Mite removing device

By designing the dust collection system of the base station and mite removal instrument, the secondary pollution problems caused by the small capacity of the mite removal instrument dust cup and manual cleaning are solved, and the efficient dust collection effect is achieved without manual cleaning.

CN223196001UActive Publication Date: 2025-08-08GUANGDONG DONLIM INTELLIGENT ELECTRICAL APPLIANCES CO LTD
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Patent Information

Application Number
CN202422493535.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-15
Publication Date
2025-08-08
Estimated Expiration
2034-10-15

AI Technical Summary

Technical Problem

The existing mite remover has a small capacity, which leads to multiple cleanings during use, and there are secondary pollution problems such as ash during manual cleaning.

Method used

A mite removal device is designed, including a base station and a mite removal device. The mite removal device is connected to the air inlet passage through a first opening. The second suction component collects dirt in the dust collecting cup. After being installed on the base station, the first suction component sucks dirt in the dust collecting cup into the dust collecting parts of the base station without manual cleaning.

Benefits of technology

It realizes that the dust collector cup is not manually cleaned, reduces secondary pollution and improves the convenience and efficiency of use.

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Abstract

The acarus killing device comprises a base station and an acarus killing instrument, and the base station comprises a dust collection channel, a dust collection component and a first suction assembly; the acarus killing instrument comprises an air inlet channel, a dust collection cup and a second suction assembly. The dust collection cup is provided with a first opening and a second opening, a first opening and closing mechanism is arranged corresponding to the first opening, and a second opening and closing mechanism is arranged corresponding to the second opening; the dust collection cup is provided with the first opening and the second opening, when the acarus killing instrument is used, the first opening is connected with the air inlet channel, fluid is driven by the suction force of the second suction assembly to flow into the air inlet channel and the dust collection cup, and dust, acarid, hair and the like in household articles such as mattresses, quilts and pillows are sucked in, so that the purpose of collecting dirt is achieved; when the dust cup needs to be cleaned, the acarus killing instrument is installed on the base station and communicated with the dust collection channel through the second opening, dirt in the dust collection cup is sucked out through suction of the first suction assembly and collected in a dust collection component of the base station, and the dust collection cup does not need to be manually cleaned.
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Description

Technical Field

[0001] The utility model relates to the technical field of intelligent cleaning appliances, and more particularly to a mite removal device. Background Art

[0002] A mite removal device is a type of cleaning appliance. It mainly uses the patting + vacuuming function to clean household items that are not easy to clean, such as mattresses, pillows, and quilts, to remove mites from household items. Some mite removal devices also have ultraviolet and heating functions, which have better cleaning effects. For example, the patent announcement No. CN217609187U discloses a mite removal device, including: a shell, a roller brush assembly, a dust collection assembly, a disinfection assembly, and a patting assembly. The roller brush assembly is arranged at the bottom of the shell, and performs rotational cleaning on the surface to be cleaned; the dust collection assembly is arranged on the rear side of the roller brush assembly, and collects dust cleaned by the roller brush assembly; the disinfection assembly is arranged on the front side of the roller brush assembly facing away from the dust collection assembly, and disinfects the surface to be cleaned; the patting assembly is arranged between the disinfection assembly and the roller brush assembly, and pats the disinfected surface to be cleaned, so that the roller brush assembly can clean the patted surface to be cleaned.

[0003] However, existing mite removal devices usually control weight and external dimensions to achieve the purpose of being compact, flexible, and convenient for users to use. Therefore, existing mite removal devices still have the following defects: (1) The dust cup capacity of the mite removal device is relatively small, resulting in the user needing to clean the dust cup multiple times during use; (2) When the user manually cleans the dust cup, dust is raised, which will cause secondary pollution.

[0004] In order to solve the problems of small dust cup capacity of mite removal devices in the prior art, the need to clean the dust cup multiple times, and secondary pollution caused during the cleaning process, the applicant proposes the following technical solution. Utility Model Content

[0005] In view of this, the utility model provides a mite removal device capable of collecting dirt in a dust cup of a mite removal device.

[0006] In order to achieve the above purpose, the utility model adopts the following technical solution: the mite removal device includes: a base station and a mite removal device, the mite removal device can be taken out from the base station, and the mite removal device can be installed on the base station.

