WO2017038013A1 - 誘導加熱調理器 - Google Patents
誘導加熱調理器 Download PDFInfo
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- WO2017038013A1 WO2017038013A1 PCT/JP2016/003637 JP2016003637W WO2017038013A1 WO 2017038013 A1 WO2017038013 A1 WO 2017038013A1 JP 2016003637 W JP2016003637 W JP 2016003637W WO 2017038013 A1 WO2017038013 A1 WO 2017038013A1
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- WIPO (PCT)
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- display
- induction heating
- coil
- top plate
- heating cooker
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- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B6/00—Heating by electric, magnetic or electromagnetic fields
- H05B6/02—Induction heating
- H05B6/10—Induction heating apparatus, other than furnaces, for specific applications
- H05B6/12—Cooking devices
- H05B6/1209—Cooking devices induction cooking plates or the like and devices to be used in combination with them
- H05B6/1218—Cooking devices induction cooking plates or the like and devices to be used in combination with them with arrangements using lights for heating zone state indication
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- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B6/00—Heating by electric, magnetic or electromagnetic fields
- H05B6/02—Induction heating
- H05B6/10—Induction heating apparatus, other than furnaces, for specific applications
- H05B6/12—Cooking devices
- H05B6/1209—Cooking devices induction cooking plates or the like and devices to be used in combination with them
- H05B6/1236—Cooking devices induction cooking plates or the like and devices to be used in combination with them adapted to induce current in a coil to supply power to a device and electrical heating devices powered in this way
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- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B2213/00—Aspects relating both to resistive heating and to induction heating, covered by H05B3/00 and H05B6/00
- H05B2213/03—Heating plates made out of a matrix of heating elements that can define heating areas adapted to cookware randomly placed on the heating plate
Definitions
- the present disclosure relates to an induction heating cooker that induction-heats an object to be heated such as a cooking pan.
- an induction heating cooker for example, a plurality of heating coils are arranged directly under a top plate.
- the induction heating cooker is configured to induction-heat a metal cooking pan or the like, which is an object to be heated, placed on the top plate by a heating coil.
- an induction heating cooker having a display unit that displays cooking information related to cooking is disclosed (for example, see Patent Document 1).
- the induction heating cooker disclosed in Patent Document 1 includes a capacitive touch key, an operation dial, and a display unit.
- the display unit is fixed to the main body of the induction heating cooker.
- This disclosure provides an induction heating cooker that can improve convenience.
- the induction heating cooker of the present disclosure includes a top plate on which an object to be heated is placed, a coil that is provided below the top plate and that induction-heats the object to be heated placed on the top plate, and a coil And a main body arranged to support the top plate.
- the induction heating cooker includes a display that displays cooking information related to cooking by the induction heating cooker.
- the display includes a communication unit that communicates with the main body, and is provided separately from the main body.
- the display for displaying the cooking information is provided so as to be movable separately from the main body.
- the induction heating cooking appliance which the user's convenience improved can be provided.
- FIG. 1 is a longitudinal sectional view of an induction heating cooker according to the present embodiment.
- FIG. 2 is a plan view of the induction heating cooker according to the embodiment.
- FIG. 3 is a flowchart which shows the method of displaying the displayable area
- FIG. 4A is a plan view for explaining the method according to the flowchart of FIG.
- FIG. 4B is a plan view for explaining the method according to the flowchart of FIG.
- FIG. 4C is a plan view for explaining the method according to the flowchart of FIG. 4D is a plan view for explaining the method according to the flowchart of FIG.
- FIG. 5 is a top view which shows the modification regarding the arrangement configuration of the coil of the induction heating cooking appliance concerning the embodiment.
- FIG. 1 is a longitudinal sectional view of the induction heating cooker according to the present embodiment.
- FIG. 2 is a plan view of the induction heating cooker according to the embodiment.
- the induction heating cooking appliance 2 is a cooking appliance (IH cooking appliance) etc. which have the structure which induction-heats the to-be-heated material 4, for example.
- IH cooking appliance IH cooking appliance
- the induction heating cooker 2 includes a main body 6, a top plate 8, a plurality of coils 10, and the like.
- the object to be heated 4 is cooked by induction heating through the coil 10 immediately below the object to be heated 4.
- the induction heating cooker 2 of this Embodiment is equipped with the installation display part (1st display part) 12, the display (2nd display part) 14, the temperature detection part 16, and the light emission unit 18 (FIG. 2). And a control unit 20 and the like.
