WO2017190408A1 - 一种单点触摸切换出水水花的花洒 - Google Patents
一种单点触摸切换出水水花的花洒 Download PDFInfo
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- WO2017190408A1 WO2017190408A1 PCT/CN2016/086415 CN2016086415W WO2017190408A1 WO 2017190408 A1 WO2017190408 A1 WO 2017190408A1 CN 2016086415 W CN2016086415 W CN 2016086415W WO 2017190408 A1 WO2017190408 A1 WO 2017190408A1
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- WIPO (PCT)
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- water
- shower
- circuit board
- touch
- switching
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B05—SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05B—SPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
- B05B1/00—Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means
- B05B1/14—Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means with multiple outlet openings; with strainers in or outside the outlet opening
- B05B1/18—Roses; Shower heads
Definitions
- the utility model relates to a shower head, in particular to a shower with a single touch switch to switch out water and water.
- the traditional shower uses a mechanical button such as a ballpoint pen and a G-wheel principle to switch the water.
- the surface of the button must be separated from the peripheral parts and independent of each other.
- the surface of the button must be inferior when the mechanical button is pressed, and the mechanical button must be used when it is used. A certain strength.
- the technical problem to be solved by the present invention is to provide a shower with a single-touch, water-saving switch with a novel structure, a labor-saving operation and a beautiful appearance.
- a single-point touch switching shower head comprising a shower body, wherein the body cavity of the shower body is equipped with an electric switching mechanism for switching a plurality of water outlets,
- the electric switching mechanism is electrically connected to the control circuit board
- the control circuit board is electrically connected to the power supply device for supplying power to the electric switching mechanism, and the control circuit board and the power supply device are both mounted in the body of the shower body
- the control circuit board is provided with a single touch button for controlling the operation of the electric switching mechanism
- the shower surface is provided with a touch area corresponding to the single touch button.
- the electric switching mechanism includes a geared motor mounted on a water dividing frame, the water dividing frame is mounted on the water body of the shower body, and the center shaft is installed at an output end of the geared motor And in the switching cavity of the water distribution frame, a limiting block supporting the central axis and limiting the axial displacement is installed in the switching cavity of the water dividing frame, and each water outlet hole in the switching space of the water dividing frame is installed An encapsulating sealing sheet that can be sealingly fitted with a block on the side of the central shaft.
- a decorative cover is mounted on the water outlet of the head of the shower body, and a cover corresponding to the water distribution frame is embedded in the inner side of the decorative cover, and a water separation is installed between the cover and the water distribution frame.
- the connecting member has an impeller disposed on one of the water outlets on the inner side of the cover.
- the control circuit board and the single touch button are both mounted on the inner side of the decorative cover, and the touch area is disposed outside the decorative cover.
- the single touch button is a conductive foam.
- a water passing head is connected between the handle water outlet of the shower body and the water inlet hole of the water dividing frame, and the water inlet sleeve of the water head is provided with an O-ring which is sealingly matched with the water outlet hole of the handle.
- the outlet joint of the over-water head is provided with an O-ring that is sealingly engaged with the water inlet hole of the water distribution frame.
- the power supply device is a hydraulic charging device
- the hydraulic charging device includes a magnet coil impeller, a coil magnet separating sleeve and a generator coil, and the magnet coil impeller is mounted outside the coil magnet separating sleeve, the generator
- the coil is mounted on the inner side of the coil magnet spacer
- the magnet coil impeller is disposed on the water inlet water passage of the shower body
- the generator coil is electrically connected to the power circuit board
- the power circuit board is electrically connected to the rechargeable battery.
- the power circuit board is electrically connected to the control circuit board.
- the power circuit board and the rechargeable battery are both mounted on the water dividing frame, and a sealing cover covering the power circuit board, the rechargeable battery and the speed reducing motor is installed above the water dividing frame, and the sealing cover and the water dividing A profiled rubber ring is mounted on the mating surface between the frames.
- the power supply device is an external charging device
- the external charging device includes a USB component and a rechargeable battery
- the USB component and the rechargeable battery are electrically connected to the control circuit board, and the USB component is exposed to the shower surface and Covered by the seal assembly.
