Induction type pot temperature probe with anti-impact floating structure

By introducing an impact-resistant floating structure into the inductive pot temperature probe and using compression springs and side covers for buffering and protection, the problem of easy damage to the pot temperature probe is solved, and the stability and convenience are improved.

CN223883083UActive Publication Date: 2026-02-06GUANGZHOU HUIYUAN ELECTRONICS CO LTD
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Patent Information

Application Number
CN202520577097.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-28
Publication Date
2026-02-06
Estimated Expiration
2035-03-28

AI Technical Summary

Technical Problem

Inductive pot temperature probes are easily damaged by impacts from the outside of the pot during use, lack impact-resistant floating protection, which affects the stability of use and the convenience of maintenance.

Method used

The structure employs an impact-resistant floating design consisting of a mounting base plate, probe housing, connecting ring, compression spring, and other components. The compression spring provides cushioning and impact resistance, while the side covers and connecting bolts provide external protection. The top cover can be easily disassembled for convenient maintenance.

Benefits of technology

It achieves impact-resistant floating protection for the boiler temperature probe, improves operational stability, reduces damage to internal components, and facilitates maintenance operations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of cooking tools, and discloses an induction type pot temperature probe with an anti-impact floating structure, which comprises a mounting bottom plate, a probe shell is arranged at the top end of the mounting bottom plate, a top cover is arranged at the top end of the probe shell, a first connecting ring is fixed on the outer side of the probe shell, and a second connecting ring is fixed on the outer side of the probe shell. A second connecting ring is fixed to the top end of the mounting bottom plate. When the induction type pot temperature probe with the anti-impact floating structure is installed and used, compression springs are installed between the probe installation assembly and the probe assembly, the probe is of an up-and-down floating structure, and when the outer side of a pot is impacted after the probe is installed in the pot and used, the probe can float up and down. The compression spring can be used for carrying out auxiliary buffering and impact resistance on the probe assembly, vibration damage to components in the probe body is reduced, the installation and use stability of the pot temperature probe is improved, and the problem that a fixedly-installed pot temperature probe assembly is prone to being collided and damaged is solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cooking tool technical field, concretely is a kind of inductive pot temperature probe with anti-impact floating structure. BACKGROUND

[0002] Inductive pot temperature probe is a kind of equipment for measuring temperature, usually by sensitive element and measurement circuit composition. Its core component includes thermocouple, thermal resistance or semiconductor etc. sensitive element, utilizes sensing element and can convert temperature change into electric signal, then through measurement circuit amplification, filtering and conversion etc. processing, finally output proportional electric signal with temperature, widely used in some cooking utensil products.

[0003] But inductive pot temperature probe in actual installation use process, pot temperature probe assembly is generally directly installed and fixed in cooking pot inside, is integrated with pot, when being impacted outside pot during use, impact force will be simultaneously transferred to probe, and some invisible damage of probe internal component is easily caused, affect later use stability, there is deficiency, not have the measure of anti-impact floating protection to pot temperature probe.

[0004] Now, a new type of inductive pot temperature probe with anti-impact floating structure is proposed to solve the above-mentioned deficiencies. UTILITY MODEL CONTENTS

[0005] The utility model aims at providing a kind of inductive pot temperature probe with anti-impact floating structure to solve the problem that fixed installation type pot temperature probe assembly is easily damaged by collision in the background art.

[0006] To achieve the above object, the utility model provides the following technical scheme: a kind of inductive pot temperature probe with anti-impact floating structure, including installation bottom plate, the top of installation bottom plate is provided with probe shell, and the top of probe shell is provided with top cover, the outside of probe shell is fixed with connecting ring one, the top of installation bottom plate is fixed with connecting ring two, and the top of connecting ring two is fixed with compression spring, the inside of installation bottom plate is provided with through slot.

[0007] As a further technical scheme of the utility model, the bottom of probe shell penetrates the inside of connecting ring one, and the through slot penetrates the inside of installation bottom plate.

