Water quality detection and control system for water anion health care machine

By integrating TDS detection and water level detection modules, and automatically adjusting the working status of the water negative ion emission module, the problem of inaccurate water quality monitoring in health and wellness machines is solved, achieving precise monitoring and intelligent control of water quality, and improving user experience and equipment stability.

CN223837140UActive Publication Date: 2026-01-27ZHEJIANG SHUILITCHI HEALTH TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422580675.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2026-01-27
Estimated Expiration
2034-10-24

AI Technical Summary

Technical Problem

Existing water negative ion generators lack water quality testing methods in health and wellness machines, resulting in inaccurate water quality monitoring and control, which affects the effectiveness and user experience.

Method used

It integrates a TDS detection module, a water level detection module, and a water negative ion control module. It automatically adjusts the working status of the water negative ion emission module based on changes in TDS value and issues an alarm when necessary to ensure water quality monitoring and maintenance.

Benefits of technology

It enables precise monitoring and control of water quality, improves the water quality management level and user experience of health and wellness machines, provides timely warnings of potential water quality problems, and ensures stable operation of the equipment.

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Patent Text Reader

Abstract

The utility model provides a water quality detection and control system for a water negative ion health care machine, the core of the system is a water negative ion control module, and the module intelligently controls the start and stop of a water negative ion emission module according to data detected by a TDS (Total Dissolved Solids) probe. The system design ensures that negative ions are automatically emitted to optimize the water quality when the TDS value of the water quality is appropriate, and the emission is stopped and an alarm is triggered when the TDS value exceeds the standard, so that the water quality is maintained and a user is warned in time, and accurate monitoring and maintenance of the water quality are realized. According to the water quality detection and control system for the water negative ion health care machine, accurate monitoring and intelligent control of water quality are achieved, the water quality and user experience are effectively improved, meanwhile, potential water quality problems are alarmed in time, and energy conservation, environmental protection and long-term stable operation of equipment are guaranteed.
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Description

Technical Field

[0001] This utility model belongs to the field of water treatment technology, and in particular relates to a water quality detection and control system for a water negative ion health machine. Background Technology

[0002] Existing water negative ion generators have some shortcomings in practical applications. They cannot reflect water quality conditions, especially in devices like health and wellness machines that have high water quality requirements, necessitating a more precise control system to monitor and control water quality. However, current water negative ion generators lack water quality detection methods, meaning that when there are many impurities in the water, the release of negative ions carried by water droplets cannot be guaranteed. This leads to inaccurate water quality monitoring and control, affecting the effectiveness of health and wellness machines and the user experience. Utility Model Content

[0003] The purpose of this invention is to overcome the shortcomings of existing technologies and provide a water quality detection and control system for a water negative ion health care machine. By integrating a TDS detection module, a water level detection module, and a water negative ion control module, it achieves precise monitoring and control of water quality. This system can automatically adjust the working state of the water negative ion emission module according to changes in TDS values, ensuring water quality monitoring and maintenance. It also alerts users to water quality issues when necessary, thereby improving the water quality management level and user experience of the health care machine.

[0004] This utility model provides a water quality detection and control system for a water negative ion health care machine, which includes: a TDS detection module, a water level detection module, a water negative ion control module, a first water negative ion control signal line, a water negative ion emission module, a water tank and water pipes, and an alarm.

[0005] The TDS detection module is used to detect the TDS value of the water in the water tank. The TDS detection module is communicatively connected to the water negative ion control module. The water negative ion control module is used to sample the TDS value detected by the TDS detection module. The water negative ion control module then uses the sampled TDS value to further control the water negative ion emission module. The water negative ion control module is communicatively connected to the water negative ion emission module through the first water negative ion control signal line. The water pipe of the water negative ion emission module is connected to the water tank so that water in the water tank can be supplied to the water negative ion emission module. The water level detection module is set inside the water tank to detect the water level in the water tank. The alarm is used to issue an alarm for substandard water quality when the TDS value detected by the TDS detection module is greater than a preset value.

[0006] Preferably, the TDS detection module includes a TDS probe and a TDS signal line, wherein the TDS probe is located at the bottom of the water tank and is used to detect the TDS value of the water.

[0007] Preferably, the TDS signal line is connected to one end of the TDS probe, and the other end of the TDS signal line is communicatively connected to the water negative ion control module.

[0008] Preferably, the water negative ion control module is connected to at least three types of signal lines: a TDS signal line, a first water negative ion control signal line, and a second water negative ion control signal line.

[0009] Preferably, the two ends of the TDS signal line are respectively communicatively connected to the water negative ion control module and the TDS probe, the two ends of the second water negative ion control signal line are respectively communicatively connected to the water negative ion control module and the alarm, and the two ends of the first water negative ion control signal line are respectively communicatively connected to the water negative ion control module and the water negative ion emitting module.

