WO2016086737A1 - 配有水龙头分流器的净水机 - Google Patents

配有水龙头分流器的净水机 Download PDF

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Publication number
WO2016086737A1
WO2016086737A1 PCT/CN2015/092788 CN2015092788W WO2016086737A1 WO 2016086737 A1 WO2016086737 A1 WO 2016086737A1 CN 2015092788 W CN2015092788 W CN 2015092788W WO 2016086737 A1 WO2016086737 A1 WO 2016086737A1
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WIPO (PCT)
Prior art keywords
water
switch
electronically controlled
circuit board
control circuit
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PCT/CN2015/092788
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English (en)
French (fr)
Inventor
陈小平
刘新宇
Original Assignee
佛山市云米电器科技有限公司
小米科技有限责任公司
陈小平
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Application filed by 佛山市云米电器科技有限公司, 小米科技有限责任公司, 陈小平 filed Critical 佛山市云米电器科技有限公司
Priority to RU2017121853A priority Critical patent/RU2676607C1/ru
Priority to KR1020177015119A priority patent/KR20170077232A/ko
Publication of WO2016086737A1 publication Critical patent/WO2016086737A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D35/00Filtering devices having features not specifically covered by groups B01D24/00 - B01D33/00, or for applications not specifically covered by groups B01D24/00 - B01D33/00; Auxiliary devices for filtration; Filter housing constructions
    • B01D35/14Safety devices specially adapted for filtration; Devices for indicating clogging
    • B01D35/147Bypass or safety valves
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/001Processes for the treatment of water whereby the filtration technique is of importance
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/008Control or steering systems not provided for elsewhere in subclass C02F
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/04Programme control other than numerical control, i.e. in sequence controllers or logic controllers
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F2103/00Nature of the water, waste water, sewage or sludge to be treated
    • C02F2103/02Non-contaminated water, e.g. for industrial water supply
    • C02F2103/04Non-contaminated water, e.g. for industrial water supply for obtaining ultra-pure water

Definitions

  • the invention relates to a water purifier equipped with a faucet splitter.
  • the faucet is connected to the water purifier, and the diverter selection switch determines whether the tap water or the pure water is directly discharged.
  • the switch is a manual mechanical switch.
  • the object of the present invention is to overcome the deficiencies of the prior art described above, and to provide a water purifier equipped with a faucet shunt with a reasonable structure and controlled by an electric control device and an electronically controlled water switch to ensure electrical control.
  • the device detects an abnormality in the water purifier, the tap water of the faucet no longer enters the water purifier.
  • a water purifier equipped with a faucet shunt comprising a shunt body, a water purifier body and a control circuit board, the water purifier body is provided with a water filtering channel, the water filtering channel is connected with the shunt body, and a water filtering circuit is formed
  • the utility model is characterized in that the shunt body is provided with a tap water inlet, a shunt pipe, a tap water drain port, a tap water outlet, an electronically controlled water switch A, a control panel and a water flow sensor for detecting the water flow in the shunt body.
  • the water purifier body is provided with an electronically controlled waterway switch B; the tap water inlet and the tap water outlet are respectively connected with the shunt pipe, and the shunt pipe is also connected to the tap water drain through the electronically controlled water switch A, and the electric control type
  • the water switch B is connected to the water filter circuit; the water flow sensor, the electronically controlled water switch A and the electronically controlled water switch B are electrically connected to the control circuit board respectively; the control panel is provided with at least a pure water switch and a water switch The pure water switch and the water switch are electrically connected to the control circuit board, respectively.
  • the water filtration channel includes the water inlet hole, the pure water outlet hole, the water pump and the filter element, one end of the inlet hole communicates with the tap water drain port of the diverter body, and the other end of the water inlet hole passes the water pump
  • the filter element is connected to one end of the pure water outlet hole; the flow divider body is provided with a pure water outlet pipe, and the pure water outlet pipe is connected to the other end of the pure water outlet hole.
