Double-sided induction range system

The double-sided induction range system efficiently heats both sides of a double-sided pan, managing cooking time and odor, by using dual induction units and an integrated control system.

JP7799346B2Active Publication Date: 2026-01-15PEACEWORLD CO LTD
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Patent Information

Application Number
JP2024533314
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2021-12-10
Filing Date
2022-06-07
Publication Date
2026-01-15
Estimated Expiration
2042-06-07

AI Technical Summary

Technical Problem

Existing induction ranges struggle to simultaneously heat both sides of a double-sided pan efficiently, leading to prolonged cooking times and issues with odor and smoke generation during cooking, particularly when preparing foods like fish or meat.

Method used

A double-sided induction range system with two pivotably connected induction units, each heating one side of the pan, accompanied by an oil collection bin and a single control unit for managing heating intensity and settings based on recipes.

Benefits of technology

The system reduces cooking time by simultaneous heating, adjusts to food type, manages moisture and oil discharge, and ensures uniform cooking through automatic control.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a double-sided induction range system including: a main body; a first induction unit that is hingedly connected to the main body and that induces a magnetic field through a first inner surface to heat one side of an induction double-sided pan; a second induction unit that is hingedly connected to the main body and that induces a magnetic field through a second inner surface to heat the other side of the double-sided pan; an oil collection tube that is stored inside the main body and that collects moisture and oil discharged from the double-sided pan during cooking; and a single control unit that is electrically connected to each of the first induction unit and the second induction unit.
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Description

[Technical Field]

[0001] The present invention relates to an induction range, and more particularly to a double-sided induction range system capable of simultaneously heating both sides of a double-sided pan consisting of a lower pan and an upper pan packed with the lower pan. [Background technology]

[0002] Microwave ovens, gas ranges, and ovens have traditionally been used as heating devices for cooking food and drink. However, due to issues such as indoor air pollution and rising indoor temperatures, the use of induction ranges has recently increased. Induction ranges are cooking appliances that use induction heating and offer significant advantages in terms of high energy efficiency and stability. They also have the advantage of not consuming oxygen or emitting waste gases. However, because the magnetic field of an induction range has a relatively narrow range, a special container must be placed directly on top of the induction range itself to be used.

[0003] Recently, in the wake of the COVID-19 pandemic, home cooking has increased. However, when using a single-sided frying pan to cook fish or meat, the process generates a strong odor and smoke. In response, a double-sided pan was developed, in which the lower and upper pans are hinged and sealed together when closed. With the widespread popularity of induction microwaves, a double-sided pan for induction has been developed and is now on the market.

[0004] However, induction microwaves use an induction heating method that uses a magnetic field and can be configured in a variety of ways. Therefore, when using a double-sided induction pan, it is necessary to develop an induction microwave that can simultaneously heat both sides of the pan to shorten cooking time. Also, when using a double-sided induction pan, it is necessary to develop an induction microwave that can store cooking conditions such as heating intensity and heating time according to the food to be cooked in advance to ensure uniform cooking. Summary of the Invention [Problem to be solved by the invention]

[0005] The present invention has been devised to solve the above problems, and aims to provide a double-sided induction range system that can simultaneously heat both sides of an induction double-sided pan to shorten cooking time. Another object of the present invention is to provide a double-sided induction range system in which the direction of placement of the double-sided induction pan can be adjusted depending on the food to be cooked. In addition, the present invention aims to provide a double-sided induction range system that is easy to maintain and manage after the operation by recovering the moisture and oil discharged from the double-sided induction pan. The present invention also aims to provide a double-sided induction range system that can automatically control the heating intensity and other settings by providing recipes tailored to each food item, enabling uniform cooking depending on the food item. [Means for solving the problem]

[0006] To solve the above-mentioned problems, an embodiment of the present invention provides a double sided induction range system including a main body; a first induction unit pivotably connected to the main body via a hinge and inducing a magnetic field through a first inner surface to heat one side of an induction double sided pan; a second induction unit pivotably connected to the main body via a hinge and inducing a magnetic field through a second inner surface to heat the other side of the double sided pan; an oil collection bin housed inside the main body and collecting moisture and oil discharged from the double sided pan during cooking; and a single control unit electrically connected to each of the first induction unit and the second induction unit.