- the rechargeable battery is mounted on a water separator, and the elastic battery is arranged in series between the rechargeable batteries, and a sealing cover for covering the rechargeable battery and the speed reducing motor is mounted on the water dividing frame, the sealing A profiled rubber ring is mounted on the mating surface between the cover and the water dividing frame.
- the handle inlet of the shower body is provided with a threaded joint.
- the utility model has the following beneficial effects: the single-point touch switch water-spraying shower adopts a single-touch button to control the operation of the electric switching mechanism, and the single-touch button is hidden inside the shower structure to ensure The integrity of the appearance of the shower; the single-touch operation of the single-touch button is very labor-saving, and the shower surface does not have any height difference change, which avoids the disadvantages of mechanical button pressing, easy failure, and reduced shower aesthetics.
- Figure 1 is a schematic view showing the structure of the shower of the present invention.
- Figure 2 is a cross-sectional view of the first embodiment taken along line A-A of Figure 1.
- Figure 3 is an exploded view of the structure of the first embodiment of the present invention.
- Figure 4 is a cross-sectional view of the second embodiment at A-A of Figure 1.
- Figure 5 is an exploded view of the structure of the second embodiment of the present invention.
- a shower with a single touch switch including a shower body 2, is mounted with an electric switch mechanism 14, 17 for switching a plurality of water outlets.
- the electric switching mechanism is electrically connected to the control circuit board 24, and the control circuit board 24 is electrically connected to the power supply device 12 for supplying power to the electric switching mechanism, and the control circuit board 24 and the power supply device are both mounted on the shower body 2
- the inner cavity, the control circuit board 24 is provided with a single touch button 25 for controlling the operation of the electric switching mechanism
- the shower surface is provided with a touch area corresponding to the single touch button, that is, the touch area and the shower The surface is one piece without any seams.
- the electric switching mechanism includes a reduction motor 14 and a center shaft 17, the reduction motor 14 is mounted on the water diversion frame 15, and the water diversion frame 15 is mounted on the shower by the screw 20.
- the inner shaft of the body 2 is mounted on the output end of the reduction motor 14 and located in the switching cavity of the water distribution frame 15, and the end of the central shaft 17 connected to the reduction motor 14 is sleeved with the water distribution frame.
- the mounting hole on the 15 seals the mating O-ring 16 , and the switching cavity of the water dividing frame 15 is mounted with a limiting block 19 supporting the central shaft 17 and limiting the axial displacement, and the water dividing frame 15 is switched in the cavity
- Each of the water outlet holes is provided with an encapsulating sealing sheet 18 which can be sealingly fitted to the block of the side of the central shaft 17.
- the handle water inlet of the shower body 2 is provided with a threaded joint 1
- the head water outlet of the shower body 2 is mounted with a decorative cover 26
- the decorative cover 26 is embedded inside.
- a surface cover 23 is provided, which is matched with the water distribution frame 15.
- a water distribution connector 21 is mounted between the surface cover 23 and the water distribution frame 15, and an impeller located on one of the water outlets is installed inside the surface cover 23 22 is a massage function water
- the control circuit board 24 and the single touch button are both mounted inside the decorative cover 26, and the touch area is disposed outside the decorative cover 26 (ie, the touch area and the surface of the decorative cover 26 are integrated, no Any seams).
- the single touch button uses a capacitive touch sensitive button, such as a conductive foam 25 .
- the power supply device is a hydraulic charging device
- the hydraulic charging device includes a magnet coil impeller 4, a coil magnet separating sleeve 5, and a generator coil 7, the magnet coil
- the impeller 4 is mounted outside the coil magnet divider sleeve 5, the generator coil 7 is mounted inside the coil magnet divider sleeve 5, and the magnet coil impeller 4 is disposed in the inlet water passage of the shower body 2, the generator coil 7
- the power circuit board 13 is electrically connected to the power supply circuit board 13
- the power circuit board 13 is electrically connected to the control circuit board 24 .
