Charging seat of food temperature probe and food thermometer system

By setting a detachable connection structure on the food temperature probe charging base, multiple charging bases can be combined into one whole, solving the problem of single function of the existing charging base and limited number of probes, achieving portability and transportation convenience.

CN223154389UActive Publication Date: 2025-07-25SHENZHEN XIANGMINGRUI TECH CO LTD
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Patent Information

Application Number
CN202422373090.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-28
Publication Date
2025-07-25
Estimated Expiration
2034-09-28

AI Technical Summary

Technical Problem

The existing food temperature probe charging stand has a single function and a limited number of temperature probes to carry, making it inconvenient to carry when multiple pieces of meat are needed to be baked at the same time and is not conducive to transportation and packaging.

Method used

A charging base for food temperature probe is designed. By setting a detachable connection structure on the base, multiple charging bases can be combined into a whole, increasing the number of probes, and convenient connection and disassembly through magnetic suction parts or convex structures.

Benefits of technology

It realizes flexibility and portability when baking multiple pieces of meat products, meets the needs of multiple probes, and is convenient for transportation and packaging, improving user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of food thermometers, in particular to a charging seat of a food temperature probe and a food thermometer system, which comprise a base and an electric control assembly, the electric control assembly is arranged in the base, and one side of the base is provided with a first detachable connecting structure; the first detachable connection structure enables the charging seat of one food temperature probe and the charging seat of the other food temperature probe to be spliced into a whole, when the charging seats do not need to be spliced into a whole, the charging seats can be flexibly disassembled into two independent individuals, and the problems that an existing charging seat of the food temperature probe is single in function and inconvenient to use are effectively solved. In the prior art, the number of temperature probes capable of being carried is limited, and if a large number of temperature probes are carried, the size of the charging seat is bound to be large, so that the transportation and the packaging of the charging seat are not facilitated.
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Description

Technical Field

[0001] The utility model relates to the technical field of food thermometers, in particular to a charging base for a food temperature probe and a food thermometer system. Background Technique

[0002] During the barbecue process, it is crucial to accurately master the internal temperature of the meat. If the temperature is not reached, there may be bacteria in the meat, which is unhygienic, and over-roasting will affect the taste. For example, the US Department of Agriculture recommends that the cooking temperature of steaks, lamb chops and barbecued meat should reach at least 63 degrees Celsius. Therefore, a thermometer that can measure temperature more accurately and quickly is needed to ensure the food safety and taste of the barbecue.

[0003] Traditional barbecue thermometers mostly have a single temperature measurement probe. The use method of traditional barbecue thermometers brings many inconveniences to people. During the barbecue process, the temperature measurement probe is prone to situations such as being unable to be stored, being easily lost, and being inconvenient to carry.

[0004] In this regard, the publication number is CN 221508618 U, and the name is a storage device for a food temperature probe, including: an upper housing, a bottom case and a PCB circuit board. The PCB circuit board is arranged between the upper housing and the bottom case. The bottom case is provided with a first window, and the upper housing is provided with a second window. The positions of the first window and the second window are correspondingly arranged. The PCB circuit board is provided with an avoidance window at a position corresponding to the second window; one or more probe receiving grooves are arranged on the upper housing, and the probe receiving grooves are connected to the second window; the food temperature probe is detachably arranged in the probe receiving grooves and the second window. The utility model can realize the quick insertion and removal of the food temperature probe through the probe receiving groove and window structure, and realizes the quick and simple storage of the food temperature probe.

[0005] Although this technical solution has progress, there are still some problems. For example, the storage device for the food temperature probe has a relatively single function, and the number of temperature probes it can carry is limited. When facing a barbecue party, multiple pieces of barbecue need to be roasted at the same time. Therefore, a larger number of temperature probes are required.

