Mineralization faucet and mineralized water treatment equipment

By integrating the water quality detection module and display screen in the mineralization faucet, the water quality of mineralized water is intuitively displayed, which solves the problem that users cannot judge water quality and improves the usability and user experience of mineralized water.

CN222836391UActive Publication Date: 2025-05-06GUANGDONG LIZI TECH CO LTD
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Patent Information

Application Number
CN202520570670.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-28
Publication Date
2025-05-06
Estimated Expiration
2035-03-28

AI Technical Summary

Technical Problem

The existing mineralization faucet cannot visually display the water quality of the output mineralized water, which makes it impossible for users to judge whether the water quality meets the water needs, affecting the availability of the mineralized faucet.

Method used

A mineralization faucet is designed, including water effluent components, water quality detection module, display screen and controller. The water quality data of the effluent waterway is obtained through the water quality detection module, and the mineral type and pH value are displayed through the display screen, and the backlight is controlled to emit light or extinguish to indicate the water quality status.

Benefits of technology

It realizes the intuitive display of the water quality of mineralized water, allowing users to understand the water quality when taking in water, and improves the availability and user experience of mineralized leaders.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of water treatment equipment, in particular to a mineralization faucet and mineralized water treatment equipment. The mineralization faucet comprises a water outlet component, a water quality detection module, a display screen and a controller, and a water outlet waterway is arranged in the water outlet component and used for being connected with the mineralization filter element; the water quality detection module is connected to the water outlet path and is used for acquiring water quality detection data of a water body output by the water outlet path; the display screen is fixedly or detachably arranged on the water outlet component, the display screen comprises a water quality display area used for displaying mineral substance types and a back lamp arranged corresponding to the water quality display area, and the back lamp is used for emitting light to lighten the water quality display area; the controller is connected with the backlight and the water quality detection module and is used for controlling the backlight to light or extinguish according to the water quality detection data. Compared with the prior art, the mineral substance types of the water body can be displayed through the display screen, and the usability of the mineralization faucet is greatly improved.
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Description

Technical Field

[0001] The present application relates to the technical field of water treatment equipment, and in particular to a mineralized faucet and mineralized water treatment equipment. Background Art

[0002] As income levels rise, people have higher requirements for quality of life. Faucets equipped with mineralized filters are popular among users because they can output water containing minerals to users. Due to the length of mineralization treatment time, the quality of mineralized water is actually not stable. Currently, common mineralized faucets can only be used to output mineralized water, and users cannot directly know the actual water quality of mineralized water from the faucet, resulting in no way to judge whether the mineralized water output by the mineralized faucet can meet the user's water demand, which brings great inconvenience to users and seriously affects the availability of mineralized faucets. Utility Model Content

[0003] In view of this, the present application provides a mineralized faucet and a mineralized water treatment device, which can intuitively display the mineral types of the water output by the mineralized faucet and improve the usability of the mineralized faucet.

[0004] In order to solve the above technical problems, a technical solution adopted in the present application is: to provide a mineralized faucet, including a water outlet component, a water quality detection module, a display screen and a controller, wherein a water outlet waterway is provided inside the water outlet component, and the water outlet waterway is used to connect a mineralized filter element; the water quality detection module is connected to the water outlet waterway, and the water quality detection module is used to obtain water quality detection data of the water body output by the water outlet waterway; the display screen is fixedly or detachably arranged on the water outlet component, and the display screen includes a water quality display area for displaying the type of minerals and a backlight arranged corresponding to the water quality display area, and the backlight is used to emit light to illuminate the water quality display area; the controller is connected to the backlight and the water quality detection module, and the controller is used to control the backlight to emit or extinguish according to the water quality detection data.

[0005] In a specific embodiment, the display screen also includes a pH value display area, the pH value display area includes a display light bar, the display light bar is connected to the controller, the water quality detection data includes a pH value, and the controller is used to light up the length of the light bar in the display light bar corresponding to the pH value.

[0006] In a specific embodiment, the display light bar includes a first light-emitting module and a second light-emitting module, the first light-emitting module and the second light-emitting module have different light-emitting colors, the controller connects the first light-emitting module and the second light-emitting module, and the controller is used to control the first light-emitting module and / or the second light-emitting module to emit light according to the pH value of the water in the water outlet waterway.

[0007] In a specific embodiment, the backlight includes a third light-emitting module and a fourth light-emitting module, the third light-emitting module and the fourth light-emitting module emit different colors, the controller connects the third light-emitting module and the fourth light-emitting module, and the controller is used to control the third light-emitting module and / or the fourth light-emitting module to emit light according to the mineral content detection result.

