Temperature adjusting device and kettle

By introducing a temperature detection and control system into the cycling water bottle, the problem of difficult water temperature control has been solved, enabling real-time water temperature adjustment and convenient user control, thus improving the cycling experience.

CN223957664UActive Publication Date: 2026-02-27SHENZHEN ASCHIP TECH CO LTD
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Patent Information

Application Number
CN202520101866.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-15
Publication Date
2026-02-27
Estimated Expiration
2035-01-15

AI Technical Summary

Technical Problem

Cycling water bottles are difficult to control the water temperature effectively, especially in hot summers or cold winters. The water inside the bottle is easily affected by the ambient temperature and becomes too hot or too cold, which does not meet the user's drinking needs.

Method used

It employs a temperature detection circuit, a main control circuit, a communication module, and a temperature adjustment component. By detecting the water temperature and communicating with an external terminal, it adjusts the temperature inside the kettle to a preset value in real time. It includes heating and cooling components and supports both manual and remote control.

Benefits of technology

Users can adjust the water temperature in the bottle to their ideal temperature in real time during cycling, improving the user experience and enhancing the functionality and practicality of cycling gear.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a temperature adjusting device and a kettle, and relates to the technical field of kettles, the temperature adjusting device comprises a temperature detection circuit, the temperature detection circuit is used for detecting the temperature of water in the kettle and outputting a corresponding temperature detection signal; the main control circuit is electrically connected with the output end of the temperature detection circuit; the communication module is electrically connected with the main control circuit, and the communication module is in communication connection with an external terminal; the main control circuit is used for processing the temperature detection signal and outputting the processed signal to an external terminal through the communication module; the temperature adjusting assembly is electrically connected with the main control circuit, and the main control circuit is used for controlling the temperature adjusting assembly to adjust the temperature of water in the kettle when the communication module receives a temperature adjusting signal sent by an external terminal. The utility model aims to solve the technical problem that water in the kettle is easily influenced by the external environment temperature to become overheated or overcooled and does not meet the drinking requirements of part of users.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kettle technical field, especially a temperature regulating device and a kettle. BACKGROUND

[0002] With the popularity of healthy lifestyle and the improvement of environmental protection consciousness, cycling as a low-carbon and healthy travel mode has been favored by more and more enthusiasts all over the world. Whether it is daily commuting, leisure fitness or professional competition, the requirements of cyclists for cycling equipment are also increasing. Among them, the cycling water bottle as an indispensable tool for supplementing water during cycling, its design and functionality are directly related to the experience and health of cyclists.

[0003] However, in the prior art, a common problem with cycling water bottles is that it is difficult to effectively control the water temperature. In long-time or high-intensity cycling activities, especially in hot summer or cold winter conditions, the water in the water bottle is easily affected by the external environmental temperature and becomes too hot or too cold, which does not meet the drinking needs of some users. INVENTION CONTENTS

[0004] The main purpose of the utility model is to provide a temperature regulating device and a kettle, which aims to solve the technical problem that the water in the water bottle is easily affected by the external environmental temperature and becomes too hot or too cold, which does not meet the drinking needs of some users.

[0005] To achieve the above purpose, the utility model provides a temperature regulating device applied to a water bottle, which comprises:

[0006] A temperature detection circuit is used to detect the temperature of the water in the water bottle and output corresponding temperature detection signals;

[0007] A main control circuit is electrically connected with the output end of the temperature detection circuit;

[0008] A communication module is electrically connected with the main control circuit, and the communication module establishes a communication connection with an external terminal;

[0009] The main control circuit is used to process the temperature detection signals and output the processed signals to the external terminal through the communication module;

[0010] A temperature regulating assembly is electrically connected with the main control circuit, and the main control circuit is used to control the temperature regulating assembly to adjust the temperature of the water in the water bottle to a preset temperature when receiving the temperature adjustment signal sent by the external terminal through the communication module;

[0011] Among them, the temperature detection circuit, the main control circuit, the communication module and the temperature regulating assembly are all located in the water bottle.