  • the control circuit board is divided into two parts, wherein a part of the control circuit board is disposed on the shunt body, and another part of the control circuit board is disposed on the water purifier body; the electronically controlled water switch A and the electronically controlled water switch B and One part of the control circuit board is electrically connected to another part of the control circuit board; or the electronically controlled water way switch A and the electronically controlled water way switch B are electrically connected to two parts of the control circuit board; the electronically controlled water switch A The electronically controlled water switch B is interlocked with each other, and the two switches are in an open state.
  • the electronically controlled waterway switch A is a normally open electromagnetic valve
  • the electrically controlled waterway switch B is a normally closed electromagnetic valve.
  • the normally open electromagnetic valve and a part of the control circuit board are sequentially disposed above the shunt tube, and a separation plate for magnetic isolation is further disposed between the normally open electromagnetic valve and the control circuit board.
  • the isolation plate can effectively block electromagnetic radiation and prevent accidents such as leakage and short circuit, and greatly improve the safety and reliability of the faucet shunt.
  • the pure water switch or the tap water switch is a touch switch, and the surface thereof is provided with a waterproof layer.
  • the pure water switch or the tap water switch is a push button switch.
  • the control circuit board is provided with a function switching sound reminding circuit to remind the user that the function of pure water or tap water has been successfully switched.
  • the pure water switch uses two consecutive touch operations or more.
  • the control panel is disposed on the upper part of the shunt body, and the angle between the plane of the control panel and the horizontal plane is less than or equal to 90 degrees, so that the control panel forms an acute angle relationship with the user, which is convenient for the user to operate and view the control panel.
  • An electronically controlled water switch A and B are respectively arranged on the shunt and the water purifier of the present invention, and the two electronically controlled water switch are controlled together by the control circuit board, so that the shunt can be tap water or Pure water
  • control circuit board automatically controls the electronically controlled water switch A to open, the electronically controlled water switch B is closed, and the tap water is discharged to the outside of the water purifier to avoid continuing to enter the water purifier, causing The water purifier pressure is too high or other abnormalities.
  • FIG. 1 is a schematic structural view of an embodiment of the present invention.
  • FIG. 2 is a schematic plan view of the top view of FIG. 1.
  • FIG. 3 is a schematic diagram of the water circuit and circuit of the present invention.
  • FIG. 4 is a schematic diagram of the mountable position of the electronically controlled water switch B of FIG.
  • a water purifier equipped with a faucet diverter includes a diverter body 1 and a water purifier body 9.
  • the water purifier body 9 is provided with a water filtering channel, a water filtering channel and a flow divider.
  • the body 1 is connected and forms a water filtration circuit;
  • the flow divider body 1 is provided with a tap water inlet 11 (the outer end of the tap water inlet 11 is connected to the faucet 6), and the shunt tube 3.
  • the tap water drain port 12, the tap water outlet port 31, the electronically controlled waterway switch A, the control circuit board 13, the control panel 14 and the water flow sensor 5 for detecting the water flow in the splitter body 1, the water purifier body 9 is provided There is an electronically controlled waterway switch B; the tap water inlet port 11 and the tap water outlet port 31 are respectively connected with the shunt pipe 3, and the shunt pipe 3 is also connected to the tap water drain port 12 through the electronically controlled water switch A, and the electronically controlled waterway
  • the switch B is connected to the water filter circuit (in conjunction with FIG. 4, the electronically controlled water switch B can be disposed at any position of A, B, C, D, E, F in the water filter circuit); the water flow sensor 5.
  • the electronically controlled waterway switch A and the electronically controlled waterway switch B are electrically connected to the control circuit board 13, respectively;
  • the control panel 14 is provided with at least a pure water switch 16 and a water switch 17, a pure water switch 16 and a water switch 17 They are electrically connected to the control circuit board 13 respectively.
