Method and device for providing a unique identifier to a hob induction coil
10187932 ยท 2019-01-22
Assignee
Inventors
- Andrea Fattorini (Forli, IT)
- Svend Erik Christiansen (Forli, IT)
- Laurent Jeanneteau (Forli, IT)
- Alex Viroli (Forli, IT)
Cpc classification
H05B2213/03
ELECTRICITY
International classification
Abstract
A method for assigning a unique identifier to a hob induction coil of an induction hob including a plurality of hob induction coils, the method including the steps of: placing one or more device induction coils of a device above one or more hob induction coils such that at least one device induction coil and at least one hob induction coil are facing each other; establishing a communication link between the device induction coil and the hob induction coil, wherein information regarding a unique identifier is transmitted to the hob induction coil by the device induction coil; and receiving information regarding the unique identifier by the hob induction coil and storing the identifier associated with the hob induction coil within a memory of the induction hob.
Claims
1. A method for assigning a unique identifier to a hob induction coil of an induction hob comprising a plurality of said hob induction coils, the method comprising the steps of: a. placing one or more device induction coils of a device above one or more of said hob induction coils such that at least one said device induction coil and at least one said hob induction coil are facing each other; b. establishing a communication link between the device induction coil and the hob induction coil, wherein information regarding a unique identifier is transmitted to the hob induction coil by the device induction coil; and c. receiving information regarding the unique identifier by the hob induction coil and storing the identifier associated with the hob induction coil within a memory of the induction hob.
2. The method according to claim 1, wherein the steps of establishing a communication link, transmitting information regarding a unique identifier, receiving information regarding the unique identifier by the hob induction coil and storing the identifier associated with the hob induction coil are performed for each hob induction coil of said plurality of hob induction coils.
3. The method according to claim 2, wherein information regarding unique identifiers is provided to the hob induction coils simultaneously or consecutively.
4. The method according to claim 1, wherein the hob induction coil is powered off while transmitting information regarding the unique identifier to said hob induction coil.
5. The method according to claim 1, wherein information regarding the unique identifier is transmitted by alternately powering the device induction coil.
6. The method according to claim 5, wherein alternately powering the device induction coil is performed by alternating on/off phases, wherein an alternating current is provided to the device induction coil during the on-phases and the alternating current provided to the device induction coil is switched off during the off-phases.
7. The method according to claim 1, wherein information regarding the unique identifier is transmitted to the hob induction coil by using an amplitude modulation and/or frequency modulation of the electric current provided to the device induction coil.
8. The method according to claim 1, wherein information regarding the unique identifier is transmitted to the hob induction coil by transmitting an electromagnetic field by the hob induction coil to the device induction coil, modulating the impedance of a receiving circuit of the device being coupled with the device induction coil thereby also modulating the electric load of the hob induction coil and analysing the electric load modulation by means of a control unit of the induction hob.
9. The method according to claim 1, wherein a control unit coupled with the hob induction coil decodes the information regarding the unique identifier received at the hob induction coil.
10. The method according to claim 1, wherein the device comprises a single device induction coil being adapted to the size of a single hob induction coil.
11. The method according to claim 1, wherein the device comprises an induction coil array including one device induction coil per each hob induction coil and wherein each device induction coil is facing a hob induction coil when placing the induction coil array on the induction hob.
12. A device for assigning a unique identifier to a hob induction coil of an induction hob, the induction hob comprising a plurality of said hob induction coils, wherein the device comprises: at least one device induction coil being adapted to be placed on one of said hob induction coils; an identifier generator unit for generating a unique identifier to be assigned to the hob induction coil; a signal generator unit being adapted to generate an electrical signal comprising information regarding the unique identifier or a load varying unit being adapted to vary the electric load according to a load pattern wherein the load pattern comprises information regarding the unique identifier; wherein the signal generator unit or the load varying unit is coupled with the device induction coil for providing information regarding the unique identifier to the hob induction coil.
13. An induction hob comprising a plurality of hob induction coils, a control unit being adapted to receive information regarding a unique identifier per each said hob induction coil, wherein the control unit is coupled with the hob induction coils for receiving a unique identifier per each said hob induction coil and wherein the induction hob further comprises a memory unit for storing the unique identifier associated with each said hob induction coil.