[0012] In an embodiment, the temperature detection circuit comprises:

[0013] a thermistor, a first resistor and a first capacitor, a first end of the first resistor is connected with a power supply end, a second end of the first resistor is connected with a first end of the thermistor, a second end of the thermistor is grounded, a first end of the first capacitor is connected with the first end of the thermistor, and a second end of the first capacitor is grounded.

[0014] In an embodiment, the temperature adjusting assembly comprises:

[0015] a heating assembly and a cooling assembly, the heating assembly is electrically connected with the master control circuit, and the cooling assembly is electrically connected with the master control circuit.

[0016] In an embodiment, the heating assembly comprises:

[0017] a heating module, a first switch tube, a second resistor and a third resistor, a power supply end of the heating module is connected with a power supply end, a ground end of the heating module is connected with an input end of the first switch tube;

[0018] a first end of the second resistor is electrically connected with the master control circuit, a second end of the second resistor is connected with a controlled end of the first switch tube, a first end of the third resistor is connected with the controlled end of the first switch tube, and a second end of the third resistor is grounded;

[0019] In an embodiment, the cooling assembly comprises:

[0020] a cooling module, a second switch tube, a fourth resistor and a fifth resistor, a power supply end of the cooling module is connected with a power supply end, a ground end of the cooling module is connected with an input end of the second switch tube;

[0021] a first end of the fourth resistor is electrically connected with the master control circuit, a second end of the fourth resistor is connected with a controlled end of the second switch tube, a first end of the fifth resistor is connected with the controlled end of the second switch tube, and a second end of the fifth resistor is grounded.

[0022] In an embodiment, when the communication module is a wireless communication module, the temperature adjusting device further comprises:

[0023] a power supply control circuit, the power supply control circuit is electrically connected with a power supply end of the wireless communication module;

[0024] The power supply control circuit comprises a third switch tube, a sixth resistor and a seventh resistor, the input ends of the third switch tube are connected with the first end of the sixth resistor and a power supply end respectively, the output end of the third switch tube is connected with a power supply end of the wireless communication module, the controlled end of the third switch tube is connected with the second end of the sixth resistor and the first end of the seventh resistor respectively, and the second end of the seventh resistor is connected with the main control circuit.

[0025] In an embodiment, the temperature adjusting device further comprises:

[0026] a plurality of light emitting components, which are electrically connected with the main control circuit.

[0027] In an embodiment, the light emitting component comprises:

[0028] an LED component and a switch circuit, the power supply end of the LED component is connected with a power supply end, the controlled end of the LED component is electrically connected with the output end of the switch circuit, and the input end of the switch circuit is electrically connected with the main control circuit.

[0029] The switch circuit comprises:

[0030] a fourth switch tube, an eighth resistor, a ninth resistor and a tenth resistor, the first end of the eighth resistor is connected with a ground end of the LED component, the second end of the eighth resistor is connected with the input end of the fourth switch tube, the controlled end of the fourth switch tube is connected with the second end of the ninth resistor and the first end of the tenth resistor respectively, the first end of the ninth resistor is electrically connected with the main control circuit, and the second end of the tenth resistor and the output end of the fourth switch tube are grounded.

[0031] In an embodiment, the temperature adjusting device further comprises:

[0032] a triggering component, which is electrically connected with the main control circuit, and is used for outputting a corresponding triggering signal when triggered, and the main control circuit is used for controlling the temperature adjusting component to adjust the temperature of the water in the kettle according to the triggering signal.

[0033] In an embodiment, the temperature adjusting device further comprises:

[0034] a positioning module, which is electrically connected with the communication module, and is used for sending the positioning information of the kettle to an external terminal via the communication module.

[0035] a prompting component, which is electrically connected with the main control circuit, and the main control circuit is used for controlling the prompting component to prompt when receiving a prompting signal sent by an external terminal via the communication module.

[0036] The utility model also provides a kettle, including kettle body and the temperature adjusting device of any one described above.

