Novel faucet
By designing a new faucet that includes direct drinking water components and tap water components, automatic switching is achieved using a timed solenoid valve and infrared sensor, and equipped with an ultraviolet disinfection device, the problem that faucets in public places cannot meet the needs of tap water and direct drinking water at the same time, and the rational utilization of resources and the reduction of bacterial contamination are achieved.
Patent Information
- Application Number
- CN202422008223.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-16
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-08-16
AI Technical Summary
Existing faucets cannot meet the needs of tap water and direct drinking water in public places, resulting in waste of resources and bacterial contamination.
A new faucet is designed, including direct drinking water assembly and tap water assembly, automatic switching is achieved through a timed solenoid valve and infrared sensor. The direct drinking water assembly is equipped with an ultraviolet disinfection device to reduce bacterial contamination.
The rational use of resources is achieved, and users can automatically switch to use tap water or direct drinking water as needed, reducing resource waste and bacterial contamination.
Smart Images

Figure CN222864213U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of faucets, in particular to a new type of faucet. Background Art
[0002] Faucets are common water-taking devices in life. Their function is to facilitate people to use water in daily life, such as washing hands, washing faces, washing vegetables, etc. At the same time, some direct drinking water faucets are usually installed in public places such as shopping malls and parks to provide people with drinking water services. However, there are some difficult-to-solve problems with common faucet equipment: 1. Direct drinking water faucets are separately installed in public places. People will use direct drinking water faucets to wash hands and faces, etc., which will cause a waste of resources in the long run. If tap water faucets are separately installed in public places, they cannot be drunk directly. Therefore, there is a lack of a faucet that combines tap water and direct drinking water; 2. Direct drinking water faucets are used in public places, and usually there are no disinfection measures. After a period of use, they may be covered with dust and bacteria. Utility Model Content
[0003] In view of the above, the utility model provides a new type of faucet to solve the problems raised in the above background technology.
[0004] The technical solution adopted by the utility model to solve its technical problems is: a new type of faucet, including a device body, a water delivery pipeline, the water outlet of the water delivery pipeline is connected with the water inlet of the device body, the device body includes a direct drinking water component and a tap water component, the direct drinking water component is located at the upper end of the tap water component, the direct drinking water component and the tap water component are integrally formed and staggered, the direct drinking water component includes a direct drinking water faucet for transporting direct drinking water, a timing solenoid valve for timing closing the direct drinking water faucet, and a disinfection component for disinfecting the direct drinking water faucet, the timing solenoid valve is located at the water inlet of the direct drinking water faucet, and the disinfection component is located at the water outlet of the direct drinking water faucet, which includes an internal A hollow and retractable micro electric telescopic rod, a cavity for storing the retracted micro electric telescopic rod, a hose connected to a direct drinking water faucet is arranged inside the micro electric telescopic rod, an ultraviolet disinfection lamp for disinfecting the micro electric telescopic rod and the hose is arranged inside the cavity, an openable and closable cover is arranged at the top of the outside of the cavity, and a motor for driving the cover to open or close is arranged at the connection between the cover and the cavity; the tap water component includes a tap for transporting tap water, an infrared sensor for sensing the position of the human body, and a solenoid valve for opening or closing the tap, the solenoid valve is located at the water inlet of the tap, and the output end of the infrared sensor is connected to the input end of the solenoid valve.
[0005] Furthermore, a switch is provided on the direct drinking water component, and the output end of the switch is connected to the input end of the timing solenoid valve. The timing solenoid valve is opened by the switch, and then the direct drinking water is output.
[0006] Furthermore, the output end of the timing solenoid valve is connected to the input end of the micro electric telescopic rod and the input end of the motor respectively. After the timing solenoid valve is opened, the micro electric telescopic rod extends and the motor drives the cover to open.
[0007] Furthermore, the water supply pipeline includes a direct drinking water pipeline for transporting direct drinking water and a tap water pipeline for transporting tap water. The water outlet of the direct drinking water pipeline is connected to the water inlet of the direct drinking water faucet, the water outlet of the tap water pipeline is connected to the water inlet of the tap water faucet, the direct drinking water pipeline is connected to an external pipeline that has been treated and can be directly drunk, and the tap water pipe is connected to an external pipeline for transporting tap water.
[0008] Furthermore, a power cord connected to an external power source is provided on the main body of the device, and the output end of the power cord is respectively connected to the input end of the direct drinking water component and the input end of the tap water component. When the power is turned on, electrical energy is provided to the direct drinking water component and the tap water component.
