Disinfection cabinet
By setting up independent disinfection chambers and drying modules in the disinfection cabinet, combined with intelligent dimming windows and reflective surfaces, the problem of existing disinfection cabinets being unable to meet the needs of different items is solved, achieving efficient and energy-saving disinfection and drying operations, and providing real-time status monitoring.
Patent Information
- Application Number
- CN202520166952.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-24
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2035-01-24
AI Technical Summary
Existing UV sterilization cabinets are unable to meet the disinfection and drying needs of different items, resulting in long drying times, poor energy efficiency, and the inability to monitor the working status of the UV disinfection module in real time.
The design includes two independent disinfection chambers, each equipped with different disinfection units and drying modules. Combined with an intelligent dimming window and control panel, it enables independent disinfection and drying operations, and improves the utilization efficiency of ultraviolet light through a reflective surface layer.
It enables separate disinfection and drying based on item type, reducing disinfection and drying time, improving energy efficiency, and allowing real-time monitoring of disinfection status, thus enhancing reliability and user experience.
Smart Images

Figure CN223887164U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of sterilization and disinfection technology, and in particular to a disinfection cabinet. Background Technology
[0002] Existing UV sterilization cabinets typically include sterilization and drying modules for placing washed items inside for sterilization and then drying. However, different items require different sterilization and drying times, and existing cabinets struggle to meet these diverse needs, resulting in longer drying times and poor energy efficiency. Furthermore, different items require different sterilization environments. For instance, food containers have strict sterilization requirements, while clothing has relatively more lenient requirements. Placing them in the same sterilization cabinet could pose health risks.
[0003] Existing disinfection cabinets are insufficient to meet diverse disinfection and drying needs, resulting in prolonged drying times, poor energy efficiency, or potential safety hazards. After the cabinet door is closed, the operational status of the ultraviolet disinfection module cannot be observed, making it impossible to determine whether sterilization has been effectively performed. Utility Model Content
[0004] The purpose of this invention is to provide a disinfection cabinet that can perform disinfection and drying operations according to different needs, with high efficiency and low energy consumption.
[0005] To address the aforementioned technical problems, this utility model provides a disinfection cabinet, comprising a first disinfection chamber and a second disinfection chamber that are independent of each other. The first disinfection chamber is provided with a first receiving opening and a first cover disposed at the first receiving opening. The opening direction of the first receiving opening is vertically upward. The second disinfection chamber is disposed below the first disinfection chamber, and the second disinfection chamber is provided with a second receiving opening and a second cover disposed at the second receiving opening. The second receiving opening is located on the side of the second disinfection chamber, and the second cover is a flip-down cover. The first disinfection chamber is provided with a first disinfection unit and / or a first drying module, and the second disinfection chamber is provided with a second disinfection unit and / or a second drying module.
[0006] The first disinfection unit includes a first reflective surface layer disposed on the inner wall of the first disinfection chamber body and a first ultraviolet lamp strip disposed on at least one side wall of the first disinfection chamber body. The second disinfection unit includes a second reflective surface layer disposed on the inner wall of the second disinfection chamber body and multiple sets of second ultraviolet lamp strips disposed on the bottom wall and top wall of the second disinfection chamber body.
[0007] It also includes an intelligent dimming window disposed in the second disinfection chamber and / or the first disinfection chamber. The intelligent dimming window has a first working state and a second working state. In the first working state, the intelligent dimming window is transparent, and in the second working state, the intelligent dimming window is opaque.
[0008] The smart dimming window includes dimming glass, which can be electrically controlled dimming glass, temperature-controlled dimming glass, light-controlled dimming glass, or pressure-controlled dimming glass.
[0009] The first cover is hinged, slidably hinged, or snap-fit hinged to the main body of the first disinfection chamber, and the second cover is connected to the second receiving port via a hinge and a tension spring.
[0010] It also includes a top cover handle disposed on the side of the first cover near the second receiving opening. The side of the top cover handle away from the second receiving opening is provided with a recessed first clearance space structure. The side of the second cover near the first cover is provided with a second clearance space structure that communicates with the first clearance space structure.
[0011] The top wall of the second disinfection chamber body includes a first wall surface and a second wall surface set at an obtuse angle. The first wall surface is located on the rear side of the second disinfection chamber body, and the second wall surface is located on the front side of the second disinfection chamber body. The side of the second wall surface away from the first wall surface is higher than the first wall surface.