[0037] The utility model discloses temperature adjusting device includes temperature detection circuit, and temperature detection circuit is used to detect the temperature of the water in the kettle, and exports corresponding temperature detection signal, main control circuit, and main control circuit is electrically connected with the output of temperature detection circuit, communication module, and communication module is electrically connected with main control circuit, and communication module establishes communication connection with external terminal, and main control circuit is used to handle temperature detection signal, and the signal after processing is exported to external terminal through communication module, temperature adjusting assembly, and temperature adjusting assembly is electrically connected with main control circuit, and main control circuit is used to control temperature adjusting assembly to adjust the temperature of the water in the kettle when receiving the temperature regulation signal that external terminal sends through communication module. Such setting, in practical application, the user can understand the actual temperature of the water in the kettle in real time in external terminal such as handheld terminal, and when the actual temperature of the water does not meet the demand of itself, adjusts the temperature of the water in the kettle to meet the water temperature of the demand of itself through handheld terminal, so that the user can drink the water of ideal temperature in the process of riding, thereby improve the use experience of user. BRIEF DESCRIPTION OF DRAWINGS

[0038] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or prior art, below will be to the drawing needed to use in the embodiment or prior art description briefly introduced, obviously, the drawing in the following description only some embodiments of the utility model, for those skilled in the art, under the premise of not paying creative labor, can also obtain other drawings according to the structure shown in these drawings.

[0039] Figure 1 It is the module schematic view of an embodiment of the utility model;

[0040] Figure 2 It is the circuit structure schematic view of an embodiment of the utility model;

[0041] Figure 3 It is the circuit structure schematic view of another embodiment of the utility model;

[0042] Figure 4 It is the circuit structure schematic view of still another embodiment of the utility model;

[0043] Figure 5 It is the module schematic view of another embodiment of the utility model;

[0044] Figure 6 It is the circuit structure schematic view of still another embodiment of the utility model;

[0045] Figure 7 It is the module schematic view of still another embodiment of the utility model;

[0046] Figure 8 The module schematic view of another embodiment of the present application.

[0047] Brief Description of the Drawings

[0048] 10, temperature detection circuit; 20, main control circuit; 30, communication module; 31, wireless communication module; 40, temperature regulating assembly; 41, heating assembly; 411, heating module; 42, cooling assembly; 421, cooling module; 50, power supply control circuit; 60, light emitting assembly; 61, LED assembly; 62, switching circuit; 70, triggering assembly; 80, positioning module; 90, prompting assembly.

[0049] The realization, functional features and advantages of the present application will be further described with reference to the embodiments and the accompanying drawings. DETAILED DESCRIPTION

[0050] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the present application.

[0051] It should be noted that if the embodiments of the present application involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative positional relationship, movement condition, etc. between the components in a certain posture, and if the certain posture changes, the directional indications also change accordingly.

[0052] In addition, if the embodiments of the present application involve descriptions of "first", "second", etc., the descriptions of "first", "second", etc. are only for description purposes, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features with "first" and "second" can explicitly or implicitly include at least one of the features. In addition, "and / or" or "and / or" appearing throughout the text means that the three parallel schemes are included, for example, "A and / or B" includes A scheme, or B scheme, or A and B simultaneously satisfy the scheme. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of the ordinary skilled in the art, and when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the present application.

[0053] With the popularity of healthy lifestyle and the improvement of environmental awareness, cycling as a low-carbon and healthy way of travel has been favored by more and more enthusiasts in the world. Whether it is daily commuting, leisure fitness or professional competition, the requirements of cyclists for cycling equipment are increasing. Among them, the cycling water bottle as an indispensable tool for supplementing water during cycling, its design and functionality are directly related to the experience and health of cyclists.

[0054] However, in the prior art, a common problem of cycling water bottles is that it is difficult to effectively control the water temperature. In long-time or high-intensity cycling activities, especially in hot summer or cold winter conditions, the water in the water bottle is easily affected by the ambient temperature and becomes too hot or too cold, which does not meet the drinking needs of some users.

[0055] Therefore, the utility model provides a kind of temperature regulating device and water bottle, to solve the technical problem that water in water bottle is easily affected by ambient temperature and becomes too hot or too cold, which does not meet the drinking needs of some users.