[0007] The base station includes: a dust collection channel, a dust collection component and a first suction component;

[0008] The mite removal device comprises: an air inlet channel, a dust collection cup and a second suction component;

[0009] The dust cup is provided with a first opening and a second opening, a first opening and closing mechanism is provided corresponding to the first opening, and a second opening and closing mechanism is provided corresponding to the second opening;

[0010] When the mite removal device is working, the second opening and closing mechanism closes the second opening, the first opening and closing mechanism opens the first opening, the air inlet channel is connected to the dust collection cup through the first opening, and the second suction component drives the fluid from the air inlet channel into the dust collection cup;

[0011] After the mite removal device is installed on the base station, when the base station is working, the second opening and closing mechanism opens the second opening, the dust collection channel is connected to the dust collection cup through the second opening, and the first suction component drives the fluid from the dust collection cup through the dust collection channel into the dust collection component;

[0012] The present technology provides a first opening and a second opening in the dust cup. When the mite remover is in use, it is connected to the air inlet channel through the first opening, and the suction of the second suction component drives the fluid to flow into the air inlet channel and then into the dust cup, sucking in dust, mites, hair, etc. in household items such as mattresses, quilts, and pillows, thereby achieving the purpose of collecting dirt; and when the dust cup needs to be cleaned, the mite remover is installed on the base station, connected to the dust collection channel through the second opening, and the suction of the first suction component sucks the dirt in the dust cup out and collects it in the dust collecting component of the base station, without the need to manually clean the dust cup.

[0013] As a preferred solution of the present invention, the first opening and closing mechanism is elastically arranged on the dust cup and keeps the first opening closed, and the first opening and closing mechanism rotates toward the inside of the dust cup under the suction of the second suction component to open;

[0014] The second opening and closing mechanism is elastically arranged on the dust cup and keeps the second opening closed. The second opening and closing mechanism rotates toward the outside of the dust cup and opens under the suction of the first suction component. This technology drives the second opening and closing mechanism to open by the first suction component, and drives the first opening and closing mechanism to open by the second suction component. No manual operation is required and it is easy to use.

[0015] As a preferred solution of the present invention, the first opening and closing mechanism and the second opening and closing mechanism are hinge mechanisms, which is a specific implementation method of the first opening and closing mechanism and the second opening and closing mechanism.

[0016] As a preferred solution of the present invention, the dust collecting channel is provided with a dust collecting channel inlet, and a sealing ring is provided at the dust collecting channel inlet;

[0017] The mite removal device is installed on the base station, and the dust collection channel entrance and the second opening are sealed by a sealing ring, which has good sealing performance and prevents air leakage.

[0018] As a preferred solution of the present invention, a filter element is provided in the dust cup; the dust cup is provided with a dust cup outlet, and the dust cup outlet is connected to the second suction component air inlet of the second suction component; the filter element in this technology plays a filtering role, filtering and collecting dirt such as dust, lint, hair, mites, etc. entrained in the fluid in the dust cup, and finally the clean air is discharged to the external environment through the second suction component.

[0019] As a preferred solution of the present invention, a partition is provided in the dust cup, which divides the dust cup into a first chamber and a second chamber that are connected to each other through the partition, and the filter element is provided in the first chamber; the first opening is connected to the first chamber, and the second opening is connected to the second chamber;

[0020] When the mite removal device of this technology is in operation, the second suction component works to draw air into the dust cup, so that a pressure difference is formed between the inside and outside of the dust cup, thereby forming a thrust airflow to open the first opening and closing mechanism, that is, the first opening is opened;

[0021] After the mite remover is installed on the base station, the dust collection channel corresponds to the second opening and closing mechanism. The suction generated by the first suction component opens the second opening, that is, the second opening is opened, and the second opening is connected to the dust collection channel.

[0022] As a preferred solution of the present invention, the second chamber is located on the peripheral side of the first chamber; the lower sides of the first chamber and the second chamber are connected.

[0023] As a preferred solution of the present invention, the dust collecting component is a dust collecting bag, and the dust collecting component is arranged in the dust collecting channel; the housing of the base station is provided with openable doors and windows to facilitate replacement or cleaning of the dust collecting component.

[0024] The remaining beneficial technical effects of the present invention are embodied in the specific implementation manner. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are merely embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the provided drawings without paying any creative work.

