Liquid heating wireless transmission system

By introducing electronic circuits of the IC control system and the main control CPU in the liquid heating equipment, combining wireless and Bluetooth signal transmission, real-time control of the equipment temperature is achieved, and the problem of insufficient performance and use experience of liquid heating appliances in the combination of electronic heating systems and wireless information transmission is solved, and the equipment's performance and operation convenience are improved.

CN223183375UActive Publication Date: 2025-08-05FOSHAN SHUNDE DESHENGSI INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202422105862.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2025-08-05
Estimated Expiration
2034-08-29

AI Technical Summary

Technical Problem

Existing liquid heating appliances have problems with insufficient performance and use experience in combining electronic heating systems with wireless information transmission.

Method used

Design a liquid heating wireless transmission system, through the combination of the IC control system and the electronic circuit of the main control CPU, realize sensor temperature acquisition, wireless transmission and reception, and Bluetooth signal transmission, combined with relay and thyristor control to adjust the equipment temperature in real time.

Benefits of technology

It improves the performance and experience of liquid heating equipment, and enhances the universality and operational convenience of the system.

✦ Generated by Eureka AI based on patent content.

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Abstract

According to the technical scheme, the liquid heating wireless transmission system comprises a first electronic circuit connected with an integrated circuit (IC) control system and a second electronic circuit connected with a master control central processing unit (CPU), and is characterized in that the first electronic circuit and the second electronic circuit are connected with a power supply; the IC control system is connected with a sensor temperature collector and a wireless transmitter through a first electronic circuit, the sensor temperature collector collects temperature information, the wireless transmitter transmits the temperature information, and the IC control system transmits the temperature information through the wireless transmitter; the main control CPU is connected with a wireless signal receiver, a controller, a relay controller, a silicon controlled rectifier controller and equipment through a second electronic circuit, the wireless signal receiver receives temperature information of the wireless transmitter, and the controller controls the relay to control power-on or power-off through the main control CPU and controls the silicon controlled rectifier to control voltage increasing or voltage reducing, so that the temperature of the equipment is controlled in real time.
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Description

Technical Field

[0001] The utility model relates to a liquid heating system, in particular to a liquid heating wireless transmission system. Background Art

[0002] There are a wide variety of liquid heating appliances on the market, such as electric cups, fire pit stoves, electric soup pots, etc. With the advancement of technology, liquid heating appliances have transitioned from a single heating and then automatic shutdown to a combination of electronic systems with multiple heating modes. As wireless information transmission becomes more and more mature, liquid heating appliances also need to combine electronic heating systems with wireless information transmission to improve performance and user experience. Utility Model Content

[0003] In order to meet market demand, the utility model provides a liquid heating wireless transmission system, which is different from the traditional heating system on the market. It improves the electronic heating system to adapt to technological development and combines it with wireless information transmission to improve performance and user experience.

[0004] The utility model solves the technical problem by adopting a technical solution: a liquid heating wireless transmission system, comprising a first electronic circuit connected to an IC control system, and a second electronic circuit connected to a main control CPU, characterized in that: the first electronic circuit and the second electronic circuit are connected to a power supply, the IC control system is connected to a temperature acquisition sensor and a wireless transmitter through the first electronic circuit, the temperature sensor acquires temperature information, the wireless transmitter transmits the temperature information, the IC control system receives the temperature information acquired by the temperature sensor, and the IC control system sends the temperature information through the wireless transmitter;

[0005] The main control CPU is connected to a wireless signal receiver, a controller, a relay control, a thyristor control, and a device through a second electronic circuit. The wireless signal receiver receives temperature information from a wireless transmitter, and the wireless signal receiver feeds back the temperature information to the main control CPU. The main control CPU simultaneously controls the relay control and the thyristor control, and the relay control and the thyristor control control devices.

[0006] The controller controls the relay to turn on or off the power through the main CPU, and controls the thyristor to increase or decrease the voltage, thereby controlling the temperature of the equipment in real time.

[0007] Its technical effect is: the first electronic circuit collects temperature information through the sensor temperature, then the wireless transmitter sends the temperature information, the second electronic circuit receives the temperature information through the wireless signal receiver, and finally the temperature of the equipment is controlled in real time through the controller. The electronic heating system is combined with wireless information transmission to improve performance and user experience.

[0008] Furthermore, the first electronic circuit is also connected to a Bluetooth signal transmitter, and the second electronic circuit is also connected to a Bluetooth signal receiver.

[0009] Furthermore, the IC control system of the first electronic circuit may transmit the temperature information via Bluetooth signal transmission, and the second electronic circuit may receive the temperature information transmitted by the first electronic circuit via Bluetooth signal transmission.

[0010] Its technical effect: the first electronic circuit and the second electronic circuit are compatible with Bluetooth information transmission, increasing the versatility of the liquid heating wireless transmission system.

[0011] Furthermore, the controller of the second electronic circuit has a voice control module and a control operation screen.

[0012] Its technical effect is: the voice control module sends information through voice, and the control operation screen sends information to the physical keyboard. The main control CPU can receive information sent by both control methods and ultimately control the temperature of the equipment. The two methods can complement each other's functions and enhance the user experience.

