Control method of an integrated kitchen appliance and integrated kitchen appliance
By detecting the status of the cooking module and the air conditioning unit, the range hood or air conditioning module is activated first to exhaust the hot air, which solves the problem of overheating of the air conditioning module when cooking with the integrated stove, and ensures smooth start-up of the air conditioning module and improves the user experience.
Patent Information
- Application Number
- CN202210254309.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-03-15
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2042-03-15
AI Technical Summary
The heat generated by the integrated stove during cooking causes the ambient temperature near the air conditioning module to become too high, exceeding the overheat protection temperature, which affects the start-up of the air conditioning module and results in a poor user experience.
When a cooling command is received, the status of the cooking module and the air conditioning unit is detected. If the cooking module is turned on and the temperature of the air conditioning unit is higher than the threshold, the range hood or the air conditioning module's air supply mode is activated first to exhaust the air until the temperature drops below the threshold, and then the air conditioning module is activated to cool.
To ensure smooth startup of the air conditioning module, improve user experience, extend the service life of the air conditioning module, and enhance the comfort of the kitchen environment.
Smart Images

Figure CN116792794B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of household appliance technology, and in particular to a control method for an integrated kitchen appliance and the integrated kitchen appliance itself. Background Technology
[0002] Currently, integrated cooktops incorporate various appliances for user convenience. Since the kitchen environment is relatively warm during cooking, some integrated cooktops include an air conditioning module. When activated, this module vents cool air into the kitchen, enhancing the user's cooking experience.
[0003] However, since integrated cooktops also integrate various kitchen appliances, the heat generated by these appliances during operation may cause the ambient temperature near the air conditioning module to exceed the overheat protection temperature of the air conditioning module, thus preventing the air conditioning module from starting and affecting the user experience. Summary of the Invention
[0004] This application provides a control method for an integrated kitchen appliance and an integrated kitchen appliance.
[0005] The control method for integrated kitchen appliances according to embodiments of this application includes: upon receiving a cooling command, detecting the on / off state of the cooking module and the temperature of the air conditioning unit; if the cooking module is on and the temperature of the air conditioning unit is not lower than a temperature threshold, activating at least one of the range hood and the air conditioning module's air supply mode to expel air from the air conditioning unit; if the temperature of the air conditioning unit is lower than the temperature threshold, controlling the air conditioning module to cool based on the cooling command; and if the cooking module is not on and the temperature of the air conditioning unit is lower than the temperature threshold, controlling the air conditioning module to cool based on the cooling command.
[0006] In some implementations, the temperature threshold is 42℃±1℃.
[0007] In some embodiments, the control method includes: when the cooking module is turned on and the temperature of the air conditioning box is not lower than a temperature threshold, first start the range hood, and then start the air supply mode of the air conditioning module.
[0008] In some embodiments, the temperature of the air conditioning box includes the air intake temperature of the air conditioning box.
[0009] This application also discloses an integrated kitchen appliance, including a cooking module, an air conditioning module, and a controller. The controller connects the cooking module and the air conditioning module, and is configured to: upon receiving a cooling command, detect the on / off state of the cooking module and the temperature of the air conditioning unit; if the cooking module is on and the temperature of the air conditioning unit is not lower than a temperature threshold, activate at least one of the air supply modes of the range hood and the air conditioning module to expel air from the air conditioning unit, and control the air conditioning module to cool based on the cooling command if the temperature of the air conditioning unit is not lower than the temperature threshold; and control the air conditioning module to cool based on the cooling command if the cooking module is not on and the temperature of the air conditioning unit is lower than the temperature threshold.
[0010] In some implementations, the controller is configured to: first start the range hood and then start the air supply mode of the air conditioning module when the cooking module is turned on and the temperature of the air conditioning box is not lower than a temperature threshold.
