A smart skin-beautifying digital display water quality filtration monitoring device

The TDS testing and button switching functions of the intelligent skin-beautifying digital display water quality filtration monitoring device have solved the problem of water quality monitoring misjudgment, ensuring water safety and a good bathing experience.

CN116990478BActive Publication Date: 2026-01-06XIAMEN LANTI INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202311128963.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-09-04
Publication Date
2026-01-06
Estimated Expiration
2043-09-04

AI Technical Summary

Technical Problem

Users of existing water quality monitoring equipment rely on visual inspection or mechanical recording of months to determine water quality, leading to misjudgments due to differences in water quality across regions and affecting water safety.

Method used

Design an intelligent skin-beautifying digital display water quality filtration monitoring device. It uses a TDS test unit to monitor water quality in real time and feeds back the data through the display screen. Users can switch water paths with buttons to add fragrance or switch back to the original water path. The device is powered by a hydraulic motor and uses a temperature sensor to monitor water temperature, ensuring the accuracy of water quality monitoring and a good user experience.

Benefits of technology

It enables real-time monitoring and accurate feedback of water quality, avoids user misjudgment, improves water safety, and enhances the bathing experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application is suitable for the technical field of water quality monitoring, and provides an intelligent skin-beautifying digital-display water quality filtering monitoring device.The device body is provided with a water channel, and a plurality of independently arranged fixing shells are arranged on the lower side of the device body.A circuit board, a fragrance stick and a filtering material are sequentially arranged in the fixing shells.The fixing shell outside the circuit board is provided with a display screen, the display screen is connected with the circuit board, and a TDS testing unit is connected to the circuit board.The TDS testing unit is used for monitoring whether the water quality meets the requirements when the water passes through the water channel.The water quality monitoring data monitored by the TDS testing unit is intuitively fed back to the display screen, and the user can be timely prompted to replace the filter element, so as to solve the problems that the current water quality monitoring equipment of the market user adopts visual self-determination or mechanical month recording form, the water quality in different places is different, the user misjudgment is caused and the water safety is affected.
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Description

Technical Field

[0001] This invention relates to the field of water quality monitoring technology, and in particular to an intelligent digital display water quality filtration monitoring device. Background Technology

[0002] TDS stands for Total Dissolved Solids, which refers to the concentration of total dissolved solids in water, measured in milligrams per liter (mg / L). It primarily reflects the concentration of calcium in the water. 2+ MG 2+ Na + and K + The concentration of plasma has a good correlation with the hardness and conductivity of water. The TDS value can reflect the concentration of most harmful heavy metal ions in water.

[0003] In the field of water quality monitoring equipment, users currently rely on visual inspection or mechanical recording of months for judgment; however, variations in water quality across different regions can lead to misjudgments and affect water safety.

[0004] Based on this, the present invention designs an intelligent skin care digital display water quality filtration monitoring device to solve the above problems. Summary of the Invention

[0005] (a) Technical problems to be solved

[0006] The purpose of this invention is to provide an intelligent digital display water quality filtration monitoring device for skin care, aiming to solve the problems in the field of water quality monitoring equipment, such as users currently relying on visual judgment or mechanical recording of months; and the possibility of misjudgment due to varying water quality in different regions, which affects water safety.

[0007] (II) Technical Solution

[0008] Specifically: A smart skin-beautifying digital display water quality filtration and monitoring device includes a device body with a water channel. A spindle is installed inside the water channel. Multiple independently mounted housings are installed on the lower side of the device body. A circuit board, a fragrance stick, and a filter material are sequentially installed inside each housing. Water passes through the water channel and enters the filter material for filtration, ensuring water safety. A display screen is installed on the housing outside the circuit board and is connected to the circuit board. A TDS testing unit is connected to the circuit board to monitor water quality and ensure it meets requirements as water passes through the water channel. A button is installed between the circuit board and the TDS testing unit on the device body. The button is used to switch the water path when water passes through the water channel, allowing filtered water to exit through a fragrance-enhancing area, improving the bathing experience.

[0009] As water flows through the waterway, the TDS testing unit continuously monitors whether the water quality meets requirements. The water quality monitoring data monitored by the TDS testing unit is displayed intuitively on the screen, and it can promptly alert users to replace the filter cartridge. This solves the problem of current water quality monitoring devices relying on visual judgment or mechanical month recording, which can lead to misjudgments due to varying water quality in different regions, thus affecting water safety. When water flows through the waterway, if users want to add fragrance, they can switch the water path using a button, allowing filtered water to flow through the fragrance outlet to enhance the bathing experience. When the user turns off the button function, it automatically switches back to the original water path.

