A cabinet type air conditioner

By setting up a receiving cavity and a dust collection box on the base of the cabinet air conditioner, the dust from the robot vacuum cleaner is sucked in by the air conditioner fan, which solves the problem of the robot vacuum cleaner having to frequently disassemble the dust collection box, thus improving practicality and user experience.

CN116164343BActive Publication Date: 2026-04-14NINGBO AUX ELECTRIC CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-02-01
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Existing robotic vacuum cleaners require frequent disassembly of the dust collection box, resulting in a poor user experience and reduced cleaning effectiveness.

Method used

A receiving cavity and a dust collection box are set on the base of the cabinet air conditioner. The air conditioner fan sucks in the dust collection box and transfers it to the dust collection box through the suction duct. Combined with a one-way valve assembly, dust leakage is prevented, the capacity of the dust collection box is increased and the frequency of manual cleaning is reduced.

Benefits of technology

It improves the practicality and user experience of the robot vacuum cleaner, increases the capacity of the dust collection box, reduces the labor intensity of users, and avoids the impact of dust on the fan and indoor air quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a cabinet type air conditioner, which comprises an air conditioner body, a fan, an air inlet duct, an air inlet and an air outlet are arranged in the air conditioner body, the fan is used for sucking indoor air into the air conditioner body through the air inlet, the air inlet duct and the air outlet, and blowing the indoor air to the indoor through the air outlet; the air conditioner body further comprises a base, the base is located below the air conditioner body, and the base comprises a containing cavity, a dust storage box and a dust suction duct; the containing cavity is used for containing a sweeping robot, the sweeping robot comprises a dust collection box; the dust suction duct is connected with the dust storage box at a first end and connected with the air inlet side of the fan at a second end; the fan is further used for sucking dust in the dust collection box into the dust storage box. The cabinet type air conditioner provided by the application realizes the cleaning of dust in the dust collection box of the sweeping robot by using the fan of the air conditioner, does not need to frequently disassemble the dust collection box manually, indirectly increases the capacity of the dust collection box, effectively reduces the labor intensity of the user, improves the user experience and improves the practicability of the sweeping robot.
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Description

Technical Field

[0001] This invention relates to the fields of robotic vacuum cleaners and air conditioning technology, and more specifically, to a cabinet-type air conditioner. Background Technology

[0002] With the advancement of technology and the improvement of people's living standards, more and more smart home appliances are entering people's daily lives, providing users with a more convenient and comfortable living and working environment.

[0003] Robotic vacuum cleaners are a type of smart home appliance that uses artificial intelligence to automatically clean floors and collect dust in a dustbin. After a period of operation, the dustbin accumulates a lot of dust, requiring manual opening and emptying. Because the dustbin is small, frequent disassembly reduces the user experience. Furthermore, if the dustbin is not emptied promptly, the robot vacuum may not clean the floor effectively the next time it's used, resulting in reduced cleaning performance and overall usability. Summary of the Invention

[0004] This invention provides a cabinet-type air conditioner to solve the technical problem of existing robotic vacuum cleaners that require frequent manual disassembly of the dust collection box, resulting in low practicality and poor user experience.

[0005] This invention provides a cabinet-type air conditioner, comprising: an air conditioner body, the air conditioner body including a fan, an air inlet duct, an air inlet, and an air outlet, the fan being located within a cavity of the air conditioner body, a first end of the air inlet duct being connected to the air inlet side of the fan, and a second end being connected to the air inlet, the fan being used to draw in indoor air entering the air conditioner body through the air inlet and the air inlet duct, and to blow it into the room through the air outlet, the air conditioner body also including a base, the base being located below the air conditioner body, the base comprising:

[0006] A receiving cavity for accommodating a robotic vacuum cleaner, the robotic vacuum cleaner including a dust collection box with a dust discharge port;

[0007] A dust collection box is provided with a first suction port. When the robot vacuum cleaner is housed in the receiving cavity, the first suction port can be connected to the dust discharge port.

