Water supply equipment

By designing a box body, a first water tank and a brewing component in the water purification equipment, the brewing pot is electrically connected to the circuit component, which solves the problem that the water purification equipment cannot provide sufficient water volume and water temperature, and realizes the storage and heating of large-capacity pure water to meet the user's brewing needs.

CN223311054UActive Publication Date: 2025-09-09FOSHAN MIDEA CHUNGHO WATER PURIFICATION MFG +1
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Patent Information

Application Number
CN202422418455.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-09-09
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

Existing water purification equipment cannot provide enough water volume and water temperature to meet the user's brewing needs, especially when a large amount of hot water is needed, the fast flow rate of pure water causes the instant hot water spout to be unable to meet the user's needs.

Method used

A water supply device is designed, which includes a box body, a first water tank and a brewing component. The brewing pot can be detachably arranged on a support base, the water storage chamber is connected to the first water tank, and the heating component is electrically connected to the circuit component through the support base to realize large-capacity pure water storage and heating.

Benefits of technology

The brewing kettle can obtain a large amount of pure water and reach the preset temperature to meet the user's brewing needs, solving the problem that the water purification equipment cannot provide sufficient water volume and water temperature.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model particularly relates to water supply equipment which comprises a box body, a first water tank and a brewing assembly. A circuit assembly is arranged in the box body and can be electrically connected with an external power source. The first water tank is arranged in the box body and used for storing filtered pure water. The brewing assembly comprises a brewing kettle and a supporting seat, the supporting seat is arranged on the box body, the brewing kettle is separably arranged on the supporting seat, and a heating assembly is arranged in the brewing kettle. When the brewing kettle is arranged on the supporting seat, the water storage cavity of the brewing kettle is communicated with the first water tank, and the heating assembly is electrically connected with the circuit assembly through the supporting seat. According to the water supply equipment, the brewing kettle which can be separated from the supporting seat is arranged, so that the brewing kettle can be communicated with the first water tank, and a large amount of pure water can be obtained for brewing. The circuit assembly and the heating assembly can be limited to be electrically connected through the supporting base, so that a large amount of pure water in the brewing kettle can be heated to the preset temperature, and the brewing requirement of a user is met.
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Description

Technical Field

[0001] The utility model relates to the technical field of water supply equipment, in particular to a water supply equipment. Background Art

[0002] With rising living standards, water purification equipment has become a staple of quality living. However, existing water purification systems generally lack tea-making capabilities. This requires users to use a separate teapot or other tea-making tools, significantly inconvenient. Furthermore, since most water purification systems utilize internal heating systems, users who require large quantities of hot water for brewing are limited to using instant hot water spouts.

[0003] However, due to the fast flow rate of pure water, the heated pure water output by the hot water nozzle cannot meet the needs of customers. That is, when users need a large amount of hot water for brewing, the existing water purification equipment cannot provide a large amount of pure water and sufficient water temperature. Utility Model Content

[0004] The purpose of this utility model is to at least solve the problem that existing water purification equipment cannot meet the water quantity and water temperature required for brewing. This purpose is achieved through the following technical solutions:

[0005] The first aspect of the present invention provides a water supply device, comprising:

[0006] a box body, wherein a circuit component is disposed inside the box body, and the circuit component can be electrically connected to an external power source;

[0007] a first water tank, the first water tank being arranged inside the box body and being used to store filtered pure water;

[0008] A brewing component, comprising a brewing pot and a support base, wherein the support base is arranged on the box body, the brewing pot is detachably arranged on the support base, and a heating component is arranged inside the brewing pot;

[0009] When the brewing pot is arranged on the support base, the water storage chamber of the brewing pot is communicated with the first water tank, and the heating component is electrically connected to the circuit component through the support base.

[0010] The water supply device of the present invention provides a first water tank within a housing to store filtered pure water. A support base for the brewing assembly is provided on the housing, and when the brewing pot is placed on the support base, the water storage chamber of the brewing pot is connected to the first water tank, allowing the brewing pot to obtain a large amount of pure water for brewing. Furthermore, a circuit assembly is provided within the housing, and a heating assembly within the brewing pot is electrically connected to the circuit assembly via the support base, thereby enabling the heating assembly to operate, thereby ensuring that the pure water in the brewing pot reaches a preset temperature and meets the water temperature required for brewing. This helps to solve the problem that existing water purification devices cannot meet the water quantity and water temperature required for brewing.

[0011] In addition, the water supply equipment according to the present invention may also have the following additional technical features:

[0012] In some embodiments of the present invention, the brewing component further includes:

[0013] A control panel is provided on the brewing pot and is electrically connected to a control component of the heating component.

[0014] In some embodiments of the present invention, a first coupler is provided on the support base, the first coupler is electrically connected to the circuit assembly, and a second coupler is provided at the bottom of the brewing pot, the second coupler is detachably connected to the first coupler, and the second coupler is electrically connected to the heating assembly and the control panel respectively.

[0015] In some embodiments of the present invention, the second coupler includes a first coupling portion and a second coupling portion, the first coupling portion is electrically connected to the heating element of the heating assembly, and the second coupling portion is electrically connected to the control panel.

[0016] In some embodiments of the present invention, a first pipe is provided on the first coupler, and the first pipe is connected to the first water tank;

[0017] The second coupler is provided with a one-way valve connected to the water storage chamber, and the one-way valve is configured to conduct one-way flow from the first pipeline to the water storage chamber when the brewing pot is placed on the support seat.

[0018] In some embodiments of the present invention, the brewing pot has a handle and a second pipeline, the second pipeline is arranged inside the handle, and the liquid inlet end of the second pipeline is connected to the one-way valve, and the liquid outlet end of the second pipeline is arranged on the top side wall of the water storage chamber.

[0019] In some embodiments of the present invention, a liquid level detection device is further provided inside the water storage chamber, and the liquid level detection device includes:

[0020] a first liquid level detecting member, the first liquid level detecting member being disposed at the bottom of the water storage chamber and being used to detect whether there is liquid in the water storage chamber;

[0021] A second liquid level detecting member is provided above the first liquid level detecting member and is used to detect the liquid level height of the liquid.

[0022] In some embodiments of the present invention, the brewing component further includes:

[0023] A water pump is arranged inside the box body, and one end of the water pump is connected to the first water tank, and the other end of the water pump is connected to the water storage chamber through the support seat.

[0024] In some embodiments of the present invention, the box body has a base and a front panel, the base is arranged below the front panel, the support base is detachably arranged on the front panel, and the support base is spaced apart from the base.

[0025] In some embodiments of the present invention, a slot extending along a first direction is provided on the front panel, the first direction intersects with the front panel, and the support seat has an insertion portion, the insertion portion is inserted into the slot and connected to the front panel.

[0026] In some embodiments of the present invention, the front panel has an inner side surface facing away from the support seat, and a clamping structure is provided at one end of the insertion portion facing the front panel, wherein the clamping structure has an active surface passing through the slot and abutting against the inner side surface;

[0027] And / or, a baffle is provided at the bottom end of the slot, a first fixing hole is provided on the baffle, and a second fixing hole is provided on the insertion portion, and the second fixing hole can be screwed to a fastener passing through the first fixing hole.

