Faucet and mineral spring mineralization water purification equipment
By integrating a display module and a light-emitting unit into the faucet, water quality parameters can be detected and fed back in real time, solving the problem that traditional faucets cannot intuitively provide water quality feedback. This enables intuitive display and user adjustment of water quality parameters, improving the functionality and user experience of the faucet.
Patent Information
- Application Number
- CN202423174653.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-12-20
AI Technical Summary
Existing faucets cannot provide a clear indication of the current water quality, thus failing to meet users' diverse needs for drinking water.
A faucet with a display module and a light-emitting unit was designed. The module detects water quality parameters (pH value and TDS value) in real time, and the light-emitting unit intuitively indicates the water quality status through color changes. At the same time, it is combined with a filter cartridge to realize water mineralization and purification.
Users can intuitively observe and adjust water quality parameters to meet different water usage needs, thus improving the functionality of the faucet and the user experience.
Smart Images

Figure CN223740185U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the faucet field, concretely relates to a faucet and mineralized water purification equipment of mineral spring. BACKGROUND
[0002] At present, along with people's living standard unceasing improvement, 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, and the traditional faucet used in the current market is only limited to safe water, and the faucet cannot clearly and intuitively feedback the current water flow state. UTILITY MODEL CONTENT
[0003] Therefore, the utility model provides a faucet and mineralized water purification equipment of mineral spring. The faucet can intuitively observe the water quality state of the current water flow.
[0004] The utility model provides the following technical scheme:
[0005] A faucet, comprising: a body, a display module, a light emitting unit;
[0006] The body comprises a connecting portion and a main body portion, and the connecting portion and the main body portion are rotationally connected; the main body portion is provided with a mounting area, and the display module is arranged in the mounting area; the connecting portion and / or the connecting portion is provided with at least one display area, and the light emitting unit is arranged in the display area.
[0007] Further, the display area comprises: a first sub-display area and a second sub-display area, and the main body portion further comprises: a faucet water outlet;
[0008] The first sub-display area is arranged around the faucet water outlet, and the second sub-display area is arranged on the main body portion; the light emitting unit is arranged in the first sub-display area and the second sub-display area.
[0009] Further, the utility model further comprises: an acquisition module;
[0010] The body is provided with a water supply channel, the acquisition module is arranged on the water supply channel, and the acquisition module is used for acquiring the PH value and / or TDS value of the water supply channel.
[0011] Further, the utility model further comprises: a filter core assembly;
[0012] The filter core assembly is arranged on the water supply channel, and the filter core assembly is used for mineralizing the water flow in the water supply channel.
[0013] Further, the acquisition module comprises a first acquisition unit and a second acquisition unit.
[0014] The filter core assembly comprises a water inlet end and a water outlet end, the first acquisition unit is arranged at the water inlet end, and the second acquisition unit is arranged at the water outlet end.
[0015] Further, the device further comprises a controller.
[0016] The controller is connected with the first acquisition unit, the second acquisition unit, the display module and the light-emitting unit respectively, and is used for controlling the color of the light-emitting unit or the length of the light-emitting unit and the display content of the display module.
[0017] Further, the display module comprises a signal display area, a numerical value display area, a control area and a PH / TDS display area.
[0018] Further, the device further comprises a communication unit.
[0019] The first acquisition unit and the second acquisition unit are connected with the communication unit, and the communication unit is used for wireless communication with the controller.
[0020] The utility model also provides a mineralized water equipment of mineral spring, the mineralized water equipment of mineral spring comprises:
[0021] The faucet is connected with the water purifier.
[0022] Further, the mineralized water equipment of mineral spring comprises a mineralization filter core and a water purification filter core.
[0023] The mineralization filter core and the water purification filter core are connected in series, the mineralization filter core is connected with the mineralized water road and supplies water to the mineralized water road.
[0024] The body includes a connecting portion and a main body portion, the connecting portion and the main body portion are rotationally connected, the main body portion is used for water outlet of the faucet; and a mounting area is arranged on the main body portion, the mounting area is recessed on the main body portion, and the mounting area can be used for mounting a display module; the mounting area is arranged on one hand for facilitating a user to observe the PH value and / or the TDS value of the current water flow, and on the other hand for facilitating the user to adjust the related parameters of the water outlet of the faucet; and a display area is arranged on the connecting portion and / or the main body portion, a light-emitting unit is arranged in the display area, and the color of the light-emitting unit can change according to the water quality of the current water outlet, for example, when the TDS value and / or the PH value of the water flow is in an ideal range, the light-emitting unit can display green light; when the TDS value and / or the PH value of the water flow slightly exceeds the ideal range, the light-emitting unit can display orange light for reminding; and when the TDS value and / or the PH value of the water flow greatly exceeds the ideal range, the light-emitting unit can display red light for reminding. BRIEF DESCRIPTION OF DRAWINGS
[0025] 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 in the following 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.