[0008] In a specific embodiment, a water outlet connected to the water outlet waterway is provided on the first side of the water outlet component, the display screen is provided on the second side of the water outlet component, and the first side and the second side are arranged opposite to each other; and / or, the mineralized faucet also includes the mineralized filter element, the water outlet component is provided with a filter cavity connected in series to the water outlet waterway, and the mineralized filter element is arranged in the filter cavity; or, the mineralized filter element is arranged outside the water outlet component and connected to the water outlet waterway through a pipeline.

[0009] In a specific embodiment, the mineralized faucet also includes a voice module, the controller is connected to the water quality detection module and the voice module, the controller is used to generate a notification voice according to the pH value of the water body in the water outlet and / or the mineral content detection result, and the voice module is used to play the notification voice.

[0010] In a specific embodiment, the mineralized faucet also includes a remote communication module, which is connected to the controller. The controller is used to generate a notification message based on the pH value of the water body in the water outlet and / or the mineral content detection result, and the remote communication module is used to send the notification message to the client.

[0011] In a specific embodiment, the water quality detection module includes a first water quality sensor and a second water quality sensor, the first water quality sensor is connected upstream of the mineralized filter element, the second water quality sensor is connected downstream of the mineralized filter element, and the first water quality sensor and the second water quality sensor are connected to the controller.

[0012] In a specific embodiment, the mineralized faucet further includes a chip reading module, the mineralized filter element includes a chip, the chip stores the mineral types corresponding to the mineralized filter element, the chip reading module is connected to the controller, and the controller is connected to the water quality display area.

[0013] In order to solve the above technical problems, another technical solution adopted in the present application is: to provide a mineralized water treatment equipment, including a front water circuit and a mineralized faucet as described in any of the above-mentioned specific implementation methods, the front water circuit includes a mineralized filter element, and the mineralized filter element is connected upstream of the outlet water circuit.

[0014] The beneficial effects of the present application include: by setting a display screen connected to the water outlet component in the mineralized faucet, the water quality of the water body output by the water outlet waterway is detected by using the water quality detection module, so as to obtain water quality detection data, and then the timing of lighting and extinguishing the backlight can be determined according to the water quality detection data, and the mineral type corresponding to the water body output by the water outlet waterway is displayed in the water quality display area in the display screen, and the mineral type corresponding to the water body output by the water outlet waterway can be intuitively displayed to the user near the mineralized faucet, so that the user can directly understand the mineral type corresponding to the water body output by the water outlet waterway when taking water, thereby greatly improving the usability of the mineralized faucet. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings required for use in the implementation will be briefly introduced below. Obviously, the drawings described below are some implementation methods of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.

[0016] Figure 1 It is a structural schematic diagram of an embodiment of a mineralized water treatment device provided by the present application;

[0017] Figure 2 It is a schematic block diagram of the waterway structure in an embodiment of a mineralized faucet provided in the present application;

[0018] Figure 3 This is a schematic diagram of the connection relationship of an embodiment of a mineralized faucet provided by the present application;

[0019] Figure 4 It is a structural schematic diagram of a first embodiment of a display screen in a mineralized faucet embodiment provided by the present application;

[0020] Figure 5 It is a structural schematic diagram of a second embodiment of a display screen in a mineralized faucet embodiment provided by the present application;

[0021] Figure 6 It is a structural schematic block diagram of the third embodiment of the display screen in the first embodiment of the mineralized faucet provided in the present application.

[0022] Description of reference numerals:

[0023] 1. Mineralized faucet; 2. Water outlet component; 2a. First side; 2b. Second side; 21. Water outlet channel; 211. Water outlet valve; 22. Water outlet; 23. Filter chamber; 24. Pipeline; 3. Water quality detection module; 31. First water quality sensor; 32. Second water quality sensor; 4. Display screen; 41. Water quality display area; 411. Backlight; 411a. Third light-emitting module; 411b. Fourth light-emitting module; 42. pH value display area ; 421, display light bar; 421a, first light-emitting module; 421b, second light-emitting module; 422, indication mark; 422a, pH value indication; 43, water intake control area; 44, numerical display area; 45, signal mark; 6, mineralized filter element; 61, chip; 7, controller; 81, chip reading module; 82, voice module; 83, remote communication module; 9, client; 10, mineralized water treatment equipment; 101, front water circuit. DETAILED DESCRIPTION

[0024] In this application, the terms "disposed", "provided with", and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral structure; it can be a mechanical connection, or an electrical connection; it can be a direct connection, or an indirect connection through an intermediate medium, or it can be an internal connection between two devices, elements, or components. For those of ordinary skill in the art, the specific meanings of the above terms in this application can be understood according to specific circumstances.

