Pipeline machine without water tank and purified drinking system

By using a tankless design and a rationally laid-out tankless pipeline machine, the problem of insufficient installation flexibility caused by the large size of pipeline machines has been solved, achieving miniaturization and convenient installation, and improving the space utilization efficiency and water quality safety of the equipment.

CN224050628UActive Publication Date: 2026-03-27FOSHAN SHUNDE MIDEA WATER DISPENSER MFG +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-20
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

The existing water purifier pipeline machines are relatively large in size, resulting in insufficient installation flexibility and difficulty in adapting to various installation scenarios.

Method used

The design of the tankless water dispenser adopts a tankless structure. In the water system, the first inlet solenoid valve, negative pressure valve and water pump are arranged along one side of the shell length direction. The water pump is set in the same direction as the shell height direction. Combined with the reasonable layout of the instant heating device and electrical control device, a flat design is formed to reduce the footprint.

Benefits of technology

It achieves miniaturization of the pipeline machine, saves internal space, improves assembly convenience, reduces energy consumption, prevents bacterial growth, ensures water quality safety, and simplifies maintenance operations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a water-tank-free pipeline machine and a purified drinking system.The water-tank-free pipeline machine comprises a shell and a water path system, and the shell is provided with a water inlet and a water outlet nozzle; the water path system is arranged in the shell and located between the water inlet and the water outlet nozzle. The water path system at least comprises a first water inlet electromagnetic valve, a negative pressure valve and a water pump. Wherein the first water inlet electromagnetic valve, the negative pressure valve and the water pump are sequentially arranged in a communicating mode in the flowing direction of water flow, the first water inlet electromagnetic valve and the negative pressure valve are both located on the side, in the length direction of the shell, of the water pump, and the length direction of the water pump and the height direction of the shell are arranged in the same direction. According to the technical scheme, space can be saved, and miniaturization and assembly convenience of the pipeline machine are facilitated.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of pure drinking water systems, and in particular to a water tank-free pipeline machine and a pure drinking water system. BACKGROUND

[0002] With the continuous improvement of people's living standards, people's requirements for water quality are also getting higher and higher. Therefore, water purification equipment is widely used in homes, offices, schools and other places. Among them, the water purification equipment usually includes a water purifier and a pipeline machine. The pipeline machine is connected with the water purifier, and the pipeline machine can heat or cool the water flowing out of the water purifier, so that the user can drink according to the demand.

[0003] However, in the related art, the pipeline machine has the problem of large overall size. This defect leads to insufficient flexibility during installation, making it difficult to well adapt to various installation scenarios. CONTENT OF THE UTILITY MODEL

[0004] The present application provides a water tank-free pipeline machine and a pure drinking water system, which can save space and facilitate the miniaturization and assembly of the pipeline machine.

[0005] The present application provides a water tank-free pipeline machine, which comprises:

[0006] a housing having a water inlet and a water outlet nozzle; and

[0007] a waterway system arranged in the housing and located between the water inlet and the water outlet nozzle, the waterway system comprising at least a first water inlet electromagnetic valve, a negative pressure valve and a water pump;

[0008] The first water inlet electromagnetic valve, the negative pressure valve and the water pump are sequentially connected in the flow direction of the water flow. The first water inlet electromagnetic valve and the negative pressure valve are located on one side of the water pump in the length direction of the housing. The length direction of the water pump and the height direction of the housing are arranged in the same direction.

[0009] In some embodiments, the housing sequentially comprises a waterway installation area and an instant heating installation area in the length direction thereof. The first water inlet electromagnetic valve, the negative pressure valve and the water pump are all arranged in the waterway installation area.

[0010] The water tank-free pipeline machine further comprises an instant heating device, which is in communication with the water pump and the water outlet nozzle, and is used for heating the water flow passing through the instant heating device.

[0011] In some embodiments, the waterway system further comprises a mounting rack, the mounting rack is connected in the shell, and the mounting rack is at least partially mounted in the waterway mounting area, and the first water inlet electromagnetic valve, the negative pressure valve and the water pump are mounted on the mounting rack.

[0012] In some embodiments, the water pump is centrally arranged in the length direction of the mounting rack.

[0013] In some embodiments, the mounting rack is provided with a first waterway, and the water pump is communicated with the instant heating device through the first waterway.

[0014] In some embodiments, part of the mounting rack is located in the instant heating mounting area, and the instant heating device is connected with the mounting rack.

[0015] In some embodiments, the shell further comprises an electric control mounting area, and the waterway mounting area is located between the instant heating mounting area and the electric control mounting area.