[0008] As a further technical scheme of the utility model, the top of compression spring is fixedly connected between the bottom of connecting ring one.

[0009] As a further technical scheme of the utility model, the left side of the probe shell is provided with side cover one, the right side of the probe shell is provided with side cover two, the bottom of the left side of side cover one and the bottom of the right side of side cover two are respectively fixed with connecting plate, and the both ends of the top of connecting plate are respectively provided with connecting bolt, the inside of the four corners of the top of mounting base is respectively provided with connecting hole, and side cover one and side cover two are symmetrically arranged about the vertical center line of the probe shell.

[0010] As a further technical scheme of the utility model, the bottom of the connecting bolt penetrates the inside of the connecting plate and is threadedly connected in the connecting hole.

[0011] As a further technical scheme of the utility model, the both sides and both ends of the top of the probe shell are respectively provided with reserved hole, the inside of the reserved hole is provided with mounting screw, and the both sides and both ends of the top of the probe shell are respectively provided with mounting hole.

[0012] As a further technical scheme of the utility model, the bottom of the reserved hole penetrates the inside of the probe shell, and the bottom of the mounting screw penetrates the inside of the reserved hole and is threadedly connected in the mounting hole.

[0013] As a further technical scheme of the utility model, the bottom of the top cover is fixed with heat-sensitive sensing element, the left side of the heat-sensitive sensing element is fixed with connecting wire one, the right side of the heat-sensitive sensing element is fixed with connecting wire two, the bottom of connecting wire one and connecting wire two respectively penetrates the inside of compression spring, connecting ring two and through slot, and the both sides and both ends of the mounting base are respectively fixed with fixed foot, and the inside of the fixed foot is provided with inner hole.

[0014] Compared with the prior art, the utility model has the advantages that the induction type pot temperature probe with impact resistance floating structure not only realizes the impact resistance floating protection of the pot temperature probe, realizes the safety anti-collision protection of the probe outside, but also realizes the maintenance of the probe internal components,

[0015] (1) by being provided with mounting base, probe shell, connecting ring one, compression spring, connecting hole and through slot, when the pot temperature probe is installed and used, the compression spring is arranged between the probe installation assembly and the probe assembly, the probe adopts up-down floating structure, and is installed in the pot, when the outside of the pot is impacted, the compression spring can assist the buffer impact resistance of the probe assembly, the vibration damage of the internal components of the probe main body is reduced, and the installation and use stability of the pot temperature probe is improved.

[0016] (2) through the installation of the bottom plate, connecting plate, side cover one, side cover two, through the slot and connecting bolt, pot temperature probe installation and use process, in the installation of the bottom plate top two sides of the position is fixed with side cover one and side cover two, using side cover one and side cover two can be outside the probe cover anti-collision protection, avoid the outside structure damage of the probe;

[0017] (3) through the installation of the bottom plate, probe shell, top cover, reserved hole, mounting screw and mounting hole, pot temperature probe when using, respectively in the top of the top cover four groups of installation screw is set from the mounting hole after the outside rotation, can be removed from the top of the probe shell top cover, open the probe inside, convenient for the probe inside components convenient maintenance operation. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is the front view sectional structure schematic diagram of the utility model;

[0019] Figure 2 It is the front view sectional structure schematic diagram of the utility model's connecting ring one;

[0020] Figure 3 It is the utility model's plan structure schematic diagram;

[0021] Figure 4 It is the probe shell front view partial sectional structure schematic diagram of the utility model.

[0022] In the drawing: 1, connecting line one;2, installation bottom plate;3, fixed foot;4, connecting plate;5, side cover one;6, connecting ring one;7, probe shell;8, top cover;9, thermal sensitive sensing element;10, side cover two;11, compression spring;12, connecting ring two;13, connecting hole;14, through slot;15, connecting line two;16, inner hole;17, connecting bolt;18, reserved hole;19, mounting screw;20, mounting hole. DETAILED DESCRIPTION

[0023] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the scope of protection of the utility model.

