CN205170448U - Water purification system and water purifier that has it - Google Patents

Water purification system and water purifier that has it Download PDF

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Publication number
CN205170448U
CN205170448U CN201520840609.XU CN201520840609U CN205170448U CN 205170448 U CN205170448 U CN 205170448U CN 201520840609 U CN201520840609 U CN 201520840609U CN 205170448 U CN205170448 U CN 205170448U
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China
Prior art keywords
water
valve
filter core
osmosis filter
switch
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CN201520840609.XU
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Chinese (zh)
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宋国栋
刘磊
孙天厚
桂鹏
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Foshan Shunde Midea Water Dispenser Manufacturing Co Ltd
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Foshan Shunde Midea Water Dispenser Manufacturing Co Ltd
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Abstract

The utility model discloses a water purification system and water purifier that has it, the water purification system includes: anti -osmosis filter core, booster pump, waste water valve and wash the water route, anti -osmosis filter core has water inlet, the export of concentrated water and is used for supplying the pure water outlet of pure water, the play water end (W. E. ) of booster pump with anti -osmosis filter core's water inlet links to each other, the waste water valve is connected concentrated water export, wash the water route intake the end with anti -osmosis filter core pure water outlet links to each other, just it connects to wash the water end (W. E. ) in water route anti -osmosis filter core's water inlet. According to the utility model discloses a water route is washed through setting up by the water purification system in the water purification system, wash anti -osmosis filter core with the pure water to reduce the impurity in the anti -osmosis filter core. From this, can reduce impurity in the pure water that anti -osmosis filter core made effectively to improve the taste of pure water.

Description

Water cleaning systems and the water purifier with it
Technical field
The utility model relates to technical field of water purification, especially relates to a kind of water cleaning systems and has the water purifier of this water cleaning systems.
Background technology
In correlation technique, the anti-penetration water purifier of large discharge receives an acclaim without tank technology namely to filter i.e. drink.But; reverse osmosis filter core in large discharge anti-penetration water purifier is not the semi-permeable membranes in ideal, there is the phenomenon that ionogen spreads from former water side direction pure water side after a shutdown, and the pure water side impurity in reverse osmosis filter core is raised; the problems such as the first glass of water impurity causing user to obtain is higher, and mouthfeel is uncomfortable.
Utility model content
The utility model is intended to solve one of technical problem in correlation technique at least to a certain extent.For this reason, an object of the present utility model is to propose a kind of water cleaning systems, and the pure water impurity that this water cleaning systems obtains is low, mouthfeel good.
Another object of the present utility model is to propose a kind of water purifier with above-mentioned water cleaning systems.
According to the water cleaning systems of the utility model first aspect, comprising: reverse osmosis filter core, described reverse osmosis filter core has water-in, condensed water outlet and the pure water outlet for supplying pure water; Topping-up pump, the water side of described topping-up pump is connected with the water-in of described reverse osmosis filter core; Wastewater valve, described wastewater valve connects the outlet of described condensed water; Rinse water route, the feed-water end in described flushing water route is connected with the described pure water intake of described reverse osmosis filter core, and the water side in described flushing water route connects the water-in of described reverse osmosis filter core.
According to water cleaning systems of the present utility model, rinse water route, with pure water rinsing reverse osmosis filter core, to reduce the impurity in reverse osmosis filter core by arranging in water cleaning systems.Thus, effectively can reduce the impurity in the pure water that reverse osmosis filter core obtains, thus improve the mouthfeel of pure water.
In addition, following additional technical characteristic can also be had according to water cleaning systems of the present utility model:
According to an embodiment of the present utility model, the water side in described flushing water route connects the feed-water end of described topping-up pump.
Particularly, described flushing water route comprises the first switch-valve, flush pot and the second switch valve of connecting successively, and described first switch-valve connects the described pure water outlet of described reverse osmosis filter core, and described second switch valve connects the feed-water end of described topping-up pump.
Further, described flush pot is provided with condensate tank of dehumidifier.
Alternatively, described condensate tank of dehumidifier comprises anhydrous detection piece and the full detection piece of water.
Alternatively, described flush pot is volume is 0.25 tank body being raised to 2 liters.
Alternatively, described first switch-valve and described second switch valve are normally closed solenoid valve.