- the width direction in the induction heating cooker 2 will be described as the X direction, the depth direction as the Y direction, and the height direction as the Z direction.
- the object to be heated 4 is composed of an object such as a cooking pan that is induction-heated by the induction heating cooker 2. At least a part of the article to be heated 4 is made of metal. Thereby, an eddy current flows in the metal by the magnetic force lines generated by the coil 10, and the induction heating of the article to be heated 4 becomes possible.
- the main body 6 constitutes a base part where the user cooks with the induction heating cooker 2.
- the main body 6 is provided with a top plate 8 at the top.
- the top plate 8 is formed of, for example, crystallized glass having translucency, and constitutes the top plate of the induction heating cooker 2.
- the object to be heated 4 and a display 14 described later are placed on the top plate 8.
- the coil 10 generates magnetic field lines to perform induction heating of the object to be heated 4, power supply to the display 14, or charging.
- the coil 10 of this Embodiment is comprised by the doughnut-shaped shape where a center part is hollow in upper direction.
- a light emitting unit 18 described later is disposed around the coil 10.
- the coils 10 are arranged in a lattice shape (XY plane) composed of a plurality of columns (Y direction) and a plurality of rows (X direction). With this arrangement, even if the article to be heated 4 is placed at an arbitrary position on the top plate 8, induction heating can be performed by at least one coil 10 arranged immediately below the article to be heated 4.
- the equipped display unit 12 is configured by a liquid crystal display, for example, and displays information (cooking information) related to cooking of the induction heating cooker 2, for example. As shown in FIG. 1, the installation display unit 12 is fixedly provided on the front surface (the front side in the Y direction) of the main body unit 6. Note that the installation position of the equipped display unit 12 is not limited to the front surface of the main body unit 6, and may be provided on the other surface, for example, the upper surface of the main body unit 6.
- the display 14 displays cooking information of the induction heating cooker 2 and the like, similar to the equipped display unit 12.
- the display 14 is composed of, for example, a touch panel tablet having a screen for displaying cooking information. That is, unlike the fixed display unit 12, the display 14 is provided separately from the main body 6 and the top plate 8. Thereby, the display 14 can be arrange
- the display 14 can be placed on the top plate 8 and used in the same manner as the object to be heated 4.
- the display 14 includes a communication unit 14a, a battery 14b, a power receiving coil 14c, and the like.
- the communication unit 14a communicates with a control unit 20 in the main body unit 6 described later.
- the battery 14b is composed of, for example, a rechargeable lithium ion battery, and constitutes a drive unit that drives the display 14.
- the power receiving coil 14c receives the electromagnetic field generated by the coil 10 immediately below the display 14 and generates power.
- the power receiving coil 14c is connected to the battery 14b.
- the battery 14b is configured to be able to be charged by receiving the supply of electric power generated by the power receiving coil 14c. That is, the display 14 is configured to be able to supply power via the coil 10 of the main body 6 by the battery 14b and the power receiving coil 14c.
- the temperature detection unit 16 is constituted by a temperature sensor such as a thermistor, for example, and detects the temperature of the top plate 8 above the coil 10. Thereby, the temperature detection unit 16 detects the temperature of the object to be heated 4 via the top plate 8.
- a temperature sensor such as a thermistor, for example
- the temperature detection unit 16 detects the temperature of the object to be heated 4 via the top plate 8.
- one temperature detector 16 is provided corresponding to each coil 10.
- FIG. 1 although the structure which provides the temperature detection part 16 in contact with the lower surface of the top plate 8 is shown as an example, it is not restricted to this. As long as the temperature of the article to be heated 4 can be detected via the top plate 8, the temperature detector 16 may be disposed around the coil 10, for example.
- the light emitting units 18 are individually arranged around each coil 10 as shown in FIG.
- the light emitting unit 18 makes the position of the coil 10 generating the electromagnetic field visible by the light emission through the top plate 8 (visible).
- the light emitting unit 18 in this Embodiment is comprised by ring-shaped LED provided so that the coil 10 might be enclosed.
- the light emitting unit 18 functions as a guide unit that guides a mountable region of a non-contact power receiving device such as the display 14.
- the control unit 20 is disposed in the main body unit 6 and controls the operation of the induction heating cooker 2. Specifically, the control unit 20 is connected to the plurality of coils 10 arranged in the main body unit 6, the equipped display unit 12, and the plurality of temperature detection units 16, and controls these operations.
