Electric control faucet device and mineral spring mineralization water purification equipment
By integrating mineralization filter and pre-filter into an electronically controlled faucet, the problem of needing to set mineralized water and domestic water separately in existing faucets is solved. This allows for switching between functions on a single faucet, extends the lifespan of the mineralization filter, and enhances the user experience and technological feel.
Patent Information
- Application Number
- CN202423177750.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2034-12-20
AI Technical Summary
Existing faucets require separate functions for mineralized water and domestic water, which is inconvenient to install and use, and the mineralized filter has a short lifespan, resulting in a poor user experience.
Design an electrically controlled faucet device that switches between mineral water and domestic water channels via an electrically controlled component. It integrates a mineralization filter and a pre-filter, achieving electrically controlled switching, reducing the wear and tear on the mineralization filter, and extending its service life.
It enables switching between mineral water and domestic water on a single faucet, reducing operating costs, enhancing user experience and technological appeal, making it suitable for young consumers, and featuring a compact and aesthetically pleasing design.
Smart Images

Figure CN223839827U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of faucets, specifically to an electrically controlled faucet device and a mineral water purification equipment. Background Technology
[0002] Currently, some faucets on the market are equipped with filter cartridges to remove impurities and odors from the water. Other faucets have externally connected filter cartridges for adding minerals to the water. Because these two types of faucets have different functions, it is generally necessary to install two different faucets to achieve the corresponding functions, which is inconvenient for both installation and use. Utility Model Content
[0003] In view of this, the present invention provides an electrically controlled faucet device and a mineral water purification equipment, which can switch between mineral water and domestic water through electrical control on a single faucet. It is convenient to install and use, has a relatively strong sense of style and technology, and does not consume the lifespan of the mineral filter when using domestic water.
[0004] This utility model provides the following technical solution:
[0005] An electrically controlled faucet device includes a device body, which has an inlet channel and an outlet channel. The device body also has a mounting position for installing a filter element component. The filter element component includes a first filter body for dissolving minerals into the water flow and a second filter body for pre-filtration. The filter element component has a first filter body channel and a second filter body channel, with the first filter body channel passing through the first filter body and the second filter body channel passing through the second filter body. Both the first and second filter body channels are located between the inlet channel and the outlet channel. The electrically controlled faucet device includes an electrically controlled component for switching either the first or second filter body channel to simultaneously connect to both the inlet and outlet channels.
[0006] Optionally, the electronic control component includes an electronically controlled valve, which is located upstream or downstream of the filter element component; the device body is connected to a control module, and the control module is electrically connected to a power input component.
[0007] Optionally, the electrically controlled valve is located above the filter element component in the axial direction; or, the electrically controlled valve is located below the filter element component in the axial direction.
[0008] Optionally, the electronically controlled valve has a first water inlet and a second water inlet, the first water inlet being connected to the outlet end of the first filter channel, and the second water inlet being connected to the outlet end of the second filter channel;
[0009] The electrically controlled valve has a water outlet interface, which is connected to the water outlet channel.
[0010] Optionally, the filter element component is provided with a filter element water inlet interface, and the water inlet ends of the first filter body channel and the second filter body channel are both connected to the filter element water inlet interface.
[0011] Optionally, the filter element inlet is connected to the water inlet channel, the filter element inlet and the water outlet are connected by the first filter body, and the filter element inlet and the water outlet are connected by the second filter body.
[0012] Optionally, the second filter body is cylindrical, the first filter body is cylindrical, and the first filter body and the second filter body are arranged vertically; the filter element inlet is connected to the outside of the second filter body and the first filter body, and the outlet is connected to the internal channel of the first filter body;
[0013] The second filter body has a central hole inside, which extends through both ends of the second filter body in the axial direction, and the central hole is connected to the water outlet through a central tube.
[0014] Optionally, the first filter body and the second filter body are coaxially arranged vertically, and an annular partition is provided between the first filter body and the second filter body. The inner hole of the annular partition is fixedly connected to one end of the central tube. The second filter body channel includes the internal channel of the central tube, and the other end of the central tube is connected to the water outlet. The central tube passes through the first filter body, and the inner side of the first filter body and the outer side of the central tube form a mineralized water channel. The first filter body channel includes the mineralized water channel, and the mineralized water channel is connected to the water outlet end of the first filter body channel.
[0015] Optionally, the inlet channel and / or outlet channel are equipped with TDS sensors.