Particularly, the feed-water end of described topping-up pump is connected with the 3rd switch-valve, and the water side in described flushing water route is connected between described topping-up pump and described 3rd switch-valve.
Alternatively, described wastewater valve comprises waste water proportional valve parallel with one another and normally closed solenoid valve, and described wastewater valve has the full-gear opening described normally closed solenoid valve and the closing condition of closing described normally closed solenoid valve.
According to the water purifier of the utility model second aspect, comprise the water cleaning systems of above-mentioned first aspect, due to the water cleaning systems of above-mentioned first aspect, there is the beneficial effect that impurity is low, mouthfeel is good of obtained pure water, therefore by arranging this water cleaning systems, improve the quality of water purifier.
Additional aspect of the present utility model and advantage will part provide in the following description, and part will become obvious from the following description, or be recognized by practice of the present utility model.
Accompanying drawing explanation
Fig. 1 is the schematic diagram of the water cleaning systems of water purifier according to the utility model embodiment.
Reference numeral:
Water cleaning systems 100,
Reverse osmosis filter core 1, topping-up pump 2, wastewater valve 3,
First switch-valve 41, second switch valve 42, flush pot 43,
Water inlet 5 to be filtered, pure water intake 6, waste outlet 7, the 3rd switch-valve 8,
First Y-junction 9, second Y-junction 10.
Embodiment
Be described below in detail embodiment of the present utility model, the example of described embodiment is shown in the drawings, and wherein same or similar label represents same or similar element or has element that is identical or similar functions from start to finish.Be exemplary below by the embodiment be described with reference to the drawings, be intended to for explaining the utility model, and can not be interpreted as restriction of the present utility model.
Below with reference to Fig. 1, the water cleaning systems 100 according to the utility model embodiment is described.
As shown in Figure 1, according to the water cleaning systems 100 of the utility model first aspect embodiment, comprising: reverse osmosis filter core 1, topping-up pump 2, wastewater valve 3 and flushing water route.
Wherein, reverse osmosis filter core 1 has water-in, condensed water outlet and the pure water outlet for supplying pure water.Such as, in the example of fig. 1, water-in is formed in the left side of reverse osmosis filter core 1, and pure water outlet is formed in the top of reverse osmosis filter core 1, and condensed water outlet is formed in the right side of reverse osmosis filter core 1.Alternatively, pure water outlet is connected with pure water intake 6.Thus, user can be facilitated to fetch water, and structure is simple, is easy to realize.
The right-hand member of topping-up pump 2 (in the such as Fig. 1) is connected with the water-in of reverse osmosis filter core 1 for the water side of topping-up pump 2.When topping-up pump 2 works, the pressure increase in water cleaning systems 100, water to be filtered can penetrate in reverse osmosis filter core 1 under the effect of the pressure and filter.When topping-up pump 2 quits work, the pressure in water cleaning systems 100 is former hydraulic pressure, and now, water to be filtered can not penetrate in reverse osmosis filter core 1 and filter.
Wastewater valve 3 connects condensed water outlet, and such as, in the example of fig. 1, one end of wastewater valve 3 connects condensed water outlet and the other end connects waste outlet 7, so that waste water is discharged water cleaning systems 100.
The flushing feed-water end in water route exports with the pure water of reverse osmosis filter core 1 and is connected, and the water side rinsing water route connects the water-in of reverse osmosis filter core 1.Wherein, the feed-water end rinsing water route is exported with the pure water of reverse osmosis filter core 1 by the first Y-junction 9 and is connected, and the water side rinsing water route is connected with the water-in of reverse osmosis filter core 1 by the second Y-junction 10.Specifically, the first end of the first Y-junction 9 exports with pure water and is connected, and the second end of the first Y-junction 9 is connected with the feed-water end rinsing water route, and the 3rd end of the first Y-junction 9 is connected with pure water intake 6.The first end of the second Y-junction 10 is connected with water inlet 5 to be filtered, and the second end of the second Y-junction 10 is connected with the water side rinsing water route, and the 3rd end of the second Y-junction 10 is connected with the water-in of reverse osmosis filter core 1.
