Household stainless steel intelligent water tank cabinet
By designing a household stainless steel smart sink cabinet, the problems of insufficient lighting, clutter, and unhealthy conditions associated with traditional kitchen furniture have been solved. This integrated smart sink cabinet enhances the user experience and environmental friendliness.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 沈坚
- Filing Date
- 2025-04-10
- Publication Date
- 2026-05-08
AI Technical Summary
Traditional kitchen furniture suffers from problems such as insufficient lighting, clutter, unhealthy conditions, and inconvenience. Furthermore, the design of traditional sink cabinets is not suitable for the needs of modern life.
Design a household stainless steel smart sink cabinet, featuring a top-opening sliding door, hot and cold water handles, left and right opening doors, drawers, sensor-controlled lighting and disinfection system, combined with 304 stainless steel material and anti-fingerprint nano paint treatment, to achieve an integrated design.
It provides good lighting, neat storage, and a healthy environment, reducing labor intensity, improving the user experience, and the materials are environmentally friendly and durable.
Smart Images

Figure CN224206432U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of home furnishing technology, specifically relating to a household stainless steel smart sink cabinet. Background Technology
[0002] As people's living standards continue to improve, the concepts of environmental protection, health, and aesthetics have taken root in people's hearts. In most Chinese homes, kitchen lighting is from overhead lights, making the sink dimly lit at night, especially for the elderly who have difficulty seeing when washing vegetables and dishes. Pots, pans, cutting boards, and knife racks are not only not disinfected but are also scattered throughout the kitchen, creating a cluttered environment. Commonly used wooden cabinets in kitchens contain formaldehyde and will warp and grow bacteria over time due to moisture. Traditional kitchen countertops are 800mm high, forcing most people to bend over while washing, which can negatively impact their health over time.
[0003] In response to the national call to improve residents' quality of life, this utility model aims to promote an advanced decoration concept: movable kitchen furniture. Installation can be completed in just one day, even after removing old cabinets. It minimizes disruption to daily life, is inexpensive, convenient, and environmentally friendly. This utility model can also be used in tea rooms, studio apartments, etc. A variety of stainless steel surface finishes and colors are available to meet the needs of different consumers. Stainless steel is durable, and when consumers need to replace it, it can be sold at a discount, making it environmentally friendly and reducing expenses. Summary of the Invention
[0004] To address the aforementioned problems, this utility model provides a household stainless steel smart sink cabinet.
[0005] This utility model is achieved through the following technical solution:
[0006] A household stainless steel smart sink cabinet includes a cabinet body, characterized in that: the upper part of the cabinet body is provided with an upward sliding door, the upward sliding door is screwed to a linkage mechanism, the linkage mechanism is screwed to the inner side of the cabinet body, the outer frame of the upward sliding door is welded with stainless steel, tempered glass is bonded in the middle of the outer frame of the upward sliding door, and a continuous streamlined arc-shaped handle is welded to the lower frame of the upward sliding door.
[0007] Preferably, the household stainless steel smart sink cabinet is characterized in that: a water outlet and hot and cold water handles are provided in the middle of the cabinet body, the components of the water outlet and hot and cold water handles are bolted to the component plate, and the two ends of the component plate are screwed to the inner side of the cabinet body.
[0008] Preferably, the household stainless steel smart sink cabinet is characterized in that: a left-opening door is provided at the lower part of the cabinet body, the left-opening door is connected to the cabinet body by a hinge, a hook is provided at the upper part of the back of the left-opening door, the hook is screwed to the back of the left-opening door, a water receiving box is provided at the lower part of the back of the left-opening door, the water receiving box is snapped onto a bracket, the bracket is screwed to the back of the left-opening door, and a full-length streamlined arc-shaped handle is welded to the vertical frame of the left-opening door.
