Handle assembly and cooking equipment
By integrating operating parts and detection parts in the handle assembly, the problems of space occupation and misoperation in the cooking equipment are solved, and the compact design and safety improvement of the equipment are achieved.
Patent Information
- Application Number
- CN202220623389.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2022-03-21
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2032-03-21
AI Technical Summary
The operating components and handles in the existing cooking equipment are separately arranged, occupying a large space and there is a risk of misoperation.
The handle assembly integrates the operating component and the detection component on the handle body, detects the user's grip signal through the detection component, and controls the operation component to enter the anti-detect mode.
It reduces the number of parts and occupancy area, improves the simplicity and aesthetics of the equipment, and enhances the safety of use and avoids misoperation.
Smart Images

Figure CN223041408U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of cooking utensils, and in particular to a handle assembly and cooking equipment. Background Art
[0002] In existing cooking appliances such as steam-bake-fryers, operating components such as a touch screen or a display and operating buttons are usually provided. These operating components are placed separately on the door of the steam-bake-fryer. At the same time, a handle for opening the door is also separately provided on the door. This arrangement requires more space on the door. Utility Model Content
[0003] The present application provides a handle assembly and a cooking device, which solve the technical problem in the prior art that the operating components and the handle are separately provided, thus occupying a large space.
[0004] The first aspect of the present application provides a handle assembly, including a handle body, an operating component, a first detection component and a control component, wherein the operating component is arranged on the handle body; the first detection component is arranged on the handle body; the control component is connected to the operating component and the first detection component; when the first detection component detects a preset signal, the control component controls the operating component to enter an anti-mistouch mode.
[0005] In some embodiments, a gripping portion is provided on the handle body, and the gripping portion has a first side wall and a second side wall opposite to each other, wherein the operating component is located on the first side wall and the first detection component is located on the second side wall; or, the operating component and the first detection component are both located on the first side wall or the second side wall.
[0006] In some embodiments, the operating component covers or forms the first side wall.
[0007] In some embodiments, the handle body further has an external connection portion, and an arc-shaped connecting section is provided between the external connection portion and the gripping portion.
[0008] In some embodiments, the second sidewall has an arcuate surface that is concave toward the first sidewall.
[0009] In some embodiments, the gripping portion has an inner cavity, the first detection component is a capacitive inductive detector, the capacitive inductive detector includes a metal inductive coating, and the metal inductive coating is disposed on the inner wall surface of the second side wall.
[0010] In some embodiments, the first detection component is one of a capacitance induction detector, a resistance induction detector, a pressure induction detector, a temperature induction detector, an infrared induction detector, a Hall induction detector, and an acoustic wave induction detector.
[0011] In some embodiments, the operating component is a touch display screen.
[0012] Correspondingly, a second aspect of the present application further provides a cooking device, including a handle body, an operating component, a first detection component, and a control component. The operating component is disposed on the handle body; the first detection component is disposed on the handle body; the control component is connected to the operating component and the first detection component; when the first detection component detects a preset signal, the control component controls the operating component to enter an anti-misoperation mode.
[0013] In some embodiments, the cooking device further includes a movable part and a fixed part, and the handle body is connected to the movable part and can drive the movable part to move relative to the fixed part.
[0014] In some embodiments, the movable part includes a transparent panel, and the handle body is disposed on the transparent panel.
[0015] In some embodiments, a second detection component is further disposed at a mating position between the movable part and the fixed part.
[0016] In some embodiments, a gripping portion is disposed on the handle body, and the gripping portion has opposite first side walls and second side walls. Among them, the operating component is located on the first side wall, and the first detection component is located on the second side wall; alternatively, both the operating component and the first detection component are located on the first side wall or the second side wall.
[0017] In some embodiments, the operating component covers or forms the first side wall.
[0018] In some embodiments, the handle body further has an external connection portion, and there is an arc-shaped connection section between the external connection portion and the gripping portion.
[0019] In some embodiments, the second side wall has an arc-shaped surface that is concave towards the first side wall.
[0020] In some embodiments, the gripping portion has a cavity, the first detection component is a capacitance induction detector, and the capacitance induction detector includes a metal induction coating, and the metal induction coating is disposed on the inner wall surface of the second side wall.