[0008] The dust extraction duct has a first end connected to the dust collection box and a second end connected to the air inlet side of the fan.

[0009] The fan is also used to draw dust from the dust collection box into the dust storage box.

[0010] This invention provides a storage cavity on the base of a cabinet air conditioner to house a robotic vacuum cleaner, eliminating the need for users to reserve a separate parking space for the robot when using it indoors, thus improving the utilization of indoor space. Furthermore, by incorporating a dust collection box on the base of the cabinet air conditioner and utilizing its own fan to clean the dust from the robot vacuum cleaner's dust box, the invention eliminates the need for frequent manual disassembly of the dust box, indirectly increasing its capacity, effectively reducing the user's workload, improving the user experience, and enhancing the practicality of the robotic vacuum cleaner.

[0011] Furthermore, the dust extraction duct is connected to the air intake duct, and a damper assembly is provided at the connection between the two. The damper assembly is used to control the opening and closing of the air intake duct and the dust extraction duct.

[0012] This invention provides a damper assembly at the connection between the dust extraction duct and the air intake duct, allowing users to choose to open either the air intake duct or the dust extraction duct to suit their needs.

[0013] Furthermore, the damper assembly includes a damper plate, a rotating shaft, and a driving component. The driving component is connected to the rotating shaft, and the rotating shaft is connected to the damper plate. The driving component drives the damper plate to rotate around the rotating shaft.

[0014] Furthermore, the dust collection box is provided with a second dust suction port, which is connected to the first end of the dust suction duct.

[0015] Furthermore, a first filter screen is provided at the first end near the dust suction duct, or a second filter screen is provided at the second dust suction interface.

[0016] This invention filters out small dust particles by setting a first filter at the first end near the dust extraction duct or a second filter at the second dust extraction interface. This prevents small dust particles from entering the fan and the interior of the cabinet air conditioner, thus avoiding impacts on the fan's performance, indoor air quality, and ultimately, the user's health.

[0017] Furthermore, a first one-way valve assembly is provided at the first suction port, which can prevent dust in the dust collection box from leaking from the first suction port; and / or, a second one-way valve assembly is provided at the dust discharge port, which can prevent dust in the dust collection box from leaking from the dust discharge port.

[0018] The present invention provides a first one-way valve assembly and a second one-way valve assembly on the dust discharge port of the dust collection box and the first suction port of the dust collection box, respectively, which can prevent dust from leaking from the dust discharge port and the first suction port, and prevent dust from returning to the dust collection box from the dust collection box.

[0019] Further, the first one-way valve assembly includes: a first baffle, a first rotating shaft, and a first torsion spring. The first baffle is rotatably connected to the dust collection box via the first rotating shaft. The first torsion spring is sleeved on the first rotating shaft and is used to allow the first baffle to rotate relative to it, thereby opening or closing the first suction port; and / or,

[0020] The second one-way valve assembly includes: a second baffle, a second rotating shaft, and a second torsion spring. The second baffle is rotatably connected to the dust collection box via the second rotating shaft. The second torsion spring is sleeved on the second rotating shaft and is used to allow the second baffle to rotate relative to it to open or close the dust discharge port.

[0021] Furthermore, the receiving cavity has an inlet and outlet for a sweeping robot, and the opening direction of the inlet and outlet for the sweeping robot is located on the side of the air outlet of the cabinet air conditioner.

[0022] This invention places the opening direction of the robot vacuum cleaner's inlet and outlet in the receiving cavity on the same side as the air outlet of the cabinet air conditioner, so that the robot vacuum cleaner's entry and exit will not be affected when the air conditioner is placed in a corner.

[0023] Furthermore, the base includes a third baffle, which is movably connected to the base and is used to open or close the inlet and outlet of the sweeping robot.

[0024] This invention prevents external objects, including conductive objects, from entering the cavity by setting a third baffle at the opening of the cavity, thus preventing electric shock accidents.