- control unit 20 is configured to be capable of wireless communication with the communication unit 14a of the display 14. Thereby, the control part 20 communicates cooking information etc. mutually with the display 14, for example.
- the movable display 14 is provided separately from the main body 6 separately from the provided display 12. Thereby, the user can arrange the display 14 at his / her favorite place (for example, an easy-to-see place) when cooking. Therefore, the user can cook by looking at the cooking information displayed on the screen of the display 14 only by moving the line of sight. As a result, convenience for the user can be improved.
- the display 14 when the display 14 is placed on the top plate 8, the display 14 can be supplied and charged via the coil 10 of the main body 6. Thereby, the user can cook the article to be heated 4 while confirming the cooking information on the display 14 placed on the top plate 8.
- the battery 14b and the like can be fed and charged via the power receiving coil 14c of the display 14. Therefore, the user can cook while watching the display 14 without worrying about the remaining amount of the battery 14b capacity of the display 14.
- the coil 10 is used as a multifunctional coil having a function of feeding and charging the display 14 as well as cooking by heating the article 4 to be heated.
- a layout-free multi-coil configuration in which the heated object 4 and the display 14 can be placed at an arbitrary position on the top plate 8 is adopted.
- the display 14 can be charged in a state where the display 14 is placed on the top plate 8. Thereby, a particularly excellent effect can be obtained from the viewpoint of convenience.
- the induction heating cooker 2 of the present embodiment is configured.
- FIG. 3 is a flowchart showing a method of displaying the displayable area of the display in the induction heating cooker.
- 4A to 4D are plan views for explaining an example of displaying and guiding the mountable areas in order according to the flowchart shown in FIG.
- a signal is transmitted from the display 14 to the control unit 20 of the main unit 6 (step S1). Specifically, the user presses a button (not shown) provided on the display 14. Thereby, the communication unit 14 a of the display 14 transmits a signal to the control unit 20.
- the control unit 20 recognizes that the display 14 is placed on the top plate 8 by a signal from the communication unit 14a. At this time, the control unit 20 stores various information related to the display 14 (for example, information on the type and size of the display 14). Therefore, when the control unit 20 receives a signal transmitted from the display 14, the control unit 20 reads information on the display 14.
- control unit 20 confirms the heating status by the coil 10 (step S2). That is, the control unit 20 confirms whether or not each of the plurality of coils 10 is being heated. In the present embodiment, as shown in FIG. 4A, for example, it is confirmed that one coil 10a is being heated. Thereby, it can confirm that the to-be-heated material 4 (not shown) which receives induction heating is mounted in the upper surface of the top plate 8 located above the coil 10a.
- the control unit 20 determines the temperature of each coil 10 input from the temperature detection unit 16 (step S3). Specifically, except for the coil 10a that has been confirmed to be heated in step S2 and its surrounding area, the controller 20 detects that the temperature detected by the temperature detectors 16 of the other coils 10 is a predetermined temperature (for example, 60 ° C.) or higher. At this time, the coil 10a confirmed to be heated in step S2 and its surrounding area correspond to the area A1 shown in FIG. 4B. Therefore, the control unit 20 determines whether or not the temperature detected by the temperature detection unit 16 is equal to or higher than a predetermined temperature in the region on the top plate 8 excluding the region A1.
- a predetermined temperature for example, 60 ° C.
- the control unit 20 determines with the temperature detected by the detection part 16 being more than predetermined temperature.
- control unit 20 performs light emission display by the light emitting unit 18 (step S4). Specifically, as illustrated in FIG. 4D, the control unit 20 performs light emission by the light emitting unit 18 in the area A1 and the predetermined area A3 excluding the area A2 determined to be equal to or higher than the predetermined temperature in step S3. That is, the control unit 20 causes the low temperature region A3 to emit light excluding the high temperature regions (for example, the region A1 and the region A2). Thereby, the control part 20 light-emits and displays area
- control unit 20 does not determine that the region A4 (region on the near side in the Y direction) adjacent to the region A2 illustrated in FIG. 4D is equal to or higher than the predetermined temperature in step S3. Nevertheless, the control unit 20 does not control the light emitting unit 18 to emit light in step S4 for the following reason.
- the size of the display 14 corresponds to the area of the coil 10 in a range of a total of four rows by two columns in the vertical and horizontal directions.
