Water supply equipment and kitchen appliance integrated system

By designing an integrated water supply equipment, combined with brackets, water purification modules, and heating modules, the problems of traditional kitchen appliance systems taking up a large space and high cost of purchasing machines are solved, and a variety of water supply functions are integrated, improving user experience and room cleanliness.

CN120101308APending Publication Date: 2025-06-06GUANGDONG MACRO GAS APPLIANCE
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Patent Information

Application Number
CN202311668275.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-12-06
Publication Date
2025-06-06

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Abstract

The invention relates to a water supply device and a kitchen appliance integrated system, the water supply device comprises a support, the support comprises a first support body and a second support body which are adjacently arranged, the first support body extends along the length direction of the support, and the second support body extends along the height direction of the support; the water purification module is arranged on the second frame body and comprises a tap water inlet, a clean water outlet and a drinking water outlet; the first heating module is arranged on the side, away from the second frame body, of the first frame body, and the first heating module communicates with the tap water inlet and the clean water outlet; the second heating module is arranged on the second frame body and located between the second frame body and the first heating module, and the second heating module is communicated with the tap water inlet and the drinking water outlet. According to the technical scheme, the technical problems that a traditional kitchen electric system needs to be provided with a plurality of independent kitchen electric appliances to achieve various kinds of water supply, the occupied space is large, the machine purchasing cost is high, pipeline connection is complex, and the room cleanliness is poor are effectively solved.
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Description

Technical Field

[0001] The present application relates to the technical field of kitchen appliances, and in particular to a water supply device and a kitchen appliance integrated system. Background Art

[0002] As living standards continue to improve, people's demand for kitchen water is increasing. In order to meet different water needs, users need to configure a variety of kitchen appliances such as water purifiers, pipeline machines, small kitchen treasures and water heaters; each kitchen appliance can provide a water supply, so that multiple kitchen appliances can be configured to obtain multiple water supplies to meet daily use. However, the more kitchen appliances there are, the more space they occupy, the smaller the effective space in the kitchen, and the poor user experience; at the same time, the more kitchen appliances there are, the higher the purchase cost, and the more complicated the pipe connections between appliances are, which affects the cleanliness of the room. Summary of the invention

[0003] The present application provides a water supply device and a kitchen appliance integrated system to solve the technical problems that the traditional kitchen appliance system needs to be configured with multiple independent kitchen appliances to achieve multiple water supplies, which occupies a large space, has a high purchase cost, has complex pipe connections, and poor room cleanliness.

[0004] To this end, in a first aspect, an embodiment of the present application provides a water supply device, which includes:

[0005] The bracket comprises a first bracket body and a second bracket body which are arranged adjacent to each other, wherein the first bracket body extends along the length direction of the bracket, and the second bracket body extends along the height direction of the bracket;

[0006] A water purification module is arranged on the second frame, and the water purification module includes a tap water inlet, a washing water outlet and a drinking water outlet;

[0007] A first heating module is disposed on a side of the first frame away from the second frame, the first heating module being connected to a tap water inlet and a rinse water outlet; and

[0008] The second heating module is arranged on the second frame and located between the second frame and the first heating module. The second heating module is connected to the tap water inlet and the drinking water outlet.

[0009] In a possible embodiment, the water purification module also includes a water circuit plate, a first filter element, a first water pump and a second filter element. The tap water inlet, the cleaning water outlet and the drinking water outlet are all arranged on the water circuit plate. The first filter element and the second filter element are both arranged on the second frame and are arranged at intervals along the height direction of the bracket. The water circuit plate is rotatably connected to the side of the first filter element and the second filter element away from the second frame. The first water pump is arranged on the side of the first frame close to the second frame and is located in front of the first filter element and the second filter element. The first water pump and the water circuit plate are respectively located on both sides of the second frame; the first inlet of the first filter element is connected to the tap water inlet, the first water pump is arranged between the first outlet of the first filter element and the second filter element, the first outlet of the second filter element is connected to the second inlet of the first filter element, and the second outlet of the first filter element is connected to the second heating module.

[0010] In a possible embodiment, the second heating module includes a second heating element and a second water pump. The second heating element is arranged above the first water pump. The second water pump is arranged on the second frame and located above the second heating element. The second heating element is connected to the second outlet of the first filter element and the drinking water outlet.

[0011] In a possible embodiment, the second heating module also includes a heat exchanger and a clean heat fixing frame, the clean heat fixing frame is arranged on the second frame, the heat exchanger is arranged on the clean heat fixing frame and is located behind it, and the second heating element is arranged on the clean heat fixing frame and is located in front of it; the first inlet of the first heat exchanger is connected to the second outlet of the first filter element, the first outlet of the heat exchanger is connected to the inlet of the second heating element, the outlet of the second heating element is connected to the second inlet of the heat exchanger, and the second outlet of the heat exchanger is connected to the drinking water inlet.