- the power circuit board 13 and the rechargeable battery 12 are both mounted on the water distribution frame 15, and the power distribution circuit board 13 and the rechargeable battery 12 are mounted on the water distribution frame 15 through the screws 9.
- the sealing cover 10 covered by the reduction motor 14 is provided with a special-shaped rubber ring 11 on the mating surface between the sealing cover 10 and the water dividing frame 15 to prevent damage to the power circuit board 13, the rechargeable battery 12 and the reduction motor 14 due to water leakage. .
- the head cavity of the shower body 2 is formed with a hydro-generator seat for installing a hydraulic charging device, and the generator coil 7 is fixed on the hydro-generator base by screws 8.
- the coil magnet separating sleeve 5 is sleeved with an O-ring 6 sealingly matched with the inner cavity of the hydro-generator base, and the inner cavity of the hydro-generator base communicates with the inner cavity of the handle body of the shower body 2 through a diagonal water hole.
- the water outlet sleeve of the hydrogenerator base is provided with an O-ring 3 that is sealingly engaged with the water inlet hole of the water dividing frame 15.
- the working principle of the first embodiment of the present invention is as follows: the water enters the handle cavity of the shower body 2 from the threaded joint 1, and then flows into the hydro-generator seat of the head cavity through the inclined water hole at the end of the handle cavity, and the water passes through
- the hydro-generator seat drives the magnet coil impeller 4 to rotate to generate electricity and store it to the rechargeable battery 12 to supply power to the electric switching mechanism, and then flows into the switching cavity of the water-distributing frame 15 through the water outlet of the hydro-generator base;
- the user In a splash mode, the user only needs to touch the touch area on the decorative cover 26 to trigger the single touch button, so that the control circuit board 24 starts to control the action of the electric switching mechanism, and switches to open a water outlet hole in the switching cavity.
- the corresponding water outlet is opened; the other water pattern needs to be switched again, and the user only needs to touch the touch area on the decorative cover 26 to trigger the single touch button, so that the control circuit board 24 starts to control the electric switching mechanism. , switching to open another water outlet hole in the switching cavity to open the corresponding water outlet; no surface on the surface of the touch area when touched Changes, required for switching the different spray modes.
- Embodiment 2 As shown in FIGS. 4-5, the power supply device is an external charging device, and the external charging device includes a USB component 29 and a rechargeable battery 12, and the USB component 29 and the rechargeable battery 12 are electrically connected to the control.
- the circuit board 24 is exposed to the shower surface and is covered by the seal assembly 27.
- the center of the decorative cover 26 is provided with a socket exposing the USB component 29 for plugging and charging.
- the seal assembly 27 covers the socket to make the shower surface aesthetic.
- a water passing head 30 is connected between the handle water outlet of the shower body 2 and the water inlet hole of the water dividing frame 15, and the water inlet joint of the water head 30 is provided with a handle.
- the water outlet hole is sealed with the O-ring 31, and the water outlet joint of the water head 30 is provided with an O-ring 32 sealingly engaged with the water inlet hole of the water dividing frame 15.
- the rechargeable battery 12 is mounted on the water distribution frame 15, and the elastic battery 28 is disposed between the rechargeable batteries 12, and the water distribution frame 15 is mounted above the screw 9
- the sealing cover 10 covered by the rechargeable battery 12 and the reduction motor 14 is provided with a profiled rubber ring 11 on the mating surface between the sealing cover 10 and the water dividing frame 15 to prevent damage to the rechargeable battery 12 and the reduction motor 14 due to water leakage.
- the working principle of the second embodiment of the present invention is as follows: the water enters the handle cavity of the shower body 2 from the threaded joint 1 , and then flows into the switching cavity of the water dividing frame 15 from the inner cavity of the handle through the water head 30;
- the user In the splash mode, the user only needs to touch the touch area on the decorative cover 26 to trigger the single touch button, so that the control circuit board 24 starts to control the action of the electric switching mechanism, and switches to open a water outlet hole in the switching cavity to make corresponding The water outlet is open; the switch needs to be switched to another splash mode, and the user simply touches the touch area on the decorative cover 26 to trigger the single touch button, so that the control circuit board 24 starts to control the action of the electric switching mechanism, and switches Open another water outlet hole in the switching chamber to open the corresponding water outlet; when there is no position change on the surface of the touch area when touching, the different water pattern can be switched.