[0025] Furthermore, the base also includes a motor, which is connected to the third baffle and is used to drive the third baffle to open or close the inlet and outlet of the sweeping robot. Attached Figure Description

[0026] Figure 1 A schematic diagram of the dust extraction duct opening structure of a cabinet air conditioner provided by the present invention;

[0027] Figure 2 A schematic diagram of the dust extraction duct closing structure of a cabinet air conditioner provided by the present invention;

[0028] Figure 3 A schematic diagram of a cabinet air conditioner with both the dust extraction duct and the air intake duct open, provided by the present invention;

[0029] Figure 4 This is a schematic diagram of the main structure of a cabinet-type air conditioner provided by the present invention;

[0030] Explanation of reference numerals in the attached figures:

[0031] 100 - Air conditioner body; 110 - Fan; 120 - Air inlet duct; 121 - First limiting part; 130 - Air inlet; 140 - Air outlet;

[0032] 200 - Base;

[0033] 210 - Receiving cavity; 211 - Third baffle; 212 - Inlet and outlet of the sweeping robot;

[0034] 220 - Dust collection box; 221 - First suction port; 222 - First one-way valve assembly;

[0035] 223 - Second suction port;

[0036] 230 - Suction air duct; 231 - Air damper; 232 - First filter; 233 - Second limiting part;

[0037] 300 - Robotic vacuum cleaner; 310 - Dust collection box; 311 - Dust discharge port; 312 - Second one-way valve assembly; Detailed Implementation

[0038] To make the above-mentioned objects, features and advantages of the present invention more apparent and understandable, the following description is provided in conjunction with the accompanying drawings. Figure 1-4 Specific embodiments of the present invention will be described in detail below.

[0039] In this invention, the terms "connection" and "linked" should be interpreted broadly, for example, they can refer to a fixed connection, a detachable connection, or an integral structure.

[0040] In this invention, the terms "inner", "outer", "upper", "lower", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.

[0041] See appendix Figure 1 This invention provides a cabinet-type air conditioner, including an air conditioner body 100. The air conditioner body 100 includes a fan 110, an air inlet duct 120, an air inlet 130, and an air outlet 140. The fan 110 is located inside the cavity of the air conditioner body 100. One end of the air inlet duct 120 is connected to the air inlet side of the fan 110, and the other end is connected to the air inlet 130. The fan 110 is used to draw in indoor air entering the air conditioner body 100 through the air inlet 130 and the air inlet duct 120, and blow it into the room through the air outlet 140. The air conditioner body 100 also includes a base 200, which is located below the air conditioner body 100. The base 200 includes:

[0042] The receiving cavity 210 is used to receive the sweeping robot 300. The sweeping robot 300 includes a dust collection box 310, which is provided with a dust discharge port 311.

[0043] Dust collection box 220, the dust collection box 220 is provided with a first dust suction port 221, the first dust suction port 221 is connected to the dust discharge port 311;

[0044] The dust suction duct 230 has one end connected to the dust collection box 220 and the other end connected to the air intake side of the fan 110.

[0045] The fan 110 is also used to draw dust from the dust collection box 310 into the dust collection box 220.

[0046] In one specific embodiment, the fan 110 is located below the air conditioner body 100 and above the dust collection box.

[0047] It should be noted that the fan 110 can be a centrifugal fan, an axial fan, or a mixed-flow fan.

[0048] It should be noted that the base includes a cavity, which is used to hold the dust collection box.

[0049] Therefore, by providing a receiving cavity 210 on the base 200 of the cabinet air conditioner, the present invention provides parking space for the robot vacuum cleaner 300, so that users do not need to reserve a separate parking space for the robot vacuum cleaner 300 when using it indoors, thus improving the utilization rate of indoor space. By setting a dust collection box on the base 200 of the cabinet air conditioner and using its own fan 110 to clean the dust in the dust collection box 310 of the robot vacuum cleaner 300, the dust collection box 310 does not need to be disassembled frequently by humans, thus indirectly increasing the capacity of the dust collection box 310, effectively reducing the labor intensity of users, improving the user experience, and enhancing the practicality of the robot vacuum cleaner 300.

