Faucet and mineral spring mineralization water purification equipment
By integrating filter components and detection modules into the faucet, the problem of existing faucets being unable to mineralize or purify water at the point of use is solved, enabling point-of-use water quality control and multi-purpose water output, while reducing costs and space requirements.
Patent Information
- Application Number
- CN202423175200.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2034-12-20
AI Technical Summary
Existing faucets have limited functionality and cannot achieve water mineralization or purification at the point of use. They require external equipment for treatment, which is costly and requires a large space.
Design a faucet with a filter element assembly, including a housing, cover assembly, filter element base and detection module, which can realize mineralized or purified water flow at the terminal, including mineralized water path and regulating water path, and integrate filter element replacement and detection functions.
It enables mineralization or purification of water flow within the terminal faucet, reducing costs and space requirements, meeting diverse water usage needs, and improving water quality testing accuracy and control flexibility.
Smart Images

Figure CN223622344U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of faucets, specifically to a faucet and a mineral water purification device. Background Technology
[0002] Currently, with the continuous improvement of people's living standards, the importance attached to drinking water is also increasing. 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 help to balance the human body's acid-base balance. As the terminal device for water, the traditional faucet currently used in the market has a relatively simple function, which is limited to ensuring safe water use. Utility Model Content
[0003] Therefore, this utility model provides a faucet and a mineral water purification device. The faucet can produce mineralized drinking water or purified water.
[0004] This utility model provides the following technical solution:
[0005] A faucet, comprising:
[0006] The housing has a support portion, the support portion is provided with a mounting cavity, and the top of the housing is provided with an opening communicating with the mounting cavity;
[0007] A cover assembly is disposed on the housing and located within the opening; the cover assembly is used to open or close the opening.
[0008] A filter element base is disposed within the mounting cavity, and the filter element base is disposed on the side of the mounting cavity away from the opening;
[0009] A filter element assembly, the filter element assembly comprising at least one filter element, the filter element assembly being detachably mounted on the filter element base.
[0010] Furthermore, it also includes: hinges;
[0011] The hinge is disposed on the housing and is located within the opening. The hinge is used to connect the housing and the cover plate assembly.
[0012] Furthermore, it also includes: a first detection module and a second detection module;
[0013] The faucet further includes an inlet water path and an outlet water path, with the first detection module located in the inlet water path and the second detection module located in the outlet water path; both the first detection module and the second detection module are used to detect the pH value or TDS value of the water flow.
[0014] Furthermore, the filter element assembly includes: a housing, a first filter element, and a second filter element;
[0015] Both the first filter element and the second filter element are disposed inside the housing, and the first filter element and the second filter element are arranged sequentially along the height direction of the housing.
[0016] Furthermore, the first filter element has a first filter element outlet, and the second filter element has a second filter element outlet; both the first filter element and the second filter element have gaps between themselves and the outer shell, and the second filter element outlet is used to discharge water.
[0017] Furthermore, the outer casing includes: an outer casing water inlet, an outer casing first water outlet, and an outer casing second water outlet;
[0018] The water inlet, the first water outlet, and the second water outlet of the outer casing are located on the side walls of opposite sides of the outer casing.
[0019] Furthermore, it also includes: a first central pipe and a second central pipe;
[0020] The first central tube is disposed in the first filter element, the second central tube is disposed in the second filter element, the axis of the first central tube, the axis of the second central tube, and the axis of the outer shell are collinear, and the diameter of the first central tube is larger than the diameter of the second central tube;
[0021] The first central tube extends to the first water outlet of the outer casing, and the second central tube extends to the second water outlet of the outer casing.
[0022] Furthermore, the faucet includes: a control valve, a regulating water path, and a mineralizing water path;
[0023] The control valve includes: a control valve inlet, a control valve first outlet, and a control valve second outlet; the control valve first outlet is connected to the regulating water circuit, the control valve second outlet is connected to the mineralizing water circuit, and the filter element is disposed on the mineralizing water circuit.
[0024] This utility model also provides a mineral spring mineralization water purification device, the water purification device comprising:
[0025] A water purifier and the aforementioned faucet, wherein the faucet is connected to the water purifier and the faucet includes: a mineralization water path and a regulating water path.