[0012] It also includes a control panel disposed on the outer surface of the second cover, used to control the operating status of at least one of the first disinfection unit, the first drying module, the second disinfection unit, and the second drying module.
[0013] It also includes an air filter located on the rear panel of the second disinfection chamber, used to filter the air entering the first disinfection chamber and the second disinfection chamber.
[0014] It also includes at least one shelf disposed in the first disinfection chamber and / or the second disinfection chamber.
[0015] The disinfection cabinet provided in this embodiment of the invention has the following advantages compared with the prior art:
[0016] The disinfection cabinet provided in this embodiment of the utility model, by setting up an independent first disinfection chamber and a second disinfection chamber, and respectively setting up a disinfection unit and / or a drying module, can achieve independent disinfection and drying. It can disinfect and dry different types of objects separately, reduce disinfection time and drying time, reduce drying time, and improve energy efficiency. Attached Figure Description
[0017] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0018] Figure 1 A schematic diagram of the internal structure of an embodiment of the disinfection cabinet provided by this utility model;
[0019] Figure 2 A schematic diagram of the internal front structure of an embodiment of the disinfection cabinet provided by this utility model;
[0020] Figure 3 A schematic diagram of the external rear structure of an embodiment of the disinfection cabinet provided by this utility model;
[0021] Figure 4 A schematic diagram of the back structure of an embodiment of the disinfection cabinet provided by this utility model;
[0022] Figure 5 A schematic diagram of the front external structure of an embodiment of the disinfection cabinet provided by this utility model;
[0023] Figure 6 A schematic diagram of the front external structure of another embodiment of the disinfection cabinet provided by this utility model;
[0024] Among them, 10-first disinfection chamber, 20-second disinfection chamber, 22-second control panel, 13-second reflective surface layer, 11-first ultraviolet light strip, 24-shelf, 14-first air outlet, 21-second ultraviolet light strip, 25-hinge, 231-second air outlet, 41-first clearance space structure, 42-second clearance space structure, 27-air filter, 271-through hole, 26-sloping structure, 18-first fan, 19-first air guide cover, 28-second fan, 29-second air guide cover. Detailed Implementation
[0025] 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.
[0026] Please refer to Figures 1-6 , Figure 1A schematic diagram of the internal structure of an embodiment of the disinfection cabinet provided by this utility model; Figure 2 A schematic diagram of the internal front structure of an embodiment of the disinfection cabinet provided by this utility model; Figure 3 A schematic diagram of the external rear structure of an embodiment of the disinfection cabinet provided by this utility model; Figure 4 A schematic diagram of the back structure of an embodiment of the disinfection cabinet provided by this utility model; Figure 5 A schematic diagram of the front external structure of an embodiment of the disinfection cabinet provided by this utility model; Figure 6 A schematic diagram of the front external structure of another embodiment of the disinfection cabinet provided by this utility model.
[0027] In one specific embodiment, the disinfection cabinet includes a first disinfection chamber 10 and a second disinfection chamber 20 that are independent of each other. The first disinfection chamber 10 is provided with a first receiving opening and a first cover provided at the first receiving opening. The opening direction of the first receiving opening is vertically upward. The second disinfection chamber 20 is located below the first disinfection chamber 10. The second disinfection chamber 20 is provided with a second receiving opening and a second cover provided at the second receiving opening. The second opening is located on the side of the second disinfection chamber 20. The second cover is a flip-down cover. The first disinfection chamber 10 is provided with a first disinfection unit and / or a first drying module. The second disinfection chamber 20 is provided with a second disinfection unit and / or a second drying module.
[0028] By setting up independent first disinfection chamber 10 and second disinfection chamber 20, and respectively setting disinfection units and / or drying modules, independent disinfection and drying can be achieved. Different types of objects can be disinfected and dried separately, reducing disinfection time, drying time, and drying duration, and improving energy efficiency.
[0029] It should be noted that the directions such as up, down, left, and right in this application are as well as the attached... Figure 6 The orientation of the first receiving port is explained in the standard. "Upward flip" refers to the opening direction of the first receiving port being vertically upward. The first cover is disposed at the first receiving port to seal it. In the sealed state, the first cover is horizontal. During opening, one end or the middle of the first cover needs to be pulled upward. The connecting shaft of the first cover is located on the rear side of the first disinfection chamber. The second cover is a downward flip-type cover, meaning that during the sealing process with the second receiving port, the second cover is vertical in the sealed state. In the open state, the upper end of the second cover flips downward around the connecting shaft at the lower end. The sidewall in this application refers to the vertical or inclined surfaces of the interior and exterior of the first disinfection chamber 10 and the second disinfection chamber 20.