[0010] The technical solution of this application will be further described below:

[0011] In one embodiment, the device body has a hydraulic motor installed inside, which is powered by a hydraulic generator; a temperature sensing rod is installed inside the water channel on the side of the hydraulic motor; the temperature sensing rod is connected to the circuit board by a wire and is used to monitor the water temperature.

[0012] As water flows through the waterway, a temperature sensor is used to monitor the water temperature, and a display screen is used to monitor and display water quality data and the temperature of the flowing water in real time.

[0013] In one embodiment, the device body is provided with a connector one at one end and a connector two at the end of the device body away from connector one.

[0014] Connector 1 has a sealing ring installed at its connection with the device body, and connector 2 has a sealing ring installed at its connection with the device body; connector 1 has a connecting thread on its exterior, and connector 2 has a thread groove on its interior.

[0015] In one embodiment, a circular outer shell is mounted on the outer casing of the circuit board, and a rear cover is mounted on the inner side of the circular outer shell.

[0016] In one embodiment, a cover plate is installed on the device body at the button, the cover plate is fixed to the device body, and a spring is fixed on the device body inside the cover plate, with the end of the spring away from the device body fixed to the button.

[0017] In a further embodiment, the button is connected to a connecting plate inside the device body via a power transmission connection. The connecting plate is rotatably connected inside the device body and is arc-shaped. The end of the connecting plate away from the button acts on the spindle. The button is installed inside the device body with a connecting tube, and a sealing ring is connected to the outside of the connecting tube.

[0018] Therefore, when water flows through the water channel, if the user wants to add fragrance, the user can press the button. After the button moves downward, it will compress the spring. During the downward movement of the button, it will drive the connecting plate to rotate, thereby lifting the mandrel. This allows the user to switch the water path of the fragrance stick by pressing the button, and the filtered water will flow out through the fragrance-adding point to enhance the bathing experience. When the user turns off the water, there is no water pressure, and the mandrel will automatically spring back, automatically switching back to the original water path, and there will be no fragrance.

[0019] In the optimized embodiment, the mandrel is movably inserted inside the device body, and a second spring is provided inside the device body. The second spring is sleeved on the mandrel and is used to movably and elastically insert the mandrel inside the device body, so that it automatically rebounds when there is no water pressure.

[0020] The mandrel is movably fitted with sealing rings two, three, four, five, and six.

[0021] In one embodiment, a water distribution cover is provided on the fixed shell outside the filter material. The water distribution cover is installed on the device body, and a sealing ring is installed between the water distribution cover and the device body.

[0022] In one embodiment, a water separator is provided on the outer fixed shell of the fragrance stick, and a sealing gasket is installed at the connection between the water separator and the outer fixed shell of the fragrance stick; a check valve is installed inside the device body on the upper side of the fragrance stick, and a sealing ring is fitted on the outside of the check valve. The check valve is used to prevent the backflow of water after fragrance addition, which would cause the TDS test unit to misjudge the water quality.

[0023] (III) Beneficial Effects

[0024] Compared with existing technologies, this invention's intelligent skin-beautifying digital display water quality filtration and monitoring device filters water through a water channel before it enters the filter material for filtration, ensuring water safety. While the water is flowing through the channel, the TDS testing unit continuously monitors whether the water quality meets requirements. The water quality monitoring data monitored by the TDS testing unit is intuitively fed back to the display screen, and it can promptly alert the user to replace the filter cartridge. This solves the problem of current market water quality monitoring devices relying on visual judgment or mechanical month-based methods, which can lead to misjudgments due to varying water quality in different regions, thus affecting water safety. When the user needs fragrance enhancement, they can switch the water path using a button, allowing filtered water to flow through the fragrance-enhancing area, improving the bathing experience. When the user turns off the button, the device automatically reverts to the original water path. Attached Figure Description

[0025] Figure 1 This is a schematic diagram of the intelligent skin-beautifying digital display water quality filtration monitoring device of the present invention;

[0026] Figure 2This is a schematic cross-sectional view of the intelligent skin-beautifying digital display water quality filtration monitoring device of the present invention.

[0027] Figure 3 for Figure 1 A schematic diagram of the assembly structure of the middle connector and the display screen;

[0028] Figure 4 for Figure 2 A magnified schematic diagram of the TDS test unit in the middle section;

[0029] Figure 5 for Figure 2 Enlarged demonstration image of the mandrel in the open position;

[0030] Figure 6 for Figure 2 Enlarged demonstration image with the central spindle closed.

