WO2018121316A1 - 微波无线马桶控制器 - Google Patents

微波无线马桶控制器 Download PDF

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Publication number
WO2018121316A1
WO2018121316A1 PCT/CN2017/116805 CN2017116805W WO2018121316A1 WO 2018121316 A1 WO2018121316 A1 WO 2018121316A1 CN 2017116805 W CN2017116805 W CN 2017116805W WO 2018121316 A1 WO2018121316 A1 WO 2018121316A1
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WO
WIPO (PCT)
Prior art keywords
microwave
motor
toilet
wireless
drain valve
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PCT/CN2017/116805
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English (en)
French (fr)
Inventor
吴端龙
洪加明
吴志敏
张振国
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厦门市欧立通电子科技开发有限公司
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Publication of WO2018121316A1 publication Critical patent/WO2018121316A1/zh

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    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03DWATER-CLOSETS OR URINALS WITH FLUSHING DEVICES; FLUSHING VALVES THEREFOR
    • E03D11/00Other component parts of water-closets, e.g. noise-reducing means in the flushing system, flushing pipes mounted in the bowl, seals for the bowl outlet, devices preventing overflow of the bowl contents; devices forming a water seal in the bowl after flushing, devices eliminating obstructions in the bowl outlet or preventing backflow of water and excrements from the waterpipe
    • E03D11/02Water-closet bowls ; Bowls with a double odour seal optionally with provisions for a good siphonic action; siphons as part of the bowl
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03DWATER-CLOSETS OR URINALS WITH FLUSHING DEVICES; FLUSHING VALVES THEREFOR
    • E03D5/00Special constructions of flushing devices, e.g. closed flushing system
    • E03D5/10Special constructions of flushing devices, e.g. closed flushing system operated electrically, e.g. by a photo-cell; also combined with devices for opening or closing shutters in the bowl outlet and/or with devices for raising/or lowering seat and cover and/or for swiveling the bowl

