Cooking equipment

By incorporating a storage box and wireless charging function into the handle of the cooking equipment, the problem of inconvenient storage of temperature probes is solved, enabling convenient use and accurate temperature detection, thus improving the user experience.

CN224023389UActive Publication Date: 2026-03-24SHENZHEN TYPHUR TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-05
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

The temperature probes of existing cooking equipment are inconvenient to store after use, are easy to lose, and affect the user experience.

Method used

Design a cooking device that allows a temperature probe to be detachably mounted on the handle of the device and stored in a storage box. The device supports wireless charging and wireless communication connectivity, ensuring convenient use and safe storage of the probe.

Benefits of technology

It enables convenient storage of temperature probes and accurate temperature detection, improves user experience, and reduces the risk of probe damage and loss.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224023389U_ABST
    Figure CN224023389U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of food material processing equipment, in particular to cooking equipment. The cooking equipment comprises a cooking box, a storage box and a temperature measuring probe, the cooking box comprises a box body, a cooking cavity opening and closing part and a handle located on the cooking cavity opening and closing part, the handle is used for operating the cooking cavity opening and closing part to be opened and closed, and a cooking cavity used for cooking food is defined by the box body and a box door. The temperature measurement probe is detachably installed in the storage box so as to be taken down for temperature measurement. Due to the fact that the temperature measuring probe of the cooking equipment can be installed on the storage connecting structure of the handle or installed in the storage box on the handle and can be detached from the handle, the temperature of cooked food can be measured after the temperature measuring probe is taken down, and the temperature of the food can be accurately obtained. And after being used, the temperature measuring probe can be stored on the handle again, so that the problem that the existing cooking equipment is inconvenient to store when the temperature measuring probe is used for detecting the temperature of food is solved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of food processing equipment, in particular to a cooking equipment. BACKGROUND

[0002] Currently, cooking equipment such as electric ovens and air fryers usually detects the temperature in the cooking cavity by using an internal temperature sensor. However, the temperature detected by the temperature sensor is the air temperature in the oven cavity or the temperature of the internal components, which is different from the temperature inside the cooking food, resulting in poor cooking effect. In order to accurately obtain the temperature of the cooking food, some cooking equipment currently configures a temperature probe to detect the temperature of the food. After the temperature probe is used and taken out of the cooking cavity, it is placed anywhere, which is not convenient for storage and is easy to lose. CONTENT OF THE UTILITY MODEL

[0003] The present application provides a cooking equipment for improving the problem of inconvenient storage of the temperature probe used to detect the temperature of the food in the current cooking equipment.

[0004] In a first aspect, a cooking equipment is provided in an embodiment, comprising:

[0005] a cooking box, the cooking box comprising a box body, a cooking cavity opening and closing member, and a handle on the cooking cavity opening and closing member, the box body and the cooking cavity opening and closing member enclosing a cooking cavity for cooking food; the handle is used to operate the cooking cavity opening and closing member to open and close;

[0006] a storage box, the storage box being detachably installed on the handle;

[0007] and a temperature probe, the temperature probe being detachably installed in the storage box to be able to be taken out for temperature measurement.

[0008] Further, in an embodiment, the handle has a mounting slot, and the storage box is detachably installed in the mounting slot, and the outer surface of the storage box and the outer surface of the handle are smoothly transitioned.

[0009] Further, in an embodiment, the handle has a mounting slot, and the storage box is detachably installed in the mounting slot, and the handle comprises a slot cover, the slot cover being openable to cover the slot opening of the mounting slot, and the slot cover being capable of covering the storage box when closed and allowing the storage box to be taken out when opened.

[0010] Further, in an embodiment, the temperature probe is a wireless probe, and the cooking device comprises a charging module, the charging module being in the handle, the temperature probe comprising a probe charging member and a probe battery; the charging module is configured to electrically connect with the probe charging member to charge the temperature probe after the temperature probe is loaded into the storage box and the storage box is mounted on the handle.

[0011] Further, in an embodiment, the charging module comprises a charging contact member; the charging contact member is configured to conductively contact with the probe charging member to realize the electrical connection between the charging module and the probe charging member.

[0012] Further, in an embodiment, the storage box has a box opening for taking and placing the temperature probe, the box opening faces the handle after the storage box is mounted on the handle, and the charging contact member extends into the storage box through the box opening to conductively contact with the probe charging member.