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- Domestic Plumbing Installations (AREA)
- Bathtubs, Showers, And Their Attachments (AREA)
Abstract
一种单点触摸切换出水水花的花洒,包括花洒本体(2),花洒本体内腔安装有用于切换多个出水水路的电动切换机构(14、17),电动切换机构电性连接至控制电路板(24),控制电路板电性连接有给电动切换机构供电的电源装置(12),控制电路板和电源装置均安装在花洒本体内腔,控制电路板上设置有用于控制电动切换机构工作的单点触摸按键(25),花洒表面设置有一个与单点触摸按键相对应的触摸区域。单点触摸按键隐藏于花洒结构内部,保证花洒外观的完整性。
Description
本实用新型涉及一种花洒,特别是一种单点触摸切换出水水花的花洒。
传统的花洒采用圆珠笔、G轮原理等机械按钮实现水花切换,按钮表面部分必须和周边零件是分开的且各自独立,机械按钮按压操作时表面必须出现位置差,且机械按钮使用时必须需要有一定力度。
实用新型内容
鉴于现有技术的不足,本实用新型所要解决的技术问题是提供一种结构新颖、操作省力且外形美观的单点触摸切换出水水花的花洒。
为了解决上述问题,本实用新型的技术方案是:一种单点触摸切换出水水花的花洒,包括花洒本体,所述花洒本体内腔安装有用于切换多个出水水路的电动切换机构,所述电动切换机构电性连接至控制电路板,所述控制电路板电性连接有给电动切换机构供电的电源装置,所述控制电路板和电源装置均安装在花洒本体内腔,所述控制电路板上设置有用于控制电动切换机构工作的单点触摸按键,所述花洒表面设置有一个与单点触摸按键相对应的触摸区域。
进一步地,所述电动切换机构包括减速电机和中心轴,所述减速电机安装在分水架上,所述分水架安装在花洒本体内腔,所述中心轴安装在减速电机的输出端上且位于分水架的切换腔内,所述分水架的切换腔内安装有支撑中心轴并限制轴向位移的限位块,所述分水架切换腔内的各个出水孔均安装有能够与中心轴侧部的堵块密封配合的包胶封水片。
进一步地,所述花洒本体的头部出水口安装有装饰盖,所述装饰盖内侧嵌设有与分水架相配合的面盖,所述面盖与分水架之间安装有分水连接件,所述面盖内侧安装有位于其中一个出水水路上的叶轮,所述控制电路板和单点触摸按键均安装在装饰盖内侧,所述触摸区域设置于装饰盖外侧。
进一步地,所述单点触摸按键为导电泡棉。
进一步地,所述花洒本体的手柄出水孔与分水架的进水孔之间连接有过水头,所述过水头的进水接头套设有与手柄的出水孔密封配合的O型圈,所述过水头的出水接头套设有与分水架的进水孔密封配合的O型圈。
进一步地,所述电源装置为水力充电装置,所述水力充电装置包括带磁铁线圈叶轮、线圈磁铁分隔套和发电机线圈,所述带磁铁线圈叶轮安装在线圈磁铁分隔套外侧,所述发电机线圈安装在线圈磁铁分隔套内侧,所述带磁铁线圈叶轮设置于花洒本体的进水水路,所述发电机线圈电性连接至电源电路板,所述电源电路板电性连接有充电电池,所述电源电路板电性连接至控制电路板。
进一步地,所述电源电路板和充电电池均安装在分水架上,所述分水架上方安装有将电源电路板、充电电池和减速电机盖住的密封盖,所述密封盖与分水架之间的配合面上安装有异形橡胶圈。
进一步地,所述电源装置为外部充电装置,所述外部充电装置包括USB组件和充电电池,所述USB组件和充电电池均电性连接至控制电路板,所述USB组件暴露于花洒表面且由密封组件遮盖住。