[0016] This utility model also provides a mineral spring mineralization water purification device, which includes the above-mentioned electric faucet device and a water purifier. The water inlet channel of the electric faucet device is connected to the water outlet of the water purifier.
[0017] Optionally, the electric faucet device is connected to a power cord for plugging into the power output interface of the water purifier or for plugging into an external power socket.
[0018] This utility model provides an electrically controlled faucet device and a mineral water purification device, comprising a device body with an inlet channel and an outlet channel, and an installation position for installing a filter element component. The filter element component includes a first filter body for dissolving minerals into the water flow and a second filter body for pre-filtration. The filter element component has a first filter body channel and a second filter body channel, with the first filter body channel passing through the first filter body and the second filter body channel passing through the second filter body. Both the first and second filter body channels are located between the inlet and outlet channels. The electrically controlled faucet device includes an electrically controlled component for switching either the first or second filter body channel to simultaneously connect to both the inlet and outlet channels, thereby allowing the incoming water to pass through the first filter body channel to obtain mineral water. Water passes through the second filter channel to obtain domestic water, which bypasses the first filter, thus preventing a short lifespan for the first filter and reducing user costs. Users can adjust the water output mode via an electronically controlled valve. When the valve is switched to the first state, with the first filter channel connected to both the inlet and outlet channels, water flows through the first filter and outlet channel to output mineralized water. When the valve is switched to the first state, with the first filter channel connected to both the inlet and outlet channels, water flows through the first filter and outlet channel to output mineralized water. When the valve is switched to the second state, with the second filter channel connected to both the inlet and outlet channels, water flows through the second filter and outlet channel to output domestic water, which can be used for washing dishes, fruits, and vegetables. The electronically controlled design is stylish and technologically advanced, making it appealing to younger consumers and facilitating the intelligent application of electronically controlled faucets. Attached Figure Description
[0019] 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.
[0020] Figure 1 A three-dimensional assembly diagram of the electrically controlled faucet device provided in an embodiment of this utility model;
[0021] Figure 2 A three-dimensional cross-sectional view of the electrically controlled faucet device provided in an embodiment of this utility model;
[0022] Figure 3 A perspective view of the electrically controlled faucet device provided in the embodiments of this utility model;
[0023] Figure 4Another perspective cross-sectional view of the electrically controlled faucet device provided in an embodiment of this utility model. Detailed Implementation
[0024] 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.
[0025] 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.
[0026] 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.
[0027] Most faucets currently on the market are single-outlet designs. While some faucets are equipped with filters to remove impurities from the water, they cannot switch between different water flow modes according to user needs. Users typically require multiple faucets when using different water sources, which is inconvenient for installation. Furthermore, the design of multiple faucets is neither aesthetically pleasing nor simple, resulting in a poor user experience.
[0028] Therefore, this embodiment provides an electrically controlled faucet device, such as... Figures 1 to 4As shown, the device includes a main body 100, which can be shaped like a faucet. The main body 100 is provided with an inlet channel 110 and an outlet channel 120. The inlet channel 110 can be connected to a water supply pipe, and the outlet channel 120 is used for water discharge. The main body 100 has a mounting position for installing a filter element 500; the filter element 500 can be detachable and replaceable. The filter element 500 includes a first filter element 510 for dissolving minerals into the water flow and a second filter element 520 for pre-filtration. The first filter element 510 can be a mineralizing filter containing minerals; when water flows through it, in addition to removing impurities and odors, it can also dissolve minerals into the water flow to obtain mineralized water. The second filter element 520 is used for adsorption filtration of the water flow to remove impurities and odors. The filter element component 500 is provided with a first filter body channel and a second filter body channel. The first filter body channel passes through a first filter body 510, and the second filter body channel passes through a second filter body 520. Both the first filter body channel and the second filter body channel are located between the water inlet channel 110 and the water outlet channel 120. The electric faucet device includes an electric control component 200, which is used to switch either the first filter body channel or the second filter body channel to be simultaneously connected to the water inlet channel 110 and the water outlet channel 120. The first filter channel and the second filter channel can be simultaneously connected to the inlet channel 110 and the outlet channel 120, thereby allowing the inlet water to pass through the first filter channel to obtain mineral water, or by switching the conduction state of the electronic control component 200, allowing the inlet water to pass through the second filter channel to obtain domestic water. Domestic water does not need to pass through the first filter 510, reducing the wear and tear on the first filter 510. The first filter 510 has a long service life and a longer maintenance and replacement cycle, which helps to reduce the user's operating costs. The user can adjust the water output mode through the electronic control valve as needed, switching between mineral water and domestic water output. The mineral water can be used for drinking, while the domestic water can be used for washing tableware, fruits and vegetables, etc. The user can select the mode according to their needs through electronic control. It has a strong sense of style and technology, and does not require the installation of multiple faucets, making it convenient to use.