[0030] This application does not impose any restrictions on the structure of the disinfection unit, the disinfection structure, or the method of its installation.
[0031] In one embodiment, the first disinfection unit includes a first reflective surface layer disposed on the inner wall of the first disinfection chamber body and a first ultraviolet lamp strip 11 disposed on at least one side wall of the first disinfection chamber body of the first disinfection chamber 10. The second disinfection unit includes a second reflective surface layer 13 disposed on the inner wall of the second disinfection chamber body and multiple sets of second ultraviolet lamp strips 21 disposed on the bottom wall and top wall of the second disinfection chamber body of the second disinfection chamber.
[0032] By using a first ultraviolet lamp strip 11 on at least one side wall of the first disinfection chamber body and a second ultraviolet lamp strip 21 on the inner wall of the second disinfection chamber body, the objects within the corresponding components can be disinfected and sterilized. Since the opening methods of the two are different, the types of objects suitable for disinfection may differ, and the methods of feeding the objects into the chamber may also differ; therefore, the placement and number of the ultraviolet disinfection lamps will also differ.
[0033] For example, the first disinfection unit mainly opens from the top, so the ultraviolet light strips are rarely placed on the top, but rather on the side wall. The second disinfection unit sends the items to be disinfected from the side, so ultraviolet light strips are placed on the bottom and top walls to reduce the inconvenience of entry and exit, reduce damage to the ultraviolet light strips during entry and exit, and at the same time improve the convenience of disinfection.
[0034] Preferably, multiple sets of the second ultraviolet lamp strips 21 are arranged in parallel, and the spacing between the multiple second ultraviolet lamp strips 21 in the projection on the horizontal plane is equal.
[0035] This application includes, but is not limited to, the use of ultraviolet lamp strips for disinfection and sterilization, and does not limit the structure or number of ultraviolet lamps.
[0036] In addition to the structure described above, this application can also include an anti-collision structure to prevent collisions during the entry and exit of the disinfection components. This structure can be hidden using a frame structure or protected using transparent materials.
[0037] During the ultraviolet lamp disinfection process, some ultraviolet light may be lost, and some of it may shine outside the object, resulting in energy waste. By setting the first reflective surface layer and the second reflective surface layer 13, the received ultraviolet light will be reflected back to the object to be disinfected, thereby improving the utilization efficiency of ultraviolet light during disinfection.
[0038] This application does not impose any restrictions on the thickness, material, or structure of the first reflective surface layer and the second reflective surface layer 13. Glass devices or other devices can be used. The reflective layer can be a regular planar reflective layer, a diffuse reflective layer, or other reflective structures.
[0039] Since the objects need to be disinfected and sterilized and then dried to prevent the growth of bacteria, no restrictions are placed on their structure or the way the pipes are connected.
[0040] In this application, since electronic devices are required to turn the disinfection cabinet on or off, in order to improve the convenience of operation, increase the disinfection efficiency, and allow for real-time observation of the disinfection status, in one embodiment, the disinfection cabinet further includes an intelligent dimming window disposed in the second disinfection chamber and / or the first disinfection chamber. The intelligent dimming window has a first working state and a second working state. In the first working state, the intelligent dimming window is transparent, and in the second working state, the intelligent dimming window is opaque.
[0041] By setting up a smart dimming window, the internal status can be seen during the disinfection process, avoiding situations where the equipment is turned on but not actually working inside, thus improving the reliability of use and management efficiency.
[0042] The intelligent dimming window in this application has a first working state and a second working state, and there are no restrictions on how the first working state and the second working state are opened.
[0043] This application does not limit the structure and control method of the intelligent dimming window. The intelligent dimming window is a dimming glass installed at the window of the first disinfection chamber and / or the window of the second disinfection chamber. The dimming glass is an electronically controlled dimming glass, a temperature-controlled dimming glass, a light-controlled dimming glass, or a pressure-controlled dimming glass, or other types of intelligent dimming windows, to realize the switching between the transparent and opaque states of the dimming glass.
[0044] This application does not limit the connection method of the first cover and the second cover. The first cover is connected to the first receiving port by clamping hinge, sliding hinge or snap hinge. The second cover is connected to the second receiving port by hinge 25 and tension spring, or other connection methods are used.
