JP4821791B2 - Induction heating cooker - Google Patents

Induction heating cooker Download PDF

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JP4821791B2
JP4821791B2 JP2008071021A JP2008071021A JP4821791B2 JP 4821791 B2 JP4821791 B2 JP 4821791B2 JP 2008071021 A JP2008071021 A JP 2008071021A JP 2008071021 A JP2008071021 A JP 2008071021A JP 4821791 B2 JP4821791 B2 JP 4821791B2
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heated
induction heating
temperature
inverter
reference example
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JP2008181892A (en
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泉生 弘田
篤志 藤田
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Panasonic Corp
Panasonic Holdings Corp
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Panasonic Corp
Matsushita Electric Industrial Co Ltd
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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B6/00Heating by electric, magnetic or electromagnetic fields
    • H05B6/02Induction heating
    • H05B6/06Control, e.g. of temperature, of power
    • H05B6/062Control, e.g. of temperature, of power for cooking plates or the like
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B2213/00Aspects relating both to resistive heating and to induction heating, covered by H05B3/00 and H05B6/00
    • H05B2213/07Heating plates with temperature control means

Description

本発明は、一般家庭やオフィス、レストランなどで使用される誘導加熱調理器に関するものである。   The present invention relates to an induction heating cooker used in general homes, offices, restaurants and the like.

誘導加熱調理器では、誘導加熱コイルから高周波磁界が発生し、電磁誘導による渦電流のために鍋等の被加熱物が加熱される。   In an induction heating cooker, a high frequency magnetic field is generated from an induction heating coil, and an object to be heated such as a pan is heated by an eddy current due to electromagnetic induction.

以下、従来の誘導加熱調理器について、図12に基づいて一例を説明する。図において1はインバータ、2はインバータ1に接続された誘導加熱コイル、3は被加熱物であり、本実施例の場合調理鍋となっている。4は被加熱物3が載置されるトッププレート、5は被加熱物3の温度を検知する温度検知手段で具体的にはサーミスタをトッププレート4に密着させ、熱伝導により検知している。   Hereinafter, an example of a conventional induction heating cooker will be described with reference to FIG. In the figure, 1 is an inverter, 2 is an induction heating coil connected to the inverter 1, and 3 is an object to be heated, which is a cooking pot in this embodiment. Reference numeral 4 denotes a top plate on which the object to be heated 3 is placed. Reference numeral 5 denotes temperature detecting means for detecting the temperature of the object to be heated 3. Specifically, a thermistor is brought into close contact with the top plate 4 and is detected by heat conduction.

この構成において示すようにインバータ1により供給された高周波電流によって誘導加熱コイル2からは高周波磁界が発生し、電磁誘導による渦電流のために被加熱物3が加熱される。入力電力の可変及び安定化のため、インバータ1の電源電流を図示しないカレントトランスにより検知し、インバータ1の駆動周波数あるいは、図示しないスイッチング素子の導通比を変化させて、インバータ1の出力を制御している。温度検知手段5によって被加熱物3の温度を検出し、例えば揚げ物調理などの時に被加熱物3の温度を200℃になるようインバータ1の出力を制御している。   As shown in this configuration, a high-frequency magnetic field is generated from the induction heating coil 2 by the high-frequency current supplied from the inverter 1, and the object to be heated 3 is heated by the eddy current due to electromagnetic induction. In order to change and stabilize the input power, the power supply current of the inverter 1 is detected by a current transformer (not shown), and the output of the inverter 1 is controlled by changing the drive frequency of the inverter 1 or the conduction ratio of a switching element (not shown). ing. The temperature of the object to be heated 3 is detected by the temperature detection means 5, and the output of the inverter 1 is controlled so that the temperature of the object to be heated 3 becomes 200 ° C., for example, when cooking fried food.