[0029] Optionally, the electronic control component 200 includes an electronic control valve 220, which is located upstream or downstream of the filter element component 500; the device body 100 is connected to a control module 210, which is electrically connected to a power input component, which can be a power cord, and the power cord can be connected to the power supply socket of the water purifier main unit or a mains socket.
[0030] Optionally, the control module 210 can be electrically connected to a push-button switch, touch switch, touch screen, etc., as an operation control component. This operation control component can switch the state of the electrically controlled valve 220. In the first state, only the first filter channel of the electrically controlled valve 220 is connected to the inlet channel 110 and the outlet channel 120. In the second state, only the second filter channel is connected to both the inlet channel 110 and the outlet channel 120. The electrically controlled valve 220 can also have a third state, where neither the first nor the second filter channel is connected to the inlet channel 110 or the outlet channel 120, and the electrically controlled faucet is in a closed or standby state. The control module 210 can also be connected to a voice control module, allowing users to switch the state of the electrically controlled valve 220 via voice control to change the water outlet mode. In specific applications, the control module 210 can also be connected to a gesture sensor, allowing users to switch the state of the electrically controlled valve 220 via gesture control to change the water outlet mode.
[0031] In practical applications, the control module 210 can be connected to a vision sensor to identify items placed by the user below the water outlet of the device body 100. For example, when a drinking cup is placed there, the system switches to connect the first filter channel with the inlet channel 110 and the outlet channel 120. If fruits or vegetables are placed there for washing, the system switches to connect the second filter channel with the inlet channel 110 and the outlet channel 120, demonstrating a high level of intelligence. The application of the electronically controlled valve 220 provides the foundation for this intelligent functionality.
[0032] Optionally, the solenoid valve 220 is positioned above the filter element component 500 in the axial direction. Even if there is leakage at the interface of the filter element component 500, the solenoid valve 220, being above, is less likely to be affected. Alternatively, the solenoid valve 220 can be positioned below the filter element component 500 in the axial direction, with the filter element component 500 positioned near the top of the device body 100. This makes replacing the filter element component 500 relatively convenient, eliminating the need to operate from below the countertop. Positioning the solenoid valve 220 above or below the filter element component 500 allows the faucet device to make reasonable use of space in the vertical direction, resulting in a smaller radial dimension of the faucet.
[0033] Optionally, in this embodiment, taking the electrically controlled valve 220 positioned above the filter element component 500 in the axial direction as an example, the water flow direction of the filter element component 500 is bottom inlet and top outlet. The bottom of the filter element component 500 has one or two inlets, and the electrically controlled valve 220 is connected to the two outlets of the filter element component 500. Alternatively, the filter element component 500 can also have two inlets and one outlet, and the electrically controlled valve 220 can be used to switch the on / off state of the two inlets and the inlet channel 110. In this embodiment, the electrically controlled valve 220 has a first inlet port 201 and a second inlet port 202. The first inlet port 201 is connected to the outlet end of the first filter body channel, and the second inlet port 202 is connected to the outlet end of the second filter body channel. The first inlet port 201 and the outlet end of the first filter body channel can be directly connected or connected via a pipeline. The second inlet port 202 and the outlet end of the second filter body channel can be directly connected or connected via a pipeline.
[0034] Optionally, the electrically controlled valve 220 has a water outlet 203 connected to the water outlet channel 120. In the on state (state one and state two), either the first water inlet 201 or the second water inlet 202 can be connected to the water outlet 203. In the off state (state three), neither the first water inlet 201 nor the second water inlet 202 is connected to the water outlet 203, and the electrically controlled faucet stops dispensing water.
[0035] Optionally, the filter element component 500 is provided with a filter element water inlet interface 501, and the water inlet ends of the first filter body channel and the second filter body channel are both connected to the filter element water inlet interface 501. In some embodiments, the water inlet pipe can be directly connected to the filter element water inlet interface 501, which is simple in structure and easy to install.