[0025] The orientation or position relationship indicated by the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc. are based on the orientation or position relationship shown in the drawings and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the referred device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on the present application.

[0026] In addition, the terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of the features. In the description of this application, the meaning of "plurality" is at least two, such as two, three, etc., unless otherwise clearly and specifically defined.

[0027] In addition, some of the above terms may be used to express other meanings in addition to indicating orientation or positional relationship. For example, the term "on" may also be used to express a certain dependency or connection relationship in some cases. For those of ordinary skill in the art, the specific meanings of these terms in this application can be understood according to specific circumstances.

[0028] In order to make the purpose, technical solution and advantages of the present application more clearly understood, the present application is further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and are not used to limit the present application.

[0029] As income levels rise, people have higher requirements for quality of life. Faucets equipped with mineralized filters are popular among users because they can output water containing minerals to users. Due to the length of mineralization treatment time, the quality of mineralized water is actually not stable. Currently, common mineralized faucets can only be used to output mineralized water, and users cannot directly know the actual water quality of mineralized water from the faucet, resulting in no way to judge whether the mineralized water output by the mineralized faucet can meet the user's water demand, which brings great inconvenience to users and seriously affects the availability of mineralized faucets.

[0030] In order to improve or solve the above technical problems, the inventors of the present application have proposed at least the following embodiments after long-term research.

[0031] See also Figure 1 to Figure 6 , Figure 1 It is a structural schematic diagram of an embodiment of the mineralized water treatment equipment provided by the present application. Figure 2 It is a schematic block diagram of the water channel structure in an embodiment of a mineralized faucet provided in the present application. Figure 3 It is a schematic block diagram of the connection relationship of an embodiment of a mineralized faucet provided in the present application. Figure 4 It is a structural schematic diagram of the first embodiment of the display screen in the mineralized faucet embodiment provided in the present application. Figure 5 It is a structural schematic diagram of a second embodiment of a display screen in an embodiment of a mineralized faucet provided in the present application. Figure 6 It is a structural schematic block diagram of the third embodiment of the display screen in the first embodiment of the mineralized faucet provided in the present application.

[0032] In order to solve the above technical problems, the specific embodiment of the present application provides a mineralized faucet 1, including a water outlet component 2, a water quality detection module 3, a display screen 4 and a controller 7. The water outlet component 2 is provided with a water outlet waterway 21, and the water outlet waterway 21 is used to connect the mineralized filter element 6. The water quality detection module 3 is connected to the water outlet waterway 21, and the water quality detection module 3 is used to obtain the water quality detection data of the water body output by the water outlet waterway 21. The display screen 4 is fixedly or detachably arranged on the water outlet component 2, and the display screen 4 includes a water quality display area 41 for displaying the type of minerals and a backlight 411 arranged corresponding to the water quality display area 41, and the backlight 411 is used to emit light to illuminate the water quality display area 41. The controller 7 is electrically connected to the backlight 411 and the water quality detection module 3, and the controller 7 is used to control the backlight 411 to emit light (light up, highlight) or extinguish according to the water quality detection data.

[0033] Among them, the controller 7 can constitute an independent structure, for example, the controller 7 includes an independent control chip, which is installed in the mineral faucet 1. The control chip can include hardware memory. The control chip is connected to the water quality detection module 3 and the display screen 4 to realize multiple functions such as obtaining water quality detection data from the water quality detection module 3, generating display content for displaying on the display screen 4, and using hardware memory to temporarily store water quality detection data.

[0034] Specifically, the detection process of the mineral type is relatively complicated, and the mineral type displayed in the water quality display area 41 can be pre-set according to the model, specification, and type of the mineralization filter element 6. The dissolution of minerals will cause the electrolyte concentration of the water body to change, so the water quality detection module 3 can include a device such as a TDS detection device that quickly detects the electrolyte concentration of the flowing water, so as to detect the concentration of the water body output by the water outlet waterway 21, thereby using the electrolyte concentration to infer the concentration of the minerals dissolved from the mineralization filter element 6, and then determine the timing of controlling the backlight 411 to light up (light up, brighten) or extinguish.

[0035] In the structure provided in this specific embodiment, a display screen 4 connected to the water outlet component 2 is provided in the mineralized faucet 1, and the water quality detection data of the water body output by the water outlet waterway 21 is detected by using the water quality detection module 3, so as to obtain the water quality detection data, and then the timing of lighting and extinguishing the backlight 411 can be determined according to the water quality detection data. The mineral type corresponding to the water body output by the water outlet waterway 21 is displayed in the water quality display area 41 in the display screen 4, and the mineral type corresponding to the water body output by the water outlet waterway 21 can be intuitively displayed to the user near the mineralized faucet 1, so that the user can directly understand the mineral type corresponding to the water body output by the water outlet waterway 21 when taking water, thereby greatly improving the usability of the mineralized faucet 1.

