Embedded intelligent shoe box
By incorporating a built-in smart shoe cabinet with a ventilation system and UV lamp design, the problems of shoe odor and moisture are solved, creating a dry and refreshing environment for the shoe cabinet and improving both safety and aesthetics.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANGHAI RUIQIMAN INTELLIGENT TECHNOLOGY CO LTD
- Filing Date
- 2025-05-14
- Publication Date
- 2026-04-21
AI Technical Summary
Existing wall-mounted shoe boxes can easily lead to increased shoe odor and moisture corrosion, affecting aesthetics and shoe lifespan.
Design an embedded smart shoe box that includes a ventilation system, shoe support bracket and electrical control box. It achieves air circulation through air inlet and outlet, and combines ultraviolet light and aromatherapy to sterilize and improve odor.
Keeping your shoe cabinet dry and clean prevents bacterial growth, enhances safety and aesthetics, and saves energy.
Smart Images

Figure CN224140414U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to shoe boxes, specifically to an embedded smart shoe box. Background Technology
[0002] Currently, many homes have an open shoe box upon entering, which affects both the aesthetics and indoor air pollution. Some manufacturers have embedded shoe boxes in the wall with two doors to conceal the shoes inside. While this solves the aesthetic issue, the relatively sealed environment of the shoe box can lead to increasingly strong odors as the number of shoes increases. Furthermore, the moisture inside the shoes can corrode the uppers and internal materials, shortening their lifespan. Utility Model Content
[0003] In view of the above problems, this utility model proposes an embedded smart shoe box.
[0004] The technical solution of this utility model:
[0005] An embedded smart shoe cabinet includes a main body, several shoe holder supports, and a ventilation system. Each shoe holder support is installed inside the main body and is evenly distributed vertically. Each shoe holder support is an L-shaped plate tilted upwards at a 30-degree angle. The ventilation system includes an air inlet, an air outlet, and an exhaust fan. The air inlet and air outlet are located on the main body, positioned to the left and right, and top and bottom respectively. The air inlet's airflow direction is perpendicular to the exhaust direction of the air outlet. The exhaust fan is installed at the air outlet. The main body has a built-in power supply and electrical control box. The power supply is connected to the electrical control box, and the exhaust fan is connected to and controlled by the electrical control box to start or stop. When the exhaust fan is activated, air enters through the air inlet and exits through the air outlet, circulating within the main body. Each shoe holder support also serves as a deflector.
[0006] To further refine the above technical solution, a rubber pad is attached to the inner side of the bottom of the shoe support; the rubber pad design can prevent wear and tear on the shoes placed on the shoe support.
[0007] Further refining the above technical solution, the main body of the shoe box is square.
[0008] Further refining the above technical solution, the shoe box body has double doors at the front; a light is installed inside the shoe box body, the light is located at the top center of the shoe box body, the light is connected to a power supply or electrical control box, and a switch is connected in series between them, the switch is installed at the double doors and is triggered by opening and closing the doors, when the double doors are opened, the switch is triggered to turn on the light, and when the double doors are closed, the switch is triggered to turn off the light; this ensures that people can place shoes in the shoe box with lighting, while also saving energy.
[0009] Further refining the above technical solution, the shoe box body is equipped with several ultraviolet lamps, each ultraviolet lamp is located on one or both sides of the shoe box body and is evenly distributed vertically, and each ultraviolet lamp is connected to an electrical control box, which controls its opening or closing; thus effectively sterilizing.
[0010] Further refining the above technical solution, an aromatherapy diffuser is placed inside the main body of the shoe cabinet; the aromatherapy diffuser improves the odor of the air inside the cabinet and also makes people feel more comfortable when taking the shoes out of the cabinet.
[0011] To further refine the above technical solution, a filter screen is installed at the air inlet.
[0012] To further refine the above technical solution, the exhaust vent is equipped with an exhaust duct.
[0013] The advantages of this utility model are: reasonable design and simple structure; through circulating air, it maintains the internal space of the shoe cabinet in a dry, fresh, and slightly negative pressure environment, preventing bacterial growth; the shoe rack design saves the depth of the cabinet embedded in the wall, while conforming to people's shoe placement habits; if there are foreign objects in the shoes, they can be seen at a glance, thus improving safety; the air inlet and outlet design, supplemented by a deflector plate, achieves full coverage of circulating air without dead corners. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the embedded smart shoe box structure (external).
[0015] Figure 2 This is a schematic diagram of the embedded smart shoebox structure (inner).