上記従来の構成においては温度検知手段5がトッププレート4を介して被加熱物3の温度を検知しているため、熱応答が遅く適切な制御が困難という課題があった。具体的な事例を図13を用いて説明する。図13の実線は被加熱物3の温度であり破線は温度検知手段5の出力である。図に示すように被加熱物3の温度変化に対し、温度検知手段5の出力は時間的な遅れが生じているので、この結果例えば沸騰検知や、空鍋の異常温度上昇検知などが困難であるという課題である。   In the conventional configuration described above, the temperature detecting means 5 detects the temperature of the object to be heated 3 via the top plate 4, so that there is a problem that the thermal response is slow and appropriate control is difficult. A specific example will be described with reference to FIG. The solid line in FIG. 13 is the temperature of the article 3 to be heated, and the broken line is the output of the temperature detecting means 5. As shown in the figure, the output of the temperature detecting means 5 is delayed with respect to the temperature change of the article 3 to be heated. As a result, for example, it is difficult to detect boiling or abnormal temperature rise of an empty pan. This is a problem.

こういった背景から昨今、赤外線センサを用いて被加熱物3の温度を検知するものが開示されている(例えば、特許文献1参照)。
特開2002−299029号公報
From such a background, what detects the temperature of the to-be-heated material 3 using an infrared sensor is disclosed recently (for example, refer patent document 1).
JP 2002-299029 A

しかしながらこのような方法では高価な赤外線センサが必要になるという課題があった。   However, such a method has a problem that an expensive infrared sensor is required.

本発明は、上記従来の課題を解決するもので、赤外線センサなど新たな温度検知手段を用いずに被加熱物3の温度変化を高速に検知できる使い勝手の良い誘導加熱調理器を実現することを目的としたものである。   The present invention solves the above-described conventional problems, and realizes an easy-to-use induction heating cooker that can detect a temperature change of an object to be heated 3 at high speed without using a new temperature detecting means such as an infrared sensor. It is intended.

前記従来の課題を解決するために、本発明の誘導加熱調理器は、被加熱物が載置されるトッププレートと、高周波磁界を発生し前記トッププレート上の前記被加熱物を加熱する誘導加熱コイルと、前記誘導加熱コイルに高周波電流を供給するインバータと、前記インバータの入力電流が一定となるべく前記インバータを制御する制御手段と、前記トッププレートの裏面に密着して設けられ被加熱物の温度を検知するサーミスタを有し、前記制御手段は、所定時間以内に所定以上の制御量の変化があり、かつ、前記サーミスタからの温度検知情報が所定以上の温度変化であった場合にインバータの出力を抑制あるいは停止するものである。 In order to solve the conventional problems, an induction heating cooker according to the present invention includes a top plate on which an object to be heated is placed , and induction heating that generates a high-frequency magnetic field and heats the object to be heated on the top plate. A coil, an inverter for supplying a high-frequency current to the induction heating coil, a control means for controlling the inverter so that an input current of the inverter is constant, and a temperature of an object to be heated provided in close contact with the back surface of the top plate detecting a and a thermistor, the control means, there is a change in a predetermined or more control amount within a predetermined time, and the inverter when the temperature detection information from the thermistor is at a temperature change of more than a predetermined The output is suppressed or stopped.

従来より用いていた温度検知手段からの情報も加えて被加熱物の温度変化を検知するので、例えば被加熱物の底面が加熱中に変形する場合においても的確に被加熱物の異常温度上昇検知が可能となる。   Since the temperature change of the object to be heated is detected by adding information from the temperature detecting means used conventionally, for example, even when the bottom surface of the object to be heated is deformed during heating, the abnormal temperature rise of the object to be heated is accurately detected. Is possible.

本発明の誘導加熱調理器は、被加熱物の底面が加熱中に変形する場合においても的確に被加熱物の異常温度上昇検知が可能となる。   The induction heating cooker of the present invention can accurately detect an abnormal temperature rise of a heated object even when the bottom surface of the heated object is deformed during heating.