[0026] Figure 1 Fig. 1 is a structural schematic diagram of a faucet provided by the present application;
[0027] Figure 2 Fig. 2 is another structural schematic diagram of a faucet provided by the present application;
[0028] Figure 3 Fig. 3 is an enlarged view of A in Fig. 1; Figure 2
[0029] Figure 4 Fig. 4 is an enlarged view of B in Fig. 1; Figure 2
[0030] Fig. 5 is a structural schematic diagram of a faucet provided by the present application; Figure 5
[0031] Fig. 6 is another structural schematic diagram of a faucet provided by the present application; Figure 6
[0032] Fig. 7 is a structural schematic diagram of a display module provided by the present application; Figure 7
[0033] Fig. 8 is a structural schematic diagram of a mineralized water purification equipment provided by the present application. Figure 8
[0034] Reference Signs List:
[0035] 100 - faucet; 10 - body; 11 - connecting part; 12 - main body part; 121 - mounting area; 13 - display area; 131 - first sub-display area; 132 - second sub-display area; 14 - faucet water outlet; 15 - water supply waterway; 20 - display module; 21 - signal display area; 22 - numerical value display area; 23 - control area; 24 - PH / TDS display area; 30 - light emitting unit; 40 - acquisition module; 41 - first acquisition unit; 42 - second acquisition unit; 50 - filter element assembly; 51 - water inlet end; 52 - water outlet end; 60 - controller; 70 - communication unit; 200 - mineralized water purification equipment; 210 - water purifier; 220 - mineralization filter element; 230 - water purification filter element. DETAILED DESCRIPTION
[0036] The technical solutions in the embodiments of the present application will be apparently and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0037] The terms "first", "second", and the like in the description and claims of the present application 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 the process, method, product or device.
[0038] Reference in this document to "an embodiment" or "the embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment is included in at least one embodiment of the application. The appearances of the phrase in various places in the specification are not necessarily all referring to the same embodiment, nor are they necessarily mutually exclusive of one another. It is expressly understood that the embodiments described herein are merely examples from a multitude of possible embodiments which can be claimed.
[0039] 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 is roughly divided into tap water, pure water and mineral water. Tap water contains impurities, bacteria and heavy metal pollution. Pure water is acidic and is not conducive to the acid-base balance of the human body. The faucet as the terminal device of water, the traditional faucet used in the market is only limited to safe water, and the faucet cannot clearly and intuitively feedback the current water quality state of the water flow.
[0040] Therefore, the embodiment provides a faucet 100 and a mineralized water purification device 200. The faucet 100 can intuitively observe the water quality state of the current water flow.
[0041] Please refer to Figure 1 and Figure 2 A faucet 100, comprising: a body 10, a display module 20, a light-emitting unit 30;
[0042] The body 10 comprises a connecting part 11 and a main body part 12, and the connecting part 11 and the main body part 12 are rotationally connected; the main body part 12 is provided with a mounting area 121, and the display module 20 is arranged in the mounting area 121; the connecting part 11 and / or the connecting part 11 is provided with at least one display area 13, and the light-emitting unit 30 is arranged in the display area 13.
[0043] The above-mentioned body 10 comprises a connecting part 11 and a main body part 12, and the connecting part 11 and the main body part 12 are rotationally connected, and the main body part 12 is used for water outlet of the faucet; and the main body part 12 is provided with a mounting area 121, and the mounting area 121 is recessed in the main body part 12, and the mounting area 121 can be used for mounting the display module 20. The mounting area 121 is provided on one hand to facilitate the user to observe the PH value and / or TDS value of the current water flow, and on the other hand to facilitate the user to adjust the related parameters of the water outlet of the faucet 100; and the display area 13 is provided on the connecting part 11 and / or the main body part 12, and the light-emitting unit 30 is arranged in the display area 13. The color of the light-emitting unit 30 can change according to the water quality of the current water outlet, for example: when the TDS value and / or PH value of the water flow is in the ideal range, the light-emitting unit 30 can display green light; when the TDS value and / or PH value of the water flow slightly exceeds the ideal range, the light-emitting unit 30 can display orange light to remind; when the TDS value and / or PH value of the water flow greatly exceeds the ideal range, the light-emitting unit 30 can display red light to remind.