[0036] Optionally, in a specific application, the brightness of the backlight 411 can be adjusted, and the backlight 411 can be connected to a brightness control module (i.e., a backlight control module), and the brightness of the backlight 411 can be controlled according to the water quality detection data. The backlight 411 can be white or green, etc. under normal conditions. Within the set range, that is, between the upper limit and the lower limit, the higher the water quality detection data, the higher the brightness of the backlight 411, and the lower the water quality detection data, the lower the brightness of the backlight 411. When the water quality detection data is lower than the lower limit, the backlight 411 can be extinguished (off state) or flashing. When the water quality detection data is higher than the upper limit, the backlight 411 can be switched to red and flashing to prompt the user to replace the filter element.

[0037] Optionally, the controller 7 is used to control the backlight 411 to light up or extinguish according to the water quality detection data, which may specifically include: a preset maximum threshold and / or minimum threshold is stored in the controller 7, and the controller 7 can calculate the mineral content detection result and compare it with the maximum threshold and / or minimum threshold, thereby controlling the backlight 411 to light up or extinguish.

[0038] For example, when the mineral content detection result is greater than the minimum threshold and less than the maximum threshold, the controller 7 controls the backlight 411 to light up. When the mineral content detection result is greater than the maximum threshold or less than the minimum threshold, the controller 7 controls the backlight 411 to turn off.

[0039] The water outlet waterway 21 may be connected to a water outlet valve 211, and the water outlet valve 211 is used to control the connection and disconnection of the water outlet waterway 21. The mineralized faucet 1 may also include a water intake control area 43, which is arranged on the display screen 4, and the water intake control area 43 is connected to the controller 7, and the controller 7 is connected to the water outlet valve 211, and the water intake control area 43 is used to be triggered to issue a water outlet instruction, and the controller 7 is used to control the water outlet valve 211 to open or close according to the water outlet instruction.

[0040] In a specific embodiment of the present application, the display screen 4 further includes a pH value display area 42, the pH value display area 42 includes a display light bar 421, and the display light bar 421 is connected to the controller 7, that is, the display state of the display light bar 421 is controlled by the controller 7. The water quality detection data may include a pH value, and the controller 7 may be used to light up the length of the light bar in the display light bar 421 corresponding to the pH value.

[0041] In the structure provided in this specific embodiment, in addition to displaying the type of minerals, the display screen 4 can also use the length of the illuminated display light bar 421 to intuitively present the pH value of the water output by the water path 21, and can intuitively display the pH value corresponding to the water output by the water outlet path 21 to the user, so that the user can directly understand the pH value corresponding to the water output by the water outlet path 21 when taking water, which greatly improves the usability of the mineralized faucet 1 and provides a good user experience.

[0042] Optionally, the pH value display area 42 further includes an indicator mark 422, which is disposed adjacent to the display light bar 421 along the length direction of the display light bar 421, and is used to indicate different pH values ​​corresponding to different light bar lengths. The user cannot accurately judge the pH value by relying solely on the length of the light bar, and it is difficult for users who are not familiar with the mineral faucet 1 to see the actual pH value. By adding the indicator mark 422, the user can be assisted in understanding the pH value corresponding to the water output by the water outlet waterway 21, thereby greatly improving the usability of the mineral faucet 1.

[0043] In a specific embodiment of the present application, the display light bar 421 includes a first light-emitting module 421a and a second light-emitting module 421b, and the light-emitting color of the first light-emitting module 421a is different from the light-emitting color of the second light-emitting module 421b. The controller 7 is used to control the first light-emitting module 421a and / or the second light-emitting module 421b to emit light according to the pH value of the water body in the water outlet waterway 21. For different pH values, the display light bar 421 can also emit light of different colors to play a prompting effect. For example, when the pH value meets the use requirements, it presents green light, white light, etc. that can indicate the safety of water quality, and when the pH value is too high or too low and does not meet the use requirements, it presents red light, purple light, yellow light, etc. with warning effects, thereby further assisting users to understand the impact of pH value on actual water use, greatly improving the usability of the mineral faucet 1.

[0044] Optionally, the indicator mark 422 may be a plurality of indicator lines, and a corresponding pH value indication 422a may be provided at the indicator line. In a specific application, the indicator mark 422 may include a plurality of pH value indications 422a, and the pH value indications 422a are provided in a sequence from large to small or from small to large along the length direction of the display light bar 421. When the display light bar 421 is lit at different lengths, the pH value of the water in the waterway 21 is effectively displayed due to the reference of the pH value indications 422a.