进一步地,所述充电电池安装在分水架上,所述充电电池之间设置有串联用的弹片,所述分水架上方安装有将充电电池和减速电机盖住的密封盖,所述密封盖与分水架之间的配合面上安装有异形橡胶圈。
进一步地,所述花洒本体的手柄进水口安装有螺纹接头。
与现有技术相比,本实用新型具有以下有益效果:该单点触摸切换出水水花的花洒采用单点触摸按键来控制电动切换机构工作,由于单点触摸按键隐藏于花洒结构内部,保证花洒外观的完整性;单点触摸操作单点触摸按键时,非常省力,且花洒表面没有任何高度差变化,避免了机械按键按压费劲、容易失灵且降低花洒美观性的缺点。
图1为本实用新型花洒的结构示意图。
图2为实施例一在图1中A-A处的剖视图。
图3为本实用新型实施例一的结构爆炸图。
图4为实施例二在图1中A-A处的剖视图。
图5为本实用新型实施例二的结构爆炸图。
图中标记:1-螺纹接头,2-花洒本体,3-O型圈,4-带磁铁线圈叶轮,5-线圈磁铁分隔套,6-O型圈,7-发电机线圈,8-螺钉,9-螺钉,10-密封盖,11-异形橡胶圈,12-电源装置/充电电池,13-电源电路板,14-减速电机,15-分水架,16-O
型圈,17-中心轴,18-包胶封水片,19-限位块,20-螺钉,21-分水连接件,22-叶轮,23-面盖,24-控制电路板,25-单点触摸按键/导电泡棉,26-装饰盖,27-密封组件,28-弹片,29-USB组件,30-过水头,31-O型圈,32-O型圈。
为了让本实用新型的上述特征和优点更明显易懂,下文特举实施例,并配合附图,作详细说明如下。
如图1~5所示,一种单点触摸切换出水水花的花洒,包括花洒本体2,所述花洒本体2内腔安装有用于切换多个出水水路的电动切换机构14、17,所述电动切换机构电性连接至控制电路板24,所述控制电路板24电性连接有给电动切换机构供电的电源装置12,所述控制电路板24和电源装置均安装在花洒本体2内腔,所述控制电路板24上设置有用于控制电动切换机构工作的单点触摸按键25,所述花洒表面设置有一个与单点触摸按键相对应的触摸区域,即触摸区域和花洒表面是一体的,无任何接缝的。
在本实用新型的各个实施例中,所述电动切换机构包括减速电机14和中心轴17,所述减速电机14安装在分水架15上,所述分水架15通过螺钉20安装在花洒本体2内腔,所述中心轴17安装在减速电机14的输出端上且位于分水架15的切换腔内,所述中心轴17与减速电机14相连接的一端套设有与分水架15上的安装孔密封配合的O型圈16,所述分水架15的切换腔内安装有支撑中心轴17并限制轴向位移的限位块19,所述分水架15切换腔内的各个出水孔均安装有能够与中心轴17侧部的堵块密封配合的包胶封水片18。
在本实用新型的各个实施例中,所述花洒本体2的手柄进水口安装有螺纹接头1,所述花洒本体2的头部出水口安装有装饰盖26,所述装饰盖26内侧嵌设有与分水架15相配合的面盖23,所述面盖23与分水架15之间安装有分水连接件21,所述面盖23内侧安装有位于其中一个出水水路上的叶轮22以出按摩功能水,所述控制电路板24和单点触摸按键均安装在装饰盖26内侧,所述触摸区域设置于装饰盖26外侧(即触摸区域和装饰盖26表面是一体的,无任何接缝的)。其中,所述单点触摸按键采用电容式触摸感应按键,例如导电泡棉25。
实施例一:如图2~3所示,所述电源装置为水力充电装置,所述水力充电装置包括带磁铁线圈叶轮4、线圈磁铁分隔套5和发电机线圈7,所述带磁铁线圈
叶轮4安装在线圈磁铁分隔套5外侧,所述发电机线圈7安装在线圈磁铁分隔套5内侧,所述带磁铁线圈叶轮4设置于花洒本体2的进水水路,所述发电机线圈7电性连接至电源电路板13,所述电源电路板13电性连接有充电电池12,所述电源电路板13电性连接至控制电路板24。