[0009] Preferably, the household stainless steel smart sink cabinet is characterized in that: a right-opening door is provided at the bottom of the cabinet body, the right-opening door is connected to the cabinet body by a hinge, a knife and chopstick holder is provided at the upper part of the back of the right-opening door, the knife and chopstick holder is snapped onto the back of the right-opening door, a water collection box is provided at the lower part of the back of the right-opening door, the water collection box is snapped onto a bracket, the bracket is screwed onto the back of the right-opening door, and a full-length streamlined arc-shaped handle is welded to the vertical frame of the right-opening door.
[0010] Preferably, the household stainless steel smart sink cabinet is characterized in that: a drawer is provided at the bottom of the cabinet body, and the drawer is connected to the inner side of the cabinet body by a slide rail.
[0011] Preferably, the aforementioned household stainless steel smart sink cabinet is characterized in that: an upper cabinet sensor is provided on the upper front of the cabinet body; the upper cabinet sensor is screwed to an embedded part in the cabinet interlayer; the upper cabinet sensor is connected to a light controller on the back of the cabinet body by a wire; the light controller is bolted to a component board; one end of the light controller is connected to an upper cabinet light by a wire; the upper cabinet light is embedded and clipped to the top of the upper inner wall of the cabinet body; the other end of the light controller is connected to a leakage current protector by a wire; the leakage current protector is clipped to a bracket; the bracket is screwed to the inner side of the cabinet body; a leakage current protection cover is provided around the leakage current protector; the leakage current protection cover is screwed to the inner side of the cabinet body.
[0012] Preferably, the aforementioned household stainless steel smart sink cabinet is characterized in that: an upper cabinet disinfection lamp is embedded in the top of the upper inner wall of the cabinet body; the upper cabinet disinfection lamp is connected to a smart switch on the back of the cabinet body by a wire; the smart switch is bolted to a component board; the smart switch is connected to a leakage current protector by a wire; the leakage current protector is clipped onto a bracket; the bracket is screwed to the inner side of the cabinet body; a leakage current protector protective cover is provided around the leakage current protector; and the leakage current protector protective cover is screwed to the inner side of the cabinet body.
[0013] Preferably, the aforementioned household stainless steel smart sink cabinet is characterized in that: a washing area sensor is embedded in the top of the inner wall of the middle section of the cabinet; the washing area sensor is connected to a light controller on the back of the cabinet by a wire; the light controller is bolted to a component board; one end of the light controller is connected to a washing area light by a wire; the washing area light is embedded in the top of the inner wall of the middle section of the cabinet; the other end of the light controller is connected to a leakage current protector by a wire; the leakage current protector is clipped onto a bracket; the bracket is screwed to the inner side of the cabinet; a leakage current protection cover is provided around the leakage current protector; the leakage current protection cover is screwed to the inner side of the cabinet.
[0014] Preferably, the household stainless steel smart sink cabinet is characterized in that: a lower cabinet disinfection lamp is embedded in the top of the lower inner wall of the cabinet; the lower cabinet disinfection lamp is connected to a smart switch on the back of the cabinet by a wire; the smart switch is bolted to a component board; the smart switch is connected to a leakage current protector by a wire; the leakage current protector is clipped onto a bracket; the bracket is screwed to the inner side of the cabinet; a leakage current protection cover is provided around the leakage current protector; and the leakage current protection cover is screwed to the inner side of the cabinet.
[0015] Preferably, the household stainless steel smart sink cabinet is characterized in that: a horizontal header plate is provided in the middle of the cabinet body, and the horizontal header plate is snapped onto the front of the middle of the cabinet body.
[0016] Preferably, the cabinet body and cabinet doors are made of 304 stainless steel, and the surface is treated with a pneumatic polishing machine to create a textured surface. After cleaning, the surface is sprayed with anti-fingerprint nano paint, resulting in a soft appearance and resistance to stains and scratches.
[0017] The beneficial effects of this utility model are:
[0018] This utility model adopts an integrated cabinet, which allows washing without leaving the sink, and can complete washing, storage and disinfection in one go, reducing labor intensity.