[0013] Further, in an embodiment, the cooking device comprises a charging module, the charging module being in the storage box, the temperature probe comprising a probe charging member and a probe battery electrically connected with the probe charging member, the charging module is configured to conductively connect with the probe charging member to enable the charging module to charge the probe battery; the storage box has a charging interface, the charging interface is electrically connected with the charging module, the box body has a power supply interface for conducting with a power supply, and the charging interface is configured to conduct with the power supply interface through an external charging line.

[0014] Further, in an embodiment, the temperature probe is a wireless probe, and the cooking box comprises a control module for controlling the temperature in the cooking box, the control module is wirelessly connected with the temperature probe to receive the measurement data of the temperature probe.

[0015] In an embodiment, the present application further provides a cooking device, comprising:

[0016] a cooking box, the cooking box comprising a box body, a cooking cavity opening and closing member, and a handle on the cooking cavity opening and closing member, the box body and the cooking cavity opening and closing member enclosing a cooking cavity for cooking food; the handle is configured to operate the cooking cavity opening and closing member to open and close;

[0017] and a temperature probe, the handle comprising a storage connection structure, the temperature probe is detachably connected with the storage connection structure to enable the temperature probe to be taken down for temperature measurement; in a state that the temperature probe is stored in the storage connection structure, a temperature measurement end of the temperature probe is outside the cooking cavity.

[0018] Further, in an embodiment, the receiving connection structure has a receiving slot, and the temperature probe is detachably installed in the receiving slot.

[0019] Further, in an embodiment, the temperature probe is a wireless probe, and the cooking box comprises a control module for controlling the temperature in the cooking box, and the control module is wirelessly connected with the temperature probe to receive the measurement data of the temperature probe.

[0020] According to the cooking device of the above-mentioned embodiments, the temperature probe of the cooking device can be installed on the receiving connection structure of the handle or in the receiving box on the handle, and can be detached from the handle, and after the temperature probe is removed, the temperature of the cooked food can be measured to accurately obtain the temperature of the food. After use, the temperature probe can be stored on the handle, which improves the current problem of inconvenient storage of the temperature probe for detecting the temperature of the food in the cooking device. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 is a front view of a cooking device in an embodiment;

[0022] Figure 2 is a sectional view along Figure 1 A-A in the figure;

[0023] Figure 3 is an enlarged view of part A in the figure; Figure 2

[0024] Figure 4 is a structural schematic view of a temperature probe and a receiving box in an embodiment;

[0025] Figure 5 is a sectional view of a temperature probe and a receiving box in an embodiment;

[0026] Figure 6 is another sectional view of a temperature probe and a receiving box in an embodiment;

[0027] Figure 7 is a top view of another cooking device in an embodiment.

[0028] ​List of features corresponding to reference signs in the figures: 1, cooking box; 11, cooking cavity; 12, box body; 121, power supply interface; 13, cooking cavity opening and closing member; 14, handle; 141, mounting groove; 15, handle magnetic member; 2, storage box; 21, box opening; 22, needle taking notch; 23, storage box groove; 24, storage box magnetic member; 25, first box body; 26, second box body; 261, perforation; 27, buckle; 28, charging interface; 3, temperature measuring probe; 31, probe charging member; 311, probe positive electrode; 312, probe negative electrode; 32, needle; 4, charging module; 41, charging contact member; 42, circuit board; 5, control panel.

[0029] Explanation of reference signs in brackets in the figures: In the reference signs in brackets in the figures, the feature referred to by the reference sign is both the feature represented by the number in the brackets and the feature represented by the number outside the brackets. DETAILED DESCRIPTION

[0030] The application will be further described below in conjunction with the drawings by means of specific embodiments. Like elements in different embodiments are denoted by like reference numerals. In the following embodiments, many details are described in order to provide a better understanding of the application. However, a person skilled in the art can easily realize that some features can be omitted in different cases, or can be replaced by other elements, materials, methods. In some cases, some operations related to the application are not shown or described in the specification in order to avoid the core of the application being overwhelmed by too much description, and it is not necessary to describe these related operations in detail for a person skilled in the art according to the description in the specification and general technical knowledge in the art.

[0031] In addition, the features, operations or characteristics described in the specification can be combined in any appropriate way to form various embodiments. At the same time, the steps or actions in the method description can also be sequentially adjusted or adjusted in a manner that is obvious to a person skilled in the art. Therefore, the various sequences in the specification and the drawings are only for the purpose of clearly describing a certain embodiment, and do not mean that the sequence is necessary, unless otherwise stated that a certain sequence must be followed.