[0045] To further enhance ease of use, in one embodiment, the disinfection cabinet also includes a lid handle disposed on the side of the first cover near the second receiving opening. The side of the lid handle away from the second receiving opening is provided with a recessed first clearance space structure 41, and the side of the second cover near the first cover is provided with a second clearance space structure 42 that communicates with the first clearance space structure.
[0046] The ease of use is improved by setting up a top cover with a handle, a first clearance space structure 41, and a second clearance space structure 42.
[0047] This application does not limit the structure, size, or installation method of the top cover handle, nor does it limit the size or structure of the first clearance space structure 21 and the second clearance space structure 42.
[0048] To further increase usable space, in one embodiment, the top wall of the second disinfection chamber body includes a first wall surface and a second wall surface arranged at an obtuse angle. The first wall surface is located on the rear side of the second disinfection chamber body, and the second wall surface is located on the front side of the second disinfection chamber body, with the side of the second wall surface away from the first wall surface being higher than the first wall surface.
[0049] By setting the first and second walls to form a sloping structure 26, the space of the second receiving opening is increased. This allows users to easily observe the sterilized items after opening the second cover of the second disinfection chamber, as the sloping structure 26 reduces obstruction to the view. Users do not need to get close to the inside to see the internal situation, thus improving the user experience.
[0050] This application does not limit the dimensions or formation method of the first and second wall surfaces.
[0051] In this application, since electronic devices are required to turn the device on or off, in order to improve the convenience of operation and the disinfection efficiency, in one embodiment, the disinfection cabinet further includes a control panel disposed on the outer surface of the second cover, which is used to control the operating status of at least one of the first disinfection unit, the first drying module, the second disinfection unit, and the second drying module.
[0052] By setting up the control panel, the parameters of the corresponding technical equipment can be set and controlled, thereby improving the efficiency of disinfection.
[0053] This application may include one control panel or multiple control panels. For example, a first control panel may be provided in the first disinfection chamber 10 and a second control panel 22 may be provided in the second disinfection chamber 20. Alternatively, only one control panel may be provided for centralized control. This utility model does not limit the scope of this application. Furthermore, the control connection structure is a common application in this field and will not be described in detail here.
[0054] This application does not limit the structure of the first drying module and the second drying module.
[0055] In one embodiment, the first drying module includes a first fan 18, a first heater, and a first air guide hood 18. The air output from the first fan 18 is heated by the first heater and then enters the first disinfection chamber 10 through the first air guide hood 18 to dry the items in the first disinfection chamber 10. The first disinfection chamber 10 is provided with a first air inlet corresponding to the outlet of the air guide hood and a first air outlet 14 corresponding to the first air inlet. The second drying module includes a second fan 28, a second heater, and a second air guide hood 29. The air output from the second fan 28 is heated by the second heater and then enters the second disinfection chamber 20 through the second air guide hood 29 to dry the items in the second disinfection chamber 20. The second air guide hood 29 is divided by a diverter to form a second outlet and a third outlet. The second outlet and the third outlet are located at different heights on the side wall of the second disinfection chamber 20. The second disinfection chamber 20 is provided with a second air inlet and a third air inlet corresponding to the second outlet and the third outlet, and a corresponding second air outlet 231.
[0056] By setting up corresponding air inlets, outlets, and air guides, the internal hot air is inputted and output, improving drying efficiency. At the same time, internal moisture can also flow out, reducing the growth of bacteria and other internal substances. Timely airflow renewal further enhances drying efficiency. Additionally, the drying process also has a certain disinfection and sterilization function, improving disinfection efficiency.
[0057] The structures of the first drying module and the second drying module in this application include, but are not limited to, the structures described above.
[0058] In this application, internal ventilation is required, but there is a possibility that external dust particles may enter and contaminate the disinfection items inside.
[0059] In one embodiment, in order to improve disinfection efficiency and quality, the disinfection cabinet further includes an air filter 27 disposed on the rear panel of the second disinfection chamber 20 for filtering the air entering the first disinfection chamber 10 and the second disinfection chamber 20.
[0060] The air entering the first disinfection chamber 10 and the second disinfection chamber 20 is filtered by the air filter 27, which reduces or avoids the entry of external dust and improves the quality and efficiency of disinfection.
[0061] This application does not limit the structure, size, or installation method of the air filter 27.