Such as, in the example of fig. 1, when opening pure water intake 6 and fetching water, topping-up pump 2 is opened, and water to be filtered filters through reverse osmosis filter core 1.Wherein, the condensed water after filtration is discharged by wastewater valve 3, and the pure water after reverse osmosis filter core 1 filters flows out from pure water intake 6.After water intaking terminates, pure water intake 6 stops water outlet, and the pure water after reverse osmosis filter core 1 filters enters and rinses water route, to rinse the impurity in reverse osmosis filter core 1, and is discharged by the waste water after flushing by wastewater valve 3.Thus, the impurity in reverse osmosis filter core 1 can be reduced, thus reduce the impurity in water cleaning systems 100, improve the mouthfeel of pure water.
According to the water cleaning systems 100 of the utility model embodiment, rinse water route, with pure water rinsing reverse osmosis filter core 1, to reduce the impurity in reverse osmosis filter core 1 by arranging in water cleaning systems 100.Thus, effectively can reduce the impurity in the obtained pure water of reverse osmosis filter core 1, thus improve the mouthfeel of pure water.
According to an embodiment of the present utility model, the water side rinsing water route connects the feed-water end of topping-up pump 2.In other words, topping-up pump 2 is located at and rinses between the water side in water route and the water-in of reverse osmosis filter core 1.Thus, the hydraulic pressure in water cleaning systems 100 can be ensured when rinsing reverse osmosis filter core 1, pure water can be entered in reverse osmosis filter core 1 and rinse.
Particularly, rinse water route comprise connect successively the first switch-valve 41, flush pot 43 and second switch valve 42, first switch-valve 41 connect the pure water outlet of reverse osmosis filter core 1, and second switch valve 42 connects the feed-water end of topping-up pump 2.Alternatively, the first switch-valve 41 and second switch valve 42 are normally closed solenoid valve, but are not limited thereto.
Specifically, with reference to Fig. 1, the first switch-valve 41 is connected with the second end of the first Y-junction 9, and second switch valve 42 is connected with the second end of the second Y-junction 10.Wherein, flush pot 43 can be 0.25 tank body being raised to 2 liters for volume.
Such as, in the example of fig. 1, after user's water intaking terminates, open the first switch-valve 41, pure water can be injected in flush pot 43.When water in flush pot 43 is full, closes the first switch-valve 41, open second switch valve 42 and make wastewater valve 3 be in full open position.Now, the pure water in flush pot 43 can be used to rinse reverse osmosis filter core 1, and the waste water after flushing is discharged by wastewater valve 3.After rinsing for some time, close topping-up pump 2, second switch valve 42 and wastewater valve 3, enter holding state.
After standby for some time, can open topping-up pump 2, second switch valve 42 make wastewater valve 3 be in the state opened completely, use the pure water in flush pot 43 to rinse reverse osmosis filter core 1, the waste water after flushing is discharged by wastewater valve 3.Thus, the impurity in water cleaning systems 100 can be reduced further.In addition, flush pot 43 can arrange venting hole.
According to an embodiment of the present utility model, the feed-water end of topping-up pump 2 is connected with the 3rd switch-valve 8, and the water side rinsing water route is connected between topping-up pump 2 and the 3rd switch-valve 8.Such as, in the example of fig. 1, the first end of the second Y-junction 10 is connected with the 3rd switch-valve 8.When opening the 3rd switch-valve 8, can from pure water for intake water intaking.
Alternatively, flush pot 43 is provided with condensate tank of dehumidifier.Particularly, condensate tank of dehumidifier can comprise anhydrous detection piece and the full detection piece of water.Thus, can be convenient to detect the full state of water in flush pot 43 and anhydrous state.Such as, when anhydrous detection piece detects anhydrous in flush pot 43, topping-up pump 2, second switch valve 42 and wastewater valve 3 can be closed, continue to enter holding state.By the time, after user's water intaking next time terminates, the first switch-valve 41 can be opened, in flush pot 43, inject pure water.
When the full detection piece of water detects that water level in flush pot 43 is completely, the first switch-valve 41 and the 3rd switch-valve 8 can be closed in time, prevent pure water from overflowing flush pot 43, thus can water saving, avoid waste water resource.Certainly, condensate tank of dehumidifier also can water level conditions in Real-Time Monitoring flush pot 43, and the utility model does not do concrete restriction to this.