[0032] In the description of the present application, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application.

[0033] In addition, the terms "first", "second" are only for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "multiple" is two or more, unless otherwise explicitly specified and limited.

[0034] In the present application, unless otherwise explicitly specified and limited, the first feature is "on" or "under" the second feature, which can be direct contact between the first and second features, or indirect contact between the first and second features through an intermediate medium. Moreover, the first feature "above", "above" and "above" the second feature can be directly above or obliquely above the first feature, or only indicate that the horizontal height of the first feature is higher than that of the second feature. The first feature "below", "below" and "below" the second feature can be directly below or obliquely below the first feature, or only indicate that the horizontal height of the first feature is less than that of the second feature.

[0035] The embodiments described in the detailed description can be combined in any suitable manner without contradiction, for example, different embodiments can form different embodiments by combining different embodiments, in order to avoid unnecessary repetition, various possible combinations of each embodiment are not described again.

[0036] In view of the problem that the temperature measuring probe is placed anywhere and is not convenient to store after measuring the temperature of the current cooking equipment, the present application provides a cooking equipment capable of storing the temperature measuring probe, which can store the temperature measuring probe on the handle of the cooking box, which is convenient for storage and does not affect the normal use of the cooking box. The cooking equipment of the present application will be described in detail below with reference to the accompanying drawings.

[0037] In one embodiment, please refer to Figures 1 to 3, the cooking apparatus comprises a cooking box 1, a storage box 2 and a temperature probe 3. The cooking box 1 comprises a box body 12, a cooking cavity opening and closing member 13 and a handle 14 on the cooking cavity opening and closing member 13, the handle 14 is used to operate the cooking cavity opening and closing member 13 to open and close, and the box body 12 and the cooking cavity opening and closing member 13 enclose a cooking cavity 11 for cooking food. The temperature probe 3 can be detachably installed in the storage box 2 to be taken out for temperature measurement. The storage box 2 is detachably installed on the handle 14, so that the temperature probe 3 can be more timely installed in the storage box 2 for protection, and the storage box 2 and the temperature probe 3 are also convenient to clean.

[0038] Since the cooking apparatus comprises the storage box 2 for storing the temperature probe 3, the storage box 2 can be detached from the handle 14, the temperature probe 3 can be taken out of the storage box 2 to measure the temperature of the cooked food, the temperature of the food can be accurately obtained, and after use, the temperature probe 3 can be stored on the handle 14 again, thereby improving the problem of inconvenient storage of the temperature probe 3 for measuring the temperature of the food in the cooking apparatus.

[0039] Regarding the cooking apparatus, in one embodiment, the cooking apparatus is an oven. In some other embodiments, the cooking apparatus is an air fryer.

[0040] The cooking cavity opening and closing member 13 may, for example, be a box door, a food material carrying member in the form of a drawer, a cover body with an inner cavity (the inner cavity is used to form part of the space of the cooking cavity 11), etc. In specific embodiments, the cooking apparatus can be an oven, and the cooking cavity opening and closing member 13 is a box door hinged to the box body 12. For example, the cooking apparatus can be an air fryer, and the cooking cavity opening and closing member 13 is a food material carrying member in the form of a drawer, which can be pulled out of the box body 12 and separated from the box body. For example, the cooking apparatus can be an air fryer, and the cooking cavity opening and closing member 13 is a cover body hinged to the top of the box body, the cover body has an inner cavity, and the inner cavity on the cover body and the inner cavity in the box body together form the cooking cavity after the cover body is closed.

[0041] Regarding the temperature probe 3, in one embodiment, the temperature probe 3 is a wireless probe. The wireless probe can be powered by a rechargeable battery or a replaceable dry battery. One end of the temperature probe 3 is a temperature measurement end, and the other end is a handheld operation end. Usually, the temperature measurement end is a pointed end.

[0042] It should be noted that, since the temperature probe 3 of the present application can be taken out of the storage box 2, the use mode is set according to user demand, for example, the temperature probe 3 can be placed in the cooking box 1 and inserted into the cooked food, for example, when the user needs to measure the temperature of the air in the cooking box 1, the temperature probe 3 can also be placed in the cooking box 1 without being inserted into the food.

[0043] In one embodiment, please refer to Figure 3The handle 14 has a mounting groove 141, the receiving box 2 is detachably mounted in the mounting groove 141, and the outer surface of the receiving box 2 and the outer surface of the handle 14 are smoothly connected. In this way, the receiving box 2 is not easy to be knocked, and the connection between the receiving box 2 and the handle 14 is more reliable. Of course, in some other embodiments, the receiving box 2 can also be mounted on the outer surface of the handle 14.