  • the water filtration channel includes the water inlet hole 10, the pure water outlet hole 20, the water pump 91 and the filter element 92.
  • One end of the water inlet hole 10 communicates with the tap water drain port 12 of the flow divider body 1, and the other end of the water inlet hole 10 passes through the water pump.
  • 91 and the filter element 92 are in communication with one end of the pure water outlet hole 20;
  • the flow divider body 1 is provided with a pure water outlet pipe 18, and the pure water outlet pipe 18 communicates with the other end of the pure water outlet hole 20.
  • the electronically controlled waterway switch A and the electronically controlled waterway switch B are interlocked with each other, and the two switches are in an on-off state.
  • the electronically controlled waterway switch A is a normally open solenoid valve 2
  • the electrically controlled waterway switch B is a normally closed solenoid valve 8.
  • the normally open solenoid valve 2 and the control circuit board 13 are sequentially disposed above the shunt tube 3, and a spacer 7 for magnetic isolation is further disposed between the normally open solenoid valve 2 and the control circuit board 13.
  • the pure water switch 16 or the tap water switch 17 is a touch switch, and a waterproof layer 15 is provided on the surface thereof.
  • the pure water switch 16 or the water switch 17 is a push button switch.
  • the control circuit board 13 is provided with a function switching sound reminding circuit.
  • the pure water switch 16 uses two consecutive touch operations or more.
  • the control panel 14 is disposed on the upper portion of the splitter body 1, and the angle between the plane of the control panel 14 and the horizontal plane is less than or equal to 90 degrees.
  • the splitter body 1 and the water purifier body 9 are connected by a drain pipe 4.
  • the working principle is: when the tap water is selected by the tap water switch 17, the electronically controlled water switch A is opened (watered) state, and the electronically controlled water switch B is in the closed (closed water) state.
  • the pure water function is selected by the pure water switch 16
  • the electronically controlled water switch A is closed (closed water) state
  • the electronically controlled water switch B is in the open (water) state.
  • the initial state of the shunt is in the tap water function, and the electronically controlled water switch A is in the water-passing state.
  • the valve does not operate.
  • the electronically controlled water switch A is energized, the tap water does not pass from the water outlet 12 Flow Out.
  • the transition from the tap water mode to the pure water mode can be quickly realized, and the electronically controlled water switch A and the electronically controlled water switch B simultaneously operate, that is, the electronically controlled water switch A
  • the electronically controlled water switch B is energized to open.
  • a water purifier equipped with a faucet diverter includes a diverter body 1, a water purifier body 9 and a control circuit board, and the water purifier body 9 is provided with a water filtering channel, and water filtering.
  • the passage is connected to the flow divider body 1 and forms a water filtration circuit; the flow divider body 1 is provided with a tap water inlet 11 (the outer end of the tap water inlet port 11 is connected to the faucet 6), the shunt pipe 3, the tap water drain port 12, and the tap water outlet.
  • the water outlet 31, the electronically controlled waterway switch A, the control panel 14 and the water flow sensor 5 for detecting the water flow in the flow divider body 1, the water purifier body 9 is provided with an electrically controlled waterway switch B; the tap water inlet 11 The tap water outlets 31 are respectively connected to the shunt pipe 3, and the shunt pipe 3 is also connected to the tap water drain port 12 through the electronically controlled water switch A, and the electronically controlled water switch B is connected to the water filter circuit; the water flow sensor 5
  • the electronically controlled water switch A and the electronically controlled water switch B are electrically connected to the control circuit board respectively;
  • the control panel 14 is provided with at least a pure water switch 16 and a water switch 17, the pure water switch 16 and the water switch 17 respectively Control board Electrical connection.
  • the water filtration channel includes the water inlet hole 10, the pure water outlet hole 20, the water pump 91 and the filter element 92.
  • One end of the water inlet hole 10 communicates with the tap water drain port 12 of the flow divider body 1, and the other end of the water inlet hole 10 passes through the water pump.
