Base station and base station assembly of cleaning equipment

By designing an adjustable-size base station frame and support structure, the problem of space occupation by base station equipment was solved, enabling flexible installation on different carriers and reducing costs.

CN223489656UActive Publication Date: 2025-10-31MIDEA ROBOZONE TECH CO LTD
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Patent Information

Application Number
CN202321046413.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2023-05-05
Publication Date
2025-10-31
Estimated Expiration
2033-05-05

AI Technical Summary

Technical Problem

Existing base station equipment occupies indoor space and cannot flexibly adapt to the installation cavity size of different carriers, resulting in the need to develop different base stations for each carrier.

Method used

Design a base station structure with an adjustable outer frame, including a movable frame and legs, which can adjust the outer size in multiple dimensions to adapt to the mounting cavity of different carriers. Combine the functional module connection part with the components shared with household appliances to reduce the number of components.

Benefits of technology

It enables flexible installation of base station equipment on different carriers, reduces indoor space occupation, lowers production costs, and improves installation adaptability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a base station and a base station assembly of cleaning equipment, and the base station of the cleaning equipment comprises a base station body; and the outer frame covers the base station body, and the size of the outer frame along at least one dimension is adjustable.
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Description

Technical Field

[0001] This utility model relates to the field of cleaning equipment technology, and more specifically, to a base station and base station component for a cleaning equipment. Background Technology

[0002] The base station provides the robot with functions such as charging, cleaning, watering, and drying. As a standalone appliance, the base station needs to be placed in a separate area of ​​the room, which will take up indoor space. Utility Model Content

[0003] The present invention aims to solve at least one of the technical problems existing in the prior art or related technologies.

[0004] Therefore, the first aspect of this utility model proposes a base station for a cleaning device.

[0005] The second aspect of this utility model provides a base station component.

[0006] In view of this, the first aspect of the present invention provides a base station for a cleaning device, comprising: a base station body; an outer frame covering the base station body, wherein the outer frame is adjustable in size along at least one dimension.

[0007] The base station of the cleaning equipment provided by this utility model includes a base station body and an outer frame.

[0008] The base station body is enclosed by an outer frame, and the size of the outer frame is adjustable along at least one dimension. For example, the size of the outer frame is adjustable along one dimension, or along two dimensions, or along three dimensions.

[0009] The size of the outer frame is reduced in at least one dimension, that is, the overall size of the base station of the cleaning equipment is reduced to fit carriers with small installation space (e.g., carriers include cabinets and household appliances).

[0010] The size of the outer frame is increased in at least one dimension, that is, the overall size of the cleaning equipment base station is increased to accommodate cabinets and household appliances with larger installation spaces.

[0011] It is understandable that the base station itself can connect to the interface of home appliances and be embedded in the relevant circuits of home appliances, so as to share the relevant components of home appliances. This helps to reduce the number of components in the base station, thereby reducing the production cost of the base station.

[0012] For example, when a base station has a drying function and is installed on an air purifier, the base station is connected to the fan interface of the air purifier to eliminate the need for a fan in the base station.

[0013] Specifically, to allow cleaning equipment to drive in and park, base stations typically need to be installed at ground level. Many structures (such as furniture and household appliances) have unused space at this height. Alternatively, the overall height of the furniture and appliances can be increased, and a mounting cavity for the base station can be added at ground level to house it. In other words, this makes efficient use of existing space without requiring additional indoor area to house the base station.

[0014] In other words, this application, by rationally designing the structure of the base station for the cleaning equipment, ensures the effectiveness and feasibility of base station use while allowing the base station's external dimensions to be adjusted according to the size of the mounting cavity of the carrier. This enables the base station to be placed within the carrier's mounting cavity, thus avoiding the occupation of indoor space. Furthermore, because the base station's external dimensions are adjustable, it can be adapted to mounting cavities of different carrier sizes, achieving the goal of adapting to different carriers and improving the base station's installation adaptability, avoiding the need to develop different base stations for each carrier.