[0019] When the upward sliding door opens, the lights automatically turn on; the light angle is set inward so as not to dazzle the eyes; the door moves upward so as not to bump your head; the middle of the door is made of glass so that the view is not oppressive when the door is closed.
[0020] During washing, simply sweep your hand across the sensor in the washing area to turn on the washing area light, and sweep again to turn it off. Within the effective sensing range, it works regardless of whether your hands are dirty or wet, as there is a light guide plate that concentrates the light in the sink area.
[0021] Washed dishes can be conveniently placed in the upper cabinet, while washed knives, spatulas, pots, and chopsticks can be conveniently placed in the lower cabinet.
[0022] When disinfecting the upper and lower cabinets, the smart switch can be controlled by a remote control or a mobile app, allowing for timed and location-specific disinfection.
[0023] With a countertop height of 900mm, you can stand up straight while washing up, making for a better user experience in the kitchen.
[0024] After kitchen utensils are centrally stored and disinfected, the room becomes cleaner, more aesthetically pleasing, and healthier.
[0025] The cabinet is made of stainless steel, which is formaldehyde-free, not easily deformed, antibacterial, durable, environmentally friendly, and easy to clean. Attached Figure Description
[0026] Figure 1 This is a front structural diagram of the present invention.
[0027] Figure 2 This is a schematic diagram of the internal structure of this utility model.
[0028] Figure 3 This is a schematic diagram of the left side structure of this utility model.
[0029] Figure 4 This is a cross-sectional view of the present invention.
[0030] Figure 5 This is a schematic diagram of the back structure of this utility model.
[0031] Explanation of reference numerals in the attached figures:
[0032] 1. Cabinet body; 2. Left-opening door; 3. Right-opening door; 4. Drawer; 5. Upward sliding door; 6. Headboard; 7. Water outlet; 8. Hot and cold water handles; 9. Upper cabinet sensor; 10. Upper cabinet lighting; 11. Upper cabinet disinfection lamp; 12. Linkage mechanism; 13. Washing area sensor; 14. Washing area lighting; 15. Lower cabinet disinfection lamp; 16. Hook; 17. Sink; 18. Residual current device (RCD); 19. Water collection box; 20. Knife and chopstick holder; 21. Bracket; 22. Component board; 23. Light controller; 24. Smart switch; 25. Component protective cover; 26. Cold water pipe; 27. Hot water pipe; 28. Bracket; 29. RCD protective cover; 30. Drain pipe outlet; 31. Inspection board. Detailed Implementation
[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0034] Please see Figure 1-5 As shown, this utility model embodiment provides a household stainless steel smart sink cabinet, including a cabinet body 1. The upper part of the cabinet body 1 is provided with an upward sliding door 5. The upward sliding door 5 is screwed to a linkage mechanism 12. The linkage mechanism 12 is screwed to the inner side of the cabinet body 1. The outer frame of the upward sliding door 5 is made of stainless steel welding. A 6mm tempered frosted glass is bonded in the middle of the outer frame of the upward sliding door 5. A 3mm thick, continuous, streamlined arc-shaped handle is welded to the lower frame of the upward sliding door 5.
[0035] By adopting the above technical solution, the linkage mechanism 12 is activated by gently pushing the long, streamlined arc-shaped handle welded to the lower frame of the sliding door 5 upwards. It can stop at any position within its stroke range and reset when pulled downwards.
[0036] Please see Figure 1-5 As shown, a water outlet 7 and hot / cold water handles 8 are provided in the middle of the cabinet 1. The components of the water outlet 7 and hot / cold water handles 8 are bolted to the component plate 22, and the two ends of the component plate 22 are screwed to the inner side of the cabinet 1. The components of the water outlet 7 and hot / cold water handles 8 are connected to a cold water inlet pipe 26 and a hot water inlet pipe 27.