[0024] Please refer to Figures 1-4The utility model provides an embodiment: a inductive type pot temperature probe with anti -impact floating structure, including installation bottom plate 2, the top of installation bottom plate 2 is provided with probe shell 7, and the top of probe shell 7 is provided with top cap 8, the outside fixed connection ring one 6 of probe shell 7, the top of installation bottom plate 2 is fixed with connection ring two 12, and the top of connection ring two 12 is fixed with compression spring 11, the inside of installation bottom plate 2 is provided with through slot 14, the inside of through slot 14 is provided with the inside of connection ring one 6 of probe shell 7, and the inside of through slot 14 is provided with the inside of installation bottom plate 2, and the top of compression spring 11 is fixedly connected between the bottom of connection ring one 6,

[0025] Specifically, as shown in the probe installation assembly and probe assembly installation are provided with compression spring 11, Figures 1-3 The probe adopts up-down floating type structure, and after being installed in the pot, when the pot is impacted from the outside, the compression spring 11 can assist in buffering and resisting impact of the probe assembly, reducing vibration damage of the internal components of the probe body.

[0026] The left side of probe shell 7 is provided with side cover one 5, the right side of probe shell 7 is provided with side cover two 10, the bottom of the left side of side cover one 5 and the bottom of the right side of side cover two 10 are respectively fixed with connecting plate 4, and the two ends of the top of connecting plate 4 are respectively provided with connecting bolt 17, the inside of the four corners of the top of installation bottom plate 2 is respectively provided with connecting hole 13, side cover one 5 and side cover two 10 are symmetrically arranged about the vertical center line of probe shell 7, the bottom of connecting bolt 17 penetrates the inside of connecting plate 4 and is threadedly connected in connecting hole 13;

[0027] Specifically, as shown in the two sides of the top of installation bottom plate 2 are respectively installed and fixed with side cover one 5 and side cover two 10, Figure 1 and Figure 3 The side cover one 5 and the side cover two 10 can be used for outer cover anti-collision protection of the outside of the probe.

[0028] The two sides and the two ends of the top of probe shell 7 are respectively provided with reserved hole 18, and the inside of reserved hole 18 is provided with mounting screw 19, the two sides and the two ends of the top of probe shell 7 are respectively provided with mounting hole 20, the bottom of reserved hole 18 penetrates the inside of probe shell 7, and the bottom of mounting screw 19 penetrates the inside of reserved hole 18 and is threadedly connected in mounting hole 20;

[0029] Specifically, as shown in the four groups of mounting screws 19 arranged at the top of top cap 8 are respectively rotated outwards from mounting hole 20, Figure 1 , Figure 3 and Figure 4 The top cap 8 can be removed from the top of probe shell 7, and the internal components of the probe can be conveniently overhauled.

[0030] ​The bottom end of the top cover 8 is fixed with a heat-sensitive sensing element 9, the left side of the heat-sensitive sensing element 9 is fixed with a connecting wire one 1, the right side of the heat-sensitive sensing element 9 is fixed with a connecting wire two 15, the bottom end of the connecting wire one 1 and the connecting wire two 15 respectively penetrates the inside of the compression spring 11, the connecting ring two 12 and the through slot 14, the two sides and the two ends of the installation bottom plate 2 are respectively fixed with fixed feet 3, and the inside of the fixed feet 3 is provided with an inner hole 16.