[0011] In some embodiments, the cooking module includes an oven module and / or a steam oven module, and the integrated kitchen appliance also includes a cooktop module, with the cooking module and the air conditioning module arranged side by side below the cooktop module.
[0012] In some embodiments, the air conditioning module includes a cooling section and a heating section disposed in the air conditioning box. The air conditioning module includes a cold air duct and a hot air duct, the cold air duct being connected to the cooling section and the hot air duct being connected to the heating section.
[0013] In some embodiments, the integrated kitchen appliance includes a frame, and the air conditioning unit is fixed above the frame.
[0014] In some embodiments, the integrated kitchen appliance includes an air guide mechanism disposed at the air outlet of the air conditioning module.
[0015] The integrated kitchen appliance control method and integrated kitchen appliance of this application, upon receiving a cooling command, first detect the working status of the cooking module. If the cooking module is already turned on, at least one of the air supply modes of the range hood and air conditioning module is activated to exhaust the air in the air conditioning box. Only when the temperature of the air conditioning box is detected to be lower than the temperature threshold is the cooling mode of the air conditioning module activated, ensuring that the cooling mode of the air conditioning module is activated smoothly and improving the user experience.
[0016] Additional aspects and advantages of this application will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of this application. Attached Figure Description
[0017] The above and / or additional aspects and advantages of this application will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, wherein:
[0018] Figure 1 This is a flowchart illustrating the control method according to an embodiment of this application;
[0019] Figures 2 to 4 This is a structural schematic diagram of the integrated kitchen appliance according to an embodiment of this application;
[0020] Figure 5 This is a flowchart illustrating the control method according to an embodiment of this application;
[0021] Figure 6 This is another schematic flowchart of the control method according to the embodiments of this application;
[0022] Figure 7 and Figure 8 This is a structural schematic diagram of an integrated kitchen appliance according to an embodiment of this application. Detailed Implementation
[0023] The embodiments of this application are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this application, and should not be construed as limiting this application.
[0024] In the description of this application, it should be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," and "counterclockwise," etc., indicating orientation or positional relationships based on the orientation or positional relationships shown in the accompanying drawings, are used only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on this application. In the description of this application, "a plurality of" means two or more, unless otherwise explicitly specified.
[0025] This disclosure provides many different embodiments or examples for implementing different structures of this application. To simplify the disclosure, specific examples of components and arrangements are described herein. Of course, these are merely examples and are not intended to limit the scope of this application. Furthermore, reference numerals and / or letters may be repeated in different examples; such repetition is for simplification and clarity and does not in itself indicate a relationship between the various embodiments and / or arrangements discussed. In addition, various specific examples of processes and materials are provided in this application, but those skilled in the art will recognize the application of other processes and / or the use of other materials.
[0026] Please refer to the following: Figures 1 to 4 The control method of the integrated kitchen appliance 100 according to the embodiments of this application can be implemented by the integrated kitchen appliance 100 according to the embodiments of this application. The control method includes:
[0027] Step 01: Upon receiving a cooling command, detect the on / off status of the cooking module 10 and the temperature of the air conditioning box 21;
[0028] Step 02: When the cooking module 10 is turned on and the temperature of the air conditioning box 21 is not lower than the temperature threshold, start at least one of the air supply modes of the range hood 30 and the air conditioning module 20 to exhaust the air in the air conditioning box 21, so that when the temperature of the air conditioning box 21 is lower than the temperature threshold, the air conditioning module 20 is controlled to cool based on the cooling command.
[0029] Step 03: When the cooking module 10 is not turned on and the temperature of the air conditioning box 21 is lower than the temperature threshold, the air conditioning module 20 is controlled to cool based on the cooling command.