[0010] Preferably, the water level detection module detects the water level at the location through one or more of the following methods: magnetic levitation valve level detection, capacitor test level detection, and photoelectric test level detection.

[0011] Preferably, the device of the alarm is selected from one of the following: display screen, speaker, buzzer, LED light.

[0012] This invention provides a water quality detection and control system for a water negative ion health care machine. The water negative ion control module collects data detected by the TDS probe via a TDS signal line to determine whether the water negative ion emission module should be activated. For example, when the TDS value of the water in the tank drops to 0 or below, and the water level detection module confirms that there is water in the tank, the control module sends a command via the first water negative ion control signal line to activate the water negative ion emission module, causing it to emit negative ions into the tank through the water pipe. In another scenario, when the TDS value of the water in the tank is between 0 and a preset value, such as 60 mg / L, the control module sends a signal via the first water negative ion control signal line to activate the water negative ion emission module. However, if the TDS value of the water in the tank exceeds the preset value of 60 mg / L, the control module will not send any signal to the water negative ion emission module, stopping it from emitting negative ions, and will instead send a signal to the alarm via the second water negative ion control signal line, triggering the alarm to issue a water quality failure warning. These measures ensure water quality monitoring and maintenance, and also remind users of water quality issues when necessary. Attached Figure Description

[0013] The present invention will be further described with reference to the accompanying drawings, but the content of the drawings does not constitute any limitation on the present invention.

[0014] Figure 1 This is a schematic diagram of a water quality detection and control system for a water negative ion health machine provided by this utility model. Detailed Implementation

[0015] This application will be described in further detail with reference to the accompanying drawings and specific embodiments.

[0016] A water quality detection and control system for a water negative ion health care machine includes: a TDS detection module, a water level detection module 201, a water negative ion control module 301, a first water negative ion control signal line 302, a second water negative ion control signal line 303, a water negative ion emission module 401, a water tank 501, a water pipe 601, and an alarm 701.

[0017] The TDS detection module is used to detect the TDS value of the water body. The TDS detection module is communicatively connected to the water negative ion control module 301. The water negative ion control module 301 is a circuit control module and is used to sample the TDS value detected by the TDS detection module. The water negative ion control module 301 then uses the sampled TDS value to further control the water negative ion emission module 401. The water negative ion control module 301 is communicatively connected to the water negative ion emission module 401 through the first water negative ion control signal line 302. The water negative ion emission module 401 is connected to the water tank 501 through a water pipe 601.

[0018] A water level detection module 201 is installed inside a water tank 501, which stores water. The water level detection module 201 is used to detect the water level in the tank. The water level detection module 201 can detect the water level at this location through one or more of the following methods: such as magnetic levitation valve level detection, capacitive level detection, photoelectric level detection, etc., with magnetic levitation valve level detection being preferred.

[0019] The TDS detection module includes one or more TDS probes 101 and a TDS signal line 102. The one or more TDS probes 101 are primarily made of two conductive metal materials and are located at the bottom of the water tank 501. The one or more TDS probes 101 are submerged in water to detect the TDS value of the water. The TDS signal line 102 is communicatively connected to one end of the TDS probes 101, and the other end of the TDS signal line 102 is communicatively connected to the water negative ion control module 301.

[0020] The water negative ion control module 301 is connected to at least three types of signal lines: a TDS signal line 102, a first water negative ion control signal line 302, and a second water negative ion control signal line 302. Specifically, the two ends of the TDS signal line 102 are communicatively connected to the water negative ion control module 301 and the TDS probe 101, respectively; the two ends of the second water negative ion control signal line 302 are communicatively connected to the water negative ion control module 301 and the alarm 701, respectively; and the two ends of the first water negative ion control signal line 301 are communicatively connected to both the water negative ion control module 301 and the water negative ion control module 301.

[0021] One end of the first water negative ion control signal line 302 is communicatively connected to the water negative ion control module 301, and the other end is communicatively connected to the water negative ion emission module 401. One end of the water negative ion emission module 401 is communicatively connected to the first water negative ion control signal line 302, and the other end is assembled and connected to the water pipe 601. One end of the water pipe 601 is assembled and connected to the water negative ion emission module 401, and the other end is assembled and connected to the water tank 501.

[0022] The following embodiments further illustrate the specific operational process of this application:

[0023] Example 1.

[0024] When the water negative ion control module 301 samples the TDS value of the water in the water tank 501 detected by the TDS probe 101 through the TDS signal line 102 and it is less than or equal to 0, and at this time the water level detection module 201 detects that there is water in the water tank 501, the water negative ion control module 301 sends a control signal to the water negative ion emission module 401 through the first water negative ion control signal line 302, so that the water negative ion emission module 401 starts to work, that is, the water negative ion emission module 401 starts to emit negative ions into the water tank 501 through the water pipe 601.