[0013] Furthermore, the power supply connected to the second electronic circuit is an external power supply, and the second electronic circuit is connected with a voltage stabilizing circuit. The external power supply supplies power to the main control CPU through the voltage stabilizing circuit, and the external power supply supplies relay control and equipment.

[0014] Furthermore, the power supply is also powered by a battery, and the battery supplies power to the first electronic circuit.

[0015] Furthermore, when the relay controls power on, the thyristor controls power on; and when the relay controls power off, the thyristor controls power off.

[0016] Furthermore, when the thyristor controls the voltage to increase, the temperature of the device increases; when the thyristor controls the voltage to decrease, the temperature of the device decreases.

[0017] Furthermore, the liquid heating wireless transmission system has an electric kettle structure.

[0018] Its technical effect: the liquid heating wireless transmission system is applicable to a variety of liquid heating appliances.

[0019] Furthermore, the electric kettle structure comprises a kettle body and a heating plate, the first electronic circuit is placed in the kettle body, and the second electronic circuit is placed in the heating plate.

[0020] Each of the above further examples is an example. Each example can be used as an embodiment alone, or, on the premise of ensuring no contradiction, the examples can be arbitrarily combined to form a combined embodiment. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1This is a schematic diagram of the principle of the wireless transmission system for liquid heating of the present utility model;

[0022] Figure 2 This is a schematic structural diagram of an electric kettle according to the present invention.

[0023] Description of symbols in the accompanying drawings:

[0024] IC control system 1 Main control CPU 2 Sensor temperature acquisition 3 Wireless transmitter 4 Bluetooth signal transmission 4.1 Wireless signal receiver 5 Bluetooth signal reception 5.1 Controller 6 Voice control module 6.1 Control operation panel 6.2 Relay control 7 Thyristor control 8 Equipment 9 First electronic circuit 10 Second electronic circuit 11 Power supply 12 External power supply 12.1 Battery power supply 12.2 Voltage stabilization circuit 13 Electric kettle structure 14 Kettle body 14.1 Heating plate 14.2 DETAILED DESCRIPTION

[0025] The following describes in detail embodiments of the present invention, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended only to explain the present invention and are not to be construed as limiting the present invention. On the contrary, the embodiments of the present invention include all variations, modifications, and equivalents that fall within the spirit and scope of the appended claims.

[0026] like Figure 1As shown, the liquid heating wireless transmission system of this embodiment includes a first electronic circuit 10 connected to an IC control system 1, and a second electronic circuit 11 connected to a main control CPU 2. The first electronic circuit 10 and the second electronic circuit 11 are connected to a power supply 12. The IC control system 1 is connected to a sensor temperature acquisition 3 and a wireless transmitter 4 through the first electronic circuit 10. The sensor temperature acquisition 3 acquires temperature information, and the wireless transmitter 4 transmits the temperature information. The IC control system 1 receives the temperature information from the sensor temperature acquisition 3, and the IC control system 1 sends the temperature information through the wireless transmitter 4; the main control CPU 2 is connected to the second electronic circuit 11. It is connected to a wireless signal receiver 5, a controller 6, a relay control 7, a thyristor control 8, and a device 9. The wireless signal receiver 5 receives the temperature information of the wireless transmitter 4, and the wireless signal receiver 5 feeds back the temperature information to the main control CPU 2. The main control CPU 2 controls the relay control 7 and the thyristor control 8 at the same time. The relay control 7 and the thyristor control 8 control the device 9. The controller 6 controls the relay control 7 to turn on or off the power through the main control CPU 2, and controls the thyristor control 8 to increase or decrease the voltage, thereby controlling the temperature of the device 9 in real time. The first electronic circuit 10 is also connected to a Bluetooth signal transmitter 4.1, and the second electronic circuit 11 is also connected to a Bluetooth Signal receiving 5.1; the IC control system 1 of the first electronic circuit 10 sends temperature information through the Bluetooth signal transmitting 4.1, and the second electronic circuit 11 receives the temperature information sent by the Bluetooth signal transmitting 4.1 of the first electronic circuit 10 through the Bluetooth signal receiving 5.1. The first electronic circuit 10 and the second electronic circuit 11 are compatible with Bluetooth information transmission, which increases the versatility of the liquid heating wireless transmission system; the controller 6 of the second electronic circuit 11 has a voice control module 6.1 and a control operation screen 6.2. The voice control module 6.1 sends information through voice, and the control operation screen 6.2 sends information as a physical keyboard. The main control CPU 2 can receive both The information sent by the control operation mode; the power supply 12 connected to the second electronic circuit 11 is an external power supply 12.1, and the second electronic circuit 11 is connected to a voltage stabilizing circuit 13. The external power supply 12.1 supplies power to the main control CPU2 through the voltage stabilizing circuit 13, and the external power supply 12.1 supplies power to the relay control 7 and the device 9; the power supply 12 also has a battery power supply 12.2, and the battery power supply 12.2 supplies power to the first electronic circuit 10; when the relay control 7 is powered on, the thyristor control 8 is powered on; when the relay control 7 is powered off, the thyristor control 8 is powered off; when the thyristor control 8 increases the voltage, the temperature of the device 9 increases; when the thyristor control 8 reduces the voltage, the temperature of the device 9 decreases.