[0030] This application also discloses an integrated kitchen appliance 100, which includes a cooking module 10, an air conditioning module 20, a range hood 30, and a controller. The control method of the embodiments of this application can be implemented by the integrated kitchen appliance 100 of the embodiments of this application. Specifically, the integrated kitchen appliance 100 also includes a controller. The controller is connected to the cooking module 10 and the air conditioning module 20, and the air conditioning module 20 includes an air conditioning box 21. The controller is used to detect the on-state of the cooking module 10 and the temperature of the air conditioning box 21 when a cooling command is received; when the cooking module 10 is on and the temperature of the air conditioning box 21 is not lower than a temperature threshold, it activates at least one of the air supply modes of the range hood 30 and the air supply mode of the air conditioning module 20 to exhaust the air in the air conditioning box 21, so that when the temperature of the air conditioning box 21 is not lower than the temperature threshold, it controls the air conditioning module 20 to cool based on the cooling command; when the cooking module 10 is not on and the temperature of the air conditioning box 21 is lower than the temperature threshold, it controls the air conditioning module 20 to cool based on the cooling command.
[0031] The integrated kitchen appliance 100 control method and integrated kitchen appliance 100 of this application, when a cooling command is received, first detect the working status of the cooking module 10. If the cooking module 10 is already turned on, at least one of the air supply modes of the range hood 30 and the air supply mode of the air conditioning module 20 is activated to exhaust the air in the air conditioning box 21. Only when the temperature of the air conditioning box 21 is detected to be lower than the temperature threshold is the cooling mode of the air conditioning module 20 activated, ensuring that the cooling mode of the air conditioning module 20 is activated smoothly and improving the user experience.
[0032] As users place increasing emphasis on their home environment, especially on cooking appliances, these appliances must not only meet daily needs but also satisfy requirements such as practicality, cost-effectiveness, aesthetics, and comfortable use. The integrated kitchen appliance 100 of this application includes not only a cooking module 10 but also an air conditioning module 20, which has a cooling mode to lower the indoor temperature.
[0033] Specifically, users can use the cooking module 10 for cooking, such as grilling, steaming, and frying food. During food processing using the cooking module 10, the module generates high temperatures; for example, grilling generates hot air, and steaming generates high-temperature steam. Both hot air and high-temperature steam can raise the indoor temperature and the temperature of the air conditioning box 21. The air conditioning module 20 includes a ventilation mode. When the air conditioning module 20 is in ventilation mode, it can draw away the hot air from the air conditioning box 21 and exhaust it outdoors. The integrated kitchen appliance 100 includes a range hood 30, which includes a flue 31 that connects to the outside. Thus, the flue 31 can raise the indoor airflow and exhaust it outdoors. Therefore, when the cooking module 10 is in operation and the temperature of the air conditioning box 21 is not lower than the temperature threshold, at least one of the ventilation modes of the range hood 30 and the air conditioning module 20 can be used to exhaust the hot air from the air conditioning box 21, thereby lowering the temperature inside the air conditioning box 21 until the temperature of the air conditioning box 21 is lower than the temperature threshold. This allows the temperature of the air conditioning box 21 to drop below the temperature threshold as quickly as possible, ensuring that the air conditioning module 20 starts in cooling mode smoothly and improving the user experience.
[0034] A controller can be a microcontroller chip that integrates a processor, memory, communication modules, etc. The processor refers to the processor contained within the controller. The processor can be a Central Processing Unit (CPU), or other general-purpose processors, digital signal processors (DSPs), application-specific integrated circuits (ASICs), field-programmable gate arrays (FPGAs), or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc.
[0035] It should be noted that the above description of the implementation method and beneficial effects of the integrated kitchen appliance 100 also applies to the control method of this implementation method. To avoid redundancy, it will not be elaborated in detail here.
[0036] In some implementations, the temperature threshold is 42°C ± 1°C.
[0037] Specifically, the temperature threshold is 42℃±1℃. That is to say, when the temperature of the air conditioning box 21 is less than 42℃±1℃, the controller controls the air conditioning module 20 to cool based on the cooling command. In one embodiment, when a cooling command is received, it is detected that the cooking module 10 is in the on state. At this time, the temperature of the air conditioning box 21 is 40.5℃, and the temperature threshold is 42℃±1℃. It can be determined that the temperature of the air conditioning box 21 is less than the temperature threshold, and the air conditioning module 20 is controlled to start the cooling mode to cool the room.