[0045] Optionally, when the pH value of the water in the water outlet channel 21 is less than the maximum value of the multiple pH value indications 422a and greater than the minimum value of the multiple pH value indications 422a, the first light-emitting module 421a of the display light bar 421 emits light.

[0046] Optionally, when the pH value of the water in the water outlet channel 21 is greater than the maximum value of the multiple pH value indications 422a, the second light-emitting module 421b of the display light bar 421 emits light.

[0047] Optionally, when the pH value of the water in the water outlet channel 21 is less than the minimum value of the multiple pH value indications 422a, the second light-emitting module 421b of the display light bar 421 emits light.

[0048] Optionally, for different pH values, the display light bar 421 can also emit light of different colors to provide a prompt effect. For example, when the pH value meets the usage requirements, the first light-emitting module 421a is used to present green light, white light, or other light that can indicate water safety; when the pH value is too high or too low and does not meet the usage requirements, the second light-emitting module 421b is used to present red light, purple light, yellow light, or other light with a warning effect, thereby further assisting users in understanding the impact of pH value on actual water use, greatly improving the usability of the mineral faucet 1.

[0049] In a specific embodiment of the present application, the backlight 411 may include a third light-emitting module 411a and a fourth light-emitting module 411b, and the third light-emitting module 411a and the fourth light-emitting module 411b emit light of different colors. The controller 7 is connected to the third light-emitting module 411a and the fourth light-emitting module 411b, and the controller 7 is used to control the third light-emitting module 411a and / or the fourth light-emitting module 411b to emit light according to the mineral content detection result.

[0050] Optionally, in response to different mineral content test results, the display light bar 421 can also emit light of different colors to provide a prompt effect. For example, when the mineral content test result meets the use requirements, the third light-emitting module 411a is used to present green light, white light, or other light that can indicate water quality safety; when the mineral content test result is too high or too low and does not meet the use requirements, the fourth light-emitting module 411b is used to present red light, purple light, yellow light, or other light with a warning effect, thereby further assisting users in understanding the impact of the mineral content test results on actual water use, greatly improving the usability of the mineral faucet 1.

[0051] Specifically, the controller 7 may store a preset maximum threshold and / or minimum threshold, and the controller 7 may compare the mineral content detection result with the maximum threshold and / or minimum threshold, thereby controlling the third light-emitting module 411a and / or the fourth light-emitting module 411b to emit light.

[0052] Optionally, when the mineral content detection result is greater than a minimum threshold value and less than a maximum threshold value, the controller 7 controls the third light-emitting module 411 a to emit light.

[0053] Optionally, when the mineral content detection result is greater than a maximum threshold or less than a minimum threshold, the controller 7 controls the fourth light-emitting module 411 b to emit light.

[0054] In a specific embodiment of the present application, the first side 2a of the water outlet component 2 is provided with a water outlet 22 connected to the water outlet waterway 21, the second side 2b of the water outlet component 2 is provided with a display screen 4, and the first side 2a and the second side 2b are arranged opposite to each other. Under the action of gravity, the water outlet 22 and the first side 2a of the water outlet component 2 are generally arranged in the direction of gravity (i.e., "below" in the usual sense) to facilitate water discharge, and the user's field of vision is generally higher than the water outlet component 2, so the second side 2b opposite to the first side 2a and arranged upward can just meet the user's field of vision, so the display screen 4 can be arranged on the second side 2b so that the user can directly view and operate, thereby improving the usability of the mineralization faucet 1.

[0055] Optionally, see Figure 2 The mineralized faucet 1 further includes a mineralized filter element 6, and the water outlet component 2 is provided with a filter chamber 23 connected in series to the water outlet waterway 21, and the mineralized filter element 6 is arranged in the filter chamber 23. Alternatively, the mineralized filter element 6 can be arranged outside the water outlet component 2 and connected to the water outlet waterway 21 through a pipe 24. In the structure provided in this specific embodiment, the mineralized filter element 6 can be arranged inside the water outlet component 2, so that the mineralized faucet 1 presents an integrated structure, which can simplify the installation procedure of the mineralized faucet 1 and improve the usability of the mineralized faucet 1; the mineralized filter element 6 can also be arranged outside the water outlet component 2 and connected to the water outlet waterway 21 through a pipe 24, thereby reducing the volume of the water outlet component 2, so that it can be well applied to a use environment with limited space, and improving the versatility of the mineralized faucet 1.

[0056] In a specific embodiment of the present application, the mineralized faucet 1 may further include a voice module 82, and the controller 7 is connected to the water quality detection module 3 and the voice module 82. The controller 7 is used to generate a notification voice based on the pH value and / or mineral content detection results of the water body in the water outlet waterway 21, and the voice module 82 is used to play the notification voice.