[0006] Therefore, the above technical problems need to be solved. Content of the Utility Model

[0007] In order to overcome the deficiencies of the prior art, the utility model provides a charging base for a food temperature probe and a food thermometer system, aiming to solve the technical problems that the existing charging base for a food temperature probe has a relatively single function and the number of temperature probes it can carry is limited. If a large number of problem probes are carried, it is necessary to make the volume of the charging base relatively large, which is not conducive to the transportation and packaging of the charging base.

[0008] To solve the above technical problems, the basic technical solution proposed by the present utility model is as follows:

[0009] A charging base for a food temperature probe, comprising a base, and further comprising an electric control component, wherein the electric control component is arranged inside the base, and one side of the base has a first detachable connection structure; the first detachable connection structure enables the charging base of the food temperature probe to be combined with the charging base of another food temperature probe into a whole.

[0010] Furthermore, the first detachable connection structure is arranged inside or outside the base.

[0011] Furthermore, the base further has a second detachable connection structure;

[0012] The second detachable connection structure is not on the same side as the first detachable connection structure.

[0013] Furthermore, the first detachable connection structure is a positive magnetic attracting member;

[0014] The second detachable connection structure is a negative magnetic attracting member;

[0015] The positive magnetic attracting member and the negative magnetic attracting member are attracted and assembled with each other to enable the charging base of the food temperature probe to be combined with the charging base of another food temperature probe into a whole.

[0016] Furthermore, the first detachable connection structure is a convex member;

[0017] The second detachable connection structure is a concave member;

[0018] The convex member is inserted into the concave member to enable the charging base of the food temperature probe to be combined with the charging base of another food temperature probe into a whole.

[0019] Furthermore, it further comprises a third detachable connection structure and a fourth detachable connection structure;

[0020] The third detachable connection structure is a convex member extending from one side of the base;

[0021] The fourth detachable connection structure is a groove recessed inward from one side of the base;

[0022] The third detachable connection structure is on the same side as the first detachable connection structure;

[0023] The fourth detachable connection structure is on the same side as the second detachable connection structure.

[0024] Furthermore, the base has a first window;

[0025] On one side of the first window, a second window is connected along the length direction of the charging base of the food temperature probe.

[0026] At least one temperature measurement probe is detachably arranged in the first window and the second window.

[0027] Furthermore, a positioning member is provided in the second window;

[0028] There are at least two positioning members, which are respectively arranged on the left and right sides of the second window.

[0029] Furthermore, on the side of the first window away from the second window, there is a charging contact component;

[0030] When the temperature measurement probe is arranged in the first window and the second window, the charging contact component is exactly facing the charging part of the temperature measurement probe and is electrically connected to the charging part of the temperature measurement probe.

[0031] In addition, a food thermometer system is also proposed, which includes at least one temperature measurement probe and at least one charging base of the food temperature probe as described above;

[0032] The temperature measurement probe is detachably and electrically connected to the charging base of the food temperature probe.

[0033] The beneficial effects of the present utility model are:

[0034] A charging base of a food temperature probe according to the technical solution of the present utility model includes a base and also includes an electric control component. The electric control component is arranged inside the base. One side of the base has a first detachable connection structure; the first detachable connection structure enables the charging base of the food temperature probe to be combined with another charging base of the food temperature probe into a whole. The charging base of the food temperature probe in the technical solution of the present utility model has rich functions and can be combined with another charging base of the food temperature probe to meet the problem that when facing a barbecue party, multiple pieces of barbecue need to be roasted simultaneously, so more temperature probes are required. Moreover, it has the characteristics of being flexible, portable and having rich functions. Description of the Drawings

[0035] Figure 1 It is the overall structure diagram of the first embodiment of the present utility model;

[0036] Figure 2 It is the explosion diagram of the first embodiment of the present utility model;

[0037] Figure 3 It is the upper shell structure diagram of the first embodiment of the present utility model;

[0038] Figure 4Structural diagram of assembling multiple temperature probes of the present utility model;

[0039] Figure 5 First detachable connection structural diagram of the present utility model;