[0021] In some embodiments, the first detection component is one of a capacitance induction detector, a resistance induction detector, a pressure induction detector, a temperature induction detector, an infrared induction detector, a Hall induction detector, and an acoustic wave induction detector.
[0022] The present application has the following beneficial effects: In the present application, the operating component is arranged on the handle body, and the two are combined rather than independently arranged, thereby reducing the number of components and the occupied area. The entire handle assembly has a compact structure and is also applicable to moving parts with a small space. Moreover, it increases the simplicity of the entire cooking device and improves the aesthetic appearance of the cooking device.
[0023] Meanwhile, through the arrangement of the first detection component, the problem of non-subjective operation caused by the user's fingers accidentally touching the operating component when holding the handle body is solved, enhancing the safety of machine use and avoiding the use risks brought by misoperation. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for use in the description of the embodiments. Obviously, the drawings in the following description are only some embodiments of the present application. For those skilled in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0025] Figure 1 Exemplarily shows a schematic structural diagram of the handle body installed on a movable part in an embodiment.
[0026] FIG. 2 exemplarily shows a schematic structural diagram of the handle body installed on a movable part in another embodiment.
[0027] Figure 3 Exemplarily shows a schematic structural diagram of a cooking device.
[0028] Figure 4 Exemplarily shows a detection schematic diagram of a capacitance induction detector.
[0029] Figure 5 Exemplarily shows a principle schematic diagram of an anti-mis-touch method.
[0030] Figure 6 Exemplarily shows a flowchart of an anti-mis-touch method.
[0031] Figure 7 Exemplarily shows a flowchart of another anti-mis-touch method.
[0032] In the figure: handle body 110, gripping portion 111, first side wall 1111, second side wall 1112, arc surface 11121, external connection portion 112, connection section 1121, operating member 120, first detection member 130, control member 140, movable part 310, fixed part 320. Detailed implementation
[0033] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative efforts belong to the scope of protection of the present application. In addition, it should be understood that the specific implementation manners described herein are only used to illustrate and explain the present application, and are not used to limit the present application. In the present application, unless otherwise stated, the orientation words such as "upper", "lower", "left", and "right" usually refer to the upper, lower, left, and right in the actual use or working state of the device, specifically the drawing direction in the accompanying drawings.
[0034] In addition, the terms "first" and "second" are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one of these features.
[0035] The present application provides a handle assembly and a cooking device, which will be described in detail below. It should be noted that the description order of the following embodiments does not limit the preferred order of the embodiments of the present application. And in the following embodiments, each embodiment is described with emphasis. For the parts not detailed in a certain embodiment, reference may be made to the relevant descriptions of other embodiments.
[0036] Referring to FIG. 1, an embodiment of the present application provides a handle assembly, including a handle body 110, an operating member 120, a first detection member 130, and a control member 140 (see FIG. 4).
[0037] Among them, the handle body 110 is used to be connected to a movable part 310 of a cooking device, so as to facilitate the user to hold and operate the movable part 310. The movable part 310 can be a door body, a cover body or the like. In this embodiment, as shown in FIGS. 1 and 2, an externally connected part 112 and a holding part 111 are connected to the handle body 110. Among them, the externally connected part 112 is used to be connected to the movable part 310, and the connection method can be bonding, bolt connection, snap connection, etc., and this embodiment does not limit it. The holding part 111 is used for the user to operate, and it has opposite first side wall 1111 and second side wall 1112. Here, the first side wall 1111 is the side wall of the holding part 111 facing away from the movable part 310, and the second side wall 1112 is the side wall of the holding part 111 facing the movable part 310. Generally, when the user holds the holding part 111, the user's hand will hold both the first side wall 1111 and the second side wall 1112 of the holding part 111. The second side wall 1112 has an arc-shaped surface 11121 recessed into the first side wall 1111, so as to strengthen the strength at the first side wall 1111 and at the same time make it convenient for the user to hold this part. And, there is an arc-shaped connecting section 1121 between the externally connected part 112 and the holding part 111, which can make the holding part 111 have a direction convenient for the user to hold.