[0028] In some embodiments of the present invention, a second limiting column is protruding from the inner wall of the slot, and the second limiting column is used to press against the peripheral surface of the insertion portion. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] Various other advantages and benefits will become apparent to those skilled in the art upon reading the detailed description of the preferred embodiment below. The accompanying drawings are for illustration purposes only and are not to be considered as limiting the present invention. The same reference numerals are used throughout the accompanying drawings to denote the same components. In the accompanying drawings:

[0030] Figure 1 Schematically shows a structural diagram of a water supply device according to an embodiment of the present invention;

[0031] Figure 2 for Figure 1 A partially exploded schematic diagram of the water supply equipment shown in FIG.

[0032] Figure 3 for Figure 1 A partial schematic diagram of the internal structure of the water supply equipment shown in ;

[0033] Figure 4 for Figure 1 A schematic diagram of a partial structure of the water supply equipment shown in ;

[0034] Figure 5 for Figure 2 A schematic diagram of the enlarged local structure of A shown in FIG;

[0035] Figure 6 for Figure 2 The structural diagram of the support seat shown in ;

[0036] Figure 7 for Figure 2 A structural diagram of the support base shown in another perspective;

[0037] Figure 8 for Figure 2 The structural diagram of the brewing pot shown in ;

[0038] Figure 9 for Figure 2 A schematic cross-sectional view of the brewing pot in the vertical direction shown in FIG;

[0039] Figure 10 for Figure 9 The enlarged schematic diagram of the local structure of B shown in FIG;

[0040] Figure 11 for Figure 9 The enlarged schematic diagram of the local structure of C shown in ;

[0041] Figure 12 for Figure 8 Schematic diagram of the partial structural decomposition of the brewing pot shown in.

[0042] The symbols in the accompanying drawings represent the following:

[0043] 1. Water supply equipment;

[0044] 10. Box body;

[0045] 11. Front panel; 111. Arc-shaped area; 1111. Slot; 1112. Second limiting column; 1113. Perforation; 1114. Baffle; 1115. First fixing hole; 1116. Avoidance portion; 12. Second water tank; 14. Base;

[0046] 20. First water tank; 21. First housing; 22. Liquid level detection assembly;

[0047] 30. Filter component;

[0048] 40. Water storage component; 41. Water storage cup;

[0049] 50. Brewing component;

[0050] 51. Brewing pot; 511. Heating assembly; 5111. Control element; 512. Control panel; 5131. Second coupler; 51311. First coupling portion; 51312. Second coupling portion; 514. Pot body; 5142. Water storage chamber; 5143. Mounting hole; 515. Handle; 5151. Second pipeline; 5152. Main body; 5153. Decorative element; 516. First liquid level detection element; 517. Second liquid level detection element; 518. Flow guide element; 5181. Output channel; 5182. Flow guide structure; 5183. Sealing element; 5185. Stopper; 519. Connecting seat; 5191. One-way valve; 51911. Valve body; 51912. Steering tube;

[0051] 52. Support base; 5201. First part; 5202. Second part; 52021. Connecting hole; 52022. Diversion hole; 521. First coupler; 5211. Third coupling part; 5212. Fourth coupling part; 523. Clamping structure; 524. Insertion part; 5241. Connecting cavity; 525. First pipeline; 526. Second fixing hole;

[0052] 53. Connecting pipe;

[0053] 60. Instant heating components;

[0054] 70. Water collection box. DETAILED DESCRIPTION

[0055] Exemplary embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. Although exemplary embodiments of the present disclosure are shown in the accompanying drawings, it should be understood that the present disclosure can be implemented in various forms and should not be limited by the embodiments described herein. Rather, these embodiments are provided to enable a more thorough understanding of the present disclosure and to fully convey the scope of the present disclosure to those skilled in the art.

[0056] It should be understood that the terms used in the text are only for the purpose of describing specific example embodiments and are not intended to be limiting. Unless the context clearly indicates otherwise, the singular forms "one", "an" and "said" as used in the text may also be meant to include plural forms. The terms "comprise", "include", "contain" and "have" are inclusive and therefore specify the presence of stated features, steps, operations, elements and / or parts, but do not exclude the presence or addition of one or more other features, steps, operations, elements, parts, and / or combinations thereof. The method steps, processes, and operations described herein are not interpreted as necessarily requiring them to be performed in the specific order described or illustrated, unless the order of execution is clearly indicated. It should also be understood that additional or alternative steps may be used.

[0057] Although the terms first, second, third, etc. can be used in the text to describe multiple elements, components, regions, layers and / or sections, these elements, components, regions, layers and / or sections should not be limited by these terms. These terms can only be used to distinguish an element, component, region, layer or section from another region, layer or section. Unless the context clearly indicates otherwise, terms such as "first", "second" and other numerical terms do not imply order or sequence when used in the text. Therefore, the first element, component, region, layer or section discussed below can be referred to as the second element, component, region, layer or section without departing from the teaching of the example embodiments.

[0058] For ease of description, spatially relative terms may be used herein to describe the relationship of one element or feature relative to another element or feature as shown in the figures, such as "inside," "outside," "inside," "outside," "below," "beneath," "above," and the like. Such spatially relative terms are intended to encompass different orientations of the device in use or operation in addition to the orientation depicted in the figures. For example, if the device in the figures is flipped over, an element described as "below" or "beneath" another element or feature would then be oriented "above" or "above" the other element or feature. Thus, the example term "below" can encompass both above and below orientations.

[0059] The present invention provides an embodiment of a water supply device 1. In this embodiment, the water supply device 1 is a water purification device, i.e., equipment that produces purified water, primarily used to purify water and provide healthy drinking water. Most water purification devices utilize reverse osmosis, a physical process that desalinates salt water at room temperature using no phase change. The water purification device can be a water purifier, a water purifier, or a water purifier.

[0060] Existing water purifiers generally lack tea brewing capabilities. Users who wish to brew tea must use a separate teapot or other tea-making tools, significantly inconvenient. Furthermore, since most water purifiers utilize internal heating systems, when users require large quantities of hot water for brewing, they are forced to use instant hot water spouts. However, due to the high flow rate of pure water, the heated pure water delivered by these spouts cannot meet customer needs.

[0061] In order to solve the above problems, the present invention proposes a water supply device 1 to solve the problem that the existing water purification equipment cannot provide a large amount of pure water and sufficient water temperature.

[0062] In terms of overall design, Figures 1-12 As shown, the water supply device 1 includes a housing 10, a first water tank 20 and a brewing component 50. A circuit component is provided inside the housing 10, and the circuit component can be electrically connected to an external power supply. The first water tank 20 is also provided inside the housing 10, and the first water tank 20 is used to store filtered pure water. At the same time, the brewing component 50 includes a brewing pot 51 and a support base 52. The support base 52 is provided on the housing 10, and the brewing pot 51 can be detachably provided on the support base 52. A heating component 511 is provided inside the brewing pot 51. When the brewing pot 51 is provided on the support base 52, the water storage chamber 5142 of the brewing pot 51 is communicated with the first water tank 20, and the heating component 511 is electrically connected to the circuit component through the support base 52.

[0063] Specifically, by disposing a first water tank 20 within the housing 10, the first water tank 20 can store filtered pure water. At the same time, the support base 52 of the brewing assembly 50 is disposed on the housing 10. When the brewing pot 51 is disposed on the support base 52, the water storage chamber 5142 of the brewing pot 51 is connected to the first water tank 20, allowing the brewing pot 51 to obtain a large amount of pure water for brewing. At the same time, by defining a circuit assembly within the housing 10, and electrically connecting the heating assembly 511 within the brewing pot 51 to the circuit assembly via the support base 52, the heating assembly 511 can operate, thereby ensuring that the pure water in the brewing pot 51 reaches a preset temperature, meeting the water temperature required for brewing. This helps to solve the problem that existing water purification equipment cannot meet the water quantity and water temperature required for brewing.