[0026] Figure 1 This is a schematic diagram of the mite removal device installed on the base station;

[0027] Figure 2 This is a schematic diagram of the mite removal device being taken out from the base station;

[0028] Figure 3 This is a cross-sectional diagram of a mite removal device;

[0029] Figure 4 is a cross-sectional schematic diagram of the dust cup;

[0030] Figure 5 This is a cross-sectional diagram of the mite removal device after being installed on the base station;

[0031] Figure 6 This is an exploded view of the mite removal device.

[0032] Description of Reference Numerals

[0033] Base station 100; dust collection channel 110; dust collection channel entrance 111; sealing ring 112; dust collection component 120; first suction assembly 130; mite remover 200; air inlet channel 210; dust cup 220; first opening 221; second opening 222; limiting edge 2221; first opening and closing mechanism 223; second opening and closing mechanism 224; dust cup outlet 225; partition 226; first chamber 227; second chamber 228; second suction assembly 230; filter element 240. DETAILED DESCRIPTION

[0034] The present invention will now be described in further detail with reference to the accompanying drawings, which are simplified schematic diagrams that illustrate the basic structure of the present invention in a schematic manner.

[0035] Mite removal device, please refer to Figure 1-6 As shown, it includes: a base station 100 and a mite remover 200. The mite remover 200 can be taken out from the base station 100, and the mite remover 200 can be installed on the base station 100. After the mite remover 200 is taken out from the base station 100, the mite remover 200 is used alone to clean household items. After use, the mite remover 200 can be installed on the base station 100 to clean the dust cup 220 of the mite remover 200.

[0036] The base station 100 has a housing, and the base station 100 can be conveniently placed on a plane, such as Figure 2 As shown, the front of the base station 100 is provided with a position for assembling the mite removal device 200;

[0037] like Figure 5 As shown, the base station 100 includes: a dust collection channel 110, a dust collection component 120 and a first suction component 130;

[0038] The dust collection channel 110, the dust collection component 120 and the first suction assembly 130 are connected or communicated with each other. When the first suction assembly 130 is in operation, the fluid is driven to flow through the dust collection channel 110 and the dust collection component 120, and finally discharged to the external environment from the first suction assembly outlet of the first suction assembly 130;

[0039] Continue as Figure 5As shown, the dust collecting channel 110 inside the base station 100 can be assembled by shell components, or the dust collecting channel 110 can also be composed of a structure such as a hose, and the fluid can flow in the dust collecting channel 110.

[0040] like Figure 3-4 As shown, the mite removal device 200 includes: an air inlet channel 210, a dust collection cup 220 and a second suction component 230;

[0041] The air inlet channel 210, the dust cup 220 and the second suction component 230 are connected or communicated. When the second suction component 230 is in operation, the fluid is driven to flow through the air inlet channel 210 and the dust cup 220, and finally discharged to the external environment from the air outlet of the second suction component.

[0042] Continue as Figure 3 As shown, the air inlet channel 210 inside the mite removal device 200 can be assembled by shell components, or the air inlet channel 210 can also be composed of structures such as a hose, and the fluid can flow in the air inlet channel 210.

[0043] The dust cup 220 is provided with a first opening 221 and a second opening 222. A first opening and closing mechanism 223 is provided corresponding to the first opening 221, and a second opening and closing mechanism 224 is provided corresponding to the second opening 222. When the dust cup 220 is not subjected to an external force, the first opening 221 and the second opening 222 remain in a closed state.

[0044] When the mite removal device 200 is working, the second opening and closing mechanism 224 closes the second opening 222, and the first opening and closing mechanism 223 opens the first opening 221. The air inlet channel 210 is connected to the dust collecting cup 220 through the first opening 221, and the second suction component 230 drives the fluid from the air inlet channel 210 into the dust collecting cup 220 through the first opening 221. Specifically, when the second suction component 230 is in operation, the suction force of the second suction component 230 opens the first opening and closing mechanism 223, opens the first opening 221, and connects the air inlet channel 210 and the dust collecting cup 220, and closes the second opening 222. The flow path of the fluid is as follows: Figure 3 As shown by the arrows, the fluid enters the dust cup 220 from the air inlet channel 210, and the dirt is collected in the dust cup 220, while the clean air flows out of the dust cup 220, passes through the second suction assembly 230, and is finally discharged into the external environment;