- the area A4 cannot secure an area of four sizes on which the display 14 is placed. Therefore, the control unit 20 excludes the area A4 from the mountable area of the display 14 and performs control so that the light emitting unit 18 does not emit light. Accordingly, the control unit 20 causes only the light emitting unit 18 in the area A3 to emit light as an area where the display 14 can be placed. As a result, the area where the display 14 can be placed can be more reliably guided to the user.
- the control unit 20 guides the user by causing the light-emitting unit 18 in the low-temperature area A3 to emit light and display it as an area on which the display 14 can be placed. Thereby, the user can place the display 14 in the safe area A3 where the temperature of light emission is low. Therefore, it is possible to prevent the display 14 from being placed in a high temperature region. This prevents a malfunction of the display 14 itself or a malfunction due to a user touching a high temperature area. As a result, safety can be further improved.
- a multi-coil configuration is employed in which the heated object 4 and the display 14 can be placed at an arbitrary position on the top plate 8.
- a safe area with a low temperature is displayed as a mountable area.
- the to-be-heated material 4 and the display 14 can be reliably mounted in the safe area
- control unit 20 emits light so as not to emit light around the coil 10a being heated (for example, the regions A1 and A2) and the region A4 where the display 14 cannot be placed.
- the light emission of the unit 18 is controlled.
- the control unit 20 does not guide the display 14 as a region on which the display 14 can be placed even in the region around the coil 10a being heated and in the region where the temperature is low.
- the object to be heated 4 heated by the coil 10a contains moisture, water droplets having a high temperature may be scattered around the coil 10a.
- the scattered water droplets may adhere to the display 14 or the user.
- the periphery of the coil 10a being heated is excluded from the mountable region, and the light emitting unit 18 is controlled not to emit light.
- the display 14 may further display the situation inside the refrigerator / freezer or the contents of the stored items.
- the communication unit 14a of the display 14 is preferably configured to perform wireless communication not only with the induction heating cooker 2 (control unit 20) but also with the refrigerator / freezer.
- the display 14 may be configured to display a screen for managing the vital data (physical information) of the user and suggesting a recipe, for example.
- vital data such as the user's weight and body fat percentage
- suggested contents such as a recipe recommended based on the displayed vital data may be displayed at other locations on the same screen.
- a recipe with low calories is selected from a large number of recipes stored in the display 14 and displayed for a user whose latest weight or body fat percentage is increasing.
- the recipe according to a user's vital data can be displayed on the screen of the display 14, and can be proposed to a user. As a result, it can play a role in managing the physical condition of the user.
- the display 14 may display a recipe guide for the recipe selected by the user, for example.
- a recipe guide for the recipe selected by the user for example.
- the calories and cooking time of the selected recipe, the amount for each material, and the like may be displayed. Thereby, based on the displayed screen, the user can prepare food necessary for the recipe and perform cooking.
- a dish taken by the user according to the displayed recipe may be displayed on the screen of the display 14.
- a dish image taken by the user with a camera built in the display 14 is displayed on a part of the screen, for example.
- the image of the recipe photographed in the past including the above image may be displayed on another part of the same screen of the display 14. Thereby, the user can manage a daily menu, referring the past recipe.
- the present invention is not limited thereto.
- cooking may be performed in a state where the display 14 is placed at a position (for example, a wall) different from the top plate 8.
- the user can cook while watching the display 14 driven by the built-in battery 14b.
- the case of a ring-shaped LED in which the light emitting unit 18 is provided so as to surround the coil 10 is described as an example, but the present invention is not limited to this.
- the configuration of the light emitting unit 18 may be arbitrary as long as it is a light emitting unit that emits light so as to indicate a region where the object to be heated 4 or the display 14 can be placed.
- the configuration of the light emitting unit 18 that emits light in a grid (lattice form) with one coil area as one unit (one grid) may be used.
- the present invention is not limited to this.
- the plurality of coils 22 may be arranged alternately (staggered), and may be arranged in an oblique direction different from the X direction and the Y direction, for example.
- the light emitting unit 28 may be disposed around each of the coils 22 as in the above-described embodiment.
- the light-emitting unit 28 may not be disposed around each coil 22, and a region where a non-contact power receiving device such as a blender can be placed may be displayed by another method shown below.
- the mountable area may be displayed on the equipped display unit 12.
- FIG. This eliminates the need for the light emitting unit 28, thereby reducing the cost.
- it can narrow between each coil 22, it can attain uniform distribution of a heating part at the time of cooking.