[0036] Optionally, the filter element inlet 501 is connected to the inlet channel 110. The filter element inlet 501 and the outlet 203 are connected via the first filter body 510, and the filter element inlet 501 and the outlet 203 are connected via the second filter body 520. The first filter body channel and the second filter body channel are arranged in parallel. The second filter body 520 can be a pure carbon filter body, such as a carbon rod, carbon fiber, granular carbon, ceramic filter media, etc., which is low in cost and has good filtration effect.
[0037] Optionally, the second filter body 520 is cylindrical, and the first filter body 510 is cylindrical, with the first filter body 510 and the second filter body 520 arranged vertically. The filter element inlet 501 is connected to the outside of the second filter body 520 and the first filter body 510, and the outlet 203 is connected to the internal channel of the first filter body 510. The second filter body 520 has a central hole inside, which extends through both ends of the second filter body 520 in the axial direction. The central hole is connected to the outlet 203 through a central tube 540. When the outlet 203 is connected to the outlet channel 120, the water flowing into the filter element inlet 501 enters the second filter body 520 radially from the outside of the second filter body 520 and enters its inside, then flows from the central tube 540 through the outlet 203 to the outlet channel 120.
[0038] Optionally, the first filter body 510 and the second filter body 520 are coaxially arranged vertically, and an annular partition 550 is provided between the first filter body 510 and the second filter body 520. The inner hole of the annular partition 550 is fixedly connected to one end of the central tube 540. The second filter body channel includes the internal channel of the central tube 540, and the other end of the central tube 540 is connected to the water outlet 203. The central tube 540 passes through the first filter body 510, and the inner side of the first filter body 510 and the outer side of the central tube 540 form a mineralized water channel. The first filter body channel includes the mineralized water channel, and the mineralized water channel is connected to the water outlet end of the first filter body channel. When the water outlet 203 is connected to the water outlet channel 120, the water flow from the filter element inlet 501 enters and flows radially from the outside of the first filter body 510 into its inside, and then flows out of the mineralized water channel through the first filter body channel and through the electric control valve 220 to the water outlet channel 120.
[0039] This utility model also provides a mineral spring mineralization water purification device, which includes the above-mentioned electric faucet device and a water purifier. The water inlet channel 110 of the electric faucet device is connected to the water outlet interface 203 of the water purifier.
[0040] Optionally, the electrically controlled faucet device is connected to a power cord for plugging into the power output interface of the water purifier or for plugging into an external power socket. The electrically controlled faucet device may have a control panel, which may include a display screen. In specific applications, the electrically controlled faucet device may include an acquisition module, located on the outlet channel 120 and / or the inlet channel 110. The acquisition module is used to acquire the pH value or TDS value of the water flow. The acquisition module may include an inlet water flow sensor and an outlet water flow sensor. The inlet water flow sensor is located in the outlet channel 120 and is used to acquire water quality information of the water flow, which may include pH value and / or TDS value. The outlet water flow sensor is located in the outlet channel 120 and is used to acquire water quality information of the outlet water flow, which may include pH value and / or TDS value. The inlet water flow sensor and the outlet water flow sensor may be TDS sensors and / or pH sensors. The electric faucet can be connected to a display screen assembly, which can be configured with a first display area and a second display area. The first display area displays the pH and / or TDS values of the incoming water flow, while the second display area displays the pH and / or TDS values of the outgoing water flow. Users can directly perceive the dynamic changes in the pH and / or TDS values of the incoming and outgoing water, resulting in a better user experience. A temperature sensor can be installed in the water outlet channel 120, and the display screen assembly can also display water temperature information.