[0016] The shoe box body 1, shoe support bracket 2, air inlet 3-1, air outlet 3-2, exhaust fan 3-3, power supply 4, electrical control box 5, double door 6, lighting lamp 7, ultraviolet lamp 8, aromatherapy 9, filter 10, and exhaust duct 11 are shown in the picture. Detailed Implementation
[0017] like Figure 1-2As shown, an embedded smart shoe box includes a shoe box body 1, several shoe holder supports 2, and an exhaust system. Each shoe holder support 2 is installed inside the shoe box body 1 and is evenly distributed vertically. The shoe holder supports 2 are L-shaped plates tilted upwards at a 30-degree angle. The exhaust system includes an air inlet 3-1, an air outlet 3-2, and an exhaust fan 3-3. The air inlet 3-1 is located on the shoe box body 1, and the air outlet 3-2 is located on the shoe box body 1. The air inlet 3-1 is located on the lower right side of the shoe box body 1, and the air outlet 3-2 is located on the upper left top of the shoe box body 1. The exhaust fan 3-3 is installed on the air outlet 3-2. The shoe box body 1 has a built-in power supply 4 and an electrical control box 5. The power supply 4 is connected to an electrical control box. The air control box 5 and the exhaust fan 3-3 are connected to the electrical control box 5; the bottom inner side of the shoe rack bracket 2 is fitted with a rubber pad; the shoe cabinet body 1 is square; the shoe cabinet body 1 has double doors 6 at the front; a light 7 is installed inside the shoe cabinet body 1, located at the top center of the shoe cabinet body 1, and is connected to the electrical control box 5 with a switch connected in series between them, the switch being installed at the double doors 6 and triggered by opening and closing the doors 6; several ultraviolet lamps 8 are installed inside the shoe cabinet body 1, each ultraviolet lamp 8 being located on one side of the shoe cabinet body 1 and evenly distributed vertically, and each ultraviolet lamp 8 is connected to the electrical control box 5; an aromatherapy diffuser 9 is placed inside the shoe cabinet body 1; a filter 10 is installed at the air inlet 3-1; and an exhaust duct 11 is installed at the exhaust outlet 3-2.
[0018] When using,
[0019] 1) Open the double door 6, place the shoes on each shoe rack 2, and close the double door 6; during the process, the double door 6 opens, triggering the switch and turning on the light 7, and the double door 6 closes, triggering the switch and turning off the light 7;
[0020] 2) The electrical control box 5 controls the start or stop of the exhaust fan 3-3 and the opening or closing of the ultraviolet lamp 9. When the exhaust fan 3-3 is started, air enters through the air inlet 3-1 (through the filter 10) and exits through the air outlet 3-2 (through the exhaust duct 11), circulating within the main body 1-1 of the shoe cabinet. Each shoe rack bracket 2 is a guide plate. When the ultraviolet lamp 9 is turned on, it disinfects and sterilizes.
[0021] The above embodiments are only for illustrating the technical concept and features of the utility model, and are intended to enable those skilled in the art to understand the content of the utility model and implement it accordingly. They should not be construed as limiting the scope of protection of the utility model. All equivalent changes or modifications made in accordance with the spirit and essence of the utility model should be covered within the scope of protection of the utility model.
Claims
1. An embedded intelligent shoe cabinet, the shoe cabinet comprising a shoe cabinet main body, a plurality of shoe rack supports, an exhaust system, each shoe rack support being installed in the shoe cabinet main body, and each shoe rack support being evenly distributed up and down; characterized in that, The shoe rack bracket is an L-shaped plate tilted upwards at 30 degrees; the ventilation system includes an air inlet, an air outlet, and an exhaust fan. The air inlet is located on the main body of the shoe cabinet, and the air outlet is located on the main body of the shoe cabinet. The air inlet and air outlet are positioned to the left and right, and up and down respectively. The air intake direction of the air inlet is perpendicular to the air exhaust direction of the air outlet. The exhaust fan is installed at the air outlet; the main body of the shoe cabinet has a built-in power supply and electrical control box. The power supply is connected to the electrical control box, and the exhaust fan is connected to the electrical control box and is controlled to start or stop. When the exhaust fan is started, air enters through the air inlet and exits through the air outlet, circulating within the main body of the shoe cabinet; each shoe rack bracket is a guide plate.
2. The smart shoebox in claim 1, wherein, The shoe support bracket has a rubber pad attached to the inside of its bottom.
3. The smart shoebox in claim 1, wherein, The main body of the shoe box is square.
4. The smart shoebox in claim 1, wherein, The shoe box body has two doors at the front; a light is installed inside the shoe box body, the light is located at the top center of the shoe box body, the light is connected to a power supply or electrical control box and a switch is connected in series between them, the switch is installed at the double doors and is triggered by opening and closing the doors, when the double doors are opened, the switch is triggered to turn on the light, when the double doors are closed, the switch is triggered to turn off the light.
5. The smart shoebox in claim 1, wherein, The shoe box body is equipped with several ultraviolet lamps. Each ultraviolet lamp is located on one or both sides of the shoe box body and is evenly distributed vertically. Each ultraviolet lamp is connected to an electrical control box and is controlled by the electrical control box to turn on or off.
6. The smart shoebox in claim 1, wherein, An aromatherapy diffuser is placed inside the main body of the shoe cabinet.
7. The smart shoebox in claim 1, wherein, The air inlet is equipped with a filter.
8. The smart shoebox in claim 1, wherein, The exhaust vent is equipped with an exhaust duct.