Definitions

  • the utility model relates to the technical field of sanitary equipment, in particular to a microwave wireless toilet controller.
  • the control box is easy to sense the signal after the toilet lid is opened and the height of the toilet lid is too high. It must be closed after the toilet lid is closed. This control can be easily detected.
  • the use of the device is extremely inconvenient.
  • the smart toilet drainage on the market is mostly infrared sensing. The principle is that the infrared probe emits infrared rays, and through the reception of reflection, it is judged whether the object realizes the function of water supply or water stop within its range. This infrared induction is easily disturbed by the environment, is prone to malfunction, and is prone to water accumulation or damage when exposed to the air for a long time. There are some occasions where it is necessary to control the drain valve outside the tank. Wireless control is required. There is no wireless control method that can be remotely coded, controlled, and safe.
  • the technical problem solved by the present invention is to provide a microwave wireless toilet controller to solve the problems raised in the above background art.
  • a microwave wireless toilet controller comprising: an upper cover, a lower cover and an external wireless controller, wherein the upper cover is provided with a control board, and the control board is connected with microwave
  • the sensor and the wireless transceiver board are provided with a wire plug on the upper cover
  • the 2P bus bar is connected to the control board through the wire plug
  • the 2P bus bar is connected to the battery box assembly through the 2P bus line
  • the battery cover assembly is provided at one end of the lower cover
  • a DC geared motor is arranged in the lower cover, and a rotating wheel is mounted on the output shaft of the DC geared motor, outside the wheel
  • the side hanging shaft is connected with a chain
  • the side of the lower cover is provided with an adjustable hanging piece
  • the lower cover and the upper cover are fixed by a screw connection
  • a sealing ring is arranged at a joint between the lower cover and the upper cover, and the lifting type drain valve passes
  • the chain is connected to the rotor of the microwave wireless toilet controller, while the
  • the external wireless controller can use infrared mode, touch mode and other working modes. It has independent power supply and can be placed on the wall or the toilet cover separately. It can also be used as part of the smart toilet cover to judge the working mode of the person and launch wireless. Signal to the main control panel to control the tank drain.
  • the outer side of the DC geared motor is provided with a motor sealing shell, and a sealing ring is arranged between the motor sealing shell and the rotating shaft of the DC geared motor.
  • the DC geared motor is installed in the motor sealing shell through the tooth screw, and the motor sealing shell is sealed at both ends of the motor through the motor.
  • the DC geared motor is sealed in the motor seal case, and the motor seal case is installed in the lower cover by a self-tapping screw.
  • a V-shaped diaphragm is disposed between the lower cover and the rotating shaft of the rotating wheel.
  • the control board includes a microprocessor connected to the microwave signal transmitting circuit, the microwave signal processing circuit, the magnetic sensor, and the motor.
  • the microwave signal transmitting circuit and the microwave signal processing circuit are connected to the microwave inductor, and the motor is driven to be connected to the DC geared motor, and the magnetic sensor senses the magnet in the wheel.
  • the motor of the wire-controlled large flushing drain valve is driven to be connected to the stepping motor, and the stepping motor is connected to the wire-controlled drain valve through a push rod, a lifting rod and a wire-controlled pull wire.
  • the utility model has the beneficial effects that the utility model has the function of automatic drainage after the movement of the microwave induction hand, and can adjust the sensing distance and the water discharge time according to the user's use requirements, and is not easy to cause false induction and error.
  • the action combined with external wireless control and manual drainage, not only improves the traditional toilet drainage, but also makes the microwave wireless toilet controller more hygienic and environmentally friendly, making it easier for the elderly and children to use.
  • Figure 1 is a schematic view of the exploded view of the present invention
  • Figure 2 is a front view of the utility model.
  • Figure 3 is a schematic view of the left side of the present invention
  • Figure 4 is a schematic view of the right side of the utility model
  • Figure 5 is a rear view of the utility model
  • Figure 6 is a schematic view of the interior of the utility model during installation.
  • Figure 7 is a schematic top view of the utility model during installation.
  • Figure 8 is a flow chart of the overall control of the present invention.
  • Figure 9 is a flow chart showing the control of the control box of the present invention.
  • Figure 10 is a flow chart of the operation of the present invention.
  • Figure 11 is a schematic view showing the structure of the wire-controlled drain valve of the present invention.
  • Figure 12 is a flow chart of the wire-controlled drain valve of the present invention.
  • the microwave wireless toilet controller includes: an upper cover 102, a lower cover 114, and an external wireless controller 120.
  • the upper cover 102 is provided with a control board 104, and the control board 104 is connected with a microwave induction.