[0016] The water tankless pipeline machine further comprises an electric control device, the electric control device is mounted in the electric control mounting area, and is electrically connected with the first water inlet electromagnetic valve, the water pump and the instant heating device.

[0017] In some embodiments, the waterway system further comprises:

[0018] A water quantity sensor, which is electrically connected with the electric control device and is respectively communicated between the first water inlet electromagnetic valve and the water inlet, or between the first water inlet electromagnetic valve and the water pump, or between the water pump and the instant heating device, and the water quantity sensor is used to feed back the water quantity information of the waterway system.

[0019] In some embodiments, the waterway system further comprises:

[0020] A flow meter, which is arranged side by side with the water pump in the length direction of the water pump and is electrically connected with the electric control device, and is respectively communicated between the first water inlet electromagnetic valve and the water inlet, or between the first water inlet electromagnetic valve and the water pump, or between the water pump and the instant heating device, and the flow meter is used to detect the flow of water flowing through the waterway system.

[0021] In some embodiments, the water tankless pipeline machine further comprises:

[0022] A sterilization device, which is arranged between the instant heating device and the water outlet nozzle, or arranged upstream of the instant heating device.

[0023] In some embodiments, the waterway system further comprises:

[0024] A check valve is arranged at the water outlet nozzle to prevent water dripping from the water outlet nozzle.

[0025] The second aspect of the embodiment of the present application provides a purified drinking system, which comprises a purified water machine and the water tank-free pipeline machine according to any one of the above, the purified water machine has a raw water inlet and a purified water outlet, the raw water inlet is used for connecting tap water; the water inlet end of the water tank-free pipeline machine is communicated with the purified water outlet.

[0026] Based on the above embodiment, the water tank-free design makes the pipeline machine not need to reserve a large space for the water tank, thus saving the internal space from the root, and creating favorable conditions for optimizing the internal layout. Meanwhile, the first water inlet electromagnetic valve and the negative pressure valve are both located on one side of the water pump in the length direction of the shell, so that the layout of the waterway system in the shell is more compact and concentrated, and the dispersion of the components occupying too much space is avoided. The water pump is arranged in the same direction as the height direction of the shell in the length direction, and this layout effectively avoids the superposition of the components in the thickness direction. The orderly arrangement of the components makes the pipeline machine as a whole present a flat design, further reasonably utilizes the remaining internal space, effectively reduces the floor area of the pipeline machine in the horizontal direction under the premise of ensuring the normal work of the components, and significantly reduces the overall volume. BRIEF DESCRIPTION OF DRAWINGS

[0027] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiment or prior art description will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained according to the structures shown in the drawings without creative labor for those skilled in the art.

[0028] Figure 1 A module block diagram of the purified drinking system in an embodiment of the present application;

[0029] Figure 2 A structure schematic diagram of the water tank-free pipeline machine in an embodiment of the present application;

[0030] Figure 3 An internal structure schematic diagram of the water tank-free pipeline machine in an embodiment of the present application;

[0031] Figure 4 A structure schematic diagram of the mounting rack in an embodiment of the present application;

[0032] Figure 5 A structure schematic diagram of the water tank-free pipeline machine from another perspective in an embodiment of the present application;

[0033] Figure 6 A Figure 5 A sectional view along the section of A-A.

[0034] BRIEF DESCRIPTION OF DRAWINGS

[0035] 1, shunt; 2, no tank pipeline machine; 21, shell; 211, water inlet; 212, water outlet nozzle; 213, electric control installation area; 2141, waterway installation area; 2142, instant heating installation area; 215, installation cavity; 217, mounting frame; 2171, first waterway; 22, waterway system; 2211, first water inlet electromagnetic valve; 2212, pump assembly; 2213, flow control pump; 2214, water pump; 2215, water quantity sensor; 2216, flow meter; 2217, negative pressure valve; 2218, check valve; 23, sterilization device; 24, electric control device; 25, instant heating device; 29, water outlet pipeline; 3, water purifier; 31-raw water inlet; 32-pure water outlet; 4, faucet.

[0036] The implementation, functional features and advantages of the present application will be further described with reference to the embodiments and the accompanying drawings. DETAILED DESCRIPTION

[0037] In order to make the purpose, technical scheme and advantages of the present application more clear, the following will further describe the embodiments of the present application in connection with the drawings.

[0038] The following description relates to the drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. The embodiments described in the following example embodiments do not represent all embodiments consistent with the present application. Instead, they are merely examples of devices and methods consistent with some aspects of the present application as detailed in the appended claims.