[0040] Figure 6 Second detachable connection structural diagram of the present utility model;

[0041] Figure 7 Another perspective view of the second detachable connection structure of the present utility model;

[0042] Figure 8 Third and fourth detachable connection structural diagrams of the present utility model;

[0043] Explanation of reference numerals:

[0044] 1 - Base, 11 - Upper shell, 12 - Lower shell, 13 - First window, 14 - Second window, 15 - Positioning member, 16 - Charging contact component, 17 - Display screen, 18 - Assembly space, 2 - Electric control component, 21 - Circuit board, 22 - Battery, 3 - First detachable connection structure, 31A - Positive magnetic attracting member, 31B - Convex member, 311B - Guiding surface, 4 - Second detachable connection structure, 41A - Negative magnetic attracting member, 41B - Concave member, 411B - Guiding angle, 5 - Third detachable connection structure, 51 - Convex part, 6 - Fourth detachable connection structure, 61 - Groove, 7 - Temperature measuring probe, 71 - Charging part. Detailed implementation manners

[0045] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the appended Figure 1 to the appended Figure 8 Drawings. It is obvious that the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments in the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0046] It should be noted that if there is a direction involved in the embodiments of the present utility model, it shall be subject to that shown in the drawings. If a specific posture changes, the directional indication shall also change accordingly.

[0047] During the process of roasting meat, it is crucial to accurately master the internal temperature of the meat. If the temperature is not reached, there may be bacteria in the meat, which is unhygienic. And over-roasting will affect the taste. For example, the United States Department of Agriculture recommends that the cooking temperature of steaks, lamb chops and roasted meat should reach at least 63 degrees Celsius. Therefore, a thermometer that can measure temperature more accurately and quickly is needed to ensure the food safety and taste of roasted meat.

[0048] However, the existing barbecue thermometers have relatively single functions and limited numbers of temperature measurement probes. Especially when multiple pieces of meat products need to be roasted, the temperature measurement probes are usually insufficient, affecting the user experience. However, carrying multiple temperature measurement probes is not convenient.

[0049] In response to this, the present inventor provides a charging base for a food temperature probe, aiming to be able to combine multiple charging bases of this kind of food temperature probe, so as to solve the problems of inconvenient carrying and single function of the barbecue thermometer in actual use scenarios.

[0050] As Figure 1 shown, it is an example diagram of a charging base 100 of a food temperature probe of the present technical solution and another charging base 200 of a food temperature probe combined together.

[0051] When in use, the user can combine multiple charging bases of the food temperature probe together for convenient carrying.

[0052] Also as Figure 2 shown, a charging base 100 of a food temperature probe of the present technical solution includes a base 1. The base 1 includes an upper shell 11 and a lower shell 12. The interiors of the upper shell 11 and the lower shell 12 are both hollow structures. When the upper shell 11 is buckled above the lower shell 12, the upper shell 11 and the lower shell 12 enclose an internally hollow assembly space 18.

[0053] The assembly space 18 is equipped with an electronic control component 2. The electronic control component 2 includes a circuit board 21 and a battery 22 electrically connected to the circuit board 21, etc. The electronic control component 2 controls the normal operation of various functions of the charging base 100 of the food temperature probe.

[0054] The upper shell 11 is dug with a first window 13 from its surface. One side of the first window 13 away from the second window 14 has a charging contact part 16. The charging contact part 16 is electrically connected to the electronic control component 2 and is controlled by the circuit board 21. The other side of the first window 13 away from the side where the charging contact part 16 is arranged is connected to a second window 14. The second window 14 extends along the length direction of the base 1 until it is close to the end of the base 1 in the length direction.

[0055] At least one temperature measurement probe 7 is detachably arranged in the first window 13 and the second window 14.