[0012] In a possible embodiment, a first filter element turntable, a first clamping member arranged at the periphery of the first filter element turntable, a second filter element turntable and a second clamping member arranged at the periphery of the second filter element turntable are arranged on the side of the waterway plate facing the second frame. The first filter element is rotatably installed on the first filter element turntable and is clamped and fastened by the first clamping member; the second filter element is rotatably installed on the second filter element turntable and is clamped and fastened by the second clamping member.

[0013] In a possible implementation, a pure water inlet and a waste water inlet are further provided on the waterway plate. The pure water inlet is connected to the second outlet of the first filter element, and the waste water inlet is connected to the second outlet of the second filter element.

[0014] In a possible embodiment, the first heating module includes a first heating element, an air dissolving tank and an air pump. The air dissolving tank is arranged on the first frame, the first heating element is arranged above the air dissolving tank, the air pump is arranged above the first heating element, the air pump is connected to the air dissolving tank, and the first heating element and the air dissolving tank are arranged in sequence between the tap water inlet and the cleaning water outlet.

[0015] In a possible implementation, the bracket further includes a decorative plate and a surface cover arranged opposite to the second frame body, the surface cover is arranged on the first frame body, and the decorative plate is arranged on a side of the surface cover away from the second frame body; and / or,

[0016] The bracket also includes a shell and a back cover. The shell is covered on the outer sides of the first frame and the second frame. The back cover covers the rear end of the shell and is located on the outer side of the second frame.

[0017] In a possible embodiment, it also includes a controller electrically connected to the water purification module, the first heating module and the second heating module. The controller is arranged above the first heating module and located on the side of the second heating module away from the second frame. The controller is used to control the water purification module, the first heating module and the second heating module to execute user instructions.

[0018] In a second aspect, an embodiment of the present application further provides a kitchen appliance integration system, comprising a water supply device as described in any of the above items.

[0019] According to the water supply equipment and kitchen appliance integrated system provided by the embodiment of the present application, the water supply equipment includes: a bracket, including a first frame and a second frame arranged adjacently, the first frame extending along the length direction of the bracket, and the second frame extending along the height direction of the bracket; a water purification module, arranged on the second frame, the water purification module including a tap water inlet, a washing water inlet and a drinking water inlet; a first heating module, arranged on the side of the first frame away from the second frame, the first heating module connecting the tap water inlet and the washing water inlet; and a second heating module, arranged on the second frame and located between the second frame and the first heating module, the second heating module connecting the tap water inlet and the drinking water inlet. The technical solution of the present application configures the water supply equipment as an integrated structure that can at least provide (cold / hot) washing water and (cold / hot) drinking water to the user, integrates the user's multiple kitchen water needs into one appliance, greatly reduces the number of kitchen appliances, reduces the space occupied by kitchen appliances, increases the effective use area of ​​the kitchen, and improves the user's experience; at the same time, simplifies the pipeline connection lines between kitchen appliances, and improves the cleanliness and aesthetics of the room. In addition, the integrated water supply equipment can significantly reduce the user's purchase cost and reduce the cost of living. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The drawings herein are incorporated into the specification and constitute a part of the specification, showing embodiments that conform to the present application, and are used together with the specification to explain the principles of the present application. In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings required for use in the embodiments or the prior art descriptions are briefly introduced below. Obviously, for ordinary technicians in this field, other drawings can also be obtained based on these drawings without paying creative labor. One or more embodiments are exemplarily illustrated by the pictures in the corresponding drawings. These exemplified descriptions do not constitute a limitation on the embodiments. Elements with the same reference numerals in the drawings are represented as similar elements. Unless otherwise stated, the figures in the drawings do not constitute a proportional limitation.

[0021] Figure 1 An exploded view of a water supply device provided in an embodiment of the present application;

[0022] Figure 2 A schematic diagram of the three-dimensional structure of the second heating module of the water supply equipment provided in an embodiment of the present application;

[0023] Figure 3 A schematic diagram of the three-dimensional structure of a water purification module of a water supply device provided in an embodiment of the present application;

[0024] Figure 4 A side view of a waterway plate of a water supply device provided in an embodiment of the present application.

[0025] Description of reference numerals:

[0026] 100, bracket; 110, first frame; 120, second frame; 130, decorative plate; 140, front cover; 150, rear cover;

[0027] 200, water purification module; 201, tap water inlet; 202, rinse water outlet; 203, drinking water outlet; 204, pure water outlet; 205, waste water outlet; 210, waterway plate; 211, first filter element turntable; 212, first clamping member; 213, second filter element turntable; 214, second clamping member; 220, first filter element; 230, first water pump; 240, second filter element;

[0028] 300, first heating module; 310, first heating element; 320, air dissolving tank; 330, air pump;

[0029] 400, second heating module; 410, second heating element; 420, second water pump; 430, heat exchanger; 440, net heat fixing frame;

[0030] 500, controller;

[0031] Z, height direction; Y, length direction; X, width direction. DETAILED DESCRIPTION

[0032] In order to make the purpose, technical solution and advantages of the embodiments of the present application clearer, the technical solution in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of this application.

