Faucet and mineral spring mineralization water purification equipment

By designing mineralized water circuits, regulating water circuits, and filter components, and combining them with a detection module and controller to adjust the water flow, the problem of the faucet's single function was solved, and the effect of outputting mineralized water flow according to user needs was achieved.

CN223563566UActive Publication Date: 2025-11-18GUANGDONG LIZI TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423175004.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-11-18
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

Existing faucets have limited functionality, cannot provide drinking water with different levels of mineralization according to user needs, and cannot effectively adjust the water flow pattern.

Method used

A faucet was designed, comprising a mineralized water path, an adjustable water path, and a filter element assembly. A drive component drives the water-stopping assembly to switch between multiple preset positions. Combined with a detection module and a controller, the water flow is adjusted to achieve selective use of different filter media areas and output mineralized water flow that meets the user's needs.

Benefits of technology

It enables the output of drinking water with different mineralization levels according to user needs, improving the faucet's functionality and usage scenarios, and meeting the water quality needs of different users.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223563566U_ABST
    Figure CN223563566U_ABST
Patent Text Reader

Abstract

The utility model relates to a faucet and mineral spring mineralization water purification equipment. The faucet comprises a control valve, the control valve is communicated with the mineralized water path, the adjusting water path and a faucet water inlet, and the control valve is used for controlling the water inflow of the mineralized water path and the adjusting water path; the filter element assembly is arranged on the mineralized water path, and the filter element assembly comprises a shell, a filter pipe and a water stop assembly; a plurality of filter material areas are arranged on the periphery of the filter pipe, and a water inlet hole is formed in each filter material area corresponding to the filter pipe; the water stop assembly is movably arranged in the filter pipe, and the water stop assembly is provided with a plurality of preset positions; and the driving part is arranged in the body, the driving part is connected with the water stopping assembly, and the driving part is used for driving the water stopping assembly to be switched among a plurality of preset positions. The faucet can output corresponding mineralized drinking water according to user requirements.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to the field of faucet, concretely relates to a faucet and mineralized water purification equipment. BACKGROUND

[0002] At present, along with people's living standard unceasing enhancement, the attention degree of drinking water is also higher and higher. The water that people can drink can be divided into tap water, pure water, mineral water, and the tap water contains impurities, bacteria and heavy metal pollution, the pure water is acid, and it is not beneficial to the acid-base balance of human body, the faucet is the terminal equipment of water, the traditional faucet used in the market at present, the function is single, and it is only limited to safe water. CONTENT OF THE UTILITY MODEL

[0003] In view of this, the utility model provides a faucet and mineralized water purification equipment. The faucet can output corresponding mineralized drinking water according to user demand.

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

[0005] A faucet, comprising:

[0006] A body, the body comprising: a mineralized water path;

[0007] A filter core assembly, the filter core assembly being arranged on the mineralized water path, the filter core assembly comprising: a housing, a filter tube, and a water stop assembly; the filter tube is provided with a plurality of filter material areas on the outer periphery, and each filter material area of the filter tube is provided with a water inlet hole; the water stop assembly is movably arranged in the filter tube, and the water stop assembly has a plurality of preset positions;

[0008] A driving member, the driving member being arranged in the body, the driving member being connected with the water stop assembly, and the driving member being used to drive the water stop assembly to switch between the plurality of preset positions.

[0009] Further, the water stop assembly comprises a screw rod and a water stop piece.

[0010] The screw rod is arranged in the filter tube, and the axis of the screw rod is collinear with the axis of the filter tube; the water stop piece is arranged on the screw rod, and the screw rod drives the water stop piece to move along the axial direction of the screw rod.

[0011] Further, the water stop piece comprises a water stop portion and a connecting portion.

[0012] The water stop portion is connected with the connecting portion, the connecting portion and the water stop portion are both provided with a threaded hole, and the screw rod is connected with the water stop piece by penetrating the threaded hole.

[0013] Further, the filter pipe is provided with a water outlet hole, when the water stop component is located at the preset position, the water stop component connects the water inlet hole and the water outlet hole, so that the water flow can flow through the filter material area of the preset position into the filter pipe and be discharged through the water outlet hole.

[0014] Further, the water faucet further comprises a control valve.

[0015] The body further comprises an adjusting water path and a faucet water inlet, the control valve is in communication with the mineralized water path, the adjusting water path and the faucet water inlet, and the control valve is used for controlling the water inflow of the mineralized water path and the adjusting water path.