[0031] In the attached diagram:

[0032] 1. Connector 1, 2. Device body, 3. Connector 1 sealing ring, 4. Hydraulic motor, 5. Sealing ring 1, 6. Connecting pipe, 7. Cover plate, 8. Spring 1, 9. Button, 10. Connecting plate, 11. Spindle, 12. Sealing ring 2, 13. Sealing ring 3, 14. Spring 2, 15. TDS test unit, 16. Sealing ring 4, 17. Sealing ring 5, 18. Sealing ring 6, 19. Connector 2, 20. Connector 2 sealing ring, 21. Water distribution cover 1, 22. Filter material, 23. Water distribution cover 2, 24. Sealing gasket, 25. Fragrance rod, 26. Check valve, 27. Sealing ring 8, 28. Circular outer shell, 29. Back cover, 30. Circuit board, 31. Temperature sensing rod, 32. Display screen. Detailed Implementation

[0033] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention. The specific implementation of the invention will be described in detail below with reference to specific embodiments.

[0034] In embodiments of the present invention, such as Figure 1-4 As shown: A smart skin care digital display water quality filtration monitoring device includes a device body 2. The device body 2 has a water channel, and a spindle 11 is installed inside the water channel. Multiple independently set fixed shells are installed on the device body 2 below the water channel. Circuit board 31, fragrance rod 26 and filter material 23 are installed inside the multiple fixed shells in sequence.

[0035] It should be noted that the circuit board 31, the fragrance stick 26, and the filter material 23 are existing technologies. Their detailed structures can be found in existing literature and journals, and they can also be purchased directly on the market, or components can be purchased on the market to assemble them, etc. They are not protected by this invention, and will not be described in detail here, nor are they shown in the accompanying drawings.

[0036] The filter material 23 can be filter cotton, acrylic cotton, biochemical cotton, activated carbon, volcanic rock, ion exchange resin, etc. The specific material is not limited, as long as it can meet the filtration requirements. At the same time, it can be purchased directly on the market, and there are relevant descriptions in relevant journal articles. It is not what this invention is trying to protect, so it will not be described in detail here.

[0037] Therefore, after the water passes through the waterway, it enters the filter material 23 for filtration, providing safe water use;

[0038] A display screen 33 is installed on the outer fixed shell of the circuit board 31. The display screen 33 is connected to the circuit board 31. A TDS test unit 15 is connected to the circuit board 31. The TDS test unit 15 is used to monitor whether the water quality meets the requirements at all times when the water passes through the water channel.

[0039] Therefore, when water passes through the waterway, the TDS testing unit 15 can monitor whether the water quality meets the requirements at all times. The water quality monitoring data monitored by the TDS testing unit 15 is directly fed back to the display screen 33, and can promptly remind the user to replace the filter element. This solves the problem that the water quality monitoring equipment currently used by users in the market relies on visual judgment or mechanical recording of months, and the different water quality in different places leads to misjudgment by users, which affects water safety.

[0040] A button 9 is installed between the circuit board 31 and the TDS test unit 15. The button 9 is installed on the device body 2. The button 9 is used to switch the water path when water passes through the water channel, so that the filtered water is discharged through the fragrance-enhancing part to increase the bathing experience.

[0041] Therefore, when water flows through the waterway, if the user needs to add fragrance, the user can switch the water path using button 9 to let the filtered water flow through the fragrance-enhancing area, thus improving the bathing experience; when the user turns off the button function, it will automatically switch back to the original water path.

[0042] In embodiments of the present invention, such as Figure 2 As shown: The device body 2 has a hydraulic motor 4 installed inside it, and the hydraulic motor 4 is powered by a hydraulic generator.

[0043] A temperature sensing rod 32 is installed inside the water channel on the side of the hydraulic motor 4; the temperature sensing rod 32 is connected to the circuit board 31 by a wire, and the temperature sensing rod 32 is used to monitor the water temperature.

[0044] When water flows through the waterway, the temperature sensor 32 is used to monitor the water temperature, and the display screen 33 is used to monitor and display the water quality data and the water temperature at all times.

[0045] It should be noted that the temperature sensing rod 32 and the hydraulic motor 4 are existing technologies, and their detailed structures can be found in existing literature and journals. They can also be purchased directly on the market, or components can be purchased on the market to assemble them. They are not protected by this invention, and will not be described in detail here, nor are they shown in the accompanying drawings.

[0046] In embodiments of the present invention, such as Figure 1-3 As shown: The device body 2 has a connector 1 installed at one end, and a connector 29 installed at the end of the device body 2 away from the connector 1.

[0047] Connector 1 is fitted with a connector sealing ring 3 at its connection with the device body 2, and connector 2 is fitted with a connector sealing ring 20 at its connection with the device body 2.