[0038] In another embodiment, upon receiving a cooling command, the controller detects that the cooking module 10 is in the on state. At this time, the temperature of the air conditioning box 21 is 47.5℃, and the temperature threshold is 42℃±1℃. It can be determined that the temperature of the air conditioning box 21 is greater than 42℃±1℃. The controller can then activate the range hood 30 to remove the hot air from the air conditioning box 21, ensuring that the air conditioning module 20 starts smoothly. Thus, when the temperature of the air conditioning box 21 is less than 42℃±1℃, the controller controls the air conditioning module 20 to activate the cooling mode to lower the indoor temperature.
[0039] In another embodiment, upon receiving a cooling command, the cooking module 10 is detected to be in the on state. At this time, the temperature of the air conditioning box 21 is 46.3℃, and the temperature threshold is 42℃±1℃. It can be determined that the temperature of the air conditioning box 21 is greater than 42℃±1℃. The controller can simultaneously start the air supply mode of the range hood 30 and the air conditioning module 20 to expel the hot air inside the air conditioning box 21, ensuring that the air conditioning module 20 starts smoothly. Thus, the air conditioning module 20 is only controlled to start the cooling mode to cool the room when the temperature of the air conditioning box 21 is less than 42℃±1℃. It should be noted that the above specific examples and values are for the convenience of illustrating the implementation of the present invention and should not be construed as limiting the present invention.
[0040] Please refer to the following: Figure 5 and Figure 6 In some implementations, the control method includes:
[0041] Step 04: With the cooking module 10 turned on and the temperature of the air conditioning box 21 not lower than the temperature threshold, first start the range hood 30, and then start the air supply mode of the air conditioning module 20.
[0042] In some implementations, step 04 can be implemented by the controller of the integrated kitchen appliance 100. That is, when the cooking module 10 is turned on and the temperature of the air conditioning box 21 is not lower than the temperature threshold, the controller first starts the range hood 30 and then starts the air supply mode of the air conditioning module 20.
[0043] Specifically, during cooking, the cooking module 10 generates heat, making the kitchen feel stuffy. Users may then want to activate the cooling mode of the air conditioning module 20 to lower the temperature. However, the heat generated by the cooking module 10 can cause the temperature inside the air conditioning box 21 of the air conditioning module 20 to rise. To ensure the lifespan of the air conditioning box 21, the controller can first activate the range hood 30 to lower the temperature before activating the air conditioning module 20's ventilation mode. The air conditioning module 20's ventilation mode assists the range hood 30 in expelling the hot air from the kitchen environment and the air conditioning box 21. This prevents the air conditioning module 20 from operating at excessively high temperatures, extending its lifespan.
[0044] In some implementations, the temperature of the air conditioning box 21 includes the intake air temperature of the air conditioning box 21.
[0045] It is understandable that the intake air temperature is related to the ambient temperature of the kitchen. Because the integrated kitchen appliance 100 has high space utilization, the cooking module 10 and the air conditioning box 21 are relatively close. During use, the cooking module 10 generates high temperatures, which raises the temperature of the surrounding airflow. Cooling requires airflow into the air conditioning box 21; therefore, the temperature of the air conditioning box 21 includes its intake air temperature. In one embodiment, when a user uses the integrated kitchen appliance 100 and presses the cooling button on the air conditioning module 20, the controller first detects the on / off status of the cooking module 10 and the temperature of the air conditioning box 21. If the cooking module 10 is on and the temperature of the air conditioning box 21 is not lower than the temperature threshold, the range hood 30 can be started to exhaust the overheated air in the air conditioning box 21 and lower the air temperature inside the air conditioning box 21. Alternatively, the air supply mode of the air conditioning module 20 can be turned on to assist the range hood 30. Then, the air inlet temperature of the air conditioning box 21 is detected to see if it is lower than the temperature threshold. If the air inlet temperature of the air conditioning module 20 is lower than the temperature threshold, the air conditioning module 20 is started to begin cooling. If the air inlet temperature of the air conditioning box 21 is still higher than or equal to the temperature threshold, the range hood 30 and the air supply mode of the air conditioning module 20 continue to run until the air inlet temperature of the air conditioning box 21 is lower than the temperature threshold, and then the air conditioning module 20 is started to begin cooling. This ensures that the air inlet temperature of the air conditioning box 21 is lower than the temperature threshold.