[0009] Furthermore, the timing solenoid valve has a timing closing time of 10-20 seconds. The timing solenoid valve is opened by a switch, and the timing solenoid valve is automatically closed after being opened for 10-20 seconds.
[0010] Furthermore, the infrared sensor has a sensing distance of 10-15 cm. When a human body is 10-15 cm close to the infrared sensor, the solenoid valve automatically opens.
[0011] Furthermore, the direct drinking water component 2 and the tap water component 3 are staggered at an angle of 30-60 degrees, and are staggered at a certain angle so as not to affect each other during use.
[0012] The beneficial effects of the utility model are: 1. The main body of the device includes a direct drinking water faucet and a tap water faucet. If you need to drink, turn on the direct drinking water faucet. If you need to wash your hands or face, the tap water faucet will be automatically sensed and used, thereby realizing the rational utilization of resources; 2. The water outlet of the direct drinking water faucet will automatically shrink when not in use, and ultraviolet disinfection will be performed to reduce dust and bacteria on the water outlet of the direct drinking water faucet. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 It is a schematic diagram of the folded structure of the utility model.
[0014] Figure 2 It is a structural schematic diagram of the utility model.
[0015] Figure 3 It is a partial schematic diagram of the direct drinking water component of the utility model.
[0016] exist Figure 1-Figure 3Among them, 1. device body; 101. direct drinking water pipe; 102. tap water pipe; 103. power cord; 2. direct drinking water component; 201. direct drinking water faucet; 202. timing solenoid valve; 203. micro electric telescopic rod; 204. hose; 205. cavity; 206. ultraviolet disinfection lamp; 207. cover; 208. motor; 209. switch; 3. tap water component; 301. tap water faucet; 302. infrared sensor; 303. solenoid valve. DETAILED DESCRIPTION
[0017] The utility model is further described below in conjunction with the accompanying drawings and some implementation methods.
[0018] exist Figure 1-Figure 3In the invention, a novel faucet comprises a device body 1 and a water delivery pipeline, wherein the water outlet of the water delivery pipeline is connected to the water inlet of the device body 1, the device body 1 comprises a direct drinking water component 2 and a tap water component 3, the direct drinking water component 2 is located at the upper end of the tap water component 3, the direct drinking water component 2 and the tap water component 3 are integrally formed and staggered, the direct drinking water component 2 comprises a direct drinking water faucet 201 for transporting direct drinking water, a timing solenoid valve 202 for timing closing the direct drinking water faucet 201, and a disinfection component for disinfecting the direct drinking water faucet 201, the timing solenoid valve 202 is located at the water inlet of the direct drinking water faucet 201, and the timing solenoid valve 202 is arranged at the water inlet of the direct drinking water faucet 201. When the timing solenoid valve 202 is opened, direct drinking water is output, and when the timing solenoid valve 202 is closed, the direct drinking water stops outputting. The disinfection component is located at the outlet of the direct drinking water faucet 201, and includes a micro electric telescopic rod 203 which is hollow inside and can be retracted, and a cavity 205 for storing the retracted micro electric telescopic rod 203. A hose 204 connected to the direct drinking water faucet 201 is arranged inside the micro electric telescopic rod 203. The hose 204 is made of a material such as silicone with high elasticity. When the micro electric telescopic rod 203 is retracted, the hose 204 is driven to retract. An ultraviolet disinfectant for disinfecting the micro electric telescopic rod 203 and the hose 204 is arranged inside the cavity 205. The ultraviolet disinfection lamp 206 is always on to disinfect and sterilize the retracted micro-electric telescopic rod 203 and the hose 204. An openable and closable cover 207 is provided at the top of the cavity 205. A motor 208 is provided at the connection between the cover 207 and the cavity 205 to drive the cover 207 to open or close. If the timing solenoid valve 202 is opened, the motor 208 drives the cover 207 to open, and the micro-electric telescopic rod 203 extends out of the cavity, and then the direct drinking water passes through the direct drinking water faucet 201 and is output from the hose 204. If the timing solenoid valve 202 is closed, the micro-electric telescopic rod 203 drives the The hose 204 shrinks into the cavity, and the motor 208 drives the cover 207 to close; the tap water component 3 includes a tap faucet 301 for transporting tap water, an infrared sensor 302 for sensing the position of the human body, and a solenoid valve 303 for opening or closing the tap faucet 301. The solenoid valve 303 is located at the water inlet of the tap faucet 301, and the output end of the infrared sensor 302 is connected to the input end of the solenoid valve 303. When it is close to the infrared sensor 302, the solenoid valve 303 opens, and the tap water is output through the tap faucet 301. When it is far away from the infrared sensor 302, the solenoid valve 303 is closed, and the tap water stops being output.
