CN212775799U - Induction luminous faucet - Google Patents

Induction luminous faucet Download PDF

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Publication number
CN212775799U
CN212775799U CN202021399462.2U CN202021399462U CN212775799U CN 212775799 U CN212775799 U CN 212775799U CN 202021399462 U CN202021399462 U CN 202021399462U CN 212775799 U CN212775799 U CN 212775799U
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water
water outlet
light
pipe
faucet
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CN202021399462.2U
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Chinese (zh)
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吴岩弟
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Caizhan Lighting Shenzhen Co ltd
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Caizhan Lighting Shenzhen Co ltd
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Abstract

The utility model discloses a luminous tap of response, luminous tap of response includes: a housing; the water delivery pipe is arranged in the shell, and the water inlet end of the water delivery pipe is connected with a preset water pipe; the sensor is arranged on the shell and connected with the water conveying pipe, and is used for controlling the water outlet and water closing of the water conveying pipe; the light-emitting module is arranged on the shell and connected with the sensor, and the light-emitting module is used for emitting light when the sensor controls the water outlet of the water conveying pipe. The utility model provides a luminous tap of response passes through set up inductor and light emitting module on the casing and realize that tap is automatic to go out water and accurate illumination after the response is opened, energy-concerving and environment-protective helps user's sanitization article or hand.

