CN204664556U - Based on the intelligent tap structure of photoelectric detection system - Google Patents
Based on the intelligent tap structure of photoelectric detection system Download PDFInfo
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- CN204664556U CN204664556U CN201520354559.4U CN201520354559U CN204664556U CN 204664556 U CN204664556 U CN 204664556U CN 201520354559 U CN201520354559 U CN 201520354559U CN 204664556 U CN204664556 U CN 204664556U
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Abstract
本实用新型公开了一种基于光电检测装置的智能水龙头结构,它包括带手动阀芯的龙头、智能控制模块、出水管路、冷水进水管路、热水进水管路、光电检测感应装置;所述的出水管路、冷水进水管路与热水进水管路皆连接在龙头中的手动阀芯上;智能控制模块串联于出水管路中,光电检测感应装置安装在出水管路上,通过馈线或直接与智能控制模块连接。由于本实用新型在出水管路上安装光电检测感应装置并通过馈线或直接与智能控制模块连接,向智能控制模块输送控制信号,启闭水龙头的水流。这种通过抽拉出水管路控制水流通断的方式,使用起来十分方便。
The utility model discloses an intelligent faucet structure based on a photoelectric detection device, which comprises a faucet with a manual valve core, an intelligent control module, a water outlet pipeline, a cold water inlet pipeline, a hot water inlet pipeline, and a photoelectric detection and induction device; The above water outlet pipeline, cold water inlet pipeline and hot water inlet pipeline are all connected to the manual valve core in the faucet; the intelligent control module is connected in series in the water outlet pipeline, and the photoelectric detection and sensing device is installed on the water outlet pipeline. Connect directly with the intelligent control module. Because the utility model installs the photoelectric detection sensing device on the water outlet pipeline and connects with the intelligent control module through the feeder or directly, sends the control signal to the intelligent control module, and opens and closes the water flow of the faucet. This method of controlling the interruption of water flow by pulling out the water outlet pipeline is very convenient to use.
Description
技术领域 technical field
本实用新型涉及一种水龙头,特别是涉及一种基于光电检测装置的智能水龙头结构。 The utility model relates to a faucet, in particular to an intelligent faucet structure based on a photoelectric detection device.
背景技术 Background technique
常规台式水龙头通常是依照水龙头的外观来设计,一般是手动机械操作。随着电子感应水龙头的不断出现,自动水龙头成为必然选择。自动水龙头是通过人体感应获取信号输送给控制模块,再由电源提供动力给供水系统,供水系统控制水的开关供人使用。这种习用的自动水龙头(包括抽拉式水龙头)的控制方式大都是控制模块通过红外感应器获取启闭信号。由于抽拉式水龙头具有独特的结构,习用的结构中,由于需清洗的位置远近,均是在出水状态,通过抽拉水龙头对远距离的地方进行冲洗,目前,业内还没有利用抽拉水龙头来实现水路的开启及关闭的控制,业者希望能实现此控制方式。 Conventional desktop faucets are usually designed according to the appearance of the faucet, and are generally manually operated. With the continuous emergence of electronic sensor faucets, automatic faucets have become an inevitable choice. The automatic faucet obtains signals through human body induction and sends them to the control module, and then the power supply provides power to the water supply system, and the water supply system controls the water switch for human use. Most of the control methods of this kind of automatic faucets (including pull-out faucets) are that the control module obtains the opening and closing signal through the infrared sensor. Due to the unique structure of the pull-out faucet, in the commonly used structure, due to the distance of the location to be cleaned, it is in the state of water outlet, and the remote place is rinsed by pulling the faucet. At present, the industry has not yet used the pull-out faucet to To realize the control of opening and closing of the waterway, the industry hopes to realize this control method.
实用新型内容 Utility model content
本实用新型的目的在于提供一种使用方便的基于光电检测装置的智能水龙头结构。 The purpose of the utility model is to provide an intelligent faucet structure based on a photoelectric detection device which is convenient to use.
为实现上述目的,本实用新型的技术解决方案是: For achieving the above object, the technical solution of the utility model is:
本实用新型是一种智能控制水龙头,它包括带手动阀芯的龙头、智能控制模块、出水管路、冷水进水管路及热水进水管路;所述的出水管路、冷水进水管路与热水进水管路皆连接在龙头中的手动阀芯上;智能控制模块串联于出水管路中;其特征在于:它还包括一光电检测感应装置;该光电检测感应装置安装在出水管路上,通过馈线或直接与智能控制模块连接。 The utility model is an intelligent control faucet, which includes a faucet with a manual valve core, an intelligent control module, a water outlet pipeline, a cold water inlet pipeline and a hot water inlet pipeline; the water outlet pipeline, the cold water inlet pipeline and the The hot water inlet pipelines are all connected to the manual valve core in the faucet; the intelligent control module is connected in series in the water outlet pipeline; it is characterized in that it also includes a photoelectric detection and induction device; the photoelectric detection and induction device is installed on the water outlet pipeline, Connect with the intelligent control module through the feeder or directly.