[0026] Furthermore, the mineral water purification equipment includes: a mineralization filter element and a water purification filter element;
[0027] The mineralizing filter element is connected to the mineralizing water circuit and supplies water to the mineralizing water circuit. The purified water filter element is connected to the regulating water circuit and supplies water to the regulating water circuit.
[0028] The aforementioned faucet includes a housing with an installation cavity inside. The top of the housing has an opening communicating with the installation cavity, and a cover assembly is installed within the opening. The cover assembly is mounted on the housing and can open or close the opening. When the opening is open, a filter element assembly can be installed into or removed from the installation cavity, thus enabling the removal or installation of the filter element assembly. A filter element base is also provided within the installation cavity, located on the side away from the opening. After the filter element assembly is installed into the installation cavity, it connects to the filter element base, thus enabling filter installation. Once installed, the filter element can mineralize or purify the water flowing from the faucet, allowing the faucet to produce mineralized drinking water or purified water. Attached Figure Description
[0029] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0030] Figure 1 One of the cross-sectional views of a faucet provided in an embodiment of this utility model;
[0031] Figure 2 One of the schematic diagrams of the faucet structure provided in this embodiment of the utility model;
[0032] Figure 3 for Figure 2 Enlarged view of point A in the middle;
[0033] Figure 4 One of the structural schematic diagrams of the filter element assembly provided in the embodiment of this utility model;
[0034] Figure 5 This is the second schematic diagram of the structure of the filter element assembly provided in the embodiment of the present utility model;
[0035] Figure 6 This is the third schematic diagram of the structure of the filter element assembly provided in the embodiment of the present utility model;
[0036] Figure 7 A second cross-sectional view of a faucet provided in an embodiment of this utility model;
[0037] Figure 8 A schematic diagram of the control valve provided in an embodiment of this utility model;
[0038] Figure 9 This is a schematic diagram of the structure of the filter element assembly and the filter element provided in the embodiment of this utility model;
[0039] Figure 10 This is a schematic diagram of the structure of the mineral water purification equipment provided in this embodiment of the utility model.
[0040] Explanation of reference numerals in the attached figures:
[0041] 100-Faucet; 10-House; 11-Support; 12-Mounting cavity; 13-Opening; 14-Inlet water passage; 15-Outlet water passage; 16-Regulating water passage; 17-Mineralizing water passage; 20-Cover assembly; 30-Filter base; 40-Filter assembly; 41-Filter element; 42-House casing; 421-House casing inlet; 422-House casing first outlet; 423-House casing second outlet; 43-First filter element; 431-First Filter cartridge outlet; 44-Second filter cartridge; 441-Second filter cartridge outlet; 45-First central tube; 46-Second central tube; 50-Hinge; 60-First detection module; 61-Second detection module; 70-Control valve; 71-Control valve inlet; 72-Control valve first outlet; 73-Control valve second outlet; 200-Mineralized water purification equipment; 210-Water purifier; 220-Mineralized filter cartridge; 230-Purified water filter cartridge. Detailed Implementation
[0042] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0043] The terms "first," "second," etc., in the specification, claims, and accompanying drawings of this utility model are used to distinguish different objects, not to describe a specific order. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or apparatus that includes a series of steps or units is not limited to the listed steps or units, but may optionally include steps or units not listed, or may optionally include other steps or units inherent to these processes, methods, products, or apparatuses.
[0044] In this document, references to "embodiment" or "implementation" mean that a particular feature, structure, or characteristic described in connection with an embodiment or implementation may be included in at least one embodiment of the present invention. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0045] Currently, with the continuous improvement of people's living standards, the importance attached to drinking water is also increasing. 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 help to balance the human body's acid-base balance. As the terminal device for water, the traditional faucet currently used in the market has a relatively simple function, which is limited to ensuring safe water use.
[0046] Currently, faucets in related technologies are limited to discharging water. If a faucet wants to discharge mineralized or purified water, it can only be processed by external equipment, such as water purification or mineralization equipment, so that the water can be purified or mineralized. This is not only costly, but also requires more space and modification of the water system, which is quite troublesome.
[0047] Therefore, this embodiment provides a faucet 100 and a mineral water purification device 200. The faucet 100 can produce mineralized drinking water or purified water.
[0048] Please see Figures 1 to 3 A faucet 100, comprising:
[0049] The housing 10 has a support portion 11, the support portion 11 is provided with a mounting cavity 12, and the top of the housing 10 is provided with an opening 13 communicating with the mounting cavity 12;
[0050] A cover plate assembly 20 is disposed on the housing 10 and located within the opening 13. The cover plate assembly 20 is used to open or close the opening 13.