Description

Induction luminous faucet
Technical Field
The utility model relates to a tap technical field especially relates to an induction light-emitting tap.
Background
The traditional tap used on the market is various in types, and the induction tap is not few in types. However, the faucet in the prior art is only used for sensing water, for example, the user can output water when the hand approaches the faucet. In a dark environment (such as night), if there is no light, the user cannot know whether the washing is clean or not, which affects the user's use.
Thus, there is a need for improvements and enhancements in the art.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model lies in, to the above-mentioned defect of prior art, provide an induction light-emitting faucet, aim at solving among the prior art in the environment of dark (for example night), if do not have light, the user can't know whether sanitization, influences user's use problem.
In order to solve the technical problem, the utility model discloses the technical scheme who adopts as follows:
the utility model provides a luminous tap of response, wherein, luminous tap of response includes: a housing; the water delivery pipe is arranged in the shell, and the water inlet end of the water delivery pipe is connected with a preset water pipe; the sensor is arranged on the shell and connected with the water conveying pipe, and is used for controlling the water outlet and water closing of the water conveying pipe; the light-emitting module is arranged on the shell and connected with the sensor, and the light-emitting module is used for emitting light when the sensor controls the water outlet of the water conveying pipe.
In one embodiment, the sensor and the light emitting module are disposed at one side of the water outlet end of the water pipe.
In one embodiment, the inductor and the light emitting module are located on the same plane on the housing.
In one embodiment, the water outlet end of the water pipe is provided with a branched water outlet structure, and the branched water outlet structure and the water pipe form a Y-shaped structure.
In one embodiment, the housing is provided with a water outlet hole, and the water outlet hole corresponds to the branched water outlet structure.
In one embodiment, the water outlet holes are disposed at two sides of the sensor and the light emitting module.
In one embodiment, a control module is disposed in the housing, the control module is connected to both the sensor and the light emitting module, and the control module is connected to a predetermined power supply device.
In one embodiment, the housing includes a vertical section and a curved section, the water outlet end of the water pipe is disposed on the curved section, and the water outlet direction of the curved section is away from the vertical section.
In one embodiment, the light emitting module is an LED lamp.
The utility model has the advantages that: compared with the prior art, the induction luminous faucet of the utility model comprises a shell; the water delivery pipe is arranged in the shell, and the water inlet end of the water delivery pipe is connected with a preset water pipe; the sensor connected with the water pipe and the light-emitting module connected with the sensor are arranged on the shell, the light-emitting module is used for emitting light when the sensor controls the water outlet of the water pipe, and the light-emitting module is turned off when the sensor controls the water outlet of the water pipe. For traditional response tap, the utility model discloses a response light-emitting tap convenience of customers washs under the environment of dark (for example night) and the condition that does not have the light, and is more energy-concerving and environment-protective, helps user's sanitization article or hand.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments described in the present invention, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
Fig. 1 is a schematic structural view of an induction light-emitting faucet provided by the present invention;
fig. 2 is a schematic view of the rear view of the induction luminous faucet according to the present invention;
fig. 3 is a schematic diagram of the right side view of the induction luminous faucet provided by the present invention;
fig. 4 is a schematic view of the front view of the induction luminous faucet according to the present invention;
in the figure: 10. a water outlet hole; 20. a light emitting module; 30. an inductor; 40. a water delivery pipe; 50. a water inlet end; 60. presetting a power supply device; 70. a control module; 80. the induction head and the illuminating lamp block; 90. a bifurcated water outlet structure; 100. a housing.
Detailed Description
In order to make the objects, technical solutions and effects of the present invention clearer and clearer, the following description of the present invention will refer to the accompanying drawings and illustrate embodiments. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the invention.
It should be noted that, if directional indications (such as upper, lower, left, right, front and rear … …) are involved in the embodiment of the present invention, the directional indications are only used to explain the relative position relationship between the components, the motion situation, etc. in a specific posture (as shown in the drawings), and if the specific posture is changed, the directional indications are changed accordingly.
In the prior art, a faucet basically senses water, for example, water is discharged when a user's hand approaches the faucet. When the user is in a dark environment (such as at night), if no light exists, the user can continue to use water to waste water under the condition that articles or hands are washed clean; another situation is that the user finishes washing when the articles or hands are not washed clean, so that the articles and hands of the user still remain dirty, which affects the use experience of the user.
In order to solve the problems of the prior art, the present embodiment provides an induction lighting faucet, as shown in fig. 1, including: a housing 100; in practical applications, the housing 100 of the induction lighting faucet is mounted on a wash stand. In addition, the induction luminous faucet further includes: the water conveying pipe 40 is arranged in the shell 100, and the water inlet end 50 of the water conveying pipe 40 is connected with a preset water pipe; the sensor 30 is arranged on the shell 100 and connected with the water conveying pipe 40, and the sensor 30 is used for controlling the water outlet and water closing of the water conveying pipe 40; the light emitting module 20 is disposed on the housing 100 and connected to the sensor 30, and the light emitting module 20 is configured to emit light when the sensor 30 controls the water outlet of the water pipe 40. In one embodiment, a water duct 40 (shown in fig. 2) is provided within the housing 100, when the application is specific; the water inlet end 50 of the water conveying pipe 40 is connected with a preset water pipe; in one embodiment, an inductor 30 connected to the water pipe 40 is disposed on the housing 100, and the inductor 30 is used for controlling the water outlet and the water closing of the water pipe 40; in one embodiment, the sensor 30 may be provided with an indicator light for indicating whether the sensor 30 is operating. In addition, a light emitting module 20 connected to the sensor 30 is disposed on the housing 100, and the light emitting module 20 is configured to emit light when the sensor 30 controls the water outlet of the water pipe 40. In this embodiment, the induction luminous water outlet of the induction luminous faucet is realized by arranging the inductor 30 and the luminous module 20 on the housing 100. Specifically, the housing 100 in this embodiment is provided with an inductor 30 connected to the water pipe 40, and the inductor 30 is used for controlling the water outlet and the water closing of the water pipe 40; set up on casing 100 with light-emitting module 20 that inductor 30 is connected, light-emitting module 20 is used for inductor 30 control give out light when the play water of raceway 40, for traditional response tap, the utility model discloses a response light-emitting tap convenience of customers washs under the environment of dark (for example night) and the condition that does not have the light, and is more energy-concerving and environment-protective, helps user's sanitization article or hand.
The inductor 30 and the light emitting module 20 are arranged on one side of the water outlet end of the water pipe 40; since the inductor 30 and the light emitting module 20 in this embodiment are both disposed on the housing 100, and the inductor 30 and the light emitting module 20 are disposed on one side of the water outlet end of the water pipe 40, in an embodiment, the inductor 30 and the light emitting module 20 are disposed in an up-down structure, a left-right structure, or a manner that the inductor 30 is nested inside the light emitting module 20, or a manner that the light emitting module 20 is nested inside the inductor 30, in this embodiment, the inductor 30 and the light emitting module 20 are disposed in a left-right structure, and achieve a good fit with the space on one side of the water outlet end of the water pipe 40. The sensor 30 can accurately sense the hand or the object near the water outlet end, and when the sensor 30 senses the hand or the object, the water pipe 40 is controlled to discharge water, and at the moment, the light emitted by the light emitting module 20 just irradiates the hand or the object of the user at the water outlet end, so that the user can see whether the hand or the object is cleaned or not.
