INTELLIGENT CONTROL FAUCET
An intelligent control faucet includes a faucet body with a manual operation valve, an intelligent control module, a water outflow tube, a cold water inflow tube, a hot water inflow tube, and a magnetic induction device. The water outflow tube, the cold water inflow tube and the hot water inflow tube are connected to the manual operation valve. The intelligent control module is connected in series with the water outflow tube. The magnetic induction device is installed on the water outflow tube and connected through a feeder cable or directly to the intelligent control module. Water flow can be established or cut off through pulling the water inflow tube so that the use is made easy.
The present invention relates to a faucet, and more particularly to an intelligent control faucet.
2. Description of the Prior ArtIn general, a conventional countertop faucet is designed according to the appearance of the faucet and is generally mechanically operated with hands. The increasing emergence of electronic detective faucets in the market makes the automatic faucets a consequential choice. An automatic faucet detects the presence of a human body and acquires a signal that is transmitted subsequently to a control module so as to have power supplied from a power supply to a water supply system. The water supply system is thus enabled to control switching of water to supply water to the user. Such a conventional automatic faucet, including pull-out faucets, is generally controlled with a control module that acquires an opening/closing signal through an infrared sensor. Due to being of a unique feature, the conventional pull-out faucet, although generally arranged at a site around which use of water is necessary, allows a sprayer thereof to be pulled out in a condition of water being discharged to flush a distant site. Currently, no proposal has been made in this art for achieving the control of opening/closing the water supply through the movement of pulling out the sprayer. It is thus desired to provide a solution that achieves such a way of control.
SUMMARY OF THE INVENTIONThe primary object of the present invention is to provide an intelligent control faucet that is used conveniently.
In order to achieve the aforesaid object, the intelligent control faucet comprises a faucet body with a manual operation valve, an intelligent control module, a water outflow tube, a cold water inflow tube, a hot water inflow tube, and a sprayer that is connected to the water outflow tube through a pull-out hose. The water outflow tube, the cold water inflow tube and the hot water inflow tube are connected to the manual operation valve that is mounted inside the faucet body. The intelligent control module is connected in series with the water outflow tube. The intelligent control faucet further comprises a magnetic induction device. The magnetic induction device is installed on the water outflow tube and connected through a feeder cable or directly to the intelligent control module.
Preferably, the intelligent control faucet further comprises an infrared sensor. The infrared sensor comprises a sensing window mounted to a front side of the faucet body and a sensor chip. The sensing window has a lower end coupled to a rubber sealing block and a waterproof connector to connect through a feeder cable to the intelligent control module. The sensor chip is mounted through a rubber block at a location behind the sensing window. The infrared sensor is mounted to the faucet body that is mounted on a countertop, and is connected, through a feeder cable or directly, to the intelligent control module.
Preferably, the magnetic induction device comprises a Hall element and a magnetic activation mechanism that functions to activate the Hall element. The Hall element is mounted in the faucet body to face a moving path of the magnetic activation mechanism and is connected through a feeder cable or directly to the intelligent control module.
Preferably, the magnetic activation mechanism is mounted to the pull-out hose. The magnetic activation mechanism controls activation/deactivation of the Hall element to control communication between the water outflow tube and the pull-out hose.
Preferably, the magnetic activation mechanism is a magnetic ring mounted on the pull-out hose.
Preferably, the pull-out hose comprises a first hose and a second hose. The magnetic activation mechanism is mounted between the first hose and the second hose. The first hose has a connection end connected with a secondary metallic fitting. The second hose has a connection end connected with a primary metallic fitting. The two metallic fittings collectively form a sealed coupling therebetween through inter-fitting between the primary and secondary fittings. The secondary metallic fitting is adapted to receive the magnetic ring to fit thereto. When the pull-out hose retracts back to a home position inside the faucet body, the magnetic ring is located in a spatial range that deactivates the Hall element.
Preferably, protection sleeves are provided outside the secondary metallic fitting, the primary metallic fitting, and the magnetic ring, respectively.