在本实用新型实施例一中,所述电源电路板13和充电电池12均安装在分水架15上,所述分水架15上方通过螺钉9安装有将电源电路板13、充电电池12和减速电机14盖住的密封盖10,所述密封盖10与分水架15之间的配合面上安装有异形橡胶圈11,避免因漏水而损坏电源电路板13、充电电池12和减速电机14。
在本实用新型实施例一中,所述花洒本体2的头部内腔制作有用于安装水力充电装置的水力发电机座,所述发电机线圈7通过螺钉8固定在水力发电机座上,所述线圈磁铁分隔套5套设有与水力发电机座内腔密封配合的O型圈6,所述水力发电机座内腔通过一斜水孔与花洒本体2的手柄内腔相连通,所述水力发电机座的出水接头套设有与分水架15的进水孔密封配合的O型圈3。
本实用新型实施例一的工作原理如下:水由螺纹接头1进入花洒本体2的手柄内腔,接着通过手柄内腔的末端斜水孔流入头部内腔的水力发电机座内,水经过水力发电机座时带动带磁铁线圈叶轮4转动实现发电并储存至充电电池12以为电动切换机构提供电源,再接着通过水力发电机座的出水孔流入分水架15的切换腔内;需要切换到一种水花模式时,用户只需通过轻轻触摸一下装饰盖26上的触摸区域以触发单点触摸按键,使控制电路板24开始控制电动切换机构动作,切换打开切换腔内的一个出水孔以使相应的出水水路打开;需要再切换到另一种水花模式,用户只需再轻轻触摸一下装饰盖26上的触摸区域以触发单点触摸按键,使控制电路板24开始控制电动切换机构动作,切换打开切换腔内的另一个出水孔以使相应的出水水路打开;触摸时触摸区域表面无任何位置变化,即可实现不同水花模式的切换。
实施例二:如图4~5所示,所述电源装置为外部充电装置,所述外部充电装置包括USB组件29和充电电池12,所述USB组件29和充电电池12均电性连接至控制电路板24,所述USB组件暴露于花洒表面且由密封组件27遮盖住。其中,所述装饰盖26中心设有暴露出USB组件29的插孔以便进行插接充电,
所述密封组件27盖住插孔以使花洒表面美观。
在本实用新型实施例二中,所述花洒本体2的手柄出水孔与分水架15的进水孔之间连接有过水头30,所述过水头30的进水接头套设有与手柄的出水孔密封配合的O型圈31,所述过水头30的出水接头套设有与分水架15的进水孔密封配合的O型圈32。
在本实用新型实施例二中,所述充电电池12安装在分水架15上,所述充电电池12之间设置有串联用的弹片28,所述分水架15上方通过螺钉9安装有将充电电池12和减速电机14盖住的密封盖10,所述密封盖10与分水架15之间的配合面上安装有异形橡胶圈11,避免因漏水而损坏充电电池12和减速电机14。
本实用新型实施例二的工作原理如下:水由螺纹接头1进入花洒本体2的手柄内腔,接着通过过水头30从手柄内腔流入分水架15的切换腔内;需要切换到一种水花模式时,用户只需通过轻轻触摸一下装饰盖26上的触摸区域以触发单点触摸按键,使控制电路板24开始控制电动切换机构动作,切换打开切换腔内的一个出水孔以使相应的出水水路打开;需要再切换到另一种水花模式,用户只需再轻轻触摸一下装饰盖26上的触摸区域以触发单点触摸按键,使控制电路板24开始控制电动切换机构动作,切换打开切换腔内的另一个出水孔以使相应的出水水路打开;触摸时触摸区域表面无任何位置变化,即可实现不同水花模式的切换。
本实用新型不局限于上述最佳实施方式,任何人在本实用新型的启示下都可以得出其他各种形式的单点触摸切换出水水花的花洒。凡依本实用新型申请专利范围所做的均等变化与修饰,皆应属本实用新型的涵盖范围。