請求項1に記載の発明は、被加熱物が載置されるトッププレートと、高周波磁界を発生し前記トッププレート上の前記被加熱物を加熱する誘導加熱コイルと、前記誘導加熱コイルに高周波電流を供給するインバータと、前記インバータの入力電流が一定となるべく前
記インバータを制御する制御手段と、前記トッププレートの裏面に密着して設けられ被加熱物の温度を検知するサーミスタを有し、前記制御手段は、所定時間以内に所定以上の制御量の変化があり、かつ、前記サーミスタからの温度検知情報が所定以上の温度変化であった場合にインバータの出力を抑制あるいは停止する誘導加熱調理器とすることにより、従来より用いていた温度検知手段からの情報も加えて被加熱物の温度変化を検知するので、例えば被加熱物の底面が加熱中に変形する場合においても的確に被加熱物の異常温度上昇検知が可能となる。
The invention described in claim 1 includes a top plate on which an object to be heated is placed, an induction heating coil that generates a high-frequency magnetic field and heats the object to be heated on the top plate, and a high-frequency current in the induction heating coil. A control means for controlling the inverter so that the input current of the inverter is constant, and a thermistor that is provided in close contact with the back surface of the top plate and detects the temperature of the object to be heated, The control means is an induction heating cooker that suppresses or stops the output of the inverter when there is a change in the control amount more than a predetermined value within a predetermined time and the temperature detection information from the thermistor is a temperature change more than a predetermined value. Therefore, the temperature change of the object to be heated is also detected by adding information from the temperature detecting means that has been used conventionally. For example, the bottom surface of the object to be heated is added. It becomes possible abnormal temperature rise detection of precisely the object to be heated in the case of deformation in the.

以下本発明の実施例について、図面を参照しながら説明する。   Embodiments of the present invention will be described below with reference to the drawings.

参考例1)
以下、第1の参考例について図面を参照しながら説明する。図1は本参考例の誘導加熱調理器の概略回路図である。図1において、9は誘導加熱される被加熱物、11は商用電源である。商用電源11は整流平滑部13に入力される。整流平滑部13にはブリッジダイオードで構成される全波整流器とその直流出力端間にチョークコイルと平滑コンデンサで構成されるローパスフィルタが接続される。
( Reference Example 1)
The first reference example will be described below with reference to the drawings. FIG. 1 is a schematic circuit diagram of the induction heating cooker of this reference example . In FIG. 1, 9 is an object to be heated by induction heating, and 11 is a commercial power source. The commercial power supply 11 is input to the rectifying / smoothing unit 13. The rectifying / smoothing unit 13 is connected to a full-wave rectifier composed of a bridge diode and a low-pass filter composed of a choke coil and a smoothing capacitor between its DC output terminals.

整流平滑部13の出力にはインバータ回路7が接続され、インバータ回路7に誘導加熱コイル8が接続される。インバータ回路7と誘導加熱コイル8は高周波インバータを構成する。インバータ回路7には、第1のスイッチング素子7c(本実施の形態ではIGBT)と、第2のスイッチング素子7d(本実施の形態ではIGBT)の直列接続体が設けられる。第1のダイオード7eが第1のスイッチング素子7cに逆並列に、第2のダイオード7fが第2のスイッチング素子7dに逆並列に接続されている。前記直列接続体の両スイッチング素子の接続点と整流平滑部13の負極端子間には誘導加熱コイル8と共振コンデンサ7gの直列接続体が接続される。   The inverter circuit 7 is connected to the output of the rectifying and smoothing unit 13, and the induction heating coil 8 is connected to the inverter circuit 7. The inverter circuit 7 and the induction heating coil 8 constitute a high frequency inverter. The inverter circuit 7 is provided with a series connection body of a first switching element 7c (IGBT in the present embodiment) and a second switching element 7d (IGBT in the present embodiment). The first diode 7e is connected in antiparallel to the first switching element 7c, and the second diode 7f is connected in antiparallel to the second switching element 7d. A series connection body of the induction heating coil 8 and the resonance capacitor 7g is connected between the connection point of both switching elements of the series connection body and the negative terminal of the rectifying and smoothing unit 13.