[0015] Specifically, the base station itself has multiple functional modules, such as a water system module, a circuit module, an air duct module, an interaction module, and a communication module. The water system module controls water storage, delivery, and drainage. The circuit module controls the charging of the cleaning equipment and drives the movement of other functional modules. The air duct module controls the drying process after washing. The interaction module provides human-machine interaction. The communication module provides communication mechanisms between the base station and the cleaning equipment, the base station and the home network and the Internet of Things (IoT), and includes, but is not limited to, Bluetooth, return-to-base guidance, wireless network communication, and IoT communication.

[0016] The base station of the cleaning equipment described above according to this utility model may also have the following additional technical features:

[0017] In the above technical solution, the outer frame further includes a movable frame, which can move toward the base station body and can also move away from the base station body.

[0018] In this technical solution, the outer frame includes a movable frame, which is movable relative to the base station body. Specifically, the movable frame can move towards the base station body, and it can also move away from the base station body.

[0019] As the movable frame moves toward the base station body, the overall size of the cleaning equipment's base station is reduced to accommodate carriers with limited installation space (e.g., cabinets and household appliances).

[0020] When the movable frame moves away from the base station body, it increases the overall size of the cleaning equipment's base station to accommodate cabinets and household appliances with larger installation spaces.

[0021] In any of the above technical solutions, the number of active boxes is multiple, and at least two active boxes have different movement directions.

[0022] In this technical solution, the structure of the outer frame is further defined. Specifically, there are multiple movable frames, and at least two movable frames move in different directions to meet the usage requirements of adjustable size of the outer frame along multiple dimensions.

[0023] Understandably, since at least two movable frames move in different directions, the base station's external dimensions can be adjusted from multiple directions and angles to fit mounting cavities of different shapes and sizes, thus ensuring the smooth installation of the base station.

[0024] Specifically, there are two active frames. One active frame can move in a first direction, towards the base station and also away from it. The other active frame can move in a second direction, towards the base station and also away from it. The first direction is different from the second direction.

[0025] Specifically, there are three active boxes. The first active box can move in the first direction, the second active box can move in the second direction, and the third active box can move upwards in the third direction. Any two of the first, second, and third directions are different.

[0026] In any of the above technical solutions, further, the movement directions of at least two active frames are perpendicular to each other.

[0027] In this technical solution, the cooperative structure of multiple active frames is further defined, specifically, the movement directions of at least two active frames are perpendicular to each other.

[0028] For example, there are two movable frames: one moves along the length of the base station, and the other moves along the width. This allows for the adjustment of the overall dimensions of the base station along its length and width.

[0029] For example, there are two movable frames: one moves along the width of the base station, and the other moves along the height of the base station. This allows for the adjustment of the overall dimensions of the base station along its width and height.

[0030] For example, there are two movable frames: one moves along the length of the base station, and the other moves along the height of the base station. This allows for the adjustment of the overall dimensions of the base station along its length and height.

[0031] For example, there are three active frames. The first active frame moves along the length of the base station, the second active frame moves along the width of the base station, and the third active frame moves along the height of the base station.

[0032] In any of the above technical solutions, the active frame is further located in the middle of the outer frame.

[0033] In this technical solution, the structure of the outer frame is further defined. Specifically, the movable frame is located in the middle of the outer frame, and the size of the movable frame is adjustable. Therefore, the size of the outer frame can be adjusted along multiple dimensions from the middle of the outer frame.

[0034] For example, the outer frame can be contracted towards the middle to reduce the overall size of the cleaning equipment's base station, making it suitable for carriers with limited installation space (such as cabinets and household appliances).

[0035] For example, the outer frame can be expanded outwards to increase the overall size of the cleaning equipment's base station, making it suitable for cabinets and household appliances with larger installation spaces.

[0036] In any of the above technical solutions, the base station further includes: multiple legs, which are spaced apart around the periphery of the active frame.