[0037] By adopting the above technical solution, the water spout 7 achieves both hot and cold water functions. The water spout 7 can rotate 360° for easy cleaning. Benefiting from the fact that the water spout 7 and the hot and cold water handles 8 are installed on the wall of the cabinet 1, the countertop space is larger and cleaner, while also solving the problem of dirt accumulation at the base of the faucet after traditional faucet countertop installation.
[0038] Please see Figure 1-4 As shown, a left-opening door 2 is provided at the lower part of the cabinet 1. The left-opening door 2 is connected to the cabinet 1 by a hinge. A hook 16 is provided at the upper part of the back of the left-opening door 2. The hook 16 is screwed to the back of the left-opening door 2. A water collection box 19 is provided at the lower part of the back of the left-opening door 2. The water collection box 19 is snapped onto the bracket 21. The bracket 21 is screwed to the back of the left-opening door 2. A 3mm thick, full-length, streamlined arc-shaped handle is welded to the vertical frame of the left-opening door 2.
[0039] By adopting the above technical solution, pulling the long, streamlined, arc-shaped handle welded to the vertical frame of the left-opening door 2 opens the door (maximum opening angle 100°) via the hinges on the left-opening door 2. Washed kitchen utensils, cutting boards, and towels can be easily placed on the hooks. Any water droplets can fall into the drip tray 19 directly below. The drip tray 19, with its snap-fit design, can be removed separately for easy cleaning. When closing the door, gently pushing the door or handle will automatically reset the hinges on the left-opening door 2.
[0040] Please see Figure 1-4As shown, the lower part of the cabinet 1 is provided with a right-opening door 3, which is connected to the cabinet 1 by a hinge. The upper part of the back of the right-opening door 3 is provided with a knife and chopstick holder 20, which is snapped onto the back of the right-opening door 3. The lower part of the back of the right-opening door 3 is provided with a water collection box 19, which is snapped onto a bracket 21. The bracket 21 is screwed onto the back of the right-opening door 3. The vertical frame of the right-opening door 3 is welded with a 3mm thick, continuous, streamlined arc-shaped handle.
[0041] By adopting the above technical solution, pulling the long, streamlined, arc-shaped handle welded to the vertical frame of the right-opening door 3 opens the door (maximum opening angle 100°) via the hinges on the right-opening door 3. Washed knives, chopsticks, spoons, etc., can be conveniently placed in the hollowed-out knife and chopstick holder 20. Any water droplets can fall into the water collection box 19 directly below. The water collection box 19 and knife and chopstick holder 20 are designed to be easily removed for cleaning. When closing the door, gently pushing the door or handle will automatically reset the hinges on the right-opening door 3.
[0042] Please see Figure 4 As shown, drawer 4 is provided at the bottom of cabinet 1, and drawer 4 is connected to the inner side of cabinet 1 by a slide rail.
[0043] By adopting the above technical solution, infrequently used items can be stored in drawer 4. Thanks to the concave design of drawer 4, the standing posture is more comfortable when cleaning.
[0044] Please see Figure 1-5 As shown, an upper cabinet sensor 9 is installed on the upper front of the cabinet 1. The upper cabinet sensor 9 is screwed to the embedded part of the cabinet interlayer. The upper cabinet sensor 9 is connected to the light controller 23 on the back of the cabinet 1 by a wire. The light controller 23 is bolted to the component board 22. One end of the light controller 23 is connected to the upper cabinet light 10 by a wire. The upper cabinet light 10 is embedded and clipped to the top of the upper inner wall of the cabinet 1. The other end of the light controller 23 is connected to the leakage current protector 18 by a wire. The leakage current protector 18 is clipped to the bracket 28. The bracket 28 is screwed to the inner side of the cabinet 1. A leakage current protection cover 29 is installed around the leakage current protector 18. The leakage current protection cover 29 is screwed to the inner side of the cabinet 1.