[0039] In the description of the present application, it is understood that the terms "first", "second" and the like are used only for the purpose of description and can not be understood as indicating or implying relative importance. For those skilled in the art, the specific meaning of the above terms in the present application can be understood in specific cases. In addition, in the description of the present application, unless otherwise specified, "multiple" means two or more. "And / or", the association between the associated objects, means that there can be three relationships, for example, A and / or B, which can represent the three cases of A alone, A and B together, and B alone. The character " / " generally represents a "or" relationship between the associated objects before and after.

[0040] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as understood by one of ordinary skill in the art to which the present application belongs. The terms used in the specification of the present application are only for the purpose of describing the specific embodiments and are not intended to limit the present application. The term "and / or" used herein includes any and all combinations of one or more related listed items.

[0041] The first aspect of the present application provides a pure drinking system, which is a comprehensive system integrating water purification and convenient drinking water functions. The pure drinking system can be applied to places such as homes, offices, schools, and hospitals, and the embodiments of the present application do not make specific limitations thereto.

[0042] Please refer to Figure 1 The pure drinking system includes a water purifier 3 and a water tankless pipeline machine 2. The water purifier 3 has a raw water inlet 31 for connecting to tap water, and the water purifier 3 is used for deep filtration and purification treatment of tap water, so that the water quality of the water source meets the standard of safe drinking or meets the specific use requirements. The working principle of the water purifier 3 usually includes pre-filtering, precision filtering, and post-treatment, etc. The pre-filtering mainly uses a filter screen to filter out large particles of impurities in tap water; the precision filtering uses more advanced filtering technology to remove small molecules, harmful substances, etc. in tap water, and the post-treatment may include activated carbon adsorption, etc. to improve the taste of the water. The water purifier 3 also has a pure water outlet 32, and the water tankless pipeline machine 2 is in communication with the pure water outlet 32, so that the purified pure water from the water purifier 3 can flow to the water tankless pipeline machine 2 from the pure water outlet 32, and the water tankless pipeline machine 2 is used for instant heating or cooling of the purified pure water, so as to facilitate users to accurately obtain drinking water and meet different drinking water temperature requirements of users.

[0043] Please continue to refer to Figure 1 In some embodiments, the pure drinking system can also include a faucet 4, which can be directly connected to the water purifier 3, so that the faucet 4 can directly flow out the purified pure water from the water purifier 3. Further, considering that the water pressure in the water supply pipeline for providing tap water to the water purifier 3 may change due to various factors (such as water supply peak period, pipeline maintenance, etc.), a pressure reducing valve is usually configured before the raw water inlet 31 of the water purifier 3, which not only stabilizes the water pressure in the water supply pipeline and reduces the water pressure entering the water purifier 3 in advance, but also avoids physical damage to the water purifier 3 due to high water pressure. In order to simultaneously distribute the purified pure water to the water tankless pipeline machine 2 and the faucet 4 and improve the utilization efficiency of water, a flow dividing valve is usually configured at the rear end of the pure water outlet of the water purifier 3, and the water inlet end of the water tankless pipeline machine 2 and the water inlet of the faucet 4 are in communication with the flow dividing valve. When the user needs to take temperature-specific direct drinking water, such as drinking 5℃-15℃ ice water in hot summer, or taking 40℃-50℃ warm water to wash milk powder, or taking 90℃-99℃ hot water to make tea, etc., the user can open the water tankless pipeline machine 2 to take. When the user needs to take domestic water to wash tableware or wash vegetables and fruits or wash clothes, the user can open the faucet 4 to take.

[0044] Please continue to refer to Figure 1However, the independent pressure reducing valve and the independent flow divider are respectively installed in the water purification system, which occupies more space and causes the pipeline layout to be messy, increasing the installation difficulty. Moreover, when a fault occurs, the pressure reducing valve and the flow divider need to be detected and repaired separately, and the replacement of the pressure reducing valve and / or the flow divider in the limited space will greatly increase the operation complexity and maintenance cost. Therefore, in view of the existing problems, the water purification system can further include a flow divider 1, wherein the faucet 4, the tankless pipeline machine 2, the water purifier 3 and the tap water supply pipeline are all connected with the flow divider 1, so that the tap water supply pipeline can introduce tap water to the flow divider 1, regulate and maintain the excessively high and unstable water pressure of the tap water in the tap water supply pipeline within a preset pressure value range, finally generate stabilized water, and deliver the stabilized water to the water purifier 3, which generates pure water after deep filtration and purification treatment of the stabilized water. The pure water purified by the water purifier 3 can flow into the flow divider 1 and then be introduced to the tankless pipeline machine 2 and the faucet 4 through the flow divider 1. The pure water flowing to the faucet 4 can be used as domestic water, and the pure water flowing to the tankless pipeline machine 2 can be drunk as direct drinking water.