[0037] In this technical solution, the base station also includes multiple support legs, which are spaced apart around the perimeter of the movable frame. The support legs serve to support and fix the movable frame. The multiple support legs and the movable frame work together to enclose a space for accommodating the base station body, thus meeting the usage requirements of having an outer frame covering the base station body.

[0038] Understandably, each support leg is connected to the movable frame.

[0039] Furthermore, this design can reduce the amount of material used in the outer frame, which helps to reduce the weight of the base station and lower its production costs.

[0040] In any of the above technical solutions, the outriggers are further described as telescopic components.

[0041] In this technical solution, the structure of the outrigger is further defined; specifically, the outrigger is a telescopic component.

[0042] Understandably, the outriggers are placed on a surface (e.g., the ground), and the outriggers support the space between the surface and the movable frame. Extending the outriggers increases the distance between the movable frame and the surface, while retracting the outriggers decreases the distance between the movable frame and the surface.

[0043] The outriggers are telescopic, which can effectively support the movable frame and also adjust the height of the movable frame.

[0044] In any of the above technical solutions, the movable frame is further located at the end of the outer frame.

[0045] In this technical solution, the structure of the outer frame is further defined. Specifically, the movable frame is located at the end of the outer frame, and the size of the movable frame is adjustable. Therefore, the size of the outer frame can be adjusted along multiple dimensions from the end of the outer frame.

[0046] For example, the outer frame can be contracted towards the middle to reduce the overall size of the cleaning equipment's base station, making it suitable for carriers with limited installation space (such as cabinets and household appliances).

[0047] For example, the outer frame can be expanded outwards to increase the overall size of the cleaning equipment's base station, making it suitable for cabinets and household appliances with larger installation spaces.

[0048] In any of the above technical solutions, the outer frame further includes a positioning frame, the outer edge of which is connected to the movable frame, and the movable frame is capable of moving relative to the positioning frame.

[0049] In this technical solution, the structure of the outer frame is further defined. Specifically, the outer frame also includes a positioning frame. The outer edge of the positioning frame is connected to the movable frame. The movable frame can move along the positioning frame. For example, the movable frame can move along the positioning frame toward the base station body, and the movable frame can also move along the positioning frame in a direction away from the base station body.

[0050] In other words, the positioning frame has the function of restricting the movement path of the moving frame, which can effectively adjust the overall shape and size of the base station.

[0051] In any of the above technical solutions, the positioning frame is further connected to the base station body.

[0052] In this technical solution, the cooperation structure between the positioning frame and the base station body is further defined, so that the positioning frame is connected to the base station body. That is, the positioning frame serves as the installation carrier of the base station body and has the function of installing and fixing the base station body.

[0053] Furthermore, the positioning frame is connected to the movable frame. This design ensures the matching dimensions between the base station body and the movable frame, as well as the positional relationship between the outer frame and the base station body, providing effective and reliable structural support for effectively adjusting the overall dimensions of the base station.

[0054] In any of the above technical solutions, the movable frame further includes a first telescopic part and a second telescopic part; one of the first telescopic part or the second telescopic part includes a slide rail, and the other includes a slide groove, the slide groove being slidably connected to the slide rail; and / or one of the first telescopic part and the second telescopic part is provided with a plurality of first connecting holes, and the other is provided with a plurality of second connecting holes, the base station further includes a fastener, the fastener being used to connect a first connecting hole and a second connecting hole; and / or one of the first telescopic part and the second telescopic part is provided with a sleeve, and the other is provided with a sleeve rod, the sleeve rod being able to be inserted into the sleeve.

[0055] In this technical solution, the structure of the active frame is further defined. Specifically, the active frame includes a first telescopic part and a second telescopic part, which are movably connected. The second telescopic part can move along the first telescopic part, for example, the second telescopic part can move along the first telescopic part toward the base station body, and the second telescopic part can also move along the first telescopic part in a direction away from the base station body.