[0057] In the structure provided in this specific embodiment, while using the display screen 4 to provide a prompt to the user, a voice module 82 can be further added to inform the user of the pH value and / or mineral content test results of the water body in the water outlet waterway 21 by playing a notification voice, so that the user can know the pH value and / or mineral content test results of the water body in the water outlet waterway 21 without checking the display screen 4, thereby improving the usability of the mineralized faucet 1.

[0058] Specifically, the controller 7 is used to generate a notification voice based on the pH value and / or mineral content detection results of the water body in the outlet waterway 21, which may include: when the pH value of the water body in the outlet waterway 21 is greater than the maximum value of the multiple pH value indications 422a, or when the pH value of the water body in the outlet waterway 21 is less than the minimum value of the multiple pH value indications 422a, the controller 7 generates a notification voice indicating that the pH value of the water body output from the outlet waterway 21 is unqualified.

[0059] The controller 7 is used to generate a notification voice according to the pH value and / or mineral content detection result of the water body in the water outlet waterway 21, and may also include: when the mineral content detection result is greater than the maximum threshold or less than the minimum threshold, the controller 7 generates a notification voice indicating that the mineral content detection result of the water body output by the water outlet waterway 21 is unqualified.

[0060] In a specific embodiment of the present application, the mineralized faucet 1 may also include a remote communication module 83, which is connected to the controller 7. The controller 7 is used to generate a notification message based on the pH value and / or mineral content detection results of the water body in the water outlet waterway 21, and the remote communication module 83 is used to send the notification message to the client 9.

[0061] In the structure provided in this specific embodiment, while using the display screen 4 to provide a prompt to the user, remote communication can be further increased, so that the user can remotely obtain the pH value and / or mineral content test results of the water body in the water outlet waterway 21 in the form of a notification message, so that the user can obtain the pH value and / or mineral content test results of the water body in the water outlet waterway 21 without having to approach the mineralized faucet 1, thereby improving the usability of the mineralized faucet 1.

[0062] The remote communication module 83 may be connected to the server or the client 9 via wireless LAN, WiFi, Bluetooth, Zigbee, etc., so that the server may forward notification messages to the client 9 or the notification messages may be sent directly to the client 9 .

[0063] The display screen 4 may include a signal indicator 45 that can be used to display the signal strength of the remote communication module 83 to establish a connection with the client 9 / server.

[0064] The controller 7 is used to generate a notification message based on the pH value and / or mineral content detection results of the water body in the outlet waterway 21, which may include: when the pH value of the water body in the outlet waterway 21 is greater than the maximum value of the multiple pH value indications 422a, or when the pH value of the water body in the outlet waterway 21 is less than the minimum value of the multiple pH value indications 422a, the controller 7 generates a notification message that the pH value of the water body output from the outlet waterway 21 is unqualified.

[0065] The controller 7 is used to generate a notification message based on the pH value and / or mineral content detection result of the water body in the water outlet waterway 21, and the step may also include: when the mineral content detection result is greater than the maximum threshold or less than the minimum threshold, the controller 7 generates a notification message that the mineral content detection result of the water body output by the water outlet waterway 21 is unqualified.

[0066] In a specific embodiment of the present application, the water quality detection module 3 includes a first water quality sensor 31 and a second water quality sensor 32, the first water quality sensor 31 is connected to the upstream of the mineralized filter element 6, the second water quality sensor 32 is connected to the downstream of the mineralized filter element 6, and the first water quality sensor 31 and the second water quality sensor 32 are connected to the controller 7.

[0067] The first water quality sensor 31 is used to measure a first water quality parameter, and the second water quality sensor 32 is used to measure a second water quality parameter. The controller 7 can calculate the pH value and / or mineral content detection result of the water body in the outlet waterway 21 using the first water quality parameter and the second water quality parameter.

[0068] The display screen 4 may include a numerical display area 44, which may be used to display the water quality detection data measured by the water quality detection module 3. Specifically, Figure 4 As shown, the first water quality parameter may be a first TDS value, and the second water quality parameter may be a second TDS value. The water quality detection data may be represented by the first TDS value and the second TDS value. The first TDS value may represent the concentration of the water before entering the mineralized filter element 6, and the second TDS value may represent the concentration of the water after passing through the mineralized filter element 6. Thus, the difference between the second TDS value and the first TDS value may be used to represent the change in electrolyte concentration before and after the water passes through the mineralized filter element 6, and thus the change in mineral concentration may be inferred.