[0016] Further, the water stop component comprises a pull rod and a water blocking piece.

[0017] The water blocking piece is arranged in the filter pipe, the pull rod is connected with the water blocking piece, and the pull rod is used for driving the water blocking piece to move in the filter pipe.

[0018] Further, the water faucet further comprises a first detection module and a second detection module.

[0019] The body further comprises a water inlet path and a water outlet path, the first detection module is arranged in the water inlet path, and the second detection module is arranged in the water outlet path; and the first detection module and the second detection module are both used for detecting the PH value or the TDS value of the water flow.

[0020] Further, the water faucet further comprises a controller.

[0021] The controller is arranged in the water faucet, the controller is connected with the control valve, the first detection module, the second detection module and the driving piece, and the first detection module and the second detection module are both used for detecting the PH value or the TDS value of the water flow.

[0022] Further, the water faucet further comprises a flow collecting piece.

[0023] The flow collecting piece comprises a flow collecting piece water outlet, a flow collecting piece first water inlet and a flow collecting piece second water inlet, the flow collecting piece first water inlet is connected with the mineralized water path, the flow collecting piece second water inlet is connected with the adjusting water path, and the flow collecting piece water outlet is connected with the water faucet water outlet.

[0024] The application further provides a mineral spring mineralization water purification device, the mineral spring mineralization water purification device comprising:

[0025] The water purification device and the water faucet are connected.

[0026] The faucet comprises a body, a control valve is arranged in the body, the control valve is communicated with a mineralized water path, an adjusting water path and a faucet water inlet, water flows into the control valve through a faucet water inlet hole, the water path is divided into two paths by the control valve, one path is connected with the mineralized water path, and the other path is connected with the adjusting water path; a filter core assembly is arranged on the mineralized water path, the filter core assembly comprises a shell, a filter pipe and a water stopping assembly, the filter pipe and the water stopping assembly are arranged in the shell, a plurality of filter material areas are arranged on the outer periphery of the filter pipe, and a water inlet hole is arranged at the position of the filter pipe corresponding to each filter material area, when water flows into the filter pipe, the water can flow through the filter material area, and then enters the filter pipe through the water inlet hole, and then enters the filter pipe through the water inlet hole; the water stopping assembly is movably arranged in the filter pipe and connected with a driving piece, so that the driving piece can drive the water stopping assembly to displace in the filter pipe, so that the water path only flows through the required filter material area; when the water stopping assembly moves to a preset position, the water stopping assembly can communicate the filter material area at the corresponding position and a water outlet hole, so that the water flows into the filter pipe and is discharged outside the filter pipe, so that the filter core assembly can output the mineralized water flow required by the user. BRIEF DESCRIPTION OF DRAWINGS

[0027] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the drawings needed in the embodiments will be briefly introduced as follows. Obviously, the drawings described below are some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor on the basis of these drawings.

[0028] Figure 1 A sectional view of the faucet provided by the embodiments of the present application is provided.

[0029] Figure 2 A sectional view of the filter core assembly provided by the embodiments of the present application is provided. Figure 1 An enlarged view of position A in FIG.

[0030] Figure 3 An enlarged view of position B in FIG. Figure 1 An enlarged view of position D in FIG.

[0031] Figure 4 A sectional view of the filter core assembly provided by the embodiments of the present application is provided.

[0032] Figure 5 An enlarged view of position D in FIG. Figure 4 An enlarged view of position D in FIG.

[0033] Figure 6 A sectional view of the filter core assembly provided by the embodiments of the present application is provided.

[0034] Figure 7 A structural schematic view of the water stopping assembly provided by the embodiments of the present application is provided.

[0035] Figure 8The utility model provides a structure schematic view of water stop piece.

[0036] Figure 9 The utility model provides a cross section view three of filter core subassembly.

[0037] Figure 10 For Figure 1 The enlarged view of C in the middle.

[0038] Figure 11 The utility model provides a structure schematic view of faucet.

[0039] Figure 12 The utility model provides a structure schematic view of mineral water mineralization water purification equipment.