[0050] See appendix Figure 1 In one embodiment, the dust collection box 220 is located above the receiving cavity 210, the first dust suction port 221 is located at the bottom of the dust collection box 220, and the dust discharge port 311 is located at the top of the dust collection box 310. The first dust suction port 221 and the dust discharge port 311 are arranged opposite to each other.

[0051] In another embodiment, the dust collection box 220 is located behind the receiving cavity 210, and the first dust suction port 221 is arranged opposite to the dust discharge port 311.

[0052] In other embodiments, the dust collection box 220 and the receiving cavity 210 are arranged adjacent to each other, and the first dust suction port 221 and the dust discharge port 311 are arranged opposite to each other.

[0053] See appendix Figure 1-3 Preferably, the dust extraction duct 230 is connected to the air intake duct 120, and a damper assembly is provided at the connection between the two. The damper assembly is used to open the dust extraction duct 230 while closing the air intake duct 120, or to open the air intake duct 120 while closing the dust extraction duct 230, or to open both the dust extraction duct 230 and the air intake duct 120 at the same time.

[0054] It should be noted that when the air conditioner is in heating, cooling, or fan mode, and the robot vacuum cleaner 300 is located in the receiving cavity 210, the user can control the damper assembly to open both the air intake duct 120 and the suction duct 230. When the air conditioner is not in heating, cooling, or fan mode, and the robot vacuum cleaner 300 is located in the receiving cavity 210, the user can control the damper assembly to open the suction duct 230 while closing the air intake duct 120. When the robot vacuum cleaner 300 is not located in the receiving cavity 210, and the air conditioner is in heating, cooling, or fan mode, the user can control the damper assembly to open the air intake duct 120 while closing the suction duct 230.

[0055] Therefore, by providing a damper assembly at the connection between the dust extraction duct 230 and the air intake duct 120, the present invention allows the user to choose to open either the air intake duct 120 or the dust extraction duct 230, thus adapting to the user's needs.

[0056] See appendix Figure 1-3 Preferably, the damper assembly includes a damper plate 231, a rotating shaft, and a drive component. The drive component is connected to the rotating shaft, and the rotating shaft is connected to the damper plate 231. The drive component drives the damper plate 231 to rotate around the rotating shaft.

[0057] Specifically, the driving component is a motor or electric motor.

[0058] It should be noted that the rotating shaft and the damper plate 231 can be an integral structure or a separate structure.

[0059] It should be noted that the damper plate 231 is adapted to the cross-sectional shape and size of the dust suction duct 230 and the air intake duct 120.

[0060] See appendix Figure 3 Preferably, the air inlet duct 120 is provided with a first limiting part 121, which abuts against the damper plate 231 to close the air inlet duct 120; or the dust suction duct 130 is provided with a second limiting part 233, which abuts against the damper plate 231 to close the dust suction duct 130.

[0061] See appendix Figure 2 Preferably, the dust collection box 220 is provided with a second dust suction port 223, which is connected to one end of the dust suction duct 230.

[0062] See appendix Figure 2 Preferably, a first filter screen 232 is provided at the first end near the dust suction duct 230 or a second filter screen is provided at the second dust suction port 223.

[0063] If the fan 110 is used to directly extract air from the dust collection box 220, small dust particles inside the dust collection box 310 of the robot vacuum cleaner 300 will enter the fan 110 and the cabinet air conditioner through the suction duct 230. Long-term use will affect the working performance of the fan 110. The dust particles will enter the cabinet air conditioner and then enter the indoor space through the air outlet 140, affecting the indoor air quality.