[0069] The mineralized faucet 1 may be provided with a circuit board, on which a first signal line and a second signal line are connected, the first end of the first signal line is welded or connected to the circuit board through a wiring terminal, and the second end of the first signal line is electrically connected to the first water quality sensor 31. The first end of the second signal line is welded or connected to the circuit board through a wiring terminal, and the second end of the second signal line is electrically connected to the second water quality sensor 32. The first signal line is connected to the pin of the first water quality sensor 31 through a first waterproof plug terminal. The second signal line is connected to the pin of the second water quality sensor 32 through a second waterproof plug terminal.

[0070] like Figure 5 , Figure 6 As shown, the numerical display area 44 can also display the water intake. According to the change of the water intake, the numerical display area 44 can display different numerical values. When displaying the water intake, the numerical display area 44 can also display the unit corresponding to the water intake, for example, Figure 5 and Figure 6The unit of water intake is milliliter.

[0071] Furthermore, the water intake control area 43 can be triggered multiple times or continuously for a period of time to control the amount of water intake. The amount of water intake can be specifically controlled by controlling the timing of opening and closing the water outlet valve 211. Figure 5 , Figure 6 As shown, as the number of times the water intake control area 43 is triggered or the time the water intake control area 43 is triggered increases, the water intake amount displayed in the numerical display area 44 may change accordingly, thereby displaying the water intake amount corresponding to the number of times the water intake control area 43 is triggered or the time the water intake control area 43 is triggered.

[0072] In a specific embodiment of the present application, the mineralized faucet 1 may further include a chip reading module 81 , the mineralized filter element 6 includes a chip 61 , the chip 61 stores the type of minerals corresponding to the mineralized filter element 6 , the chip reading module 81 is connected to the controller 7 , and the controller 7 is connected to the water quality display area 41 .

[0073] The chip reading module 81 is used to read the mineral type stored in the chip 61 , the controller 7 is used to generate display content corresponding to the mineral type, and the water quality display area 41 can display the display content.

[0074] Furthermore, the mineralized filter element 6 can directly use the chip 61 to let the mineralized faucet 1 know the types of minerals contained therein. In subsequent use, when the water quality detection module 3 detects that the mineral content is insufficient, the controller 7 can know that the mineralized filter element 6 has reached the upper limit of its service life, and can thus notify the user to replace the mineralized filter element 6 through at least one of the display screen 4, the voice module 82, the remote communication module 83 and many other means, thereby achieving the effect of monitoring the life of the filter element and effectively improving the availability of the mineralized faucet 1.

[0075] Optionally, the numerical display area 44 can also display the remaining life of the mineralized filter element 6 calculated by the controller 7 based on water quality detection data or based on the countdown of the rated number of uses / water flow of the mineralized filter element 6, so that the user can directly understand the remaining life of the mineralized filter element 6 when drawing water, thereby achieving the effect of promptly reminding the user to replace the mineralized filter element 6, and effectively improving the availability of the mineralized faucet 1.

[0076] In order to solve the above technical problems, the specific embodiment of the present application further provides a mineralized water treatment device 10, including a front waterway 101 and a mineralized faucet 1 as described in any of the above-mentioned specific embodiments, the front waterway 101 includes a mineralized filter element 6, and the mineralized filter element 6 is connected to the upstream of the water outlet waterway 21 of the mineralized faucet 1. The mineralized faucet 1 in this specific embodiment does not include the mineralized filter element 6.

[0077] In the structure provided in this specific embodiment, a display screen 4 connected to the water outlet component 2 is provided in the mineralized faucet 1, and the water quality detection data of the water body output by the water outlet waterway 21 is detected by using the water quality detection module 3, so that the mineral type corresponding to the water body output by the water outlet waterway 21 is displayed through the water quality display area 41 in the display screen 4, and the mineral type corresponding to the water body output by the water outlet waterway 21 can be intuitively displayed to the user near the mineralized faucet 1, so that the user can directly understand the mineral type corresponding to the water body output by the water outlet waterway 21 when taking water, thereby greatly improving the usability of the mineralized faucet 1.

[0078] Mentioning "embodiment" and "implementation method" in this application means that the specific features, structures or characteristics described in conjunction with the embodiment may be included in at least one embodiment of the present application. The appearance of the phrases in various locations in the specification does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment that is mutually exclusive with other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described in this application can be combined with other embodiments. In addition, it should also be understood that the features, structures or characteristics described in the various embodiments of the present application can be arbitrarily combined to form another embodiment that does not deviate from the spirit and scope of the technical solution of the present application, if there is no contradiction between them.

[0079] Finally, it should be noted that the above implementation modes are only used to illustrate the technical solution of the present application and are not intended to limit it. Although the present application has been described in detail with reference to the above preferred implementation modes, a person of ordinary skill in the art should understand that the technical solution of the present application may be modified or replaced by equivalents without departing from the spirit and scope of the technical solution of the present application.

