CN209977389U - Two-in-one faucet - Google Patents

Two-in-one faucet Download PDF

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Publication number
CN209977389U
CN209977389U CN201920743390.XU CN201920743390U CN209977389U CN 209977389 U CN209977389 U CN 209977389U CN 201920743390 U CN201920743390 U CN 201920743390U CN 209977389 U CN209977389 U CN 209977389U
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China
Prior art keywords
outlet
soap
unit
touch
pump
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CN201920743390.XU
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Chinese (zh)
Inventor
林孝发
林孝山
温晨广
张传义
陈浩宽
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Jiumu Kitchen & Sanitary Co Ltd
Jomoo Kitchen and Bath Co Ltd
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Jiumu Kitchen & Sanitary Co Ltd
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Priority to CN201920743390.XU priority Critical patent/CN209977389U/en
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Abstract

A two-in-one faucet comprises a valve body, a water outlet assembly, a connecting piece, a soap outlet assembly and a control assembly, wherein the valve body is provided with a water outlet; the connecting piece is arranged at the water outlet and is provided with a first outlet, a second outlet and a containing groove, and the first outlet is communicated with the water outlet assembly; the soap outlet component is communicated with the second outlet; the control assembly further comprises an induction unit, a touch unit, a pump and a main control circuit, the induction unit is installed in the containing groove to detect induction signals, the touch unit is installed at the top of the valve body to detect the touch signals, the pump is connected with the soap outlet assembly, and the main control circuit is connected with the induction unit, the touch unit, the pump and the control valve to control water outlet or soap outlet according to the induction signals and the touch signals.