[0038] Here, as shown in FIG. 1, in some embodiments, the handle is of a solid structure and has good strength. Referring to FIG. 2 again, in some other embodiments, the handle is of a hollow structure and has a cavity. The mass of the handle is lighter, which is convenient for the user to operate. And, here, the first side wall 1111 has an inner wall surface and an outer wall surface, and the second side wall 1112 also has an inner wall surface and an outer wall surface. The first detection component 130 (the specific content will be described later) can be arranged in the cavity of the handle, for example, arranged on the inner wall surface of the first side wall 1111 or the second side wall 1112 of the handle, so as to reduce the contact between the first detection component 130 and the outside, prevent damage, and at the same time also helps to make the structure of the handle more compact.
[0039] The operation component 120 is a component for a user to operate the cooking device. It is arranged on the handle body 110 and connected to the controller of the cooking device. Referring to FIG. 3, in this embodiment, the operation component 120 is a touch display screen arranged on the first side wall 1111, which provides functions for user operation and display of relevant working states at the same time. Moreover, the substrate glass on the outer layer of the touch display screen adopts explosion-proof and highly transparent glass to reduce the probability of damage during use and improve its safety during use.
[0040] Here, the operation component 120 is arranged on the handle body 110, and the two are combined rather than independently arranged, thereby reducing the number of components and the occupied area. The entire handle assembly has a compact structure and is also applicable to the relatively small moving part 310, and increases the simplicity of the entire cooking device and improves the aesthetics of the cooking device.
[0041] It can be understood that in other embodiments, the operation component 120 can be an operation button, or an operation button and a display screen, etc. The operation component 120 can also not be arranged in the holding part 111 of the handle body 110 for the user to hold, so as to prevent the user from accidentally touching it when holding. For example, the handle body 110 is set relatively large, a part of which is used as the holding part 111 and the other part is a non-holding part 111, and the operation component 120 is arranged on the non-holding part 111, etc. However, when the handle body 110 is set relatively large, it may be inconvenient for actual use. For example, when the movable part 310 is a transparent door panel, it may block the transparent door panel, making it inconvenient for the user to observe through the transparent door panel.
[0042] Referring again to FIG. 2, in the present embodiment, in order to provide a relatively large operating area for the operating member 120, the first side wall 1111 is directly formed by the operating member 120. Referring to FIG. 3, that is, in the present embodiment, the touch display screen also serves as a part of the holding portion 111. Thus, with the size of the handle body 110 remaining unchanged, the touch display screen has a larger operating area, and the user can more conveniently control the touch display screen and view its display content. Here, referring to FIG. 2 again, when there is an arc-shaped connecting section 1121 between the external connection portion 112 and the holding portion 111, the arc-shaped connecting section 1121 is made of an elastic material and is attached to the side surface of the touch display screen to protect the edges of the touch display screen, making these edges less likely to break. It can be understood that in other embodiments, the operating member 120 can also be arranged to cover the first side wall 1111 to achieve the effect of providing a larger operating area.
[0043] Since the operating component 120 is provided on the handle body 110, when operating the handle body 110, it may cause accidental triggering of the operating component 120. Especially when the operating component 120 is provided on the holding part 111, this situation is more likely to occur. Therefore, in some embodiments, on the handle body 110, a first detection component 130 for detecting whether a user holds the holding part 111 is further provided. Referring to FIG. 2, in this embodiment, the first detection component 130 is a capacitive induction detector, and the capacitive induction detector includes a metal induction coating, and the metal induction coating is provided on the inner wall surface of the second side wall 1112 of the holding part 111. Here, referring to FIG. 4 again, the metal induction coating is connected to the control component 140. When the user holds the holding part 111, the user's hand contacts the second side wall 1112. Due to the human body electric field, a capacitance change and a current change occur between the user's hand and the metal induction coating. At this time, when the control component 140 receives the changed current signal, it is a preset signal. The preset signal can be a specific value or a range value. Usually, it is a range value. When receiving the preset signal, the control component 140 controls the operating component 120 connected thereto to enter the anti-misoperation mode. In the anti-misoperation mode, the operation signal of the operating component 120 is not received or executed. For example, in the anti-misoperation mode, the touch display screen enters the screen-off state and the touch function is turned off. Here, the capacitive induction detector can detect the capacitance difference between the metal induction coating and the finger and convert the detected analog signal into a digital signal for output. It can effectively distinguish the difference between the finger and the liquid aqueous solution and avoid recognizing the operation with liquid water on the user's hand as holding the holding part 111. In other embodiments, referring to FIG. 1, the first detection component 130 may also be provided on the outer wall surface of the second side wall 1112 of the holding part 111.