[0040] Mark explanation:

[0041] 100-faucet, 10-body, 11-mineralized water road, 12-adjusting water road, 13-faucet water inlet, 14-water inlet water road, 15-water outlet water road, 20-control valve, 30-filter core subassembly, 31-housing, 32-filter tube, 321-filter material area, 322-water inlet hole, 33-water stop subassembly, 331-screw rod, 332-water stop piece, 3321-water stop part, 3322-connection part, 3323-screw hole, 333-pull rod, 334-water stop piece, 34-water outlet hole, 40-driving piece, 50-first detection module, 51-second detection module, 60-controller, 70-flow collecting piece, 71-flow collecting piece water outlet, 72-flow collecting piece first water inlet, 73-flow collecting piece second water inlet, 200-mineral water mineralization water purification equipment, 210-water purifier, 220-mineralization filter core, 230-water purification filter core. Specific implementation

[0042] The technical scheme in the embodiments of the utility model will be described clearly and completely below in combination with the drawings in the embodiments of the utility model, and apparently, the described embodiments only are a part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without the premise of the creative labor belong to the range of the utility model protection.

[0043] The terms "first", "second", and the like in the description and claims of the present utility model and the above drawings are used to distinguish different objects, rather than to describe a specific order. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, system, product or device including a series of steps or units is not limited to the listed steps or units, but can optionally include steps or units not listed, or can optionally include other steps or units inherent to these processes, methods, products or devices.

[0044] Reference herein to "embodiment" or "implementation" means that the particular feature, structure, or characteristic described in connection with the embodiment or implementation can be included in at least one embodiment of the present utility model. The appearance of the phrase in various places in the specification does not necessarily all refer to the same embodiment, nor is it necessarily mutually exclusive of other embodiments. It is explicitly and implicitly understood that the embodiments described herein can be combined with other embodiments.

[0045] At present, with the continuous improvement of people's living standards, the importance of drinking water is also increasing. The water that people can drink can be roughly divided into tap water, pure water and mineral water. Tap water contains impurities, bacteria and heavy metal pollution. Pure water is acidic and does not benefit the acid-base balance of the human body. The faucet, as the terminal device of water, the traditional faucet used in the market at present has a single function, which is limited to safe water use.

[0046] The faucet in the related art can only discharge one way of water, and the faucet in the related art cannot adjust the water discharge mode of the faucet in multiple ways, so that the function of the faucet is single and the use scene is limited.

[0047] In view of this, the present implementation provides a faucet 100 and a mineralized water purification equipment 200. The faucet 100 can output corresponding mineralized drinking water according to user needs.

[0048] Please refer to Figures 1 to 5 A faucet 100, comprising:

[0049] A body 10, comprising: a mineralized water path 11, an adjusting water path 12, and a faucet water inlet 13;

[0050] A control valve 20, in communication with the mineralized water path 11, the adjusting water path 12, and the faucet water inlet 13, the control valve 20 being configured to control the water inflow of the mineralized water path 11 and the adjusting water path 12;

[0051] The filter core assembly 30 is arranged on the mineralized water path 11, and comprises a shell 31, a filter pipe 32, and a water stop assembly 33. The outer periphery of the filter pipe 32 is provided with a plurality of filter material areas 321, and each filter material area 321 of the filter pipe 32 is provided with a water inlet hole 322. The water stop assembly 33 is movably arranged in the filter pipe 32, and has a plurality of preset positions.

[0052] The driving member 40 is arranged in the body 10, and is connected with the water stop assembly 33. The driving member 40 is used for driving the water stop assembly 33 to switch between the plurality of preset positions.

[0053] The water faucet 100 comprises the body 10, the control valve 20 arranged in the body 10, the mineralized water path 11, the adjusting water path 12, the faucet water inlet 13, the water flow entering the control valve 20 through the faucet water inlet hole 322, the water path being divided into two paths by the control valve 20, one of which is connected with the mineralized water path 11, and the other of which is connected with the adjusting water path 12, the filter core assembly 30 arranged on the mineralized water path 11, the filter core assembly 30 comprising the shell 31, the filter pipe 32, and the water stop assembly 33, the filter pipe 32 and the water stop assembly 33 being arranged in the shell 31, the outer periphery of the filter pipe 32 being provided with a plurality of filter material areas 321, and the water inlet hole 322 being arranged at the position of the filter pipe 32 corresponding to each filter material area 321, the water flow being able to flow through the filter material area 321 after entering the filter pipe 32, and then entering the filter pipe 32 through the water inlet hole 322, the water stop assembly 33 being movably arranged in the filter pipe 32 and connected with the driving member 40, so that the driving member 40 can drive the water stop assembly 33 to displace in the filter pipe 32, so that the water path only flows through the required filter material area 321, and when the water stop assembly 33 moves to a preset position, the water stop assembly 33 can connect the filter material area 321 at the corresponding position and the water outlet hole 34, so that the water flow enters the filter pipe 32 and is discharged to the outside of the filter pipe 32, so that the filter core assembly 30 can output the mineralized water flow required by the user.