- the transmission power per unit area during power transmission can be increased.
- the configuration in which the light emitting units 18 and 28 visually display and guide is described as an example, but the present invention is not limited thereto.
- a non-contact power receiving device such as the object to be heated 4 and the display 14 can be placed at an arbitrary position on the top plate 8 as an example of a multi-coil configuration in which layout is free. It is not limited to this.
- the placement location (heating region) of the object to be heated 4 or the non-contact power receiving device is determined in advance at a plurality of locations.
- a coil is provided corresponding to each preset placement location. And it is good also as a structure which a user mounts the to-be-heated material 4 and a non-contact power receiving apparatus in arbitrary positions from several mounting places.
- the present invention is not limited thereto. That is, although the case where the to-be-heated material 4 has already been put on the top plate 8 was demonstrated to the example, it is not restricted to this. For example, there may be a case where the coil 10 being heated does not exist, that is, the heated object 4 is not placed on the top plate 8. In this case, first, in the temperature determination in step S3 shown in FIG. 3, the control unit 20 determines the temperature result of the temperature detection unit 16 in all regions.
- the control part 20 should just perform light emission control of the light emission unit 18 by step S4 based on a determination result.
- the user places the display 14 on the top plate 8 based on the placement guidance by the light emission control of the light emitting unit 18. And after that, it is good also as a structure which mounts the to-be-heated material 4 on the top plate 8, and performs heating control.
- the display 14 is placed in a low temperature region. Can be used safely.
- the case where one object to be heated 4 is arranged on the top plate 8 has been described as an example, but the present invention is not limited to this.
- a plurality of objects to be heated 4 may be arranged on the top plate 8.
- the control similar to the control described in step S3 in FIG. 3 may be performed individually.
- the temperature determination in step S3 is performed except for the region where the coil 10a is determined to be heated and its surrounding region in step S2 shown in FIG. Not limited to this.
- the temperature determination of step S3 may be performed in the region including the peripheral region of the coil 10a except for the region where it is determined in step S2 of FIG. 3 that the coil 10a is being heated.
- the “peripheral region” is not limited to the size of the range shown in FIG. Thereby, when the heating electric power in the coil 10a is low and the temperature is not so high, a place where the non-contact power receiving device can be safely placed can be taken wider.
- step S1 in FIG. 3 the case where a signal is transmitted to the control unit 20 by the user pressing the button on the display 14 in step S1 in FIG. 3 is described as an example, but the present invention is not limited thereto.
- steps S2 to S4 in FIG. 3 may be performed by pressing a button provided on the main body 6 of the induction heating cooker 2 to control the light emission of the light emitting unit.
- step S1 of the flowchart shown in FIG. 3 can be omitted.
- the communication unit 14a of the display 14 may automatically transmit a signal to the control unit 20 of the main body 6 when the display 14 approaches the main body 6. Thereby, there are few operations of a user and it can be used more simply.
- a screen showing the light emission state of the light emitting unit 18 may be displayed on the display 14.
- an example of the arrangement of the food item may be displayed on the display 14.
- a transparent dish is placed on the display 14.
- the arrangement may be performed according to the display screen of the display 14 arranged under the plate.
- you may display arbitrary animations, such as how to cut a foodstuff, on the display screen of the display 14.
- FIG. Thereby, operation time, such as arrangement and cooking, can be shortened. Furthermore, the appearance of the cooked food can be improved.
- the display 14 itself may be configured to function as a control unit of the induction heating cooker 2.
- a coil can be arrange
- the induction heating cooker of the present disclosure is provided with a top plate on which an object to be heated is placed, and an object to be heated that is provided below the top plate and placed on the top plate. And a main body disposed to receive the coil and support the top plate.
- the induction heating cooker may include a display that displays cooking information related to cooking by the induction heating cooker, the display may include a communication unit that communicates with the main body, and may be provided separately from the main body. .
- the user can cook while placing the display at an arbitrary position.
- the induction heating cooking appliance which a user's convenience improves can be provided.
- the display of the induction heating cooker of the present disclosure includes a power receiving coil that generates electric power by receiving an electromagnetic field generated by the coil when placed on the top plate, and the display is generated by the power receiving coil.
- a configuration driven by electric power may be used.
- the display can be powered on the top plate. Therefore, user convenience is improved.
- the coil of the induction cooking device of the present disclosure may be configured by a plurality of coils arranged below the top plate.