[0007] When the first induction unit is rotated on a hinge so that it faces vertically upward and the first inner surface is positioned perpendicular to the ground, it is preferable that the second induction unit is positioned so that the second inner surface faces the first inner surface, and a heating groove portion in which the double-sided pan is accommodated is formed between the first induction unit and the second induction unit.

[0008] When the first induction unit is positioned horizontally by hinge rotation so that the first inner surface faces vertically upward, it is preferable that the second induction unit is positioned so that the angle between the first inner surface and the second inner surface is within a range of 30 degrees to 90 degrees.

[0009] The first inner surface and the second inner surface preferably include magnetic field permeable plates.

[0010] It is preferable that the distance between the first inner surface and the second inner surface is greater than the distance between one side and the other side of the double-sided pan.

[0011] The double-sided pan is provided with an oil storage section for storing moisture and oil generated from the food to be cooked,

[0012] It is preferable that the upper surface of the main body be formed with a linear opening into which the oil container is inserted and a curved mounting surface that allows the double-sided pan to be stably mounted on the main body.

[0013] The oil collecting vessel is preferably pulled in and out of the main body in a sliding manner.

[0014] It is preferable that at least one of the first induction unit and the second induction unit is provided with a temperature sensor unit for measuring the temperature of the double-sided pan. [Effects of the Invention]

[0015] According to the means for solving the problems of the present invention as detailed above, various effects can be expected, including the following: However, the present invention is not valid unless it achieves all of the following effects. The double-sided induction range system according to one embodiment of the present invention can reduce cooking time by simultaneously heating both sides of a double-sided induction pan. In addition, the induction double-sided pan can be adjusted vertically or horizontally depending on the food being cooked. In addition, since the moisture and oil discharged from the double-sided induction pan are collected, subsequent maintenance and management can be made easier. In addition, recipes can be provided according to each food item, and the heating intensity of the induction range can be automatically controlled so that uniform cooking can be achieved depending on the food item. [Brief explanation of the drawings]

[0016] [Figure 1] 1 is a perspective view showing a state in which a double-sided induction oven system according to an embodiment of the present invention is in use. FIG. [Figure 2] FIG. 2 is a front view of FIG. [Figure 3] FIG. 3 is a side view of FIG. 2. [Figure 4]3 is a cross-sectional view showing a process in which water and oil are collected in an oil collection tube by the double-sided pan of FIG. 2. FIG. [Figure 5] FIG. 2 is a perspective view of the double-sided induction oven system of FIG. 1 with the double-sided pan removed. [Figure 6] 10 is a diagram illustrating a state in which a double-sided induction microwave system according to another embodiment of the present invention is used; DETAILED DESCRIPTION OF THE INVENTION

[0017] In order to fully understand the configuration and effects of the present disclosure, preferred embodiments of the present disclosure will be described with reference to the accompanying drawings. However, the present disclosure is not limited to the embodiments disclosed below, and may be embodied in various forms and may undergo various modifications. Hereinafter, detailed descriptions of well-known functions related to the present disclosure will be omitted if they are obvious to those skilled in the art and may unnecessarily obscure the gist of the present disclosure. Terms such as "first," "second," etc. may be used to describe various components, but the components should not be limited by these terms. These terms may be used only to distinguish one component from another. For example, a first component may be designated a "second component," and similarly, a second component may be designated a "first component," without departing from the scope of the present disclosure. In this application, the terms "comprise" or "have" and the like are intended to specify the presence of any feature, number, step, operation, component, part, or combination thereof described in the specification, but do not preclude the possibility of the presence or addition of one or more other features, numbers, steps, operations, components, parts, or combinations thereof. The terms used in this application are merely used to describe specific embodiments and are not intended to limit the present invention. Singular expressions include plural expressions unless clearly indicated differently in the context. Terms used in the embodiments of the present disclosure may be interpreted in the sense commonly known to those skilled in the art unless otherwise defined.