  • the wireless transceiver board 119, the upper cover 102 is provided with a wire plug 101, the 2P bus bar 201 is connected to the control board 104 through the wire plug 101, and the 2P bus bar 201 is connected to the battery box assembly 115 through the 2P bus 202.
  • a battery case assembly 115 is disposed at one end of the lower cover 114, and a DC gear motor 106 is disposed in the lower cover 114.
  • the output shaft of the DC gear motor 106 is mounted with a rotating wheel 111.
  • the hanging shaft on the outer side of the rotating wheel 111 is connected with the chain 110 and the lower cover.
  • One side of the 114 is provided with an adjustable hanging piece 112, and the lower cover 114 and the upper cover 102 are connected and fixed by a screw 116.
  • a sealing ring 105 is disposed at a joint between the lower cover 114 and the upper cover 102, and the pull-type drain valve 402 passes through the chain.
  • 110 is coupled to the runner 111 while the pull-type drain valve 402 is also coupled to the manual button 403 via the chain 110.
  • the wireless controller 120 is installed externally.
  • a motor sealing shell 108 is disposed outside the DC geared motor 106, and a sealing ring 117 is disposed between the motor sealing shell 108 and the rotating shaft of the DC gear motor 106, and the DC gear motor 106 is installed by the machine screw 109.
  • the DC gear motor 106 is sealed in the motor sealing case 108 through the motor sealing cover 118 at both ends of the motor sealing case 108, and the motor sealing case 108 is installed in the lower cover 114 by the self-tapping screw 107.
  • a V-shaped diaphragm 113 is disposed between the lower cover 114 and the output shaft of the runner 111.
  • the control board 104 includes a microprocessor 303 to which a microwave signal transmitting circuit 301, a microwave signal processing circuit 302, a magnetic sensor 304, and a motor driver 305 are connected.
  • the microwave signal transmitting circuit 301 and the microwave signal processing circuit 302 are connected to the microwave sensor 103, and the motor driver 305 is connected to the DC gear motor 106.
  • the magnetic sensor 304 senses the magnet in the wheel 111.
  • the motor drive 305 of the wire-controlled large flush drain valve is connected to the stepping motor 501, and the stepping motor 501 is connected to the wire-controlled drain valve 505 via the push rod 502, the pull rod 503, and the wire control wire 504.
  • the microprocessor 303 of the control board 104 controls the microwave driving circuit 301 to supply pulse power to the microwave sensor 103.
  • the microwave sensor 103 can detect moving objects in the sensing area through the emission and reflection of the microwave, and transmit the low frequency signal to the microwave signal processing.
  • the microwave signal processing circuit 302 has a potentiometer for adjusting the detection distance of the microwave sensor, and the microprocessor 303 can process the signal transmitted from the microwave signal processing circuit 302 to determine whether an object moves on the microwave sensor 103.
  • the microprocessor 303 in the control panel 104 controls the motor drive 305 to drive the DC gear motor 106 to rotate forward, the DC gear motor 106 drives the wheel 111, and the wheel opens the pull type through the chain 110.
  • the drain valve 402 begins to drain.
  • the microprocessor 303 in the control board 104 adjusts the time delay according to the time potentiometer. After the delay, the microprocessor 303 can control the motor drive 305 to drive the DC gear motor 106 to reverse. The DC gear motor drives the wheel 111. The runner releases the pull-out drain valve 402 through the chain 110 to close the running water.
  • a magnet is mounted on one end of the reel 111, and a magnetic sensor 304 is mounted on the control board 104.
  • the motor 106 drives the reel 111 to perform a drain valve operation
  • the magnetic sensor 304 on the control board 104 detects the reel
  • the signal is transmitted to the microprocessor 303, the microprocessor 303 controls the DC gear motor 106 to brake, and stops rotating to complete the draining operation, and this function is also used when the microprocessor 303 controls the wheel 111 when the power is first applied. It is in the position to close the pull-type drain valve 402.
  • the control board 104 detects the battery voltage. When the voltage is lower than the set value, it stops working and alarms.
  • the manual button 403 is connected to the pull-type drain valve through another chain. When the manual button is pressed by hand, the drain valve is pulled to drain, and the drain valve naturally closes when the hand is released.
  • the sensor 601 in the seat is triggered.
  • the sensor sends a signal to the external wireless controller 120, which transmits a wireless signal to the wireless transceiver board 119, 119.
  • the control panel 104 is controlled to drain the drain valve 402.
  • the working principle of the wire-controlled drain valve is: after the microprocessor 303 detects the microwave signal, the control motor driver 305 drives the stepping motor 501, and the stepping motor advances according to a predetermined step value, and the push rod 502 is rotated, and the push rod 502 is simultaneously Pushing the push-pull rod 503, the push-pull rod pulls the wire-controlled pull wire 504 forward, and the wire-controlled pull wire can pull up the wire-controlled drain valve, so that the water tank can be drained, and after the microprocessor 303 detects the predetermined time, the motor drive 305 is driven to the reverse drive step.
  • the stepping motor retreats at a predetermined step value, driving the push rod 502 to rotate in the reverse direction, and returning to the original position, and the push-pull rod 503 will return to the original position under the tension of the wire 504, and complete a flushing operation.