[0027] like Figure 2 As shown, the liquid heating wireless transmission system of this embodiment has an electric kettle structure 14, which has a kettle body 14.1 and a heating plate 14.2. The first electronic circuit 10 is placed in the kettle body 14.1, and the second electronic circuit 11 is placed in the heating plate 14.2.

[0028] The first electronic circuit 10 collects temperature information through the temperature acquisition sensor 3. The IC control system 1 organizes the temperature information and then transmits the temperature information through the wireless transmitter 4 or Bluetooth signal transmission 4.1. The second electronic circuit 11 receives the temperature information transmitted by the first electronic circuit 10 through the wireless signal receiver 5 or Bluetooth signal reception 5.1. The wireless signal receiver 5 or Bluetooth signal reception 5.1 that receives the temperature information feeds the information back to the main control CPU 2. The main control CPU sets the temperature of the device 9 according to the voice control module 6.1 and the control operation screen 6.2. When the temperature of the device 9 needs to rise, the relay control 7 energizes the thyristor control 8 to increase the voltage. When the temperature of the device 9 needs to drop, the thyristor control 8 reduces the voltage or even cuts off the power to the relay control 7. The electronic heating system is combined with wireless information transmission to improve performance and enhance the user experience.

Claims

1. A liquid heating wireless transmission system, comprising a first electronic circuit (10) connected to an IC control system (1), and a second electronic circuit (11) connected to a main control CPU (2), characterized in that: The first electronic circuit (10) and the second electronic circuit (11) are connected to a power supply (12); the IC control system (1) is connected to a sensor temperature acquisition (3) and a wireless transmitter (4) through the first electronic circuit (10); the sensor temperature acquisition (3) acquires temperature information; the wireless transmitter (4) transmits the temperature information; the IC control system (1) receives the temperature information from the sensor temperature acquisition (3); and the IC control system (1) sends the temperature information through the wireless transmitter (4); The main control CPU (2) is connected to a wireless signal receiver (5), a controller (6), a relay control (7), a thyristor control (8), and a device (9) via a second electronic circuit (11). The wireless signal receiver (5) receives temperature information from a wireless transmitter (4), and the wireless signal receiver (5) feeds back the temperature information to the main control CPU (2). The main control CPU (2) controls the relay control (7) and the thyristor control (8) simultaneously, and the relay control (7) and the thyristor control (8) control the device (9). The controller (6) controls the relay control (7) to turn on or off the power through the main control CPU (2), and controls the thyristor control (8) to increase or decrease the voltage, thereby controlling the temperature of the device (9) in real time.

2. The liquid heating wireless transmission system according to claim 1, characterized in that: The first electronic circuit (10) is also connected to a Bluetooth signal transmitter (4.1), and the second electronic circuit (11) is also connected to a Bluetooth signal receiver (5.1).

3. The liquid heating wireless transmission system according to claim 2, characterized in that: The IC control system (1) of the first electronic circuit (10) transmits temperature information via Bluetooth signal transmission (4.1), and the second electronic circuit (11) receives the temperature information transmitted by the Bluetooth signal transmission (4.1) of the first electronic circuit (10) via Bluetooth signal reception (5.1).

4. The liquid heating wireless transmission system according to claim 3, characterized in that: The controller (6) of the second electronic circuit (11) comprises a voice control module (6.1) and a control operation screen (6.2).

5. The liquid heating wireless transmission system according to claim 4, characterized in that: The power supply (12) connected to the second electronic circuit (11) is an external power supply (12.1). The second electronic circuit (11) is connected to a voltage stabilizing circuit (13). The external power supply (12.1) supplies power to the main control CPU (2) through the voltage stabilizing circuit (13). The external power supply (12.1) supplies power to the relay control (7) and the device (9).

6. The liquid heating wireless transmission system according to claim 5, characterized in that: The power supply (12) also has a battery power supply (12.2), which supplies power to the first electronic circuit (10).

7. The liquid heating wireless transmission system according to claim 5, characterized in that: When the relay control (7) is energized, the thyristor control (8) is energized; when the relay control (7) is de-energized, the thyristor control (8) is de-energized.

8. The liquid heating wireless transmission system according to claim 7, characterized in that: When the thyristor (8) controls the voltage to increase, the temperature of the device (9) increases; when the thyristor (8) controls the voltage to decrease, the temperature of the device (9) decreases.

9. The liquid heating wireless transmission system according to claim 1, characterized in that: The liquid heating wireless transmission system comprises an electric kettle structure (14).

10. The liquid heating wireless transmission system according to claim 9, characterized in that: The electric kettle structure (14) comprises a kettle body (14.1) and a heating plate (14.2). The first electronic circuit (10) is arranged in the kettle body (14.1), and the second electronic circuit (11) is arranged in the heating plate (14.2).