[0018] Specific embodiments of the present invention will be described in detail below with reference to the drawings. Figure 1 is a perspective view showing a double-sided induction range system according to one embodiment of the present invention in use, Figure 2 is a front view of Figure 1, Figure 3 is a side view of Figure 2, Figure 4 is a cross-sectional view showing the process of water and oil being collected from the double-sided pan of Figure 2 into an oil collection tube, and Figure 5 is a perspective view of the double-sided induction range system of Figure 1 with the double-sided pan removed.

[0019] 1 to 5, a double-sided induction microwave system according to an embodiment of the present invention may include a main body 1000, a first induction unit 100, a second induction unit 200, an oil collection vessel 300, and a control unit (not shown). The embodiment of the present invention may also include an energy-efficient induction double-sided microwave pan 2000. The double-sided microwave pan 2000 may include, for example, a lower pan, an upper pan shaped to correspond to the lower pan and rotatably coupled to the lower pan, and handles attached to the lower pan and the upper pan. An induction heating plate (IH) may be further formed on the outer surfaces of the lower pan and the upper pan to transfer heat generated by induction heating of the double-sided induction microwave.

[0020] The inner surfaces of the lower and upper pans of the double-sided pan 2000 are recessed to accommodate the food to be cooked. The upper pan acts as a lid to prevent hot air from escaping during the heating process. When cooking food that is difficult to flip, such as fish, the double-sided pan 2000 can be rotated 180 degrees so that the upper pan is positioned underneath, allowing the top of the food to be heated directly through the upper pan.

[0021] Furthermore, when the double-sided pan 2000 is heated with the upper pan and the lower pan sealed together, moisture, oil, oily steam, etc. are generated from the food inside, which increases the pressure inside the double-sided pan 2000. Therefore, for example, a drain hole may be formed at the end of the lower pan to communicate between the inside and outside of the lower pan. As a result, moisture, oil, oily steam, etc. can be discharged to the outside of the double-sided pan 2000 through the drain hole.

[0022] In addition, the double-sided pan 2000 according to an embodiment may be formed with an oil-receiving portion 2100 for receiving moisture and oil generated from food to be cooked. The hinge rotation of the double-sided pan 2000 is achieved by the hinge connection between the lower pan and the upper pan. The hinge rotation occurs when a user opens or closes the double-sided pan 2000 using the handle. The oil-receiving portion 2100 according to an embodiment may be formed near the hinge connection position.

[0023] The main body 1000 is formed so that the double sided induction range according to one embodiment can be stably placed on the ground. The main body 1000 may include a main body case 1050 made of, for example, a synthetic resin material. The main body case 1050 may be formed in an exterior shape that includes a curved surface.

[0024] Meanwhile, the main body 1000 may include a printed circuit board on which various electric and electronic elements are mounted, a single control unit (not shown) electrically connected to the first induction unit 100 and the second induction unit 200, etc. That is, in one embodiment, the first induction unit 100 and the second induction unit 200 may be simultaneously controlled using a single control unit (not shown). Here, the control unit (not shown) may control the heating intensity, heating time, etc. of the first induction unit 100 and the second induction unit 200.

[0025] The control unit (not shown) may further include a mode switching unit (not shown). The mode switching unit switches the first induction unit 100 and the second induction unit 200 from standby mode to heating mode. When the power button is pressed to turn on the double-sided induction microwave, the first induction unit 100 and the second induction unit 200 may switch from off mode to standby mode. Since no power for heating is supplied to the first induction unit 100 and the second induction unit 200, the double-sided pan 2000 cannot be heated. Meanwhile, the main body 1000 may further include a proximity sensor (not shown) that checks whether the double-sided pan 2000 is placed in the double-sided induction microwave to switch from standby mode to heating mode. When the control unit (not shown) receives a signal from the proximity sensor indicating that the double-sided pan 2000 has been placed in the double-sided induction microwave, the double-sided induction microwave can finally switch from standby mode to heating mode.