[0033] The disclosure below provides many different embodiments or examples to realize the different structures of the present application. In order to simplify the disclosure of the present application, the parts and settings of specific examples are described below. Of course, they are only examples, and the purpose is not to limit the present application. In addition, the present application can repeat reference numbers and / or letters in different examples. This repetition is for the purpose of simplification and clarity, and does not indicate the relationship between the various embodiments and / or settings discussed in itself. In addition, the various specific processes and examples of materials provided by the present application, but those of ordinary skill in the art can appreciate the applicability of other processes and / or the use of other materials.

[0034] For ease of description, spatial relative terms may be used herein to describe the relative positional relationship or movement of one element or feature relative to another element or feature as shown in the figure, such as "inside", "outside", "inner side", "outer side", "below", "below", "above", "above", "front", "back", etc. Such spatial relative terms are intended to include different orientations of the device in use or operation in addition to the orientation depicted in the figure. For example, if the device in the figure undergoes a position flip or a posture change or a motion state change, then these directional indications also change accordingly, for example: an element described as "below other elements or features" or "below other elements or features" will subsequently be oriented as "above other elements or features" or "above other elements or features". Therefore, the example term "below..." may include both upper and lower orientations. The device may be otherwise oriented (rotated 90 degrees or in other directions) and the spatial relative descriptors used herein are interpreted accordingly.

[0035] See also Figures 1 to 4 , an embodiment of the present application provides a water supply device, which includes: a bracket 100, a water purification module 200, a first heating module 300 and a second heating module 400.

[0036] The bracket 100 includes a first bracket 110 and a second bracket 120 that are adjacently arranged, wherein the first bracket 110 extends along a length direction Y of the bracket 100, and the second bracket 120 extends along a height direction Z of the bracket 100;

[0037] The water purification module 200 is disposed on the second frame 120. The water purification module 200 includes a tap water inlet 201, a clean water outlet 202 and a drinking water outlet 203;

[0038] The first heating module 300 is disposed on a side of the first frame 110 away from the second frame 120 , and the first heating module 300 is connected to the tap water inlet 201 and the rinse water outlet 202 ; and

[0039] The second heating module 400 is disposed on the second frame 120 and located between the second frame 120 and the first heating module 300 . The second heating module 400 is connected to the tap water inlet 201 and the drinking water outlet 203 .

[0040] In this embodiment, the water supply equipment is configured as an integrated structure that can at least provide users with (cold / hot) washing water and (cold / hot) drinking water, integrating the user's various kitchen water needs into one appliance, greatly reducing the number of kitchen appliances, reducing the space occupied by kitchen appliances, increasing the effective use area of ​​the kitchen, and improving the user's experience; at the same time, the pipeline connection lines between kitchen appliances are simplified, improving the cleanliness and aesthetics of the room. In addition, the integrated water supply equipment can greatly reduce the user's purchase cost and reduce the cost of living.

[0041] Specifically, the water supply equipment is configured as a composite component including at least a bracket 100, a water purification module 200, a first heating module 300 and a second heating module 400. The bracket 100 may be an L-shaped structure, including a first frame 110 disposed at the bottom and a second frame 120 disposed on the left side, and the second frame 120 may be vertically connected to the first frame 110. The water purification module 200 may be inserted on the second frame 120, with a portion thereof extending out of the second frame 120 to facilitate connection with an external structure; the other portion is accommodated in a space enclosed by the second frame 120 and the first frame 110 to ensure that the center of gravity of the entire water purification module 200 is near the second frame 120, and to ensure that the second frame 120 can support the water purification module 200. The first heating module 300 can be an electric heating device, which is arranged on the side of the first frame 110 away from the second frame 120 to balance the second frame 120 and the water purification module 200 arranged on the second frame 120, so that the support 100 will not fall toward the side of the water purification module 200, thereby improving the stability of the water supply equipment; the first heating module 300 is used to heat the washing water to provide the user with hot washing water. The second heating module 400 can be an electric heating device, which is arranged between the second frame 120 and the first heating module 300 to make the center of gravity of the entire water supply equipment close to the center of the support 100 at least in the horizontal direction, thereby improving the stability of the water supply equipment; the second heating module 400 is used to heat drinking water to provide the user with hot drinking water.