[0054] It can be understood that the filter pipe 32 is arranged in the shell 31, the outer periphery of the filter pipe 32 is provided with a plurality of filter material areas 321, and the water inlet hole 322 is arranged on the filter pipe 32, the water flow can enter the filter material area 321 after entering the shell 31, and the water flow can be mineralized after flowing through the filter material area 321. The water flow can enter the filter pipe 32 after being mineralized, and then be discharged from the water outlet hole 34.

[0055] It can be understood that the filter pipe 32 is also provided with a cavity part and a water outlet hole 34, and the water outlet hole 34 and the water inlet hole 322 can be communicated through the water stop assembly 33; the water stop assembly 33 can form a flow channel for the water outlet hole 34 and the water inlet hole 322, so that the water flow flows out to the filter pipe 32 through the flow channel; the water stop assembly 33 has a plurality of preset positions, which can be set according to the number of filter material areas 321, or can be set according to the matching or combination mode of the required minerals; when the water stop assembly 33 is located at the preset position, the water stop assembly 33 can communicate the water inlet hole 322 and the water outlet hole 34 of the required mineral area, so that the water flow can enter the cavity part after flowing through the filter material area 321 at the corresponding position and be discharged through the flow channel formed by the water stop assembly 33, so that the water flow can be mineralized, and the water flow can also be mineralized according to the needs of the user.

[0056] Please refer to Figure 6 In some embodiments, the water stop assembly 33 comprises a screw rod 331 and a water stop part 332.

[0057] The screw rod 331 is arranged in the filter pipe 32, and the axis of the screw rod 331 is collinear with the axis of the filter pipe 32; the water stop part 332 is arranged on the screw rod 331, and the screw rod 331 drives the water stop part 332 to move in the axial direction of the screw rod 331.

[0058] It can be understood that the water stop assembly 33 comprises a screw rod 331 and a water stop part 332; wherein the screw rod 331 is arranged in the housing 31; one end of the screw rod 331 is arranged at the bottom of the housing 31, and the other end of the screw rod 331 extends to the outside of the housing 31; the water stop part 332 is arranged on the screw rod 331; in order to better drive the water stop part 332 by the screw rod 331 and better seal the cavity part away from the water outlet hole 34, the axis of the screw rod 331 is collinear with the axis of the filter pipe 32, and the size of the water stop part 332 is matched with the cavity part, so that the water stop part 332 can simultaneously seal and communicate; the water stop part 332 can be driven by the screw rod 331; specifically, when the screw rod 331 extending to the outside of the housing 31 rotates, the water stop part 332 can be driven by the screw rod 331 to move in the axial direction of the screw rod 331, so that the water stop part 332 can be moved to the preset position, and the position of the water stop part 332 can be adjusted.

[0059] Please refer to Figure 8 In some embodiments, the water stop part 332 comprises a water stop part 3321 and a connecting part 3322,

[0060] The water stop part 3321 is connected with the connecting part 3322, the connecting part 3322 and the water stop part 3321 are both provided with a threaded hole 3323, and the screw rod 331 is connected with the water stop part 332 through the threaded hole 3323.

[0061] It can be understood that the water stop 332 includes a water stop portion 3321 and a connecting portion 3322, the water stop portion 3321 and the connecting portion 3322 are connected in sequence, the connecting portion 3322 is a step provided on the water stop portion 3321, threaded holes 3323 are provided on the connecting portion 3322 and the water stop portion 3321, and the screw rod 331 passes through the threaded holes 3323, so that when the screw rod 331 rotates, the water stop 332 can be driven to move in the axial direction of the screw rod 331, so that when the screw rod 331 rotates, the water stop 332 can be driven to move on the screw rod 331.