[0045] like Figure 5As shown, after the mite removal device 200 is installed on the base station 100, when the base station 100 is working, the first suction component 130 is in operation, and the suction force of the first suction component 130 causes the second opening and closing mechanism 224 to open, so that the second opening 222 is opened, and the dust collection channel 110 is connected with the dust collection cup 220 through the second opening 222; at the same time, under the suction force of the first suction component 130, the first opening and closing mechanism 223 rotates into the dust collection cup 220, so that the first opening 221 is opened;

[0046] The flow path of the fluid is Figure 5 As shown in the direction of the arrow, the fluid enters the dust collecting cup 220 from the air inlet channel 210 through the first opening 221, enters the dust collecting channel 110 from the dust collecting cup 220 through the second opening 222, and then flows into the dust collecting component 120 from the dust collecting channel 110. The dirt is collected in the dust collecting component 120, and the clean air flows out of the dust collecting component 120 and flows through the first suction component 130, and is finally discharged into the external environment, thereby collecting the dirt in the dust collecting cup 220. There is no need to manually clean the dust collecting cup 220, which is more convenient to use.

[0047] In addition, when the base station 100 is working, in addition to entering the dust cup 220 from the air inlet channel 210 through the first opening 221, the fluid can also enter the dust cup 220 in the reverse direction from the second suction component 230 of the mite removal device 200, and then enter the dust collection channel 110 through the second opening 222;

[0048] In one embodiment, the first opening and closing mechanism 223 is elastically provided on the dust cup 220 and keeps the first opening 221 closed, and the first opening and closing mechanism 223 rotates toward the inside of the dust cup 220 and opens under the suction of the second suction component 230; the second opening and closing mechanism 224 is elastically provided on the dust cup 220 and keeps the second opening 222 closed, and the second opening and closing mechanism 224 rotates toward the outside of the dust cup 220 and opens under the suction of the first suction component 130.

[0049] like Figure 4 As shown, the first opening and closing mechanism 223 and the second opening and closing mechanism 224 can be door panel structures, one side of which can be rotatably connected to the dust cup 220. The connection between the first opening and closing mechanism 223, the second opening and closing mechanism 224 and the dust cup 220 can be provided with elastic parts such as springs and spring sheets to keep the first opening and closing mechanism 223 and the second opening and closing mechanism 224 in the closed position.

[0050] Furthermore, a limiting edge may be provided at the edge of the first opening 221 and the second opening 222 , and the limiting edge conflicts with the edge of the first opening and closing mechanism 223 and the second opening and closing mechanism 224 , respectively;

[0051] Furthermore, continue as Figure 4As shown, a limiting edge 2221 is provided at the edge of the second opening 222. When the second opening and closing mechanism 224 is closed, the edge of the second opening and closing mechanism 224 conflicts with the limiting edge 2221, making it impossible for the second opening and closing mechanism 224 to rotate into the dust cup 220 and open, that is, under the suction of the second suction component 230, only the first opening and closing mechanism 223 can rotate into the dust cup 220 to open the first opening 221, and the second opening and closing mechanism 223 cannot rotate into the dust cup 220 under the action of the first suction component 230, further ensuring that the fluid enters the dust cup 220 from the air inlet channel 210 and dirt is sucked into the dust cup 220.

[0052] In one embodiment, the first opening and closing mechanism 223 and the second opening and closing mechanism 224 are hinge mechanisms, that is, one side of the first opening and closing mechanism 223 and the second opening and closing mechanism 224 can be rotatably connected to the dust cup 220 through a rotating shaft, and a torsion spring can be provided on the rotating shaft, so that the first opening and closing mechanism 223 and the second opening and closing mechanism 224 are maintained in a closed position by the torsion spring, so that the first opening 221 and the second opening 222 are maintained in a closed state.

[0053] In one embodiment, a filter element 240 is provided in the dust cup 220, and the dust cup 220 is provided with a dust cup outlet 225, and the dust cup outlet 225 is connected to the second suction component air inlet of the second suction component 230; the specific model of the filter element 240 is not limited, and the filter element 240 can be detachably assembled inside the dust cup 220. After a period of use, the filter element 240 can be taken out of the dust cup 220, and the filter element 240 can be cleaned or replaced.