[0046] Please refer to it again. Figure 4 In some embodiments, the cooking module 10 includes an oven module 11 and / or a steam oven module 12, and the integrated kitchen appliance 100 also includes a cooktop module 40. The cooking module 10 and the air conditioning module 20 are arranged in an open row below the cooktop module 40.
[0047] Thus, the integrated kitchen appliance 100 can meet the daily needs of users and has the advantages of being practical and cost-effective.
[0048] The cooktop module 40 includes a cooktop, which can be a natural gas cooktop, a manufactured gas cooktop, a liquefied petroleum gas cooktop, etc. The cooktop module 40 is positioned above the air conditioning module 20 to prevent the cold airflow from the air conditioning module 20 from affecting the use of the cooktop module 40.
[0049] In one embodiment, the cooking module 10 includes an oven module 11, with the oven module 11 and air conditioning module 20 arranged in an open row below the cooktop module 40. In another embodiment, the cooking module 10 includes a steam oven module 12, with the steam oven module 12 and air conditioning module 20 arranged in an open row below the cooktop module 40. In yet another embodiment, the cooking module 10 includes an oven module 11 and a steam oven module 12, with the oven module 11, steam oven module 12, and air conditioning module 20 arranged in an open row below the cooktop module 40. The steam oven module 12 and the oven module 11 can be the same size and can both be cuboid in shape. The steam oven module 12 and the oven module 11 are stacked vertically, with the steam oven module 12 located above the oven module 11, and the air conditioning module 20 located on the side of the steam oven module 12 and the oven module 11. Specifically, the side includes the left side and the right side. The air conditioning module 20 can be located on the left side of the steam oven module 12 and the oven module 11, or it can be located on the right side of the steam oven module 12 and the oven module 11; this is not limited here. Thus, the integrated kitchen appliance 100 has a compact structure, reasonable design, and a variety of practical functions. It can also effectively reduce the space occupied in the kitchen and improve the utilization rate of kitchen space.
[0050] The control method and integrated kitchen appliance 100 of the present application embodiment can activate at least one of the air supply modes of the range hood 30 and the air conditioning module 20 to exhaust the air in the air conditioning box 21, and exhaust the hot air generated by the cooktop module 40, oven module 11 and steam oven module 12 in the working state, so as to ensure that the air conditioning module 20 starts smoothly and improves the user experience.
[0051] Please refer to the following: Figures 7 to 8 In some embodiments, the air conditioning module 20 includes a cooling section and a heating section 24 disposed in an air conditioning box. The air conditioning module 20 includes a cold air duct 22 and a hot air duct 23, with the cold air duct 22 connected to the cooling section and the hot air duct 23 connected to the heating section 24.
[0052] In this way, cold air can be centrally discharged through cold air duct 22, and hot air can be centrally discharged through hot air duct 23.