[0044] It can be understood that the main body 12 is rotatably arranged on the connecting portion 11, and the main body 12 is arranged perpendicularly to the connecting portion 11. The perpendicular structure design of the main body 12 and the connecting portion 11 helps to improve the stability of the device. To reduce structural deviation or inclination, enhance the stability of the faucet 100, and also reduce flow resistance, thereby improving the efficiency of water flow. And also can facilitate the rotation of the faucet 100.
[0045] Please refer to Figures 2 to 4 In some embodiments, the display area 13 includes: a first sub-display area 131, a second sub-display area 132, and the main body 12 further includes: a faucet water outlet 14.
[0046] Among them, the first sub-display area 131 is arranged around the faucet water outlet 14, and the second sub-display area 132 is arranged on the main body 12. The first sub-display area 131 and the second sub-display area 132 are both provided with a light emitting unit 30.
[0047] It can be understood that the display area 13 includes a first sub-display area 131 and a second sub-display area 132, wherein the first sub-display area 131 is arranged around the faucet water outlet 14, and the second sub-display area 132 is arranged around the inner periphery of the main body 12. The first sub-display area 131 and the second sub-display area 132 are both provided with a light emitting unit 30. The first sub-display area 131 and the second sub-display area 132 are both arranged in a position that can be directly observed by the user. Therefore, the user can determine the TDS value and / or PH value of the current water flow by the color of the current light emitting unit 30.
[0048] Please refer to Figure 5 In some embodiments, it further includes: an acquisition module 40.
[0049] The body 10 is provided with a water supply channel 15, and the acquisition module 40 is arranged on the water supply channel 15. The acquisition module 40 is used to acquire the PH value and / or TDS value of the water supply channel 15.
[0050] It can be understood that the body 10 is provided with a water supply channel 15, and the acquisition module 40 is arranged on the water supply channel 15. The acquisition module 40 is used to acquire the PH value and / or TDS value of the water supply channel 15. When the acquisition module 40 acquires the PH value and / or TDS value, the display module 20 arranged on the body 10 displays the PH value and / or TDS value of the mineralization water channel on the display module 20. This enables the user to more directly observe the PH value and / or TDS value in the current mineralization water channel.
[0051] Please refer to Figure 6 In some embodiments, it further includes: a filter element assembly 50.
[0052] The filter core assembly 50 is arranged on the water supply waterway 15, and the filter core assembly 50 is used for mineralizing the water flow in the water supply waterway 15.
[0053] It can be understood that the filter core assembly 50 is arranged on the water supply waterway 15, and the filter core assembly 50 can include a housing, a first filter core and a second filter core, the first filter core and the second filter core are arranged in the housing, and the first filter core and the second filter core are arranged on the water supply waterway 15 in sequence, wherein the first filter core is used for purifying the water flow in the mineralized waterway, and the second filter core is used for mineralizing the water flow in the mineralized waterway; specifically, when the water flow enters the first filter core, the first filter core can purify the water flow in the water supply waterway 15, and after the water flow passes through the first filter core for purification, the water flow flows into the second filter core, and the second filter core mineralizes the water flow output by the first filter core, so that the filter core assembly 50 can output the mineralized drinking water, so that the mineralization and purification of the water flow in the waterway can be realized at the same time through one water faucet 100, that is, the water purifier 210 and the like can be omitted, so as to improve the integration of the water faucet 100 and the occupancy of the indoor space.
[0054] Please refer to Figure 6 In some embodiments, the acquisition module 40 includes a first acquisition unit 41 and a second acquisition unit 42.
[0055] The filter core assembly 50 includes a water inlet end 51 and a water outlet end 52, the first acquisition unit 41 is arranged at the water inlet end 51, and the second acquisition unit 42 is arranged at the water outlet end 52.
[0056] It can be understood that the acquisition module includes the first acquisition unit 41 and the second acquisition unit 42, and the filter core assembly 50 has the water inlet end 51 and the water outlet end 52, wherein the first acquisition unit 41 can be arranged at the water inlet end 51, the PH value of the water flow at the water inlet end 51 or the TDS value of the water inlet end 51 can be detected through the first acquisition unit 41, the second acquisition unit 42 can be arranged at the water outlet end 52, and the PH value of the water flow at the water outlet end 52 or the TDS value of the water outlet end 52 can be detected through the second acquisition unit 42, so that the water quality of the current inlet water and output water in the water faucet 100 can be detected, the TDS difference between the inlet water and the output water or the PH value difference between the inlet water and the output water is obtained, and the control valve can adjust the water flow input in the mineralized waterway and the water flow input in the adjusting waterway according to the real-time obtained TDS difference or PH value difference, so that the output water flow can meet the water demand of the user.