Alternatively, wastewater valve 3 is comprise waste water proportional valve and normally closed solenoid valve and can in off position and the combination valve switched between full-gear, and wastewater valve 3 is in off position for waste water proportional valve and be the normally closed solenoid valve opened in full-gear.
Such as, waste water proportional valve can be in parallel with normally closed solenoid valve, and when wastewater valve 3 is in closing condition, normally closed solenoid valve is closed, and by pressure before waste water proportional valve inner aperture reservation reverse osmosis filter core 1, condensed water discharged.When wastewater valve 3 is in full-gear, normally closed solenoid valve is opened, and now, under topping-up pump 2 opened condition, can rinse reverse osmosis filter core 1, and to reduce the impurity in reverse osmosis filter core 1, the water after flushing is flowed out by the normally closed solenoid valve in wastewater valve 3.Thus, the impurity in pure water can be reduced further.
Further, water cleaning systems 100 can also comprise the first controller, second controller and the 3rd controller.Wherein, the first controller opens the first switch-valve 41 and water is closed the first switch-valve 41, the 3rd switch-valve 8 completely afterwards, opened second switch valve 42 and make wastewater valve 3 be in full-gear in flush pot 43 after user's water intaking terminates.Second controller, after rinsing for first scheduled time to reverse osmosis filter core 1, is closed topping-up pump 2, second switch valve 42, the 3rd switch-valve 8 and wastewater valve 3, is entered holding state.Wherein, above-mentioned first scheduled time can be 1-60s.
3rd controller after standby second scheduled time, open topping-up pump 2, second switch valve 42 and make wastewater valve 3 be in full-gear and anhydrous in flush pot 43 time close topping-up pump 2, second switch valve 42, wastewater valve 3, continue to enter holding state.Wherein, above-mentioned second scheduled time can be 5-120min.
Below with reference to the accompanying drawings describe according to a specific embodiment of the present utility model.
With reference to Fig. 1, according to the water cleaning systems 100 of the utility model first aspect embodiment, comprising: reverse osmosis filter core 1, topping-up pump 2, wastewater valve 3 and flushing water route.
Wherein, reverse osmosis filter core 1 has water-in, condensed water outlet and the pure water outlet for supplying pure water.Water-in is formed in the left side of reverse osmosis filter core 1, and pure water outlet is formed in the top of reverse osmosis filter core 1, and condensed water outlet is formed in the right side of reverse osmosis filter core 1 and pure water outlet is connected with pure water intake 6.
The water side of topping-up pump 2 is connected with the water-in of reverse osmosis filter core 1.One end of wastewater valve 3 connects condensed water outlet and the other end connects waste outlet 7, so that waste water is discharged water cleaning systems 100.
The feed-water end rinsing water route is exported with the pure water of reverse osmosis filter core 1 by the first Y-junction 9 and is connected, and the water side rinsing water route is connected with topping-up pump 2 by the second Y-junction 10.Specifically, the first end of the first Y-junction 9 exports with pure water and is connected, and the second end of the first Y-junction 9 is connected with the feed-water end rinsing water route, and the 3rd end of the first Y-junction 9 is connected with pure water intake 6.The first end of the second Y-junction 10 is connected with water inlet 5 to be filtered, and the second end of the second Y-junction 10 is connected with the water side rinsing water route, and the 3rd end of the second Y-junction 10 is connected with topping-up pump 2.
Particularly, rinse water route and comprise the first switch-valve 41, flush pot 43 and the second switch valve 42 of connecting successively, wherein the first switch-valve 41 is connected with the second end of the first Y-junction 9, and second switch valve 42 is connected with the second end of the second Y-junction 10.Flush pot 43 for volume be 0.25 be raised to 2 liters.
The feed-water end of topping-up pump 2 is connected with the 3rd switch-valve 8, and the water side rinsing water route is connected between topping-up pump 2 and the 3rd switch-valve 8.
Flush pot 43 is provided with condensate tank of dehumidifier.Particularly, condensate tank of dehumidifier comprises anhydrous detection piece and the full detection piece of water.Thus, can be convenient to detect the full state of water in flush pot 43 and anhydrous state.