[0056] The top of the temperature measuring probe 7 has a charging part 71. When the temperature measuring probe 7 is horizontally placed in the first window 13 and the second window 14, the charging contact member 16 exactly faces the charging part 71 of the temperature measuring probe. The charging part 71 presses against the charging contact member 16 and makes electrical connection with the charging contact member 16, so that the temperature measuring probe 7 can obtain power from the charging contact member 16.

[0057] In addition, as Figure 3 shown, the second window 14 also has a positioning member 15. The positioning member 15 is used to fix the temperature probe 7 in the second window 14 to prevent the temperature probe 7 from slipping out of the second window 14.

[0058] The positioning member 15 includes a clamping member 151 and a limiting groove 152. The limiting groove 152 is formed by extending and recessing from one side surface of the second window 14 to its side surface. The bottom of the clamping member 151 is fixedly arranged at the bottom of the second window 14. The top of the clamping member 151 extends towards the limiting groove 152. When the clamping member 151 is stressed, the top of the clamping member 151 moves towards the direction of the limiting groove 152, that is, it changes from the first position to the second position. When the clamping member 151 is not stressed, the top of the clamping member 151 will return to the first position. It should be understood that the clamping member 151 realizes the detachable assembly of the temperature measuring probe 7 in the second window 14 through its position change.

[0059] Preferably, there are at least two positioning members 15 and they are respectively arranged on the left and right sides of the second window 14.

[0060] When the temperature measuring probe 7 is placed in the second window 14, the positioning members 15 on the left and right sides can clamp and fix the temperature measuring probe 7 placed therein, so as to better prevent the temperature measuring head 7 from falling out during the transportation of the charging base of the food temperature probe.

[0061] In the actual use process, the positioning member 15 can be arranged in multiple places according to actual needs. For example, two, three, etc. are arranged on the left side of the second window 14, and two, three, etc. are correspondingly arranged on the right side of the second window 14. The positioning members 15 on the left and right sides of the second window 14 include symmetric arrangement or asymmetric arrangement, and the specific arrangement method depends on the actual use situation.

[0062] In some other usage scenarios, such as Figure 4As shown, on the side of the first window 13 away from the side where the charging contact member 16 is arranged, a plurality of the second windows 14 are arranged. The plurality of the second windows 14 are arranged parallel to each other, and a plurality of the temperature measurement probes 7 can be placed in the plurality of the second windows 14.

[0063] With such a design, the charging base of the food temperature probe can place a plurality of temperature measurement probes 7 at the same time, so as to facilitate the user to perform temperature tests when roasting multiple pieces of meat.

[0064] However, the number of the temperature measurement probes 7 installed on the charger of a food temperature probe is still limited, because when too many temperature measurement probes 7 are arranged on the charger of the food temperature probe, it is bound to make the volume of the charger of the food temperature probe too large, which is not conducive to the transportation and packaging of the charger of the food temperature probe.

[0065] Therefore, in order to make the functions of the charging base of the food temperature probe more abundant, as Figure 5 shown, one side of the base 1 has a first detachable connection structure 3; the first detachable connection structure 3 enables the charging base of the food temperature probe to be combined with the charging base of another food temperature probe into a whole.

[0066] With such a design, the charging bases of different food temperature probes can be combined with each other to meet the temperature measurement when roasting multiple pieces of roasted meat, and it is also convenient for the transportation and packaging of the charging base of the food temperature probe.

[0067] Specifically, the first detachable connection structure 3 is arranged inside or outside the base 1. The specific setting position can be adjusted according to actual use needs.

[0068] Furthermore, the base 1 also has a second detachable connection structure 4; the second detachable connection structure 4 is not on the same side as the first detachable connection structure 3.

[0069] For example, it is defined that the first detachable connection structure 3 is on the right side in the length direction of the base 1, and the second detachable connection structure 4 is on the left side in the length direction of the base 1.

[0070] The setting positions of the first detachable connection structure 3 and the second detachable connection structure 4 should correspond to each other, so that when the charging base of the food temperature probe is combined with the charging base of another food temperature probe into a whole, the first detachable connection structure 3 and the second detachable connection structure 4 can be exactly aligned and connected.