カレントトランス14はインバータ回路7の商用電源11から入力する電源電流を検知し、電源電流検知回路15に検知信号を出力する。電源電流検知回路15は電源電流の大きさに比例した検知信号を制御手段18に出力する。   The current transformer 14 detects a power supply current input from the commercial power supply 11 of the inverter circuit 7 and outputs a detection signal to the power supply current detection circuit 15. The power supply current detection circuit 15 outputs a detection signal proportional to the magnitude of the power supply current to the control means 18.

制御手段18はインバータ回路7にある第1のスイッチング素子7cと第2のスイッチング素子7dを駆動する。制御手段18は報知手段19及び入力手段20と接続される。報知手段19は本参考例の場合圧電スピーカによる音波で外部へ報知する構成としている。入力手段20はキー入力により使用者が入力できる構成としており、具体的には図7に示す煮物1及び煮物2のキースイッチを含む構成である。 The control means 18 drives the first switching element 7c and the second switching element 7d in the inverter circuit 7. The control means 18 is connected to the notification means 19 and the input means 20. In the case of this reference example, the notification means 19 is configured to notify the outside by sound waves from a piezoelectric speaker. The input means 20 is configured to allow the user to input by key input, and specifically includes a key switch for the boiled food 1 and boiled food 2 shown in FIG.

以上のように構成された誘導加熱調理器の動作を説明する。商用電源11は整流平滑部13により整流され、インバータ7と誘導加熱コイル8を有する高周波インバータに電源を供給する。   The operation of the induction cooking device configured as described above will be described. The commercial power supply 11 is rectified by the rectifying / smoothing unit 13 and supplies power to the high-frequency inverter having the inverter 7 and the induction heating coil 8.

図2は本参考例における各部波形を示す。波形(ア)は第2のスイッチング素子7dのドライブ信号を示し、HIGH状態でオン、LOW状態でOFFとなる。波形(イ−2)は第2のスイッチング素子7d及びダイオード7fに流れる電流波形を示す。波形(イ−1)は第1のスイッチング素子7c及びダイオード7eに流れる電流波形を示す。波形(ウ)は第2のスイッチング素子7dのコレクタ−エミッタ間に生じる電圧を示す。 FIG. 2 shows the waveform of each part in this reference example . A waveform (a) shows a drive signal of the second switching element 7d, which is ON in the HIGH state and OFF in the LOW state. A waveform (A-2) shows a waveform of a current flowing through the second switching element 7d and the diode 7f. A waveform (A-1) indicates a waveform of a current flowing through the first switching element 7c and the diode 7e. A waveform (c) shows a voltage generated between the collector and the emitter of the second switching element 7d.

第1のスイッチング素子7cがオンしている場合には、第1のスイッチング素子7c(若しくは第2のダイオード)と誘導加熱コイル8と共振コンデンサ7gの閉回路に共振電流が発生する。第1のスイッチング素子7cがオフすると、第2のダイオード7fを介し
て電流が流れる。
When the first switching element 7c is on, a resonance current is generated in the closed circuit of the first switching element 7c (or the second diode), the induction heating coil 8, and the resonance capacitor 7g. When the first switching element 7c is turned off, a current flows through the second diode 7f.

第1のスイッチング素子7cがオフして以降は、第2のスイッチング素子7dがオンするので、第2のダイオード7fに電流が流れた後、第2のスイッチング素子7d(若しくは第1のダイオード7e)と、誘導加熱コイル8と、共振コンデンサ7gを含む閉回路に共振電流が流れる。   After the first switching element 7c is turned off, the second switching element 7d is turned on. Therefore, after the current flows through the second diode 7f, the second switching element 7d (or the first diode 7e) is turned on. Then, a resonance current flows through a closed circuit including the induction heating coil 8 and the resonance capacitor 7g.

第1のスイッチング素子7cと第2のスイッチング素子7dの駆動周波数は約20kHz近傍で可変され、駆動時間比率は図2に示すように約1/2近傍で可変される。   The driving frequency of the first switching element 7c and the second switching element 7d is varied in the vicinity of about 20 kHz, and the driving time ratio is varied in the vicinity of about ½ as shown in FIG.

