KR0115752Y1 - High temperature heating device during warming of electric rice cooker - Google Patents
High temperature heating device during warming of electric rice cooker Download PDFInfo
- Publication number
- KR0115752Y1 KR0115752Y1 KR2019940016868U KR19940016868U KR0115752Y1 KR 0115752 Y1 KR0115752 Y1 KR 0115752Y1 KR 2019940016868 U KR2019940016868 U KR 2019940016868U KR 19940016868 U KR19940016868 U KR 19940016868U KR 0115752 Y1 KR0115752 Y1 KR 0115752Y1
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- rice
- heater
- cooking
- high temperature
- warm
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47J—KITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
- A47J27/00—Cooking-vessels
- A47J27/004—Cooking-vessels with integral electrical heating means
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01K—MEASURING TEMPERATURE; MEASURING QUANTITY OF HEAT; THERMALLY-SENSITIVE ELEMENTS NOT OTHERWISE PROVIDED FOR
- G01K2207/00—Application of thermometers in household appliances
- G01K2207/02—Application of thermometers in household appliances for measuring food temperature
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
-
- 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
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- Engineering & Computer Science (AREA)
- Food Science & Technology (AREA)
- Electric Stoves And Ranges (AREA)
Abstract
본고안은 전기보온밥솥에 있어서 밥의 보관방법으로 온도를 일정하게 유지하는 기능인 보온기능을 보안하고자 하는 것으로 더욱 구체적으로는 보온중에 취식을 하고자 할 때 밥의 온도를 취반직후의 밥과 같이 상승시켜 즉시 취반한 것과 같은 따뜻한 밥을 제공하고자 함을 목적으로 한전기보온밥솥의 고온보온기능에 관한 것이다.The purpose of this paper is to secure the thermal insulation function, which is a function of keeping the temperature constant as a method of storing rice in an electric thermal rice cooker. More specifically, when cooking during warming, the temperature of the rice is increased like the rice after cooking. It relates to a high temperature heat insulation function of an electric heat cooker for the purpose of providing a warm rice such as cooked immediately.
종래 전기보온밥솥의 보온기능은 밥의온도가 72-77°를 유지하도록 설계되어 있으므로 취반직후의 밥과 따뜻함에 큰 차이가 있어 소비자들이 보온을 꺼리는 경향이 있었다. 본고안은 이와같은 점을 감안하여 안출한 것으로 밥의 보온중에 취식을 하고자 할 때에는 취식전에 본고안의 고온보온키이를 선택하면 정해진 몇분동안 취사용히터와 보온용히터 및 톱히터에 고온의 열을 가했다가 보온으로 복귀됨으로서 취반직후와 같은 따뜻한 밥을 제공할 수 있게 한고안이다.Since the heat retaining function of the conventional electric rice cooker is designed to maintain the temperature of the rice 72-77 °, there is a big difference in the warmth of rice after cooking and consumers tended to be reluctant to keep warm. This proposal was devised in consideration of this point. If you want to eat while keeping the rice warm, if you select the high temperature insulation key of this food before eating, you can apply high temperature heat to the cooking heater, the heating heater, and the top heater for a few minutes. By returning to the restaurant, it is possible to provide warm rice just after cooking.
Description
본고안은 전기보온밥솥의 보온중에 취식을 하고자 할 때 밥의 온도를 취반직후의 밥과 같이 상승시켜 즉시 취반한 것과 같은 따뜻한 밥을 제공하고자 함을 목적으로 한 전기보온밥솥의 보온중 고온가열장치에 관한 것이다. 종래 전기보온밥솥의 보온기능은 밥의온도가 72 - 77˚C를 유지하도록 설계되어 있으므로 취반직후의 밥과 따뜻함에 큰 차이가 있어 밥맛이 떨어지므로 소비자들이 보온을 꺼리는 경향이 있었다.The high temperature heating device of the electric insulation rice cooker for the purpose of raising the temperature of the rice together with the rice immediately after cooking to provide a warm rice such as immediately cooked rice when you want to eat while keeping the electric insulation rice cooker. It is about. Since the heat retaining function of the conventional electric rice cooker is designed to maintain the temperature of the rice 72-77˚C, there is a big difference between the warmth and the rice right after cooking, so the taste of the rice decreases, and consumers tend to be reluctant to keep warm.