[0056] That is, the first telescopic part has the function of restricting the movement path of the second telescopic part, and can effectively adjust the overall shape and size of the base station.

[0057] The mating structure of the first and second telescopic portions is further defined such that one of the first and second telescopic portions includes a slide rail, and the other includes a slide groove. That is, the first telescopic portion includes a slide rail, and the second telescopic portion includes a slide groove. Alternatively, the first telescopic portion includes a slide groove, and the second telescopic portion includes a slide rail. The slide groove and the slide rail are slidably connected. This achieves the purpose of a slidable connection between the first and second telescopic portions. Specifically, the second telescopic portion can slide relative to the first telescopic portion to allow the second telescopic portion to move towards the base station body or move away from the base station body.

[0058] And / or, one of the first telescopic portion and the second telescopic portion is provided with a plurality of first connecting holes, and the other is provided with a plurality of second connecting holes. That is, the first telescopic portion is provided with a plurality of first connecting members, and the second telescopic portion is provided with a plurality of second connecting holes. Alternatively, the first telescopic portion is provided with a plurality of second connecting members, and the second telescopic portion is provided with a plurality of first connecting members. The base station also includes fasteners, which securely assemble the first telescopic portion and the second telescopic portion together through the first connecting holes and the second connecting holes. The overall dimensions of the base station can be adjusted by adjusting the corresponding positions of the first connecting holes and the second connecting holes. The fasteners include bolts and screws.

[0059] And / or one of the first telescopic portion and the second telescopic portion includes a sleeve, and the other of the first telescopic portion and the second telescopic portion includes a sleeve rod. That is, the first telescopic portion includes a sleeve, and the second telescopic portion includes a sleeve rod. Alternatively, the first telescopic portion includes a sleeve rod, and the second telescopic portion includes a sleeve. The sleeve rod can be inserted into the sleeve. That is, the first telescopic portion and the second telescopic portion are slidably connected. Specifically, the second telescopic portion can slide relative to the first telescopic portion to allow the second telescopic portion to move toward the base station body, or the second telescopic portion to move away from the base station body.

[0060] In any of the above technical solutions, the base station body further includes a functional module connection part, and the functional module connection part is exposed outside the outer frame.

[0061] In this technical solution, the base station body also includes a functional module connection part, and the functional module connection part can be exposed outside the outer frame. That is, the outer frame will not block the functional module connection part, and the functional module connection part can be exposed outside the outer frame. The functional module connection part is used to connect with the interface of household appliances and be embedded in the relevant circuits of household appliances to realize the sharing of relevant components of household appliances. This is beneficial to reduce the components of the base station, thus reducing the production cost of the base station.

[0062] For example, when the base station has a drying function and the base station is installed on an air purifier, the functional module connection part of the base station is connected to the fan interface of the air purifier to eliminate the need for the base station's fan.

[0063] In any of the above technical solutions, the functional module connection part is further described as a retractable component.

[0064] In this technical solution, by rationally designing the structure of the functional module connection part, the connection part becomes a telescopic component. Since the specifications of the carriers (such as furniture and household appliances) vary, the specifications of the mounting cavities on the carriers also differ. Therefore, the position of the interface connecting the carrier and the functional module connection part is not fixed but rather diverse. Because the functional module connection part is telescopic, it can be lengthened or shortened according to the interface position to achieve the same connection. This design meets the usage requirements for effective assembly of the base station and the carrier.

[0065] In any of the above technical solutions, the outer frame is further provided with a clearance opening, through which the functional module connection part protrudes from the outer frame.

[0066] In this technical solution, the cooperation structure between the outer frame and the functional module connection part is further defined, so that the outer frame is provided with a clearance opening, the clearance opening is correspondingly set with the functional module connection part, and the functional module connection part can be exposed outside the outer frame through the clearance opening. In this way, an effective and reliable structural support is provided for the interface connection between the functional module connection part and the carrier.

