Faucet and mineralization equipment

By introducing acquisition modules and display components into the faucets, real-time detection and displaying water quality data is solved, and real-time monitoring and intuitive display of water quality is achieved.

CN222836392UActive Publication Date: 2025-05-06GUANGDONG LIZI TECH CO LTD
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Patent Information

Application Number
CN202520570672.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-28
Publication Date
2025-05-06
Estimated Expiration
2035-03-28

AI Technical Summary

Technical Problem

The existing faucet cannot display the current effluent status when outputting pure water or mineralized water, and cannot monitor the water quality in real time.

Method used

A faucet is designed, including pure water and mineralized waterways, equipped with acquisition modules and display components. Obtain the module to detect water quality data in real time, and display components display the type of mineralized substances or the state of pure water effluent based on the detection results.

Benefits of technology

It realizes the real-time display of the current water outlet status when outputting pure water or mineralized water, enhances users' intuitive understanding of water quality and improves the convenience of using the faucet.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of faucets, in particular to a faucet and mineralization equipment. The faucet comprises a faucet body, and the faucet body comprises a pure water path and a mineralized water path. The mineralized water path and the pure water path are both connected with the faucet main body; the acquisition module is used for acquiring water quality detection data of the mineralized waterway or / and the pure water waterway; the display component is arranged on the faucet body, and a first display area used for displaying the types of mineralized substances when the mineralized water is output and the water quality detection data is larger than a first preset value is arranged on the display component. The second display area is used for displaying the water outlet state of the pure water when the pure water is output and the water quality detection data is smaller than a second preset value. By means of the faucet, a user can observe the quality of current outlet water more visually.
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Description

Technical Field

[0001] The utility model relates to the field of faucets, in particular to a faucet and mineralization equipment. Background Art

[0002] At present, as people's living standards continue to improve, they pay more and more attention to drinking water. The water that people can drink can be roughly divided into tap water, purified water, and mineral water. Tap water contains impurities, bacteria, and heavy metal pollution. Purified water is acidic and does not balance the acid-base balance of the human body. At present, the faucet in the relevant technology cannot display the current water status when it is discharging purified water or mineralized water. Utility Model Content

[0003] In view of this, the utility model provides a faucet and a mineralization device. The faucet can display the current water discharge status of the faucet.

[0004] The utility model provides the following technical solutions:

[0005] A faucet, comprising:

[0006] The faucet body comprises: a pure water channel and a mineralized water channel; the mineralized water channel and the pure water channel are both connected to the faucet body;

[0007] An acquisition module, the acquisition module is used to acquire water quality detection data of the mineralized waterway and / or the pure water waterway;

[0008] A display component is arranged on the faucet body, and is provided with a first display area for displaying the type of mineralized substance when mineralized water is output and the water quality detection data is greater than a first preset value, and a second display area for displaying the pure water output status when pure water is output and the water quality detection data is less than a second preset value.

[0009] Further, the acquisition module includes a first acquisition unit and a second acquisition unit;

[0010] The first acquisition unit is used to acquire the pH value and / or TDS value of the pure water channel, and the second acquisition unit is used to acquire the pH value and / or TDS value of the mineralized water channel.

[0011] Furthermore, the display component includes any one or more of a signal display area, a PH display area, a touch area, and a mineral display area.

[0012] Furthermore, the PH display area is provided with a light bar, and the light bar is lit to a corresponding length according to the current PH value.

[0013] Further, the first display area and the second display area are both arranged in the mineral display area;

[0014] The first display area has a first trigger switch area for controlling the faucet to output mineralized water, and the second display area has a second trigger switch area for controlling the faucet body to output pure water.

[0015] Furthermore, the faucet further comprises: an RO filter element and a mineralized filter element;

[0016] The RO filter element and the mineralized filter element are arranged in the faucet body, or the RO filter element and the mineralized filter element are arranged outside the faucet body, the RO filter element is connected to the pure water waterway, and the mineralized filter element is connected to the mineralized waterway.