[0051] A filter element base 30 is disposed within the mounting cavity 12, and the filter element base 30 is disposed on the side of the mounting cavity 12 away from the opening 13;
[0052] A filter element assembly 40, comprising at least one filter element, is detachably mounted on the filter element base 30.
[0053] The aforementioned faucet 100 includes a housing 10, within which an installation cavity 12 is provided. The top of the housing 10 has an opening 13 communicating with the installation cavity 12, and a cover assembly 20 is provided within the opening 13. The cover assembly 20 is mounted on the housing 10 and can open or close the opening 13. When the opening 13 is open, a filter element assembly 40 can be installed into or removed from the installation cavity 12, thus enabling the removal or installation of the filter element assembly 40. A filter element base 30 is also provided within the installation cavity 12, located on the side away from the opening 13. After the filter element assembly 40 is installed into the installation cavity 12, it connects to the filter element base 30, thus enabling filter element installation. Once the filter element is installed, it can mineralize or purify the water flow in the faucet 100, allowing the faucet 100 to produce mineralized drinking water or purified water.
[0054] Understandably, the housing 10 is the housing 10 of the faucet 100. The housing 10 can be divided into a support part 11 and a water outlet part. The mounting cavity 12 is located in the support part 11. An opening 13 communicating with the mounting cavity 12 is provided at the top of the mounting cavity 12. The filter element assembly 40 can be installed into the mounting cavity 12 through the opening 13. A cover plate assembly 20 is provided on the housing 10. The cover plate assembly 20 is movably mounted on the housing 10. The opening 13 can be opened or closed through the cover plate assembly 20. When the cover plate assembly 20 is open, the mounting cavity 12 is connected to the outside, so that the filter element assembly 40 can be installed onto the filter element base 30. When the filter element of the faucet 100 reaches the end of its service life, the filter element assembly 40 can be removed from the faucet body by removing the limiting part, and then a new filter element can be installed into the mounting cavity 12. This is how the filter element assembly 40 can be replaced.
[0055] Understandably, when the filter element assembly 40 is installed on the filter element base 30, the filter element base 30 can provide water supply to the filter element assembly 40; the filter element assembly 40 also has a water outlet, which is connected to the water outlet of the faucet 100 in a detachable manner, for example, by means of snap-fit or clip-fit, so that the filter element assembly 40 can discharge through the water outlet of the faucet 100 after mineralizing or purifying the water flow.
[0056] Please see Figure 2 and Figure 3 In some embodiments, it also includes: hinge 50;
[0057] The hinge 50 is disposed on the housing 10 and is located within the opening 13. The hinge 50 is used to connect the housing 10 and the cover plate assembly 20.
[0058] Understandably, hinge 50 is mounted on housing 10 and connected to housing 10. Through hinge 50, cover assembly 20 can rotate in opening 13, so that cover assembly 20 can be opened or closed. When cover assembly 20 is open, mounting cavity 12 is connected to the outside, so filter element assembly 40 can be installed on filter element base 30. When the filter element of faucet 100 reaches the end of its service life, the filter element assembly 40 can be removed from the faucet body by removing the limiting part, and then a new filter element can be installed in mounting cavity 12, thus realizing the replacement of filter element assembly 40.
[0059] In other embodiments, the cover assembly 20 can be opened or closed by means of a detachable connection.
[0060] Please see Figure 7 In some implementations, it also includes: a first detection module 60 and a second detection module 61;
[0061] The faucet 100 further includes: an inlet water passage 14 and an outlet water passage 15. The first detection module 60 is disposed in the inlet water passage 14, and the second detection module 61 is disposed in the outlet water passage 15. Both the first detection module 60 and the second detection module 61 are used to detect the pH value or TDS value of the water flow.
[0062] Understandably, it also includes: a first detection module 60 and a second detection module 61. The faucet 100 also includes: an inlet water path 14 and an outlet water path 15. The first detection module 60 can be set in the inlet water path 14, and the first detection module 60 can detect the pH value and / or TDS value of the water flow in the inlet water path 14. The second detection module 61 can be set in the outlet water path 15, and the second detection module 61 can detect the pH value and / or TDS value of the outlet water path 15. In this way, the water quality of the current inlet water path 14 and outlet water path 15 of the faucet 100 can be detected. By obtaining the TDS value and / or pH value of the inlet water path 14 and the outlet water path, the control valve 70 can adjust the water flow input to the mineralization water path 17 and the water flow input to the regulating water path 16 according to the real-time obtained TDS value and / or pH value, so that the output water flow can meet the user's water demand.
