects the magnetic flux from the element on which the cooking utensil is arranged,

a pairing request step comprising a sending of at least one pairing request frame according to a wireless communication protocol by the communication module of the cooking utensil, or the sending of at least one corresponding pairing request frame according to the wireless communication protocol by the communication device of the induction cooktop, the pairing request being triggered by the induction cooktop during generation of the magnetic flux, and by the cooking utensil during the detection of the magnetic flux from the element on which the cooking utensil is arranged,

a step of listening by the communication device of the induction cooktop or, if applicable, by the communication module of the cooking utensil, the listening step comprising reception of the at least one pairing request frame or, if applicable, of the at least one corresponding pairing request frame,

a pairing step between the cooking utensil and the induction cooktop comprising an exchange of information between the communication module of the cooking utensil and the communication device of the induction cooktop according to the wireless communication protocol, the information exchanged comprising in particular an indication of identification of the element on which the cooking utensil is arranged and an indication of identification of the cooking utensil,

wherein the scanning substep comprises a prior operation of awakening of the processing unit and of the communication module of the cooking utensil by a detection device of the cooking utensil, the detection device configured to detect the magnetic flux emitted by the element on which the cooking utensil is arranged, the detection device being arranged in the cooking utensil.

2. The communication method according to claim 1 , wherein the detection device comprises an electronic device designed to make the processing unit operational according to the characteristics of the magnetic flux, when the detection device detects the magnetic flux.

3. The communication method according to claim 1 , wherein the measuring device comprises at least one temperature measurement module.

4. The communication method according of claim 1 , wherein the energy source comprises a power battery adapted to power the cooking utensil after an action on a device for powering up the cooking utensil.

5. The communication method according to claim 4 , wherein the energy source comprises a device to recover energy from the magnetic flux of the element and adapted to recharge the power battery from the magnetic flux.

6. The communication method according to claim 1 , comprising a step of activating the communication device of the induction cooktop, the activation step causing the communication device of the induction cooktop to emit the at least one corresponding pairing request frame and causing the reception of the at least one pairing request frame.

7. The communication method according to claim 1 , wherein the wireless communication protocol is a radio frequency communication protocol.

8. The communication method according to claim 7 , wherein the radio frequency communication protocol is according to Bluetooth Low Energy®.

9. The communication method according to claim 1 , wherein the cooking utensil comprises a handle in which are provided the energy source, the processing unit, and the communication module.

10. The communication method according to claim 7 , wherein the handle is removable.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 16, 2019
From: TADLA, JÉRÉMY; SCHMERBER, LOUIS
To: SEB S.A.
Reel/Frame 050390/0050 →
Priority Claims (1)
FR 1857231 · Aug 1, 2018 · national
Continuity (1)
Related Publication 20200045781A1 · Feb 6, 2020