[0053] Specifically, the refrigeration unit is used to output cold airflow, and the heating unit 24 is used to output hot airflow. The air conditioning module 20 includes a cold air duct 22 and a hot air duct 23. The cold air duct 22 connects to the refrigeration unit, and cold airflow can be discharged through the cold air duct 22; the hot air duct 23 connects to the heating unit 24, and hot airflow can be discharged through the hot air duct 23. In one embodiment, the refrigeration unit includes an evaporator, which can exchange heat and cool the airflow, such as... Figure 7 As shown, the cold air duct 22 is used to guide the cold airflow and discharge the guided cold airflow from the central area of the integrated kitchen appliance 100. The heating unit 24 includes a condenser, and the heating submodule can exchange heat and raise the temperature of the airflow. Figure 8As shown, the hot air duct 23 is used to guide the hot air flow. The range hood 30 includes a flue 31. One end of the hot air duct 23 is connected to the heating unit 24, and the other end is connected to the flue 31. In this way, the hot air flow passes through the hot air duct 23 and is discharged to the flue 31, and then discharged to the outside through the flue 31.
[0054] In one embodiment, the heating unit 24 is located vertically downwards from the cooling unit. The cooling unit includes a front sidewall, and the heating unit 24 includes a rear sidewall. The cold air duct 22 can be installed on the front sidewall of the cooling unit, and the hot air duct 23 can be installed on the rear sidewall of the heating unit 24. Thus, the air conditioning module 20 has a compact structure, and the design of the cold air duct 22 and the hot air duct 23 can improve the space utilization of the integrated kitchen appliance 100.
[0055] Please refer to the following: Figures 7 to 8 In some embodiments, the air conditioning module 20 includes an air conditioning pressure block 25, and the heating unit 24 is fixed inside the air conditioning box 21 by means of the air conditioning pressure block 25.
[0056] This allows for a more stable installation of the heating element 24 inside the air conditioning unit 21.
[0057] In one embodiment, the air conditioning module 20 includes a plurality of air conditioning blocks 25, which connect the air conditioning box 21 and the heating unit 24. The heating unit 24 is located below the cooling unit. The heating unit 24 can be fixed inside the air conditioning box 21 by the plurality of air conditioning blocks 25. The air conditioning box 21 can protect the heating unit 24 and the cooling unit and prevent them from bumping into each other, thus making the installation of the heating unit 241 more stable.
[0058] Please refer to it again. Figure 4 In some embodiments, the integrated kitchen appliance 100 includes a frame 101 and an air conditioning box 21 fixed above the frame 101.
[0059] This makes it easier to install the air conditioner box 21 and makes the installation of the air conditioner box 21 more stable.
[0060] Specifically, the frame 101 includes a metal frame, and the air conditioning box 21 can be detachably fixed to the top of the frame 101 by means of screwing, welding or other methods, which makes it convenient for users to repair and clean the air conditioning module 20.
[0061] Please refer to it again. Figure 1 In some embodiments, the integrated kitchen appliance 100 includes an air inlet grille 50 disposed at the air inlet of the air conditioning module 20.
[0062] In this way, the air intake grille 50 can protect the air conditioning box 21 and prevent it from being bumped or knocked.
[0063] Specifically, the integrated kitchen appliance 100 includes an air inlet grille 50 connected to the housing 24, with the air conditioning box 21 located inside the housing 24. The air inlet grille 50 protects the air conditioning box 21 from impacts. Simultaneously, the air inlet grille 50 is positioned at the air inlet of the air conditioning module 20, thus guiding the incoming airflow and facilitating heat exchange and cooling by the air conditioning box 21.
[0064] Please see Figure 4 In some embodiments, the integrated kitchen appliance 100 includes an air guide mechanism 60, which is disposed at the air outlet of the air conditioning module 20.
[0065] In this way, the air guide mechanism 60 can change the direction of the cold airflow, making the airflow smooth and the noise low.