14. The induction hob according to claim 13, wherein the control unit comprises a decoding unit for decoding the information regarding a unique identifier.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The various aspects of the invention, including its particular features and advantages, will be readily understood from the following detailed description and the accompanying drawings, in which:
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
(6) The present invention will now be described more fully with reference to the accompanying drawings, in which example embodiments are shown. However, this invention should not be construed as limited to the embodiments set forth herein. Throughout the following description similar reference numerals have been used to denote similar elements, parts, items or features, when applicable.
(7)
(8)
(9) The signal generator unit 14 may be adapted to generate an electrical signal comprising information regarding the unique identifier provided by the identifier generator unit 13. More in detail, the signal generator unit 14 may generate an electrical signal which may be transmitted to the device induction coil 11. Said electrical signal may include information regarding the unique identifier.
(10) For transmitting information regarding the unique identifier to the hob induction coil 3, the device induction coil 11 may be located in close proximity to the hob induction coil 3 which should be assigned with said unique identifier. Thereby, an inductive coupling between the device induction coil 11 and the hob induction coil 3 is achieved. Due to said inductive coupling information regarding the unique identifier is transmitted to the hob induction coil 3.
(11) Within the hob induction coil 3 an alternating current may be induced due to the electrical signal provided to the device induction coil 11. Said induced alternating current may also comprise information regarding the unique identifier. Said information may be received by a control unit 5 of the induction hob 1. The control unit 5 may be coupled with a memory in which the unique identifier is stored. Thereby, the unique identifier may be associated to the hob induction coil 3 by which the information regarding the unique identifier has been received. The generator unit 6 of the induction hob may be powered off, i.e. the hob induction coil 3 is operated in receiving mode.
(12) The unique identifier may be transmitted in a coded way, e.g. by a digital or analogue coding. For example, a communication protocol, specifically a standard protocol may be used for transmitting the unique identifier. The control unit 5 of the induction hob 1 may be adapted to decode said information in order to receive the unique identifier. Specifically, the control unit 5 may comprise a decoding unit 5.1 for decoding said information.
(13) According to another embodiment, the hob induction coil 3 is operated in generating mode and the information regarding the unique identifier is provided from the device 10 to the induction hob 1 by alternating the load provided to the hob induction coil 3. Similar to the embodiment described above, the device induction coil 11 is placed in close proximity to the hob induction coil 3 wherein the hob induction coil 3 and the device induction coil 11 are facing each other. The generator unit 6 of the induction hob 1 may generate an electrical alternating signal which is provided to the hob induction coil 3. The hob induction coil 3 may transmit an electromagnetic radiation which is received by the device induction coil 11. Thereby an alternating current is induced within the device induction coil 11. The load varying unit 15 of the device 10 may be adapted to vary the load seen at the device induction coil 11 according to a predefined pattern. The pattern may depend on the unique identifier provided by the identifier generating unit 13. In other words, the load variation pattern represents coded information regarding the unique identifier to be assigned to the hob induction coil 3.
(14) The control unit 5 correlated with the hob induction coil 3 may comprise a load detection unit. The load detection unit may be adapted to determine the electric load being effective at the hob induction coil 3. Thereby, the electric load pattern comprising information regarding the unique identifier may be processed by the control unit 5. Specifically, the control unit 5 may comprise decoding means for obtaining the unique identifier out of the electric load pattern. The control unit 5 may be coupled with a memory in which the unique identifier is stored. Thereby, the unique identifier may be associated to the hob induction coil 3 by which the electric load pattern comprising information regarding the unique identifier has been received.
(15)
(16) The induction hob 1 may comprise one or more generator units 6, each generator unit 6 being coupled with one or more hob induction coils 3 for providing an induction current signal to the hob induction coils 3. Furthermore, the induction hob 1 may include one or more control units 5, the control unit 5 being coupled with one or more of said generator units 6.
(17) Similarly to the embodiment according to
(18)
(19) Alternatively, the information regarding the unique identifier may be transferred by using a frequency or amplitude modulation coding or any other suitable coding being capable for transferring said information.
(20) Above, embodiments of a method for assigning a unique identifier to a hob induction coil of an induction hob, a device for assigning a unique identifier to a hob induction coil and a induction hob according to the present invention as defined in the appended claims have been described. These should be seen as merely non-limiting examples. As understood by a skilled person, many modifications and alternative embodiments are possible within the scope of the invention.
LIST OF REFERENCE NUMERALS
(21) 1 induction hob 2 cooking surface 3 hob induction coil 4 cookware 5 control unit 5.1 decoding unit 6 generator unit 10 device 11 device induction coil 11a induction coil array 12 basic unit 13 identifier generator unit 14 signal generator unit 15 load varying unit