[0064] Therefore, by setting a first filter 232 near the second dust suction port 223 in the dust suction duct 230 or a second filter at the second dust suction port 223, the present invention can filter small dust particles, preventing small dust particles from entering the fan 110 and the cabinet air conditioner, thus affecting the working performance of the fan 110 and the indoor air quality, and consequently affecting the health of users.

[0065] See appendix Figure 3 Preferably, a first one-way valve assembly 222 is provided at the first dust suction port 221, which can prevent dust in the dust collection box 220 from leaking from the first dust suction port 221; and / or, a second one-way valve assembly 312 is provided at the dust discharge port 311, which can prevent dust in the dust collection box 310 from leaking from the dust discharge port 311.

[0066] To prevent dust from leaking from the first suction port 221 when the dust collection box 220 is pulled out, a first one-way valve assembly 222 is provided at the first suction port 221. The first one-way valve assembly 222 can open or close the first suction port 221. When the suction duct 230 is connected, under the strong suction of the fan 110, the second one-way valve assembly 312 opens the first suction port 221, the air passage is connected, and the dust in the dust collection box is sucked into the dust collection box 220. When the suction duct 230 is closed, the first one-way valve assembly 222 closes the first suction port 221, preventing dust from leaking from the first suction port 221.

[0067] To prevent dust from escaping from the dust outlet 311 when the robot vacuum cleaner 300 is working, a second one-way valve assembly 312 is installed at the dust outlet 311. The second one-way valve assembly 312 can open or close the dust outlet 311. When the suction duct 230 is connected, under the strong suction of the fan 110, the second one-way valve assembly 312 opens the dust outlet 311, the air passage is connected, and the dust in the dust collection box 310 is sucked into the dust collection box 220. When the robot vacuum cleaner 300 is working normally, the second one-way valve assembly 312 closes the dust outlet 311 to prevent dust leakage.

[0068] In addition, the first suction port 221 and the dust discharge port 311 are respectively provided with a first one-way valve assembly 222 and a second one-way valve assembly 312 to prevent dust from returning from the dust collection box 220 back to the dust collection box 310.

[0069] Therefore, by providing a first one-way valve assembly 222 and a second one-way valve assembly 312 on the dust discharge port 311 of the dust collection box 310 and the first suction port 221 of the dust collection box 220 respectively, the present invention can prevent dust from leaking from the dust discharge port 311 and the first suction port 221 respectively, and prevent dust from returning to the dust collection box 310 from the dust collection box 220.

[0070] See appendix Figure 3 Preferably, in one embodiment, the first one-way valve assembly 222 includes: a first baffle, a first rotating shaft, and a first torsion spring. The first baffle is rotatably connected to the dust collection box 220 via the first rotating shaft. The first torsion spring is sleeved on the first rotating shaft and is used to allow the first baffle to rotate relative to it to open or close the first suction port 221; and / or,

[0071] The second one-way valve assembly 312 includes a second baffle, a second rotating shaft, and a second torsion spring. The second baffle is rotatably connected to the dust collection box 310 via the second rotating shaft. The second torsion spring is sleeved on the second rotating shaft and is used to allow the second baffle to rotate relative to each other to open or close the dust discharge port 311.

[0072] Preferably, in another embodiment, the first one-way valve assembly 222 includes: a first valve body and a first valve disc, the first valve body being disposed at the first vacuum port 221, the first valve disc being fixed to the valve body, the first valve disc being made of a flexible material, one end of the first valve disc being an open structure, and the other end being provided with a first sealing surface, the first sealing surface being openable or closed to realize the opening or closing of the first vacuum port 221; and / or,

[0073] The second one-way valve assembly 312 includes: a second valve body and a second valve disc. The second valve body is disposed at the dust discharge port 311, and the second valve disc is fixed on the second valve body. The second valve disc is made of flexible material. One end of the valve disc is an open structure, and the other end is provided with a second sealing surface. The second sealing surface can be opened or closed to realize the opening or closing of the dust discharge port 311.