The inductor 30 and the light emitting module 20 are located on the same plane of the housing 100.
Specifically, the inductor 30 and the light emitting module 20 are located on the same plane on one side of the housing 100, which facilitates the synchronous operation of the inductor 30 and the light emitting module 20. The plane in this embodiment may be a horizontal plane, an arc surface, or a concave-convex curved surface. In the embodiment, the plane is a horizontal plane, so that materials used for designing the plane can be saved, and the appearance is more simplified. In addition, the shape of the plane where the inductor 30 and the light emitting module 20 are located may be a circle or a square, which may be actually present; in this embodiment, the plane where the inductor 30 and the light emitting module 20 are located is a rectangle, and the lateral side length is greater than the longitudinal side length, and the rectangular plane has enough space, so as to facilitate the arrangement of various inductors 30.
In one implementation, the water outlet end of the water pipe 40 is provided with a branched water outlet structure 90, and the branched water outlet structure 90 and the water pipe 40 form a Y-shaped structure. A water outlet hole 10 is formed in the housing 100, and the water outlet hole 10 corresponds to the branched water outlet structure 90.
Specifically, the water outlet end of the water pipe 40 is provided with a branched water outlet structure 90, and the branched water outlet structure 90 and the water pipe 40 form a Y-shaped structure. The water from the water outlet end is divided into two parts to form two water flows, wherein the two water flows can be set to be equal or unequal in size; in this embodiment, the two water flows from the water outlet end have the same size, so that the water flows from the two sides are uniform. In practice, considering that the water outlet hole 10 corresponds to two water flows from the branched water outlet structure 90, the water outlet hole 10 is arranged in two corresponding parts; correspondingly, a water outlet hole 10 is formed in the housing 100, as shown in fig. 3, the water outlet hole 10 corresponds to the branched water outlet structure 90, and the sensor head and the lighting lamp block 80 are disposed in the housing 100; wherein, the water outlet hole 10 can be arranged in a circle, a square or other shapes which may occur in practice; in this embodiment, the water outlet hole 10 is configured to be circular, so as to facilitate smooth outflow of water. For example, the water outlet hole 10 may be provided as a single hole or a plurality of fine holes; in this embodiment, the water outlet hole 10 is provided with a plurality of fine holes, the fine holes have small water flow, large water pressure and high water outlet turbulence; moreover, the water is discharged from the plurality of fine holes simultaneously, so that the water is uniformly discharged, and hands or articles are easier to clean. In one embodiment, the water outlet holes 10 are disposed on two sides of the sensor 30 and the light emitting module 20. Specifically, considering that the branched water outlet structure 90 divides water in the water pipe 40 into two parts to be output, and then the two parts are discharged through the corresponding water outlet holes 10, in order to increase the water outlet area, the water outlet holes 10 are also arranged into two parts, wherein the two parts of the water outlet holes 10 may be arranged at the inner sides of the sensor 30 and the light emitting module 20, may be arranged in a nested manner with the sensor 30 and the light emitting module 20, and may be arranged at two sides of the sensor 30 and the light emitting module 20; in this embodiment, the two parts of the water outlet hole 10 are disposed at two sides of the sensor 30 and the light emitting module 20, so that the area of water radiation from the water outlet hole 10 is large, the cleaning speed is accelerated, and the purpose of saving water is achieved.
In one implementation manner, a control module 70 is disposed in the housing 100, the control module 70 is connected to both the inductor 30 and the light emitting module 20, and the control module 70 is connected to a preset power supply device 60.
Specifically, in order to achieve better control over the inductor 30 and the light emitting module 20, a control module 70 is disposed in the housing 100, as shown in fig. 2, the control module 70 is connected to a preset power supply device 60; in one embodiment, the control module 70 is connected to the sensor 30, and the sensor 30 can be connected to a water outlet module for controlling the water outlet of the water pipe 40 when the sensor 30 senses the hand and the object. When the sensor 30 is used for specific applications, the sensor transmits a sensed signal to the control module 70, the control module 70 switches on the light emitting module 20 and the water outlet module after receiving the signal, and the control module 70 is connected in series with the light emitting module 20 and the water outlet module, so that the control module 70 synchronously controls light and water outlet. In another embodiment, the control module 70 is connected to the sensor 30, the control module 70 may be connected to the light emitting module 20 through an individual switch a to form a first branch, the control module 70 may be connected to the water outlet module through an individual switch b to form a second branch, the first branch and the second branch are connected in parallel, the sensor 30 transmits the sensed signal to the control module 70, and after receiving the signal, the control module 70 may control the light emitting module 20 and the water outlet module by switching the switches at the same time, or may control the switches a and b to be closed respectively.
The shell 100 comprises a vertical section and a curved section, the water outlet end of the water pipe 40 is arranged at the curved section, and the water outlet direction of the curved section is far away from the vertical section.
In one implementation, the housing 100 includes a vertical section and a curved section, as shown in fig. 4, wherein a water outlet end may be disposed at the vertical section, and a water outlet end may also be disposed at the curved section, in this embodiment, the water outlet end of the water pipe 40 is disposed at the curved section, and water flows out along a direction that the water outlet hole 10 corresponding to the water outlet end is inclined downward, that is, the water outlet direction of the curved section is far away from the vertical section, so that a user does not need to extend a hand or an article far to receive water, and the irradiation direction of the LED lamp is also along the inclined downward direction, so that the irradiation area of the lamp light on the hand or the article is correspondingly increased, and the user can clearly see the hand or the article to be cleaned. Specifically, the water outlet direction of the curved section is far away from the vertical section, and dirty water generated when a user cleans hands or objects is not easy to splash to the vertical section of the casing 100.
The light emitting module is an LED lamp.
When the sensor 30 controls the water delivery pipe 40 to stop water, the water delivery pipe is turned off, that is, the light emitting module 20 and the water delivery pipe 40 are synchronously controlled by the sensor 30; in this embodiment, the light emitting module 20 is an LED lamp, which has the advantages of using a low voltage power supply, consuming less energy, having strong applicability, high stability, short response time, no environmental pollution, and emitting light in multiple colors.
To sum up, the utility model discloses a luminous tap of response, luminous tap of response includes: a housing; the water delivery pipe is arranged in the shell, and the water inlet end of the water delivery pipe is connected with a preset water pipe; the sensor is arranged on the shell and connected with the water conveying pipe, and is used for controlling the water outlet and water closing of the water conveying pipe; the light-emitting module is arranged on the shell and connected with the sensor, and the light-emitting module is used for emitting light when the sensor controls the water outlet of the water conveying pipe. The utility model provides a luminous tap of response passes through set up inductor and light emitting module on the casing and realize that tap is automatic to go out water and accurate illumination after the response is opened, energy-concerving and environment-protective helps user's sanitization article or hand.
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solution of the present invention, and not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; such modifications and substitutions do not depart from the spirit and scope of the present invention in its corresponding aspects.