[0062] This application does not limit the position of the second cover, etc. Preferably, the top surface of the second cover extends to be flush with the top surface of the first disinfection chamber 10.
[0063] In order to further increase the number of items that can be placed and improve the disinfection efficiency, in one embodiment, the disinfection cabinet further includes at least one shelf 24 disposed in the first disinfection chamber 10 and / or the second disinfection chamber 20.
[0064] By setting up shelves 24, the number of items that can be placed can be increased, and cross-infection due to contact between different items can be reduced.
[0065] This application does not impose any restrictions on the number of shelves 24, their installation structure, etc.
[0066] In one embodiment, the disinfection cabinet includes an independent first disinfection chamber 10 and a second disinfection chamber 20. The first disinfection chamber 10 has a first receiving opening and a first cover covering the first receiving opening. The first receiving opening is arranged facing upwards, and the first cover is an upward-opening cover.
[0067] The second disinfection chamber 20 is located below the first disinfection chamber 10. The second disinfection chamber 20 has a second receiving opening and a second cover located at the second receiving opening. The second opening is located on the side of the disinfection cabinet, and the second cover is a flip-down cover.
[0068] The inner wall of the first disinfection chamber 10 is provided with a reflective surface, and two sets of ultraviolet lamp strips are provided on the inner walls of opposite sides of the first disinfection chamber 10.
[0069] The inner wall of the second disinfection chamber 20 is equipped with a reflective surface. Two sets of ultraviolet (UV) lamps are located on the top wall of the second disinfection chamber 20, and one set of UV lamps is located on the bottom wall of the second disinfection chamber 20. The three sets of UV lamps are staggered. The reflective surface can improve the reflection effect of ultraviolet light, increase the sterilization range, and improve the sterilization effect.
[0070] The first cover has an upward-opening structure, which is convenient to use. Specifically, it is connected by a hinge or other hinge method. The first cover has a top cover handle on the side near the second receiving port. The top cover handle has a first clearance space to improve the convenience of opening the cover.
[0071] The second cover is a flip-down opening structure, specifically achieved by a hinge 25 in conjunction with a tension spring. The top surface of the second cover extends to be flush with the top surface of the first disinfection chamber 10. A second clearance space structure 42, connected to the first clearance space structure 41, is provided on the second cover at the position corresponding to the upper cover handle, thereby increasing the clearance space and improving the ease of opening the cover. Alternatively, the top surface of the second cover may not extend to be flush with the top surface of the first disinfection chamber 10.
[0072] The second disinfection chamber 20 and / or the second disinfection chamber 20 are also provided with shelves 24 for preventing items to be sterilized. The number and arrangement of shelves 24 are not limited.
[0073] The first drying module includes a fan, a heater, and an air guide hood. The air from the fan outlet is heated by the heater and then enters the first disinfection chamber 10 through the air guide hood to dry the items inside the first disinfection chamber 10. The first disinfection chamber 10 is provided with an air inlet corresponding to the outlet of the air guide hood, and the first disinfection chamber 10 is also provided with an air outlet, which is set opposite to the air inlet, so that the hot air can be discharged after heat exchange with the items, avoiding the accumulation of hot air in the first disinfection chamber 10, improving the safety of use and preventing high temperature damage to the dried items.
[0074] The second drying module includes a fan, a heater, and an air guide hood. The air from the fan outlet is heated by the heater and then enters the second disinfection chamber 20 through the air guide hood to dry the items inside the second disinfection chamber 20. The air guide hood splits the air to form a first outlet and a second outlet. The first outlet and the second outlet are arranged separately in the height direction of the second disinfection chamber 20 to dry items at different positions in the second disinfection chamber 20, thereby improving drying efficiency and drying uniformity.
[0075] The second disinfection chamber 20 is equipped with two air inlets, which correspond to the two outlets of the air guide hood. The second disinfection chamber 20 is also equipped with an air outlet, so that the hot air can be discharged after exchanging heat with the items, avoiding the accumulation of hot air in the second disinfection chamber 20 and improving the safety of use.
[0076] The control panel, located on the second cover, is used to control the operation of the ultraviolet lamp strip and the first drying module in the first disinfection chamber 10, and to control the operation of the ultraviolet lamp strip and the second drying module in the second disinfection chamber 20. The number of control panels can be one, two, or more.
[0077] The aforementioned intelligent dimming window can also be installed on the cover of the second disinfection chamber 20. This intelligent dimming window is an electrically controlled dimming glass.