[0062] Please refer to Figure 4 In some embodiments, the filter tube 32 is provided with a water outlet hole 34, when the water stop assembly 33 is located at the preset position, the water stop assembly 33 connects the water inlet hole 322 and the water outlet hole 34, so that the water flow can flow through the filter material area 321 at the preset position into the filter tube 32 and be discharged through the water outlet hole 34.

[0063] It can be understood that the filter tube 32 is provided with a water outlet hole 34, the water outlet hole 34 is communicated with the axis of the filter tube 32, the water flow can enter the filter tube 32 through the water inlet hole 322 after flowing through the filter material in this area, the filter tube 32 is provided with a plurality of preset positions, when the water stop assembly 33 moves to the preset position, the water stop assembly 33 can connect the water inlet hole 322 and the water outlet hole 34 of the filter material area 321 at the corresponding position, the water flow can enter the filter tube 32 through the water inlet hole 322 after flowing through the filter material area 321 at the corresponding position, and then be discharged outside the filter tube 32, so that the position of the water stop assembly 33 can be adjusted to make the water flow only flow through the required filter material area 321, and then the filter core can output the mineralized water flow required by the user.

[0064] Please refer to Figure 9 In some embodiments, the water stop assembly 33 includes a pull rod 333 and a water blocking member 334.

[0065] The water blocking member 334 is arranged in the filter tube 32, the pull rod 333 is connected with the water blocking member 334, and the pull rod 333 is used to drive the water blocking member 334 to move in the filter tube 32.

[0066] It can be understood that the water stop assembly 33 comprises a pull rod 333 and a water blocking piece 334; the water blocking piece 334 is movably arranged in the cavity portion, and the pull rod 333 is fixedly connected with the water blocking piece 334, so that the water blocking piece 334 is driven to move by the pull rod 333, and the water blocking piece 334 is displaced in the cavity portion, so that the position of the water blocking piece 334 in the cavity portion is adjusted, and the water inlet hole 322, the water blocking piece 334 and the water outlet hole 34 form a flow channel in the cavity portion, so that the water flow can be discharged through the water outlet hole 34 after flowing through the filter material area 321 and passing through the water inlet hole 322 and the cavity portion.

[0067] Please refer to Figure 11 In some embodiments, further comprising: a first detection module 50 and a second detection module 51.

[0068] The body 10 further comprises a water inlet channel 14 and a water outlet channel 15, the first detection module 50 is arranged in the water inlet channel 14, and the second detection module 51 is arranged in the water outlet channel 15; the first detection module 50 and the second detection module 51 are both used for detecting the PH value or the TDS value of the water flow.

[0069] It can be understood that further comprising: a first acquisition unit and a second acquisition unit, the body 10 further comprises a water inlet channel 14 and a water outlet channel 15; the first acquisition unit can be arranged in the water inlet channel 14, so that the first acquisition unit can detect the PH value and / or the TDS value of the water flow in the water inlet channel 14, and the second acquisition unit can be arranged in the water outlet channel 15, so that the PH value and / or the TDS value of the water outlet channel 15 can be detected by the second acquisition unit, so that the water quality of the current water inlet channel 14 and the water outlet channel 15 of the faucet 100 can be detected, and the TDS value and / or the PH value of the water inlet channel 14 and the output water channel can be acquired, so that the control valve 20 can adjust the water flow input by the mineralization water channel 11 and the water flow input in the adjustment water channel 12 according to the real-time acquired TDS value and / or PH value, so that the output water flow can meet the water demand of the user.

[0070] Optionally, the first acquisition unit and the second acquisition unit are both TDS sensors. The content of total dissolved solids (TDS) in water is measured by the two TDS sensors, so that the water quality detection is more accurate, the TDS sensor is simple in design and convenient to operate, can directly output a digital signal which is directly accepted and used by the reality module, can reduce the volume and complexity of the whole system, and the TDS sensor can convert the TDS value into the PH value after simple calculation by the controller 60, so that the acquisition of the PH value and the TDS value can be realized only by the TDS sensor.

[0071] It can be understood that the acquisition module is arranged on the mineralized water path 11, and the PH value and / or TDS value on the mineralized water path 11 are acquired through the acquisition module. When the acquisition module acquires the PH value and / or TDS value, the acquired PH value and / or TDS value can be sent to the control valve 20. After the control valve 20 obtains the data of the acquisition module, the TDS value and / or PH value of the water required by the user or the standard value of the drinking water can be compared with the TDS value and / or PH value acquired by the acquisition module to adjust the opening degree of the control valve 20. In this way, the water flow output after mixing by the control valve 20 can meet the water output value preset by the user or meet the water standard.