[0048] Connector 1 has external connecting threads, and connector 2 has internal thread grooves.

[0049] In embodiments of the present invention, such as Figure 2 As shown: A circular outer shell 29 is installed on the outer fixed shell of the circuit board 31, and a rear cover 30 is installed on the inner side of the circular outer shell 29.

[0050] In embodiments of the present invention, such as Figure 2 As shown: A cover plate 7 is installed on the device body 2 at the button 9. The cover plate 7 is fixed on the device body 2. A spring 8 is fixed on the device body 2 inside the cover plate 7. The end of the spring 8 away from the device body 2 is fixed to the button 9.

[0051] In embodiments of the present invention, such as Figure 2 , 5 As shown in Figure 6: The button 9 is connected to a connecting plate 10 inside the device body 2 via power transmission. The connecting plate 10 is rotatably connected inside the device body 2. The connecting plate 10 is arc-shaped, and the end of the connecting plate 10 away from the button 9 acts on the spindle 11.

[0052] Button 9 has a connecting pipe 6 installed inside the device body 2, and a sealing ring 5 is connected to the outside of the connecting pipe 6.

[0053] Therefore, when water flows through the waterway, if the user needs to add fragrance, the user can press button 9. After button 9 moves downward, it will compress spring 8. During the downward movement of button 9, it will drive the connecting plate 10 to rotate, thereby lifting the spindle 11. This allows the user to switch the water path of the fragrance stick 26 via button 9, allowing the filtered water to flow out through the fragrance-adding area, enhancing the bathing experience (this process can be referenced). Figure 5When the user turns off the water, there is no water pressure, and the spindle 11 automatically springs back, automatically switching back to the original water path, without adding fragrance (this process can be referenced). Figure 6 ).

[0054] In embodiments of the present invention, such as Figure 2 , 5 As shown in Figure 6: The spindle 11 is movably inserted inside the device body 2, and a second spring 14 is provided inside the device body 2. The second spring 14 is sleeved on the spindle 11. The second spring 14 is used to movably and elastically insert the spindle 11 inside the device body 2, so that the spindle 11 automatically rebounds when there is no water pressure.

[0055] In embodiments of the present invention, such as Figure 2 , 5 As shown in Figure 6: The mandrel 11 is movably fitted with sealing rings 12, 13, 16, 17, and 18.

[0056] In embodiments of the present invention, such as Figure 2 As shown: A water distribution cover 22 is provided on the fixed shell outside the filter material 23. The water distribution cover 22 is installed on the device body 2. A sealing ring 21 is installed between the water distribution cover 22 and the device body 2.

[0057] In embodiments of the present invention, such as Figure 2 As shown: A water-dividing cover 24 is provided on the fixing shell on the outside of the fragrance stick 26, and a sealing gasket 25 is installed at the connection between the water-dividing cover 24 and the fixing shell on the outside of the fragrance stick 26.

[0058] A check valve 27 is installed inside the device body 2 on the upper side of the fragrance stick 26. A sealing ring 8 28 is fitted on the outside of the check valve 27. The check valve 27 is used to prevent the water after fragrance addition from flowing back, which would cause the TDS test unit 15 to misjudge the water quality.

[0059] In the field of water quality monitoring equipment, current market users rely on visual assessment or mechanical recording of months; however, varying water quality across different regions leads to misjudgments and other issues affecting water safety. This invention, the intelligent skin-beautifying digital display water quality filtration monitoring device, addresses these problems:

[0060] After water passes through the water channel, it enters the filter material 23 for filtration, ensuring water safety. While the water is flowing through the channel, the TDS testing unit 15 continuously monitors whether the water quality meets requirements. The water quality monitoring data monitored by the TDS testing unit 15 is directly displayed on the screen 33, and it can promptly alert the user to replace the filter cartridge. This addresses the current market issue where water quality monitoring devices rely on visual judgment or mechanical month-based methods, leading to misjudgments due to varying water quality in different regions, thus affecting water safety. If the user needs fragrance enhancement while the water is flowing through the channel, they can switch the water path using button 9, allowing the filtered water to flow through the fragrance-enhancing area, improving the bathing experience. When the user turns off button 9, the system automatically reverts to the original water path.

[0061] In the description of this invention, unless otherwise stated, "a plurality of" means two or more.