制御回路18は電源電流検知回路15から電源電流の大きさに比例した出力信号を入力されるので、第1のスイッチング素子7cと第2のスイッチング素子7dを入力電力(高周波インバータの出力値)を所定の値に制御するように、駆動周波数を可変して制御する。   Since the control circuit 18 receives an output signal proportional to the magnitude of the power supply current from the power supply current detection circuit 15, the input power (the output value of the high frequency inverter) is input to the first switching element 7c and the second switching element 7d. Control is performed by varying the drive frequency so as to control to a predetermined value.

図3は駆動周波数と入力電力の相関を示す図で、実線は被加熱物の温度が低い時、破線は被加熱物の温度が高い時を示す。被加熱物の温度によって相関が変化するのは温度上昇に伴って被加熱物の抵抗率が変化(一般的に温度上昇に伴い抵抗率は上昇する)し、結果誘導加熱コイル8と被加熱物9の磁気結合が変化するためである。図に示すように例えば2000Wの電力を安定して供給しようとした場合、被加熱物の温度上昇に連れて駆動周波数は徐々に低下していく。従って一定電力を供給した場合の駆動周波数は図4に示す様な形となる。図4(a)で実線は被加熱物3の温度、(b)は駆動周波数、(c)は入力電力である。被加熱物3の温度上昇に伴い駆動周波数は低下し、被加熱物3の温度が一定になれば駆動周波数も一定となる。以上の関係から駆動周波数の時間変化で被加熱物3の温度変化がわかるものである。図5は空鍋加熱など被加熱物3の温度が異常に上昇した場合の本参考例での制御を示すものである。制御手段18は図(b)に示す所定の時間Aの間に所定の制御量変化(△f1)以上があった場合、被加熱物3の温度上昇が大と判断し、インバータ7の出力を低減すべく駆動周波数を低下させる。従って入力電力が低減し、結果被加熱物3の異常温度上昇を回避することが可能となる。またこの時報知手段19によって外部に音波で報知するので、使用者は、被加熱物3の異常温度上昇に気づくことが可能となる。 FIG. 3 is a diagram showing the correlation between the drive frequency and the input power, where the solid line indicates when the temperature of the object to be heated is low and the broken line indicates when the temperature of the object to be heated is high. The correlation changes depending on the temperature of the object to be heated. The resistivity of the object to be heated changes as the temperature rises (generally, the resistivity increases as the temperature rises). As a result, the induction heating coil 8 and the object to be heated are changed. This is because the magnetic coupling of 9 changes. As shown in the figure, for example, when it is attempted to stably supply 2000 W of power, the drive frequency gradually decreases as the temperature of the object to be heated increases. Therefore, the drive frequency when a constant power is supplied is as shown in FIG. In FIG. 4A, the solid line is the temperature of the article 3 to be heated, (b) is the drive frequency, and (c) is the input power. As the temperature of the article to be heated 3 rises, the driving frequency decreases. When the temperature of the article to be heated 3 becomes constant, the driving frequency becomes constant. From the above relationship, the temperature change of the object to be heated 3 can be understood by the time change of the drive frequency. FIG. 5 shows the control in the present reference example when the temperature of the object to be heated 3 such as heating of an empty pan rises abnormally. When the control means 18 has a predetermined control amount change (Δf1) or more during the predetermined time A shown in FIG. The drive frequency is lowered to reduce it. Therefore, the input power is reduced, and as a result, it is possible to avoid an abnormal temperature rise of the article 3 to be heated. At this time, the notification means 19 notifies the outside by sound waves, so that the user can notice an abnormal temperature rise of the article 3 to be heated.