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  • Engineering & Computer Science (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Public Health (AREA)
  • Water Supply & Treatment (AREA)
  • Aviation & Aerospace Engineering (AREA)
  • Sanitary Device For Flush Toilet (AREA)
  • Radar Systems Or Details Thereof (AREA)

Abstract

一种微波无线马桶控制器,包括:上盖(102)、下盖(114)、外部无线控制器(120),上盖(102)内设有控制板(104),控制板(104)上连接有微波感应器(103)、无线收发板(119),上盖(102)上设有过线塞(101),下盖(114)内设有直流减速电机(106),直流减速电机(106)输出轴上安装有转轮(111),转轮(111)外侧的挂轴连接有链条(110),无线控制器(120)无线控制控制板(104),提拉式排水阀(402)通过链条(110)连接到微波马桶控制器的转轮(111)上,同时提拉式排水阀(402)还通过链条(110)连接有手动按钮(403)。微波无线马桶控制器具有微波感应手的移动后自动排水的功能,并可以根据用户的使用要求调节感应距离及出水时间,同时具有无线控制和手动排水功能。

Description

微波无线马桶控制器 技术领域
本实用新型涉及卫浴设备技术领域,具体为一种微波无线马桶控制器。
背景技术
市场上的马桶的排水方式多种多样,但大多为提拉式排水,此种排水方式简单、成本低廉,很受消费者的欢迎。目前市场上的提拉式排水多为手动冲水的方式,即排水时需要人工按压手柄等介质来完成冲水,由于手柄长期暴露在外,容易滋生细菌、极不卫生,且老人和小孩使用也极为不便。市场上也存在一些针对上述方式不足提出的一种不用触摸马桶即可冲水的控制盒,但由于存在技术上缺陷,使得感应距离太小,人手几乎需要贴到控制器上方的马桶盖才可以感应冲水,或者由于感应距离太近马桶盖打开以后控制盒极易感应到信号且马桶盖打开以后高度太高,必须使用后需要将马桶盖合上以后,方能轻松感应到,这种控制器使用极为不便。另一方面,市场上的智能马桶排水多为红外感应的方式,其原理是红外探头发射红外线,通过对反射的接收、判断物体是否在其范围内实现给水或停水的功能。这种红外感应容易受环境的干扰,容易误动作,且长期暴露在空气中极容易积水或损坏。有一些场合需要在水箱外部控制排水阀,要用无线控制,现在还没有一种能随时对码、控制距离远、安全可靠的无线控制方式。
实用新型专利内容
本实用新型所解决的技术问题在于提供一种微波无线马桶控制器,以解决上述背景技术中提出的问题。
本实用新型所解决的技术问题采用以下技术方案来实现:微波无线马桶控制器,包括:上盖、下盖、外部无线控制器,所述上盖内设有控制板,控制板上连接有微波感应器、无线收发板,上盖上设有过线塞,2P母线穿过过线塞连接于控制板,2P母线通过2P公线连接到电池盒组件,所述下盖一端设有电池盒组件,下盖内设有直流减速电机,直流减速电机输出轴上安装有转轮,转轮外 侧的挂轴连接有链条,下盖一侧设有可调节挂件,下盖与上盖之间通过螺丝连接固定,下盖与上盖之间连接处设有密封圈,提拉式排水阀通过链条连接到微波无线马桶控制器的转轮上,同时,提拉式排水阀还通过链条连接到手动按钮。外部无线控制器可以利用红外方式、触摸方式等工作方式,有独立的电源,可以单独放在墙上或马桶盖上,也可以配合智能马桶盖作为其中的一部分,判断人的工作模式,发射无线信号给主控制板控制水箱排水。