[0026] The main body 1000 may also include an input unit 1400, a display unit 1500, a recipe memory unit (not shown), etc. Meanwhile, a control unit (not shown) may be electrically connected to the input unit 1400, the display unit 1500, the recipe memory unit, etc. First, the input unit 1400 may be formed as a touch panel or button on the front of the main body 1000. For example, a user can turn the power of the double-sided induction microwave on / off by pressing the power button. Also, a user can adjust the heating intensity and heating time of the first induction unit 100 and the second induction unit 200 by pressing the up / down buttons. In addition, the display unit 1500 is disposed on the front of the main body 1000 to visually inform the user of the operating status of the double-sided induction microwave.

[0027] The recipe memory unit can store multiple recipe modes with different cooking conditions and cooking sequences depending on the food to be cooked. The recipe memory unit is configured to communicate with an external server via wired or wireless communication. As a result, the recipe memory unit can periodically update the recipe mode depending on the season, for example. Meanwhile, the control unit (not shown) can control the heating intensity and heating time of the first induction unit 100 and the second induction unit 200 depending on the recipe mode selected by the user.

[0028] Meanwhile, a linear opening 1100 and a curved mounting surface 1200 may be formed on the top surface of the main body 1000. The linear opening 1100 allows the oil-receiving portion 2100 of the double-sided pan 2000 to be inserted therein. The linear opening 1100 is formed in a rectangular shape with a certain width and length on the top surface of the main body 1000. The curved mounting surface 1200 allows the double-sided pan 2000 to be stably mounted on the main body 1000. Thus, moisture and oil generated inside the double-sided pan 2000 during cooking flow downward due to gravity and move to the oil-receiving portion 2100 through the drain hole.

[0029] The main body 1000 may include an oil collection receptacle 300. The oil collection receptacle 300 is housed inside the main body 1000 and can collect water and oil discharged from the double-sided pan 2000 during cooking. The oil collection receptacle 300 may be disposed vertically below the linear opening 1100. Therefore, the water and oil that have moved to the oil storage unit 2100 can fall vertically from the oil storage unit 2100 by gravity and be collected in the oil collection receptacle 300. For this purpose, the oil collection receptacle 300 may include a container with an open top that collects and stores the water and oil that have fallen from the oil storage unit 2100.

[0030] The oil collection vessel 300 can be pulled in and out of the main body 1000 in a sliding manner. In addition, according to one embodiment, the bottom of the container can be formed to be inclined toward the front of the oil collection vessel 300. As a result, the front of the oil collection vessel 300 can store more water and oil than the rear. This makes it easier for the user to pull out and pull in the oil collection vessel 300 or to clean the oil collection vessel 300.

[0031] In addition, an overheat detector 1300 may be formed on the top surface of the main body 1000. The overheat detector 1300 may be partially exposed to the curved mounting surface 1200. As a result, the overheat detector 1300 can directly measure the temperature of the top surface of the double-sided pan 2000 placed on the curved mounting surface 1300. The overheat detector 1300 can monitor whether the temperature value of the double-sided pan 2000 exceeds a preset upper overheat limit. If the temperature value measured by the overheat detector 1300 exceeds the upper overheat limit, power supplied to the first induction unit 100 and the second induction unit 200 may be cut off, and the heating mode may be canceled. As a result, the double-sided induction microwave oven according to one embodiment can effectively prevent safety accidents, such as fires, caused by overheating.

[0032] The first induction unit 100 is hingedly connected to the main body 1000 and heats one side of the induction double-sided pan 2000 by inducing a magnetic field through the first inner surface 110. The first induction unit 100 can heat one side of the double-sided pan 2000, which is the side of the food to be cooked, in an indirect manner by inducing heat to one side of the double-sided pan 2000 using a magnetic field. At this time, the heating direction is m1. Preferably, the first inner surface 110 of the first induction unit 100 is formed to have a size (area) that entirely encompasses the size (area) of one side of the double-sided pan 2000. As a result, the first induction unit 100 can heat the entire side of the double-sided pan 2000 evenly. That is, the first induction unit 100 according to one embodiment can heat one side of the double-sided pan 2000 in a face-to-face manner.