[0067] In any of the above technical solutions, the functional module connecting part is further connected to the outer frame.

[0068] In this technical solution, the mating structure between the outer frame and the functional module connection is further defined. Specifically, the functional module connection is connected to the outer frame, and the shape of the functional module connection changes accordingly when the size of the outer frame changes. Since the functional module connection is a telescopic component, it can change with the changes in the outer frame, providing effective and reliable structural support for the interface connection between the functional module connection and the carrier.

[0069] In any of the above technical solutions, the number of functional module connection parts is multiple, and the multiple functional module connection parts are arranged at intervals.

[0070] In this technical solution, there are multiple functional module connection parts, which are arranged at intervals.

[0071] Specifically, the functional module connection part includes a connector.

[0072] Alternatively, the base station body includes functional modules, a portion of which is a retractable component. The functional module connection includes a connector and the retractable portion of the functional module, with the connector connected to this retractable portion. For example, a functional module might include a water tank, which includes a water pipe. The water pipe is a retractable component, and the functional module connection includes a connector and the water pipe. The connector connects to the water pipe and is used to connect to an interface of a household appliance, embedding itself in the appliance's wiring. Another example is a functional module that includes a circuit, which includes a cable. The cable is retractable, and the functional module connection includes a connector and the cable. The connector connects to the cable and is used to connect to an interface of a household appliance, embedding itself in the appliance's wiring. Yet another example is a functional module that includes a fan, which includes an air duct. The air duct connects to a connector, and the air duct is a retractable component. The functional module connection includes a connector and the air duct, and the connector connects to an interface of a household appliance, embedding itself in the appliance's wiring.

[0073] In any of the above technical solutions, the functional module connection part further includes a low-voltage connection part, a high-voltage connection part, a water inlet connection part, a water outlet connection part, and / or an air duct connection part.

[0074] In this technical solution, the types of functional module connection parts are further defined, including low-voltage connection parts, high-voltage connection parts, water inlet connection parts, water outlet connection parts and / or air duct connection parts.

[0075] For example, the base station body includes circuitry, and the circuitry includes low-voltage connection parts and high-voltage connection parts.

[0076] For example, the base station body includes a water tank, and the water tank includes an inlet connection and an outlet connection.

[0077] For example, the base station body includes a fan, and the fan includes a duct connection part.

[0078] In any of the above technical solutions, the base station body is further provided with a heating device and a disinfection device, and at least one of the heating device and the disinfection device is located at the functional module connection part.

[0079] In this technical solution, the structure of the base station body is further defined. The base station body is equipped with a heating device and a disinfection device, at least one of which is located at the functional module connection part. That is, the positional relationship between the heating device, the disinfection device, and the functional module connection part is defined. When airflow enters the base station body through the functional module connection part, the heating device operates to heat the air, forming hot air, thereby enabling the base station to have a drying function. When airflow enters the base station body through the functional module connection part, the disinfection device operates to release ions, thereby enabling the base station to have a disinfection function.

[0080] It is understandable that heating and disinfection devices are unique to base stations, and base stations cannot borrow electrical modules from the carrier. For example, in the ventilation system, a base station can borrow the carrier's fan. However, since the carrier is not equipped with heating and disinfection devices, the base station cannot borrow them.

[0081] The second aspect of this utility model provides a base station assembly, comprising: a carrier having a mounting cavity; and a base station of a cleaning device as described in any of the technical solutions in the first aspect, wherein the base station is disposed in the mounting cavity.

[0082] The base station component provided by this utility model includes a base station of cleaning equipment as described in any of the technical solutions in the first aspect. Therefore, it has all the beneficial effects of the base station of the aforementioned cleaning equipment, which will not be described in detail here.

[0083] In the above technical solution, the carrier further includes a cabinet or a household appliance.

[0084] In this technical solution, the type of carrier is defined, such as a cabinet or a household appliance.