[0074] Preferably, it also includes a vacuuming connection tube, one end of which is connected to the first vacuuming interface 221, and the other end of which is connected to the dust discharge interface 311.

[0075] Preferably, a charging base is provided inside the receiving cavity 210, which is used to charge the sweeping robot 300.

[0076] Therefore, by setting a receiving cavity 210 on the base 200 of the air conditioner unit and setting a charging base in the receiving cavity 210 to charge the robot vacuum cleaner 300, the present invention eliminates the need to reserve a separate parking and charging location for the robot vacuum cleaner 300, thereby improving the space utilization of the room.

[0077] Specifically, the dimensions of the receiving cavity 210 can be designed based on the dimensions of the robotic vacuum cleaner 300 on the market. The specific structure of the charging base and related accessories and charging connectors can be designed based on the charging interface of the robotic vacuum cleaner 300 on the market. The charging base is equipped with a position signal sensing device, which communicates with the robotic vacuum cleaner 300. The charging base can provide the robotic vacuum cleaner 300 with its own position information. When the robotic vacuum cleaner's battery is low or it has finished working, it can automatically move to the charging base in the receiving cavity 210 to enter the charging or shutdown parking state.

[0078] Preferably, a charging line is provided inside the base 200, and the charging line is connected to the charging base to provide charging function for the robot vacuum cleaner 300.

[0079] See appendix Figure 4 Preferably, the receiving cavity 210 has a robot vacuum cleaner inlet / outlet 212, which is located on one side of the air outlet 140 of the cabinet air conditioner.

[0080] Therefore, by placing the inlet and outlet of the robotic vacuum cleaner 300 in the receiving cavity 210 and the air outlet 140 of the cabinet air conditioner on the same side, the present invention will not affect the entry and exit of the robotic vacuum cleaner 300 when the air conditioner is placed in a corner.

[0081] See appendix Figure 4 Preferably, the base 200 includes a third baffle 211, which is movably connected to the base 200. The third baffle 211 is used to open or close the inlet and outlet 212 of the sweeping robot.

[0082] Therefore, by providing a third baffle 211 at the opening of the receiving cavity 210, the present invention can prevent external objects from entering the receiving cavity 210, or even conductive objects from entering the receiving cavity 210, thus preventing electric shock accidents.

[0083] Preferably, in one embodiment, the base 200 includes a third rotating shaft and a third torsion spring. The third baffle is rotatably connected to the base 200 via the third rotating shaft. The third torsion spring is sleeved on the third rotating shaft and is used to rotate the third baffle 211 relative to each other to open or close the inlet and outlet 212 of the sweeping robot.

[0084] Preferably, in another embodiment, the base 200 further includes a motor connected to the third baffle, which is used to drive the third baffle 211 to open or close the robot vacuum cleaner inlet and outlet 212.

[0085] Specifically, the robotic vacuum cleaner 300 is connected to the motor. When the robotic vacuum cleaner 300 needs to enter the receiving cavity 210 for charging or dust transfer, it sends a corresponding signal to the motor to drive the third baffle 211 to open the robotic vacuum cleaner entrance 212 of the receiving cavity 210, allowing the robotic vacuum cleaner 300 to smoothly enter the receiving cavity 210. When the robotic vacuum cleaner 300 has completely entered or completely left the receiving cavity 210, it sends a corresponding signal to the motor to drive the third baffle 211 to move in the opposite direction, closing the robotic vacuum cleaner entrance 212 of the receiving cavity 210.

[0086] Preferably, the opening of the receiving cavity 210 is provided with an inclined portion.

[0087] Therefore, the present invention provides an inclined portion at the opening of the receiving cavity 210 to facilitate the entry and exit of the sweeping robot 300.

[0088] Preferably, the dust collection box 220 is provided with a cover plate, which is detachably disposed on the top of the dust collection box 220.