본고안은 이와같은 점을 감안하여 안출한 것으로 밥의 보온중에 취식을 하고자 할때에는 취식전에 본고안의 고온보온키이를 선택하면 정해진 몇분동안 취사용히터와 사이드히터 및 톱히터에 고온의 열을 가했다가 보온으로 복귀되므로서 취반직후와 같은 따뜻한 밥을 제공할 수 있게 한 것인데, 이를 첨부도면에 의거 상술하면 다음과 같다.This proposal was devised in consideration of this point. When you want to eat while keeping the rice warm, if you select the high temperature insulation key of the food before eating, you can apply high temperature heat to the cooking heater, the side heater and the top heater for a few minutes. It is possible to provide a warm rice as soon as after returning to work, as described in detail according to the accompanying drawings as follows.
제1도는 전기보온밥솥의 단면도 .1 is a cross-sectional view of the electric rice cooker.
제2도는 본고안의 흐름도.2 is a flow chart of this article.
제3도는 본고안의 회로도.3 is a circuit diagram of this article.
* 도면의 주요부분에 대한 부호의 설명* Explanation of symbols for main parts of the drawings
1 : 본체 2 : 센타센서1 body 2 center sensor
3 : 취사용히터 4 : 사이드히터3: cooking heater 4: side heater
6 : 오븐 7 : 톱카바6: oven 7: top cover
8 : 톱센서 9 : 톱히터8: Top sensor 9: Top heater
10 : 표시장치 11 : 마이컴칩10 display device 11: microcomputer chip
12 : 고온보온키이 13 : 부저12: high temperature insulation key 13: buzzer
본채(1)의 저부와 측부에 센타센서(2)와 취사용히터(3) 및 사이드히터(4)가 설치되고 오븐(6) 상부의 톱카바(7)에 톱센서(8)와 톱히터(9)가 설치된 통상의 밥솥에 있어서, 취사용히터(3)와 톱히터(9), 사이드히터(4) 및 센타센서(2), 톱센서(8)와 연결되어 보온상태에서 고온보온키이(12)의 입력에 의해 사이드히터(4)와 톱히터(9) 및 취사용히터(3)를 일정시간 고온 가열시키는 마이컴칩(11)을 설치하고 마아컴칩(11)에 진행상태를 표시하는 표시장치(10)와 부저(13)를 연결하여서 되는 것이다. 도면중 미설명부호 14는 발광다이오드이고, 15는 보온시에 작동하는 외부온도감지용센서이다.The center sensor 2, the cooking heater 3, and the side heater 4 are installed at the bottom and the side of the main housing 1, and the top sensor 8 and the top heater (8) are mounted on the top cover 7 at the top of the oven 6. In the general rice cooker 9) is installed, it is connected to the cooking heater (3), the top heater (9), the side heater (4) and the center sensor (2), the top sensor (8), the high temperature insulation key (12) A display device for installing a microcomputer chip 11 for heating the side heater 4, the top heater 9 and the cooking heater 3 at a high temperature for a predetermined time by the input of the 10) and the buzzer 13 by connecting. In the figure, reference numeral 14 denotes a light emitting diode, and 15 denotes an external temperature sensor which operates when warming.