[0064] It should be understood that in this embodiment, the water supply device 1 includes a housing 10, a filter assembly 30, a first water tank 20, a second water tank 12, a water receiving box 70 and a brewing assembly 50. The housing 10 includes a base 14, a front panel 11, side panels, a back panel and a top panel, and the base 14, the front panel 11, the side panels, the back panel and the top panel together form a housing cavity, and the housing cavity is used to install several internal components such as the second water tank 12, the filter assembly 30, and the water pump. Figures 1 to 3As shown, the base 14 is disposed below the front panel 11 and is connected to the bottom of the front panel 11. A water receiving box 70 is also connected to the bottom of the front panel 11, with the base 14 and the water receiving box 70 located on opposite sides of the front panel 11. The second water tank 12, the filter assembly 30, and the water pump are all disposed on the base 14.

[0065] It should be noted that in this embodiment, the housing 10 is made of a hard material. The hard material can be ABS, HIPS, PP, PC, or other hard materials, or metal or alloy materials, etc., without specific limitations. Furthermore, the shape of the housing 10 can be rectangular, circular, polygonal, a combination of shapes, or a special shape, and can be selected and designed according to actual use requirements, without specific limitations. Typically, for ease of manufacturing and molding, as well as for a reasonable installation layout of the internal components of the housing 10, the housing 10 is generally rectangular.

[0066] like Figure 3 As shown, the second water tank 12 is disposed within the accommodating cavity. The second water tank 12 is primarily used to provide raw water to the water system of the water supply device 1. Specifically, the second water tank 12 can be connected to the base 14, or it can be detachably connected to the base 14. Furthermore, the second water tank 12 can be connected to an external tap water inlet pipe to replenish raw water into the second water tank 12, or it can serve as an independent water tank, thus freeing itself from the constraints of a water pipe. In this embodiment, the second water tank 12 is an independent water tank that is not connected to any external pipes and can be used anywhere, indoors or outdoors, making it convenient and easy to use.

[0067] In this embodiment, the filter assembly 30 can be provided with multiple filter elements, which are connected by waterways, or only one reverse osmosis filter element can be provided. Preferably, a pre-filter element is provided upstream of the reverse osmosis filter element. The pre-filter element can be made of various forms of PP, various forms of activated carbon, ultrafiltration, nanofiltration, or composite filter elements of the above materials. A post-filter element can also be provided downstream of the reverse osmosis filter element. The post-filter element can be made of various forms of activated carbon. Of course, the post-filter element and the pre-filter element can be two independent filter elements or a composite filter element. If the post-filter element and the pre-filter element are a composite filter element, the composite filter element has the filtering functions of both the pre-filter element and the post-filter element. There are two flow paths inside the composite filter element that do not interfere with each other. One flow path is used for coarse filtration, which is equivalent to the pre-filter element. The raw water enters the reverse osmosis filter element after coarse filtration in this flow path; the other flow path is used for re-filtration, which is equivalent to the post-filter element. The pure water filtered by the reverse osmosis filter element is filtered again from this flow path and finally flows out from the water outlet of the composite filter element.

[0068] In addition, a water pump is provided between the second water tank 12 and the filter assembly 30. The water pump allows the raw water in the second water tank 12 to flow through the filter assembly 30 and ultimately into the first water tank 20, forming pure water to meet the user's pure water needs. In this embodiment, the water pump is an off-the-shelf product that can be purchased and used directly, which helps reduce assembly costs.

[0069] like Figure 3 and Figure 4 As shown, the first water tank 20 is disposed inside the accommodating cavity, and the water inlet of the first water tank 20 is connected to the filter assembly 30 to receive the pure water output by the filter assembly 30. Specifically, the first water tank 20 can be connected to the base 14, or it can be detachably connected to the base 14. The first water tank 20 includes a first shell 21 and a liquid level detection assembly 22 disposed on the first shell 21. The liquid level detection assembly 22 is electrically connected to the circuit assembly inside the tank body 10. At this time, the circuit assembly can receive information transmitted by the liquid level detection assembly 22 and control the start or stop of the above-mentioned water pump. When the circuit assembly receives the feedback information from the liquid level detection assembly 22 and determines that the pure water in the first shell 21 is at a low liquid level, it will control the water pump to operate to filter the raw water to replenish the pure water in the first shell 21; when the circuit assembly determines that the pure water in the first shell 21 is at a high liquid level, it will control the water pump to stop working.

[0070] In this embodiment, the brewing component 50 includes a brewing pot 51 and a support base 52, wherein the support base 52 is arranged on the front panel 11 and is located outside the housing 10. Specifically, along a first direction, the support base 52 and the first water tank 20 are located on opposite sides of the front panel 11, respectively, and the first direction intersects with the front panel 11. Preferably, the first direction is arranged perpendicular to the front panel 11. At this time, the brewing pot 51 can be detachably arranged on the support base 52, and when the brewing pot 51 is arranged on the support base 52, the water storage chamber 5142 of the brewing pot 51 can be connected to the first water tank 20, and the heating component 511 in the brewing pot 51 is electrically connected to the circuit component, so that the brewing pot 51 can quickly obtain a large amount of pure water in the first water tank 20 and heat the pure water to meet the brewing needs of the user.

[0071] At this point, it should be noted that, in addition to placing the support base 52 on the front panel 11, it can also be placed at other locations on the housing 10 to at least achieve electrical connection between the brewing pot 51 and the circuit assembly. Of course, placing the support base 52 on the front panel 11 not only facilitates the removal and placement of the brewing pot 51, but also allows it to cooperate with other components to improve the performance of the water supply device 1 and ensure its aesthetics. Other components include the water receiving box 70 and the water storage cup 41 described below.

[0072] Furthermore, the support base 52 is detachably disposed on the front panel 11 , and the support base 52 is spaced apart from the base 14 .

[0073] Specifically, since the front panel 11 faces the user, the support base 52 is detachably connected to the front panel 11. This not only facilitates the user's access to the brewing pot 51, ensuring the effectiveness of the water supply device 1, but also facilitates the maintenance and replacement of the brewing assembly 50. Furthermore, by defining a spacing between the support base 52 and the base 14, space is provided for the installation of the water receiving box 70 and / or the water storage assembly 40, thereby further improving the effectiveness of the water supply device 1.

[0074] It should be understood that the front panel 11 has an arcuate area 111, and the support base 52 is connected to the arcuate area 111. At this time, when the brewing pot 51 is placed on the support base 52, the outer wall of the brewing pot 51 is aligned with or spaced apart from the arcuate area 111. By providing the arcuate area 111, the space waste of the water supply device 1 can be reduced, thereby improving the space utilization rate of the water supply device 1 and making the water supply device 1 more compact and beautiful. In addition, the provision of the arcuate area 111 can also reduce the space for the brewing pot 51 to move when it is taken out and placed, thereby providing a restriction and guidance function for the taking and placing of the brewing pot 51, helping to reduce the shaking of the brewing pot 51 when it is placed, and improving the convenience of taking the brewing pot 51 out and placing, thereby ensuring the use effect of the brewing pot 51.