[0044] Here, in this embodiment, the operating component 120 is located on the first sidewall 1111, and the first detection component 130 is located on the second sidewall 1112. It can be understood that in other embodiments, both the operating component 120 and the first detection component 130 may also be located on the same sidewall, for example, both on the first sidewall 1111 or both on the second sidewall 1112. However, in this embodiment, the arrangement of setting the operating component 120 and the first detection component 130 on two different sidewalls respectively enables the setting area of the operating component 120 not to be affected by the first detection component 130, which helps to improve the space utilization rate and enables the operating component 120 to have a larger setting area.
[0045] Here, through the arrangement of the first detection component 130, the problem of non-subjective operation caused by the user's fingers possibly accidentally touching the operating component 120 when holding the handle body 110 is solved, enhancing the safety of machine use and avoiding the use risks brought by misoperation.
[0046] It can be understood that in other embodiments, the first detection component 130 is not limited to the aforementioned metal induction coating. The first detection component 130 can be at least one of various types such as a capacitance induction detector, a resistance induction detector, a pressure induction detector, a temperature induction detector, an infrared induction detector, a Hall induction detector, and an acoustic wave induction detector. For example, the resistance induction detector includes a resistive film screen, which includes two conductive layers, and there are several transparent isolation points between the two conductive layers to separate and insulate the two conductive layers. When the user's hand touches the resistive film screen, the two conductive layers come into contact at the touch point position and generate a current signal, and this current signal is the preset signal, and the control component 140 controls the operating component 120 to enter the anti-mis-touch mode. Another example is that the pressure induction detector includes a pressure sensor or a mechanical switch, and the preset signal is generated by the user's pressing. Another example is that the temperature induction detector includes a temperature sensor, and the preset signal is a temperature signal. Another example is that the infrared induction detector includes an infrared emitter and an infrared receiver, and the preset signal is a distance signal from the user's hand. Another example is that the Hall induction detector includes a Hall sensor, and the preset signal is a distance signal from the user's hand. Another example is that the acoustic wave induction detector includes a transducer. When the user touches the surface of the holding part 111, the transmission of the acoustic wave is blocked, and the transducer can detect this change, and the preset signal is an acoustic wave signal.
[0047] In some other embodiments, the first detection component 130 shares an induction element with the operation component 120. Exemplarily, the operation component 120 is a touch display screen, which has a plurality of touch sensors, and the touch sensors also serve as the first detection component 130 at the same time. The preset signal is the number of touch sensors that sense a touch signal. When a user operates the touch display screen, usually only a single finger is used for operation, while when the user holds the holding part 111, a larger area of the touch sensors will be triggered by the user. Therefore, when a relatively large number of touch sensors have induction signals, the controller determines that the user is holding the holding part 111 and controls the touch display screen to enter an anti-misoperation mode.
[0048] The handle assembly can be disposed on a cooking device. Therefore, in order to better achieve the technical effects of the embodiments of the present application, the embodiments of the present application further provide a cooking device, which includes the aforementioned handle assembly, that is, a handle body 110, an operation component 120, a first detection component 130, and a control component 140. Among them, the operation component 120 and the first detection component 130 are disposed on the handle body 110. The control component 140 is connected to the operation component 120 and the first detection component 130. When the first detection component 130 detects a preset signal, the control component 140 controls the operation component 120 to enter an anti-misoperation mode.
[0049] Please refer to FIG. 3. In some embodiments, the cooking device further includes a movable part 310 and a fixed part 320, and the movable part 310 and the fixed part 320 can be cooperatively connected to each other. The handle body 110 is connected to the movable part 310 and can drive the movable part 310 to move relative to the fixed part 320. Exemplarily, the cooking device is a steam cooking and baking integrated machine, the fixed part 320 is the base of the steam cooking and baking integrated machine, the base has a receiving cavity, the movable part 310 is a door panel covering the receiving cavity, and a part or all of the door panel is a transparent panel. As another example, the cooking device is a cooking machine, the fixed part 320 is a cooking pot body, the movable part 310 is a pot lid, and at least a part of the pot lid is a transparent panel.