[0025] Example 2.

[0026] When the water negative ion control module 301 samples the TDS value of the water in the water tank 501 detected by the TDS probe 101 through the TDS signal line 102 and finds that it is less than the preset value, such as 60 mg / L and greater than 0, and the water level detection module 201 detects that there is water in the water tank 501, the water negative ion control module 301 will send a control signal to the water negative ion emission module 401 through the first water negative ion control signal line 302, so that the water negative ion emission module 401 starts to work, that is, the water negative ion emission module 401 starts to emit negative ions into the water tank 501 through the water pipe 601.

[0027] Example 3.

[0028] When the water negative ion control module 301 samples the TDS value of the water in the water tank 501 detected by the TDS probe 101 through the TDS signal line 102 and finds it to be greater than a preset value, such as 60 mg / L, the water level detection module 201 does not need to detect whether there is water in the water tank 501. The water negative ion control module 301 stops transmitting control signals to the water negative ion emission module 401 through the first water negative ion control signal line 302, and the water negative ion emission module 401 stops working, that is, it stops emitting negative ions into the water tank 501 through the water pipe 601. Simultaneously, the water negative ion control module 301 transmits an alarm signal to the alarm 701 through the second water negative ion control signal line 303, causing the alarm 701 to issue an alarm message indicating that the water quality is substandard.

[0029] It is understood that the above preset values ​​are only examples and do not limit the present invention. In other embodiments, the TDS value may also be 30 mg / L, 50 mg / L, etc.

[0030] The components that can be selected for the alarm 701 include, but are not limited to, OLED displays, speakers, buzzers, LED lights, etc. In short, any device that can perform an alarm function can be considered.

[0031] This invention provides a water quality detection and control system for a water negative ion health machine, achieving precise monitoring and intelligent control of water quality, effectively improving water quality and user experience, while promptly alerting to potential water quality problems, ensuring energy conservation, environmental protection, and long-term stable operation of the equipment. Extensive testing shows that compared to water with low TDS values ​​(e.g., TDS less than 60 mg / L), water with high TDS values ​​exhibits a higher number of negative ions emitted by the water negative ion emission module 401 at the same testing distance, with lower TDS values.

[0032] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model and are not intended to limit the scope of protection of this utility model. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the essence and scope of the technical solutions of this utility model.

Claims

1. A water quality detection and control system for a water negative ion health machine, characterized in that, include: The system comprises a TDS detection module, a water level detection module, a negative ion control module, a first negative ion control signal line, a negative ion emission module, a water tank, and an alarm. The TDS detection module detects the TDS value of the water in the water tank and is communicatively connected to the negative ion control module. The negative ion control module samples the TDS value detected by the TDS detection module and then uses the sampled TDS value to control the negative ion emission module. The negative ion control module is communicatively connected to the negative ion emission module via the first negative ion control signal line. The negative ion emission module's water pipe is connected to the water tank, allowing water from the tank to be supplied to the negative ion emission module. The water level detection module is located inside the water tank and detects the water level. The alarm issues a warning when the TDS value detected by the TDS detection module exceeds a preset value, indicating that the water quality is substandard.

2. The water quality detection and control system for a water negative ion health machine as described in claim 1, characterized in that, The TDS detection module includes a TDS probe and a TDS signal line, wherein the TDS probe is located at the bottom of the water tank and is used to detect the TDS value of the water.

3. The water quality detection and control system for a water negative ion health machine as described in claim 2, characterized in that, The TDS signal line is connected to one end of the TDS probe, and the other end of the TDS signal line is connected to the water negative ion control module.

4. The water quality detection and control system for a water negative ion health machine as described in claim 2, characterized in that, The water negative ion control module is connected to at least three types of signal lines: TDS signal line, first water negative ion control signal line, and second water negative ion control signal line.

5. The water quality detection and control system for a water negative ion health machine as described in claim 4, characterized in that, The two ends of the TDS signal line are respectively connected to the water negative ion control module and the TDS probe, the two ends of the second water negative ion control signal line are respectively connected to the water negative ion control module and the alarm, and the two ends of the first water negative ion control signal line are respectively connected to the water negative ion control module and the water negative ion emission module.

6. The water quality detection and control system for a water negative ion health machine as described in claim 1, characterized in that, The water level detection module detects the water level in the water tank through one or more of the following methods: magnetic levitation valve level detection, capacitor level detection, and photoelectric level detection.

7. The water quality detection and control system for a water negative ion health machine as described in claim 1, characterized in that, The alarm device can be selected from one of the following components: display screen, speaker, buzzer, or LED light.