[0054] In one embodiment, Figure 4 As shown, a partition 226 is provided in the dust cup 220, which divides the dust cup 220 into a first chamber 227 and a second chamber 228 that are connected to each other. The filter element 240 is provided in the first chamber 227; the first opening 221 is connected to the first chamber 227, and the second opening 222 is connected to the second chamber 228.

[0055] Furthermore, the second chamber 228 is located on the peripheral side of the first chamber 227; the first chamber 227 and the lower side of the second chamber 228 are connected;

[0056] Specifically, continue as Figure 4 As shown, a dust cup outlet 225 is provided at the bottom of the dust cup 220, and a first opening 221 and a second opening 222 are provided on the side wall of the dust cup 220, and the first opening 221 is closer to the dust cup outlet 225 than the second opening 222;

[0057] A partition 226 is bent downwardly and extended from the side wall of the dust cup 220. The partition 226 can be integrally formed with the dust cup 220, and the first chamber 227 and the second chamber 228 are separated by the partition 226.

[0058] The first opening 221 and the second opening 222 are both in a closed state. When the mite remover 200 is working, the second suction assembly 230 operates to draw air into the dust cup 220, so that the air pressure outside the dust cup 220 is greater than the air pressure inside the dust cup 220, thereby generating a thrust to push the first opening and closing mechanism 223 to rotate and open, thereby opening the first opening 221. The fluid enters the dust cup 220 from the air inlet channel 210, and the dirt is filtered and collected in the dust cup 220. The clean air is discharged to the external environment through the second suction assembly 230.

[0059] After the mite removal device 200 is installed on the base station 100, when the base station 100 is working, the dust collection channel 110 is aligned with the second opening and closing mechanism 224. When the first suction component 130 is in operation, the second opening and closing mechanism 224 is driven to rotate and open by suction, so that the second opening 222 is opened; at the same time, under the suction of the first suction component 130, the first opening and closing mechanism 223 is rotated and opened, so that the first opening 221 is opened, and the fluid enters the dust collection cup 220 from the air inlet channel 210 through the first opening 221, and enters the dust collection channel 110 from the dust collection cup 220 through the second opening 222, and the fluid enters the dust collection cup 220 from the second suction component 230 of the mite removal device 200 in the reverse direction, and then enters the dust collection channel 110 through the second opening 222, and then flows into the dust collecting component 120, and the dirt is collected in the dust collecting component 120, and the clean air flows out of the dust collecting component 120 and flows through the first suction component 130, and is finally discharged to the external environment;

[0060] In one embodiment, the dust collection channel 110 is provided with a dust collection channel inlet 111, and a sealing ring 112 is provided at the dust collection channel inlet 111; the mite removal device 200 is installed on the base station 100, and the dust collection channel inlet 111 and the second opening 222 are sealed by the sealing ring 112;

[0061] like Figure 5 As shown, after the mite remover 200 is installed on the base station 100, the second opening 222 corresponds to the dust collection channel entrance 111, and the sealing ring 112 is close to the outer wall of the dust cup 220, surrounding the second opening 222. When the first suction component 130 is running, the second opening and closing mechanism 224 is driven by suction to rotate outward from the dust cup 220 to open the second opening 222, and the first opening and closing mechanism 223 is driven by suction to rotate inward from the dust cup 220 to open the first opening 221. After the first suction component 130 stops running, the second opening and closing mechanism 224 and the first opening and closing mechanism 223 automatically rotate and reset, so that the second opening 222 and the first opening 221 are automatically closed.

[0062] In one embodiment, the dust collecting component 120 is a dust collecting bag, such as Figure 5 The dotted line frame portion is a dust bag, and the dust collecting component 120 is provided in the dust collecting channel 110. The housing of the base station 100 is provided with openable doors and windows for facilitating replacement or cleaning of the dust collecting component 120.

[0063] After the base station cleans the dust cup 220 of the mite remover 200 more than 100 times, the dust bag will be full. The dust bag can be taken out and cleaned by opening the doors and windows, and then installed again after cleaning, which is convenient to use; alternatively, the dust collecting component 120 can also be a combination of a dust box and a dust bag. The dust bag is installed in the dust box, and the dust box is conveniently connected to the dust collection channel through interfaces and joints. The airflow flows into the dust bag of the dust box, and the dirt is filtered by the dust bag.