[0089] It should be noted that when the user needs to empty the dust in the dust collection box 220, the cover can be removed.

[0090] While the present invention has been disclosed above, it is not limited thereto. Any person skilled in the art can make various modifications and alterations without departing from the spirit and scope of the invention; therefore, the scope of protection of the present invention should be determined by the scope defined in the claims.

Claims

1. A cabinet-type air conditioner, comprising an air conditioner body (100), the air conditioner body (100) including a fan (110), an air inlet duct (120), an air inlet (130), and an air outlet (140), the fan (110) being located within the cavity of the air conditioner body (100), a first end of the air inlet duct (120) being connected to the air inlet side of the fan (110), and a second end being connected to the air inlet (130), the fan (110) being used to draw in indoor air entering the air conditioner body (100) through the air inlet (130) and the air inlet duct (120), and to blow it into the room through the air outlet (140), characterized in that, The air conditioner body (100) further includes a base (200), the base (200) being located below the air conditioner body (100), and the base (200) comprising: A receiving cavity (210) is provided for accommodating a sweeping robot (300), the sweeping robot (300) including a dust collection box (310) and the dust collection box (310) being provided with a dust discharge port (311); A dust collection box (220) is provided with a first suction port (221). When the sweeping robot (300) is housed in the receiving cavity (210), the first suction port (221) can be connected to the dust discharge port (311). A dust extraction duct (230) is provided, with its first end connected to the dust collection box (220) and its second end connected to the air inlet side of the fan (110). The fan (110) is also used to draw dust from the dust collection box (310) into the dust collection box (220). The dust extraction duct (230) is connected to the air intake duct (120), and a damper assembly is provided at the connection between the two. The damper assembly is used to control the opening and closing of the air intake duct (120) and the dust extraction duct (230). The damper assembly includes a damper plate (231), a rotating shaft, and a driving component. The driving component is connected to the rotating shaft, and the rotating shaft is connected to the damper plate (231). The driving component drives the damper plate (231) to rotate around the rotating shaft. A first one-way valve assembly (222) is provided at the first suction port (221), which can prevent dust in the dust collection box (220) from leaking from the first suction port (221); and / or, a second one-way valve assembly (312) is provided at the dust discharge port (311), which can prevent dust in the dust collection box (310) from leaking from the dust discharge port (311); The first one-way valve assembly (222) includes: a first baffle, a first rotating shaft and a first torsion spring. The first baffle is rotatably connected to the dust collection box (220) via the first rotating shaft. The first torsion spring is sleeved on the first rotating shaft and is used to allow the first baffle to rotate relative to each other to open or close the first dust suction port (221). And / or, the second one-way valve assembly (312) includes: a second baffle, a second rotating shaft and a second torsion spring. The second baffle is rotatably connected to the dust collection box (310) via the second rotating shaft. The second torsion spring is sleeved on the second rotating shaft and is used to allow the second baffle to rotate relative to each other to open or close the dust discharge port (311).

2. The cabinet air conditioner according to claim 1, characterized in that, The dust collection box (220) is provided with a second dust suction port (223), which is connected to the first end of the dust suction duct (230).

3. The cabinet-type air conditioner according to claim 2, characterized in that, A first filter screen (232) is provided at the first end near the suction duct (230), or a second filter screen is provided at the second suction port (223).

4. The cabinet air conditioner according to claim 1, characterized in that, The cavity (210) has a robot vacuum cleaner inlet / outlet (212), which is located on the side of the air outlet (140) of the cabinet air conditioner.

5. The cabinet air conditioner according to claim 4, characterized in that, The base (200) includes a third baffle (211), which is movably connected to the base (200) and is used to open or close the inlet and outlet (212) of the sweeping robot.

6. The cabinet air conditioner according to claim 5, characterized in that, The base (200) also includes a motor, which is connected to the third baffle (211) and is used to drive the third baffle (211) to open or close the inlet and outlet of the sweeping robot.

Citation Information

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