[0056] In an embodiment of the utility model, Figure 1 , the temperature regulating device comprises:

[0057] Temperature detection circuit 10, the temperature detection circuit 10 is used to detect the temperature of water in the water bottle, and output corresponding temperature detection signal;

[0058] Main control circuit 20, the main control circuit 20 is electrically connected with the output end of the temperature detection circuit 10;

[0059] Communication module 30, the communication module 30 is electrically connected with the main control circuit 20, and the communication module 30 is connected with external terminal to establish communication;

[0060] The main control circuit 20 is used to process the temperature detection signal, and the processed signal is output to external terminal through the communication module 30;

[0061] Temperature regulating assembly 40, the temperature regulating assembly 40 is electrically connected with the main control circuit 20, and the main control circuit 20 is used to control the temperature regulating assembly 40 to adjust the temperature of water in the water bottle to preset temperature when receiving temperature adjustment signal sent by external terminal through the communication module 30;

[0062] Wherein, the temperature detection circuit 10, main control circuit 20, communication module 30 and temperature regulating assembly 40 are located in the water bottle.

[0063] In the embodiment, the temperature detection circuit 10 is implemented by a thermistor NTC, and the higher / lower the temperature of the water in the kettle is, the smaller / larger the resistance of the thermistor NTC is. The main control circuit 20 determines the temperature of the water in the kettle by processing the voltage or resistance of the detected thermistor NTC. For example, referring to Figure 2 The temperature detection circuit 10 includes a thermistor NTC, a first resistor R1 and a first capacitor C1. The first end of the first resistor R1 is connected with the power supply end, the second end of the first resistor R1 is connected with the first end of the thermistor NTC, the second end of the thermistor NTC is grounded, the first end of the first capacitor C1 and the main control circuit 20 are both connected with the first end of the thermistor NTC, and the second end of the first capacitor C1 is grounded. The main control circuit 20 processes the voltage of the thermistor NTC by analog-digital conversion, and determines the temperature of the water in the kettle according to the digital signal obtained after processing. The higher / lower the temperature of the water in the kettle is, the smaller / larger the voltage of the thermistor NTC is. Alternatively, the temperature detection circuit 10 can also be implemented by a digital temperature sensor. The digital temperature sensor is built-in with an ADC (analog-digital converter) and necessary signal processing logic, and can directly output a digital signal corresponding to the temperature. The main control circuit 20 can directly determine the temperature of the water in the kettle according to the digital signal.

[0064] It should be noted that the thermistor NTC or the digital temperature sensor cannot be in contact with the water, so effective waterproof and sealing measures need to be taken for the thermistor NTC or the digital temperature sensor, for example, the thermistor NTC or the digital temperature sensor is integrally packaged by selecting a packaging material with good waterproof performance and heat conduction performance such as heat-conducting silica gel or heat-conducting epoxy resin.

[0065] In the embodiment, the main control circuit 20 can be implemented by a main controller, for example, an MCU (Microcontroller Unit), a DSP (Digital Signal Process), an FPGA (Field Programmable Gate Array), a SOC (System On Chip) or the like.

[0066] In the embodiment, the communication module 30 can be a wired communication module 30, wherein the wired communication module 3010 can be a wired communication chip, such as a CAN communication chip, an SPI communication chip, an I2C communication chip, a LIN communication chip, etc. The wired communication chip can establish a communication connection with an external terminal via a communication line. For example, the wired communication module 30 is a USB interface, and the external terminal is a handheld terminal of a user. The handheld terminal is connected to the USB interface via a data line, so that the host circuit 20 receives a temperature adjustment signal sent by the mobile phone or the tablet computer via the data line.

[0067] Optionally, the communication module 30 includes a wireless communication module 31. The wireless communication module 31 can be a wireless communication chip, such as a 4G / 5G communication chip, a WIFI communication chip, a Bluetooth communication chip, a local area network communication chip, etc. The wireless communication chip can establish a communication connection with an external terminal via an antenna and a wireless communication network. For example, the external terminal is a handheld terminal of a user. The wireless communication chip establishes a wireless communication connection with the handheld terminal of the user via a 4G / 5G network. The user can operate a corresponding APP on the handheld terminal to make the handheld terminal output a corresponding temperature adjustment signal to the wireless communication chip via the 4G / 5G network.