Description

Two-in-one faucet
Technical Field
The utility model relates to a kitchen guarding field, especially a two unification taps.
Background
At present, most families and sanitary places are provided with induction taps and soap dispensers independently. When a user needs to wash hands or other things, the user needs to extract cleaning soap from other devices such as a single hand sanitizer bottle or a soap dispenser arranged beside a faucet, the soap feeding mode is troublesome, cross infection is easy to occur, the soap dispenser is complex to install, and the occupied space is large.
Accordingly, an automatic water and soap feeding integrated faucet has appeared in the prior art, but there still exist some problems with such an automatic water and soap feeding integrated faucet. Firstly, because the water supply and the soap supply are arranged at the same outlet part, but the sensing windows are respectively arranged at the water outlet level and the side edge of the faucet; the function is not intuitive for users, the function of the soap liquid is easy to ignore, and the product appearance is reduced. In addition, the water supply time of the existing induction faucet is controlled by a user, so that the service life is too long, and the waste of water resources is easily caused.
SUMMERY OF THE UTILITY MODEL
The main object of the utility model is to overcome the above-mentioned defects in the prior art, and to provide a two-in-one tap with simple structure, small volume and convenient installation.
The utility model adopts the following technical scheme:
the utility model provides a two unification taps, includes valve body, play water subassembly and control assembly, and this valve body is equipped with the delivery port, and this control assembly includes the control valve, and this control valve links to each other its characterized in that with a water subassembly: the soap box also comprises a connecting piece and a soap outlet component; the connecting piece is arranged at the water outlet and is provided with a first outlet, a second outlet and a containing groove, and the first outlet is communicated with the water outlet assembly; the soap outlet component is communicated with the second outlet; the control assembly further comprises an induction unit, a touch unit, a pump and a main control circuit, the induction unit is installed in the containing groove to detect induction signals, the touch unit is installed at the top of the valve body to detect the touch signals, the pump is connected with the soap outlet assembly, and the main control circuit is connected with the induction unit, the touch unit, the pump and the control valve to control water outlet or soap outlet according to the induction signals and the touch signals.
The soap discharging component comprises a soap discharging pipe and a soap liquid tank, one end of the soap discharging pipe is communicated with the second outlet, the other end of the soap discharging pipe is communicated with the outlet of the pump, and the inlet of the pump is communicated with the soap liquid tank.
The water outlet assembly comprises a water inlet pipe and a bubbler; the connecting piece is also provided with a mounting cavity which is communicated with the water inlet pipe and the first outlet; the bubbler is located within the mounting chamber.
The valve body comprises a main body, a pressure plate, a fixing plate and a face cover; the main body is provided with the water outlet; the pressing plate is fixed on the main body and is provided with a mounting groove for accommodating the touch unit; one end of the fixing plate is in snap fit with the pressing plate, and the other end of the fixing plate is fixed with the main body; the face cover is arranged on the fixing plate and is provided with a touch area, and the touch area is in conductive contact with the touch unit.
The main control circuit also comprises a power supply conversion unit, a driving circuit, an indicator light circuit and an MPU; the MPU is connected with a power supply conversion unit, the pump, the control valve and the indicator light circuit; the drive circuit is connected to the control valve and the pump.
The induction unit is also provided with a soap liquid indicator lamp.
The pump is characterized by also comprising a control box, wherein the master control circuit, the pump and the control valve are all positioned in the control box.
The induction unit is an infrared induction unit, an electromagnetic induction unit or a near field induction unit.
The touch unit is a resistance type touch switch and a capacitance type touch switch.
From the above description of the present invention, compared with the prior art, the present invention has the following advantages:
1. the utility model discloses a tap combines soap lye and tap valve body as a whole, adopts the connecting piece to realize the connection of soap subassembly and play water subassembly to go out water or go out soap lye according to sensing signal and touch signal control, simple structure, small, simple to operate.
2. The utility model discloses a tap sets up first export, second export on the connecting piece, and all is located water outlet department, avoids the soap lye to drip at the mesa, ensures that the mesa is clean.
3. The utility model discloses a tap adopts to dabble and gives the soap mode, and sets up the touch area on the face of tap is covered, selects according to user's demand to add light prompt effect, the function is more directly perceived, whole more pleasing to the eye.
4. The utility model discloses a tap, it still is provided with water count-down pilot lamp, can indicate user's water time to reach the purpose of using water wisely.
5. The utility model discloses a tap, with the face lid paste on the fixed plate, and set the fixed plate to the buckle cooperation with the clamp plate, can avoid taking place the phenomenon of face lid front end perk, increase of service life.
Drawings
FIG. 1 is a perspective view of the present invention;
fig. 2 is an exploded view of the present invention;
FIG. 3 is a perspective view (top side) of the connector;
FIG. 4 is a perspective view (bottom) of the connector;
FIG. 5 is a schematic view of a face cover;
fig. 6 is a cross-sectional view of the present invention;
FIG. 7 is a connection diagram of a power conversion unit and a driving circuit;
FIG. 8 is an MPU circuit diagram;
FIG. 9 is a peripheral circuit diagram of the MPU;
FIG. 10 is a circuit diagram of a sensing unit;
wherein:
10. the soap dispenser comprises a valve body, 11, a main body, 12, a pressing plate, 13, a fixing plate, 14, a face cover, 15, a water outlet, 16, a mounting groove, 17, a relief hole, 20, a water outlet component, 21, a water inlet pipe, 22, a bubbler, 30, a connecting piece, 31, a first outlet, 32, a second outlet, 33, a containing groove, 34, a mounting cavity, 35, a water inlet, 40, a soap outlet component, 41, a soap outlet pipe, 42, a soap liquid tank, 50, a control component, 51, a control valve, 52, a sensing unit, 52a, a waterproof circuit, 52b, a soap liquid indicator, 53, a touch unit, 54, a pump, 55, a main control circuit, 56, a power supply conversion unit, 57a, a first driving circuit, 57b, a second driving circuit, 58, a water pouring timing indicator, 59, an MPU, 60, a control box, 61, an upper cover, 62, a box body, 70, a mounting component, 71, a joint, 72 and a fixing sleeve.
Detailed Description
The present invention will be further described with reference to the following detailed description.
Referring to fig. 1 to 9, a two-in-one faucet includes a valve body 10, a water outlet assembly 20, a connecting member 30, a soap outlet assembly 40, a control assembly 50, and the like. The valve body 10 comprises a main body 11, a pressure plate 12, a fixing plate 13, a face cover 14 and the like, wherein the top of the main body 11 is open, and one end of the main body is provided with a water outlet 15. The pressing plate 12 is fixed above the water outlet 15 on the main body 11 and is provided with a mounting groove 16 and a yielding hole 17, and the yielding hole 17 is located above the water outlet 15. One end of the fixing plate 13 is in snap fit with the pressing plate 12, and the other end is fixed with the corresponding end of the main body 11 through a screw. The accessible sets up the clip on fixed plate 13, detains the clip and realizes buckle cooperation in clamp plate 12 tip, avoids taking place the phenomenon of face lid front end perk. The surface cover 14 is adhered to the surface of the fixing plate 13 by an adhesive technique and is located above the pressing plate 12 for covering the main body 11.