所述直流减速电机外侧设有电机密封壳,电机密封壳与直流减速电机转轴之间套有密封圈,直流减速电机通过机牙螺丝安装在电机密封壳内,电机密封壳两端通过电机密封盖将直流减速电机密封在电机密封壳内,电机密封壳通过自攻螺丝安装在下盖内。
所述下盖与转轮的转轴之间设有V型膜片。
所述控制板包括微处理器,微处理器上连接有微波信号发射电路、微波信号处理电路、磁性传感器、电机驱动。微波信号发射电路、微波信号处理电路连接于微波感应器,电机驱动连接于直流减速电机,磁性传感器感应转轮中的磁铁。
所述线控大冲排水阀中电机驱动连接于步进电机,步进电机通过推杆、提拉杆、线控拉线连接于线控排水阀。
与现有技术相比,本实用新型的有益效果是:本实用新型具有微波感应手的移动后自动排水的功能,并可以根据用户的使用要求调节感应距离及出水时间,不易出现误感应和误动作,同时具有外部无线控制和手动排水功能,不仅可以使传统的马桶排水方式得到改进,而且使用该微波无线马桶控制器更加卫生环保、老人及小孩使用更加方便。
附图说明
图1为本实用新型的爆炸图示意图
图2为本实用新型的主视图示意图。
图3为本实用新型的左视图示意图
图4为本实用新型的右视图示意图
图5为本实用新型的后视图示意图
图6为本实用新型安装时内部示意图。
图7为本实用新型安装时上部示意图。
图8为本实用新型的整体控制流程图。
图9为本实用新型的控制盒控制流程图。
图10为本实用新型的工作流程图。
图11为本实用新型的线控排水阀结构示意图。
图12为本实用新型的线控排水阀流程图。
图中:101、过线塞,102、上盖,103、微波感应器,104、控制板,105、密封圈,106、直流减速电机,107、自攻螺丝,108、电机密封壳,109、机牙螺丝,110、链条,111、转轮,112、可调节挂件,113、V型膜片,114、下盖,115、电池盒组件,116、螺丝,117、密封圈,118、电机密封盖,119、无线收发板,120、外部无线控制器,201、2P母线,202、2P公线,301、微波信号发射电路,302、微波信号处理电路,303、微处理器,304、磁性传感器,401、进水器401,402、提拉式排水阀,403、手动按钮,501、步进电机,502、推杆,503、提拉杆,504、线控拉线,505、线控排水阀,601、感应器,603、座圈。
具体实施方式
为了使本实用新型的实现技术手段、创作特征、达成目的与功效易于明白了解,下面结合具体图示,进一步阐述本实用新型。
如图1~12所示,微波无线马桶控制器,包括:上盖102、下盖114、外部无线控制器120,所述上盖102内设有控制板104,控制板104上连接有微波感应器103、无线收发板119,上盖102上设有过线塞101,2P母线201穿过过线塞101连接于控制板104,2P母线201通过2P公线202连接到电池盒组件115,所述下盖114一端设有电池盒组件115,下盖114内设有直流减速电机106,直流减速电机106输出轴上安装有转轮111,转轮111外侧的挂轴上连接链条110,下盖114一侧设有可调节挂件112,下盖114与上盖102之间通过螺丝116连接固定,下盖114与上盖102之间连接处设有密封圈105,提拉式排水阀402通过链条110连接到转轮111上,同时提拉式排水阀402还通过链条110连接有手动按钮403。无线控制器120安装在外部。
所述直流减速电机106外侧设有电机密封壳108,电机密封壳108和直流减速电机106转轴之间套有密封圈117,直流减速电机106通过机牙螺丝109安装 在电机密封壳108内,电机密封壳108两端通过电机密封盖118将直流减速电机106密封在电机密封壳108内,电机密封壳108通过自攻螺丝107安装在下盖114内。