[0068] In the embodiment, the temperature adjusting assembly 40 includes a heating assembly 41 and a cooling assembly 42. The host circuit 20 controls the heating assembly 41 to heat the water in the kettle to a preset temperature or controls the cooling assembly 42 to reduce the temperature of the water in the kettle to a preset temperature according to the received temperature adjustment signal. The heating assembly 41 can be implemented by an immersion heating rod. The heating rod is usually made of corrosion-resistant materials such as stainless steel and contains a resistance heating wire inside. The temperature of the resistance heating wire is indirectly conducted to the water in the kettle through the stainless steel to indirectly heat the water in the kettle. The cooling assembly 42 can be implemented by a Peltier element. The kettle body is a shell. The shell has a notch for mounting the Peltier element to allow the Peltier element to be mounted. One side of the Peltier element serves as a cold end and is arranged towards the inside of the shell to indirectly contact the water in the kettle through a heat conductor (such as an aluminum heat sink) to absorb heat from the water. The other side of the Peltier element serves as a hot end and is arranged towards the outside of the shell to dissipate the absorbed heat to the outside. Further, to improve the heat dissipation efficiency of the hot end of the Peltier element, a heat sink with a fan can be arranged on the surface of the hot end to improve the heat dissipation efficiency of the hot end.

[0069] The utility model discloses temperature regulating device includes temperature detection circuit 10, temperature detection circuit 10 is used for detecting the temperature of the water in the kettle, and exports corresponding temperature detection signal, main control circuit 20, main control circuit 20 is electrically connected with the output of temperature detection circuit 10, communication module 30, communication module 30 is electrically connected with main control circuit 20, and communication module 30 establishes communication connection with external terminal, main control circuit 20 is used for processing temperature detection signal, and the signal after processing is exported to external terminal through communication module 30, temperature regulating assembly 40, temperature regulating assembly 40 is electrically connected with main control circuit 20, and main control circuit 20 is used for controlling temperature regulating assembly 40 to adjust the temperature of the water in the kettle when receiving the temperature regulation signal sent by external terminal through communication module 30. So set, in practical application, the user can understand the actual temperature of the water in the kettle in real time in external terminal such as handheld terminal, and when the actual temperature of the water does not meet the demand of itself, adjusts the temperature of the water in the kettle to meet the water temperature of the demand of itself through handheld terminal, so that the user can drink the water of ideal temperature in the process of riding, thereby improve the use experience of user.

[0070] In an embodiment of the utility model, reference Figure 3 , the heating assembly 41 includes:

[0071] The heating module 411 is connected with the power supply end, and the ground end of the heating module 41 is connected with the input end of the first switch tube Q1;

[0072] The first end of the second resistance R2 is electrically connected with the main control circuit 20, the second end of the second resistance R2 is connected with the controlled end of the first switch tube Q1, the first end of the third resistance R3 is connected with the controlled end of the first switch tube Q1, and the second end of the third resistance R3 is grounded;

[0073] The cooling assembly 42 includes:

[0074] The cooling module 421 is connected with the power supply end, and the ground end of the cooling module 421 is connected with the input end of the second switch tube;

[0075] The first end of the fourth resistance R4 is electrically connected with the main control circuit 20, the second end of the fourth resistance R4 is connected with the controlled end of the second switch tube Q2, the first end of the fifth resistance R5 is connected with the controlled end of the second switch tube Q2, and the second end of the fifth resistance R5 is grounded.

[0076] In the embodiment, the heating module 411 is realized by the heating rod, and the cooling module 421 is realized by the Peltier element.

[0077] In the embodiment, the first switch tube Q1 and the second switch tube Q2 can be realized by any one of MOS tube, IGBT tube, thyristor, triode and power tube. For example, the first switch tube Q1 and the second switch tube Q2 are both NMOS tubes, when the temperature adjusting signal is received by the main control circuit 20, a high level signal is output to turn on the first switch tube Q1 or the second switch tube Q2, after the first switch tube Q1 or the second switch tube Q2 is turned on, the ground end of the heating module 411 or the ground end of the cooling module 421 is grounded, so that the power supply loop of the heating module 411 or the cooling module 421 forms a closed path, and the heating module 411 or the cooling module 421 works.