[0050] In some embodiments, the handle body 110 is provided with a grip portion 111, and the grip portion 111 has a first side wall 1111 and a second side wall 1112 opposite to each other. The operating component 120 is located on the first side wall 1111, and the first detection component 130 is located on the second side wall 1112; or, the operating component 120 and the first detection component 130 are both located on the first side wall 1111 or the second side wall 1112.
[0051] In some embodiments, the operating component 120 covers or forms the first side wall 1111 .
[0052] In some embodiments, the handle body 110 further has an external connection portion 112 , and an arc-shaped connecting section 1121 is provided between the external connection portion 112 and the grip portion 111 .
[0053] In some embodiments, the second side wall 1112 has a curved surface 11121 that is concave toward the first side wall 1111 .
[0054] In some embodiments, the gripping portion 111 has an inner cavity, the first detection component 130 is a capacitive inductive detector, the capacitive inductive detector includes a metal inductive coating, and the metal inductive coating is disposed on the inner wall surface of the second side wall 1112 .
[0055] In some embodiments, the first detection component 130 is at least one of a capacitive sensing detector, a resistive sensing detector, a pressure sensing detector, a temperature sensing detector, an infrared sensing detector, a Hall sensing detector, and an acoustic wave sensing detector.
[0056] In some embodiments, the operating component 120 is a touch display screen.
[0057] In some embodiments, a second detection component is further provided at the matching position of the movable part 310 and the fixed part 320. Exemplarily, it can be a micro switch, and when the movable part 310 and the fixed part 320 generate relative motion, the micro switch will be triggered and generate an open signal. Here, the micro switch has a high sensitivity, so that a better timely detection effect can be achieved. Of course, it can be understood that in other embodiments, the micro switch can also be replaced by other detection elements, such as infrared sensors, Hall sensors, etc., which are not limited in this embodiment.
[0058] In addition, it can be understood that the cooking device may further include a heating device, a temperature detection device, a rotating device, etc. These devices can be added according to requirements and connected to the control component 140 so that the control component 140 can control and execute corresponding operations and functions.
[0059] To better achieve the technical effects of the embodiments of the present application, please refer to FIG. 6. The embodiments of the present application further provide an anti-misoperation method for the aforementioned cooking device. The anti-misoperation method includes the following steps S100-S300.
[0060] In step S100, a cooking device is provided, including a handle body 110, an operation component 120 and a first detection component 130 connected to opposite sides of the handle body 110. The operation component 120 and the first detection component 130 are connected to a control component 140.
[0061] In step S300, when the first detection component 130 detects a preset signal, the control component 140 controls the operation component 120 to enter the anti-misoperation mode.
[0062] To better achieve the technical effects of the embodiments of the present application, please refer to FIGS. 5 and 7. The embodiments of the present application further provide an anti-misoperation method for the aforementioned cooking device. The anti-misoperation method includes the following steps S200-S400.
[0063] In step S200, a cooking device is provided, including a movable part 310, a fixed part 320, a second detection component, a handle body 110 connected to the movable part 310, an operation component 120 and a first detection component 130 connected to opposite sides of the handle body 110. The operation component 120, the first detection component 130 and the second detection component are connected to a control component 140. Wherein, the movable part 310 and the fixed part 320 cooperate with each other, and the second detection component is arranged corresponding to the cooperation position of the two.
[0064] In step S400, when the first detection component 130 detects a preset signal and the second detection component detects an opening signal, the control component 140 controls the operation component 120 to enter the anti-misoperation mode.
[0065] Application Example 1
[0066] Please refer to Figure 2 and Figure 3In application example 1, a handle assembly is provided, which includes a handle body 110, an operating component 120, a first detection component 130 and a control component 140, the first detection component 130 includes a metal induction coating, the operating component 120 is a touch screen, the metal induction coating and the touch screen are both arranged on the gripping portion 111 of the handle body 110, and the touch screen covers the first side wall 1111.
[0067] Application Example 2
[0068] Application Example 2 provides a steam-bake-fryer, on the door panel of which is provided a handle body 110 provided in Application Example 1. Figure 6 When the first detection component 130 detects a preset signal, the control component 140 controls the touch display screen to turn off the screen and controls the touch function of the touch display screen to turn off.