[0042] In this way, the water supply device provided in this embodiment can provide users with cold / hot washing water and cold / hot drinking water. When the user needs to use washing water, first determine whether hot water is needed. If necessary, turn on the first heating button, the first heating module 300 works, and the second heating module 400 is in a non-working state. At this time, the tap water is heated by the water purification module 200 or directly flows through the first heating module 300, and then taken out from the washing water inlet port to provide hot filtered water or tap water; if no heat is needed, just turn on the washing water faucet. When the user needs to use drinking water, first determine whether heating is needed. If necessary, turn on the second heating button, the second heating module 400 works, and the first heating module 300 is in a non-working state. At this time, the tap water is filtered by the water purification module 200 and enters the second heating module 400 for heating, and then taken out from the drinking water inlet port 203 to provide hot drinking water; if no heat is needed, just turn on the drinking water faucet.

[0043] See also Figure 1In a possible implementation, the water purification module 200 further includes a waterway plate 210, a first filter element 220, a first water pump 230 and a second filter element 240. The tap water inlet 201, the clean water inlet 202 and the drinking water inlet 203 are all arranged on the waterway plate 210. The first filter element 220 and the second filter element 240 are both arranged on the second frame 120 and are arranged at intervals along the height direction Z of the bracket 100. The waterway plate 210 is rotatably connected to the first filter element 220 and the second filter element 240 on a side away from the second frame 120. The first water pump 2 30 is arranged on a side of the first frame 110 close to the second frame 120 and is located in front of the first filter element 220 and the second filter element 240, the first water pump 230 and the waterway plate 210 are respectively located on both sides of the second frame 120; the first inlet of the first filter element 220 is connected to the tap water inlet 201, the first water pump 230 is arranged between the first outlet of the first filter element 220 and the second filter element 240, the first outlet of the second filter element 240 is connected to the second inlet of the first filter element 220, and the second outlet of the first filter element 220 is connected to the second heating module 400.

[0044] In this embodiment, the specific configuration of the washing water module 200 is optimized. Specifically, the water purification module 200 is configured as a composite component including at least a waterway plate 210, a first filter element 220, a first water pump 230 and a second filter element 240. The waterway plate 210 may be a plate-shaped structure, on which a tap water inlet 201, a washing water inlet 202 and a drinking water inlet 203 are provided, which are used to connect an external water source and a waterway pipe in a water supply device. The first filter element 220 can be a PCB composite filter element, which at least includes a PP cotton filter element and a post-activated carbon filter element; wherein the PP filter element is also called a melt-blown filter element, which is a filter material made of non-toxic and tasteless polypropylene as a raw material, and is made by heating, melting, spraying, pulling, and receiving molding. The PP filter element has a uniform pore size, a deep filtration structure with a sparse outside and a dense inside, and has high filtration efficiency and excellent acid and alkali resistance. It can effectively remove suspended matter, particles, rust and other impurities in the liquid; the post-activated carbon filter element can deeply purify water, thoroughly absorb the discoloration and odor in the purified water, and adjust the taste of the purified water. The second filter element 240 can be an RO filter element, which is a reverse osmosis membrane filter element, and its osmotic membrane pore size is as small as nanometers, which can filter impurities such as inorganic salts, heavy metal ions, organic matter, colloids, bacteria and viruses in the water. The first water pump 230 is used to provide power to the water flowing out of the first outlet of the first filter element 220, so that it enters the second filter element 240 for secondary filtration.

[0045] The first filter 220 and the second filter 240 are both inserted on the second frame 120, with a part of them extending out of the second frame 120 and the other part being contained in the accommodating chamber formed by the second frame 120 and the first frame 110; the second filter 240 is arranged on the side of the first filter 220 away from the first frame 110, so as to facilitate the arrangement of the first water pump 230 on the first frame 110, and at the same time arrange the second heating module 400 above the first pump body, so that the center of gravity of the entire water supply equipment is close to the bottom of the bracket 100 at least in the vertical direction, lowering the center of the water supply equipment and improving the stability of the water supply equipment in the vertical direction. The waterway plate 210 is arranged on the outside of the second frame 120, and together with the first filter 220 and the second filter 240 extending out of the second frame 120, is used to balance the force of the water supply equipment in the horizontal direction, and improve the stability of the water supply equipment in the horizontal direction.

[0046] See also Figure 1 and Figure 2 In a possible embodiment, the second heating module 400 includes a second heating element 410 and a second water pump 420. The second heating element 410 is arranged above the first water pump 230. The second water pump 420 is arranged on the second frame 120 and is located above the second heating element 410. The second heating element 410 is connected to the second outlet of the first filter element 220 and the drinking water inlet 203.