[0078] In an embodiment of the utility model, reference Figure 4 , when the communication module 30 is a wireless communication module 31, the temperature adjusting device further includes:

[0079] The power supply control circuit 50 is electrically connected with the power supply end of the wireless communication module 31.

[0080] The power supply control circuit 50 includes a third switch tube Q3, a sixth resistance R6 and a seventh resistance R7, the input end of the third switch tube Q3 is connected with the first end of the sixth resistance R6 and the power supply end respectively, the output end of the third switch tube Q3 is connected with the power supply end of the wireless communication module 31, the controlled end of the third switch tube Q3 is connected with the second end of the sixth resistance R6 and the first end of the seventh resistance R7 respectively, and the second end of the seventh resistance R7 is electrically connected with the main control circuit 20.

[0081] In the embodiment, when the main control circuit 20 controls the third switch tube Q3 to be disconnected, the power supply loop between the power supply end and the wireless communication module 31 is disconnected, so that the wireless communication module 31 stops working, when the main control circuit 20 controls the third switch tube Q3 to be turned on, the power supply loop between the power supply end and the wireless communication module 31 is turned on, so that the wireless communication module 31 works. In actual application, when the user rides outside without carrying the power supply, the wireless communication module 31 can be controlled to stop working, the power consumption of the battery is reduced, and the endurance time of the temperature adjusting device of the utility model is prolonged.

[0082] In an embodiment of the utility model, reference Figure 5 , the temperature adjusting device further includes:

[0083] A plurality of light emitting components 60 are electrically connected with the main control circuit 20.

[0084] In an embodiment, the light-emitting assembly 60 can be implemented by an RGB LED assembly, and the temperature of the water in the kettle is prompted by controlling the light-emission of different RGB LED assemblies. For example, the temperature adjusting device includes a red light LED assembly and a blue light LED assembly, and the main control circuit 20 is configured to control the red light LED assembly to emit light when the temperature of the water in the kettle is greater than the upper limit preset temperature, so as to prompt the user that the temperature of the water in the kettle is higher than the preset temperature range; and the main control circuit 20 is further configured to control the blue light LED assembly to emit light when the temperature of the water in the kettle is less than the lower limit preset temperature, so as to prompt the user that the temperature of the water in the kettle is lower than the preset temperature range.

[0085] In another embodiment, the light-emitting assembly 60 can also be implemented by a high-brightness LED assembly, and the high-brightness LED assembly 61 can be used to provide illumination for the user when riding at night. The user can send a corresponding light adjustment signal to the main control circuit 20 through an external terminal such as a handheld terminal, and the main control circuit 20 controls the working state of the plurality of high-brightness LED assemblies according to the light adjustment signal, for example, controls some high-brightness LED assemblies to emit light, so as to adjust the light emitted by the plurality of light-emitting assemblies 60 to meet the actual needs.

[0086] Reference Figure 6 The light-emitting assembly 60 includes an LED assembly 61 and a switching circuit 62, a power supply end of the LED assembly 61 is connected with a power supply end, a grounding end of the LED assembly 61 is electrically connected with an output end of the switching circuit 62, and an input end of the switching circuit 62 is electrically connected with the main control circuit 20; the switching circuit 62 includes a fourth switch tube Q4, an eighth resistor R8, a ninth resistor R9 and a tenth resistor R10, a first end of the eighth resistor R8 is connected with a controlled end of the LED assembly 61, a second end of the eighth resistor R8 is connected with an input end of the fourth switch tube Q4, a controlled end of the fourth switch tube Q4 is connected with a second end of the ninth resistor R9 and a first end of the tenth resistor R10 respectively, a first end of the ninth resistor R9 is electrically connected with the main control circuit 20, and a second end of the tenth resistor R10 and an output end of the fourth switch tube Q4 are grounded. In combination with the above embodiment, when the main control circuit 20 detects that the temperature of the water in the kettle is greater than the upper limit preset temperature or less than the lower limit preset temperature, or receives a light adjustment signal, the fourth switch tube Q4 is controlled to be turned on, so that a power supply loop of the LED assembly 61 forms a closed path, and the LED assembly 61 emits light.