[0071] Of course, the first detachable connection structure 3 can also be arranged at any position in the horizontal direction of the base 1 or at other positions of the base 1. Similarly, the same applies to the second detachable connection structure 4. As long as it is convenient to combine the charging base of this food temperature probe with the charging base of another food temperature probe into a whole, the detachable connection structure 3 and the second detachable connection structure 4 can be easily docked.

[0072] It should be understood that the first detachable connection structure 3 and the second detachable connection structure 4 are mutually cooperating components. The charging base of this food temperature probe needs to be connected and assembled or disassembled with the charging base of another food temperature probe through the mutual assembly and cooperation of the first detachable connection structure 3 and the second detachable connection structure 4.

[0073] In a preferred embodiment, as Figure 5 shown, the first detachable connection structure 3 is a positive magnetic attracting member 31A; the second detachable connection structure 4 is a negative magnetic attracting member 41A; the positive magnetic attracting member 31A and the negative magnetic attracting member 41A are mutually attracted and assembled to combine the charging base of this food temperature probe with the charging base of another food temperature probe into a whole.

[0074] Specifically, the positive magnetic attracting member 31A is a magnetic sheet, which is in a sheet-like circular or square structure. The positive magnetic attracting member 31A is arranged on one side inside the base 1. A corresponding card slot is arranged on one side of the interior of the base 1 in its length direction for assembling the positive magnetic attracting member 31A; similarly, the negative magnetic attracting member 41A is also assembled with a card slot arranged on another base. The positions of the positive magnetic attracting member 31A and the negative magnetic attracting member 41A correspond to each other. When the charging bases of two food temperature probes approach, the positive magnetic attracting member 31A and the negative magnetic attracting member 41A are mutually attracted to make the charging bases of the two food temperature probes fit together.

[0075] In another embodiment, as Figure 6 and Figure 7 shown, the first detachable connection structure 3 is a convex member 31B; the second detachable connection structure 4 is a concave member 41B; the convex member 31B is inserted into the concave member 41B to combine the charging base of this food temperature probe with the charging base of another food temperature probe into a whole.

[0076] Specifically, the convex part 31B is a block-shaped structure protruding outward from one side surface of the base 1, and the concave part 41B is a groove formed by being recessed inward from one side surface of the base 1. Of course, the convex part 31B and the concave part 41B are respectively located on the bases of different charging bases of the food temperature probes, and the positions of the convex part 31B and the concave part 41B should correspond to each other, that is, when the charging base of the food temperature probe is combined with the charging base of another food temperature probe into a whole, the convex part 31B just falls into the concave part 41B.

[0077] In this embodiment, in order to make the convex component 31B fall into the concave component 41B more accurately, the convex component 31B has a guide surface 311B, and the concave component 41B has a guide angle 411B. When the two components are assembled, the guide surface 311B drives the convex component 31B to fall into the bottom of the concave component 411B along the direction of the guide angle 411B. In this way, the two food temperature probe charging stations can be assembled accurately.

[0078] In another embodiment, the charging base of the food temperature probe further includes a third detachable connecting structure 5 and a fourth detachable connecting structure 6; the third detachable connecting structure 5 is a protrusion 51 extending from one side of the base 1; the fourth detachable connecting structure 6 is a groove 61 recessed inward from one side of the base 1; the third detachable connecting structure 5 and the first detachable connecting structure 3 are located on the same side; the fourth detachable connecting structure 6 and the second detachable connecting structure 4 are located on the same side.

[0079] That is, in this embodiment, one side of the base 1 may include a positive magnetic member 31A and a protruding member 51, and the positive magnetic member 31A and the protruding member 51 are respectively located at two ends in the length direction of the base 1. Correspondingly, the base of the charging stand of another food temperature probe is provided with the negative magnetic member 41A and the groove 61, and the negative magnetic member 41A and the groove 61 are also respectively located at two ends in the length direction of the base.