[0033] To this end, the first induction unit 100 may include a circular coil 120, a coil base 130, an induction unit case 150, etc. Here, the circular coil may be wound concentrically around the coil base multiple times to form at least one stage. Meanwhile, the case accommodates the coil base around which the circular coil is wound. The first induction unit 100 according to one embodiment uses a conventional induction heating method using a circular coil, which is a well-known technology, and therefore, detailed description thereof will be omitted below.

[0034] The first induction unit 100 has an overall plate shape and is hinged to the main body 1000, particularly to the upper portion of the main body 1000, so that the first induction unit 100 can rotate within a preset angle range.

[0035] The second induction unit 200 is hingedly connected to the main body 1000 and heats the other side of the double-sided pan 2000 by inducing a magnetic field through the second inner surface 210. That is, the second induction unit 200 can heat the other side of the double-sided pan 2000 relative to the food being cooked in an indirect manner by inducing heat to the other side of the double-sided pan 2000 using a magnetic field. At this time, the heating direction is m2. Here, the second inner surface 210 of the second induction unit 200 is preferably formed to have a size (area) that entirely encompasses the other side of the double-sided pan 2000. As a result, the second induction unit 200 can heat the entire other side of the double-sided pan 2000 evenly. That is, the second induction unit 200 according to one embodiment can heat the entire other side of the double-sided pan 2000 in a face-to-face manner.

[0036] Meanwhile, the first induction unit 100 and the second induction unit 200 according to an embodiment have symmetrical shapes, sizes, specifications, etc. That is, the first induction unit 100 and the second induction unit 200 are configured as a pair. As a result, the second induction unit 200 also includes a circular coil 220, a coil base 230, an induction unit case 250, etc., similar to the first induction unit 100. Since the circular coil and other components have already been described in detail below, detailed description thereof will be omitted below. Furthermore, the second induction unit 200 according to an embodiment employs a conventional induction heating method similar to the first induction unit 100, and detailed description thereof will be omitted below.

[0037] The second induction unit 200 also has a plate shape similar to the first induction unit 100. The second induction unit 200 is also hinged to the main body 1000, particularly to the upper part of the main body 1000, and is rotatable within a preset angle range.

[0038] According to an embodiment, the first inner surface 110 and the second inner surface 210 may include a magnetic field transmission plate p. Therefore, the magnetic field generated by the first induction unit 100 can transmit through the magnetic field transmission plate p. Specifically, the magnetic field transmission plate p may be made of any one material selected from a non-magnetic material group, such as marble, wood, or glass. Here, it is preferable that the outer surface of the magnetic field transmission plate p is formed as a flat plane and has a thickness within a predetermined range. At this time, the thickness range of the magnetic field transmission plate p may be changed depending on the material of the magnetic field transmission plate p.

[0039] According to one embodiment, when the first induction unit 100 is placed vertically upward by pivoting on the hinge with the first inner surface 110 perpendicular to the ground, the second induction unit 200 may be placed with the second inner surface 210 facing the first inner surface 110. In this case, a heating groove hh in which a double-sided pan 2000 is accommodated may be formed between the first induction unit 100 and the second induction unit 200.

[0040] In addition, it is preferable that the distance d between the first inner surface 110 and the second inner surface 210 is greater than the distance between one side and the other side of the double-sided pan 2000. That is, the first inner surface 110 is disposed opposite one side of the double-sided pan 2000 with a predetermined gap therebetween. Also, the second inner surface 210 is disposed opposite the other side of the double-sided pan 2000 with a predetermined gap therebetween.

[0041] At this time, the double-sided pan 2000 is accommodated in the heating groove hh with the oil container 2100 inserted into the linear opening 1100 and stably placed on the curved mounting surface 1200. That is, the double-sided pan 2000 can be placed in the heating groove hh vertically upward, perpendicular to the ground. As a result, the first induction unit 100 and the second induction unit 200 can effectively heat both sides of the double-sided pan 2000 simultaneously.