[0045] By adopting the above technical solution, when the continuous streamlined arc-shaped handle welded to the lower frame of the sliding door 5 is gently pushed upwards, the linkage mechanism 12 is activated. At the same time, the upper cabinet sensor 9 detects the change in light and sends a signal to the lighting controller 23. The lighting controller 23 then powers on the upper cabinet light 10, which illuminates. When the door is fully closed, the upper cabinet sensor 9 detects the change in light and sends a signal to the lighting controller 23. The lighting controller 23 then de-energizes the upper cabinet light 10, which then turns off.
[0046] Please see Figure 1-5As shown, an upper cabinet disinfection lamp 11 is embedded in the top of the upper inner wall of the cabinet 1. The upper cabinet disinfection lamp 11 is connected to the smart switch 24 on the back of the cabinet 1 by a wire. The smart switch 24 is bolted to the component board 22. The smart switch 24 is connected to the leakage current protector 18 by a wire. The leakage current protector 18 is clipped onto the bracket 28. The bracket 28 is screwed to the inner side of the cabinet 1. A leakage current protection cover 29 is provided around the leakage current protector 18. The leakage current protection cover 29 is screwed to the inner side of the cabinet 1.
[0047] By adopting the above technical solution, after the leakage current protector 18 is powered on, the connected smart switch 24 is in standby mode. By downloading a smart living APP on a mobile phone, the working mode of the smart switch 24 can be set. The elderly can use the remote control to control the cabinet disinfection lamp 11 (factory standard mode); the young can set the cabinet disinfection lamp 11 to be controlled by mobile phone, and can disinfect at fixed times and locations.
[0048] Please see Figure 1-5 As shown, a washing area sensor 13 is embedded in the top of the inner wall of the middle part of the cabinet 1. The washing area sensor 13 is connected to the light controller 23 on the back of the cabinet 1 by a wire. The light controller 23 is bolted to the component board 22. One end of the light controller 23 is connected to the washing area light 14 by a wire. The washing area light 14 is embedded in the top of the inner wall of the middle part of the cabinet 1. The other end of the light controller 23 is connected to the leakage current protector 18 by a wire. The leakage current protector 18 is clipped onto the bracket 28. The bracket 28 is screwed to the inner side of the cabinet 1. A leakage protection cover 29 is provided around the leakage current protector 18. The leakage protection cover 29 is screwed to the inner side of the cabinet 1.
[0049] By employing the above technical solution, when the washing area sensor 13 is lightly swept away by hand (within a sensing range of 60mm), the sensor 13 detects the change in light and sends a signal to the light controller 23. The light controller 23 then powers on the washing area light 14, which illuminates the washing area light. When the sensor 13 is lightly swept away again, it detects the change in light and sends another signal to the light controller 23, which then de-powers the washing area light 14, turning it off. The design of the washing area sensor 13's position and sensing range effectively prevents erroneous sensor readings.
[0050] Please see Figure 1-5As shown, a lower cabinet disinfection lamp 15 is embedded in the top of the lower inner wall of the cabinet 1. The lower cabinet disinfection lamp 15 is connected to the smart switch 24 on the back of the cabinet 1 by a wire. The smart switch 24 is bolted to the component board 22. The smart switch 24 is connected to the leakage current protector 18 by a wire. The leakage current protector 18 is clipped onto the bracket 28. The bracket 28 is screwed to the inner side of the cabinet 1. A leakage current protection cover 29 is provided around the leakage current protector 18. The leakage current protection cover 29 is screwed to the inner side of the cabinet 1.
[0051] By adopting the above technical solution, after the leakage current protector 18 is powered on, the connected smart switch 24 is in standby mode. By downloading a smart living APP on a mobile phone, the working mode of the smart switch 24 can be set. The elderly can use the remote control to control the lower cabinet disinfection lamp 15 (factory standard mode); the young can set the lower cabinet disinfection lamp 15 to be controlled by mobile phone, and can disinfect at fixed times and locations.