With such a solution, the present invention comprises a magnetic induction device mounted to a water outflow tube and is connected through a feeder cable or directly to an intelligent control module to transmit a control signal to the intelligent control module for establishing or cutting of a water flow through the faucet. Such an arrangement of establishing or cutting of a water flow through pulling the water inflow tube makes the use easy. Further, the Hall element has the characteristics of small size, fast response, and no wear.
Embodiments of the present invention will now be described, by way of example only, with reference to the accompanying drawings.
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The intelligent control faucet further comprises a sprayer 9 that is connected to the water outflow tube 4 through a pull-out hose 8. The water outflow tube 4, the cold water inflow tube 5 and the hot water inflow tube 6 are connected to the manual operation valve that is mounted inside the faucet body 1. The intelligent control module 3 is connected in series with the water outflow tube. The intelligent control faucet further comprises an infrared sensor 2.
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The intelligent control module 3 is generally arranged at a location below for example a basin and is generally composed of an electromagnetic valve and a cell box to control communication between the water outflow tube 4 and the pull-out hose 8. The pull-out hose 8 has a front end coupled to the sprayer 9. The manual operation valve is operated with a faucet handle 12.
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The operation of the present invention is as follows:
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The following conditions should also be noted:
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An essential gist of the present invention is to control water discharging through a faucet with a magnetic induction device 7.
Although particular embodiments of the present invention have been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the present invention. Accordingly, the present invention is not to be limited except as by the appended claims.
Claims
1. An intelligent control faucet, comprising a faucet body with a manual operation valve, an intelligent control module, a water outflow tube, a cold water inflow tube, a hot water inflow tube and a sprayer that is connected to the water outflow tube through a pull-out hose; the water outflow tube, the cold water inflow tube and the hot water inflow tube being connected to the manual operation valve that is mounted inside the faucet body; the intelligent control module being connected in series with the water outflow tube; characterized in that: the intelligent control faucet further comprises a magnetic induction device, the magnetic induction device is installed on the water outflow tube and connected through a feeder cable or directly to the intelligent control module.
2. The intelligent control faucet as claimed in claim 1, further comprising an infrared sensor, the infrared sensor comprising a sensing window mounted to a front side of the faucet body and a sensor chip, the sensing window having a lower end coupled to a rubber sealing block and a waterproof connector to connect through a feeder cable to the intelligent control module, the sensor chip being mounted through a rubber block at a location behind the sensing window, the infrared sensor being mounted to the faucet body that is mounted on a countertop and being connected, through a feeder cable or directly, to the intelligent control module.
3. The intelligent control faucet as claimed in claim 1, wherein the magnetic induction device comprises a Hall element and a magnetic activation mechanism that functions to activate the Hall element, and the Hall element is mounted in the faucet body to face a moving path of the magnetic activation mechanism and is connected through a feeder cable or directly to the intelligent control module.
4. The intelligent control faucet as claimed in claim 3, wherein the magnetic activation mechanism is mounted to the pull-out hose, and the magnetic activation mechanism controls activation/deactivation of the Hall element to control communication between the water outflow tube and the pull-out hose.
5. The intelligent control faucet as claimed in claim 4, wherein the magnetic activation mechanism is a magnetic ring mounted on the pull-out hose.
6. The intelligent control faucet as claimed in claim 5, wherein the pull-out hose comprises a first hose and a second hose, the magnetic activation mechanism is mounted between the first hose and the second hose, the first hose has a connection end connected with a secondary metallic fitting, the second hose has a connection end connected with a primary metallic fitting, the two metallic fittings collectively form a sealed coupling therebetween through inter-fitting between the primary and secondary fittings, the secondary metallic fitting is adapted to receive the magnetic ring to fit thereto, when the pull-out hose retracts back to a home position inside the faucet body, the magnetic ring is located in a spatial range that deactivates the Hall element.
7. The intelligent control faucet as claimed in claim 6, wherein protection sleeves are provided outside the secondary metallic fitting, the primary metallic fitting, and the magnetic ring, respectively.
Type: Application
Filed: Apr 25, 2018
Publication Date: Oct 31, 2019
Inventor: Xiliang Yan (Xiamen)
Application Number: 15/961,883