[0080] When the protrusion 51 falls into the groove 61, the positive magnetic member 31A and the negative magnetic member 41 attract each other, so that the charging bases of the two food temperature probes can be more tightly assembled together. However, when the charging bases of the two food temperature probes need to be disassembled, it is only necessary to remove the protrusion 51 from the groove 61 and separate the charging bases of the two food temperature probes in the opposite direction of the attraction between the positive magnetic member 31A and the negative magnetic member 41.

[0081] In addition, a food thermometer system is also proposed, which includes at least one temperature measurement probe and at least one charging base for the food temperature probe as described above; the temperature measurement probe is detachably electrically connected to the charging base of the food temperature probe. The detachable electrical connection manner between the temperature measurement probe and the charging base of the food temperature probe is as described above and will not be elaborated here one by one.

[0082] According to the disclosure and teaching of the above specification, those skilled in the art to which the present utility model pertains can also make changes and modifications to the above embodiments. Therefore, the present utility model is not limited to the specific embodiments disclosed and described above, and some modifications and changes to the present utility model should also fall within the protection scope of the claims of the present utility model. In addition, although some specific terms are used in this specification, these terms are only for convenience of description and do not constitute any limitation to the present utility model.

Claims

1. A charging base for a food temperature probe, comprising a base, and further comprising an electronic control component, wherein the electronic control component is disposed inside the base, and is characterized in that: One side of the base has a first detachable connection structure; The first detachable connection structure enables the charging base of the food temperature probe to be combined with the charging base of another food temperature probe into an integral whole.

2. The charging base for a food temperature probe according to claim 1, wherein: The first detachable connection structure is disposed inside or outside the base.

3. The charging base for a food temperature probe according to claim 1, wherein: The base further has a second detachable connection structure; The second detachable connection structure is not on the same side as the first detachable connection structure.

4. The charging base of a food temperature probe according to claim 3, characterized in that : The first detachable connection structure is a positive magnetic attracting member; The second detachable connection structure is a negative magnetic attracting member; The positive magnetic attracting member and the negative magnetic attracting member are attracted and assembled with each other to enable the charging base of the food temperature probe to be combined with the charging base of another food temperature probe into an integral whole.

5. The charging base for a food temperature probe according to claim 3, wherein: The first detachable connection structure is a convex member; The second detachable connection structure is a concave member; The convex member is inserted into the concave member to enable the charging base of the food temperature probe to be combined with the charging base of another food temperature probe into an integral whole.

6. The charging base for a food temperature probe according to claim 4, wherein: It further comprises a third detachable connection structure and a fourth detachable connection structure; The third detachable connection structure is a convex member extending from one side of the base; The fourth detachable connection structure is a groove recessed inward from one side of the base; The third detachable connection structure is on the same side as the first detachable connection structure; The fourth detachable connection structure is on the same side as the second detachable connection structure.

7. The charging base for a food temperature probe according to claim 1, wherein: The base has a first window; One side of the first window extends and is connected with a second window along the length direction of the charging base of the food temperature probe; At least one temperature measuring probe is detachably arranged in the first window and the second window.

8. The charging base for a food temperature probe according to claim 7, wherein: The second window has positioning members; There are at least two positioning members, which are respectively arranged on the left and right sides of the second window.

9. The charging base for a food temperature probe according to claim 7, wherein: One side of the first window away from the second window has a charging contact component; When the temperature measuring probe is arranged in the first window and the second window, the charging contact component is exactly facing the charging part of the temperature measuring probe and is electrically connected to the charging part of the temperature measuring probe.

10. A food thermometer system, characterized in that: It comprises at least one temperature measuring probe and at least one charging base for a food temperature probe according to any one of claims 1-9; The temperature measurement probe is detachably electrically connected to the charging base of the food temperature probe.

Citation Information

Patent Citations

  • Storage device for food temperature probe

    CN221508618U