[0078] An air filter 27 is installed on the rear panel of the second disinfection chamber 20 to filter the air entering the first and second disinfection chambers 20, thereby improving the cleanliness of the air.
[0079] The top surface of the second sterilization chamber 20 near the second receiving port has an inclined surface. The inclined surface increases the space at the receiving port, making it easier for users to observe the sterilized items after opening the second cover, without having to get close and look into the second sterilization chamber 20 to see the sterilized items, thus improving the user experience.
[0080] In summary, the disinfection cabinet provided by this utility model embodiment, by setting up an independent first disinfection chamber and a second disinfection chamber, and respectively setting up a disinfection unit and a drying module, can achieve independent disinfection and drying, and can disinfect and dry different types of objects separately, reducing disinfection time, drying time, and drying duration, and improving energy efficiency.
[0081] The disinfection cabinet provided by this utility model has been described in detail above. Specific examples have been used to illustrate the principle and implementation of this utility model. The descriptions of the embodiments above are only for the purpose of helping to understand the method and core idea of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made to this utility model without departing from the principle of this utility model, and these improvements and modifications also fall within the protection scope of the claims of this utility model.
Claims
1. A disinfection cabinet, characterized in that, The device includes a first disinfection chamber and a second disinfection chamber that are independent of each other. The first disinfection chamber is provided with a first receiving opening and a first cover provided at the first receiving opening. The opening of the first receiving opening is vertically upward. The first cover is an upward-opening cover. The second disinfection chamber is located below the first receiving opening. The second disinfection chamber is provided with a second receiving opening and a second cover provided at the second receiving opening. The second receiving opening is located on the side of the second disinfection chamber. The second cover is a downward-opening cover. The first disinfection chamber is provided with a first disinfection unit and / or a first drying module. The second disinfection chamber is provided with a second disinfection unit and / or a second drying module.
2. The disinfection cabinet as described in claim 1, characterized in that, The first disinfection unit includes a first reflective surface layer disposed on the inner wall of the first disinfection chamber body of the first disinfection chamber and a first ultraviolet lamp strip disposed on at least one side wall of the first disinfection chamber body. The second disinfection unit includes a second reflective surface layer disposed on the inner wall of the second disinfection chamber body of the second disinfection chamber and multiple sets of second ultraviolet lamp strips disposed on the bottom wall and top wall of the second disinfection chamber body.
3. The disinfection cabinet as described in claim 2, characterized in that, It also includes a smart dimming window disposed in the second disinfection chamber and / or the first disinfection chamber. The smart dimming window has a first working state and a second working state. In the first working state, the smart dimming window is transparent, and in the second working state, the smart dimming window is opaque.
4. The disinfection cabinet as described in claim 3, characterized in that, The intelligent dimming window includes dimming glass, which can be electrically controlled dimming glass, temperature-controlled dimming glass, light-controlled dimming glass, or pressure-controlled dimming glass.
5. The disinfection cabinet as described in claim 4, characterized in that, The first cover is hinged, slidably hinged, or snap-fit hinged to the main body of the first disinfection chamber, and the second cover is connected to the second receiving port via a hinge or tension spring.
6. The disinfection cabinet as described in claim 5, characterized in that, It also includes a top cover handle disposed on the side of the first cover near the second receiving opening, the side of the top cover handle away from the second receiving opening having a recessed first clearance space structure, and the side of the second cover near the first cover having a second clearance space structure communicating with the first clearance space structure.
7. The disinfection cabinet as described in claim 6, characterized in that, The top wall of the second disinfection chamber body includes a first wall surface and a second wall surface arranged at an obtuse angle. The first wall surface is located on the rear side of the second disinfection chamber body, and the second wall surface is located on the front side of the second disinfection chamber body. The side of the second wall surface away from the first wall surface is higher than the first wall surface.
8. The disinfection cabinet as described in claim 1, characterized in that, It also includes a control panel disposed on the outer surface of the second cover, for controlling the operating status of at least one of the first disinfection unit, the first drying module, the second disinfection unit, and the second drying module.
9. The disinfection cabinet as described in claim 1, characterized in that, It also includes an air filter located on the rear panel of the second disinfection chamber for filtering the air entering the first disinfection chamber and the second disinfection chamber.
10. The disinfection cabinet as described in claim 1, characterized in that, It also includes at least one shelf disposed in the first disinfection chamber and / or the second disinfection chamber.