[0075] like Figure 1 and Figure 2 As shown, the support base 52 is disposed in the middle of the arcuate region 111 in the vertical direction and is connected to the arcuate region 111. Connection methods include, but are not limited to, one or more of plug-in, snap-on, snap-on, and screw-on connections. Furthermore, a distance is provided between the support base 52 and the bottom of the housing 10, that is, between the support base 52 and the base 14. This distance allows for the installation of the water receiving box 70 and / or the water storage assembly 40. In this embodiment, the water receiving box 70 is disposed directly below the support base 52, and the water storage cup 41 of the water storage assembly 40 is disposed between the water receiving box 70 and the support base 52. In other words, the water receiving box 70, water storage cup 41, support base 52, and brewing pot 51 are disposed in this order in the vertical direction. The water storage cup 41 can communicate with the first water tank 20, thereby increasing the storage capacity of pure water and helping to further ensure the pure water demand of the brewing pot 51.

[0076] It should be noted that the water supply device 1 also includes an instant heating component 60 connected to the first water tank 20. The instant heating component 60 is mounted on the front panel 11, and the output nozzle of the instant heating component 60 is spaced apart from the brewing pot 51 in the horizontal direction. This arrangement helps to enrich the use functions of the water supply device 1. While the brewing pot 51 obtains a large amount of pure water, it can also supply instantly heated pure water, which helps to improve the use effect of the water supply device 1. In addition, it also helps to ensure the aesthetics of the water supply device 1.

[0077] Furthermore, a slot 1111 extending along the first direction is defined on the front panel 11 , and the support base 52 has an inserting portion 524 . The inserting portion 524 is inserted into the slot 1111 and connected to the front panel 11 .

[0078] Specifically, by providing a slot 1111 on the front panel 11 to cooperate with the insert portion 524, the difficulty of installing the support base 52 on the front panel 11 can be effectively reduced. At the same time, the insertion portion 524 is connected to the front panel 11, which helps to improve the connection between the slot 1111 and the support base 52, thereby enabling the support base 52 to support the brewing pot 51. In addition, the provision of the slot 1111 has a simple structure and is easy to process and manufacture.

[0079] It is important to understand that if Figure 4 and Figure 5 As shown, a slot 1111 is formed in the curved area 111 of the front panel 11, and the support base 52 is inserted into the slot 1111 and connected to the front panel 11. The connection method includes, but is not limited to, one or more connection methods such as snap connection, snap connection, riveting, screw connection, and bonding. Specifically, in this embodiment, along the first direction a, the front panel 11 has an outer side and an inner side. In this case, the curved area 111 has a slot 1111 that is recessed toward the inner side. At the same time, the support base 52 is formed with an insertion portion 524 that is compatible with the slot 1111, and the insertion portion 524 is connected to the front panel 11 by bolts. The matching of the slot 1111 and the insertion portion 524, as well as the bolted connection of the support base 52 to the front panel 11, helps to reduce the difficulty of installing the support base 52 on the front panel 11 and ensure the connection between the support base 52 and the front panel 11, thereby ensuring that the support base 52 has a good load-bearing capacity for the brewing pot 51.

[0080] It should be noted that in this embodiment, the slot 1111 is configured as a square columnar structure. This, on the one hand, reduces the difficulty of machining the front panel 11 and the support base 52, and on the other hand, ensures that the front panel 11 has a good contact area with the support base 52, thereby enabling the front panel 11 to provide sufficient support for the support base 52, thereby helping to ensure that the support base 52 effectively supports the brewing pot 51. Furthermore, this reduces the shaking of the insertion portion 524 in the slot 1111. Of course, the cross-sectional structure of the slot 1111 can also be configured as other shapes, such as circular, prismatic, or polygonal, and no limitation is imposed herein.

[0081] In addition, a slot 1111 is provided on the front panel 11 , and by utilizing the structural changes of the slot 1111 , the strength of the front panel 11 can be further enhanced, thereby further improving the overall structural strength of the box body 10 .

[0082] It should be further understood that in this embodiment, a baffle 1114 is provided at the bottom end of the slot 1111. Specifically, the baffle 1114 is provided at the end of the slot 1111 facing away from the support base 52, and a through-hole 1113 is provided in the middle of the baffle 1114, penetrating the baffle 1114. Furthermore, a mounting cavity is provided within the support base 52, and the insert portion 524 has a flow cavity connected to the mounting cavity. When the support base 52 is inserted into the front panel 11, one end of the insert portion 524 is in contact with the baffle 1114, and at this point, the mounting cavity communicates with the through-hole 1113, allowing for the routing of electrical connection wires, thereby enabling the first coupler 521 described below to be connected to the circuit assembly. The provision of the baffle 1114 enables the insert portion 524 to accurately reach the assembly position, thereby improving assembly convenience, and also provides a mounting base for the first fixing hole 1115 and the avoidance portion 1116 described below. The cooperation between the through hole 1113 and the communication cavity 5241 effectively ensures the communication between the support base 52 and the first water tank 20 , thereby ensuring that the brewing pot 51 can obtain pure water in the first water tank 20 .

[0083] like Figure 5 As shown, a plurality of first fixing holes 1115 are provided on the baffle 1114, and the plurality of first fixing holes 1115 are respectively arranged on opposite sides of the through hole 1113 in the horizontal direction. Correspondingly, a second fixing hole 526 is provided on the insertion portion 524, and the second fixing holes 526 are located on opposite sides of the flow cavity. The second fixing holes 526 are arranged in a one-to-one correspondence with the first fixing holes 1115. At this time, the screw connector can pass through the first fixing hole 1115 and be screwed to the second fixing hole 526, thereby realizing the connection and fixation between the support seat 52 and the front panel 11. The structure is simple to operate and easy to install, and it also helps to ensure the connection strength between the support seat 52 and the front panel 11.

[0084] It should be noted that, in addition to providing the first fixing hole 1115 in the baffle 1114, the first fixing hole 1115 can also be provided on the side wall of the slot 1111. Accordingly, the second fixing hole 526 is formed on the circumference of the insertion portion 524 to cooperate with the first fixing hole 1115. In this case, the slot 1111 has a certain depth. When the insertion portion 524 is inserted into the slot 1111, the support base 52 can effectively meet the support requirements for the brewing pot 51.

[0085] In addition, in this embodiment, a reinforcing structure is further provided on the inner side surface of the front panel 11. The reinforcing structure is located at the connection between the curved surface and the slot 1111 to increase the structural strength of the front panel 11. Preferably, the reinforcing structure includes at least one of a groove, a convex hull, and a rib. By providing the reinforcing structure, the slot 1111 can effectively meet the requirements of use. Among them, one structure among the groove, the convex hull, and the rib can serve as the reinforcing structure, or two structures can serve as the reinforcing structure, or three structures can serve as the reinforcing structure. In this embodiment, the reinforcing structure is a convex hull provided below the slot 1111.