[0072] Please refer to Figure 11 In some embodiments, the controller 60 is further included.

[0073] The controller 60 is arranged in the faucet 100, and the controller 60 is connected with the control valve 20, the first detection module 50, the second detection module 51, and the driving member 40. The first detection module 50 and the second detection module 51 are both used for detecting the PH value or TDS value of the water flow.

[0074] It can be understood that the controller 60 is arranged in the faucet 100, and the controller 60 is connected with the control valve 20, the first acquisition unit, and the second acquisition unit. In this way, the controller 60 can acquire the PH value or TDS value of the water inlet end of the first filter element through the first acquisition unit and acquire the PH value or TDS value of the water outlet end of the first filter element through the second acquisition unit. When the user sets the water output requirement, the controller 60 can output water according to the PH value or TDS value preset by the user. When the second acquisition unit detects that the current water output exceeds or is lower than the value set by the user, the controller 60 can adjust the opening degree of the control valve 20 according to the value acquired by the first acquisition module after calculation to change the water inlet proportion of the adjusting water path 12 and the mineralized water path 11. In this way, the PH value of the current water output of the faucet 100 can be adjusted to match the PH value or TDS value preset by the user to meet the water requirement of the user.

[0075] It can be understood that the display module is connected with the controller 60. In this way, when the controller 60 acquires the PH value or TDS value of the first acquisition module and the PH value or TDS value of the second acquisition module, the controller 60 can display the PH value or TDS value on the display module. In this way, the user can observe the TDS value or PH value of the current water output of the faucet 100 and adjust the water inlet amount of the control valve 20 according to the TDS value or PH value displayed on the display module to make the TDS value or PH value of the water flow output by the faucet 100 meet the requirement of the user.

[0076] Please refer toFigure 10 In some embodiments, the body 10 further comprises a flow collector 70.

[0077] The flow collector 70 comprises a flow collector outlet 71, a flow collector first inlet 72, and a flow collector second inlet 73, wherein the flow collector first inlet 72 is connected to the mineralized water path 11, the flow collector second inlet 73 is connected to the adjusted water path 12, and the flow collector outlet 71 is connected to the faucet 100 outlet.

[0078] It can be understood that the body 10 further comprises a flow collector 70, and the flow collector 70 can combine the originally two-way water flow in the body 10 into one way, so that the water flow in the mineralized water path 11 and the adjusted water path 12 can be mixed together; specifically, the flow collector 70 has a flow collector first inlet 72, a flow collector second inlet 73, and a flow collector outlet 71; wherein the flow collector first inlet 72 can be connected to the mineralized water path 11, and the flow collector second inlet 73 can be connected to the adjusted water path 12; in this way, the adjusted water path 12 and the water inlet path 14 can be combined into one way by the flow collector 70, so that the water flow can be mixed in the flow collector 70, and the mixed water flow can be discharged through the faucet 100 outlet, so that the water of different proportions can be output to meet the needs of users.

[0079] Please refer to Figure 12 The utility model also provides a mineralized water purification equipment 200, the mineralized water purification equipment 200 includes:

[0080] The water purification device 210 and the faucet 100 are connected.

[0081] It can be understood that the above-mentioned mineralized water purification equipment 200 comprises a water purification device 210 and a faucet 100, wherein the water purification device 210 is used for purifying municipal water supply, and the purified water flow enters the faucet 100, and the faucet 100 can realize the purpose of adjusting the water flow of the mineralized water path 11 and the adjusted water path 12 through the control valve 20 in the faucet 100, and the water flow in the mineralized water path 11 and the adjusted water path 12 is mixed before the output faucet 100, so that the water of different needs can be output.

[0082] Please refer to Figure 12 In some embodiments, the mineralized water purification equipment 200 comprises a mineralized filter element 220 and a water purification filter element 230.

[0083] The mineralization filter element 220 is connected to the mineralization water path 11 and supplies water to the mineralization water path 11, and the water purification filter element 230 is connected to the adjustment water path 12 and supplies water to the adjustment water path 12.