図6は湯沸かしなど被加熱物3の温度が一定になった場合の本参考例の制御を示すものである。制御手段18は図(b)に示す所定の時間Bの間に所定の制御量変化(△f2)以下となった場合に湯沸かし完了と判断し、インバータ7の出力を低減すべく駆動周波数を低下させるので吹きこぼれなどを回避することが可能となる。さらにこの時報知手段19によって外部に報知するので使用者は湯沸かし完了がわかるものである。 FIG. 6 shows the control of this reference example when the temperature of the object 3 to be heated, such as a water heater, becomes constant. The control means 18 determines that the boiling is completed when the change in control amount (Δf2) is less than or equal to the predetermined control amount change (Δf2) during the predetermined time B shown in FIG. Therefore, it is possible to avoid spillage. Further, since the notification means 19 notifies the outside at this time, the user can know that the kettle is completed.

また図7に示すように本参考例の場合予め沸騰検知後の加熱電力を設定できる。すなわち煮物1の場合は沸騰検知後の加熱電力が定格電力の約半分、煮物2の場合は同電力が定格電力の約1/4となる。使用者は予め図7に示すキーで入力することにより、調理メニューに応じた制御が可能となるものである。本参考例の場合特に図示していないが、例えば湯沸かしキーなる入力手段を具備して、このキーが押された時のみ上記湯沸かし検知を行っても良い。 As shown in FIG. 7, in the case of this reference example , the heating power after the boiling detection can be set in advance. That is, in the case of boiled food 1, the heating power after boiling detection is about half of the rated power, and in the case of boiled food 2, the same power is about 1/4 of the rated power. The user can control in accordance with the cooking menu by inputting in advance with the keys shown in FIG. Although not particularly shown in the case of this reference example , for example, an input means such as a water heater key may be provided, and the water heater detection may be performed only when this key is pressed.

尚本参考例では2石式のSEPPインバータ構成としたが、例えば1石式の電圧共振形インバータなど負荷(被加熱物)との磁気結合変化により入力電流が変化するものであればいかなる構成あるいは制御方式のインバータでもよい。さらに電力可変を周波数を用いて行うものとしたが、これも制限されるものでなく、例えば周波数一定で2石のスイッチング素子の導通比率を変化させるなどの方式でもよいことは言うまでもない。 In this reference example , a two-stone type SEPP inverter configuration is used. However, any configuration or input may be used as long as the input current changes due to a magnetic coupling change with a load (an object to be heated) such as a one-stone type voltage resonance inverter. A control type inverter may be used. Furthermore, although the power variable is performed using the frequency, this is not limited, and it goes without saying that, for example, a method of changing the conduction ratio of two stone switching elements at a constant frequency may be used.

実施例
以下、本発明の実施例について図面を参照しながら説明する。実施例と第1の参考例の構成上の差異は従来例にて説明した温度検知手段の有無であり、その他は同じである。すなわち本実施例においては従来用いていたサーミスタによる温度検知手段を有しており、その構成は従来例にて述べたものと同じである。制御手段18は図8(a)の破線で示す温度検知手段の出力も考慮して制御する。図に示すように温度検知手段からの温度変化が△t1以上でかつ、参考例1の条件が満たされた時のみ制御手段18は被加熱物3の温度上昇が異常と判断してインバータ7の出力を低減するので、例えば正常な加熱中において、被加熱物3の底面が加熱により徐々に変形し誘導加熱コイル8と被加熱物9の磁気結合が変化した場合に誤って温度上昇が異常と判断することがなくなるものである。図9は湯沸かし時における本実施例の制御を示す。図8同様(a)の破線は温度検知手段からの出力である。この場合においても制御手段18は△t2以下の温度上昇となりかつ上記参考例1で述べた条件が満たされた時のみインバータ7の出力を低減するので、例えば被加熱物3の底面が加熱により変形し、その変形度合いが時間と共に小となってしまう場合などにおいて誤って湯沸かし完了と判断することを回避できるものである。
( Example )
Embodiments of the present invention will be described below with reference to the drawings. The difference in configuration between the present embodiment and the first reference example is the presence or absence of the temperature detecting means described in the conventional example, and the others are the same. That is, the present embodiment has a temperature detecting means using a thermistor conventionally used, and the configuration thereof is the same as that described in the conventional example. The control means 18 performs control in consideration of the output of the temperature detection means indicated by the broken line in FIG. As shown in the figure, only when the temperature change from the temperature detecting means is Δt1 or more and the condition of the reference example 1 is satisfied, the control means 18 determines that the temperature rise of the article 3 to be heated is abnormal and the inverter 7 Since the output is reduced, for example, during normal heating, if the bottom surface of the object to be heated 3 is gradually deformed by heating and the magnetic coupling between the induction heating coil 8 and the object to be heated 9 is changed, the temperature rise is erroneously abnormal. Judgment is lost. FIG. 9 shows the control of this embodiment at the time of boiling water. As in FIG. 8, the broken line in (a) is the output from the temperature detecting means. Even in this case, the control means 18 increases the temperature below Δt2 and reduces the output of the inverter 7 only when the condition described in the reference example 1 is satisfied. For example, the bottom surface of the object to be heated 3 is deformed by heating. However, it is possible to avoid mistakenly determining that the boiling has been completed when the degree of deformation becomes small with time.