The connecting member 30 is installed at the water outlet 15 and is provided with a first outlet 31, a second outlet 32, an accommodating groove 33, an installation cavity 34, and the like. The first outlet 31 is located at the bottom of the installation cavity 34, and the side of the installation cavity 34 is provided with a water inlet 35. The second outlet 32 is located at the receiving groove 33, and the receiving groove 33 and the mounting cavity 34 are not communicated with each other.
The water outlet assembly 20 comprises a water inlet pipe 21 and a bubbler 22; the inlet pipe 21 is connected at one end to the inlet port 35 of the installation chamber 34 and further connected to the first outlet port 31, and the bubbler 22 is locked in the installation chamber 34 by screws.
The control assembly 50 includes a control valve 51, a sensing unit 52, a touch unit 53, a pump 54, a main control circuit 55, and the like. The touch unit 53 is located in the mounting groove 16, and the surface cover 14 is provided with a touch area which is in conductive contact with the touch unit 53. The sensing unit 52 is locked in the accommodating groove 33 by a clamping position, the probe of the sensing unit 52 faces downwards, i.e. the sensing area is located below the water outlet 15, and the sensing unit 52 is connected with the main control circuit 55 by a waterproof circuit 52 a. The control valve 51 is connected with the water inlet pipe 21 for controlling the on-off of the water outlet, and can adopt an electromagnetic valve.
The soap discharging assembly 40 includes a soap discharging pipe 41 and a soap solution tank 42, one end of the soap discharging pipe 41 is communicated with the second outlet 32, the other end is communicated with an outlet of a pump 54, an inlet of the pump 54 is communicated with the soap solution tank 42, and the pump 54 is used for pumping soap solution.
Referring to fig. 7 to 9, the main control circuit 55 further includes a power conversion unit 56, a driving circuit, an indicator light circuit, and an MPU 59. The driving circuit includes a first driving circuit 57a and a second driving circuit 57b, the MOTO terminal of the first driving circuit 57a is connected to the pump 54, and the SVO0_ ON and SVO0_ OFF terminals of the second driving circuit 57b are connected to the control valve 51. The indicator light circuit is provided with a plurality of water use countdown indicator lights 58 which are positioned below the face cover 14, and gradually extinguish the lights in the using process of the user to prompt the user to save water. The MPU59 is connected to the power conversion unit 56, the pump 54, the control valve 51, and the indicator circuit.
Referring to fig. 8, the AVCC terminal and the VCC terminal of the MPU59 are connected to the VIN terminal of the power conversion unit 56, and the PC1 and PC2 terminals thereof are connected to the control valve 51. The PB5 terminal is connected to the pump 54, in the peripheral circuit of FIG. 9, the J1 terminal is connected to the touch unit, the J2 terminal is connected to the sensing unit, the key terminal is connected to the PD2 terminal of the MPU59, and the IRV terminal is connected to pin 1 of the MPU.
The MPU59 can control water or soap to be discharged according to the sensing signal and the touch signal, which includes various situations, for example, water is controlled when the sensing signal is detected and the touch signal is not detected, soap is discharged when the sensing signal and the touch signal are detected, and soap is discharged when the touch signal is detected and the sensing signal is not detected.
The utility model discloses an induction element 52 is infrared induction unit or electromagnetic induction unit or near field induction unit, see fig. 10, and it still can be equipped with soap lye pilot lamp 52b, including waiting for the soap lye pilot lamp and getting the soap pilot lamp, this soap lye pilot lamp is located the hole 17 of stepping down of clamp plate 12 and locates, and the accessible sets up the colour of different light and distinguishes. The touch unit 53 is a resistive touch switch and a capacitive touch switch. The utility model discloses still be equipped with control box 60 and installation component 70. The control box 60 includes an upper cover 61 and a box body 62, and the main control circuit 55, the pump 54 and the control valve 51 are all located in the control box 60. The mounting assembly 70 is used to lock the valve body 10 to a table top and includes a fitting 71 and a retaining sleeve 72, among other things.
The utility model discloses the working process:
when the faucet is used, when water is required to be supplied to the faucet, a hand is extended to the position below the water outlet 15 and is located in a sensing area of the sensing unit 52, the sensing unit 52 receives sensing and sends a water supply signal to the main control circuit 55, the main control circuit 55 drives the electromagnetic valve to be opened, and water flows out of the first outlet 31. During the water outlet period, the sensing unit 52 controls the standby soap indicator to turn on until the touch area of the touch cover 14 is touched by the user to turn on the soap function, and then the standby soap indicator is turned off.
During the water outlet period, if the user does not need to use the soap lye function, after the hand leaves the sensing area of the sensing unit 52, the sensing unit 52 receives the signal and sends a water stop signal to the main control circuit 55, and the main control circuit 55 drives the electromagnetic valve to close to stop water outlet.
During water outlet, if the hand touches the touch area at the front end of the cover 14 lightly, the touch unit 53 receives the electrical signal and sends a water stop signal and a soap supply signal to the main control circuit 55, the first outlet 31 stops water outlet, and the second outlet 32 discharges soap liquid. After receiving the soap-feeding signal, the main control circuit 55 sends a signal to the sensing unit 52, and the soap-taking indicator lamp is turned on until the soap feeding is finished and then turned off.
In the case that water is not discharged, if a hand directly touches the touch area of the cover 14, the touch unit 53 receives the electrical signal and transmits a soap signal to the main control circuit 55. After receiving the soap feeding signal, the main control circuit 55 controls the pump 54 to pump the soap liquid, and the soap liquid flows out from the second outlet 32, and sends a signal to the sensing unit 52, and the soap taking indicator lamp is turned on until the soap feeding is finished and then turned off. The sensing unit 52 does not discharge water even if it receives the sensing signal within several seconds after the soap dispensing is finished. When the hand leaves the water outlet sensing unit 52 and is placed in the sensing area of the water outlet sensing unit 52 again, the first outlet 31 discharges water again.
Touch unit 53 has played the function of switching out water and play soap lye promptly, under the normal condition the utility model discloses tap acquiescence goes out water, and when touch unit 53 was activated, the tap goes out liquid once, and at a soap lye in-process, dabs many times still only goes out the soap lye once.
The above-mentioned be the utility model discloses a concrete implementation way, nevertheless the utility model discloses a design concept is not limited to this, and the ordinary use of this design is right the utility model discloses carry out immaterial change, all should belong to the act of infringement the protection scope of the utility model.