  • 91 and the filter element 92 are in communication with one end of the pure water outlet hole 20;
  • the flow divider body 1 is provided with a pure water outlet pipe 18, and the pure water outlet pipe 18 communicates with the other end of the pure water outlet hole 20.
  • the control circuit board is divided into two parts, wherein a part 13 of the control circuit board is disposed on the shunt body 1, and another part 93 of the control circuit board is disposed on the water purifier body 9; the electronically controlled water switch A and the electric
  • the controlled water switch B is electrically connected to a portion 13 of the control circuit board and another portion 93 of the control circuit board; or, the electronically controlled water switch A and the electronically controlled water switch B are electrically connected to the two parts of the control circuit board.
  • the electronically controlled waterway switch A and the electronically controlled waterway switch B are interlocked with each other, and the two switches are in an on-off state.
  • the electronically controlled waterway switch A is a normally open solenoid valve 2
  • the electrically controlled waterway switch B is a normally closed solenoid valve 8.
  • the normally open electromagnetic valve 2, a part 13 of the control circuit board is sequentially disposed above the shunt tube 3, and a partition plate 7 for magnetic isolation is further disposed between the normally open electromagnetic valve 2 and the control circuit board 13.
  • the pure water switch 16 or the tap water switch 17 is a touch switch, and a waterproof layer 15 is provided on the surface thereof.
  • the pure water switch 16 or the water switch 17 is a push button switch.
  • the control circuit board 13 is provided with a function switching sound reminding circuit.
  • the pure water switch 16 uses two consecutive touch operations or more.