[0085] Cabinets include wardrobes, kitchen cabinets, shoe cabinets, etc., which will not be listed here.

[0086] Household appliances include water dispensers, air purifiers, air conditioners, etc., which will not be listed here.

[0087] It can be that the cabinet or household appliance has a mounting cavity inside. Alternatively, the cabinet or household appliance can be raised, separating it from the ground, with a mounting cavity formed between the bottom of the cabinet or household appliance and the ground.

[0088] Additional aspects and advantages of this invention will become apparent in the description that follows, or may be learned by practice of this invention. Attached Figure Description

[0089] The above and / or additional aspects and advantages of this utility model will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:

[0090] Figure 1A schematic diagram of the base station of the cleaning device according to the first embodiment of the present invention in a first state is shown;

[0091] Figure 2 A schematic diagram of the base station of the cleaning device according to the first embodiment of the present invention in a second state is shown;

[0092] Figure 3 A schematic diagram of the base station structure of the cleaning device according to a second embodiment of the present invention is shown;

[0093] Figure 4 A schematic diagram of the base station structure of the cleaning device according to the third embodiment of this utility model is shown;

[0094] Figure 5 A schematic diagram of the structure of a base station component according to an embodiment of the present invention is shown.

[0095] in, Figures 1 to 5 The correspondence between the reference numerals and component names in the attached drawings is as follows:

[0096] 100 Base station, 110 Base station body, 112 Working chamber, 114 Heating device, 116 Disinfection device, 120 Outer frame, 122 Movable frame, 124 First telescopic part, 125 Second telescopic part, 126 Clearance opening, 128 Positioning frame, 130 Functional module connection part, 132 Low voltage connection part, 134 High voltage connection part, 136 Water inlet connection part, 138 Air duct connection part, 139 Water outlet connection part, 150 Slide rail, 160 Slide groove, 170 First connection hole, 180 Second connection hole, 190 Fastener, 200 Base station component, 210 Carrier, 212 Mounting cavity, 220 Support leg. Detailed Implementation

[0097] To better understand the above-mentioned objectives, features, and advantages of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0098] Many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the scope of protection of the present invention is not limited to the specific embodiments disclosed below.

[0099] The following reference Figures 1 to 5 According to some embodiments of the present invention, a cleaning device includes a base station 100 and a base station component 200.

[0100] like Figure 1 , Figure 2 , Figure 3and Figure 4 As shown, a base station 100 for a cleaning device according to some embodiments of this application includes a base station body 110, an outer frame 120, and a functional module connection part 130.

[0101] The outer frame 120 is installed on the base station body 110.

[0102] The outer frame 120 is adjustable in size along at least one dimension.

[0103] In this embodiment, the base station 100 of the cleaning equipment includes a base station body 110 and an outer frame 120.

[0104] The outer frame 120 covers the base station body 110, and the outer frame 120 is adjustable in size along at least one dimension. For example, the outer frame 120 is adjustable in size along one dimension, or the outer frame 120 is adjustable in size along two dimensions, or the outer frame 120 is adjustable in size along three dimensions.

[0105] The size of the outer frame 120 is reduced in at least one dimension, that is, the overall size of the base station 100 of the cleaning equipment is reduced to fit the carrier 210 with a small installation space (e.g., the carrier 210 includes cabinets and household appliances).

[0106] The size of the outer frame 120 is increased in at least one dimension, that is, the overall size of the base station 100 of the cleaning equipment is increased to accommodate cabinets and household appliances with larger installation spaces.

[0107] It is understandable that the base station body 110 can connect to the interface of home appliances and be embedded in the relevant circuits of home appliances, so as to share the relevant components of home appliances. This helps to reduce the number of components in the base station 100, thereby reducing the production cost of the base station 100.

[0108] For example, when base station 100 has a drying function and base station 100 is installed on an air purifier, base station 100 is connected to the fan interface of the air purifier to eliminate the fan of base station 100.