[0044] It should be noted that the "smooth transition of the outer surface of the receiving box 2 and the outer surface of the handle 14" described in the present application includes the case where the outer surface of the receiving box 2 is flush with the outer surface of the handle 14 (see Figure 3 ), and also includes the case where at least part of the outer surface of the receiving box 2 is lower than or protrudes from the outer surface of the handle 14, but at the junction of the receiving box 2 and the handle 14, the outer surface of the receiving box 2 and the outer surface of the handle 14 are smoothly connected by a rounded corner.

[0045] Further, regarding the orientation of the mounting groove 141, in one embodiment, please refer to Figure 3 , the mounting groove 141 has a mounting opening for the receiving box 2 to enter, and in the closed state of the cooking cavity opening and closing member 13, the mounting opening faces the front side. In another embodiment, please refer to Figure 7 , in the closed state of the cooking cavity opening and closing member 13, the handle 14 extends left and right, and the mounting opening of the mounting groove 141 faces the upper side or the lower side. In another embodiment, in the closed state of the cooking cavity opening and closing member 13, the handle 14 extends up and down, and the mounting opening of the mounting groove 141 faces the left side or the right side. Of course, in some other embodiments, the mounting groove 141 can also have two or more mounting openings at the same time, at which time any one of the mounting openings can be selected to load the receiving box 2 as needed.

[0046] In one embodiment, please refer to Figure 1 , the mounting groove 141 is a through groove that penetrates the handle. In one embodiment, please refer to Figure 1 , the handle extends horizontally, and the mounting groove 141 penetrates the handle up and down. Of course, in one embodiment, please refer to Figure 7 , the mounting groove 141 can also horizontally penetrate the handle. Of course, in some other embodiments, the mounting groove 141 can also not be a through groove, at which time the mounting groove 141 only has one slot.

[0047] In some other embodiments not shown, the storage box 2 can also be hidden, for example, the handle 14 includes a cover, which is openably covered at the opening of the mounting groove 141, and when the cover is closed, it can cover the storage box 2, and when it is opened, it can take out the storage box 2. By covering the storage box 2 with the cover, the temperature probe 3 can be protected. The cover can effectively shield the temperature probe 3, prevent external substances from contaminating the temperature probe 3, and improve its service life, while also reducing the influence of the external environment on the temperature probe 3 and enhancing the safety of the temperature probe 3. In the oven, air fryer and other cooking equipment, the cover design can be optimized according to the appearance and function of the equipment, so that it is convenient to use, and will not affect the appearance of the equipment. Regarding the structure of the cover, in one embodiment, the cover is a flip cover hinged to the handle 14. In another embodiment, the cover is fixed to the handle 14 by a buckle, and after the cover is opened, it can be separated from the handle 14.

[0048] In some other embodiments, in addition to using the mounting groove 141, a jack can also be provided on the handle 14, and the storage box 2 is inserted into the jack.

[0049] Regarding the detachable installation method of the storage box 2 and the handle 14, in one embodiment, please refer to Figure 3 The storage box 2 is fixed on the handle 14 by magnetic attraction. Specifically, the storage box 2 includes a storage box magnetic member 24, which can be attracted to the handle 14 to fix the storage box 2 to the handle 14. When it is necessary to remove the storage box 2, it can be taken off the handle 14 by force. In one embodiment, please refer to Figure 3 The handle 14 also includes a handle magnetic member 15, which is attracted to the storage box magnetic member 24 to magnetically fix the storage box 2. In one embodiment, please refer to Figure 3 The handle magnetic member 15 and the storage box magnetic member 24 are both magnets. In some other embodiments, only the handle magnetic member 15 can be provided in the handle 14 to attract the storage box 2.

[0050] In addition to the magnetic attraction fixing method, in one embodiment not shown, the storage box 2 is fixed to the handle 14 by a buckle. Of course, in another embodiment, the cover described in the above embodiments can also be used to hold the storage box 2 in place, and in order to make the storage box 2 more stable, the cover can exert a certain pressure on the storage box 2 after being covered, which can also achieve the detachable installation of the storage box 2 and the handle 14.