[0047] In this embodiment, the specific configuration of the second heating module 400 is optimized. Specifically, the second heating module 400 is configured as a combination component including at least a second heating element 410 and a second water pump 420. The second heating element 410 can be a thick film heater, which is arranged above the first water pump 230 and is used to heat pure water; the second water pump 420 can be connected to the second frame 120 to enhance the connection tightness between the second water pump 420 and the bracket 100, and is used to provide power to the water flowing out of the second outlet of the first filter element 220, so that it enters the second heating element 410 for heating. In this way, the vertical space of the second heating module 400 is reasonably arranged, so that the layout is compact and the occupied space is reduced. When the user needs to use hot drinking water, the second heating element 410 works and the second water pump 420 works. At this time, tap water enters the waterway plate 210 from the tap water inlet 201, then flows through the first filter element 220, and flows out from the first outlet of the first filter element 220 into the second filter element 240, and then enters the first filter element 220 from the second inlet of the first filter element 220 for deodorization and color removal filtration, and then enters the second heating element 410 for heating. The heated pure water is taken out from the drinking water inlet 203 to provide hot drinking water to the user.

[0048] See also Figure 1 and Figure 2In a possible embodiment, the second heating module 400 also includes a heat exchanger 430 and a clean heat fixing frame 440, the clean heat fixing frame 440 is arranged on the second frame 120, the heat exchanger 430 is arranged on the clean heat fixing frame 440 and is located behind it, and the second heating element 410 is arranged on the clean heat fixing frame 440 and is located in front of it; the first inlet of the first heat exchanger 430 is connected to the second outlet of the first filter element 220, the first outlet of the heat exchanger 430 is connected to the inlet of the second heating element 410, the outlet of the second heating element 410 is connected to the second inlet of the heat exchanger 430, and the second outlet of the heat exchanger 430 is connected to the drinking water inlet 203.

[0049] In this embodiment, the specific configuration of the second heating module 400 is further optimized. Specifically, the second heating module 400 is configured as a composite component including at least a second heating element 410, a second water pump 420, a heat exchanger 430 and a heat-cleaning fixing frame 440. The heat exchanger 430 may be a plate heat exchanger 430, the left end of which may be connected to the second frame 120, and the front end of which may be connected to the heat-cleaning fixing frame 440, so as to improve the connection stability of the heat exchanger 430. The clean heat fixing frame 440 may be a metal plate of U-shaped structure, which may include a bottom plate and connecting ears arranged on both sides of the bottom plate. The connecting ear at the left end may be connected to the second frame 120 by welding or other means, and the connection is strong in tightness. The connecting ear at the right end extends in the direction away from the second frame 120. The bottom plate is perpendicular to the plane where the first frame 110 and the plane where the second frame 120 are located at the same time. The two connecting ears are protrudingly arranged on the rear side of the bottom plate. In this way, a half-frame-shaped installation chamber can be enclosed between the two connecting ears and the bottom plate. The heat exchanger 430 is assembled in the installation chamber. The second heating element 410 can be connected to the front side of the clean heat fixing frame 440 by fasteners such as screws / bolts. In this way, the installation space reserved for the second heating module 400 in the accommodating chamber is reasonably allocated, and the installation chamber of the clean heat fixing frame 440 in the width direction X of the bracket 100 is fully utilized, so that the layout of the second heating module 400 is compact and occupies a small space.

[0050] As described above, when the user needs to use hot water, the second heating element 410 works, and the heat exchanger 430 does not work. At this time, tap water enters the waterway plate 210 from the tap water inlet 201, then flows through the first filter element 220, and flows out from the first outlet of the first filter element 220 to enter the second filter element 240 for filtration, and then enters the first filter element 220 from the second inlet of the first filter element 220 for deodorization and color removal filtration, and then enters the second heating element 410 for heating, and the heated pure water is taken out from the drinking water inlet 203 to provide hot drinking water to the user; when the user When cold hot water is needed, the second heating element 410 works and the heat exchanger 430 works. At this time, tap water enters the waterway plate 210 from the tap water inlet 201, then flows through the first filter element 220, and flows out from the first outlet of the first filter element 220 to enter the second filter element 240 for filtration, and then enters the first filter element 220 from the second inlet of the first filter element 220 for deodorization and color removal filtration, and then enters the second heating element 410 for heating and enters the heat exchanger 430 for heat exchange. The cooled warm water is taken out from the drinking water inlet 203 to provide users with boiled water.

[0051] See also Figure 1 and Figure 3 In a possible embodiment, a first filter element turntable 211, a first clamping member 212 arranged on the periphery of the first filter element turntable 211, a second filter element turntable 213 and a second clamping member 214 arranged on the periphery of the second filter element turntable 213 are provided on the side of the waterway plate 210 facing the second frame 120; the first filter element 220 is rotatably installed on the first filter element turntable 211 and is clamped and fastened by the first clamping member 212; the second filter element 240 is rotatably installed on the second filter element turntable 213 and is clamped and fastened by the second clamping member 214.