[0041] This utility model provides an electrically controlled faucet device and a mineral water purification device, including a device body 100. The device body 100 is provided with a water inlet channel 110 and a water outlet channel 120. The device body 100 has an installation position for installing a filter element component 500. The filter element component 500 includes a first filter element 510 for dissolving mineral substances into the water flow and a second filter element 520 for pre-filtration. The filter element component 500 is provided with a first filter element channel and a second filter element channel. A filter channel passes through a first filter body 510, and a second filter channel passes through a second filter body 520; both the first and second filter channels are located between the inlet channel 110 and the outlet channel 120; the electrically controlled faucet device includes an electrical control component 200, which is used to switch either the first or second filter channel to simultaneously connect to both the inlet channel 110 and the outlet channel 120, thereby enabling mineral water to be obtained by passing water through the first filter channel. Water passes through the second filter channel to obtain domestic water, which bypasses the first filter 510, thus preventing a short lifespan for the first filter 510 and reducing user operating costs. Users can adjust the water output mode using the electric control valve 220 as needed. When the electric control valve 220 is switched to the first filter channel connecting the inlet channel 110 and the outlet channel 120, water flows through the first filter 510 and the outlet channel 120 to output mineralized water. When the electric control valve 220 is switched to the first state, the first filter channel is connected to the inlet channel... When the water is between the inlet channel 110 and the outlet channel 120, the water flows through the first filter body 510 and the outlet channel 120 to output mineralized water; when the electric control valve 220 switches to the second state, the second filter body channel is connected between the inlet channel 110 and the outlet channel 120, and the water flows through the second filter body 520 and the outlet channel 120 to output domestic water, which can be used to clean tableware, fruits and vegetables, etc. Through electric control, it has a strong sense of fashion and technology, which is easy to be favored by young consumers, and it is also conducive to the intelligent application of electric control faucet devices.
[0042] In specific applications, the first filter element 510 can be a one-piece molded filter element, which can be in the shape of a carbon rod and contain minerals. The first filter element 510 can be an alkaline filter cartridge to provide weakly alkaline purified water suitable for drinking by users.
[0043] In specific applications, the first filter body 510 includes a zinc-containing filter media 110 and an alkaline filter media 120. The zinc-containing filter media 110 and the alkaline filter media 120 can be cylindrical, with the alkaline filter media 120 coaxially fitted inside the zinc-containing filter media 110. The water flow in the mineralization channel can sequentially flow radially through the zinc-containing filter media 110 and the alkaline filter media 120. Alternatively, a third filter media can be sequentially arranged radially. The alkaline filter media 120 can be a weakly alkaline filter media. When the first filter body channel connects the inlet channel 110 and the outlet channel 120, the water flow can proceed from the outside of the zinc-containing filter media 110 to the inside of the alkaline filter media 120, meaning the water flow in the first water channel sequentially flows through the zinc-containing filter media 110 and the alkaline filter media 120. Zinc-containing filter media 110 can dissolve zinc ions in water, and alkaline filter media 120 can be a weakly alkaline filter media. The first filter body 510 can provide zinc-containing weakly alkaline water. When the first water path is open and water is flowing out, the zinc element in the zinc-containing filter media 110 can dissolve normally as the water flows through the zinc-containing filter media 110 and the alkaline filter media 120. When the faucet is closed, the water in the filter cartridge housing cannot be drained, and the zinc-containing filter media 110 and the alkaline filter media 120 are in a soaking state. When the first filter body 510 is in a soaking state, if the soaking water is pure water or tap water, the amount of zinc dissolved within a certain period of time will exceed the national standard safety limit, that is, the zinc concentration of the soaking water does not meet the drinking standard. By setting the alkaline filter media 120 as alkaline, the soaking water becomes weakly alkaline, thereby inhibiting the excessive dissolution of zinc from the zinc-containing filter media 110. This allows zinc to dissolve normally during flow, overcoming the technical difficulty of zinc-containing filter media easily leading to excessive zinc levels during soaking. Alternatively, the first filter body 510 can also be an alkaline filter body made of a mixture of strong and weak alkali materials. Alternatively, the first filter body 510 can also be incorporating other minerals beneficial to the human body, such as calcium- or magnesium-containing mineralized filter media.