[0052] Please see Figure 1-4 As shown, a horizontal lintel 6 is provided in the middle of the cabinet 1, and the horizontal lintel 6 is snapped onto the front of the middle of the cabinet 1.
[0053] By adopting the above technical solution, the horizontal brow plate 6 can block the light from spilling out of the water tank area and effectively avoid sensor erroneous perception.
[0054] Referring to the attached drawings, the conductors used in this utility model are protected by a yellow wax tube and laid in the pre-embedded wire trough in the cabinet's interlayer. Silicone protective coils are installed at both the entry and exit points of the conductors. LED lights are used for illumination. When the lighting controller 23 and the smart switch 24 are installed on the component board 22, an insulating gasket is placed between them. The residual current device 18 (rated residual current operating current: 30mA, rated residual current non-operating current: 15mA, residual current operating time: ≤0.1s) is surrounded by a residual current protective cover 29, and silicone protective coils are installed at the inlet and outlet points to ensure user safety.
[0055] The sink 17 is glued to the 10mm thick countertop of cabinet 1. The drain pipe of the sink 17 exits through the drain pipe outlet 30 and connects to the user's wastewater pipe. The large 760mm*430mm sink 17 is particularly convenient for washing large kitchen utensils. The sink 17's corner drain design maximizes usable space underneath, accommodating users who need to install small water heaters, water purifiers, etc. Water pipes and power supplies can both exit through the drain pipe outlet 30. A silicone protective coil is fitted inside the drain pipe outlet 30 to ensure a relatively sealed environment around the water pipe.
[0056] The light controller 23 and smart switch 24 are bolted to the component board 22, and a component protective cover 25 is set on the outside. The hollow design can both dissipate heat and protect the components.
[0057] The inspection plate 31 is connected to the cabinet 1 by screws. During installation, unscrew the screws, remove the inspection plate, plug in the power, connect the water source, connect the wastewater pipe, and reset it after installation.
[0058] It should be understood that the above-described specific embodiments of this utility model are merely illustrative or explanatory of the principles of this utility model and do not constitute a limitation thereof. Therefore, any modifications, equivalent substitutions, improvements, etc., made without departing from the spirit and scope of this utility model should be included within the protection scope of this utility model. Furthermore, the appended claims are intended to cover all variations and modifications falling within the scope and boundaries of the appended claims, or equivalent forms of such scope and boundaries.
Claims
1. A household stainless steel smart sink cabinet, comprising a cabinet body (1), characterized in that: The upper part of the cabinet (1) is provided with an upward sliding door (5), the upward sliding door (5) is screwed to the linkage mechanism (12), the linkage mechanism (12) is screwed to the inner side of the cabinet (1), the outer frame of the upward sliding door (5) is welded with stainless steel, the middle of the outer frame of the upward sliding door (5) is bonded with tempered glass, and the lower frame of the upward sliding door (5) is welded with a long, streamlined arc-shaped handle.
2. A household stainless steel smart sink cabinet as described in claim 1, characterized in that: The cabinet (1) is provided with a water outlet (7) and hot and cold water handles (8) in the middle. The components of the water outlet (7) and hot and cold water handles (8) are bolted to the component plate (22). The two ends of the component plate (22) are screwed to the inner side of the cabinet (1).
3. A household stainless steel smart sink cabinet as described in claim 1, characterized in that: The lower part of the cabinet (1) is provided with a left door (2), which is connected to the cabinet (1) by a hinge. A hook (16) is provided on the upper part of the back of the left door (2), and the hook (16) is screwed to the back of the left door (2). A water collection box (19) is provided on the lower part of the back of the left door (2), which is snapped onto the bracket (21). The bracket (21) is screwed to the back of the left door (2). A full-length streamlined arc-shaped handle is welded to the vertical frame of the left door (2).