[0017] Furthermore, it also includes: a chip and a reading module;

[0018] The RO filter element and the mineralized filter element are both provided with chips, and the faucet body is provided with a reading module, and the reading module is used to obtain information of the RO filter element and the mineralized filter element.

[0019] Furthermore, it also includes: a controller;

[0020] The controller is arranged in the faucet, and is respectively connected to the first acquisition unit, the second acquisition unit, and the display component; the controller is used to acquire the TDS value and / or PH value of the first acquisition unit and the second acquisition unit and output them to the display component for display.

[0021] Furthermore, it also includes: a wireless communication module;

[0022] The wireless communication module is connected to the controller, and the wireless communication module is used for wireless communication with the terminal device.

[0023] The present application also provides a mineralization device, the mineralization device comprising:

[0024] The device body and the faucet, wherein the faucet is connected to the device body.

[0025] The faucet body includes: a pure water channel and a mineralized water channel, wherein the pure water channel is used to input pure water into the faucet body, and the mineralized water channel is used to input mineralized water into the faucet body, and acquisition modules are arranged on both the mineralized water channel and the pure water channel; the acquisition module can obtain the TDS value (the total amount of solids dissolved in water) on the pure water channel and / or the mineralized water channel; the display component is arranged on the faucet body, and a first display area and a second display area are arranged on the display component; specifically, when the faucet is outputting mineralized water, the acquisition module can obtain the TDS value of the current output water flow of the mineralized water channel, and when the acquisition module obtains that the TDS value of the current output water flow of the mineralized water channel is greater than a first preset value, the first display area lights up and displays the type of mineralized substance (the types of mineralized substances may include: strontium, magnesium, calcium , potassium, sodium, metasilicate, etc.); when the acquisition module obtains that the TDS value of the current mineralized water channel output water flow is less than or equal to the first preset value, the first display area will not be displayed; when the faucet is outputting pure water, the acquisition module can obtain the TDS value of the current pure water channel output water flow, and when the acquisition module obtains that the TDS value of the current pure water channel output water flow is less than the second preset value, the second display area will light up and display the water output status of the pure water; when the acquisition module obtains that the TDS value of the current pure water channel output water flow is greater than or equal to the second preset value, the second display area will not be displayed; in this way, the purpose of reminding the user can be achieved by displaying or not displaying when outputting pure water or mineralized water in the first display area and the second display area, so that the user can more intuitively observe the quality of the current water output. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] In order to more clearly illustrate the technical solution of the embodiments of the utility model, the drawings required for use in the implementation mode will be briefly introduced below. Obviously, the drawings described below are some implementation modes of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.

[0027] Figure 1 One of the structural schematic diagrams of the faucet provided in the embodiment of the utility model;

[0028] Figure 2 A schematic diagram of the structure of a display component provided by an embodiment of the utility model;

[0029] Figure 3 The second structural schematic diagram of the faucet provided by the embodiment of the utility model;

[0030] Figure 4 A schematic diagram of the structure of the filter element provided in the embodiment of the utility model;

[0031] Figure 5 A schematic structural diagram of a mineralization device provided in an embodiment of the utility model.

[0032] Description of reference numerals:

[0033] 100-faucet; 10-faucet body; 11-pure water circuit; 12-mineralized water circuit; 20-acquisition module; 21-first acquisition unit; 22-second acquisition unit; 30-display component; 31-first display area; 32-second display area; 33-signal display area; 34-PH display area; 35-touch area; 36-mineral display area; 40-light bar; 50-RO filter element; 51-mineralized filter element; 60-chip; 61-reading module; 70-controller; 80-wireless communication module; 200-mineralization equipment; 210-equipment body. DETAILED DESCRIPTION

[0034] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0035] The terms "first", "second", etc. in the specification and claims of the present utility model and the above-mentioned drawings are used to distinguish different objects, rather than to describe a specific order. In addition, the terms "including" and "having" and any of their variations are intended to cover non-exclusive inclusions. For example, a process, method, system, product or device that includes a series of steps or units is not limited to the listed steps or units, but optionally includes steps or units that are not listed, or optionally includes other steps or units inherent to these processes, methods, products or devices.