[0044] This utility model also provides an electrically controlled faucet device and a mineral water purification device, including a device body 100. The device body 100 is provided with a water inlet channel 110 and a water outlet channel 120. The device body 100 has an installation position for installing a filter element component 500. The filter element component 500 includes a first filter element 510 for dissolving mineral substances into the water flow and a second filter element 520 for pre-filtration. The filter element component 500 is provided with a first filter element channel and a second filter element channel. The filter body channel has two channels: the first filter body channel passes through the first filter body 510, and the second filter body channel passes through the second filter body 520. Both the first and second filter body channels are located between the water inlet channel 110 and the water outlet channel 120. The electrically controlled faucet device includes an electrical control component 200, which is used to switch either the first or second filter body channel to simultaneously connect to both the water inlet channel 110 and the water outlet channel 120, thereby allowing the incoming water to pass through the first filter body channel and obtain minerals. Spring water is introduced through the second filter channel to obtain domestic water, which bypasses the first filter 510, thus preventing a short lifespan of the first filter 510 and reducing user costs. Users can adjust the water output mode using the electric control valve 220. When the electric control valve 220 is switched to the first filter channel connecting the inlet channel 110 and the outlet channel 120, water flows through the first filter 510 and the outlet channel 120 to output mineralized water. When the electric control valve 220 is switched to the first state, the first filter channel connects to the inlet channel 110 and the outlet channel 120. When the water channel 110 and the outlet channel 120 are connected, the water flows through the first filter body 510 and the outlet channel 120 to output mineralized water; when the electric control valve 220 switches to the second state, the second filter body channel is connected between the inlet channel 110 and the outlet channel 120, and the water flows through the second filter body 520 and the outlet channel 120 to output domestic water, which can be used to clean tableware, fruits and vegetables, etc. Through electric control, it has a strong sense of fashion and technology, which is easy to be favored by young consumers, and it is also conducive to the intelligent application of electric control faucet devices.
[0045] 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.
[0046] 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. An electrically controlled faucet device, characterized in that, The device includes a main body, which has an inlet channel and an outlet channel, and a mounting position for installing a filter element component. The filter element component includes a first filter element for dissolving minerals into the water flow and a second filter element for pre-filtration. The filter element component has a first filter element channel and a second filter element channel, wherein the first filter element channel passes through the first filter element and the second filter element channel passes through the second filter element. The first filter channel and the second filter channel are both located between the water inlet channel and the water outlet channel; the electric faucet device includes an electric control component, which is used to switch either the first filter channel or the second filter channel to be simultaneously connected to the water inlet channel and the water outlet channel.
2. The electrically controlled faucet device according to claim 1, characterized in that, The electronic control component includes an electronically controlled valve, which is located upstream or downstream of the filter element component; the device body is connected to a control module, which is electrically connected to a power input component.
3. The electrically controlled faucet device according to claim 2, characterized in that, The electrically controlled valve is located above the filter element component in the axial direction; or, the electrically controlled valve is located below the filter element component in the axial direction.
4. The electrically controlled faucet device according to claim 2, characterized in that, The electronically controlled valve has a first water inlet and a second water inlet. The first water inlet is connected to the outlet end of the first filter channel, and the second water inlet is connected to the outlet end of the second filter channel. The electrically controlled valve has a water outlet interface, which is connected to the water outlet channel.
5. The electrically controlled faucet device according to claim 4, characterized in that, The filter element component is provided with a filter element water inlet interface, and the water inlet ends of the first filter body channel and the second filter body channel are both connected to the filter element water inlet interface.
6. The electrically controlled faucet device according to claim 5, characterized in that, The filter element inlet is connected to the water inlet channel, the filter element inlet and the water outlet are connected by the first filter body, and the filter element inlet and the water outlet are connected by the second filter body.
7. The electrically controlled faucet device according to claim 6, characterized in that, The second filter body is cylindrical, and the first filter body is cylindrical, with the first filter body and the second filter body arranged vertically; the water inlet of the filter element is connected to the outside of the second filter body and the first filter body, and the water outlet is connected to the internal channel of the first filter body; The second filter body has a central hole inside, which extends through both ends of the second filter body in the axial direction. The central hole is connected to the water outlet through a central tube. The first filter body and the second filter body are arranged coaxially and vertically. An annular partition is provided between the first filter body and the second filter body. The inner hole of the annular partition is fixedly connected to one end of the central tube. The second filter body channel includes the internal channel of the central tube. The other end of the central tube is connected to the water outlet. The central tube passes through the first filter body. The inner side of the first filter body and the outer side of the central tube form a mineralized water channel. The first filter body channel includes the mineralized water channel, which is connected to the water outlet end of the first filter body channel.
8. The electrically controlled faucet device according to claim 1, characterized in that, The inlet and / or outlet channels are equipped with TDS sensors.
9. A mineral spring mineralization and water purification device, characterized in that, The mineral water purification equipment includes an electrically controlled faucet device as described in any one of claims 1 to 8, and also includes a water purifier, wherein the water inlet channel of the electrically controlled faucet device is connected to the water outlet of the water purifier.
10. The mineral water purification equipment according to claim 9, characterized in that, The electric faucet device is connected to a power cord for plugging into the power output interface of the water purifier or for plugging into an external power socket.