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Miniaturized induction water outlet module
The invention discloses a miniaturized induction water outlet module. The miniaturized induction water outlet module comprises a water passing flow channel and a connecting and disconnecting assembly;the water passing flow channel is provided with a water inlet end and a water outlet end, and a water inlet cavity, a connecting and disconnecting cavity and a water outlet cavity are sequentially formed in the water flow conveying direction from the water inlet end to the water outlet end of the water passing flow channel; and the top face and the bottom face of the connecting and disconnectingassembly are of plane structures, an assembling plate is arranged on the side edge of the connecting and disconnecting assembly, the connecting and disconnecting assembly is connected into the connecting and disconnecting cavity and detachably connected with the water passing flow channel through the assembling plate, and the connecting and disconnecting assembly is used for receiving liquid fromthe water inlet cavity and connecting or disconnecting flowing of the liquid to the water outlet cavity. Compared with a threaded connection structure, the occupied space in the up-down direction is reduced, so that the height of the whole water outlet module is further reduced, and space is provided for raising the assembly position of an induction module; and the water outlet cavity communicateswith the connecting and disconnecting cavity at the position below the center line of the water outlet area of the connecting and disconnecting cavity, so that the conveying space of the water passing flow channel is guaranteed, and then the water outlet amount is guaranteed.
本发明公开了一种小型化感应出水模块,包括通水流道和通断组件,通水流道设有进水端和出水端,所述通水流道的进水端向出水端的水流输送方向上依次设有进水腔、通断腔和出水腔,通断组件的顶面及底面为平面结构,通断组件的侧边设有装配板,通断组件接入通断腔,并通过装配板与通水流道可拆连接,用于接收来自进水腔的液体,导通或断开液体向出水腔的流动,通过设置通断组件顶面及底面的平面结构,相比螺纹连接结构减少了上下方向上所要占用的空间,进一步缩短了整体出水模块的高度,为感应模块的装配位置提高提供了空间,出水腔于通断腔的出水区域中心线下方与通断腔相连通的设置形式,保证了通水流道的输送空间,进而保证了出水量。
Miniaturized induction water outlet module
The invention discloses a miniaturized induction water outlet module. The miniaturized induction water outlet module comprises a water passing flow channel and a connecting and disconnecting assembly;the water passing flow channel is provided with a water inlet end and a water outlet end, and a water inlet cavity, a connecting and disconnecting cavity and a water outlet cavity are sequentially formed in the water flow conveying direction from the water inlet end to the water outlet end of the water passing flow channel; and the top face and the bottom face of the connecting and disconnectingassembly are of plane structures, an assembling plate is arranged on the side edge of the connecting and disconnecting assembly, the connecting and disconnecting assembly is connected into the connecting and disconnecting cavity and detachably connected with the water passing flow channel through the assembling plate, and the connecting and disconnecting assembly is used for receiving liquid fromthe water inlet cavity and connecting or disconnecting flowing of the liquid to the water outlet cavity. Compared with a threaded connection structure, the occupied space in the up-down direction is reduced, so that the height of the whole water outlet module is further reduced, and space is provided for raising the assembly position of an induction module; and the water outlet cavity communicateswith the connecting and disconnecting cavity at the position below the center line of the water outlet area of the connecting and disconnecting cavity, so that the conveying space of the water passing flow channel is guaranteed, and then the water outlet amount is guaranteed.
本发明公开了一种小型化感应出水模块,包括通水流道和通断组件,通水流道设有进水端和出水端,所述通水流道的进水端向出水端的水流输送方向上依次设有进水腔、通断腔和出水腔,通断组件的顶面及底面为平面结构,通断组件的侧边设有装配板,通断组件接入通断腔,并通过装配板与通水流道可拆连接,用于接收来自进水腔的液体,导通或断开液体向出水腔的流动,通过设置通断组件顶面及底面的平面结构,相比螺纹连接结构减少了上下方向上所要占用的空间,进一步缩短了整体出水模块的高度,为感应模块的装配位置提高提供了空间,出水腔于通断腔的出水区域中心线下方与通断腔相连通的设置形式,保证了通水流道的输送空间,进而保证了出水量。
Miniaturized induction water outlet module
一种小型化感应出水模块
LI DALIANG (author) / ZHAO LIXIONG (author)
2020-11-03
Patent
Electronic Resource
Chinese