[0036] Reference to "embodiment" or "implementation method" herein means that the specific features, structures or characteristics described in conjunction with the embodiment or implementation method may be included in at least one embodiment of the utility model. The appearance of the phrase in various places in the specification does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment that is mutually exclusive with other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0037] At present, as people's living standards continue to improve, they pay more and more attention to drinking water. The water that people can drink can be roughly divided into tap water, purified water, and mineral water. Tap water contains impurities, bacteria, and heavy metal pollution. Purified water is acidic and does not balance the acid-base balance of the human body. The faucet in the current related technology cannot display the current water status when it is discharging purified water or mineralized water. The current water status of the faucet cannot be displayed when discharging water.

[0038] At the same time, the faucet cannot detect the water quality, so the user is not clear about the water quality of the faucet when receiving water from the faucet.

[0039] In view of this, the present embodiment provides a faucet that can display the current water discharge status of the faucet.

[0040] See also Figure 1 and Figure 2 , a faucet 100, comprising:

[0041] The faucet body 10 includes: a pure water channel 11 and a mineralized water channel 12; the mineralized water channel 12 and the pure water channel 11 are both connected to the faucet body 10;

[0042] An acquisition module 20, the acquisition module 20 is used to acquire water quality detection data of the mineralized water channel 12 and / or the pure water water channel 11;

[0043] The display component 30 is arranged on the faucet body 10, and is provided with a first display area 31 for displaying the type of mineralized substance when mineralized water is output and the water quality detection data is greater than a first preset value, and a second display area 32 for displaying the pure water output status when pure water is output and the water quality detection data is less than a second preset value.

[0044] The faucet body 10 includes: a pure water channel 11 and a mineralized water channel 12, wherein the pure water channel 11 is used to input pure water into the faucet body 10, and the mineralized water channel 12 is used to input mineralized water into the faucet body 10, and an acquisition module 20 is provided on both the mineralized water channel 12 and the pure water channel 11; the acquisition module 20 can obtain the TDS value (the total amount of dissolved solids in water) on the pure water channel 11 and / or the mineralized water channel 12; the display component 30 is provided on the faucet body 10, and a first display area 31 and a second display area 32 are provided on the display component 30.

[0045] Specifically, when the faucet 100 is outputting mineralized water, the acquisition module 20 can acquire the TDS value of the water flow currently output by the mineralized water path 12. When the acquisition module 20 acquires that the TDS value of the water flow currently output by the mineralized water path 12 is greater than the first preset value, the first display area 31 lights up and displays the type of mineralized substance (the types of mineralized substances may include: strontium, magnesium, calcium, potassium, sodium, meta-silicon, etc.); when the acquisition module 20 acquires that the TDS value of the water flow currently output by the mineralized water path 12 is less than or equal to the first preset value, the first display area 31 does not display;

[0046] When the faucet 100 is outputting pure water, the acquisition module 20 can obtain the TDS value of the water flow currently output by the pure water waterway 11. When the acquisition module 20 obtains that the TDS value of the water flow currently output by the pure water waterway 11 is less than the second preset value, the second display area 32 lights up and displays the water output status of the pure water; when the acquisition module 20 obtains that the TDS value of the water flow currently output by the pure water waterway 11 is greater than or equal to the second preset value, the second display area 32 does not display.

[0047] In this way, the purpose of reminding the user can be achieved by displaying or not displaying when pure water or mineralized water is being output through the first display area 31 and the second display area 32, so that the user can observe the quality of the current output water more intuitively.

[0048] It should be noted that the pure water output by the pure water circuit 11 is pure water filtered by the filter element, and the mineralized water output by the mineralized water circuit 12 is mineralized water filtered by the mineralized filter element 51; the first preset value and the second preset value can be a preset TDS value or a preset PH value.