[0051] Regarding the installation method of the storage box magnetic member 24, in one embodiment, please refer to Figures 3 to 6The storage box 2 comprises a first box body 25 and a second box body 26, the second box body 26 is clamped and fixed with the first box body 25, and the storage box magnetic piece 24 is clamped between the first box body 25 and the second box body 26. In some other embodiments, the storage box magnetic piece 24 can also be adhered in the storage box 2.

[0052] Regarding the detachable mounting mode of the temperature measuring probe 3 and the storage box 2, in an embodiment, please refer to Figures 4 to 6 The storage box 2 has a storage box slot 23, and the temperature measuring probe 3 is mounted in the storage box slot 23. In an embodiment, please refer to Figures 4 to 6 The storage box slot 23 has a buckle 27, and the temperature measuring probe 3 is clamped in the storage box slot 23. In some other embodiments, in addition to the clamping mode, the temperature measuring probe 3 can also be detachably fixed with the storage box 2 by magnetic attraction.

[0053] Specifically, in an embodiment, please refer to Figures 4 to 6 The second box body 26 is clamped in the first box body 25, and the storage box slot 23 is on the second box body 26. In order to stably mount the temperature measuring probe 3 in the storage box slot 23, in an embodiment, please refer to Figure 5 and Figure 6 The box wall of the second box body 26 has a perforation 261 for the needle 32 of the temperature measuring probe 3 to pass through, so that after the temperature measuring probe 3 is mounted into the storage box slot 23, it is more stable under the limiting action of the perforation 261 and is less likely to fall out of the storage box slot 23. When the temperature measuring probe 3 needs to be taken out, the needle handle of the temperature measuring probe 3 is forced outward to make the temperature measuring probe 3 tilt, and then the needle 32 of the temperature measuring probe 3 is pulled out of the perforation 261.

[0054] In some other embodiments, protective structures can also be added in the storage box slot 23 to improve the dustproof and anti-vibration performance of the temperature measuring probe 3, and further improve the service life of the temperature measuring probe 3.

[0055] In an embodiment, please refer to Figures 3 to 6 The temperature measuring probe 3 is a wireless probe, and the temperature measuring probe 3 comprises a probe charging piece 31 and a probe battery (not shown in the figure). The cooking device comprises a charging module 4, the charging module 4 is in the handle 14, and the charging module 4 is used to be electrically connected with the probe charging piece 31 after the temperature measuring probe 3 is mounted into the storage box 2 and the storage box 2 is mounted on the handle 14, so as to be able to charge the temperature measuring probe 3. The charging module 4 is arranged in the handle 14 to facilitate charging the temperature measuring probe 3 while storing the temperature measuring probe 3.

[0056] Regarding the charging mode of the temperature measuring probe 3 on the handle 14, in an embodiment, please refer to Figure 3The charging module 4 and the probe charging member 31 are in contact electric connection. Specifically, the charging module 4 comprises a charging contact member 41, which is used to make electric contact with the probe charging member 31 to realize the electric connection between the charging module 4 and the probe charging member 31.

[0057] Further, referring to Figure 3 and Figure 4 , the storage box 2 has a box opening 21 for putting in and taking out the temperature measuring probe 3. After the storage box 2 is installed on the handle 14, the box opening 21 faces the handle 14, and the charging contact member 41 extends into the storage box 2 through the box opening 21 to make electric contact with the probe charging member 31. In this way, after the storage box 2 is installed on the handle 14, the box opening 21 is shielded by the handle 14, and it is not easy to enter dust and other sundries. In addition, the charging contact member 41 extends into the storage box 2 through the box opening 21, which fully utilizes the structure of the storage box 2, so that the storage box 2 does not need to additionally and separately open a jack for the charging contact member 41 to extend into. Of course, in some other embodiments, a contact member jack for the charging contact member 41 to extend into the storage box 2 can also be additionally and separately opened.

[0058] In some other embodiments not shown, the storage box 2 comprises a box body and a box cover, the box opening 21 is on the box body, the temperature measuring probe 3 is loaded into and taken out of the box body through the box opening 21, and the box cover covers the box opening 21. At this time, the box opening 21 can face away from the cooking box 1, and the contact member jack for the charging contact member 41 to extend into the storage box 2 is on the box body. According to actual needs, the temperature measuring probe 3 can be taken out only by opening the box cover, and the box body can be left on the cooking box 1. Of course, when the box body needs to be removed, the box body can also be removed from the cooking box 1.