(参考例
以下、第2の参考例について図面を参照しながら説明する。図10は本参考例の断面図を示すものである。本参考例の場合図に示すように誘導加熱コイル8の中心部分に測距手段30を設けている以外は参考例1と同じである。測距手段30は具体的には発光ダイオードとフォトトランジスタの組で構成されており、発光ダイオードから発生する光が被加熱物9に反射してフォトトランジスタに帰ってくるまでの時間によって誘導加熱コイル8と被加熱物9との距離を測定するものである。以上の構成により本参考例の場合被加熱物9の変形を測距手段30にて検知することが可能となるので実施例で述べた被加熱物9の変形に起因する誤検知を回避することができるものである。具体的には測距手段30からの誘導加熱コイル8−被加熱物9間の距離が所定の値以下の場合のみ湯沸かし検知を行うなどの制御を図るものである。また所定以上の距離変化があった場合に加熱不適切負荷として異常報知をしてもよい。
(Reference Example 2 )
Hereinafter, a second reference example will be described with reference to the drawings. FIG. 10 shows a cross-sectional view of this reference example. In the case of this reference example, it is the same as the reference example 1 except that the distance measuring means 30 is provided at the center of the induction heating coil 8 as shown in the figure. The distance measuring means 30 is specifically composed of a set of a light emitting diode and a phototransistor, and the induction heating coil depends on the time until the light generated from the light emitting diode is reflected by the article 9 to be heated and returns to the phototransistor. 8 and the object 9 to be heated are measured. With the above configuration, in the case of this reference example, the deformation of the object 9 to be heated can be detected by the distance measuring means 30, so that the erroneous detection due to the deformation of the object 9 to be heated described in the embodiment is avoided. It is something that can be done. Specifically, control is performed such that detection of boiling water is performed only when the distance between the induction heating coil 8 and the object 9 to be heated from the distance measuring means 30 is equal to or less than a predetermined value. Further, when there is a change in distance more than a predetermined distance, an abnormality notification may be given as an inappropriate heating load.

(参考例
以下、第3の参考例について図面を参照しながら説明する。図11は本参考例の断面図を示すものである。図において誘導加熱コイル8は8a,8bと外周部及び内周部の2つに分割されており、それぞれが独立したインバータ7に接続されている。従って外周部8aのみの加熱及び内周部8bのみの加熱、さらに両方の加熱が可能となっている。上記の構成により被加熱物9と誘導加熱コイル8a,8bの磁気結合情報は2つ得ることができる。
(Reference Example 3 )
Hereinafter, a third reference example will be described with reference to the drawings. FIG. 11 shows a cross-sectional view of this reference example. In the figure, the induction heating coil 8 is divided into two parts 8a and 8b, an outer peripheral part and an inner peripheral part, and each is connected to an independent inverter 7. Accordingly, only the outer peripheral portion 8a, only the inner peripheral portion 8b, and both can be heated. With the above configuration, two pieces of magnetic coupling information between the object to be heated 9 and the induction heating coils 8a and 8b can be obtained.