[0052] In this embodiment, the connection mode between the waterway plate 210 and the first filter element 220 and the second filter element 240 is optimized. Specifically, the first filter element turntable 211 and the first clamping member 212 are configured on the waterway plate 210 to realize the rotational clamping connection between the first filter element 220 and the first filter element 220, thereby improving the connection tightness between the waterway plate 210 and the first filter element 220. At the same time, the second filter element turntable 213 and the second clamping member 214 are configured on the waterway plate 210 to realize the rotational clamping connection between the second filter element 240 and the second filter element 240, thereby improving the connection tightness between the waterway plate 210 and the second filter element 240.

[0053] In one example, a plurality of first clamping members 212 are provided, and the plurality of first clamping members 212 are arranged at intervals on the circumference of the first filter element turntable 211, so that the connection tightness between the waterway plate 210 and the first filter element 220 is enhanced at least in number through the plurality of first clamping members 212. A plurality of second clamping members 214 are provided, and the plurality of second clamping members 214 are arranged at intervals on the circumference of the second filter element turntable 213, so that the connection tightness between the waterway plate 210 and the second filter element 240 is enhanced at least in number through the plurality of second clamping members 214.

[0054] See also Figure 1 and Figure 4 In a possible implementation, a pure water inlet 204 and a waste water inlet 205 are further provided on the waterway plate 210 , the pure water inlet 204 is connected to the second outlet of the first filter element 220 , and the waste water inlet 205 is connected to the second outlet of the second filter element 240 .

[0055] In this embodiment, the specific configuration of the waterway plate 210 is optimized. Specifically, the waterway plate 210 is configured as a composite component having at least a tap water inlet 201, a clean water inlet 202, a drinking water inlet 203, a pure water inlet 204, and a waste water inlet 205. The waterway plate 210 is provided with a liquid flow channel, through which the flow direction of the liquid can be changed, so that the heated / filtered water flow is led out from different interfaces, thereby obtaining different water supplies. The wastewater inlet 205 is arranged on the edge side of the waterway plate 210 so as to lead out the wastewater generated in the water supply equipment; the pure water inlet 204 is arranged in the middle position to lead out the pure water that has been filtered by the first filter element 220 and the second filter element 240 but not heated; the tap water inlet 201 is arranged between the wastewater inlet 205 and the pure water inlet 204, and is used to introduce external tap water; the drinking water inlet 203 is arranged on the side of the pure water inlet 204 away from the tap water inlet 201, and is used to take out hot water / cooled boiled water; the cleaning water inlet 202 is arranged on the side of the drinking water inlet 203 away from the pure water inlet 204, and is used to take out cleaning water, such as tap water or filtered water.

[0056] See also Figure 1 In a possible embodiment, the first heating module 300 includes a first heating element 310, an air dissolving tank 320 and an air pump 330. The air dissolving tank 320 is arranged on the first frame 110, the first heating element 310 is arranged above the air dissolving tank 320, the air pump 330 is arranged above the first heating element 310, the air pump 330 is connected to the air dissolving tank 320, and the first heating element 310 and the air dissolving tank 320 are sequentially arranged between the tap water inlet 201 and the cleaning water outlet 202.

[0057] In this embodiment, the specific configuration of the first heating module 300 is optimized. Specifically, the first heating module 300 is configured as a combination component including at least a first heating element 310, an air dissolving tank 320 and an air pump 330. The first heating element 310 may be a cast aluminum heating body, which is arranged between the tap water inlet 201 and the air dissolving tank 320 and is used to heat tap water or filtered water; the air dissolving tank 320 and the air pump 330 together constitute a micro bubble water generating device, which is used to provide cold / hot micro bubble water. Specifically, when the user needs to use hot cleaning water, the first heating element 310 works, and the air dissolving tank 320 and the air pump 330 do not work. At this time, tap water enters the waterway plate 210 from the tap water inlet 201, then flows through the first filter element 220, and flows out from the outlet of the first filter element 220 into the first heating element 310 for heating, and finally flows out from the cleaning water inlet 202 to provide hot filtered water to the user; when the user needs cold cleaning water, just turn off the first heating element 310. When the user needs to use hot microbubble water, the first heating element 310 works, and the air dissolving tank 320 and the air pump 330 work. At this time, tap water enters the waterway plate 210 from the tap water inlet 201, then flows through the first filter element 220, and flows out from the outlet of the first filter element 220 to enter the first heating element 310 for heating, and then enters the air dissolving tank 320 to form microbubble water, and finally is taken out from the cleaning water inlet 202 to provide hot microbubble water to the user; when the user needs cold microbubble water, the first heating element 310 can be turned off.

[0058] In one example, another water pipe can be added to direct the tap water to the inlet of the first heating element 310, so that the tap water can be heated to provide the user with cold / hot tap water. Specifically, when the user needs to use hot tap water, the first heating element 310 works, and the air dissolving tank 320 and the air pump 330 do not work. At this time, the tap water enters the waterway plate 210 from the tap water inlet 201, and then directly enters the first heating element 310 for heating, and finally is taken out from the washing water inlet 202 to provide the user with hot tap water; when the user needs to use cold tap water, the first heating element 310 can be turned off.