[0045] However, in the related art, the pipeline machine has the problem of large overall size. This defect leads to insufficient flexibility in installation and difficulty in well adapting to various installation scenarios.

[0046] To solve the above problems, please refer to Figures 1 to 3 The application also provides a tankless pipeline machine 2 including a shell 21 and a waterway system 22.

[0047] The shell 21 has a water inlet 211 and a water outlet 212. The shell 21 can include a first shell 21 and a second shell 21, which can be detachably connected by clamping, screw connection or the like. The first shell 21 and the second shell 21 enclose the above-mentioned installation cavity 215.

[0048] It should be noted that the above-mentioned water inlet 211 and water outlet 212 can be in the form of a pipeline integrally formed on the shell 21, or in the form of separate components such as a hose or a joint. The first shell 21 and / or the second shell 21 are formed with a clearance, and the water inlet 211 and / or the water outlet 212 components can at least partially extend into the installation cavity 215 through the clearance and be connected with other components in the installation cavity 215.

[0049] The waterway system 22 is arranged in the shell 21 and connected with the water inlet 211 and the water outlet 212, and at least includes a first water inlet electromagnetic valve 2211, a negative pressure valve 2217 and a water pump 2214 arranged in sequence along the flow direction of water flow. The first water inlet electromagnetic valve 2211 is connected with the water inlet 211,

[0050] The negative pressure valve 2217 is connected between the first water inlet electromagnetic valve 2211 and the water pump 2214. Since the water tank is not used, the water system 22 needs to be equipped with the first water inlet electromagnetic valve 2211 and the water pump 2214 to cooperate. The first water inlet electromagnetic valve 2211 is responsible for controlling the on-off of the water flow, and the water pump 2214 is responsible for providing the power of the water flow. When the water flow in the water system 22 is cut off or the water pump 2214 stops working, the negative pressure valve 2217 can prevent negative pressure (i.e. pressure lower than atmospheric pressure) in the pipeline. Negative pressure can cause pipe rupture, water hammer phenomenon (pressure impact caused by sudden stop or change of direction of water flow) or other damage. And the negative pressure valve 2217 can maintain the positive pressure in the pipeline or at least prevent the generation of negative pressure, thereby protecting the water pump 2214 and other components in the water system 22 from damage. The negative pressure valve 2217 has various ways to prevent the generation of negative pressure, such as air supplement method, pre-pressurization method, etc. The specific structure and principle of the negative pressure valve 2217 have been disclosed in the related art, and this application will not be repeated here.

[0051] In addition, the water tankless pipeline machine 2 based on the embodiment of the application is designed without a water tank. On the one hand, it does not occupy too much space, so as to realize the miniaturization of the water tankless pipeline machine 2. On the other hand, since the water tankless pipeline machine 2 does not need to store water, it is not necessary to maintain the water temperature of the water tank, thereby reducing the energy consumption and avoiding the problem that bacteria are easily bred in the traditional pipeline machine with a water tank, and thus improving the water quality of the water tankless pipeline machine 2.

[0052] The first water inlet electromagnetic valve 2211, the negative pressure valve 2217 and the water pump 2214 are sequentially connected in the flow direction of the water flow. The first water inlet electromagnetic valve 2211 and the negative pressure valve 2217 are located on one side of the water pump 2214 in the length direction of the shell 21. The length direction of the water pump 2214 and the height direction of the shell 21 are arranged in the same direction. It can be understood that in the actual application scenario, the shell 21 of the water tankless pipeline machine 2 is usually hung on the wall or other installation. Based on this installation mode, the shell 21 naturally forms a clear height direction. The outer contour of the water pump 2214 is cylindrically arranged, and its axial direction can be defined as the length direction.

[0053] Based on the above embodiments, the water tank-free design makes the pipe machine not need to reserve a large space to place the water tank, which saves the internal space from the root and creates favorable conditions for optimizing the internal layout. At the same time, the first water inlet electromagnetic valve 2211 and the negative pressure valve 2217 are both located on one side of the water pump 2214 in the length direction of the shell 21, so that the waterway system 22 is more compact and concentrated in the shell 21, avoiding the dispersion of components occupying too much space. The water pump 2214 is arranged in the same direction as the height direction of the shell 21, which effectively avoids the stacking of components in the thickness direction. The orderly arrangement of components makes the pipe machine present a flat design, which further reasonably utilizes the remaining internal space. On the premise of ensuring the normal work of each component, the pipe machine effectively reduces the floor area in the horizontal direction, so that the overall size is significantly reduced.