[0057] Optionally, the first acquisition unit 41 and the second acquisition unit 42 are both TDS sensors. The content of total dissolved solids (TDS) in the water is measured by two TDS sensors, which can make the water quality detection more accurate, and the TDS sensor is simple in design and convenient to operate, can directly output a digital signal, and can be directly accepted and used by the display module, thereby reducing the volume and complexity of the entire system. In addition, the TDS sensor can convert the TDS value into a PH value after simple calculation by the controller 60, so that the PH value and the TDS value can be obtained only by the TDS sensor.
[0058] It should be noted that the first acquisition unit 41 and the second acquisition unit 42 are both used to obtain relevant data in the current water flow, for example, to obtain the PH value and / or TDS value and / or heavy metal content and / or microorganism content and other relevant data in the current water flow.
[0059] Please refer to Figure 6 In some embodiments, the controller 60 is further included.
[0060] The controller 60 is connected with the first acquisition unit 41, the second acquisition unit 42, the display module 20 and the light-emitting unit 30, respectively, and the controller 60 is used to control the color of the light-emitting unit 30 or the length of the light-emitting unit 30 and the display content of the display module 20.
[0061] It can be understood that the controller 60 is arranged in the faucet 100, and the controller 60 is connected with the control valve, the first detection module and the second detection module, so that the controller 60 can obtain the PH value or the TDS value in the water inlet channel through the first detection module and obtain the PH value or the TDS value in the water outlet channel through the second detection module. When the user sets the water outlet requirement, the controller 60 can adjust the opening degree of the control valve to change the water inlet proportion of the adjusting channel and the mineralization channel, so as to adjust the PH value of the current water outlet of the faucet 100, so that the PH value or the TDS value of the current water outlet of the faucet 100 can match the preset of the customer, so as to meet the water demand of the customer.
[0062] In some embodiments, when the first acquisition unit 41 and the second acquisition unit 42 send the PH value or the TDS value of the current water channel to the display module 20, the display module 20 can display the PH value and the TDS value of the water flow at the water inlet end 51 and the water outlet end 52 in real time after processing the PH value and / or the TDS value obtained by the first acquisition unit 41 and the second acquisition unit 42.
[0063] Please refer toFigure 7 In some embodiments, the display module 20 comprises a signal display area 21, a numerical display area 22, a control area 23, and a PH / TDS display area 24.
[0064] It can be understood that, in order to facilitate observation and control, the display module 20 is divided into multiple display areas 13, specifically, the display module 20 is divided into a signal display area 21, a numerical display area 22, a control area 23, and a PH / TDS display area 24; wherein the signal display area 21 is used to display the communication state of the current body 10; the numerical display area 22 is used to display the specific numerical value of the current PH / TDS display area 24; the control area 23 can be provided with buttons for setting the PH value of the water, the water volume, or pausing the water, etc.; and the PH / TDS display area 24 is used to display the current water flow PH / TDS in a column chart (as shown in Figure 7
[0065] The control area 23 can be provided with different control modes, and corresponding touch buttons are arranged in the control area 23, which are used to adjust the TDS value or the PH value of the water outlet of the faucet 100; for example, one touch control area is provided with fixed TDS value or PH value, and the touch buttons are provided with PH=7, PH=7.5, and PH=8; another touch control area is provided with a mode for increasing or decreasing the PH value of the water outlet of the faucet 100, and the touch buttons are provided with plus or minus signs; and the buttons of different touch control areas can be used to adjust the current numerical value, for example, if a user needs to obtain drinking water with a PH value of 7.3, the user can adjust the PH value by the PH=7.5 and the minus sign button, which can improve the portability of the button adjustment and make it more convenient to set the preset PH value of the faucet 100.
[0066] Please refer to Figure 6 In some embodiments, the display module 20 comprises a signal display area 21, a numerical display area 22, a control area 23, and a PH / TDS display area 24.
[0067] The first acquisition unit 41 and the second acquisition unit 42 are connected with the communication unit 70, and the communication unit 70 is used for wireless communication with the controller 60.
[0068] It can be understood that the communication unit 70 is also arranged in the body 10, and the communication unit 70 is connected with the first acquisition unit 41 and the second acquisition unit 42 respectively, when the first acquisition unit 41 acquires the TDS value and / or the PH value of the water inlet end 51, and the second acquisition unit 42 acquires the TDS value and / or the PH value of the water outlet end 52, the communication unit 70 can communicate with the display module 20, the display module 20 has a communication function, so that the display module 20 can communicate with the communication module wirelessly, so that the data can be sent to the display module 20 through the communication module, and the display module 20 can display the relevant data on the display module 20 after processing.