[0069] Application Example 3
[0070] In application example 3, a steaming, baking and frying machine is provided, which has a structure similar to that of application example 2, except that it further includes a second detection component for detecting the opening and closing state of the door panel. Figure 5 and Figure 7 When the first detection component 130 detects a preset signal and the second detection component detects a signal indicating that the door panel is opened, the control component 140 controls the touch display screen to be turned off and controls the touch function of the touch display screen to be turned off.
[0071] It is understandable that, unless otherwise specified or contradictory, the meanings of the terms in the above embodiments are the same, some contents are not repeated in detail, and the specific implementation details and technical effects can be referenced to each other, and this specification will not elaborate on them.
[0072] The handle assembly and cooking equipment provided by the present application are introduced in detail above. Specific examples are used in this article to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only used to help understand the method of the present application and its core idea. At the same time, for general technicians in this field, according to the idea of the present application, there will be changes in the specific implementation method and application scope. In summary, the content of this specification should not be understood as a limitation on the present application.
Claims
1. A handle assembly, characterized in that, include, Handle body; An operating component, arranged on the handle body; A first detection component is arranged on the handle body; as well as a control component connected to the operating component and the first detecting component; When the first detection component detects a preset signal, the control component controls the operating component to enter an anti-mistouch mode.
2. The handle assembly according to claim 1, wherein The handle body is provided with a gripping portion, and the gripping portion has a first side wall and a second side wall opposite to each other, wherein: The operating component is located on the first side wall, and the first detection component is located on the second side wall; or, The operating component and the first detecting component are both located on the first side wall.
3. The handle assembly according to claim 2, wherein The operating component covers or forms the first side wall.
4. The handle assembly according to claim 3, wherein, The handle body also has an external connection portion, and an arc-shaped connecting section is provided between the external connection portion and the gripping portion.
5. The handle assembly according to claim 2, characterized in that, The second side wall has an arc-shaped surface concave toward the first side wall.
6. The handle assembly according to any one of claims 2 to 5, characterized in that, The gripping portion has an inner cavity. The first detection component is a capacitive inductive detector. The capacitive inductive detector includes a metal inductive coating. The metal inductive coating is arranged on the inner wall surface of the second side wall.
7. The handle assembly according to claim 1, wherein, The first detection component is one of a capacitive induction detector, a resistive induction detector, a pressure induction detector, a temperature induction detector, an infrared induction detector, a Hall induction detector and an acoustic wave induction detector.
8. The handle assembly according to claim 1, characterized in that The operating component is a touch display screen.
9. A cooking device, characterized in that, include, Fixed part; A movable part, cooperatively connected to the fixed part and movable relative to the fixed part; a handle body connected to the movable portion; An operating component, arranged on the handle body; A first detection component is arranged on the handle body; as well as a control component connected to the operating component and the first detecting component; When the first detection component detects a preset signal, the control component controls the operating component to enter an anti-mistouch mode.
10. The cooking device according to claim 9, characterized in that, It also includes a movable part and a fixed part. The handle body is connected to the movable part and can drive the movable part to move relative to the fixed part.
11. The cooking device according to claim 10, characterized in that, The movable part includes a transparent panel, and the handle body is arranged on the transparent panel.
12. The cooking device according to claim 10, characterized in that, A second detection component is also provided at the matching position of the movable part and the fixed part. When the first detection component detects a preset signal and the second detection component detects a door opening signal, the control component controls the operating component to enter an anti-mistouch mode.
13. The cooking device according to claim 9, wherein The handle body is provided with a gripping portion, and the gripping portion has a first side wall and a second side wall opposite to each other, wherein: The operating component is located on the first side wall, and the first detection component is located on the second side wall; or, The operating component and the first detecting component are both located on the first side wall or the second side wall.
14. The cooking device according to claim 13, wherein, The operating component covers or forms the first side wall.
15. The cooking device according to claim 13 or 14, characterized in that, The gripping portion has an inner cavity. The first detection component is a capacitive inductive detector. The capacitive inductive detector includes a metal inductive coating. The metal inductive coating is arranged on the inner wall surface of the second side wall.
16. The cooking device according to claim 9, wherein The first detection component is one of a capacitance induction detector, a resistance induction detector, a pressure induction detector, a temperature induction detector, an infrared induction detector, a Hall induction detector, and an acoustic wave induction detector.