[0054] In some embodiments, the shell 21 is sequentially provided with a waterway installation area 2141 and an instant heating installation area 2142 along the length direction thereof, and the first water inlet electromagnetic valve 2211, the negative pressure valve 2217 and the water pump 2214 are all arranged in the waterway installation area 2141. The water tank-free pipe machine 2 further comprises an instant heating device 25, which is in communication with the water pump 2214 and the water outlet nozzle 212 for heating the water flow flowing through the instant heating device 25. Among them, the arrangement of sequentially arranging the waterway installation area 2141 and the instant heating installation area 2142 along the length direction of the shell 21 makes the arrangement of components more reasonable overall. The different functional areas are clearly divided, avoiding the chaotic stacking of components in space, effectively utilizing the internal space of the shell 21, and creating favorable conditions for realizing the flat design of the equipment.

[0055] It should be noted that the instant heating device 25 is generally used to quickly heat the water flow by using an electric heating element; that is, when the user needs hot water, the instant heating device 25 works, at this time, the water flow is quickly heated to a set stable temperature after flowing through the electric heating element in the instant heating device 25, so as to achieve the hot water without water pipeline machine. In addition, the embodiment of the present application uses the instant heating device 25 to heat the water flow, which can improve the energy efficiency of the water tankless pipeline machine 2; that is, when the user needs hot water, the water tankless pipeline machine 2 can discharge hot water at a set temperature according to the user's demand, so that on the one hand, the heat loss can be reduced, and on the other hand, the user does not need to wait for the heating time of the hot water, thereby saving the user's water receiving time. Furthermore, the type of the instant heating device 25 is not specifically limited in the embodiment of the present application. Exemplarily, the instant heating device 25 can be one of quartz tube heating type, thick film heating type and electromagnetic heating type. Among them, the quartz tube heating type uses a quartz tube as a heating body, an electric heating wire is wound on the outer wall of the quartz tube, and the water flow in the quartz tube is heated by electric current, and this heating method has the advantages of fast heating speed, high temperature resistance and corrosion resistance. The thick film heating type uses thick film heating technology to directly print an electric heating element on the heating body to form a uniform heating film, and this heating method has the characteristics of high heating efficiency, fast thermal response speed and long service life. The electromagnetic heating type uses the principle of electromagnetic induction to generate eddy current in the heating body to heat the water flow, and this heating method has the advantages of uniform heating, no open flame and safety and reliability. It should be noted that when the user needs to receive normal temperature water, the instant heating device 25 is in a non-working state, so that even if the water flow flows through the instant heating device 25, the electric heating element in the instant heating device 25 will not heat the water flow, so that the water tankless pipeline machine 2 flows out normal temperature water.

[0056] By referring to Figure 3 and Figure 4 Further, the waterway system 22 further comprises a mounting frame 217 connected in the shell 21, and the mounting frame 217 is at least partially mounted in the waterway mounting area 2141, and the first water inlet electromagnetic valve 2211, the negative pressure valve 2217 and the water pump 2214 are all mounted on the mounting frame 217. Among them, the mounting frame 217 can be used as the mounting base of the components of the waterway system 22. When installing, the water pump 2214 and other components can be installed on the mounting frame 217 first, and then the mounting frame 217 is installed in the mounting cavity 215, so that the assembly process is more simple and fast, and the installation difficulty and cost are reduced. When a component fails or needs to be maintained, the mounting frame 217 can be taken out as a whole, so that the waterway system 22 can be taken out to observe the position of the fault, and the components can be replaced and maintained conveniently.

[0057] Further, the water pump 2214 is centrally arranged in the length direction of the mounting rack 217. This arrangement makes the weight distribution on both sides of the mounting rack 217 more balanced, reduces the instability caused by the weight on one side during transportation or daily use, and improves the stability and reliability of the entire waterway system 22. At the same time, it also helps to more evenly and reasonably arrange the connecting pipelines between the components on the mounting rack 217, further optimizes the internal structure of the waterway system 22, and provides a better hardware foundation for efficient water flow transmission.