所述的光电检测感应装置由光电检测头和一段透明水管组成,光电检测头的发射部分和接收部分分别在出水管路的两边,一段透明水管串联在不透明水管中间,并安装在龙头本体内。 The photoelectric detection sensing device is composed of a photoelectric detection head and a section of transparent water pipe. The emitting part and receiving part of the photoelectric detection head are respectively located on both sides of the water outlet pipeline. A section of transparent water pipe is connected in series in the middle of the opaque water pipe and installed in the faucet body.
所述的光电检测感应装置由光电检测头和一反射装置组成,光电检测头的发射部分和接收部分位于出水管路的同侧,所述反射装置与出水管路固定连接,并安装在龙头本体内。 The photoelectric detection sensing device is composed of a photoelectric detection head and a reflection device, the emitting part and the receiving part of the photoelectric detection head are located on the same side of the water outlet pipeline, and the reflection device is fixedly connected with the water outlet pipeline and installed on the faucet body Inside.
所述的反射装置为一段能反射光的水管,所述一段能反射光的水管串联在出水管路上。 The reflecting device is a section of water pipe capable of reflecting light, and the section of water pipe capable of reflecting light is connected in series on the water outlet pipeline.
本实用新型还包括红外感应器,该红外感应器设在台面上方的龙头上,其通过馈线或直接与智能控制模块连接。 The utility model also includes an infrared sensor, which is arranged on the faucet above the table, and is connected with the intelligent control module through a feeder line or directly.
采用上述方案后,由于本实用新型在出水管路上安装光电检测装置并通过馈线或直接与智能控制模块连接,向智能控制模块输送控制信号,启闭水龙头的水流。这种通过抽拉出水管路控制水流通断的方式,使用起来十分方便。 After adopting the above scheme, since the utility model installs a photoelectric detection device on the water outlet pipeline and connects with the intelligent control module through a feeder line or directly, a control signal is sent to the intelligent control module to open and close the water flow of the faucet. This method of controlling the interruption of water flow by pulling out the water pipeline is very convenient to use.
下面结合附图和具体实施例对本实用新型作进一步的说明。 Below in conjunction with accompanying drawing and specific embodiment the utility model is described further.
附图说明 Description of drawings
图1是本实用新型抽拉状态的轴测图; Fig. 1 is the axonometric view of the drawing state of the utility model;
图2是本实用新型收拢状态的轴测图; Fig. 2 is an axonometric view of the utility model in a folded state;
图3是本实用新型把手关闭状态的轴测图; Fig. 3 is the axonometric view of the closed state of the handle of the utility model;
图4本实用新型光电检测装置的剖视图。 Fig. 4 is a sectional view of the photoelectric detection device of the present utility model.
图5 是本实用新型光电检测装置第一个实施例的分解图; Fig. 5 is the exploded view of the first embodiment of the photoelectric detection device of the present invention;
图6 是本实用新型光电检测装置第二个实施例的分解图。 Fig. 6 is an exploded view of the second embodiment of the photoelectric detection device of the present invention.
具体实施方式 Detailed ways
如图1、图4所示,本实用新型是一种基于光电检测装置的智能水龙头结构,它包括带手动阀芯的龙头1、红外感应器2、智能控制模块3、出水管路4、冷水进水管路5、热水进水管路6和光电检测感应装置7。 As shown in Figure 1 and Figure 4, the utility model is an intelligent faucet structure based on a photoelectric detection device, which includes a faucet 1 with a manual valve core, an infrared sensor 2, an intelligent control module 3, an outlet pipeline 4, a cold water Water inlet pipeline 5, hot water inlet pipeline 6 and photoelectric detection induction device 7.
所述的出水管路4、冷水进水管路5与热水进水管路6皆连接在龙头1中的手动阀芯上;智能控制模块3串联于出水管路4中。 The water outlet pipeline 4 , the cold water inlet pipeline 5 and the hot water inlet pipeline 6 are all connected to the manual valve core in the faucet 1 ; the intelligent control module 3 is connected in series in the water outlet pipeline 4 .
