Adaptive water regulator
By adapting the design of the water conditioner, using a combination of pure water, purified water and mineral water outlet pipes and a TDS detection probe, the problem of the water purifier being unable to adjust the water quality is solved, and flexible and selective output of water quality is achieved.
Patent Information
- Application Number
- CN202422708358.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-07
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2034-11-07
AI Technical Summary
Existing water purifiers are unable to selectively output mineral water or purified water according to user needs and lack water quality adjustment functions.
An adaptive water regulator was designed, which included a pure water inlet pipe, a purified water inlet pipe, a mineral water outlet pipe and a TDS detection probe. The water quality mixing was regulated by the solenoid valve and the controller to achieve selective output of different water qualities.
Without changing the structure of the water purifier, selective output of water quality based on user needs is achieved to meet the drinking needs of different users.
Smart Images

Figure CN223385919U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of water purification, and in particular relates to an adaptive water regulator. Background Art
[0002] As people pay more and more attention to the concept of water quality and health, water purifiers are now becoming more and more commonly used household devices in every family. Water purifiers are currently commonly used to achieve water purification by filtering particulate matter in the raw water.
[0003] However, the existing water purifier structure can only purify tap water into mineral water or purified water for drinking, and cannot selectively output mineral water or purified water for drinking according to the user's drinking water source needs. For example, there are only separate pure water machines or mineralization machines on the market.
[0004] Based on this, a water quality regulator is developed to be used with a matching water purifier, which can be adjusted according to the user's needs to provide the user with suitable water quality. Utility Model Content
[0005] Purpose of the utility model: The technical problem to be solved by the utility model is to provide a water regulator that is used in conjunction with a water purifier, so that it can be adjusted according to the user's needs and provide the user with suitable water quality.
[0006] Technical solution: The adaptive water regulator of the utility model includes a pure water inlet pipe connected to the purified pure water, a purified water inlet pipe connected to the purified water, and a mineral water outlet pipe connecting the pure water inlet pipe and the purified water inlet pipe. The mineral water outlet pipe is provided with a TDS detection probe;
[0007] The pure water inlet pipe is provided with a first water inlet solenoid valve, the purified water inlet pipe is connected to a mineralized filter element, and the purified water inlet pipe located at the rear end of the mineralized filter element is provided with a second water inlet solenoid valve.
[0008] Furthermore, the adaptive water regulator also includes a purified water outlet pipe extending from the purified water inlet pipe and located between the mineralized filter element and the second water inlet solenoid valve.
[0009] Furthermore, the adaptive water regulator also includes a water mixing tank connected to the mineral water outlet pipe and located at the rear end of the TDS detection probe.
[0010] Furthermore, the adaptive water regulator also includes a UV lamp connected to the mineral water outlet pipe and located at the rear end of the water mixing tank.
[0011] Furthermore, the adaptive water regulator also includes a shell for accommodating a pure water inlet pipe, a purified water inlet pipe, a mineral water outlet pipe, a TDS detection probe, a first water inlet solenoid valve, a mineralization filter element, a second water inlet solenoid valve, a water mixing tank and a UV lamp.
[0012] Furthermore, a pure water inlet is provided on the shell of the adapter water regulator corresponding to the pure water inlet pipe, a purified water inlet is provided corresponding to the purified water inlet pipe, a mineral water outlet is provided corresponding to the mineral water outlet pipe, and a purified water outlet is provided corresponding to the purified water outlet pipe.
[0013] Furthermore, the adaptive water regulator also includes a controller, which is electrically connected to the TDS detection probe, the first water inlet solenoid valve and the second water inlet solenoid valve to regulate the start and stop of the first water inlet solenoid valve and / or the second water inlet solenoid valve according to the detection feedback of the TDS detection probe.
[0014] Beneficial effect: Compared with the existing technology, the advantages of the utility model are: the adaptive water regulator can adapt to the water quality and can be used in conjunction with a water purifier, so that it can achieve selective output of different water qualities without changing the structure of the water purifier itself, and can meet the filtered and purified water quality that the user himself needs to quote. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a schematic diagram of the internal structure of the adaptive water regulator of the utility model;
[0016] Figure 2 This is the water circuit diagram of the water regulator adapted for this utility model. DETAILED DESCRIPTION
[0017] The technical solution of the present utility model is further described in detail below with reference to the accompanying drawings.
[0018] It should be noted that the mineralized filter element used in the present invention can be directly purchased from the market without any special structural optimization or improvement.