[0049] See also Figure 1 , in some embodiments, the acquisition module 20 includes: a first acquisition unit 21 and a second acquisition unit 22;

[0050] The first acquisition unit 21 is used to acquire the pH value and / or TDS value of the pure water channel 11 , and the second acquisition unit 22 is used to acquire the pH value and / or TDS value of the mineralized water channel 12 .

[0051] It can be understood that the acquisition module 20 includes: a first acquisition unit 21 and a second acquisition unit 22; wherein the first acquisition unit 21 can be set on the pure water waterway 11, so that the first acquisition unit 21 can acquire the TDS value of the pure water output by the pure water waterway; in this way, when the first acquisition unit 21 acquires the TDS value of the pure water waterway 11 and compares it with the second preset value, the second display area 32 can be opened or closed; specifically, the first acquisition unit 21 can acquire the TDS value of the water flow output by the pure water waterway 11, and the first acquisition unit 21 acquires When the TDS value of the water flow output by the current pure water waterway 11 is less than the second preset value, it means that the impurity content of the water flow output by the pure water waterway 11 is relatively low, and the second display area 32 lights up and displays the water outlet status of the pure water, so as to prompt the user that the current water outlet status of the pure water waterway 11 is normal; when the first acquisition unit 21 obtains that the TDS value of the water flow output by the current pure water waterway 11 is greater than or equal to the second preset value, it means that the impurity content of the water flow output by the pure water waterway 11 is relatively high, and the second display area 32 does not display, so as to prompt the user that the current water outlet status of the pure water waterway 11 is abnormal.

[0052] The second acquisition unit 22 can be set on the mineralized water channel 12, and the TDS value of the mineralized water output by the mineralized water channel 12 can be obtained through the second acquisition unit 22; thus, after the second acquisition unit 22 obtains the TDS value of the mineralized water channel 12 and compares the obtained TDS value with the first preset value, the first display area 31 can be opened or closed; specifically, when the second acquisition unit 22 obtains that the TDS value of the water flow output by the current mineralized water channel 12 is greater than the first preset value, it indicates that the content of minerals in the water flow output by the mineralized water channel 12 meets the standard, and the first display area 31 is turned on or off. The display area 31 lights up and displays the type of mineralized substance; when the second acquisition unit 22 obtains that the TDS value of the current output water flow of the mineralized water channel 12 is less than or equal to the first preset value, it means that the content of minerals in the output water flow of the mineralized water channel 12 is lower than the standard, and the first display area 31 does not display, to remind that the water output of the mineralized water channel 12 is abnormal. In this way, the user can more intuitively observe whether the water quality of the current output water of the pure water channel 11 or the mineralized water channel 12 meets or does not meet the corresponding standard by checking whether the first display area 31 is displayed and the second display area 32 is displayed.

[0053] Optionally, the first acquisition unit 21 and the second acquisition unit 22 are both TDS sensors. The total dissolved solids (TDS) content in water is measured by two TDS sensors, which can make water quality detection more accurate. At the same time, the TDS sensor is simple in design and can directly output a digital signal to be displayed through the display component 30, which can improve the reliability of the faucet 100. The TDS sensor can convert the TDS value into a pH value after calculation by the controller 70, so that the pH value and TDS value can be obtained only through the TDS sensor.

[0054] See also Figure 2 In some embodiments, the display component 30 includes any one or more of a signal display area 33 , a PH display area 34 , a touch area 35 , and a mineral display area 36 .

[0055] It can be understood that in order to facilitate observation and control of the display component 30, the display module is divided into a plurality of display areas. Specifically, the display module can be divided into a signal display area 33, a PH display area 34, a touch area 35, and a mineral display area 36; wherein the signal display area 33 is used to display the current network connection status of the faucet 100; the PH display area 34 is used to display the specific value of the current PH / TDS display area; specifically, the PH display area 34 is set in a bar shape, and a PH value is set on the bar-shaped PH display area 34. When the first acquisition unit 21 or the second acquisition unit 22 acquires the PH value of the current water outlet, it can be displayed through the PH value display area. , the user can observe the current pH value of the water more intuitively through the strip display area; the touch area 35 is provided with a quantitative water dispensing button, which can output a certain amount of water after being pressed once, for example: 300ML of pure water or mineralized water can be output after pressing the quantitative water dispensing button once, and 600ML of pure water or mineralized water can be output after pressing the quantitative water dispensing button twice, and N*300ML of pure water or mineralized water can be output after pressing N times; the display component 30 can be a touch screen, and the first display area 31 and the second display area 32 can have touch units, and by pressing the touch units of the first display area 31 and the second display area 32, the water can be selected as pure water or mineralized water.