이와같이된 본고안의 작용효과를 설명하면 본고안은 보온공정 진행중에서만 가능하며 고온보온키이(12)의 입력이 마이컴칩(11)에 전달되면 마이컴칩(11)에서 센타센서(2)를 통하여 오븐(6)내의 온도를 감지하게되고, 이때 오븐(6)내의 온도가 50˚C에서 85˚C 사이가 되면 마이컴칩(11)에서 취사용히터(3)와 사이드히터(4)에 약 9분동안 고온으로 열을 가한후 보온으로 복귀한다. 더욱 상세하게 서술하면 보온공정중에 고온보온키이(12)를 누르면 마이컴침(11)에서는 센타센서 (2)를 통하여 오븐(6)내의온도를 감지하게 되는데, 이때 오븐(6)의 하부중앙에 접속된 센타센서(2)의 값(Rth1)을 받아들여,로 계산한 전압치가 마이컴칩(11)에 보내어지게 되고 이 전압치가 1.104V(50˚C)에서 2.477V(85˚C) 사이가 되면 마이컴칩(11)에서는 취사용히터(3)와 사이드히터(4)에 신호를 인가하여 취사용히터(3)와 사이드히터(4)에서 열을 발산하게 된다. 여기서, 취사용히터(3)와 사이드히터(4)에 열을 인가하는 방법은 마이컴칩(11)에거 취사용히터(3)와 사이드히터(4)에 6초동안 신호를 보내어 열을 발산하게 하고 10초동안은 신호를 보내지않아 열을 인가하지 않게 하는 동작을 9분동안 반복하게 된다. 이러한 방법으로 열을 인가했다가 끊었다가 하는 동안 센타센서(2)를 통해 마이컴칩(11)에 입력되는 전압치가 2.477V(85˚C)를 초과하게 되면 마이컴칩(11)에서 취사용히터(3)와 보온용히터(4)에 인가하던 신호를 전혀 인가하지 않게 되고 이에의해 취사용히터(3)와 보온용히터(4)는 열을 발산하지 않는다. 또한, 오븐(6)내의 온도가 85˚C를 초과하거나 50˚C미만이되면 삐익삐익 하는 부저음과 함께 발광다이오드(14)가 2회 점멸되면서 고온보온키이(12)의 입력을 받아들이지 않음을 나타내고, 고온보온공정이 진행되는 동안에는 발광다이오드(14)는 계속 점멸하며 표시장치창에 진행시간(9분전 - 1분전)이 표시되면서 고온보온공정이 진행중임을 알리게 된다. 한편, 톱히터(9)의 가열은 마이컴칩(11)에서 취사용히터(3)와 보온용히터(4)와는 무관하게 제어하는데, 오븐(6)내의 온도를 톱카바(7)에 부착되어 있는 톱센서(8)에서 감지한 값(Rth2)을 마이컴칩(11)에서 전압치로 받아 들이는데, 이값은가 된다. 이값이 1.477V(66.5˚C) 이하가 되면 마이컴칩(11)에서 톱히터(9)에 신호를 인가하여 톱히터(9)에서 열을 발산하게 되고 계속 가해진 열로 인하여 마이컴칩(11)에서 톱센서(8)에 의해 받아들인 값이 1.783V(74.5˚C) 이상이되면 마이컴칩(11)에서 톱히터(9)에 6초동안 열을 발산하고, 10초동안 열을 인가하지 않는 동작을 반복하는데 이때 오븐(6)내의 온도(전압치)를 톱센서(8)에 의해 계속 감지한 마이컴칩(11)은 1.86V(76.5℃)이상되면 마이컴칩(11)에서 톱히터(9)에 신호를 인가하지 않게되어 톱히터(9)에서는 열을 발산하지 않게 된다. 위와같은 방법으로 마이컴칩(11)은 9분동안 톱히터(9), 사이드히터(4), 취사용히터(3)에 열을 가했다가 끊었다가 한 후 9분이 경과되면 보온으로 복귀하게 되는데, 이때 표시장치창은 고온보온키이(12)를 누르는 순간부터 9분전이라는 메시지를 나타내게 되는데 1분이 경과할때마다 9분 - 1분으로 변하게 된후 9분이 경과하면 현재시간과 보온중임을 나타내게 된다. 이상과 같은 과정은 제 2 도의 플로우챠트에 명확하게 도시되어 있다.When explaining the effect of the present invention as described above, the present proposal is possible only during the process of thermal insulation, and when the input of the high temperature insulation key 12 is transferred to the microcomputer chip 11, the microcomputer chip 11 through the center sensor 2 through the oven ( 6) The temperature inside the oven 6 is sensed. At this time, when the temperature in the oven 6 is between 50 ° C and 85 ° C, the microcomputer chip 11 uses the cooking heater 3 and the side heater 4 for about 9 minutes. After heating, return to warming. In more detail, when the high temperature insulating key 12 is pressed during the warming process, the microcomputer 11 detects the temperature in the oven 6 through the center sensor 2, and is connected to the lower center of the oven 6. Accept the value (Rth1) of the center sensor 2, When the voltage value calculated by is sent to the microcomputer chip 11 and the voltage value is between 1.104V (50 ° C) and 2.477V (85 ° C), the microcomputer chip 11 uses the cooking heater 3 and the side heater ( A signal is applied to 4) to dissipate heat from the cooking heater 3 and the side heater 4. Here, the method of applying heat to the cooking heater 3 and the side heater 4 sends a signal to the cooking heater 3 and the side heater 4 for 6 seconds by the microcomputer chip 11 to dissipate heat. For 9 minutes, the operation is repeated for no signal for seconds. If the voltage input to the microcomputer chip 11 through the center sensor 2 exceeds 2.477V (85 ° C) while heat is applied in this manner, the heating heater 3 is applied to the microcomputer chip 11. ) And the signal applied to the warming heater 4 are not applied at all, whereby the cooking heater 3 and the warming heater 4 do not dissipate heat. In addition, when the temperature in the oven 6 exceeds 85 ° C or less than 50 ° C, the light emitting diode 14 blinks twice with a buzzing sound, indicating that the input