如图5所示,是本实用新型接近开关感应装置7的第一个实施例,所述的光电检测感应装置7由光电检测头71和一段透明水管72组成。一段透明水管72串联在出水管路4上,即,一段透明水管72串联在不透明水管中间,光电检测头71安装在龙头1本体11内且光电检测头71的发射部分711和接收部分712分别位于出水管路4移动轨迹的两侧,发射部分711发射的光透过透明水管72会被接收部分712接收到,透明水管72移动后,发射部分711发射的光会被不透明的水管挡住,接收部分712接收不到光。通过移动透明水管72,进而控制接收部分712接收到或接收不到发射部分711发射的光,光电检测头71 通过馈线与智能控制模块3 连接。 As shown in FIG. 5 , it is the first embodiment of the proximity switch sensing device 7 of the present invention. The photoelectric detection sensing device 7 is composed of a photoelectric detection head 71 and a section of transparent water pipe 72 . A section of transparent water pipe 72 is connected in series on the water outlet pipeline 4, that is, a section of transparent water pipe 72 is connected in series in the middle of the opaque water pipe, the photoelectric detection head 71 is installed in the main body 11 of the faucet 1 and the emitting part 711 and the receiving part 712 of the photoelectric detection head 71 are respectively located On both sides of the moving track of the water outlet pipeline 4, the light emitted by the emitting part 711 will be received by the receiving part 712 through the transparent water pipe 72. After the transparent water pipe 72 moves, the light emitted by the emitting part 711 will be blocked by the opaque water pipe. 712 cannot receive light. By moving the transparent water pipe 72, and then controlling the receiving part 712 to receive or not receive the light emitted by the transmitting part 711, the photoelectric detection head 71 is connected with the intelligent control module 3 through a feeder.
如图6所示,是本实用新型接近开关感应装置7的第二个实施例,所述的光电检测感应装置7由光电检测头71和反射装置72组成,反射装置72与出水管路4固定连接,光电检测头71的发射部分711和接收部分712位于出水管路4的同侧,发射部分711发射光信号经反射装置72反射后,光信号被接收部分712接收到。反射装置72移动后,发射部分711发射的光无法被反射装置72反射,接收部分712接收不到光。所述的反射装置72为一段能反射光的水管;可以是喷有反射材料的水管构成,也可以由反射材料制成的水管构成;该能反射光的水管串联在不能反射光的水管中间,所述反射装置72也可以是镜子或铝片固定在出水管的外表面;所述的红外感应器2设在台面上方的龙头上,其通过馈线与智能控制模块3连接。 As shown in Figure 6, it is the second embodiment of the proximity switch sensing device 7 of the present utility model. The photoelectric detection sensing device 7 is composed of a photoelectric detection head 71 and a reflection device 72, and the reflection device 72 is fixed with the water outlet pipeline 4 Connected, the transmitting part 711 and receiving part 712 of the photoelectric detection head 71 are located on the same side of the water outlet pipeline 4, the transmitting part 711 emits an optical signal and is reflected by the reflecting device 72, and the optical signal is received by the receiving part 712. After the reflecting device 72 moves, the light emitted by the emitting part 711 cannot be reflected by the reflecting device 72, and the receiving part 712 cannot receive the light. The reflector 72 is a section of water pipe that can reflect light; it can be made of a water pipe sprayed with reflective material, or can be made of a water pipe made of reflective material; the water pipe that can reflect light is connected in series in the middle of the water pipe that cannot reflect light, The reflector 72 can also be a mirror or an aluminum sheet fixed on the outer surface of the water outlet pipe; the infrared sensor 2 is arranged on the faucet above the table, and is connected to the intelligent control module 3 through a feeder.
本实用新型的工作原理: Working principle of the utility model:
开启龙头1把手12( 红外感应器2处于关水状态时) 将花洒13向下抽拉, 从而抽拉出水管路4,串联在出水管路4上的一段透明水管72随出水管路4上移并远离光电检测头71,光电检测头71输送开启信号给智能控制模块3( 当龙头1 处于无抽拉出水状态时,将花洒向下抽拉龙头1 仍处于出水状态),龙头1出水。此时龙头1上的红外感应器2处于失效状态,当到达设定出水时间后龙头1停水, 红外感应器2恢复感应功能,当需继续使龙头1 出水则再次启动下红外感应器2即可( 红外感应器2出水功能在抽拉出水到达设定时间后是处于正常使用状态的)。 Turn on the handle 12 of the faucet 1 (when the infrared sensor 2 is in the water-off state) and pull the shower 13 downwards, thereby pulling out the water outlet pipeline 4, and a section of transparent water pipe 72 connected in series with the water outlet pipeline 4 follows the water outlet pipeline 4 Move up and away from the photoelectric detection head 71, the photoelectric detection head 71 sends an opening signal to the intelligent control module 3 (when the faucet 1 is in the state of no water outlet, pull the shower down and the faucet 1 is still in the state of water discharge), the faucet 1 out of water. At this time, the infrared sensor 2 on the faucet 1 is in an invalid state. When the set water discharge time is reached, the faucet 1 will stop water, and the infrared sensor 2 will resume the sensing function. Yes (the water outlet function of the infrared sensor 2 is in normal use after the water is pulled out for the set time).