Wastewater valve 3 is comprise waste water proportional valve and normally closed solenoid valve and can in off position and the combination valve switched between full-gear, and wastewater valve 3 is in off position for waste water proportional valve and be the normally closed solenoid valve opened in full-gear.
Such as, when fetching water, open the 3rd switch-valve 8, topping-up pump 2, the pure water that reverse osmosis filter core 1 obtains flows out from pure water intake 6.After water intaking terminates, close pure water intake 6, first switch-valve 41 and open, in flush pot 43, inject pure water.When the water level that the full detection piece of water detects in flush pot 43 is expired, the first switch-valve 41 and the 3rd switch-valve 8 are closed, and second switch valve 42 is opened, and make wastewater valve 3 be in full-gear.Now, the pure water in available flush pot 43 rinses reverse osmosis filter core 1, to reduce the impurity in water cleaning systems 100, thus reduces the foreign matter content in pure water, improves the mouthfeel of pure water.After rinsing 1-60s, close second switch valve 42, topping-up pump 2 and wastewater valve 3, enter holding state.
After standby 5-120min, second switch valve 42 and topping-up pump 2 are opened, and make wastewater valve 3 be in full-gear, to rinse reverse osmosis filter core 1.Thus, the impurity in water cleaning systems 100 can be reduced further.When anhydrous detection piece detects anhydrous in flush pot 43, close topping-up pump 2, second switch valve 42 and wastewater valve 3, continue to enter holding state.By the time, during water intaking next time, the step of water filling in flush pot 43 is repeated.
According to the water cleaning systems 100 of the utility model first aspect embodiment, rinse water route, with pure water rinsing reverse osmosis filter core 1, to reduce the impurity in reverse osmosis filter core 1 by arranging in water cleaning systems 100.Thus, effectively can reduce the impurity in the obtained pure water of reverse osmosis filter core 1, thus improve the mouthfeel of pure water.In addition, also extend the life-span of reverse osmosis filter core 1, reduce use cost.
According to the water purifier of the utility model second aspect embodiment, comprise the water cleaning systems 100 of above-mentioned first aspect, water cleaning systems 100 due to above-mentioned first aspect has the beneficial effect that impurity is low, mouthfeel is good of obtained pure water, therefore by arranging this water cleaning systems 100, the quality of water purifier can be improved.
In description of the present utility model, it will be appreciated that, term " " center ", " longitudinal direction ", " transverse direction ", " length ", " width ", " thickness ", " on ", D score, " front ", " afterwards ", " left side ", " right side ", " vertically ", " level ", " top ", " end " " interior ", " outward ", " axis ", " radial direction ", orientation or the position relationship of the instruction such as " circumference " are based on orientation shown in the drawings or position relationship, only the utility model and simplified characterization for convenience of description, instead of indicate or imply that the device of indication or element must have specific orientation, with specific azimuth configuration and operation, therefore can not be interpreted as restriction of the present utility model.
In addition, term " first ", " second " only for describing object, and can not be interpreted as instruction or hint relative importance or imply the quantity indicating indicated technical characteristic.Thus, be limited with " first ", the feature of " second " can express or impliedly comprise at least one this feature.In description of the present utility model, the implication of " multiple " is at least two, such as two, three etc., unless otherwise expressly limited specifically.
In the utility model, unless otherwise clearly defined and limited, the term such as term " installation ", " being connected ", " connection ", " fixing " should be interpreted broadly, and such as, can be fixedly connected with, also can be removably connect, or integral; Can be mechanical connection, also can be electrical connection; Can be directly be connected, also indirectly can be connected by intermediary, can be the connection of two element internals or the interaction relationship of two elements, unless otherwise clear and definite restriction.For the ordinary skill in the art, the concrete meaning of above-mentioned term in the utility model can be understood as the case may be.
In the utility model, unless otherwise clearly defined and limited, fisrt feature second feature " on " or D score can be that the first and second features directly contact, or the first and second features are by intermediary indirect contact.And, fisrt feature second feature " on ", " top " and " above " but fisrt feature directly over second feature or oblique upper, or only represent that fisrt feature level height is higher than second feature.Fisrt feature second feature " under ", " below " and " below " can be fisrt feature immediately below second feature or tiltedly below, or only represent that fisrt feature level height is less than second feature.