[0056] See also Figure 2 In some embodiments, the PH display area 34 is provided with a light bar 40, and the light bar 40 lights up the corresponding length of the light bar 40 according to the current PH value.

[0057] It can be understood that the above-mentioned pH value display area is provided with a light bar 40, and the light bar 40 is arranged in a columnar shape; corresponding pH value numbers are also arranged on the display area, and the light bar 40 can indicate the numerical value of the corresponding pH value according to the pH value of the current outlet water flow; the light bar 40 includes a first luminous color and a second luminous color, the first luminous color can be green, and the second luminous color can be red, for example: when the current pH value is within the range of normal drinking water, for example: when the pH value is 6.5~8.5, and the specific pH value is equal to 7, the light bar 40 can display green and fill the indication to the length of the display area corresponding to the pH value equal to 7; when the current pH value is outside the range of normal drinking water, for example: when the pH value is not in the range of 6.5~8.5, for example, it is 4, the light bar 40 can display red and fill the indication to the length of the display area corresponding to the pH value equal to 4.

[0058] See also Figure 2 , in some embodiments, the first display area 31 and the second display area 32 are both arranged in the mineral display area 36;

[0059] The first display area 31 has a first trigger switch area for controlling the faucet body 10 to output mineralized water, and the second display area 32 has a second trigger switch area for controlling the faucet body 10 to output pure water.

[0060] It can be understood that a first trigger switch area is provided in the first display area 31, and a second trigger switch area is provided in the second display area 32, and both the first trigger switch area and the second trigger switch area can be touched; wherein, when the first trigger switch area is touched, it can control the faucet 100 to output mineralized water, and when the TDS value of the output mineralized water is within the preset range, the preset mineral substance type icon in the first display area 31 lights up, and the user can know that the current water output is mineralized water through the lit preset icon, and the second display area 32 is in an extinguished state at this time; when the second display area 32 is touched, it can control the faucet 100 to output pure water, and when the TDS value of the output pure water is within the preset range, the preset pure water icon in the second display area 32 lights up, and the user can know that the current water output is pure water through the lit preset icon, so that the user can observe the current water output state of the faucet 100 more intuitively, so as to improve the convenience of using the faucet 100.

[0061] See also Figure 3 In some embodiments, the faucet 100 further includes: an RO filter element 50 and a mineralized filter element 51;

[0062] The RO filter element 50 and the mineralized filter element 51 are arranged in the faucet body 10 , or the RO filter element 50 and the mineralized filter element 51 are arranged outside the faucet body 10 , the RO filter element 50 is connected to the pure water waterway 11 , and the mineralized filter element 51 is connected to the mineralized waterway 12 .

[0063] It can be understood that the faucet 100 also includes: an RO filter element 50 and a mineralized filter element 51. The RO filter element 50 and the mineralized filter element 51 can be arranged in the faucet body 10 or outside the faucet body 10, and the RO filter element 50 is connected to the pure water waterway 11, and the mineralized filter element 51 is connected to the mineralized waterway 12; when it is necessary to output pure water, the water flow can be output into the pure water waterway 11 after being filtered by the RO filter element 50; when it is necessary to output mineralized water, the water flow outputs pure water after passing through the RO filter element 50, and then the pure water is input into the mineralized filter element 51 for mineralization and then can be input into the mineralized waterway 12, so that pure water or mineralized water can be output through the faucet 100.