[0086] It should be further understood that the end of the insertion portion 524 facing the front panel 11 is further provided with a snap-fit ​​structure 523. The snap-fit ​​structure 523 has an active surface that passes through the slot 1111 and engages with the inner side surface. In this embodiment, the baffle 1114 is also provided with a relief portion 1116. The relief portion 1116 is provided at the edge of the perforation 1113 and extends to one of the side walls of the slot 1111. When the insertion portion 524 is positioned in the slot 1111, the snap-fit ​​structure 523 can pass through the relief portion 1116 and engage with the inner side surface of the front panel 11. In this embodiment, the snap-fit ​​structure 523 is a deformable hook. The inner side of the hook can engage with the inner side surface of the front panel 11. In this case, the inner side of the hook serves as the active surface. This arrangement not only improves the convenience of snap-fitting, but also enables the initial connection of the support base 52 to the front panel 11, thereby facilitating subsequent screw fastening.

[0087] At this point, it should be noted that if the insertion depth of the insertion portion 524 is sufficient to meet the support requirements of the brewing pot 51, the support base 52 and the front panel 11 can be connected only by a snap-fit ​​method, thereby effectively ensuring the use effect of the water supply device 1. In addition, there is no need to provide the second fixing hole 526 on the baffle 1114, which helps to improve the structural strength of the baffle 1114 and thus improve the structural strength of the front panel 11.

[0088] Furthermore, a second limiting column 1112 is protruding from the inner wall of the slot 1111 , and the second limiting column 1112 is used to press against the circumference of the insertion portion 524 .

[0089] Specifically, by setting a second limiting column 1112, the insertion portion 524 in the slot 1111 can be pressed, which helps to increase the difficulty of the insertion portion 524 detaching from the slot 1111. At the same time, the setting of the second limiting column 1112 can also effectively increase the structural strength of the slot 1111, thereby ensuring the connection effect between the support seat 52 and the slot 1111.

[0090] It should be understood that a second limiting column 1112 is protruding from the inner wall of the slot 1111. There are multiple second limiting columns 1112, which are spaced apart and arranged on two opposite side walls of the slot 1111. Figure 5 As shown, second limiting posts 1112 are disposed on the upper and lower side walls of the slot 1111. Four second limiting posts 1112 are provided on any side wall, with each pair of second limiting posts 1112 forming a group and disposed on opposite sides of the through-hole 1113. The provision of the second limiting posts 1112 compresses the upper and lower sides of the insertion portion 524, thereby increasing the difficulty of the insertion portion 524 from disengaging from the slot 1111, thereby improving the connection between the support base 52 and the front panel 11. Furthermore, the provision of the second limiting posts 1112 also increases the structural strength of the slot 1111. Preferably, along the first direction a, the protruding height of the second limiting column 1112 gradually decreases. At this time, the closer the insertion portion 524 is to the through-hole 1113, the smaller the extrusion force it receives, and the farther it is from the through-hole 1113, the greater the extrusion force it receives. Such a setting can not only ensure that it is difficult for the insertion portion 524 to detach from the slot 1111, but also reduce the difficulty of the insertion portion 524 probing into the slot 1111, thereby ensuring the convenience of installation of the support seat 52.

[0091] Furthermore, the brewing component 50 further includes a control panel 512 . The control panel 512 is disposed on the brewing pot 51 , and the control panel 512 is electrically connected to the heating component 511 .

[0092] Specifically, by electrically connecting the control panel 512 to the heating assembly 511, the activation and deactivation of the heating assembly 511 can be effectively controlled, thereby achieving heating control of the pure water. Furthermore, the control panel 512 can also be electrically connected to the liquid level detection device described below, thereby displaying the liquid level within the water storage chamber 5142, achieving precise control of the water volume and ensuring accurate pure water acquisition.

[0093] It should be understood that the control panel 512 can be located on the side wall of the kettle body 514 or inside the handle 515. In this case, the control panel 512 can be connected to the circuit assembly via the support base 52, thereby ensuring the power supply of the control panel 512. In this embodiment, the control panel 512 has a display surface and an operation surface facing away from the water storage chamber 5142. The display surface is used to display the liquid level in the water storage chamber 5142, and the operation surface is used to control the activation and heating time of the heating component 511. Preferably, the control panel 512 can be an existing structure that can display the amount of pure water and control the water temperature.

[0094] like Figure 9 and Figure 12 As shown, the brewing pot 51 includes a pot body 514 and a connecting base 519. A water storage chamber 5142 is formed within the pot body 514. The connecting base 519 is coupled to the bottom of the pot body 514 to form a receiving chamber. A heating assembly 511 is disposed within this receiving chamber. In this embodiment, the heating assembly 511 includes a heater (not shown) and a control unit 5111. The heater is a conventional heating tube structure and is disposed around the bottom of the pot body 514, centered about the axis of the pot body 514. This heats the pure water within the water storage chamber 5142. Alternatively, the heater can be disposed on the sidewall of the pot body 514. The control unit 5111 is disposed within the receiving chamber and is electrically connected to the control panel 512. The control unit 5111 controls the connection between the heater and the support base 52. When the brewing pot 51 is mounted on the support base 52, the heating assembly 511 is electrically connected to the circuit components within the housing 10 via the support base 52.

[0095] It should be noted that the kettle body 514 and the connecting seat 519 are connected and fixed, and the connection and fixing methods include but are not limited to screw connection, clamping, snap connection, riveting, bonding, welding, etc.

[0096] Furthermore, a first coupler 521 is provided on the support base 52, and the first coupler 521 is electrically connected to the circuit component. A second coupler 5131 is provided at the bottom of the brewing pot 51, and the second coupler 5131 is detachably connected to the first coupler 521. The second coupler 5131 is electrically connected to the heating component 511 and the control panel 512 respectively.

[0097] Specifically, by setting the second coupler 5131 to cooperate with the first coupler 521, the electrical connection between the brewing pot 51 and the support base 52 can be achieved, thereby ensuring the connection between the heating component 511 and the control panel 512 and the circuit components in the box body 10. At the same time, the use of the second coupler 5131 and the first coupler 521 to cooperate and connect can also help to achieve the positioning and installation of the brewing pot 51 on the support base 52, thereby improving the cooperation effect between the brewing pot 51 and the support base 52 and ensuring the effective implementation of the electrical connection.

[0098] It should be understood that in this embodiment, the first coupler 521 has the same structure as the first coupler 521 in conventional electric kettles, and both are cylindrical. Correspondingly, the second coupler 5131 has the same structure as the second coupler 5131 in conventional electric kettles. Furthermore, the axis of the first coupler 521 is aligned with the axis of the brewing pot 51. When the second coupler 5131 is engaged with the first coupler 521, that is, when the brewing pot 51 is positioned on the support base 52, the brewing pot 51 can be rotatably positioned on the support base 52 about the axis of the first coupler 521. At this point, the brewing pot 51 cannot move horizontally on the support base 52.

[0099] It should be pointed out that in this embodiment, the first coupler 521 is protruded from the top of the support base 52. By utilizing the structural changes, the strength of the support base 52 is further enhanced, thereby further improving the overall structural strength of the support base 52.

[0100] Furthermore, the second coupler 5131 includes a first coupling portion 51311 and a second coupling portion 51312 , the first coupling portion 51311 is electrically connected to the heating assembly 511 , and the second coupling portion 51312 is electrically connected to the control panel 512 .

[0101] Specifically, the provision of the control panel 512 enables the brewing pot 51 to control the start and duration of the heating component 511, which helps improve the applicability of the brewing pot 51. However, since the control panel 512 itself has display and control functions, the brewing pot 51 is prone to mutual interference during long-term use, and ultimately may cause display errors or control failures. By configuring the second coupler 5131 as a first coupling portion 51311 and a second coupling portion 51312, the strong and weak currents can be connected separately, which helps ensure long-term stable and normal operation between the two and avoids the possibility of burning.