[0059] See also Figure 1 In a possible embodiment, the bracket 100 further includes a decorative panel 130 and a surface cover 140 disposed opposite to the second frame 120, the surface cover 140 is disposed on the first frame 110, and the decorative panel 130 is disposed on a side of the surface cover 140 away from the second frame 120; and / or, the bracket 100 further includes an outer shell (not shown) and a back cover 150, the outer shell covers the outer sides of the first frame 110 and the second frame 120, and the back cover 150 covers the rear end of the outer shell and is located on the outer side of the second frame 120.

[0060] In this embodiment, the specific configuration of the bracket 100 is further optimized. Specifically, the bracket 100 is configured as a composite component including at least a first frame 110, a second frame 120, a cover 140, a decorative plate 130, an outer shell and a back cover 150. The cover 140 can be vertically connected to the first frame 110, and it and the second frame 120 are respectively arranged on opposite sides of the first frame 110, and enclosed to form a U-shaped structure; the decorative plate 130 is arranged on the outside of the cover 140 to improve the aesthetics of the water supply device; the outer shell is arranged on the first frame 110, the water purification module 200 and the second frame 120. The outer side of the outer shell 20 is used to achieve mechanical protection for various parts of the water supply equipment, to prevent external mechanical forces from hitting the first frame 110, the water purification module 200 and the second frame 120 and affecting the normal use of the water supply equipment. At the same time, impurities such as dust / water can also enter the water supply equipment, reducing the interference of the external environment on the internal parts of the water supply equipment; the back cover 150 is covered on the outside of the water purification equipment and connected to the end of the outer shell, and is used to enclose the outer shell and the surface cover 140 together to form a closed working space, thereby improving the protection of the parts of the water supply equipment.

[0061] See also Figure 1 In a possible embodiment, it also includes a controller 500 electrically connected to the water purification module 200, the first heating module 300 and the second heating module 400. The controller 500 is arranged above the first heating module 300 and is located on the side of the second heating module 400 away from the second frame 120. The controller 500 is used to control the water purification module 200, the first heating module 300 and the second heating module 400 to execute user instructions.

[0062] In this embodiment, the specific configuration of the water supply equipment is further optimized. Specifically, the water supply equipment is configured as a combination component including at least a bracket 100, a water purification module 200, a first heating module 300, a second heating module 400 and a controller 500. The controller 500 can be an electric control box, which is configured in a space surrounded by the second heating module 400, the first heating module 300 and the cover 140, and is used to receive instructions input by a user on the operation screen of the water supply equipment, and control the connection and disconnection between the water pipes flowing through the water purification module 200, the first heating module 300 and the second heating module 400 according to the instructions, so as to realize the provision of (hot) tap water, (hot) filtered water, pure water and drinking hot water / boiled water, improve the intelligent and automatic control of the water supply equipment, and improve the user experience.

[0063] In addition, the embodiment of the present application also provides a kitchen appliance integrated system, including a water supply device as described in any one of the above items. The specific structure of the water supply device refers to the above embodiment. Since the kitchen appliance integrated system adopts all the technical solutions of all the above embodiments, it at least has all the beneficial effects brought by the technical solutions of the above embodiments, which will not be repeated here one by one.

[0064] In this embodiment, the kitchen appliance integrated system may include a sink, a dishwasher, a range hood, and a steamer. The sink is connected to the rinse water inlet 202 of the water supply device to provide the sink with daily cleaning water for fruits, vegetables, and tableware. The rinse water inlet 202 can provide the user with cold / hot clean water to meet the user's temperature requirements for clean water; the sink can also be connected to the drinking water inlet 203 of the water supply device to provide the sink with water for cooking / daily drinking, etc. The drinking water inlet 203 can provide the user with cold / hot purified water after multiple filtration to meet the user's temperature requirements for pure water. The dishwasher is connected to the rinse water inlet 202 of the water supply device to provide the user with cold / hot tap water or filtered water for washing tableware. The range hood is connected to the waste water inlet 205 of the water supply device to provide the range hood with normal operating water. In this way, the waste water of the water supply device is recycled and reused, which is green and environmentally friendly, and it can avoid reconnecting a new water supply pipeline at the range hood, reduce the complexity of pipe layout, and improve the cleanliness of the kitchen. The steam box is connected to the drinking water inlet 203 of the water supply device to provide pure water for the normal operation of the steam box.

[0065] Of course, the kitchen appliance integrated system may also include other water-using equipment, which can be connected to the water supply equipment provided in this embodiment as needed, and will not be described one by one here.