of the high temperature insulation key 12 is not received. During the high temperature warming process, the light emitting diodes 14 continue to flash and display the progress time (9 minutes ago to 1 minute ago) on the display device window to indicate that the high temperature warming process is in progress. On the other hand, the heating of the top heater 9 is controlled by the microcomputer chip 11 irrespective of the cooking heater 3 and the warming heater 4, and the temperature in the oven 6 is attached to the top cover 7. The value Rth2 detected by the top sensor 8 is received as a voltage value by the microcomputer chip 11, and this value is Becomes When this value is 1.477V (66.5 ° C) or less, the microcomputer chip 11 applies a signal to the top heater 9 to dissipate heat from the top heater 9, and the top surface of the microcomputer chip 11 is sawed by the applied heat. When the value received by the sensor 8 becomes 1.783V (74.5 ° C) or more, the microcomputer chip 11 radiates heat to the top heater 9 for 6 seconds and repeats the operation of not applying heat for 10 seconds. At this time, when the temperature (voltage value) in the oven 6 is continuously detected by the top sensor 8, the microcomputer chip 11 signals the top heater 9 by the microcomputer chip 11 when the temperature is 1.86V (76.5 ° C) or more. Since the top heater 9 is not applied, heat is not emitted. In the same way as above, the microcomputer chip 11 heats the top heater 9, the side heater 4, and the cooking heater 3 for 9 minutes, and then cuts off and returns to warming after 9 minutes. The device window shows a message that 9 minutes before the high temperature insulation key 12 is pressed, which changes to 9 minutes-1 minute every 1 minute and then indicates that the current time and the heat is being maintained after 9 minutes. The above process is clearly shown in the flowchart of FIG.
이와같이 본고안은 보온중에 있는 밥이라도 언제나 취반직후의 밥과 같이 따뜻하게하여 취식할 수 있으며 매번 취반하지 않고 한 번의 취반으로 밥을 보온상태로 유지하여 두고 본고안의 기능을 선택하면 언제나 취반한 직후와 같이 따뜻한 밥을 취식할 수 있는 효과로 인해 소비자들의 욕구만족과 더불어 편리성을 높일수 있는 우수한 고안이다.In this way, even if the rice is kept warm, it can be eaten by warming it with the rice just after cooking. If you choose the function of this paper and keep the rice in one cooking state without cooking every time, Due to the effect of eating warm rice, it is an excellent design that can increase convenience as well as satisfying the needs of consumers.
Claims (1)
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| KR2019940016868U KR0115752Y1 (en) | 1994-07-06 | 1994-07-06 | High temperature heating device during warming of electric rice cooker |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| KR2019940016868U KR0115752Y1 (en) | 1994-07-06 | 1994-07-06 | High temperature heating device during warming of electric rice cooker |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| KR960003898U KR960003898U (en) | 1996-02-14 |
| KR0115752Y1 true KR0115752Y1 (en) | 1998-04-17 |
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ID=19387909
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| KR2019940016868U Expired - Fee Related KR0115752Y1 (en) | 1994-07-06 | 1994-07-06 | High temperature heating device during warming of electric rice cooker |
Country Status (1)
| Country | Link |
|---|---|
| KR (1) | KR0115752Y1 (en) |
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1994
- 1994-07-06 KR KR2019940016868U patent/KR0115752Y1/en not_active Expired - Fee Related
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| Publication number | Publication date |
|---|---|
| KR960003898U (en) | 1996-02-14 |
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