[0087] In an embodiment of the utility model, reference Figure 7 The temperature adjusting device further includes

[0088] A trigger component 70 is electrically connected with the main control circuit 20, and is configured to output a corresponding trigger signal when triggered, and the main control circuit 20 is configured to control the temperature adjusting component 40 to adjust the temperature of the water in the kettle according to the trigger signal.

[0089] In this embodiment, the trigger component 70 can alternatively adopt a plurality of buttons, each button corresponding to a different temperature setting value or mode (such as heating, cooling, maintaining the current temperature, etc.), and after a user presses a corresponding button, the button sends a specific trigger signal to the main control circuit 20, and the main control circuit 20 controls the temperature adjusting component 40 to heat or lower the temperature of the water in the kettle according to the received trigger signal. Alternatively, the trigger component 70 can also be realized by a rotary knob, which generates a pulse signal when rotated, and the main control circuit 20 controls the temperature adjusting component 40 to heat or lower the temperature of the water in the kettle according to the pulse signal. In this way, the user can adjust the increase or decrease of the temperature of the water in the kettle by rotating the rotary knob.

[0090] Through the above setting, the temperature adjusting device of the utility model introduces the trigger component 70 to realize the manual control of the temperature adjusting device by the user, so that the riding kettle can not only be remotely controlled by the APP, but also be directly operated on the kettle, thereby improving the practicability of the temperature adjusting device of the utility model and the user's use experience.

[0091] In an embodiment of the utility model, Figure 8 , the temperature adjusting device further comprises:

[0092] A positioning module 80 is electrically connected with the communication module 30, and is configured to send the positioning information of the kettle to an external terminal through the communication module 30.

[0093] A prompt component 90 is electrically connected with the main control circuit 20, and the main control circuit 20 is configured to control the prompt component 90 to prompt when receiving a prompt signal sent by the external terminal through the communication module 30.

[0094] In this embodiment, the external terminal determines the distance between itself and the kettle according to its own positioning information and the positioning information of the received kettle, and is configured to send a prompt signal when the distance between itself and the kettle is greater than a preset distance. When the main control circuit 20 receives the prompt information through the communication module 30, it controls the prompt component 90 to prompt to remind the user to forget the kettle. The prompt component 90 can be realized by a flash light or a buzzer. In this way, in actual application, when the user forgets to carry the kettle during riding, the prompt component 90 emits light alarm or sound alarm to attract the user's attention, reminding the user to forget to carry the kettle, effectively avoiding the risk of losing the kettle.

[0095] The utility model also provides a kind of kettle, including kettle body and the temperature regulating device as described above.

[0096] It is worth noting that, since the kettle of the utility model is based on the temperature regulating device described above, the embodiments of the kettle of the utility model include all the technical solutions of all the embodiments of the temperature regulating device described above, and the technical effects achieved are also exactly the same, which will not be described here.

[0097] The above description is only an exemplary embodiment of the utility model, and does not limit the patent scope of the utility model, and any equivalent structural transformation made by using the utility model specification and drawings, or direct / indirect application in other related technical fields is included in the patent protection scope of the utility model.

Claims

1. A temperature regulating device applied to a kettle, characterized in that, The temperature adjusting device comprises: a temperature detection circuit, which is used for detecting the temperature of water in the kettle and outputting a corresponding temperature detection signal; a main control circuit, which is electrically connected with the output end of the temperature detection circuit; a communication module, which is electrically connected with the main control circuit and establishes a communication connection with an external terminal; the main control circuit is used for processing the temperature detection signal and outputting the processed signal to the external terminal through the communication module; a temperature adjusting assembly, which is electrically connected with the main control circuit, and the main control circuit is used for controlling the temperature adjusting assembly to adjust the temperature of water in the kettle to a preset temperature when receiving a temperature adjusting signal sent by the external terminal through the communication module; wherein the temperature detection circuit, the main control circuit, the communication module and the temperature adjusting assembly are all located in the kettle.