In the description of this specification sheets, specific features, structure, material or feature that the description of reference term " embodiment ", " some embodiments ", " example ", " concrete example " or " some examples " etc. means to describe in conjunction with this embodiment or example are contained at least one embodiment of the present utility model or example.In this manual, to the schematic representation of above-mentioned term not must for be identical embodiment or example.And the specific features of description, structure, material or feature can combine in one or more embodiment in office or example in an appropriate manner.In addition, when not conflicting, the feature of the different embodiment described in this specification sheets or example and different embodiment or example can carry out combining and combining by those skilled in the art.
Although illustrate and described embodiment of the present utility model above, be understandable that, above-described embodiment is exemplary, can not be interpreted as restriction of the present utility model, those of ordinary skill in the art can change above-described embodiment, revises, replace and modification in scope of the present utility model.

Claims (10)

1. a water cleaning systems, is characterized in that, comprising:
Reverse osmosis filter core, described reverse osmosis filter core has water-in, condensed water outlet and the pure water outlet for supplying pure water;
Topping-up pump, the water side of described topping-up pump is connected with the water-in of described reverse osmosis filter core;
Wastewater valve, described wastewater valve connects the outlet of described condensed water;
Rinse water route, the feed-water end in described flushing water route exports with the described pure water of described reverse osmosis filter core and is connected, and the water side in described flushing water route connects the water-in of described reverse osmosis filter core.
2. water cleaning systems according to claim 1, is characterized in that, the water side in described flushing water route connects the feed-water end of described topping-up pump.
3. water cleaning systems according to claim 2, it is characterized in that, described flushing water route comprises the first switch-valve, flush pot and the second switch valve of connecting successively, described first switch-valve connects the described pure water outlet of described reverse osmosis filter core, and described second switch valve connects the feed-water end of described topping-up pump.
4. water cleaning systems according to claim 3, is characterized in that, described flush pot is provided with condensate tank of dehumidifier.
5. water cleaning systems according to claim 4, is characterized in that, described condensate tank of dehumidifier comprises anhydrous detection piece and the full detection piece of water.
6. water cleaning systems according to claim 3, is characterized in that, described flush pot is volume is 0.25 tank body being raised to 2 liters.
7. water cleaning systems according to claim 3, is characterized in that, described first switch-valve and described second switch valve are normally closed solenoid valve.
8. the water cleaning systems according to any one of claim 1-7, is characterized in that, the feed-water end of described topping-up pump is connected with the 3rd switch-valve, and the water side in described flushing water route is connected between described topping-up pump and described 3rd switch-valve.
9. the water cleaning systems according to any one of claim 1-7, it is characterized in that, described wastewater valve comprises waste water proportional valve parallel with one another and normally closed solenoid valve, and described wastewater valve has the full-gear opening described normally closed solenoid valve and the closing condition of closing described normally closed solenoid valve.
10. a water purifier, is characterized in that, comprises the water cleaning systems according to any one of claim 1-9.
CN201520840609.XU 2015-10-26 2015-10-26 Water purification system and water purifier that has it Active CN205170448U (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106082467A (en) * 2016-05-31 2016-11-09 佛山市云米电器科技有限公司 Anti-leakage purifier and control method thereof
CN106838371A (en) * 2017-01-23 2017-06-13 佛山市顺德区碧信环保科技有限公司 Many waterway electromagnetic valves and it is provided with the water cleaning systems of the magnetic valve
CN111659255A (en) * 2019-03-08 2020-09-15 佛山市美的清湖净水设备有限公司 Water purification system and water purification unit

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106082467A (en) * 2016-05-31 2016-11-09 佛山市云米电器科技有限公司 Anti-leakage purifier and control method thereof
CN106082467B (en) * 2016-05-31 2022-12-02 广东栗子科技有限公司 Water purifier capable of preventing water leakage and control method thereof
CN106838371A (en) * 2017-01-23 2017-06-13 佛山市顺德区碧信环保科技有限公司 Many waterway electromagnetic valves and it is provided with the water cleaning systems of the magnetic valve
CN111659255A (en) * 2019-03-08 2020-09-15 佛山市美的清湖净水设备有限公司 Water purification system and water purification unit

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