所述下盖114与转轮111的输出轴之间设有V型膜片113。
所述控制板104包括微处理器303,微处理器303上连接有微波信号发射电路301、微波信号处理电路302、磁性传感器304、电机驱动305。微波信号发射电路301、微波信号处理电路302连接于微波感应器103,电机驱动305连接于直流减速电机106,磁性传感器304感应转轮111中的磁铁。
所述线控大冲排水阀中电机驱动305连接于步进电机501,步进电机501通过推杆502、提拉杆503、线控拉线504连接于线控排水阀505。
本实用新型的工作原理为:
控制板104中微处理器303控制微波驱动电路301提供脉冲电源给微波感应器103,微波感应器103可以通过微波的发射和反射检测感应区内的移动物体,并且把低频信号传递给微波信号处理电路302,微波信号处理电路302中有电位器可以调节微波感应器的检测距离,微处理器303可以处理微波信号处理电路302传过来的信号以判断是否有物体在微波感应器103上移动。
如果微波感应器103上有移动的物体,则控制板104中微处理器303控制电机驱动305驱动直流减速电机106正转,直流减速电机106带动转轮111,转轮通过链条110打开提拉式排水阀402开始排水。
开水后控制板104中的微处理器303根据时间电位器设置的时间延时,延时到后微处理器303就可以控制电机驱动305驱动直流减速电机106反转,直流减速电机带动转轮111,转轮通过链条110放开提拉式排水阀402关闭流水。
在转轮111的一端上安装有磁铁,同时在控制板104上安装有磁性传感器304,当电机106带动转轮111执行关排水阀动作时,当控制板104上的磁性传感器304检测到转轮上的磁铁时,把信号传给微处理器303,微处理器303控制直流减速电机106刹车,并停止转动完成排水动作,同时这个功能也用于刚加电时微处理器303控制转轮111处于关闭提拉式排水阀402的位置。
水箱通过进水器401进水需要一定的时间,这段时间微波无线马桶控制器会停止工作,当水箱进满水后,又开始工作重复1的动作。
控制板104会检测电池电压,当电压低于设定值时,会停止工作,并报警。
手动按钮403通过另一条链条连接提拉式排水阀,当用手按手动按钮时会拉起排水阀进行排水,当手松开时排水阀会自然关闭
当有人坐在座圈603上时,触发座圈内的感应器601,当人离开后座圈603后,感应器会发信号给外部无线控制器120,其发射无线信号给无线收发板119,119接收到无线信号后给控制板104,控制排水阀402排水。
线控排水阀的工作原理为:微处理器303检测到微波信号后,控制电机驱动305驱动步进电机501,步进电机按预定的步进值前进,带动推杆502转动,推杆502同时推动推拉杆503,推拉杆拉动线控拉线504前进,线控拉线可以拉起线控排水阀,这样水箱可以排水,微处理器303检测到预定的时间后,会控制电机驱动305反向驱动步进电机501,步进电机按预定的步进值后退,带动推杆502反向转动,回到原位,同时推拉杆503会在线控拉线504的拉力下回到原始的位置,完成一次冲洗操作。
以上显示和描述了本实用新型的基本原理和主要特征和本实用新型的优点。本行业的技术人员应该了解,本实用新型不受上述实施例的限制,上述实施例和说明书中描述的只是说明本实用新型的原理,在不脱离本实用新型精神和范围的前提下,本实用新型还会有各种变化和改进,这些变化和改进都落入要求保护的本实用新型范围内。本实用新型的要求保护范围由所附的权利要求书及其等效物界定。