2. The temperature regulating device of claim 1, wherein, The temperature detection circuit comprises: a thermistor, a first resistor and a first capacitor, a first end of the first resistor is connected with a power supply end, a second end of the first resistor is connected with a first end of the thermistor, a second end of the thermistor is grounded, a first end of the first capacitor and the main control circuit are both connected with the first end of the thermistor, and a second end of the first capacitor is grounded.

3. The temperature regulating device of claim 1, wherein, The temperature adjusting assembly comprises: a heating assembly and a cooling assembly, the heating assembly is electrically connected with the main control circuit, and the cooling assembly is electrically connected with the main control circuit.

4. The temperature regulating device of claim 3, wherein The heating assembly comprises: a heating module, a first switch tube, a second resistor and a third resistor, a power supply end of the heating module is connected with a power supply end, and a ground end of the heating module is connected with an input end of the first switch tube; a first end of the second resistor is electrically connected with the main control circuit, a second end of the second resistor is connected with a controlled end of the first switch tube, a first end of the third resistor is connected with the controlled end of the first switch tube, and a second end of the third resistor is grounded; The cooling assembly comprises: a cooling module, a second switch tube, a fourth resistor and a fifth resistor, a power supply end of the cooling module is connected with a power supply end, and a ground end of the cooling module is connected with an input end of the second switch tube; a first end of the fourth resistor is electrically connected with the main control circuit, a second end of the fourth resistor is connected with a controlled end of the second switch tube, a first end of the fifth resistor is connected with the controlled end of the second switch tube, and a second end of the fifth resistor is grounded.

5. The temperature regulating device of claim 1, wherein, In the case that the communication module is a wireless communication module, the temperature adjusting device further comprises: a power supply control circuit, which is electrically connected with a power supply end of the wireless communication module; the power supply control circuit comprises: a third switch tube, a sixth resistor and a seventh resistor, an input end of the third switch tube is connected with a first end of the sixth resistor and a power supply end respectively, an output end of the third switch tube is connected with a power supply end of the wireless communication module, a controlled end of the third switch tube is connected with a second end of the sixth resistor and a first end of the seventh resistor respectively, and a second end of the seventh resistor is electrically connected with the main control circuit.

6. The temperature regulating device of claim 1, wherein, The temperature adjusting device further comprises: A plurality of light-emitting components, which are electrically connected with the master control circuit.

7. The temperature regulating device of claim 6, wherein, The light-emitting component comprises: An LED component and a switching circuit, a power supply end of the LED component is connected with a power supply end, a controlled end of the LED component is electrically connected with an output end of the switching circuit, an input end of the switching circuit is electrically connected with the master control circuit; The switching circuit comprises: A fourth switch tube, an eighth resistor, a ninth resistor and a tenth resistor, a first end of the eighth resistor is connected with a ground end of the LED component, a second end of the eighth resistor is connected with an input end of the fourth switch tube, a controlled end of the fourth switch tube is respectively connected with a second end of the ninth resistor and a first end of the tenth resistor, a first end of the ninth resistor is electrically connected with the master control circuit, a second end of the tenth resistor and an output end of the fourth switch tube are grounded.

8. The temperature regulating device of claim 1, wherein, The temperature adjusting device further comprises: A triggering component, which is electrically connected with the master control circuit, and is used for outputting a corresponding triggering signal when triggered, and the master control circuit is used for controlling the temperature adjusting component to adjust the temperature of the water in the kettle according to the triggering signal.

9. The temperature regulating device of claim 1, wherein, The temperature adjusting device further comprises: A positioning module, which is electrically connected with the communication module, and is used for sending the positioning information of the kettle to an external terminal through the communication module; A prompting component, which is electrically connected with the master control circuit, and the master control circuit is used for controlling the prompting component to prompt when receiving a prompting signal sent by the external terminal through the communication module.

10. A kettle characterised in that, A kettle body and the temperature adjusting device according to any one of claims 1 to 9.