Claims

1. A mineralized faucet, characterized in that: include: A water outlet component (2) having a water outlet waterway (21) disposed therein, wherein the water outlet waterway (21) is used to connect to the mineralized filter element (6); A water quality detection module (3) connected to the water outlet waterway (21), the water quality detection module (3) being used to obtain water quality detection data of the water body output by the water outlet waterway (21); a display screen (4), the display screen (4) being fixedly or detachably arranged on the water outlet component (2), the display screen (4) comprising a water quality display area (41) for displaying mineral types and a backlight (411) arranged corresponding to the water quality display area (41), the backlight (411) being used to emit light to illuminate the water quality display area (41); A controller (7) is connected to the backlight (411) and the water quality detection module (3), and the controller (7) is used to control the backlight (411) to light up or turn off according to the water quality detection data.

2. The mineralized faucet according to claim 1, characterized in that: The display screen (4) further comprises a pH value display area (42), the pH value display area (42) comprises a display light bar (421), the display light bar (421) is connected to the controller (7), the water quality detection data comprises a pH value, and the controller (7) is used to light up a light bar length in the display light bar (421) corresponding to the pH value.

3. The mineralized faucet according to claim 2, characterized in that: The display light bar (421) comprises a first light-emitting module (421a) and a second light-emitting module (421b); the first light-emitting module (421a) and the second light-emitting module (421b) emit light of different colors; the controller (7) is connected to the first light-emitting module (421a) and the second light-emitting module (421b); the controller (7) is used to control the first light-emitting module (421a) and / or the second light-emitting module (421b) to emit light according to the pH value of water in the water outlet waterway (21).

4. The mineralized faucet according to claim 1, characterized in that: The backlight (411) comprises a third light-emitting module (411a) and a fourth light-emitting module (411b), the third light-emitting module (411a) and the fourth light-emitting module (411b) emitting light of different colors, the controller (7) being connected to the third light-emitting module (411a) and the fourth light-emitting module (411b), the controller (7) being used to control the third light-emitting module (411a) and / or the fourth light-emitting module (411b) to emit light according to the mineral content detection result.

5. The mineralized faucet according to claim 1, characterized in that: The first side surface (2a) of the water outlet component (2) is provided with a water outlet (22) connected to the water outlet waterway (21), the second side surface (2b) of the water outlet component (2) is provided with the display screen (4), and the first side surface (2a) and the second side surface (2b) are arranged opposite to each other; and / or, The mineralized faucet (1) further comprises the mineralized filter element (6); the water outlet component (2) is provided with a filter cavity (23) connected in series with the water outlet waterway (21); the mineralized filter element (6) is arranged in the filter cavity (23); or, the mineralized filter element (6) is arranged outside the water outlet component (2) and connected to the water outlet waterway (21) via a pipeline (24).

6. The mineralized faucet according to any one of claims 1 to 5, characterized in that: The mineralized faucet (1) further comprises a voice module (82), the controller (7) being connected to the water quality detection module (3) and the voice module (82), the controller (7) being used to generate a notification voice according to the pH value of the water body in the water outlet channel (21) and / or the mineral content detection result, and the voice module (82) being used to play the notification voice.

7. The mineralized faucet according to claim 6, characterized in that: The mineralized faucet (1) further comprises a remote communication module (83), wherein the remote communication module (83) is connected to the controller (7), wherein the controller (7) is used to generate a notification message according to the pH value of the water body in the water outlet path (21) and / or the mineral content detection result, and the remote communication module (83) is used to send the notification message to the client (9).

8. The mineralized faucet according to claim 1, characterized in that: The water quality detection module (3) comprises a first water quality sensor (31) and a second water quality sensor (32); the first water quality sensor (31) is connected upstream of the mineralized filter element (6), the second water quality sensor (32) is connected downstream of the mineralized filter element (6), and the first water quality sensor (31) and the second water quality sensor (32) are connected to the controller (7).

9. The mineralized faucet according to claim 1, characterized in that: The mineralized faucet (1) further comprises a chip reading module (81), the mineralized filter element (6) comprises a chip (61), the chip (61) stores the type of mineral corresponding to the mineralized filter element (6), the chip reading module (81) is connected to the controller (7), and the controller (7) is connected to the water quality display area (41).

10. A mineralized water treatment device, characterized in that: The invention comprises a front waterway (101) and a mineralized faucet (1) according to any one of claims 1 to 4, 8 and 9, wherein the front waterway (101) comprises a mineralized filter element (6), and the mineralized filter element (6) is connected upstream of a water outlet waterway (21) of the mineralized faucet (1).