[0031] Working principle: the utility model discloses in use, the compression spring 11 is arranged on the probe installation assembly and probe assembly, the probe adopts the up-and-down floating type structure, is installed in the inside of the pot and is used in the process, when the outside of the pot is impacted, the compression spring 11 can be used to assist the buffer impact resistance of probe assembly, simultaneously, the side cover one 5 and the side cover two 10 are respectively installed and fixed on the both sides of the top end of the installation bottom plate 2 in the process of using the pot temperature probe installation, the outside of the probe can be covered and protected, and when the pot temperature probe is used, four groups of installation screws 19 are respectively arranged on the top end of the top cover 8, and the installation hole 20 is correspondingly rotated outward, then the top cover 8 can be removed from the top end of the probe shell 7, and the inside assembly of the probe is conveniently overhauled.

[0032] For those skilled in the art, it is obvious that the utility model is not limited to the details of the above-mentioned exemplary embodiments, and can be realized in other specific forms without departing from the spirit or basic characteristics of the utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting, the scope of the utility model is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the utility model. Any reference signs in the claims should not be regarded as limiting the claims.

Claims

1. An inductive pot temperature probe with impact resistant floating structure comprising a mounting base plate (2), characterized in that: The top end of the mounting base plate (2) is provided with a probe shell (7), and the top end of the probe shell (7) is provided with a top cover (8), the outer side of the probe shell (7) is fixed with a connecting ring one (6), the top end of the mounting base plate (2) is fixed with a connecting ring two (12), and the top end of the connecting ring two (12) is fixed with a compression spring (11), and the inside of the mounting base plate (2) is provided with a through slot (14).

2. An inductive pot temperature probe having an impact resistant floating structure according to claim 1, characterized in that: The bottom end of the probe shell (7) penetrates the inside of the connecting ring one (6), and the through slot (14) penetrates the inside of the mounting base plate (2).

3. An inductive pot temperature probe having an impact resistant floating structure according to claim 1, characterized in that: The top end of the compression spring (11) is fixedly connected between the bottom end of the connecting ring one (6).

4. An inductive pot temperature probe having an impact resistant floating structure according to claim 1, wherein: The left side of the probe shell (7) is provided with a side cover one (5), the right side of the probe shell (7) is provided with a side cover two (10), the bottom end of the left side of the side cover one (5) and the bottom end of the right side of the side cover two (10) are respectively fixed with a connecting plate (4), and the top of the connecting plate (4) is provided with a connecting bolt (17) at both ends, the inside of the four corners of the top end of the mounting base plate (2) is respectively provided with a connecting hole (13), and the side cover one (5) and the side cover two (10) are symmetrically arranged about the vertical center line of the probe shell (7).

5. An inductive pot temperature probe having an impact resistant floating structure according to claim 4, characterized in that: The bottom end of the connecting bolt (17) penetrates the inside of the connecting plate (4) and is threadedly connected in the connecting hole (13).

6. An inductive pot temperature probe having an impact resistant floating structure according to claim 1, wherein: The two sides and two ends of the top of the probe shell (7) are respectively provided with a reserved hole (18), and the inside of the reserved hole (18) is provided with a mounting screw (19), and the top of the probe shell (7) is respectively provided with a mounting hole (20).

7. An inductive pot temperature probe having an impact resistant floating structure according to claim 6, characterized in that: The bottom end of the reserved hole (18) penetrates the inside of the probe shell (7), and the bottom end of the mounting screw (19) penetrates the inside of the reserved hole (18) and is threadedly connected in the mounting hole (20).

8. An inductive pot temperature probe having an impact resistant floating structure according to claim 1, wherein: The bottom end of the top cover (8) is fixed with a thermal sensitive sensing element (9), the left side of the thermal sensitive sensing element (9) is fixed with a connecting wire one (1), the right side of the thermal sensitive sensing element (9) is fixed with a connecting wire two (15), the bottom end of the connecting wire one (1) and the connecting wire two (15) penetrates the inside of the compression spring (11), the connecting ring two (12) and the through slot (14) respectively, and the two sides and two ends of the mounting base plate (2) are respectively fixed with a fixed foot (3), and the inside of the fixed foot (3) is provided with an inner hole (16).