如图2所示,在把手12开启且抽拉出水状态下,当花洒13回到起始位置后龙头1在光电检测感应装置7的作用下自动停水。 As shown in FIG. 2 , when the handle 12 is opened and the water is drawn out, the faucet 1 automatically stops the water under the action of the photoelectric detection and sensing device 7 after the shower 13 returns to the initial position.
如图3所示,当龙头1无论处于感应出水或抽拉出水状态下关闭把手12后都处于停水状态。 As shown in FIG. 3 , when the faucet 1 is in the state of sensing water or pulling out water, the handle 12 is closed, and it is in a water-off state.
此外,本实用新型还可以有以下几种使用模式: In addition, the utility model can also have the following usage modes:
开启把手12,龙头1不出水,启动红外感应器2后龙头1出水,到达设定时间后龙头1自动停水。 When the handle 12 is turned on, the faucet 1 will not emit water. After the infrared sensor 2 is activated, the faucet 1 will discharge water. When the set time is reached, the faucet 1 will automatically stop the water.
把手12开启且龙头1在出水状态下再次启动红外感应器2龙头1停水或把手12关闭后龙头1停水。 The handle 12 is opened and the infrared sensor is turned on again when the faucet 1 is in the water outlet state. The faucet 1 stops the water or the faucet 1 stops the water after the handle 12 is closed.
本实用新型的重点就在于:采用光电检测感应装置控制出水。 The key point of the utility model is just: adopt the photoelectric detection induction device to control water outlet.
以上所述,仅为本实用新型较佳实施例而已,故不能以此限定本实用新型实施的范围,即依本实用新型申请专利范围及说明书内容所作的等效变化与修饰,皆应仍属本实用新型专利涵盖的范围内。 The above is only a preferred embodiment of the utility model, so the scope of implementation of the utility model cannot be limited with this, that is, the equivalent changes and modifications made according to the patent scope of the utility model and the content of the specification should still belong to the utility model. Within the scope covered by the utility model patent.
Claims (5)
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| CN201520354559.4U CN204664556U (en) | 2015-05-28 | 2015-05-28 | Based on the intelligent tap structure of photoelectric detection system |
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Cited By (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN106352138A (en) * | 2016-10-11 | 2017-01-25 | 张少亮 | Automatic sensor faucet based on gesture control application |
| CN108953677A (en) * | 2017-05-26 | 2018-12-07 | 宁波万海阀门科技有限公司 | Tap and faucet valve core |
| US11473279B2 (en) | 2020-03-17 | 2022-10-18 | Xiamen Iebs Hi-Tech Co., Ltd | Switch detection assembly and faucet having the same |
| WO2022237097A1 (en) * | 2021-05-12 | 2022-11-17 | 厦门市智慧宸星科技有限公司 | Inductive pull-out faucet |
-
2015
- 2015-05-28 CN CN201520354559.4U patent/CN204664556U/en not_active Expired - Lifetime
Cited By (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN106352138A (en) * | 2016-10-11 | 2017-01-25 | 张少亮 | Automatic sensor faucet based on gesture control application |
| CN106352138B (en) * | 2016-10-11 | 2019-05-14 | 张少亮 | A kind of automatic sensing tap based on gesture control application |
| CN108953677A (en) * | 2017-05-26 | 2018-12-07 | 宁波万海阀门科技有限公司 | Tap and faucet valve core |
| US11473279B2 (en) | 2020-03-17 | 2022-10-18 | Xiamen Iebs Hi-Tech Co., Ltd | Switch detection assembly and faucet having the same |
| US20230014703A1 (en) * | 2020-03-17 | 2023-01-19 | Xiamen Iebs Hi-Tech Co., Ltd. | Switch Detection Assembly And Faucet Having The Same |
| US11767661B2 (en) * | 2020-03-17 | 2023-09-26 | Xiamen Iebs Hi-Tech Co., Ltd. | Switch detection assembly and faucet having the same |
| WO2022237097A1 (en) * | 2021-05-12 | 2022-11-17 | 厦门市智慧宸星科技有限公司 | Inductive pull-out faucet |
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