[0064] See also Figure 4 , in some embodiments, the faucet 100 further includes: a chip 60 and a reading module 61;

[0065] The RO filter element 50 and the mineralized filter element 51 are both provided with a chip 60 , and the faucet body 10 is provided with a reading module 61 , and the reading module 61 is used to obtain information of the RO filter element 50 and the mineralized filter element 51 .

[0066] It can be understood that a chip 60 is provided on both the RO filter element 50 and the mineralized filter element 51. The chip 60 can be an NFC chip 60 or other chip 60 that can be read. The filter element information is preset in the chip 60, such as: the type of filter element, the minerals contained in the filter element and other information. A reading module 61 is also provided on the faucet body 10, wherein the reading module 61 is used to read the preset information in the filter element; after the filter element is installed in the faucet 100, the reading module 61 can read the relevant information in the chip 60.

[0067] See also Figure 3 , in some embodiments, the faucet 100 further includes: a controller 70;

[0068] The controller 70 is disposed in the faucet 100 , and is respectively connected to the first acquisition unit 21 , the second acquisition unit 22 , and the display component 30 ; the controller 70 is used to acquire the TDS value and / or PH value of the first acquisition unit 21 and the second acquisition unit 22 and output them to the display component 30 for display.

[0069] It is understandable that the faucet 100 also includes: a controller 70, which is connected to the first acquisition unit 21, the second acquisition unit 22, and the display component 30, so that when the first acquisition unit 21 and the second acquisition unit 22 obtain the TDS value, they can be input into the controller 70, and the controller 70 can compare the TDS value preset in the current water outlet state with the obtained TDS value after obtaining the TDS value to determine whether to display the first display area 31; at the same time, the controller 70 can also calculate the current pH value according to the obtained TDS and the relevant data preset in the controller 70; the controller 70 can also control the light bar 40 to emit light according to the current pH value, and the length of the light bar 40 corresponding to the current pH value. In specific applications, it is understandable that the light bar 40 can be an independent lamp shape, or it can be a screen integrated in the display component 30.

[0070] It can be understood that a circuit board is provided in the faucet 100, the controller 70 is provided on the circuit board, the circuit board is connected with a first signal line and a second signal line, the first end of the first signal line is welded or connected to the circuit board through a wiring terminal, and the second end of the first signal line is electrically connected to the first acquisition unit 21. The first end of the second signal line is welded or connected to the circuit board through a wiring terminal, and the second end of the second signal line is electrically connected to the second acquisition unit 22. The first signal line is connected to the pin of the first acquisition unit 21 through a first waterproof plug terminal. The second signal line is connected to the pin of the second acquisition unit 22 through a second waterproof plug terminal.

[0071] See also Figure 3 , in some embodiments, the faucet 100 further includes: a wireless communication module 80;

[0072] The wireless communication module 80 is connected to the controller 70 , and the wireless communication module 80 is used for wireless communication with a terminal device.

[0073] It can be understood that the wireless communication module 80 is connected to the controller 70. After the controller 70 obtains the TDS value of the first acquisition unit 21 and the TDS value of the second acquisition unit 22, the wireless communication module 80 can send the data to the terminal device through the communication module for viewing.

[0074] In some embodiments, the faucet 100 further includes: an annular light strip, which is disposed on the faucet 100 and is disposed around the outer circumference of the display component 30 .

[0075] It can be understood that the annular light strip is arranged on the faucet 100 around the outer periphery of the display component 30, and the annular light strip can change according to the TDS value or the PH value obtained by the first acquisition unit 21 or the second acquisition unit 22; specifically, when the TDS value or the PH value obtained by the first acquisition unit 21 and the second acquisition unit 22 exceeds the preset range, the annular light strip can emit red light to remind the user; when the TDS value or the PH value obtained by the first acquisition unit 21 and the second acquisition unit 22 is within the preset range, the annular light strip can emit green light or no light.

[0076] See also Figure 5 The utility model further provides a mineralization device 200, the mineralization device 200 comprising:

[0077] The device body 210 and the faucet 100 are connected to the device body 210 via a pipeline.