Claims (10)
- 一种单点触摸切换出水水花的花洒,包括花洒本体,其特征在于:所述花洒本体内腔安装有用于切换多个出水水路的电动切换机构,所述电动切换机构电性连接至控制电路板,所述控制电路板电性连接有给电动切换机构供电的电源装置,所述控制电路板和电源装置均安装在花洒本体内腔,所述控制电路板上设置有用于控制电动切换机构工作的单点触摸按键,所述花洒表面设置有一个与单点触摸按键相对应的触摸区域。
- 根据权利要求1所述的单点触摸切换出水水花的花洒,其特征在于:所述电动切换机构包括减速电机和中心轴,所述减速电机安装在分水架上,所述分水架安装在花洒本体内腔,所述中心轴安装在减速电机的输出端上且位于分水架的切换腔内,所述分水架的切换腔内安装有支撑中心轴并限制轴向位移的限位块,所述分水架切换腔内的各个出水孔均安装有能够与中心轴侧部的堵块密封配合的包胶封水片。
- 根据权利要求2所述的单点触摸切换出水水花的花洒,其特征在于:所述花洒本体的头部出水口安装有装饰盖,所述装饰盖内侧嵌设有与分水架相配合的面盖,所述面盖与分水架之间安装有分水连接件,所述面盖内侧安装有位于其中一个出水水路上的叶轮,所述控制电路板和单点触摸按键均安装在装饰盖内侧,所述触摸区域设置于装饰盖外侧。
- 根据权利要求1、2或3所述的单点触摸切换出水水花的花洒,其特征在于:所述单点触摸按键为导电泡棉。
- 根据权利要求2所述的单点触摸切换出水水花的花洒,其特征在于:所述花洒本体的手柄出水孔与分水架的进水孔之间连接有过水头,所述过水头的进水接头套设有与手柄的出水孔密封配合的O型圈,所述过水头的出水接头套设有与分水架的进水孔密封配合的O型圈。
- 根据权利要求2所述的单点触摸切换出水水花的花洒,其特征在于:所述电源装置为水力充电装置,所述水力充电装置包括带磁铁线圈叶轮、线圈磁铁分隔套和发电机线圈,所述带磁铁线圈叶轮安装在线圈磁铁分隔套外侧,所述发电机线圈安装在线圈磁铁分隔套内侧,所述带磁铁线圈叶轮设置于花洒本体的进水水路,所述发电机线圈电性连接至电源电路板,所述电源电路板电性连接有充电电 池,所述电源电路板电性连接至控制电路板。
- 根据权利要求6所述的单点触摸切换出水水花的花洒,其特征在于:所述电源电路板和充电电池均安装在分水架上,所述分水架上方安装有将电源电路板、充电电池和减速电机盖住的密封盖,所述密封盖与分水架之间的配合面上安装有异形橡胶圈。
- 根据权利要求2所述的单点触摸切换出水水花的花洒,其特征在于:所述电源装置为外部充电装置,所述外部充电装置包括USB组件和充电电池,所述USB组件和充电电池均电性连接至控制电路板,所述USB组件暴露于花洒表面且由密封组件遮盖住。
- 根据权利要求8所述的单点触摸切换出水水花的花洒,其特征在于:所述充电电池安装在分水架上,所述充电电池之间设置有串联用的弹片,所述分水架上方安装有将充电电池和减速电机盖住的密封盖,所述密封盖与分水架之间的配合面上安装有异形橡胶圈。
- 根据权利要求1所述的单点触摸切换出水水花的花洒,其特征在于:所述花洒本体的手柄进水口安装有螺纹接头。
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CN108499761A (zh) * | 2018-06-05 | 2018-09-07 | 东莞市适意洁具有限公司 | 切换清洁型花洒 |
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