[0084] It can be understood that the water purifier 210 comprises the mineralization filter element 220 and the water purification filter element 230, the water purification filter element 230 is connected to the mineralization filter element 220, water flows out after being purified by the purification filter element and enters the mineralization filter element 220, and the mineralization filter element 220 outputs the water to the body 10 after preliminary mineralization of the water.

[0085] In the present application, the phrase "embodiment" or "embodiments" means that the specific features, structures or characteristics described in connection with the embodiment can be included in at least one embodiment of the present application. The appearance of the phrase in the specification does not necessarily mean the same embodiment, nor is it an independent or alternative embodiment that is not mutually exclusive with other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described in the present application can be combined with other embodiments. In addition, it should be understood that the features, structures or characteristics described in the embodiments of the present application can be combined with each other without contradiction, to form another embodiment that does not depart from the spirit and scope of the technical scheme of the present application.

[0086] Finally, it should be noted that the above embodiments are only used to illustrate the technical scheme of the present application and are not limiting. Although the present application has been described in detail with reference to the above preferred embodiments, those skilled in the art should understand that the technical scheme of the present application can be modified or replaced without departing from the spirit and scope of the technical scheme of the present application.

Claims

1. A faucet, characterized by, Comprise: The body comprises: mineralized waterway; Filter core assembly, the filter core assembly is provided on the mineralized waterway, the filter core assembly comprises: a shell, a filter tube, a water stop assembly; The outer periphery of the filter tube is provided with a plurality of filter material areas, and each filter material area of the filter tube is provided with a water inlet hole; The water stop assembly is movably arranged in the filter tube, and the water stop assembly has a plurality of preset positions; Driving piece, the driving piece is arranged in the body, the driving piece is connected with the water stop assembly, and the driving piece is used for driving the water stop assembly to switch between the plurality of preset positions.

2. The faucet of claim 1, wherein The water stop assembly comprises: a screw rod and a water stop piece; The screw rod is arranged in the filter tube, the axis of the screw rod is collinear with the axis of the filter tube; The water stop piece is arranged on the screw rod, and the screw rod drives the water stop piece to move in the axial direction of the screw rod.

3. The faucet of claim 2, wherein The water stop piece comprises: a water stop part and a connecting part, The water stop part is connected with the connecting part, the connecting part and the water stop part are both provided with threaded holes, and the screw rod passes through the threaded holes to be connected with the water stop piece.

4. The faucet of claim 3, wherein The filter tube is provided with a water outlet hole, when the water stop assembly is located at the preset position, the water stop assembly connects the water inlet hole and the water outlet hole, so that the water flow can flow through the filter material area of the preset position into the filter tube and be discharged through the water outlet hole.

5. The faucet of claim 1, wherein The water stop assembly comprises: a pull rod and a water blocking piece; The water blocking piece is arranged in the filter tube, the pull rod is connected with the water blocking piece, and the pull rod is used for driving the water blocking piece to move in the filter tube.

6. The faucet of claim 1, wherein Also include: Control valve; The body further comprises: an adjusting waterway and a faucet water inlet, the control valve is communicated with the mineralized waterway, the adjusting waterway and the faucet water inlet, and the control valve is used for controlling the water inflow of the mineralized waterway and the adjusting waterway.

7. The faucet of claim 6, wherein Also include: First detection module, second detection module; The body further comprises: an inlet waterway and an outlet waterway, the first detection module is arranged in the inlet waterway, and the second detection module is arranged in the outlet waterway; The first detection module and the second detection module are both used for detecting the PH value or TDS value of water flow.

8. The faucet of claim 7, wherein Also include: Controller; The controller is arranged in the faucet, the controller is connected with the control valve, the first detection module, the second detection module and the driving piece, and the first detection module and the second detection module are both used for detecting the PH value or TDS value of water flow.

9. The faucet of claim 8, wherein Also include: Flow collecting piece; The flow collecting piece comprises: a flow collecting piece water outlet, a flow collecting piece first water inlet and a flow collecting piece second water inlet, wherein the flow collecting piece first water inlet is connected with the mineralized waterway, the flow collecting piece second water inlet is connected with the adjusting waterway, and the flow collecting piece water outlet is connected with the faucet water outlet.

10. A mineral spring mineralization water purification device, characterized by, The mineral spring mineralization water purification equipment comprises: Water purifier and The faucet according to any one of claims 1-9, wherein the faucet is connected with the water purifier.