[0059] In order to facilitate the temperature measuring probe 3 to be taken out of the storage box 2, in one embodiment, referring to Figure 4 and Figure 6 , the box side wall of the storage box 2 has a needle taking gap 22 which is through the box opening 21. Specifically, the needle taking gap 22 is on the groove side wall of the storage box groove 23. In some other embodiments, a special-shaped storage box groove 23 can also be arranged in the storage box 2. After the temperature measuring probe 3 is loaded into the storage box groove 23 of the storage box 2, operation spaces for taking out the temperature measuring probe 3 are left on both sides of the temperature measuring probe 3.

[0060] The charging contact member 41 and the probe charging member 31 can adopt various forms of electric contact:

[0061] For example, in one embodiment, referring to Figures 3 to 6 , in order to facilitate the electric contact between the probe charging member 31 and the charging contact member 41, the surface of the probe charging member 31 which contacts the charging contact member 41 is an annular surface. In one embodiment, referring to Figure 3, the charging contact 41 is a conductive contact finger. Specifically, in an embodiment not shown, the conductive contact finger can be a spring contact finger, through which the probe charging member 31 can be pressed to achieve reliable electrical connection between the charging contact 41 and the probe charging member 31. In an embodiment not shown, the charging contact 41 is a conductive ring.

[0062] For another example, in an embodiment not shown, the probe charging member 31 can also be conductively plugged with the charging contact 41, one of the probe charging member 31 and the charging contact 41 has a socket, and the other has a plug for inserting into the socket, and after the plug is plugged into the socket, the probe charging member 31 and the charging contact 41 are conductively connected.

[0063] Regarding the specific structure of the probe charging member 31, in an embodiment, please refer to Figure 3 and Figure 6 The probe charging member 31 includes a probe positive electrode 311 and a probe negative electrode 312. In order to facilitate the conductive contact between the probe charging member 31 and the charging contact 41, the probe positive electrode 311 and the probe negative electrode 312 are arranged at intervals along the length direction of the temperature probe 3. The probe positive electrode 311 and the probe negative electrode 312 form a positive electrode segment and a negative electrode segment in the length direction of the temperature probe 3, respectively. The outer peripheral surface of the probe positive electrode 311 is exposed and forms the outer peripheral cylindrical surface of the positive electrode segment, and the outer peripheral surface of the probe negative electrode 312 is exposed and forms the outer peripheral cylindrical surface of the negative electrode segment. In this way, no matter which side of the temperature probe 3 is inserted into the slot 23 of the receiving box, it can be conveniently and conductively contacted with the charging contact 41.

[0064] In an embodiment, please refer to Figure 3 The charging module 4 includes a circuit board 42 mounted on the cooking box 1, and the charging contact 41 is connected with the circuit board 42. In an embodiment, please refer to Figure 3 The number of charging contacts 41 is three, one of which is in conductive contact with the probe positive electrode 311, and the other two are in contact with the probe negative electrode 312.

[0065] In addition to the contact charging mode, the charging module 4 and the probe charging member 31 can also adopt a wireless electrical connection. In an embodiment not shown, the charging module 4 is a wireless charging module 4, and the probe charging member 31 is configured to wirelessly connect with the wireless charging module 4 to enable wireless charging of the temperature probe 3. With the wireless charging mode, the user only needs to place the temperature probe 3 in the charging area of the handle, without plugging or unplugging any charging contacts, greatly improving the convenience of use. This design can effectively reduce the wear and tear of the plug-in interface, and improve the service life of the temperature probe 3. In an embodiment not shown, the probe charging member 31 is a probe charging coil connected with the probe battery. The charging module 4 includes a handle charging coil, and the electromagnetic induction between the handle charging coil and the probe charging coil enables charging of the probe battery.

[0066] In addition to arranging the charging module 4 on the handle 14, in an embodiment not shown, the charging module 4 is arranged in the storage box 2, and the charging module 4 is configured to conductively connect with the probe charging member 31 to enable the charging module 4 to charge the probe battery. The storage box 2 has a charging interface 28 electrically connected with the charging module 4. The box body 12 has a power supply interface 121 for conducting with the power supply system, and the charging interface 28 is configured to conduct with the power supply interface 121 through an external charging wire.

[0067] Of course, in some other embodiments, the cooking device can also include a handle power supply module arranged in the handle 14, which is connected with the power supply system in the box body 12 through a wire. The handle power supply module and the charging module 4 are in conductive contact when the storage box 2 is installed to the handle 14.