[0102] It is important to understand that if Figure 6 and Figure 8As shown, the first coupling portion 51311 and the second coupling portion 51312 are both arranged around the axis of the brewing pot 51, and the second coupling portion 51312 is spaced apart and arranged on the side of the first coupling portion 51311 away from the axis. In this case, an isolation ring (not shown in the figure) is provided between the first coupling portion 5201 and the second coupling portion 51312. Correspondingly, the first coupler 521 includes a third coupling portion 5211 and a fourth coupling portion 5212, and the third coupling portion 5211 and the fourth coupling portion 5212 are also provided with isolation rings (not shown in the figure). When the second coupler 5131 is connected to the first coupler 521, the third coupling portion 5211 is in contact with the first coupling portion 51311, and the fourth coupling portion 5212 is in contact with the second coupling portion 51312. In this embodiment, the first coupling portion 51311 is electrically connected to the heating element of the heating assembly 511, the second coupling portion 51312 is electrically connected to the control panel 512, and the second coupling portion 51312 is electrically connected to the control component 5111 of the heating assembly 511. In this case, the first coupling portion 51311 and the heating element form a single circuit, and the second coupling portion, the control panel 512, and the control component 5111 form a single circuit. In this case, the signals of the two circuits will not interfere with each other, and the strong and weak currents are separated, ensuring long-term stable normal operation between the two circuits and preventing burnout.

[0103] It should be pointed out that in addition to setting the second coupling part 51312 on the outside of the first coupling part 51311 in a sleeve-type manner, the first coupling part 51311 and the second coupling part 51312 can also be set separately and arranged at intervals in the horizontal direction. At this time, when the second coupler 5131 is connected to the first coupler 521, the brewing pot 51 and the support base 52 are positioned and connected.

[0104] Furthermore, the first coupler 521 is provided with a first pipeline 525, which is connected to the first water tank 20. The second coupler 5131 is provided with a one-way valve 5191 connected to the water storage chamber 5142. The one-way valve 5191 is configured to conduct one-way flow from the first pipeline 525 to the water storage chamber 5142 when the brewing pot 51 is placed on the support base 52.

[0105] Specifically, by providing a first pipeline 525 in the first coupler 521 and a one-way valve 5191 in the second coupler 5131, when the second coupler 5131 is connected to the first coupler 521, the first pipeline 525 is connected to the one-way valve 5191, so that the water storage chamber 5142 of the brewing pot 51 can be connected to the first water tank 20 through the one-way valve 5191 and the first pipeline 525, thereby enabling a large amount of pure water to be taken. At this time, the pure water in the first water tank 20 can flow to the water storage chamber 5142 through the first pipeline 525 and the one-way valve 5191 in sequence, and the flow direction of the one-way valve 5191 is from the first water tank 20 to the water storage chamber 5142. When the brewing pot 51 is taken out, the pure water in the water storage chamber 5142 will not flow back out from the one-way valve 5191, which can ensure that the water in the water storage chamber 5142 will not leak out. At the same time, in conjunction with the heating component 511 inside the brewing pot 51, the pure water can reach the required temperature for use.

[0106] It is important to understand that if Figure 7 and Figure 9 As shown, the support base 52 includes a first portion 5201 and a second portion 5202. The first portion 5201 and the second portion 5202 are connected to form a mounting cavity, and the mounting cavity is connected to the communication cavity 5241. The connection method between the first portion 5201 and the second portion 5202 includes, but is not limited to, screw connection, clamping connection, snap connection, riveting, bonding, welding, etc. In this embodiment, a mounting post (not shown) is provided on the first portion 5201, and a connecting hole 52021 is provided on the second portion 5202. A fastener can pass through the connecting hole 52021 and be screwed onto the mounting post. Preferably, the fastener is a screw or bolt.

[0107] In this embodiment, the first coupler 521 is disposed on the first portion 5201, with a portion extending out of the top of the first portion 5201 and the remaining portion being housed within the mounting cavity. A first conduit 525 is disposed within the first coupler 521. One end of the first conduit 525 communicates with the first water tank 20 via a connecting pipe 53. The other end of the first conduit 525 can be inserted into a one-way valve 5191, thereby opening the one-way valve 5191 and thereby establishing communication between the first conduit 525 and the water storage cavity 5142. Preferably, the first conduit 525 is disposed along the axis of the first coupler 521, and the third coupling portion 5211 and the fourth coupling portion 5212 are both disposed around the first conduit 525. In this case, the radial radius of the first coupler 521 is greater than that of the first coupler 521 of conventional electric kettles.

[0108] It should be noted that since the third coupling portion 5211 and the fourth coupling portion 5212 are both arranged around the first pipeline 525, when the first coupler 521 is separated from the second coupler 5131, some pure water will flow back to the outside of the valve body 51911 when the one-way valve 5191 enters the closed state, thereby easily contacting the third coupling portion 5211, posing a safety hazard. In order to improve the safety of the water supply device 1, in some embodiments of the present application, a guide groove (shown in the figure) is provided between the third coupling portion 5211 and the first pipeline 525, and the guide groove is connected to the installation cavity. At the same time, a guide hole 52022 is provided on the second portion 5202 to communicate with the installation cavity to facilitate the deionization of the pure water flowing back into the installation cavity.

[0109] like Figure 9 and Figure 11 As shown, in this embodiment, a one-way valve 5191 is disposed within the second coupler 5131. This one-way valve 5191 communicates with the water storage chamber 5142 via the second pipeline 5151 described below. Specifically, the one-way valve 5191 includes a valve body 51911 and a steering tube 51912. The valve body 51911 is disposed vertically to control the direction of water flow, and its specific structure can be arranged with reference to the structure of a conventional one-way valve 5191. Simultaneously, the steering tube 51912 is disposed horizontally, with one end communicating with the valve body 51911 and the other end communicating with the water storage chamber 5142 via the second pipeline 5151. Preferably, the valve body 51911 is generally tubular in structure, with an open first end for communicating with the first pipeline 525 and a closed second end. An outlet for communicating with the steering tube 51912 is provided on the sidewall of the valve body 51911, with the outlet being closer to the second end than to the first end of the valve body 51911. A control structure is provided within the valve body 51911, which is similar to the control structure of the conventional one-way valve 5191 and will not be described in detail herein.

[0110] Furthermore, the one-way valve 5191 can be a metal part that can be processed by welding or casting. Alternatively, the one-way valve 5191 can be a non-metallic part, such as plastic, that can be molded in one piece by injection molding. In this embodiment, the valve body 51911 and the steering tube 51912 are integrally molded.

[0111] Furthermore, the brewing pot 51 has a handle 515 and a second pipeline 5151. The second pipeline 5151 is arranged inside the handle 515, and the liquid inlet end of the second pipeline 5151 is connected to the one-way valve 5191. The liquid outlet end of the second pipeline 5151 is arranged on the top side wall of the water storage chamber 5142.

[0112] Specifically, the handle 515 is provided to facilitate the removal and placement of the brewing pot 51. Furthermore, the second pipe 5151 is disposed inside the handle 515, bypassing the heating position. This helps prevent the second pipe 5151 from being affected by prolonged heating, reduces the possibility of water leakage safety issues such as cracking, and increases the structural lifespan of the brewing pot 51. Furthermore, the structure is simple, reduces production process requirements, reduces production costs, eliminates interference from other structures, and enhances the convenience of cleaning tea stains on the bottom of the pot, thereby improving the user experience.