  • the control panel 14 is disposed on the upper portion of the splitter body 1, and the angle between the plane of the control panel 14 and the horizontal plane is less than or equal to 90 degrees.

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  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Environmental & Geological Engineering (AREA)
  • Water Supply & Treatment (AREA)
  • Organic Chemistry (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Automation & Control Theory (AREA)
  • Water Treatment By Sorption (AREA)

Abstract

一种配有水龙头分流器的净水机,包括分流器本体(1)、净水机本体(9)和控制电路板(13),净水机本体(9)设有水过滤通道,水过滤通道与分流器本体(1)连接、并形成水过滤回路;分流器本体(1)设有自来水进水口(11)、分流管(3)、自来水排水口(12)、自来水出水口(31)、电控式水路开关(A)、控制面板(14)和用于探测分流器本体(1)内水流的水流传感器(5),净水机本体(9)设有电控式水路开关(B)。两个电控式水路开关(A、B)一起被控制电路板(13)通过控制面板(14)对其进行控制,可实现分流器出自来水或出纯水。

Description

配有水龙头分流器的净水机 技术领域
本发明涉及一种配有水龙头分流器的净水机。
背景技术
现有的桌面式净水机越来越多,一般这种产品与自来水通过水龙头直接连接。水龙头与净水机连接,通过分流器选择开关确定是直接出自来水还是出纯水,一般这种开关为手动机械式开关。
由于是手动机械式的开关,为了实现自动控制或者远程控制时,难以对净水机进行控制,特别是当净水机发生异常时,难以实现自动泄压或启动,可能造成管道承压过大或其他不可预见的异常。
发明内容
本发明的目的在于克服上述现有技术存在的不足,而提供一种结构合理,通过电控制装置及电控式水路开关相结合控制的配有水龙头分流器的净水机,以确保当电控制装置检测到净水机发生异常时,水龙头的自来水不再进入净水机。
本发明的目的是这样实现的:
一种配有水龙头分流器的净水机,包括分流器本体、净水机本体和控制电路板,净水机本体设有水过滤通道,水过滤通道与分流器本体连接、并形成水过滤回路;其特征是,所述分流器本体设有自来水进水口、分流管、自来水排水口、自来水出水口、电控式水路开关A、控制面板和用于探测分流器本体内水流的水流传感器,所述净水机本体设有电控式水路开关B;所述自来水进水口、自来水出水口分别与分流管连通,所述分流管还通过电控式水路开关A与自来水排水口连接,电控式水路开关B连接在水过滤回路上;所述水流传感器、电控式水路开关A和电控式水路开关B分别与控制电路板电性连接;所述控制面板至少设有纯水开关和自来水开关,纯水开关和自来水开关分别与控制电路板电性连接。
本发明的目的还可以采用以下技术措施解决:
作为更具体的一种方案,所述水过滤通道包括所述进水孔、纯水出水孔、水泵和滤芯,进水孔一端与分流器本体的自来水排水口连通,进水孔另一端通过水泵和滤芯与纯水出水孔的一端连通;所述分流器本体设有纯水出水管,纯水出水管与纯水出水孔的另一端连通。
所述控制电路板分为两部分,其中,控制电路板一部分设置在分流器本体上,控制电路板另一部分设置在净水机本体上;所述电控式水路开关A和电控式水路开关B分别与 控制电路板一部分和控制电路板另一部分电性连接;或者,所述电控式水路开关A和电控式水路开关B与控制电路板的两部分电性连接;所述电控式水路开关A和电控式水路开关B相互联动、并且两开关处于一开一关的状态。
所述电控式水路开关A为常开式电磁阀,所述电控式水路开关B为常闭式电磁阀。
所述常开式电磁阀、控制电路板一部分依次设置在分流管上方,常开式电磁阀和控制电路板之间还设有用于隔磁隔电的隔离板。隔离板可以有效阻隔电磁辐射以及防止漏电及电路短路的事故发生,大大提高水龙头分流器使用的安全性和可靠性。
所述纯水开关或自来水开关为触摸式开关,其表面设有防水层。
所述纯水开关或自来水开关为按键式开关。
所述控制电路板设有功能切换声音提醒电路,以提醒用户出纯水或自来水的功能已经切换成功。