Claims (9)

  1. 一种微波无线马桶控制器,包括:上盖、下盖、外部无线控制器,其特征在于:所述上盖内设有控制板,控制板上连接有微波感应器、无线收发板,上盖上设有过线塞,2P母线穿过过线塞连接于控制板,2P母线通过2P公线连接到电池盒组件,所述下盖一端设有电池盒组件,下盖内设有直流减速电机,直流减速电机输出轴上安装有转轮,转轮外侧的挂轴(挂轴这个部件在上面没有说明,超过了前述内容的范围?)上连接有链条,下盖一侧设有可调节挂件,下盖与上盖之间通过螺丝连接固定,下盖与上盖之间连接处设有密封圈,提拉式排水阀通过链条连接到微波无线马桶控制器的转轮上,同时提拉式排水阀还通过链条连接有手动按钮,外部无线控制器安装于水箱外部。
  2. 根据权利要求1所述的微波无线马桶控制器,其特征在于:所述直流减速电机外侧设有电机密封壳,直流减速电机通过机牙螺丝安装在电机密封壳内,电机密封壳两端通过电机密封盖将直流减速电机密封在电机密封壳内,电机密封壳通过自攻螺丝安装在下盖内。
  3. 根据权利要求1所述的微波无线马桶控制器,其特征在于:所述下盖与转轮输出轴之间设有V型膜片。
  4. 根据权利要求1所述的微波无线马桶控制器,其特征在于:所述控制板包括微处理器,微处理器上连接有微波信号发射电路、微波信号处理电路、磁性传感器、电机驱动。微波信号发射电路、微波信号处理电路连接于微波感应器,电机驱动连接于直流减速电机,磁性传感器感应转轮中的磁铁(此句有点笼统?)
  5. 根据权利要求1所述微波马桶控制器,其特征在于:外部无线控制器设于马桶盖上,外部无线控制器通过红外线感应,…发射无线信号给主控制板控制水箱排水。
    (可以利用红外、触摸等方式工作,有独立的电源,可以单独放在墙上或马桶盖上,也可以配合智能马桶盖作为其中的一部分,判断人的工作模式,发射无线信号给主控制板控制水箱排水。)---这些描述基本不符合要求。
  6. 根据权利要求1所述微波马桶控制器,其特征在于:通过手动控制提拉式排水阀排水。
  7. 根据权利要求1所述微波马桶控制器,其特征在于:通过外部无线控制器控制提拉式排水阀排水。
  8. 根据权利要求1所述微波马桶控制器,其特征在于:通过微波检测来控制提拉式排水阀排水。
  9. 根据权利要求1所述的微波无线马桶控制器,其特征在于:所述控制线控排水阀的电机驱动连接于步进电机,步进电机通过推杆、提拉杆、线控拉线连接于线控排水阀。
PCT/CN2017/116805 2015-12-31 2017-12-18 微波无线马桶控制器 WO2018121316A1 (zh)

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Publication number Priority date Publication date Assignee Title
CN206385620U (zh) * 2015-12-31 2017-08-08 厦门市欧立通电子科技开发有限公司 微波无线马桶控制器
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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20140046326A (ko) * 2012-10-10 2014-04-18 김종수 인체 감지 센서 모듈 및 그에 의한 관리 시스템
CN204112439U (zh) * 2014-09-30 2015-01-21 厦门市欧立通电子科技开发有限公司 微波式手扬马桶控制器
CN204174689U (zh) * 2014-09-30 2015-02-25 厦门市欧立通电子科技开发有限公司 电容式手扬马桶控制器
CN204753756U (zh) * 2015-05-29 2015-11-11 深圳市西柯南电子科技有限公司 智能马桶
CN105604156A (zh) * 2015-12-21 2016-05-25 厦门科牧智能技术有限公司 一种电子坐便器的手势控制系统及方法
WO2016100886A1 (en) * 2014-12-19 2016-06-23 Jabil Circuit, Inc. Apparatus, system and method for connecting to, monitoring and controlling bodily waste receptacles
CN206385620U (zh) * 2015-12-31 2017-08-08 厦门市欧立通电子科技开发有限公司 微波无线马桶控制器

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20140046326A (ko) * 2012-10-10 2014-04-18 김종수 인체 감지 센서 모듈 및 그에 의한 관리 시스템
CN204112439U (zh) * 2014-09-30 2015-01-21 厦门市欧立通电子科技开发有限公司 微波式手扬马桶控制器
CN204174689U (zh) * 2014-09-30 2015-02-25 厦门市欧立通电子科技开发有限公司 电容式手扬马桶控制器
WO2016100886A1 (en) * 2014-12-19 2016-06-23 Jabil Circuit, Inc. Apparatus, system and method for connecting to, monitoring and controlling bodily waste receptacles
CN204753756U (zh) * 2015-05-29 2015-11-11 深圳市西柯南电子科技有限公司 智能马桶
CN105604156A (zh) * 2015-12-21 2016-05-25 厦门科牧智能技术有限公司 一种电子坐便器的手势控制系统及方法
CN206385620U (zh) * 2015-12-31 2017-08-08 厦门市欧立通电子科技开发有限公司 微波无线马桶控制器

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