[0068] It should be noted that when the conductive element needs to be arranged on the handle 14, the conductive element on the handle 14 needs to be connected with the power supply system in the box body 12 through a wire. For the case where the box body 12 and the cooking cavity opening and closing member 13 are movably connected, such as the cooking cavity opening and closing member 13 being hinged to the box body 12, the wire can pass through the handle 14, the cooking cavity opening and closing member 13, the hinge between the cooking cavity opening and closing member 13 and the box body 12, and then be connected to the power supply system in the box body 12. Of course, the wire can also extend from the handle 14 and be directly connected to the power supply system in the box body 12. For the case where the box body 12 and the cooking cavity opening and closing member 13 are separable, a conductive structure needs to be arranged between the box body 12 and the cooking cavity opening and closing member 13, such as a plug being arranged on one of the box body 12 and the cooking cavity opening and closing member 13, and a socket being arranged on the other. When the cooking cavity opening and closing member 13 is closed, the plug and the socket are in conductive connection. When the cooking cavity opening and closing member 13 is opened, the plug and the socket are separated. Therefore, in this case, the temperature probe 3 can only be charged when the cooking cavity opening and closing member 13 is closed.

[0069] In some other embodiments, the temperature probe 3 can also be provided with a charging port, and the temperature probe 3 can be charged by using an additionally configured charger or by using a charging wire to connect the temperature probe 3 with the power supply system of the box 12.

[0070] In an embodiment, the cooking box 1 comprises a control module for controlling the temperature in the cooking box 1, and the control module is in wireless communication connection with the temperature probe 3 so as to be capable of receiving the measurement data of the temperature probe 3. According to the measurement data of the temperature probe 3, the control module is capable of controlling the cooking temperature in the cooking box 1 to be in a target range. When the measured temperature of the temperature probe 3 is higher than the target temperature, the control module is capable of controlling the cooking box 1 to be cooled down, and when the measured temperature of the temperature probe 3 is lower than the target temperature, the control module is capable of controlling the cooking box 1 to be heated up. Since the temperature probe 3 is used to be inserted into the cooking food to measure the accurate temperature in the food, the accurate temperature control can be realized by the temperature probe 3, and especially for the food such as beef, the cooking effect is better compared with the traditional oven due to the accurate temperature control of the temperature probe 3.

[0071] Specifically, in an embodiment, the cooking box 1 comprises a heating member, and the control module is connected with the heating circuit of the heating member, and the control module is capable of controlling the heating power of the heating member and the start and stop of the heating member, so as to control the cooking temperature of the cooking box 1.

[0072] In an embodiment, the control module comprises a signal receiving module in wireless communication connection with the temperature probe 3, and the signal receiving module is used to receive the temperature information measured by the temperature probe 3. In an embodiment, please refer to Figure 1 , the control module comprises a control panel 5, and the target temperature of the cooking box 1 can be set through the control panel 5. In an embodiment, when the temperature probe 3 is charging, the control panel 5 can display the charging capacity of the temperature probe 3.

[0073] In addition to the above-mentioned embodiments, in an embodiment not shown, the temperature probe 3 can also be directly installed on the handle 14. In this embodiment, the structure of the box 12 of the cooking box 1 and the cooking cavity opening and closing member 13 can be the same as any one of the structures described above, and will not be described again. Hereinafter, the differences from the structures in the above-mentioned embodiments will be mainly introduced.

[0074] The handle 14 comprises a storage connecting structure, and the temperature probe 3 is detachably connected with the storage connecting structure, so that the temperature probe 3 can be taken off for temperature measurement. In the state that the temperature probe 3 is stored in the storage connecting structure, the temperature measurement end of the temperature probe 3 is outside the cooking cavity 11. In this way, after the temperature measurement is completed by using the temperature probe 3, the temperature probe 3 can be directly stored on the handle 14. When the temperature measurement is performed by using the temperature probe, the temperature measurement end of the temperature probe 3 is inserted into the food or placed in the to-be-measured position.

[0075] In an embodiment not shown, the receiving connection structure has a receiving groove, and the temperature probe 3 is detachably installed in the receiving groove. The receiving groove facilitates the receiving of the temperature probe 3, and after the temperature probe 3 is received in the receiving groove, the temperature probe 3 is not easily touched, and the connection between the temperature probe 3 and the handle 14 is more reliable.

[0076] There are various feasible ways for the receiving connection structure, such as the receiving connection structure is a magnetic attraction member, and the temperature probe 3 is fixed by being attracted by the magnetic attraction member; or the receiving connection structure is a buckle, and the temperature probe 3 is fixed by being clamped on the handle 14.