[0066] Specifically, the air outlet of the air conditioning module 20 is used to output cold air, and the air outlet of the air conditioning module 20 can be located in the middle area of the integrated kitchen appliance 100. The air guide mechanism 60 is correspondingly arranged with the air outlet of the air conditioning module 20. The air guide mechanism 60 includes air outlet guide vanes, which are installed at the air outlet of the air conditioning module 20. The installation method can be by snap-fit, screw-fit, etc., which facilitates the disassembly and maintenance of the air outlet guide vanes. In one embodiment, the air guide mechanism 60 can be rotatably inserted into the air outlet of the air conditioning module 20 through a drive structure. The drive structure can drive the air guide mechanism 60 to rotate reciprocally. The airflow passes through the air guide mechanism 60 before exiting the integrated kitchen appliance 100. The air guide mechanism 60 can change the airflow direction, making the airflow smooth and reducing noise. The air guide mechanism 60 can also make the airflow direction opposite to the cooktop module 40, reducing the impact of the airflow on the performance of the cooktop module 40. When the integrated kitchen appliance 100 is not in use, the air guide mechanism 60 can be closed to prevent dust and debris from entering the integrated kitchen appliance 100.
[0067] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "illustrative embodiment," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0068] Although embodiments of this application have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting this application. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of this application.
Claims
1. A control method for integrated kitchen appliances, characterized in that, include: Upon receiving a cooling command, the system detects the on / off status of the cooking module and the temperature of the air conditioning unit. When the cooking module is turned on and the temperature of the air conditioning box is not lower than the temperature threshold, at least one of the air supply modes of the range hood and the air conditioning module is activated to exhaust the air in the air conditioning box, so that when the temperature of the air conditioning box is lower than the temperature threshold, the air conditioning module is controlled to cool based on the cooling command. When the cooking module is not turned on and the temperature of the air conditioning unit is lower than the temperature threshold, the air conditioning module is controlled to cool based on the cooling command; the control method includes: When the cooking module is turned on and the temperature of the air conditioning box is not lower than the temperature threshold, the range hood is started first, and then the air supply mode of the air conditioning module is started.
2. The control method for integrated kitchen appliances according to claim 1, characterized in that, The temperature threshold is 42℃±1℃.
3. The control method for integrated kitchen appliances according to claim 1, characterized in that, The temperature of the air conditioning box includes the air intake temperature of the air conditioning box.
4. An integrated kitchen appliance, characterized in that, include: Cooking module; Air conditioning module; A controller, which connects the cooking module and the air conditioning module, is used to: detect the on-state of the cooking module and the temperature of the air conditioning unit when a cooling command is received; When the cooking module is turned on and the temperature of the air conditioning box is not lower than the temperature threshold, at least one of the air supply modes of the range hood and the air conditioning module is activated to exhaust the air in the air conditioning box, so that when the temperature of the air conditioning box is lower than the temperature threshold, the air conditioning module is controlled to cool based on the cooling command. When the cooking module is not turned on and the temperature of the air conditioning unit is lower than the temperature threshold, the controller controls the air conditioning module to cool based on the cooling command; the controller is used to: When the cooking module is turned on and the temperature of the air conditioning box is not lower than the temperature threshold, the range hood is started first, and then the air supply mode of the air conditioning module is started.
5. The integrated kitchen appliance according to claim 4, characterized in that, The cooking module includes an oven module and / or a steam oven module, and the integrated kitchen appliance also includes a cooktop module. The cooking module and the air conditioning module are arranged side by side below the cooktop module.
6. The integrated kitchen appliance according to claim 4, characterized in that, The air conditioning module includes a cooling section and a heating section disposed within the air conditioning box. The air conditioning module includes a cold air duct and a hot air duct, the cold air duct being connected to the cooling section and the hot air duct being connected to the heating section.
7. The integrated kitchen appliance according to claim 4, characterized in that, The integrated kitchen appliance includes a frame, and the air conditioning box is fixed on top of the frame.
8. The integrated kitchen appliance according to claim 4, characterized in that, The integrated kitchen appliance includes an air guide mechanism, which is located at the air outlet of the air conditioning module.
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