[0113] It is important to understand that if Figure 1 、 Figure 2 、 Figure 9 and Figure 12 As shown, the handle 515 is an entire rectangular parallelepiped structure, which helps reduce the space occupied by the brewing pot 51, ensuring the compactness and aesthetics of the brewing pot 511, and also helps improve the convenience of user operation. In this embodiment, one end of the handle 515 is connected to the pot body 514, and the other end of the handle 515 is connected to the connecting base 519. Preferably, the connection between the handle 515 and the pot body 514 is located closer to the top of the pot body 514 than to the bottom of the pot body 514. At the same time, a portion of the second pipeline 5151 is disposed inside the handle 515 to communicate with the accommodating cavity. This portion is adapted to the shape of the handle 515, and the other portion is disposed within the accommodating cavity and communicates with the steering tube 51912. Because the heater is disposed at the bottom of the pot body 514, the provision of the second pipeline 5151 can bypass the heater, helping to prevent the effects of prolonged heating on the second pipeline 5151.

[0114] It should be noted that the connection between the handle 515 and the kettle body 514, as well as the connection between the handle 515 and the connecting base 519, can both be threaded, which is simple to operate and easy to install. In this embodiment, a mounting hole 5143 is provided on the side wall of the kettle body 514. This mounting hole 5143 is used to communicate with the interior of the handle 515, thereby positioning the liquid outlet of the second pipeline 5151 on the top side wall of the water storage chamber 5142. Correspondingly, the connecting base 519 is formed with a mounting structure that cooperates with the handle 515 and is provided with a connecting hole for the second pipeline 5151 to pass through, ensuring the practical arrangement of the second pipeline 5151.

[0115] It should be further understood that the liquid outlet of the second conduit 5151 is provided with a flow guide 518 comprising a flow guide structure 5182 extending toward the bottom of the water storage chamber 5142. This flow guide structure 5182 can quickly direct pure water to the bottom of the pot body 514, thereby reducing splashing and improving the safety of the brewing pot 51. Furthermore, the provision of the flow guide 518 can prevent pure water from accidentally contacting the second liquid level detector 517 described below, thereby ensuring the accuracy of the pure water level detection by the brewing pot 51.

[0116] like Figure 9 、 Figure 10 and Figure 12 As shown, the guide member 518 is detachably disposed within the interior of the handle 515. In this embodiment, the guide member 518 is a T-shaped structure. An output channel 5181 is disposed within the guide member 518. The output channel 5181 has an input end and two output ends. The input end extends into the interior of the handle 515 and is connected to the handle 515, thereby achieving a fixed connection between the guide member 518 and the handle 515. At this time, a guide structure 5182 is disposed at the end of the output end. The guide structure 5182 is used to guide pure water into the bottom of the water storage chamber 5142 and is spaced apart from the inner wall of the water storage chamber 5142. In this embodiment, the guide structure 5182 is configured in the shape of a water droplet, with the tip of the water droplet extending toward the bottom of the water storage chamber 5142. At this time, due to the wall adhesion effect, the pure water flowing out of the output end will flow to the bottom of the water storage chamber 5142 under the action of the guide structure 5182. At the same time, the diversion structure 5182 is spaced apart from the inner wall of the water storage chamber 5142 , which helps to reduce the corrosion of the inner wall of the kettle body 514 by pure water.

[0117] Still Figure 10 As shown, a seal 5183 is provided between the flow guide 518 and the inner wall of the kettle body 514. The seal 5183 primarily serves a sealing function, preventing pure water in the second pipe 5151 from flowing out of the connection between the handle 515 and the kettle body 514 when the brewing pot 51 is in use, thereby improving the stability of the connection between the handle 515 and the kettle body 514. In this embodiment, a stopper 5185 is provided between the water inlet and the water outlet, and a seal 5183 is provided between the stopper 5185 and the handle 515. When the flow guide 518 is installed on the handle 515, the seal 5183 is clamped between the stopper 5185 and the inner wall of the kettle body 514. Preferably, part of the seal 5183 passes through the side wall of the kettle body 514 and extends to the inside of the handle 515, and there is an interference fit between the seal 5183 and the side wall of the kettle body 514, which helps to further improve the sealing effect and improve the connection effect between the handle 515 and the kettle body 514.

[0118] Furthermore, in this embodiment, the handle 515 is ergonomically designed to facilitate user access to the brewing pot 51. Furthermore, the handle 515 can be configured into two parts: a main body 5152, which is used for mounting and securing to the connecting base 519 and connecting to the pot body 514; and a decorative piece 5153, which mates with the main body 5152 and thus covers the handle 515. This function can enclose the interior of the handle 515, for example, by shielding the second conduit 5151, the flow guide 518 mounting structure, or the control panel 512 mounting portion after the main body 5152 is connected to the pot body 514. Furthermore, this function can enhance the aesthetics of the brewing pot 51 and improve its market competitiveness. Furthermore, the decorative piece 5153 generates high friction, preventing the user from slipping when removing the brewing pot 51.

[0119] In addition, during the assembly process, the handle 515 can be first fixedly connected to the connecting seat 519, and then the kettle body 514 can be installed on the connecting seat 519 and fixed, and finally the handle 515 and the kettle body 514 are connected together. The operation is convenient and the overall structural strength is good.

[0120] Furthermore, a liquid level detection device is provided inside the water storage chamber 5142, and the liquid level detection device includes a first liquid level detection component 516 and a second liquid level detection component 517, wherein the first liquid level detection component 516 is arranged at the bottom of the water storage chamber 5142, and the first liquid level detection component 516 is used to detect whether there is liquid in the water storage chamber 5142, and the second liquid level detection component 517 is arranged above the first liquid level detection component 516, and the second liquid level detection component 517 is used to detect the liquid level height of the liquid.

[0121] Specifically, by installing a liquid level detection device within the water storage chamber 5142, the liquid volume within the water storage chamber 5142 can be effectively detected, thereby ensuring the accuracy of pure water acquisition. By providing a first liquid level detection element 516 and a second liquid level detection element 517 for coordinated detection, the impact of accidental water droplets on detection accuracy can be reduced. Furthermore, by separately processing the detection signals, a phased detection process can be implemented, further improving the accuracy of water level detection.

[0122] It is important to understand that if Figure 9 and Figure 12As shown, the liquid level detection device includes a first liquid level detection member 516 and a second liquid level detection member 517. The first liquid level detection member 516 is fixedly connected to the bottom of the kettle body 514, and its probe is located within the water storage chamber 5142. At this point, the first liquid level detection member 516 detects the presence of liquid in the water storage chamber 5142. In this embodiment, the first liquid level detection member 516 is a liquid sensor that can detect information such as the presence, flow rate, temperature, pressure, and chemical properties of liquid by changing parameters such as capacitance, resistance, or sound waves. Liquid sensors are readily available and can be purchased and used directly, making them simple to install and operate.