Claims (9)

1. The utility model provides a two unification taps, includes valve body, play water subassembly and control assembly, and this valve body is equipped with the delivery port, and this control assembly includes the control valve, and this control valve links to each other its characterized in that with a water subassembly: the soap box also comprises a connecting piece and a soap outlet component; the connecting piece is arranged at the water outlet and is provided with a first outlet, a second outlet and a containing groove, and the first outlet is communicated with the water outlet assembly; the soap outlet component is communicated with the second outlet; the control assembly further comprises an induction unit, a touch unit, a pump and a main control circuit, the induction unit is installed in the containing groove to detect induction signals, the touch unit is installed at the top of the valve body to detect the touch signals, the pump is connected with the soap outlet assembly, and the main control circuit is connected with the induction unit, the touch unit, the pump and the control valve to control water outlet or soap outlet according to the induction signals and the touch signals.
2. The two-in-one faucet of claim 1, wherein: the soap discharging component comprises a soap discharging pipe and a soap liquid tank, one end of the soap discharging pipe is communicated with the second outlet, the other end of the soap discharging pipe is communicated with the outlet of the pump, and the inlet of the pump is communicated with the soap liquid tank.
3. The two-in-one faucet of claim 1, wherein: the water outlet assembly comprises a water inlet pipe and a bubbler; the connecting piece is also provided with a mounting cavity which is communicated with the water inlet pipe and the first outlet; the bubbler is located within the mounting chamber.
4. The two-in-one faucet of claim 1, wherein: the valve body comprises a main body, a pressure plate, a fixing plate and a face cover; the main body is provided with the water outlet; the pressing plate is fixed on the main body and is provided with a mounting groove for accommodating the touch unit; one end of the fixing plate is in snap fit with the pressing plate, and the other end of the fixing plate is fixed with the main body; the face cover is arranged on the fixing plate and is provided with a touch area, and the touch area is in conductive contact with the touch unit.
5. The two-in-one faucet of claim 1, wherein: the main control circuit also comprises a power supply conversion unit, a driving circuit, an indicator light circuit and an MPU; the MPU is connected with a power supply conversion unit, the pump, the control valve and the indicator light circuit; the drive circuit is connected to the control valve and the pump.
6. The two-in-one faucet of claim 1, wherein: the induction unit is also provided with a soap liquid indicator lamp.
7. The two-in-one faucet of claim 1, wherein: the pump is characterized by also comprising a control box, wherein the master control circuit, the pump and the control valve are all positioned in the control box.
8. The two-in-one faucet of claim 1, wherein: the induction unit is an infrared induction unit, an electromagnetic induction unit or a near field induction unit.
9. The two-in-one faucet of claim 1, wherein: the touch unit is a resistance type touch switch and a capacitance type touch switch.
CN201920743390.XU 2019-05-22 2019-05-22 Two-in-one faucet Active CN209977389U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920743390.XU CN209977389U (en) 2019-05-22 2019-05-22 Two-in-one faucet

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920743390.XU CN209977389U (en) 2019-05-22 2019-05-22 Two-in-one faucet

Publications (1)

Publication Number Publication Date
CN209977389U true CN209977389U (en) 2020-01-21

Family

ID=69263691

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920743390.XU Active CN209977389U (en) 2019-05-22 2019-05-22 Two-in-one faucet

Country Status (1)

Country Link
CN (1) CN209977389U (en)

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