[0064] like Figure 1 As shown, control panels are provided on the base station 100 and the mite remover 200 respectively to control the operation of the base station 100 and the mite remover 200; the mite remover 200 is provided with a cleaning head at the beginning of the air inlet channel 110, and the mite remover 200 is also provided with heating elements, disinfection elements and other auxiliary cleaning structures, and the mite remover 200 is also provided with a power component and a battery pack for driving the cleaning head. These structures can adopt existing technologies and will not be described in detail here.

[0065] The above description of the disclosed embodiments will enable one skilled in the art to implement or use the present invention. Various modifications to these embodiments will be readily apparent to one skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not limited to the embodiments shown herein but is intended to conform to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. Mite removal device, including: The base station (100) and the mite removal device (200), wherein the mite removal device (200) can be removed from the base station (100) and the mite removal device (200) can be installed on the base station (100), are characterized in that: The base station (100) comprises: a dust collection channel (110), a dust collection component (120) and a first suction component (130); The mite removal device (200) comprises: an air inlet channel (210), a dust collection cup (220) and a second suction component (230); The dust collecting cup (220) is provided with a first opening (221) and a second opening (222); a first opening and closing mechanism (223) is provided corresponding to the first opening (221); and a second opening and closing mechanism (224) is provided corresponding to the second opening (222); When the mite removal device (200) is in operation, the second opening and closing mechanism (224) closes the second opening (222), the first opening and closing mechanism (223) opens the first opening (221), the air inlet channel (210) is connected to the dust collecting cup (220) through the first opening (221), and the second suction component (230) drives the fluid from the air inlet channel (210) into the dust collecting cup (220); After the mite removal device (200) is installed on the base station (100), when the base station (100) is in operation, the second opening and closing mechanism (224) opens the second opening (222), the dust collection channel (110) is connected to the dust collection cup (220) through the second opening (222), and the first suction component (130) drives the fluid from the dust collection cup (220) through the dust collection channel (110) and flows into the dust collection component (120).

2. The mite removal device according to claim 1, characterized in that: The first opening and closing mechanism (223) is elastically arranged on the dust collecting cup (220) and keeps the first opening (221) closed; the first opening and closing mechanism (223) rotates toward the inside of the dust collecting cup (220) and opens under the suction of the second suction assembly (230); The second opening and closing mechanism (224) is elastically arranged on the dust cup (220) and keeps the second opening (222) closed. The second opening and closing mechanism (224) rotates toward the outside of the dust cup (220) and opens under the suction of the first suction assembly (130).

3. The mite removal device according to claim 2, characterized in that: The first opening and closing mechanism (223) and the second opening and closing mechanism (224) are hinge mechanisms.

4. The mite removal device according to claim 1 or 2, characterized in that: The dust collecting channel (110) is provided with a dust collecting channel inlet (111), and a sealing ring (112) is provided at the dust collecting channel inlet (111); The mite removal device (200) is installed on the base station (100), and the dust collection channel inlet (111) and the second opening (222) are sealed by a sealing ring (112).

5. The mite removal device according to claim 1 or 2, characterized in that: A filter element (240) is provided in the dust collecting cup (220); The dust collecting cup (220) is provided with a dust collecting cup outlet (225), and the dust collecting cup outlet (225) is connected to the second suction component air inlet of the second suction component (230).

6. The mite removal device according to claim 5, characterized in that: A partition (226) is provided in the dust collecting cup (220), and the dust collecting cup (220) is divided into a first chamber (227) and a second chamber (228) which are connected to each other by the partition (226), and the filter element (240) is provided in the first chamber (227); The first opening (221) is connected to the first chamber (227), and the second opening (222) is connected to the second chamber (228).

7. The mite removal device according to claim 6, characterized in that: The second chamber (228) is located on the peripheral side of the first chamber (227); the lower sides of the first chamber (227) and the second chamber (228) are connected.

8. The mite removal device according to claim 1 or 2, characterized in that: The dust collecting component (120) is a dust collecting bag, and the dust collecting component (120) is arranged in the dust collecting channel (110); The housing of the base station (100) is provided with openable doors and windows for facilitating replacement or cleaning of the dust collecting component (120).