[0069] Optionally, the communication unit 70 can be a wireless communication unit 70 or a wired communication unit 70.
[0070] Please refer to Figure 8 The utility model also provides a mineralized water purification equipment 200, the mineralized water purification equipment 200 includes:
[0071] The water purifier 210 and the faucet 100 are connected.
[0072] It can be understood that the mineralized water purification equipment 200 includes a water purifier 210 and a faucet 100, wherein the water purifier 210 is used for purifying municipal water, and the purified water flows into the faucet 100, and the faucet 100 can adjust the water flow of the mineralized water path and the adjusting water path through the control valve in the faucet 100, and the water flow of different water paths is adjusted to mix the water flow in the mineralized water path and the adjusting water path before the output faucet 100, so that the water with different requirements can be realized.
[0073] Please refer to Figure 8 In some embodiments, the mineralized water purification equipment 200 includes a mineralization filter element 220 and a water purification filter element 230.
[0074] The mineralization filter element 220 and the water purification filter element 230 are connected in series, the mineralization filter element 220 is connected with the mineralized water path and supplies water to the mineralized water path.
[0075] It can be understood that the water purifier 210 includes a mineralization filter element 220 and a water purification filter element 230, the water purification filter element 230 is connected with the mineralization filter element 220, the water flow 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 flow to the faucet 100 after preliminary mineralization.
[0076] In the present utility model, the "embodiment" "embodiment" means that the specific features, structures or characteristics described in combination with the embodiment can be contained in at least one embodiment of the present utility model. The appearance of the phrase in the specification is not necessarily all referring to 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 utility model can be combined with other embodiments. Furthermore, it should be understood that the features, structures or characteristics described in the embodiments of the present utility model can be combined with each other without contradiction, forming another embodiment that does not depart from the spirit and scope of the technical scheme of the present utility model.
[0077] Finally, it should be noted that the above embodiments are only used to illustrate the technical scheme of the present utility model and are not limited. Although the present utility model has been described in detail with reference to the above preferred embodiments, it should be understood by those skilled in the art that the technical scheme of the present utility model can be modified or replaced by the same without departing from the spirit and scope of the technical scheme of the present utility model.
Claims
1. A faucet, characterized by, Comprise: The body, display module, light-emitting unit; The body comprises a connecting part and a main body part, the connecting part and the main body part are rotationally connected; the main body part is provided with a mounting area, the display module is arranged in the mounting area; the connecting part and / or the connecting part is provided with at least one display area, and the light-emitting unit is arranged in the display area.
2. The faucet of claim 1, wherein The display area comprises: a first sub-display area, a second sub-display area, the main body part further comprises: a faucet water outlet; Among them, the first sub-display area is arranged around the faucet water outlet, and the second sub-display area is arranged in the main body part; the first sub-display area and the second sub-display area are both provided with light-emitting units.
3. The faucet of claim 2, wherein Also include: Acquisition module; The body is provided with a water supply waterway, and the acquisition module is arranged on the water supply waterway, and the acquisition module is used for acquiring the PH value and / or TDS value of the water supply waterway.
4. The faucet of claim 3, wherein Also include: Filter core assembly; The filter core assembly is arranged on the water supply waterway, and the filter core assembly is used for mineralizing the water flow in the water supply waterway.
5. The faucet of claim 4, wherein The acquisition module comprises: a first acquisition unit, a second acquisition unit; The filter core assembly comprises a water inlet end and a water outlet end, the first acquisition unit is arranged on the water inlet end, and the second acquisition unit is arranged on the water outlet end.
6. The faucet of claim 5, wherein Also include: Controller; The controller is connected with the first acquisition unit, the second acquisition unit, the display module and the light-emitting unit respectively, and is used for controlling the color of the light-emitting unit or the length of the light-emitting unit and the display content of the display module.
7. The faucet of claim 6, wherein The display module comprises: a signal display area, a numerical value display area, a control area, a PH / TDS display area.
8. The faucet of claim 6, wherein Also include: Communication unit; The first acquisition unit and the second acquisition unit are connected with the communication unit, and the communication unit is used for wireless communication with the controller.
9. A mineral spring mineralization water purification device, characterized in that, The mineralized water purification equipment comprises: Water purifier and The faucet according to any one of claims 1-8, wherein the faucet is connected with the water purifier.
10. The mineral spring mineralizing water purification apparatus according to claim 9, characterized in that, The mineralized water purification equipment comprises: mineralization filter core, water purification filter core, mineralized waterway; The mineralization filter core and the water purification filter core are connected in series, the mineralization filter core is connected with the mineralized waterway and supplies water to the mineralized waterway.