Claims (9)

1. An induction light faucet, comprising: a housing; the water delivery pipe is arranged in the shell, and the water inlet end of the water delivery pipe is connected with a preset water pipe; the sensor is arranged on the shell and connected with the water conveying pipe, and is used for controlling the water outlet and water closing of the water conveying pipe; the light-emitting module is arranged on the shell and connected with the sensor, and the light-emitting module is used for emitting light when the sensor controls the water outlet of the water conveying pipe.
2. The induction lighting faucet of claim 1, wherein the inductor and the lighting module are disposed at one side of the water outlet end of the water pipe.
3. The induction lighting faucet of claim 2, wherein said inductor is located in the same plane on said housing as said lighting module.
4. The induction light-emitting faucet of claim 2, wherein a water outlet end of the water pipe is provided with a branched water outlet structure, and the branched water outlet structure and the water pipe form a Y-shaped structure.
5. The induction luminous faucet of claim 4, wherein the housing is provided with a water outlet hole, and the water outlet hole corresponds to the branched water outlet structure.
6. The induction lighting faucet of claim 5, wherein the water outlet is disposed on both sides of the inductor and the lighting module.
7. The induction light faucet of claim 1, wherein a control module is disposed within the housing, the control module is connected to both the inductor and the light module, and the control module is connected to a predetermined power supply.
8. The induction light-emitting faucet of claim 1, wherein the housing comprises a vertical section and a curved section, the water outlet end of the water pipe is disposed at the curved section, and the water outlet direction of the curved section is away from the vertical section.
9. The induction lighting faucet of claim 1, wherein the lighting module is an LED lamp.
CN202021399462.2U 2020-07-15 2020-07-15 Induction luminous faucet Active CN212775799U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021399462.2U CN212775799U (en) 2020-07-15 2020-07-15 Induction luminous faucet

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021399462.2U CN212775799U (en) 2020-07-15 2020-07-15 Induction luminous faucet

Publications (1)

Publication Number Publication Date
CN212775799U true CN212775799U (en) 2021-03-23

Family

ID=75079328

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021399462.2U Active CN212775799U (en) 2020-07-15 2020-07-15 Induction luminous faucet

Country Status (1)

Country Link
CN (1) CN212775799U (en)

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