[0066] It should be understood that the terms used herein 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 herein may also be meant to include plural forms. The terms "include", "comprise", "contain", and "have" are inclusive, and therefore specify the existence of stated features, steps, operations, elements and / or parts, but do not exclude the existence 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 execution order is clearly indicated. It should also be understood that additional or alternative steps may be used.

[0067] 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, 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.

[0068] The above description is only a specific implementation of the present application, so that those skilled in the art can understand or implement the present application. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application will not be limited to the embodiments shown herein, but will conform to the widest range consistent with the principles and novel features applied for herein.

Claims

1. A water supply device, It is characterized in that include: The bracket comprises a first bracket body and a second bracket body which are adjacently arranged, wherein the first bracket body extends along the length direction of the bracket, and the second bracket body extends along the height direction of the bracket; A water purification module is provided on the second frame, and the water purification module includes a tap water inlet, a washing water outlet and a drinking water outlet; A first heating module is disposed on a side of the first frame away from the second frame, the first heating module being connected to the tap water inlet and the rinse water outlet; and The second heating module is arranged on the second frame and located between the second frame and the first heating module. The second heating module is connected to the tap water inlet and the drinking water outlet.

2. The water supply device according to claim 1, It is characterized in that The water purification module also includes a waterway plate, a first filter element, a first water pump and a second filter element. The tap water inlet, the clean water outlet and the drinking water outlet are all arranged on the waterway plate. The first filter element and the second filter element are both arranged on the second frame and are arranged at intervals along the height direction of the bracket. The waterway plate is rotatably clamped on the side of the first filter element and the second filter element away from the second frame. The first water pump is arranged on the side of the first frame close to the second frame and is located in front of the first filter element and the second filter element. The first water pump and the waterway plate are respectively located on both sides of the second frame; the first inlet of the first filter element is connected to the tap water inlet, the first water pump is arranged between the first outlet of the first filter element and the second filter element, the first outlet of the second filter element is connected to the second inlet of the first filter element, and the second outlet of the first filter element is connected to the second heating module.

3. The water supply device according to claim 2, It is characterized in that The second heating module includes a second heating element and a second water pump. The second heating element is arranged above the first water pump. The second water pump is arranged on the second frame and located above the second heating element. The second heating element is connected to the second outlet of the first filter element and the drinking water outlet.

4. The water supply device according to claim 3, It is characterized in that The second heating module further comprises a heat exchanger and a clean heat fixing frame, wherein the clean heat fixing frame is arranged on the second frame, the heat exchanger is arranged on the clean heat fixing frame and is located behind it, and the second heating element is arranged on the clean heat fixing frame and is located in front of it; The first inlet of the first heat exchanger is connected to the second outlet of the first filter element, the first outlet of the heat exchanger is connected to the inlet of the second heating element, the outlet of the second heating element is connected to the second inlet of the heat exchanger, and the second outlet of the heat exchanger is connected to the drinking water inlet.

5. The water supply device according to claim 2, It is characterized in that A first filter element turntable, a first clamping piece arranged at the periphery of the first filter element turntable, a second filter element turntable and a second clamping piece arranged at the periphery of the second filter element turntable are arranged on the side of the waterway plate facing the second frame. The first filter element is rotatably installed on the first filter element turntable and is clamped and fastened by the first clamping piece; the second filter element is rotatably installed on the second filter element turntable and is clamped and fastened by the second clamping piece.

6. The water supply device according to claim 2, It is characterized in that The waterway plate is also provided with a pure water inlet and a waste water inlet. The pure water inlet is connected to the second outlet of the first filter element, and the waste water inlet is connected to the second outlet of the second filter element.

7. The water supply device according to claim 3, It is characterized in that The first heating module includes a first heating element, an air dissolving tank and an air pump. The air dissolving tank is arranged on the first frame, the first heating element is arranged above the air dissolving tank, the air pump is arranged above the first heating element, the air pump is connected to the air dissolving tank, and the first heating element and the air dissolving tank are arranged in sequence between the tap water inlet and the cleaning water outlet.

8. The water supply device according to claim 1, It is characterized in that The bracket further comprises a decorative plate and a surface cover arranged opposite to the second frame body, the surface cover is arranged on the first frame body, and the decorative plate is arranged on a side of the surface cover away from the second frame body; and / or, The bracket also includes a shell and a back cover. The shell is arranged on the outer sides of the first frame and the second frame. The back cover covers the rear end of the shell and is located on the outer side of the second frame.

9. The water supply device according to claim 1, It is characterized in that It also includes a controller electrically connected to the water purification module, the first heating module and the second heating module. The controller is arranged above the first heating module and located on the side of the second heating module away from the second frame. The controller is used to control the water purification module, the first heating module and the second heating module to execute user instructions.

10. A kitchen appliance integrated system, It is characterized in that Comprising the water supply equipment according to any one of claims 1 to 9.