[0077] In an embodiment, the temperature probe 3 is directly installed on the handle 14, and can also be a wireless probe, and the cooking box 1 includes a control module for controlling the temperature in the cooking box 1, and the control module is wirelessly connected with the wireless probe to be able to receive the measurement data of the wireless probe. In an embodiment, the temperature probe 3 can be charged by the charging module 4 arranged in the handle 14, or can be powered by replaceable dry batteries. In some other embodiments, the temperature probe 3 can also be provided with a charging port, and when charging is needed, the temperature probe 3 is charged by connecting the power supply system in the box body 12 to the temperature probe 3 through an external charging line.

[0078] It should be noted that the wireless probe described in the present application refers to a probe that can be used independently, and can work without being connected to a power supply line. In some embodiments, the wireless probe is provided with a wireless communication element in addition to not needing to be connected to an element for supplying power, and at this time, the wireless probe has the condition of being able to wirelessly communicate with other devices, and the other devices can be a control module in the cooking box, or a mobile terminal of a user.

[0079] The above application of specific examples is used to illustrate the present application, and is only used to help understand the present application, and does not limit the present application. According to the idea of the present application, those skilled in the art can make several simple deductions, modifications or substitutions.

Claims

1. A cooking device, characterized in that, include: A cooking box, comprising a box body, a cooking chamber opening and closing component, and a handle located on the cooking chamber opening and closing component, wherein the box body and the cooking chamber opening and closing component form a cooking chamber for cooking food; The handle is used to operate the opening and closing mechanism of the cooking cavity. A storage box, which is detachably mounted on the handle; And a temperature probe, which is detachably installed in the storage box so that it can be removed for temperature measurement.

2. The cooking apparatus as described in claim 1, characterized in that, The handle has a mounting groove, and the storage box is detachably installed in the mounting groove. The outer surface of the storage box smoothly transitions with the outer surface of the handle.

3. The cooking apparatus as described in claim 1, characterized in that, The handle has a mounting groove, and the storage box is detachably installed in the mounting groove. The handle includes a groove cover, which can be opened to cover the opening of the mounting groove. When the groove cover is closed, it can cover the storage box, and when it is opened, it allows the storage box to be taken out.

4. The cooking apparatus according to any one of claims 1-3, characterized in that, The temperature probe is a wireless probe. The cooking device includes a charging module located in the handle. The temperature probe includes a probe charging component and a probe battery. The charging module is used to electrically connect with the probe charging component after the temperature probe is inserted into the storage box and the storage box is installed on the handle, so as to charge the temperature probe.

5. The cooking apparatus as described in claim 4, characterized in that, The charging module includes a charging contact; the charging contact is used to make conductive contact with the probe charging element to achieve electrical connection between the charging module and the probe charging element.

6. The cooking apparatus as described in claim 5, characterized in that, The storage box has an opening for taking out and placing the temperature measuring probe. After the storage box is installed on the handle, the opening faces the handle. The charging contact extends into the storage box through the opening and makes conductive contact with the probe charging component.

7. The cooking apparatus according to any one of claims 1-3, characterized in that, The cooking device includes a charging module housed in the storage box. The temperature probe includes a probe charging element and a probe battery electrically connected to the probe charging element. The charging module is electrically connected to the probe charging element to charge the probe battery. The storage box has a charging interface electrically connected to the charging module. The housing has a power supply interface for connection to a power source, and the charging interface is connected to the power supply interface via an external charging cable.

8. A cooking device, characterized in that, include: A cooking box, comprising a box body, a cooking chamber opening and closing component, and a handle located on the cooking chamber opening and closing component, wherein the box body and the cooking chamber opening and closing component form a cooking chamber for cooking food; The handle is used to operate the opening and closing mechanism of the cooking cavity. The handle includes a storage connection structure, and the temperature probe is detachably connected to the storage connection structure so that the temperature probe can be removed for temperature measurement. When the temperature probe is stored in the storage connection structure, the temperature measuring end of the temperature probe is outside the cooking cavity.

9. The cooking apparatus as described in claim 8, characterized in that, The storage connection structure has a storage slot, and the temperature probe can be detachably installed in the storage slot.

10. The cooking apparatus as described in claim 1 or 8, characterized in that, The temperature probe is a wireless probe, and the cooking oven includes a control module for controlling the temperature inside the cooking oven. The control module is wirelessly connected to the temperature probe so as to receive the measurement data from the temperature probe.