4. A household stainless steel smart sink cabinet as described in claim 1, characterized in that: The lower part of the cabinet (1) is provided with a right-opening door (3), which is connected to the cabinet (1) by a hinge. A knife and chopstick holder (20) is provided on the upper part of the back of the right-opening door (3), which is attached to the back of the right-opening door (3). A water collection box (19) is provided on the lower part of the back of the right-opening door (3), which is attached to a bracket (21). The bracket (21) is screwed to the back of the right-opening door (3). A full-length streamlined arc-shaped handle is welded to the vertical frame of the right-opening door (3).
5. A household stainless steel smart sink cabinet as described in claim 1, characterized in that: The bottom of the cabinet (1) is provided with a drawer (4), which is connected to the inner side of the cabinet (1) by a slide rail.
6. A household stainless steel smart sink cabinet as described in claim 1, characterized in that: A cabinet sensor (9) is provided on the upper front of the cabinet (1). The cabinet sensor (9) is screwed to the embedded part of the cabinet interlayer. The cabinet sensor (9) is connected to the light controller (23) on the back of the cabinet (1) by a wire. The light controller (23) is bolted to the component board (22). One end of the light controller (23) is connected to the cabinet lighting lamp (10) by a wire. The cabinet lighting lamp (10) is embedded and clipped to the top of the upper inner wall of the cabinet (1). The other end of the light controller (23) is connected to the leakage current protector (18) by a wire. The leakage current protector (18) is clipped to the bracket (28). The bracket (28) is screwed to the inner side of the cabinet (1). A leakage protection cover (29) is provided around the leakage current protector (18). The leakage protection cover (29) is screwed to the inner side of the cabinet (1).
7. A household stainless steel smart sink cabinet as described in claim 1, characterized in that: An upper cabinet disinfection lamp (11) is embedded in the top of the upper inner wall of the cabinet (1). The upper cabinet disinfection lamp (11) is connected to a smart switch (24) on the back of the cabinet (1) by a wire. The smart switch (24) is bolted to the component board (22). The smart switch (24) is connected to a leakage current protector (18) by a wire. The leakage current protector (18) is clipped onto a bracket (28). The bracket (28) is screwed to the inner side of the cabinet (1). A leakage protection cover (29) is provided around the leakage current protector (18). The leakage protection cover (29) is screwed to the inner side of the cabinet (1).
8. A household stainless steel smart sink cabinet as described in claim 1, characterized in that: A washing area sensor (13) is embedded in the top of the inner wall of the middle part of the cabinet (1). The washing area sensor (13) is connected to the light controller (23) on the back of the cabinet (1) by a wire. The light controller (23) is bolted to the component board (22). One end of the light controller (23) is connected to the washing area light (14) by a wire. The washing area light (14) is embedded in the top of the inner wall of the middle part of the cabinet (1). The other end of the light controller (23) is connected to the leakage current protector (18) by a wire. The leakage current protector (18) is clipped to the bracket (28). The bracket (28) is screwed to the inner side of the cabinet (1). A leakage protection cover (29) is provided around the leakage current protector (18). The leakage protection cover (29) is screwed to the inner side of the cabinet (1).
9. A household stainless steel smart sink cabinet as described in claim 1, characterized in that: A lower cabinet disinfection lamp (15) is embedded in the top of the lower inner wall of the cabinet (1). The lower cabinet disinfection lamp (15) is connected to the smart switch (24) on the back of the cabinet (1) by a wire. The smart switch (24) is bolted to the component board (22). The smart switch (24) is connected to the leakage current protector (18) by a wire. The leakage current protector (18) is clipped to the bracket (28). The bracket (28) is screwed to the inner side of the cabinet (1). A leakage protection cover (29) is provided around the leakage current protector (18). The leakage protection cover (29) is screwed to the inner side of the cabinet (1).
10. A household stainless steel smart sink cabinet as described in claim 1, characterized in that: A horizontal lintel (6) is provided in the middle of the cabinet (1), and the horizontal lintel (6) is snapped onto the front of the middle part of the cabinet (1).