[0058] Optionally, the mounting rack 217 is provided with a first waterway 2171, and the water pump 2214 is in communication with the instant heating device 25 through the first waterway 2171. In the embodiment of the present application, the mounting rack 217 can also be configured in the form of a waterway plate, that is, a waterway is formed in the mounting rack 217. The first waterway 2171 is formed in the mounting rack 217, and an interface for connecting the first waterway 2171 is formed. The water outlet end of the water pump 2214 and the water inlet end of the instant heating device 25 are directly connected with the interface on the mounting rack 217 to communicate with the first waterway 2171. In this way, the water pump 2214 and the instant heating device 25 are communicated through the waterway in the mounting rack 217, which can avoid the arrangement of water pipes between the two, reducing the number of water pipes.

[0059] As can be seen, in the embodiment of the present application, the water pump 2214 of the waterway system 22 is installed in the housing 21 through the mounting rack 217, the first waterway 2171 is formed in the mounting rack 217, and the first waterway 2171 communicates the water outlet end of the water pump 2214 and the water inlet end of the instant heating device 25. By forming a waterway on the mounting rack 217, the number of water pipes can be reduced, the complexity of the pipeline can be reduced, the assembly and maintenance can be facilitated, and the safety hazard of the water pipes and the wires being arranged together can be reduced or avoided, thereby improving the safety of the water tankless pipeline machine 2.

[0060] Further, part of the mounting rack 217 is located in the instant heating installation area 2142, and the instant heating device 25 is connected with the mounting rack 217. In this way, the mounting rack 217 is formed as the installation base of the instant heating device 25. The instant heating device 25 is installed on the mounting rack 217 and can be disassembled together with the mounting rack 217, facilitating the assembly and maintenance of the instant heating device 25 and the entire water tankless pipeline machine 2, and facilitating the communication of the instant heating device 25 with the first waterway 2171.

[0061] Referring to Figure 3 In some embodiments, the housing 21 further includes an electric control installation area 213, and the waterway installation area 2141 is located between the instant heating installation area 2142 and the electric control installation area 213. The water tankless pipeline machine 2 further includes an electric control device 24, which is installed in the electric control installation area 213 and electrically connected with the first water inlet electromagnetic valve 2211, the water pump 2214, and the instant heating device 25.

[0062] The electric control device 24 is used to control the working conditions of the waterway system 22 and the instant heating device 25. Through preset programs and algorithms, the electric control device 24 can accurately adjust the water flow speed, water temperature and other parameters to meet the different needs of users. It can be understood that the instant heating device 25 needs to be powered by strong electricity, and the strong electricity has the characteristics of high voltage and large current; the electric control device 24 needs to be powered by weak electricity, and the weak electricity has the characteristics of low voltage and small current, therefore, the electric control device 24 and the instant heating device 25 are arranged separately in the length direction of the water tankless pipeline machine 2, so that the electromagnetic interference can be reduced, and the stability and reliability of the electric signal on the electric control device 24 can be ensured. In the length direction of the water tankless pipeline machine 2, the electric control device 24, the waterway system 22 and the instant heating device 25 are arranged side by side, and a thermal isolation barrier is formed by the waterway system 22 to separate the electric control device 24 and the instant heating device 25, so that the thermal energy interaction interference is reduced. In addition, the electric control mounting area 213, the waterway mounting area 2141 and the instant heating mounting area 2142 are arranged in sequence along the length direction of the shell 21, which makes the arrangement of each component more reasonable as a whole. The different functional areas are clearly divided, the components are not stacked in space, the internal space of the shell 21 is effectively utilized, and favorable conditions are created for the realization of the flat design of the equipment.