所述纯水开关采用连续两次或以上触摸操作。
所述控制面板设置在分流器本体上部,控制面板所在平面与水平面的夹角小于或等于90度,从而使得控制面板与用户之间形成锐角关系,方便用户操作及观看控制面板。
本发明的有益效果如下:
(1)本发的分流器和净水机上分别设置一个电控式水路开关A和B,且两个电控式水路开关一起被控制电路板对其进行控制,即可实现分流器出自来水或出纯水;
(2)当净水机发生异常时,控制电路板自动控制电控式水路开关A打开,电控式水路开关B关闭,将自来水排出到净水机的外部,避免继续进入净水机,引起净水机压力过大或其他异常。
附图说明
图1为本发明一实施例结构示意图。
图2为图1俯视结构示意图。
图3为本发明水路及电路原理图。
图4为图3中电控式水路开关B可安装位置的原理图。
具体实施方式
下面结合附图及实施例对本发明作进一步描述:
参见图1至图4所示,一种配有水龙头分流器的净水机,包括分流器本体1和净水机本体9,净水机本体9设有水过滤通道,水过滤通道与分流器本体1连接、并形成水过滤回路;所述分流器本体1设有自来水进水口11(自来水进水口11外端与水龙头6连接)、分流管 3、自来水排水口12、自来水出水口31、电控式水路开关A、控制电路板13、控制面板14和用于探测分流器本体1内水流的水流传感器5,所述净水机本体9设有电控式水路开关B;所述自来水进水口11、自来水出水口31分别与分流管3连通,所述分流管3还通过电控式水路开关A与自来水排水口12连接,电控式水路开关B连接在水过滤回路上(结合图4所示,电控式水路开关B可以设置在水过滤回路中的A、B、C、D、E、F任一位置上);所述水流传感器5、电控式水路开关A和电控式水路开关B分别与控制电路板13电性连接;所述控制面板14至少设有纯水开关16和自来水开关17,纯水开关16和自来水开关17分别与控制电路板13电性连接。
所述水过滤通道包括所述进水孔10、纯水出水孔20、水泵91和滤芯92,进水孔10一端与分流器本体1的自来水排水口12连通,进水孔10另一端通过水泵91和滤芯92与纯水出水孔20的一端连通;所述分流器本体1设有纯水出水管18,纯水出水管18与纯水出水孔20的另一端连通。
所述电控式水路开关A和电控式水路开关B相互联动、并且两开关处于一开一关的状态。
所述电控式水路开关A为常开式电磁阀2,所述电控式水路开关B为常闭式电磁阀8。
所述常开式电磁阀2、控制电路板13依次设置在分流管3上方,常开式电磁阀2和控制电路板13之间还设有用于隔磁隔电的隔离板7。
所述纯水开关16或自来水开关17为触摸式开关,其表面设有防水层15。
所述纯水开关16或自来水开关17为按键式开关。
所述控制电路板13设有功能切换声音提醒电路。
所述纯水开关16采用连续两次或以上触摸操作。
所述控制面板14设置在分流器本体1上部,控制面板14所在平面与水平面的夹角小于或等于90度。
上述分流器本体1和净水机本体9之间通过排管4连接。
其工作原理是:当通过自来水开关17选择出自来水时,电控式水路开关A打开(通水)状态,电控式水路开关B处于关闭(关水)状态。当通过纯水开关16选择出纯水功能时,电控式水路开关A关闭(关水)状态,电控式水路开关B处于打开(通水)状态。
另外,分流器初始状态处于出自来水功能,电控式水路开关A处于通水状态,用户取自来水时,该阀不会动作,一旦电控式水路开关A通电,则自来水不会从出水口12流 出。当用户需要取纯水时,按纯水开关,可以快速实现从出自来水模式转换至出纯水模式,电控式水路开关A和电控式水路开关B同时动作,即电控式水路开关A通电关闭,电控式水路开关B通电打开。
参见图1至图4所示,一种配有水龙头分流器的净水机,包括分流器本体1、净水机本体9和控制电路板,净水机本体9设有水过滤通道,水过滤通道与分流器本体1连接、并形成水过滤回路;所述分流器本体1设有自来水进水口11(自来水进水口11外端与水龙头6连接)、分流管3、自来水排水口12、自来水出水口31、电控式水路开关A、控制面板14和用于探测分流器本体1内水流的水流传感器5,所述净水机本体9设有电控式水路开关B;所述自来水进水口11、自来水出水口31分别与分流管3连通,所述分流管3还通过电控式水路开关A与自来水排水口12连接,电控式水路开关B连接在水过滤回路上;所述水流传感器5、电控式水路开关A和电控式水路开关B分别与控制电路板电性连接;所述控制面板14至少设有纯水开关16和自来水开关17,纯水开关16和自来水开关17分别与控制电路板电性连接。