[0042] 6 is a diagram showing a state in which a double-sided induction microwave system according to another embodiment of the present invention is in use. Referring to FIG. 6, when the first induction unit 100 is horizontally positioned with the first inner surface 110 facing vertically upward by hinge rotation, the second induction unit 200 can be positioned such that the angle a between the first inner surface 110 and the second inner surface 210 is within a range of 30 degrees to 90 degrees.

[0043] The first induction unit 100 can be stably fixed in a horizontal position by a stopper, etc. When the first induction unit 100 is positioned horizontally, the double-sided pan 2000 can be positioned such that one side of the double-sided pan 2000, for example, the lower pan, is positioned on the upper surface of the first inner surface 110. Here, it is preferable that the double-sided pan 2000 is positioned such that the oil container 2100 is located in the space above the linear opening 1100 formed on the upper surface of the main body 1000.

[0044] In this state, the second induction unit 200 can be hinged and rotated by a predetermined angle so that the second inner surface 210 faces the first induction unit 100. This is intended for a case where the food to be cooked is mainly cooked through the bottom surface according to the recipe mode, and only a slight heat is required to be provided to the top surface.

[0045] In addition, at least one of the first induction unit 100 and the second induction unit 200 may be provided with a temperature sensor ts for measuring the temperature of the double-sided pan 2000. The temperature sensor ts can measure the temperature of the double-sided pan 2000 in real time. The temperature sensor ts enables the food to be cooked at a cooking temperature corresponding to the recipe mode. Meanwhile, the temperature measured by the temperature sensor ts is displayed on the display 1500 so that the user can observe it. In addition, the control unit (not shown) can control the heating intensity, heating time, etc. of the first induction unit 100 and the second induction unit 200 based on the temperature input through the temperature sensor ts.

[0046] Although the preferred embodiments of the present invention have been described above as examples, the scope of the present invention is not limited to such specific embodiments, but can be appropriately modified within the scope of the claims.

Claims

1. Main body part; a double-sided induction pan inserted into the opening of the main body; a first induction unit pivotably connected to the main body via a hinge, the first induction unit inducing a magnetic field through a first inner surface to heat one side of the double-sided pan; a second induction unit pivotably connected to the main body via a hinge, the second induction unit inducing a magnetic field through a second inner surface to heat the other side of the double-sided pan; an oil collection vessel housed inside the main body for collecting water and oil discharged from the double-sided pan during cooking; and a single control unit electrically connected to the first induction unit and the second induction unit, a pair of concavely curved mounting surfaces are formed on an upper surface of the main body such that lower portions of the first inner surface and the second inner surface are exposed, Both sides of the curved resting surface include curved surfaces; On the upper surface of the main body, a linear opening is formed between the curved mounting surfaces, the linear opening being shorter than the length of the curved mounting surface and communicating with the rear end of the oil recovery cylinder, the control unit further includes a mode switching unit that switches the first induction unit and the second induction unit from a standby mode to a heating mode in which power for heating is supplied, An overheat detector is formed so as to be partially exposed on the curved installation surface, and when the temperature value measured by the overheat detector exceeds an upper overheat limit, the heating mode is cancelled. A double-sided induction range system.

2. When the first induction unit is rotated on the hinge so that the first inner surface is disposed vertically upward and the first inner surface is disposed perpendicular to the ground, the second induction unit is disposed so that the second inner surface faces the first inner surface.

2. The double-sided induction range system of claim 1.

3. The first inner surface and the second inner surface include a magnetic field transmission plate.

2. The double-sided induction range system of claim 1.

4. The distance between the first inner surface and the second inner surface is greater than the distance between one side and the other side of the double-sided pan.

3. The double-sided induction range system of claim 2.

5. The oil collection tube is pulled in and out by the main body using a sliding mechanism.

2. The double-sided induction range system of claim 1.

Citation Information

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