本参考例の場合外周部8aの磁気結合情報によって(すなわち外周部8aと接続されたインバータ7の駆動周波数変化)温度検知を行う。この制御により特に被加熱物9の底面の変形は中心部分が多く、外周部分は小さいので変形による誤検知を回避することが可能となる。   In the case of this reference example, temperature detection is performed based on magnetic coupling information of the outer peripheral portion 8a (that is, a change in the driving frequency of the inverter 7 connected to the outer peripheral portion 8a). With this control, the deformation of the bottom surface of the object to be heated 9 is particularly large in the central portion and the outer peripheral portion is small, so that erroneous detection due to the deformation can be avoided.

参考例1における誘導加熱調理器の概略回路図Schematic circuit diagram of the induction heating cooker in Reference Example 1 同、回路各部の動作波形を示す図The figure which shows the operation waveform of each part of the circuit 同、被加熱物の温度変化時の周波数と入力電力相関を示す図The figure which shows the frequency and input power correlation at the time of the temperature change of the to-be-heated object 同、被加熱物の温度と駆動周波数及び入力電力の時間変化を示す図The figure which shows the time change of the temperature of a to-be-heated material, a drive frequency, and input electric power similarly 同、被加熱物の温度上昇が異常な場合における制御を示す図The figure which shows the control in case the temperature rise of a to-be-heated object is abnormal 同、被加熱物の温度上昇が一定になる場合の制御を示す図The figure which shows control when the temperature rise of a to-be-heated object becomes constant similarly 同、入力手段を示す図Figure showing the input means 本発明の実施例における誘導加熱調理器の被加熱物の温度上昇が異常な場合における制御を示す図The figure which shows the control in case the temperature rise of the to-be-heated material of the induction heating cooking appliance in the Example of this invention is abnormal. 同、被加熱物の温度上昇が一定になる場合の制御を示す図The figure which shows control when the temperature rise of a to-be-heated object becomes constant similarly 参考例3における誘導加熱調理器の断面図Sectional drawing of the induction heating cooking appliance in the reference example 3 参考例4における誘導加熱調理器の断面図Sectional drawing of the induction heating cooking appliance in the reference example 4 従来の誘導加熱調理器の断面図Sectional view of a conventional induction heating cooker 同、被加熱物と温度検知手段の出力を示す図The figure which shows the output of a to-be-heated object and a temperature detection means similarly

9 被加熱物
8 誘導加熱コイル
7 インバータ
18 制御手段
19 報知手段
20 入力手段
30 測距手段
9 Object to be heated 8 Induction heating coil 7 Inverter 18 Control means 19 Notification means 20 Input means 30 Distance measurement means

Claims (1)

被加熱物が載置されるトッププレートと、高周波磁界を発生し前記トッププレート上の前記被加熱物を加熱する誘導加熱コイルと、前記誘導加熱コイルに高周波電流を供給するインバータと、前記インバータの入力電流が一定となるべく前記インバータを制御する制御手段と、前記トッププレートの裏面に密着して設けられ被加熱物の温度を検知するサーミスタを有し、前記制御手段は、所定時間以内に所定以上の制御量の変化があり、かつ、前記サーミスタからの温度検知情報が所定以上の温度変化であった場合にインバータの出力を抑制あるいは停止する誘導加熱調理器。 A top plate on which an object to be heated is placed; an induction heating coil that generates a high-frequency magnetic field to heat the object to be heated on the top plate; an inverter that supplies a high-frequency current to the induction heating coil; Control means for controlling the inverter so that the input current is constant, and a thermistor that is provided in close contact with the back surface of the top plate and detects the temperature of the object to be heated. An induction heating cooker that suppresses or stops the output of the inverter when there is a change in the control amount and the temperature detection information from the thermistor is a temperature change greater than or equal to a predetermined value.
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