[0123] Still Figure 9 As shown, the second liquid level detection member 517 is located above the second liquid level detection member 517, and the horizontal installation height of the second liquid level detection member 517 is lower than the height of the diversion structure 5182. In this case, the second liquid level detection member 517 can detect whether the liquid in the water storage chamber 5142 has reached a predetermined volume. When the liquid reaches the predetermined volume, it is at the same level as the second liquid level detection member 517, or lower than the height of the second liquid level detection member 517. Because the height of the diversion structure 5182 is higher than or equal to the height of the second liquid level detection member 517, this arrangement ensures that the liquid always remains below the level of the output channel 5181 when it reaches the predetermined volume. At this time, under the influence of atmospheric pressure and internal gas pressure, the pure water in the water storage chamber 5142 will not flow back into the output channel 5181. In this embodiment, the second liquid level detection member 517 is a liquid level sensor, which is a sensor used to measure and monitor the position of liquid in a container and can be purchased and used directly. Preferably, the liquid level sensor can be of a float type, a pressure type, or a capacitive type.

[0124] It should be pointed out that, in the present embodiment, the second liquid level detection component 517 is arranged on the block 5185, that is, the second liquid level detection component 517 is arranged on the guide component 518, and the second liquid level detection component 517 and the output end of the output channel 5181 are respectively arranged on opposite sides of the block 5185. Such an arrangement helps to avoid the pure water output from the second pipeline 5151 from splashing onto the second liquid level detection component 517 in advance, affecting the detection effect of the second liquid level detection component 517, and helps to further improve the accuracy of the detection.

[0125] Furthermore, the brewing component 50 also includes a water pump, which is arranged inside the box body 10, and one end of the water pump is connected to the first water tank 20, and the other end of the water pump is connected to the water storage chamber 5142 through the support seat 52.

[0126] Specifically, by providing a water pump, power can be provided for the flow of pure water when delivering water to the water storage chamber 5142, and flow power can also be provided for the gas from the water storage chamber 5142 when draining water. The provision of the water pump, on the one hand, can ensure that there is no residual water in the second pipeline 5151 and the first pipeline 525, which helps to prevent the emergence of bacteria and impurities, improves the water quality, and ensures a good user experience. In addition, it can also improve the efficiency of the production process and avoid the difficulty of draining residual water during the water flow test. On the other hand, it ensures the flow of pure water, makes the installation position of the support base 52 more flexible, and contributes to the applicability and aesthetics of the water supply device 1.

[0127] It should be understood that the water pump is disposed inside the housing 10, that is, it is connected between the first pipeline 525 and the first housing 21. At this point, the water pump is electrically connected to the control panel 512, and the user can start or stop the water pump by operating the control panel 512. In this embodiment, the water pump is a vacuum pump, which is not shown in the figure. The water pump can introduce external air into the second pipeline 5151, thereby providing power for emptying the water in the second pipeline 5151. It can also provide auxiliary power or the main driving force for the flow of liquid in the second pipeline 5151, thereby improving the rate of liquid delivery to the water storage chamber 5142 and the stability of the flow rate. As a convertible embodiment, the water pump can also be disposed between the one-way valve 5191 and the second pipeline 5151.

[0128] Combine Figure 1 and Figure 2 As shown, since a water pump is provided between the first pipeline 525 and the first housing 21, in this embodiment, the support base 52 can be vertically positioned in the middle of the arc-shaped region 111. In this case, the pure water in the first housing 21 can enter the water storage chamber 5142 under the action of the water pump. Of course, in addition to this, a water pump can also be omitted from the first pipeline 525 and the first housing 21. In this case, the horizontal installation height of the first pipeline 525 is lower than the horizontal height of the first water tank 20 to ensure that the pure water in the first water tank 20 can flow into the water storage chamber 5142 under the action of atmospheric pressure. Preferably, a control valve is provided on the connecting pipe 53 between the water storage chamber 5142 and the first water tank 20. This control valve can be a solenoid valve and is electrically connected to the control panel 512 to ensure that the pure water in the water storage chamber 5142 meets user needs.

[0129] The above description is merely a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in the present invention should be included in the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be based on the scope of protection of the claims.

Claims

1. A water supply device, characterized in that: include: a box body, wherein a circuit component is disposed inside the box body, and the circuit component can be electrically connected to an external power source; a first water tank, the first water tank being arranged inside the box body and being used to store filtered pure water; A brewing component, comprising a brewing pot and a support base, wherein the support base is arranged on the box body, the brewing pot is detachably arranged on the support base, and a heating component is arranged inside the brewing pot; When the brewing pot is arranged on the support base, the water storage chamber of the brewing pot is communicated with the first water tank, and the heating component is electrically connected to the circuit component through the support base.

2. The water supply equipment according to claim 1, characterized in that The brewing component also includes: A control panel is provided on the brewing pot and is electrically connected to a control component of the heating assembly.

3. The water supply equipment according to claim 2, characterized in that A first coupler is provided on the support base, and the first coupler is electrically connected to the circuit component. A second coupler is provided at the bottom of the brewing pot, and the second coupler is detachably connected to the first coupler. The second coupler is electrically connected to the heating component and the control panel respectively.

4. The water supply equipment according to claim 3, characterized in that The second coupler includes a first coupling portion and a second coupling portion, the first coupling portion is electrically connected to the heating element of the heating assembly, and the second coupling portion is electrically connected to the control panel.

5. The water supply equipment according to claim 3, characterized in that: The first coupler is provided with a first pipeline, and the first pipeline is connected to the first water tank; The second coupler is provided with a one-way valve connected to the water storage chamber, and the one-way valve is configured to conduct one-way flow from the first pipeline to the water storage chamber when the brewing pot is placed on the support seat.

6. The water supply equipment according to claim 5, characterized in that: The brewing pot has a handle and a second pipeline, the second pipeline is arranged inside the handle, and the liquid inlet end of the second pipeline is connected to the one-way valve, and the liquid outlet end of the second pipeline is arranged on the top side wall of the water storage cavity.

7. The water supply equipment according to claim 1, characterized in that A liquid level detection device is also provided inside the water storage chamber, and the liquid level detection device includes: a first liquid level detecting member, the first liquid level detecting member being disposed at the bottom of the water storage chamber and being used to detect whether there is liquid in the water storage chamber; A second liquid level detecting member is provided above the first liquid level detecting member and is used to detect the liquid level height of the liquid.

8. The water supply equipment according to claim 1, characterized in that The brewing component also includes: A water pump is arranged inside the box body, and one end of the water pump is connected to the first water tank, and the other end of the water pump is connected to the water storage chamber through the support seat.

9. The water supply equipment according to claim 1, characterized in that The box body has a base and a front panel, the base is arranged below the front panel, the support base is detachably arranged on the front panel, and the support base is spaced apart from the base.

10. The water supply equipment according to claim 9, characterized in that The front panel is provided with a slot extending along a first direction, wherein the first direction intersects with the front panel. The support seat has an inserting portion, and the inserting portion is inserted into the slot and connected to the front panel.

11. The water supply equipment according to claim 10, characterized in that: The front panel has an inner side surface facing away from the support seat, and the end of the insertion portion facing the front panel is provided with a clamping structure, and the clamping structure has an active surface passing through the slot and abutting against the inner side surface; And / or, a baffle is provided at the bottom end of the slot, a first fixing hole is provided on the baffle, and a second fixing hole is provided on the insertion portion, and the second fixing hole can be screwed to a fastener passing through the first fixing hole.

12. The water supply equipment according to claim 11, characterized in that A second limiting column is protruding from the inner wall of the slot, and the second limiting column is used to press against the peripheral surface of the insertion portion.