[0063] Optionally, both the first detection module 60 and the second detection module 61 are configured as TDS sensors. Measuring the total dissolved solids (TDS) content in water using two TDS sensors allows for more accurate water quality testing. Furthermore, the TDS sensors are simple in design, easy to operate, and can directly output digital signals that can be directly received and used by the display modules, reducing the overall system size and complexity. The TDS sensors can also convert the TDS value into a pH value after simple calculations by the controller, thus enabling the acquisition of both pH and TDS values using only the TDS sensors.
[0064] Please see Figure 4 In some embodiments, the filter element assembly 40 includes: a housing 42, a first filter element 43, and a second filter element 44;
[0065] Both the first filter element 43 and the second filter element 44 are disposed inside the outer casing 42, and the first filter element 43 and the second filter element 44 are arranged sequentially along the height direction of the outer casing 42.
[0066] Understandably, the aforementioned filter assembly 40 includes a housing 42, a first filter element 43, and a second filter element 44. Both the first filter element 43 and the second filter element 44 are disposed within the housing 42, and are arranged sequentially along the height of the housing 42. The first filter element 43 can be a mineralization filter element 220, and the second filter element 44 can be a water purification filter element 230. When water enters the housing 42, it first enters the first filter element 43 for purification, producing purified water. This achieves [the desired effect]. The water is purified by passing through the first filter element 43 and then into the second filter element 44. The second filter element 44 can mineralize the pure water flowing out of the first filter element 43. The mineralized water can then be discharged through the outlet on the outer shell 42 and then discharged through the faucet 100. In this way, the water can be purified and mineralized through the filter element assembly 40 in the faucet 100, which eliminates the need for separate water purification and mineralization equipment. The faucet 100 can perform the functions of both water purification and mineralization equipment.
[0067] Please see Figures 4 to 6 In some embodiments, the first filter element 43 has a first filter element outlet 431, and the second filter element 44 has a second filter element outlet 441; both the first filter element 43 and the second filter element 44 have gaps with the outer shell 42, and the second filter element outlet 441 is used to discharge water.
[0068] Understandably, the first filter element 43 has a first cover plate, which is located on the side away from the second filter element 44. The second filter element 44 has a second cover plate, which is located on the side close to the first filter element 43. Both the first and second cover plates abut against the side wall of the outer casing 42, thus preventing water from flowing through the first and second cover plates. This creates a flow channel inside the casing 10. When water flows into the casing 10, it cannot flow through the first and second cover plates, thereby changing the direction of water flow in the outer casing 42 and creating a flow channel inside the casing 42. This allows the water to be purified in the second filter element 44 and then mineralized in the first filter element 43, thus achieving water purification and mineralization.
[0069] Please see Figures 4 to 6 In some embodiments, the outer casing 42 includes: an outer casing water inlet 421, an outer casing first water outlet 422, and an outer casing second water outlet 423;
[0070] The outer casing inlet 421, the outer casing first outlet 422, and the outer casing second outlet 423 are disposed on the side walls of opposite sides of the outer casing.
[0071] In this embodiment, one end of the outer casing 42 is provided with an outer casing inlet 421, and the other end of the outer casing 42 is provided with an outer casing first outlet 422 and an outer casing second outlet 423. In this embodiment, when water flows through the outer casing inlet 421 and enters the outer casing, since the first filter element 43 and the second filter element 44 are arranged in parallel, the water can simultaneously enter the first filter element 43 and the second filter element 44. In this way, the filter element assembly 40 can simultaneously produce pure water and mineralized water, and the produced pure water and mineralized water can be discharged through the outer casing first outlet 422 and the outer casing second outlet 423.
[0072] Please see Figures 4 to 6 In some embodiments, it also includes: a first central tube 45 and a second central tube 46;
[0073] The first central tube 45 is disposed in the first filter element 43, and the second central tube 46 is disposed in the second filter element 44. The axis of the first central tube 45, the axis of the second central tube 46, and the axis of the outer shell 42 are collinear. The diameter of the first central tube 45 is larger than the diameter of the second central tube 46.