- the user can select various combinations of places on which the object to be heated and the display are placed. As a result, user convenience can be further improved.
- the display of the induction heating cooker of the present disclosure may be placed at any position on the top plate and may be powered by one of at least a plurality of coils directly below the place where it is placed. Thereby, the user can supply power while placing the display at any convenient position on the top plate. Therefore, the display can be used for a long time, and the convenience for the user is further improved.
- the display of the induction heating cooker of the present disclosure may include a battery.
- charge to the battery of a display from an induction heating cooking appliance is attained. For this reason, it is possible to more easily use the display for a long time or use the display at a moved position.
- the main body part of the induction heating cooker of the present disclosure includes a light emitting unit disposed around the coil, a temperature detection unit that detects the temperature of the coil, and a control unit, and the control unit is detected by the temperature detection unit. Based on the measured temperature, a predetermined light emitting unit may emit light to display a position where the display can be placed. Thereby, a display can be mounted on the coil of the area
- the user can perform cooking or the like while looking at cooking information displayed on a display provided separately. Therefore, it is useful for applications such as induction heating cookers that require further convenience during cooking.
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Abstract
Description
以下に、本開示の実施の形態にかかる誘導加熱調理器について、図1および図2を用いて、説明する。
4 被加熱物
6 本体部
8 トッププレート
10,10a,10b,10c,10d,22 コイル
12 備え付け表示部(第1の表示部)
14 ディスプレイ(第2の表示部)
14a 通信部
14b バッテリ
14c 受電コイル
16 温度検知部
18,28 発光ユニット
20 制御部
Claims (6)
- 被加熱物が載置されるトッププレートと、前記トッププレートの下方に設けられ、前記トッププレート上に載置された被加熱物を誘導加熱するコイルと、前記コイルを収容するとともに、前記トッププレートを支持するように配設された本体部と、を備える誘導加熱調理器であって、
前記誘導加熱調理器の調理に関する調理情報を表示するディスプレイを、備え、
前記ディスプレイは、前記本体部と通信する通信部を備え、前記本体部と別体で移動可能に設けられる、誘導加熱調理器。 - 前記ディスプレイは、前記トッププレート上に載置されたときに、前記コイルが発生した電磁界を受けて電力を発生させる受電コイルを備え、
前記ディスプレイは、前記受電コイルが発生させた電力によって駆動される、請求項1に記載の誘導加熱調理器。 - 前記コイルは、前記トッププレートの下方に配列される複数のコイルで構成される、請求項1に記載の誘導加熱調理器。
- 前記ディスプレイは、前記トッププレート上の任意の位置に載置可能で、載置した箇所の直下における少なくとも前記複数のコイルの1つによって給電される、請求項3に記載の誘導加熱調理器。
- 前記ディスプレイは、バッテリを備える、請求項1に記載の誘導加熱調理器。
- 前記本体部は、前記コイルの周囲に配置される発光ユニットと、前記コイルの温度を検知する温度検知部と、制御部を備え、
前記制御部は、前記温度検知部で検知した温度に基づいて、所定の前記発光ユニットを発光させて、前記ディスプレイの載置可能な位置を表示する、請求項1に記載に誘導加熱調理器。
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JP2017506430A JPWO2017038013A1 (ja) | 2015-08-28 | 2016-08-08 | 誘導加熱調理器 |
EP16841054.6A EP3344008B1 (en) | 2015-08-28 | 2016-08-08 | Induction heating cooker |
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WO2020080610A1 (ko) * | 2018-10-19 | 2020-04-23 | 엘지전자 주식회사 | 조리기기 |
CN113330820A (zh) * | 2019-01-11 | 2021-08-31 | 法比塔有限公司 | 改进的感应烹饪系统 |
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EP3833159A1 (en) * | 2019-12-03 | 2021-06-09 | Electrolux Appliances Aktiebolag | Induction hob appliance |
KR20230080215A (ko) * | 2021-11-29 | 2023-06-07 | 삼성전자주식회사 | 다중 전원 구조를 갖는 조리기기 |
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CN113330820A (zh) * | 2019-01-11 | 2021-08-31 | 法比塔有限公司 | 改进的感应烹饪系统 |
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EP3344008A4 (en) | 2018-08-15 |
EP3344008B1 (en) | 2021-09-29 |
JPWO2017038013A1 (ja) | 2018-06-14 |
EP3344008A1 (en) | 2018-07-04 |
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