[0063] Further, the waterway system 22 further comprises a water quantity sensor 2215 arranged in parallel with the water pump 2214 in the length direction or height direction of the water pump 2214 and electrically connected with the electric control device 24 and respectively communicated between the first water inlet electromagnetic valve 2211 and the water inlet 211, or between the first water inlet electromagnetic valve 2211 and the water pump 2214, or between the water pump 2214 and the instant heating device 25, so that the water quantity sensor 2215 is communicated with the water outlet nozzle 212. The embodiments of the present application do not make specific limitations on this. The water quantity sensor 2215 comprises two polar plates. When there is sufficient water quantity in the waterway system 22 flowing through the water quantity sensor 2215, at this time, the water flow flows through the two polar plates, so that the water quantity sensor 2215 generates an electric signal and sends a changed signal to the electric control device 24. Since the electric signal generated by the water flow flowing through the two polar plates is inconsistent with the electric signal generated by the air or less water flow flowing through the two polar plates, the electric control device 24 can determine the water quantity condition of the waterway system 22 according to the received electric signal. It can be understood that when the instant heating device 25 is arranged in the water tankless pipeline machine 2, the instant heating device 25 is electrically connected with the electric control device 24, and the water quantity sensor 2215 can play a role in protecting the instant heating device 25; that is, when the user needs to take hot water, the instant heating device 25 works, but due to insufficient water quantity in the waterway system 22, the electric heating element in the instant heating device 25 is exposed to the air and continuously heated, so that the instant heating device 25 is in dry burning, which leads to overheating of the instant heating device 25, so that the instant heating device 25 is easily burned out, and the instant heating device 25 is prone to generate high-temperature steam during the heating process. If the water tankless pipeline machine 2 is used under the condition of insufficient water quantity in the waterway system 22, high-temperature steam is easily sprayed at the water outlet nozzle 212, which can cause harm to the user. Therefore, the water quantity sensor 2215 arranged in the embodiments of the present application can monitor the water quantity information in the waterway system 22 in real time and feed back the monitored water quantity information in the waterway system 22 to the control device of the water tankless pipeline machine 2. The control device determines the water quantity condition of the waterway system 22 according to the set water shortage logic. When the water quantity of the water quantity system is lower than the pre-set threshold value, it indicates that the water quantity in the waterway system 22 is insufficient. The control device controls the instant heating device 25 to stop working or reduces the power of the instant heating device 25 to prevent the occurrence of dry burning phenomenon, so as to protect the instant heating device 25 and ensure the safety of the water tankless pipeline machine 2, thereby achieving the protection of the water tankless pipeline machine 2. Furthermore, by intelligently controlling the power of the instant heating device 25, the water quantity sensor 2215 can achieve the effect of energy saving and power saving, thereby reducing the electricity cost of the user. Optionally, the waterway system 22 further comprises a flow meter 2216 electrically connected with the electric control device 24 and respectively communicated between the first water inlet electromagnetic valve 2211 and the water inlet 211, or between the first water inlet electromagnetic valve 2211 and the water pump 2214, or between the water pump 2214 and the instant heating device 25, so that the flow meter 2216 is communicated with the water outlet nozzle 212. The embodiments of the present application do not make specific limitations on this.The flow meter 2216 is configured to detect the flow of water flowing through the waterway system 22, i.e., when the user inputs a quantitative water taking value into the tankless pipeline machine 2, the first water inlet electromagnetic valve 2211 is opened, the water pump 2214 is operated, and the flow meter 2216 starts to detect the flow of water flowing through the waterway system 22 and sends the detected flow to the control device of the tankless pipeline machine 2. When the flow meter 2216 detects that the flow of water flowing through the waterway system 22 reaches the water taking value required by the user, the control device controls the first water inlet electromagnetic valve 2211 to be closed, and the water pump 2214 and the flow meter 2216 are stopped. Thus, the tankless pipeline machine 2 can improve the detection of the flow of water flowing through the waterway system 22 and the accuracy of controlling the amount of water discharged by the tankless pipeline machine 2 by arranging the flow meter 2216.

[0064] With reference to Figure 1 Optionally, the tankless pipeline machine 2 further comprises a sterilization device 23 arranged between the instant heating device 25 and the water outlet nozzle 212 or arranged upstream of the instant heating device 25. The embodiments of the present application do not make specific limitations on this. It can be understood that the sterilization device 23 can effectively kill bacteria, viruses and other microorganisms in the water flow to ensure the safety and hygiene of the water quality, thereby improving the water quality of the tankless pipeline machine 2. The sterilization device 23 can be in the form of an ultraviolet sterilizer or an ozone sterilizer, etc. Such sterilization device 23 can effectively sterilize without generating chemical residues, thereby reducing pollution to the environment. In addition, these devices are usually designed to be compact, easy to install and maintain.

[0065] With reference to Figure 5 and Figure 6 In some embodiments, the waterway system 22 further comprises a check valve 2218 arranged at the water outlet nozzle 212 to prevent water dripping from the water outlet nozzle 212. It can be understood that the waterway system 22 further comprises a water outlet pipeline 29 for connecting the instant heating device 25 and the water outlet nozzle 212. When the tankless pipeline machine 2 uses the instant heating device 25 to heat the water in the waterway system 22, the instant heating device 25 is difficult to heat the water in the waterway system 22 to 100 degrees Celsius due to the rapid heating of the instant heating device 25. Therefore, the embodiments of the present application arrange the check valve 2218 at the water outlet nozzle 212 to play a pressure bearing role to improve the boiling point of the water in the water outlet pipeline 29, so that the water boils. In the process of boiling, water vapor can be arranged in the water outlet pipeline 29, and since the water outlet pipeline 29 is connected to the water outlet nozzle 212, the water outlet nozzle 212 can discharge the water vapor, so that the water outlet nozzle 212 can flow out a stable water column.