所述水过滤通道包括所述进水孔10、纯水出水孔20、水泵91和滤芯92,进水孔10一端与分流器本体1的自来水排水口12连通,进水孔10另一端通过水泵91和滤芯92与纯水出水孔20的一端连通;所述分流器本体1设有纯水出水管18,纯水出水管18与纯水出水孔20的另一端连通。
所述控制电路板分为两部分,其中,控制电路板一部分13设置在分流器本体1上,控制电路板另一部分93设置在净水机本体9上;所述电控式水路开关A和电控式水路开关B分别与控制电路板一部分13和控制电路板另一部分93电性连接;或者,所述电控式水路开关A和电控式水路开关B与控制电路板的两部分电性连接;所述电控式水路开关A和电控式水路开关B相互联动、并且两开关处于一开一关的状态。
所述电控式水路开关A为常开式电磁阀2,所述电控式水路开关B为常闭式电磁阀8。
所述常开式电磁阀2、控制电路板一部分13依次设置在分流管3上方,常开式电磁阀2和控制电路板13之间还设有用于隔磁隔电的隔离板7。
所述纯水开关16或自来水开关17为触摸式开关,其表面设有防水层15。
所述纯水开关16或自来水开关17为按键式开关。
所述控制电路板13设有功能切换声音提醒电路。
所述纯水开关16采用连续两次或以上触摸操作。
所述控制面板14设置在分流器本体1上部,控制面板14所在平面与水平面的夹角小于或等于90度。

Claims (10)

  1. 一种配有水龙头分流器的净水机,包括分流器本体(1)、净水机本体(9)和控制电路板,净水机本体(9)设有水过滤通道,水过滤通道与分流器本体(1)连接、并形成水过滤回路;
    其特征是,所述分流器本体(1)设有自来水进水口(11)、分流管(3)、自来水排水口(12)、自来水出水口(31)、电控式水路开关A、控制面板(14)和用于探测分流器本体(1)内水流的水流传感器(5),所述净水机本体(9)设有电控式水路开关B;
    所述自来水进水口(11)、自来水出水口(31)分别与分流管(3)连通,所述分流管(3)还通过电控式水路开关A与自来水排水口(12)连接,电控式水路开关B连接在水过滤回路上;
    所述水流传感器(5)、电控式水路开关A和电控式水路开关B分别与控制电路板电性连接;
    所述控制面板(14)至少设有纯水开关(16)和自来水开关(17),纯水开关(16)和自来水开关(17)分别与控制电路板电性连接。
  2. 根据权利要求1所述配有水龙头分流器的净水机,其特征是,所述水过滤通道包括所述进水孔(10)、纯水出水孔(20)、水泵(91)和滤芯(92),进水孔(10)一端与分流器本体(1)的自来水排水口(12)连通,进水孔(10)另一端通过水泵(91)和滤芯(92)与纯水出水孔(20)的一端连通;所述分流器本体(1)设有纯水出水管(18),纯水出水管(18)与纯水出水孔(20)的另一端连通。
  3. 根据权利要求1所述配有水龙头分流器的净水机,其特征是,所述控制电路板分为两部分,其中,控制电路板一部分(13)设置在分流器本体(1)上,控制电路板另一部分(93)设置在净水机本体(9)上;
    所述电控式水路开关A和电控式水路开关B分别与控制电路板一部分(13)和控制电路板另一部分(93)电性连接;或者,所述电控式水路开关A和电控式水路开关B与控制电路板的两部分电性连接;
    所述电控式水路开关A和电控式水路开关B相互联动、并且两开关处于一开一关的状态。
  4. 根据权利要求3所述配有水龙头分流器的净水机,其特征是,所述电控式水路开关A为常开式电磁阀(2),所述电控式水路开关B为常闭式电磁阀(8)。
  5. 根据权利要求4所述配有水龙头分流器的净水机,其特征是,所述常开式电磁阀(2)、控制电路板一部分(13)依次设置在分流管(3)上方,常开式电磁阀(2)和控制电路板(13)之间还设有用于隔磁隔电的隔离板(7)。
  6. 根据权利要求1所述配有水龙头分流器的净水机,其特征是,所述纯水开关(16)或自来水开关(17)为触摸式开关,其表面设有防水层(15)。
  7. 根据权利要求1所述配有水龙头分流器的净水机,其特征是,所述纯水开关(16)或自来水开关(17)为按键式开关。
  8. 根据权利要求1所述配有水龙头分流器的净水机,其特征是,所述控制电路板(13)设有功能切换声音提醒电路。
  9. 根据权利要求6所述配有水龙头分流器的净水机,其特征是,所述纯水开关(16)采用连续两次或以上触摸操作。
  10. 根据权利要求1所述配有水龙头分流器的净水机,其特征是,所述控制面板(14)设置在分流器本体(1)上部,控制面板(14)所在平面与水平面的夹角小于或等于90度。
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