[0074] The first central tube 45 extends to the first water outlet 422 of the outer casing, and the second central tube 46 extends to the second water outlet 423 of the outer casing.
[0075] Understandably, the filter element assembly 40 also includes a first central tube 45 and a second central tube 46, wherein the first central tube 45 is disposed in the first filter element 43 and the second central tube 46 is disposed on the second filter element 44, and the first filter element 43 and the second filter element 44 are coaxially disposed, which can reduce the space occupied by the first central tube 45 and the second central tube 46 in the first filter element 43 and the second filter element 44.
[0076] Specifically, the first filter element 43 and the second filter element 44 are configured as follows: Figure 6 As shown, arranged from top to bottom, the first central tube 45 is connected to the first filter element 43, and the axis of the first central tube 45 is collinear with the axis of the first filter element 43. Multiple water inlets are provided on the first central tube 45, allowing water to enter the first central tube 45 after flowing through the first filter element 43. The first central tube 45 is connected to the first water outlet 422 of the outer casing, thus allowing water to be discharged outside the filter element assembly 40. The second central tube 46 is connected to the second filter element 44, and the axis of the second central tube 46 is collinear with the axis of the second filter element 44. The first and second central tubes 44 are coaxial and have multiple inlet holes. Water flowing through the second filter element 44 enters the second central tube 46 through these inlet holes. The second central tube 46 is connected to the second outlet 423 of the outer casing, allowing water to exit the filter element assembly 40. The second central tube 46 is fitted inside the first central tube 45, requiring the diameter of the first central tube 45 to be larger than the diameter of the second central tube 46. The two coaxial tubes discharge the filtered water from the first and second filter elements 43 and 44 into the filter element assembly 40. This allows for two water outlets through a single filter element assembly 40, meeting various user water needs.
[0077] Please see Figure 7 and Figure 8 In some embodiments, the faucet 100 includes: a control valve 70, a regulating water passage 16, and a mineralizing water passage 17;
[0078] The control valve 70 includes: a control valve inlet 71, a control valve first outlet 72, and a control valve second outlet 73; the control valve first outlet 72 is connected to the regulating water passage 16, the control valve second outlet 73 is connected to the mineralizing water passage 17, and the filter element is disposed on the mineralizing water passage 17.
[0079] Understandably, a control valve 70 is installed in the faucet. The control valve 70 includes a control valve inlet 71, a control valve first outlet 72, and a control valve second outlet 73. Water flows into the control valve 70 through the control valve inlet 71, and the control valve 70 divides the water path into two paths: one is the control valve first outlet 72, and the other is the control valve second outlet 73. The control valve first outlet 72 is connected to the regulating water path 16, and the control valve second outlet 73 is connected to the mineralizing water path 17. The core component 40 is installed on the mineralized water passage 17; the output ratio of the regulating water passage 16 and the mineralized water passage 17 can be changed by the control valve 70. For example, when the user needs water with a high mineral content, the output of the mineralized water passage 17 can be increased to increase the mineral content in the water; when the user needs water with a low mineral content, the output of the mineralized water passage 17 can be decreased to reduce the mineral content in the water; or mineralized water or purified water can be discharged separately to achieve different water output needs.
[0080] Please see Figure 10 This utility model also provides a mineral spring mineralization water purification device 200, the water purification device comprising:
[0081] The water purifier 210 and the faucet 100 are connected to the water purifier 210. The faucet 100 includes a mineralization water path 17 and an adjustment water path 16.
[0082] Understandably, the aforementioned mineral water purification equipment 200 includes a water purifier 210 and a faucet 100. The water purifier 210 is used to purify municipal water supply. The purified water flows into the faucet 100, which can regulate the water flow of the mineral water path 17 and the regulating water path 16 through the control valve 70. By adjusting the water flow of different water paths, the water flows in the mineral water path 17 and the regulating water path 16 are mixed before being output to the faucet 100, thus achieving the output of water to meet different needs.
[0083] Please see Figure 10 In some embodiments, the mineral water purification equipment 200 includes: a mineralization filter element 220 and a water purification filter element 230;
[0084] The mineralization filter element 220 is connected to the mineralization water passage 17 and supplies water to the mineralization water passage 17. The water purification filter element 230 is connected to the regulating water passage 16 and supplies water to the regulating water passage 16.