[0066] Furthermore, the check valve 2218 can be equivalent to a one-way valve to prevent the water flow from flowing backward in the water outlet pipeline 29 and to protect other components in the waterway system 22, such as the water pump 2214, the instant heating device 25, etc., from being impacted and damaged by the reverse water flow.

[0067] The same or similar reference numerals in the drawings of the embodiments correspond to the same or similar components; in the description of the present application, it is understood that if the orientation or positional relationship indicated by the terms "upper", "lower", "left", "right" and the like is based on the orientation or positional relationship shown in the drawings, it is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, therefore the terms describing the positional relationship in the drawings are only used for exemplary illustration, and cannot be understood as a limitation of the present patent, for those skilled in the art, the specific meaning of the above terms can be understood according to the specific circumstances.

[0068] The above is only a preferred embodiment of the present application, and is not used to limit the present application, any modification, equivalent replacement and improvement made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A tankless plumbing machine characterized by, The system comprises: a housing having a water inlet and a water outlet; and a waterway system arranged in the housing and between the water inlet and the water outlet, the waterway system comprising at least a first water inlet electromagnetic valve, a negative pressure valve and a water pump; wherein the first water inlet electromagnetic valve, the negative pressure valve and the water pump are sequentially arranged along the flow direction of water flow, the first water inlet electromagnetic valve and the negative pressure valve are located on one side of the water pump in the length direction of the housing, and the length direction of the water pump and the height direction of the housing are arranged in the same direction.

2. The tankless plumbing machine of claim 1, wherein, The housing sequentially comprises a waterway installation area and an instant heating installation area in the length direction thereof, and the first water inlet electromagnetic valve, the negative pressure valve and the water pump are arranged in the waterway installation area. The tankless pipeline machine further comprises an instant heating device, which is in communication with the water pump and the water outlet for heating the water flow passing through the instant heating device.

3. The tankless plumbing machine of claim 2, wherein, The waterway system further comprises a mounting bracket connected to the housing, and the mounting bracket is at least partially installed in the waterway installation area, and the first water inlet electromagnetic valve, the negative pressure valve and the water pump are installed on the mounting bracket.

4. The tankless plumbing machine of claim 3, wherein, The water pump is centrally arranged in the length direction of the mounting bracket. And / or, the mounting bracket is provided with a first waterway, and the water pump is in communication with the instant heating device through the first waterway. And / or, part of the mounting bracket is located in the instant heating installation area, and the instant heating device is connected to the mounting bracket.

5. The no-tank line machine of claim 2, wherein, The housing further comprises an electric control installation area, and the waterway installation area is located between the instant heating installation area and the electric control installation area. The tankless pipeline machine further comprises an electric control device installed in the electric control installation area and electrically connected to the first water inlet electromagnetic valve, the water pump and the instant heating device.

6. The no-tank line machine of claim 5, wherein, The waterway system further comprises: a water quantity sensor electrically connected to the electric control device and in communication between the first water inlet electromagnetic valve and the water inlet, or between the first water inlet electromagnetic valve and the water pump, or between the water pump and the instant heating device, and the water quantity sensor is used to feed back the water quantity information of the waterway system.

7. The no-tank line machine of claim 5, wherein, The waterway system further comprises: a flow meter arranged side by side with the water pump in the length direction thereof and electrically connected to the electric control device, and in communication between the first water inlet electromagnetic valve and the water inlet, or between the first water inlet electromagnetic valve and the water pump, or between the water pump and the instant heating device, and the flow meter is used to detect the flow of water flow passing through the waterway system.

8. The no-tank line machine of claim 2, wherein, The tankless pipeline machine further comprises: a sterilization device arranged between the instant heating device and the water outlet, or arranged upstream of the instant heating device.

9. The tankless plumbing machine of any one of claims 1 to 8, wherein, The waterway system further comprises: a check valve arranged at the water outlet to prevent water dripping from the water outlet.

10. A net drink system characterized by, The purified drinking system comprises: a water purifier having a raw water inlet and a pure water outlet, the raw water inlet being used to access tap water; and The tankless line machine of any one of claims 1-9, wherein the waterway system is in communication with the purified water outlet to deliver purified water from the water purifier to the tankless line machine through the purified water outlet.