[0062] In the description of this invention, although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An intelligent skin care digital display water quality filtering monitoring device, characterized in that, comprising a device body (2), a water channel is formed on the device body (2), a mandrel (11) is installed inside the water channel, a plurality of independently arranged fixed shells are installed on the lower side of the device body (2), a circuit board (31), a fragrance stick (26) and a filtering material (23) are sequentially installed in the fixed shells; a connector one (1) is installed at one end of the device body (2), a connector two (19) is installed at the end of the device body (2) away from the connector one (1); the connector one (1) is close to the fixed shell where the circuit board (31) is installed; the connector two (19) is close to the fixed shell where the filtering material (23) is installed; water enters from the connector two (19), passes through the water channel, and then enters the filtering material (23) for filtering, providing safe water; A display screen (33) is installed on the fixed shell outside the circuit board (31), the display screen (33) is connected with the circuit board (31), a TDS testing unit (15) is connected to the circuit board (31), the TDS testing unit (15) is used to monitor whether the water quality meets the requirements at all times when the water passes through the water channel, and the water quality monitoring data monitored by the TDS testing unit (15) is intuitively fed back to the display screen; A key (9) is installed between the circuit board (31) and the TDS testing unit (15), and the key (9) is installed on the device body (2); a cover plate (7) is installed on the device body (2) at the key (9), the cover plate (7) is fixed on the device body (2), a spring one (8) is fixed on the device body (2) inside the cover plate (7), and an end of the spring one (8) away from the device body (2) is fixed on the key (9); the key (9) is power transmission connected with a connecting plate (10) inside the device body (2), the connecting plate (10) is rotationally connected inside the device body (2), the connecting plate (10) is in an arc shape, and an end of the connecting plate (10) away from the key (9) acts on the mandrel (11); when the water passes through the water channel, if the user needs to add fragrance, the user presses down the key (9), the key (9) moves downward to press the spring one (8), and the key (9) drives the connecting plate (10) to rotate in the process of moving downward, so that the mandrel (11) is lifted up, the water path of the fragrance stick (26) is switched through the key (9), the filtered water passes through the fragrance adding place to be discharged, and the bathing experience is improved; A water distribution cover two (24) is arranged on the fixed shell outside the fragrance stick (26), and a sealing gasket (25) is installed on the fixed shell where the water distribution cover two (24) is connected with the fragrance stick (26); a check valve (27) is installed inside the device body (2) on the upper side of the fragrance stick (26), a sealing ring eight (28) is sleeved outside the check valve (27), and the check valve (27) is used to avoid the backflow of the water after adding fragrance, so as to avoid the water quality monitoring error of the TDS testing unit (15).

2. The intelligent skin care digital display water quality filtering monitoring device according to claim 1, characterized in that, ​ The device body (2) is internally provided with a hydraulic motor (4), which is self-powered by a hydroelectric generator; A temperature sensing rod (32) is internally provided in the water channel at the side of the hydraulic motor (4); the temperature sensing rod (32) is connected to a circuit board (31) through a wire, and is used for monitoring the water temperature.

3. The intelligent skin care digital display water quality filtering monitoring device according to claim 1, characterized in that, The joint one (1) is provided with a joint one sealing ring (3) at the connection with the device body (2), and the joint two (19) is provided with a joint two sealing ring (20) at the connection with the device body (2). The joint one (1) is externally provided with a connecting thread, and the joint two (19) is internally provided with a threaded groove.

4. The intelligent skin care digital display water quality filtering monitoring device according to claim 1, characterized in that, A circular shell (29) is mounted on the external fixed shell of the circuit board (31), and a rear cover (30) is mounted on the inner side of the circular shell (29).

5. The intelligent skin care digital display water quality filtering monitoring device according to claim 1, characterized in that, The connecting pipe (6) is internally provided with a sealing ring one (5) at the outside.

6. The intelligent skin care digital display water quality filtering monitoring device according to claim 5, characterized in that, The core shaft (11) is movably inserted into the device body (2) and is provided with a spring two (14) inside the device body (2), the spring two (14) is sleeved on the core shaft (11), and the spring two (14) is used for movably and elastically inserting the core shaft (11) into the device body (2), so as to automatically rebound without water pressure.

7. The intelligent skin care digital display water quality filtering monitoring device according to claim 6, characterized in that, The core shaft (11) is movably sleeved with a sealing ring two (12), a sealing ring three (13), a sealing ring four (16), a sealing ring five (17) and a sealing ring six (18).

8. The intelligent skin care digital display water quality filtering monitoring device according to claim 1, characterized in that, The fixed shell on the outside of the filtering material (23) is provided with a water distribution cover one (22), which is mounted on the device body (2) and is provided with a sealing ring seven (21) between the water distribution cover one (22) and the device body (2).

Citation Information

Patent Citations

  • Intelligent skin-beautifying digital display water quality filtration monitoring device

    CN220709143U