[0085] Understandably, the water purifier 210 includes a mineralizing filter element 220 and a water purification filter element 230. The water purification filter element 230 is connected to the mineralizing filter element 220. After the water is purified by the water purification filter element 230, it flows out and enters the mineralizing filter element 220. The mineralizing filter element 220 performs preliminary mineralization on the water before outputting it into the main body.
[0086] In this utility model, the terms "embodiment" and "implementation" mean that a specific feature, structure, or characteristic described in connection with an embodiment can be included in at least one embodiment of this utility model. The appearance of these phrases in various places in the specification does not necessarily refer to the same embodiment, nor are they independent or alternative embodiments mutually exclusive with other embodiments. Those skilled in the art will understand, explicitly and implicitly, that the embodiments described in this utility model can be combined with other embodiments. Furthermore, it should be understood that the features, structures, or characteristics described in the various embodiments of this utility model can be arbitrarily combined to form another embodiment that does not depart from the spirit and scope of the technical solution of this utility model, provided there is no contradiction between them.
[0087] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to the above preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions to the technical solution of this utility model should not depart from the spirit and scope of the technical solution of this utility model.
Claims
1. A faucet, characterized in that, include: The housing has a support portion, the support portion is provided with a mounting cavity, and the top of the housing is provided with an opening communicating with the mounting cavity; A cover assembly is disposed on the housing and located within the opening; the cover assembly is used to open or close the opening. A filter element base is disposed within the mounting cavity, and the filter element base is disposed on the side of the mounting cavity away from the opening; A filter element assembly, the filter element assembly including at least one filter element, the filter element assembly being detachably mounted on the filter element base.
2. The faucet according to claim 1, characterized in that, Also includes: Hinges; The hinge is disposed on the housing and is located within the opening. The hinge is used to connect the housing and the cover plate assembly.
3. The faucet according to claim 1, characterized in that, Also includes: First detection module, second detection module; The faucet further includes an inlet water path and an outlet water path, with the first detection module located in the inlet water path and the second detection module located in the outlet water path; both the first detection module and the second detection module are used to detect the pH value or TDS value of the water flow.
4. The faucet according to claim 1, characterized in that, The filter assembly includes: a housing, a first filter element, and a second filter element; Both the first filter element and the second filter element are disposed inside the housing, and the first filter element and the second filter element are arranged sequentially along the height direction of the housing.
5. The faucet according to claim 4, characterized in that, The first filter element has a first filter element outlet, and the second filter element has a second filter element outlet; both the first filter element and the second filter element have gaps with the outer shell, and the second filter element outlet is used to discharge water.
6. The faucet according to claim 5, characterized in that, The outer casing includes: an outer casing water inlet, an outer casing first water outlet, and an outer casing second water outlet; The water inlet, the first water outlet, and the second water outlet of the outer casing are located on the side walls of opposite sides of the outer casing.
7. The faucet according to claim 6, characterized in that, Also includes: First central pipe, second central pipe; The first central tube is disposed in the first filter element, the second central tube is disposed in the second filter element, the axis of the first central tube, the axis of the second central tube, and the axis of the outer shell are collinear, and the diameter of the first central tube is larger than the diameter of the second central tube; The first central tube extends to the first water outlet of the outer casing, and the second central tube extends to the second water outlet of the outer casing.
8. The faucet according to claim 5, characterized in that, The faucet includes: a control valve, a regulating water circuit, and a mineralizing water circuit; The control valve includes: a control valve inlet, a control valve first outlet, and a control valve second outlet; the control valve first outlet is connected to the regulating water circuit, the control valve second outlet is connected to the mineralizing water circuit, and the filter element is disposed on the mineralizing water circuit.
9. A mineral spring mineralization and water purification device, characterized in that, The mineral spring mineralization and water purification equipment includes: Water purifiers and, The faucet as described in any one of claims 1 to 8, wherein the faucet is connected to the water purifier, and the faucet includes: a mineralization water path and a regulating water path.
10. The mineral water purification equipment according to claim 9, characterized in that, The mineral water purification equipment includes: a mineralization filter element and a water purification filter element; The mineralizing filter element is connected to the mineralizing water circuit and supplies water to the mineralizing water circuit. The purified water filter element is connected to the regulating water circuit and supplies water to the regulating water circuit.