[0019] The adaptive water regulator of the present invention is equipped at the rear end of the water purifier to adjust the water quality of the purified water or pure water to meet the needs of different users. Figure 1 and Figure 2As shown, the water quality regulator of the present invention includes a housing 7, a pure water inlet pipe, a purified water inlet pipe, and a mineral water outlet pipe that connects the pure water inlet pipe and the purified water inlet pipe, which are arranged within the housing 7. A purified water outlet pipe extends from the purified water inlet pipe. The pure water inlet pipe is connected to the pure water obtained by the water purifier, and the purified water inlet pipe is connected to the purified water obtained by the water purifier. The housing 7 is provided with a pure water inlet 8 corresponding to the pure water inlet pipe, a purified water inlet 9 corresponding to the purified water inlet pipe, a mineral water outlet 10 corresponding to the mineral water outlet pipe, and a purified water outlet 11 corresponding to the purified water outlet pipe.
[0020] The pure water inlet pipe is provided with a first water inlet solenoid valve 2. The purified water inlet pipe is connected to a mineralized filter element 3 and a second water inlet solenoid valve 4, and the purified water outlet pipe is located between the mineralized filter element 3 and the second water inlet solenoid valve 4.
[0021] A TDS detection probe 1 is installed on the mineral water outlet pipe. This probe, in conjunction with the first and second water inlet solenoid valves 2 and 4, mixes purified water filtered through the mineral filter 3 with purified water to produce the desired mineral water. A mixing tank 5 and a UV lamp 6 are further connected to the rear end of the TDS detection probe 1 on the mineral water outlet pipe to store and sterilize the resulting target mineral water.
[0022] In addition to the above, the adaptive water regulator of the present invention also includes a controller electrically connected to the TDS detection probe 1, the first water inlet solenoid valve 2 and the second water inlet solenoid valve 4, so as to regulate the start and stop of the first water inlet solenoid valve 2 and / or the second water inlet solenoid valve 4 according to the detection feedback of the TDS detection probe 1 and ultimately control the TDS value of the mineral water.
[0023] Specifically, during use, the TDS probe 1 value is preset, and the first and second water inlet solenoid valves 2 and 4 are opened simultaneously. The TDS probe 1 value is monitored. When the preset TDS probe 1 value is reached, the TDS probe 1 provides feedback to the controller, which then regulates the second and first water inlet solenoid valves 4 and 2 to produce the desired mineral water. When mineral water is not required, pure water can be obtained by opening only the first water inlet solenoid valve 2 and closing the second water inlet solenoid valve 4.
Claims
1. An adaptive water regulator, characterized in that: The adaptor water regulator comprises a pure water inlet pipe connected to the purified pure water, a purified water inlet pipe connected to the purified water, and a mineral water outlet pipe connecting the pure water inlet pipe and the purified water inlet pipe, wherein a TDS detection probe (1) is provided on the mineral water outlet pipe; The pure water inlet pipe is provided with a first water inlet solenoid valve (2), the purified water inlet pipe is connected to a mineralized filter element (3), and a second water inlet solenoid valve (4) is provided on the purified water inlet pipe located at the rear end of the mineralized filter element (3).
2. The adaptive water regulator according to claim 1, characterized in that: The adaptable water regulator also includes a purified water outlet pipe extending from the purified water inlet pipe and located between the mineralized filter element (3) and the second water inlet solenoid valve (4).
3. The adaptive water regulator according to claim 2, characterized in that: The water quality regulator also includes a water mixing tank (5) connected to the mineral water outlet pipe and located at the rear end of the TDS detection probe (1).
4. The adaptive water regulator according to claim 3, characterized in that: The water quality regulator also includes a UV lamp (6) connected to the mineral water outlet pipe and located at the rear end of the water mixing tank (5).
5. The adaptive water regulator according to claim 4, characterized in that: The water quality regulator also includes a housing (7) for accommodating a pure water inlet pipe, a purified water inlet pipe, a mineral water outlet pipe, a TDS detection probe (1), a first water inlet solenoid valve (2), a mineralization filter element (3), a second water inlet solenoid valve (4), a water mixing tank (5), and a UV lamp (6).
6. The adaptive water regulator according to claim 5, characterized in that: The housing (7) is provided with a pure water inlet (8) corresponding to the pure water inlet pipe, a purified water inlet (9) corresponding to the purified water inlet pipe, a mineral water outlet (10) corresponding to the mineral water outlet pipe, and a purified water outlet (11) corresponding to the purified water outlet pipe.
7. The adaptive water regulator according to claim 1, characterized in that: The adaptive water regulator further comprises a controller, which is electrically connected to the TDS detection probe (1), the first water inlet solenoid valve (2) and the second water inlet solenoid valve (4) so as to regulate the start and stop of the first water inlet solenoid valve (2) and / or the second water inlet solenoid valve (4) according to the detection feedback of the TDS detection probe (1).