[0019] In this embodiment, a switch 209 is provided on the direct drinking water component 2, and the output end of the switch 209 is connected to the input end of the timing solenoid valve 202. The timing solenoid valve 202 is opened or closed by the switch 209, and then the direct drinking water is output through the direct drinking water faucet 201.
[0020] In this embodiment, the output end of the timing solenoid valve 202 is respectively connected to the input end of the micro electric telescopic rod 203 and the input end of the motor 208. After the solenoid valve 303 is opened, the micro electric telescopic rod 203 extends, and the motor 208 drives the cover body 207 to open. After the timing solenoid valve 202 is closed, the micro electric telescopic rod 203 shortens, and the motor 208 drives the cover body 207 to close.
[0021] In this embodiment, the water supply pipeline includes a direct drinking water pipeline 101 for transporting direct drinking water and a tap water pipeline 102 for transporting tap water. The water outlet of the direct drinking water pipeline 101 is connected to the water inlet of the direct drinking water faucet 201, the water outlet of the tap water pipeline 102 is connected to the water inlet of the tap water faucet 301, the direct drinking water pipeline 101 is connected to an external pipeline that has been treated and can be directly drunk, and the tap water pipe is connected to an external pipeline for transporting tap water.
[0022] In this embodiment, a power cord 103 connected to an external power supply is provided on the device body 1. The output end of the power cord 103 is respectively connected to the input end of the direct drinking water component 2 and the input end of the tap water component 3. The power cord 103 is respectively connected to the timing solenoid valve 202, the micro electric telescopic rod 203, the motor 208, the ultraviolet disinfection lamp 206, the infrared sensor 302, the solenoid valve 303, and the switch 209. When the power is turned on through the power cord 103, electrical energy is provided to the direct drinking water component 2 and the tap water component 3 to enable them to work normally.
[0023] In this embodiment, the timer solenoid valve 202 is closed for a period of 10-20 seconds. The timer solenoid valve 202 is opened by the switch 209, and the timer solenoid valve 202 is automatically closed after being opened for 10-20 seconds.
[0024] In this embodiment, the sensing distance of the infrared sensor 302 is 10-15 cm. When the human body is 10-15 cm close to the infrared sensor 302, the solenoid valve 303 automatically opens. When the human body is more than 10-15 cm away from the infrared sensor 302, the solenoid valve 303 automatically closes.
[0025] In this embodiment, the direct drinking water component 2 and the tap water component 3 are staggered at an angle of 30-60 degrees, and are staggered at a certain angle so as not to affect each other during use.
[0026] In this embodiment, the infrared sensor 302 is a common sensing element, such as Melexis MLX90640.
[0027] In this embodiment, the motor 208 is a common rotating motor device, such as a GB / T4831-2016 model, a Y160M-4 model rotating motor, etc.
[0028] In this embodiment, the micro electric telescopic rod 203 is a common electric telescopic device, such as HB-DJ806, HTKC-55, NKLA34, etc.
[0029] In this embodiment, the ultraviolet disinfection lamp 206 is a common ultraviolet sterilization lamp, such as a G4T5 GL4 model, a LYD-DL5609 model ultraviolet lamp, and the like.
[0030] In this embodiment, the timing solenoid valve 202 is a common time-delay switch device, such as a 2v025-08 series solenoid valve.
[0031] In this embodiment, the solenoid valve 303 is a common solenoid valve device, such as a 4V series solenoid valve.
[0032] In this embodiment, the control circuit of the utility model is a common circuit in the circuit field. The device of the utility model can be connected to an external power supply or a built-in battery through a power cord to provide power for the device. Technicians in the relevant technical field can implement it and will not be elaborated here.