[0078] When the mineralization filter element 51 and the RO filter element 50 are arranged outside the faucet 100, the mineralization filter element 51 and the RO filter element 50 can be arranged in the device body 210, and the mineralization filter element 51 and the RO filter element 50 are connected to the faucet 100, so that the device body 210 can select to pass through the RO filter element 50 and / or the mineralization filter element 51 according to the user's needs, so that the device body 210 can output pure water or mineralized water that meets the user's water needs to the faucet 100. The mineralization device 200 includes the faucet 100, so the mineralization device 200 can also realize all the functions of the above-mentioned faucet 100, which will not be repeated here.

[0079] Mentioning "embodiment" and "implementation method" in the present invention means that the specific features, structures or characteristics described in conjunction with the embodiment may be included in at least one embodiment of the present invention. The appearance of the phrases in various places in the specification does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment that is mutually exclusive with other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described in the present invention can be combined with other embodiments. In addition, it should be understood that the features, structures or characteristics described in the various embodiments of the present invention can be arbitrarily combined to form another embodiment that does not deviate from the spirit and scope of the technical solution of the present invention, provided that there is no contradiction between them.

[0080] Finally, it should be noted that the above implementation modes are only used to illustrate the technical solution of the utility model rather than to limit it. Although the utility model has been described in detail with reference to the above preferred implementation modes, ordinary technicians in the field should understand that the technical solution of the utility model can be modified or replaced by equivalents without departing from the spirit and scope of the technical solution of the utility model.

Claims

1. A faucet, characterized in that: include: The faucet body comprises: a pure water channel and a mineralized water channel; the mineralized water channel and the pure water channel are both connected to the faucet body; An acquisition module, the acquisition module is used to acquire water quality detection data of the mineralized waterway and / or the pure water waterway; A display component is arranged on the faucet body, and is provided with a first display area for displaying the type of mineralized substance when mineralized water is output and the water quality detection data is greater than a first preset value, and a second display area for displaying the pure water output status when pure water is output and the water quality detection data is less than a second preset value.

2. The faucet according to claim 1, characterized in that: The acquisition module includes a first acquisition unit and a second acquisition unit; The first acquisition unit is used to acquire the pH value and / or TDS value of the pure water channel, and the second acquisition unit is used to acquire the pH value and / or TDS value of the mineralized water channel.

3. The faucet according to claim 1, characterized in that: The display component includes: any one or more of a signal display area, a PH display area, a touch area, and a mineral display area.

4. The faucet according to claim 3, characterized in that: The PH display area is provided with a light bar, and the light bar lights up the corresponding light bar length according to the current PH value.

5. The faucet according to claim 4, characterized in that: The first display area and the second display area are both arranged in the mineral display area; The first display area has a first trigger switch area for controlling the faucet to output mineralized water, and the second display area has a second trigger switch area for controlling the faucet body to output pure water.

6. The faucet according to claim 1, characterized in that: The faucet also includes: an RO filter element and a mineralized filter element; The RO filter element and the mineralized filter element are arranged in the faucet body, or the RO filter element and the mineralized filter element are arranged outside the faucet body, the RO filter element is connected to the pure water waterway, and the mineralized filter element is connected to the mineralized waterway.

7. The faucet according to claim 6, characterized in that: Also includes: Chip and reading module; The RO filter element and the mineralized filter element are both provided with chips, and the faucet body is provided with a reading module, and the reading module is used to obtain information of the RO filter element or the mineralized filter element.

8. The faucet according to claim 2, characterized in that: Also includes: Controller; The controller is disposed in the faucet, and the controller is connected to the first acquisition unit, the second acquisition unit, and the display component respectively; The controller is used to obtain the TDS value and / or pH value of the first acquisition unit and the second acquisition unit and output them to the display component for display.

9. The faucet according to claim 8, characterized in that: Also includes: Wireless communication module; The wireless communication module is connected to the controller, and the wireless communication module is used for wireless communication with the terminal device.

10. A mineralization device, characterized in that: The mineralization equipment comprises: The device itself and The faucet according to any one of claims 1 to 9, wherein the faucet is connected to the device body.