[0033] The utility model is implemented as follows: when using, when tap water is needed for washing hands or other operations, just approach the infrared sensor 302. When the distance to the infrared sensor 302 is 10-15 cm, the solenoid valve 303 is opened, and tap water is output through the tap 301. When the distance to the infrared sensor 302 exceeds 10-15 cm, the solenoid valve 303 is closed, and the tap water stops outputting. When drinking direct drinking water is needed, the switch 209 is turned on, and then the timing solenoid valve 202 is opened, and at the same time, the motor 208 drives the cover 207 to open, and the micro electric telescopic rod 203 is extended from the cavity, and then the direct drinking water passes through the faucet 301. The direct drinking water is output from the hose 204 through the direct drinking water faucet 201, and the switch 209 is pressed again, then the timing solenoid valve 202 is closed, the micro electric telescopic rod 203 drives the hose 204 to shrink into the cavity, and the motor 208 drives the cover 207 to close. If the switch 209 is not pressed, the direct drinking water is output 10-20 seconds later, the timing solenoid valve 202 is automatically closed, the micro electric telescopic rod 203 drives the hose 204 to shrink into the cavity, the motor 208 drives the cover 207 to close, and the ultraviolet disinfection lamp 206 in the cavity is in a constantly on state, and the retracted micro electric telescopic rod 203 and the hose 204 are disinfected.
[0034] It is worth noting that: in the description of the present utility model, the meaning of "multiple" is two or more than two, unless otherwise clearly defined. In the present utility model, unless otherwise clearly defined and defined, the terms "install", "connect", "connect", "fix" and the like should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection. For ordinary technicians in this field, the specific meanings of the above terms in the present utility model can be understood according to the specific circumstances.
[0035] It is obvious to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the present invention can be implemented in other specific forms without departing from the spirit or essential features of the present invention. Therefore, the embodiments should be considered exemplary and non-restrictive from any point of view, and the scope of the present invention is defined by the appended claims rather than the above description, and it is intended that all changes that fall within the meaning and scope of the elements of the claims be included in the present invention. Any reference numeral in a claim should not be considered as limiting the claim to which it relates.
Claims
1. A new type of faucet, comprising a device body and a water delivery pipeline, wherein the water outlet of the water delivery pipeline is connected to the water inlet of the device body, and is characterized in that: The main body of the device includes a direct drinking water component and a tap water component. The direct drinking water component is located at the upper end of the tap water component. The direct drinking water component and the tap water component are integrally formed and staggered. The direct drinking water component includes a direct drinking water faucet for transporting direct drinking water, a timing solenoid valve for timing the closing of the direct drinking water faucet, and a disinfection component for disinfecting the direct drinking water faucet. The timing solenoid valve is located at the water inlet of the direct drinking water faucet. The disinfection component is located at the water outlet of the direct drinking water faucet. It includes a micro electric telescopic rod that is hollow inside and can be retracted, and a cavity for storing the retracted micro electric telescopic rod. A hose connected to the direct drinking water faucet is arranged inside the micro electric telescopic rod. An ultraviolet disinfection lamp for disinfecting the micro electric telescopic rod and the hose is arranged inside the cavity. An openable and closable cover is arranged at the top of the outside of the cavity. A motor that drives the cover to open or close is arranged at the connection between the cover and the cavity; The tap water component includes a tap water faucet for transporting tap water, an infrared sensor for sensing the position of a human body, and a solenoid valve for opening or closing the tap water faucet. The solenoid valve is located at the water inlet of the tap water faucet, and the output end of the infrared sensor is connected to the input end of the solenoid valve.
2. A new type of faucet according to claim 1, characterized in that: The direct drinking water component is provided with a switch, and the output end of the switch is connected to the input end of the timing solenoid valve.
3. A new type of faucet according to claim 1, characterized in that: The output end of the timing solenoid valve is connected to the input end of the micro electric telescopic rod and the input end of the motor respectively.
4. A new type of faucet according to claim 1, characterized in that: The water delivery pipeline includes a direct drinking water pipeline for transporting direct drinking water and a tap water pipeline for transporting tap water. The water outlet of the direct drinking water pipeline is connected to the water inlet of the direct drinking water faucet, and the water outlet of the tap water pipeline is connected to the water inlet of the tap water faucet.
5. The new faucet according to claim 1 is characterized in that: The device body is provided with a power line connected to an external power source, and the output end of the power line is respectively connected to the input end of the direct drinking water component and the input end of the tap water component.
6. The novel faucet according to claim 1 is characterized in that: The time for the timing electromagnetic valve to close is 10-20 seconds.
7. A new type of faucet according to claim 1, characterized in that: The infrared sensor has a sensing distance of 10-15 cm.
8. The novel faucet according to claim 1 is characterized in that: The direct drinking water component and the tap water component are staggered at an angle of 30-60 degrees.