[0109] Specifically, to allow cleaning equipment to drive in and park, the base station 100 typically needs to be installed at ground level. Many carriers 210 (such as furniture and household appliances) have unused space at this height. Alternatively, the overall height of the furniture and household appliances can be increased by adding a mounting cavity 212 for the base station 100 at ground level, placing the base station 100 within this cavity. In other words, the existing space of the carriers 210 is utilized efficiently, without requiring additional indoor space to house the base station 100.

[0110] In other words, by rationally designing the structure of the base station 100 for the cleaning equipment, this application ensures the effectiveness and feasibility of using the base station 100 while adapting its external dimensions to the size of the mounting cavity 212 of the carrier 210. This allows the base station 100 to be placed within the mounting cavity 212 of the carrier 210, thus avoiding the occupation of indoor space. Furthermore, since the external dimensions of the base station 100 are adjustable, it can be adapted to mounting cavities 212 of different sizes on the carrier 210, achieving the goal of adapting to different carriers 210. This improves the installation adaptability of the base station 100 and avoids the need to develop different base stations 100 for each type of carrier 210.

[0111] Specifically, the base station body 110 has multiple functional modules, such as a water system module, a circuit module, an air duct module, an interaction module, and a communication module. The water system module controls water storage, delivery, and drainage. The circuit module controls the charging of the cleaning equipment and drives the movement of other functional modules. The air duct module controls post-wash drying. The interaction module provides human-machine interaction. The communication module provides a communication mechanism between the base station 100 and the cleaning equipment, and between the base station 100 and the home network and the Internet of Things (IoT). The communication module includes, but is not limited to, Bluetooth, return-to-base guidance, wireless network communication, and IoT communication.

[0112] Specifically, the dimensions include the length direction of base station 100, the width direction of base station 100, or the height direction of base station 100.

[0113] In some embodiments, such as Figure 1 and Figure 4 As shown, the outer frame 120 includes a movable frame 122, which can move toward the base station body 110 and can also move away from the base station body 110.

[0114] In this embodiment, the outer frame 120 includes a movable frame 122, which is movable relative to the base station body 110. Specifically, the movable frame 122 can move toward the base station body 110, and the movable frame 122 can also move away from the base station body 110.

[0115] When the movable frame 122 moves toward the base station body 110, the overall size of the base station 100 of the cleaning equipment is reduced to fit the carrier 210 with a small installation space (e.g., the carrier 210 includes cabinets and household appliances).

[0116] When the movable frame 122 moves away from the base station body 110, it increases the overall size of the base station 100 of the cleaning equipment to accommodate cabinets and household appliances with larger installation spaces.

[0117] In some embodiments, such as Figure 4As shown, there are multiple active boxes 122, and at least two active boxes 122 move in different directions.

[0118] In this embodiment, the structure of the outer frame 120 is further defined. Specifically, there are multiple movable frames 122, and at least two movable frames 122 move in different directions to meet the usage requirements of adjustable size of the outer frame 120 along multiple dimensions.

[0119] Understandably, since the movement directions of at least two movable frames 122 are different, the external dimensions of the base station 100 can be adjusted from multiple directions and angles to adapt to mounting cavities 212 of different shapes and sizes, so as to ensure the smooth installation of the base station 100.

[0120] Specifically, there are two movable frames 122. One movable frame 122 can move in a first direction, and can move towards the base station body 110 and also away from the base station body 110. The other movable frame 122 can move in a second direction, and can move towards the base station body 110 and also away from the base station body 110. The first direction is different from the second direction.

[0121] Specifically, there are three active boxes 122. The first active box 122 can move in a first direction, the second active box 122 can move in a second direction, and the third active box 122 can move in a third direction. Any two of the first, second, and third directions are different.

[0122] In some embodiments, such as Figure 4 As shown, the movement directions of at least two active boxes 122 are perpendicular to each other.

[0123] In this embodiment, the cooperative structure of multiple movable frames 122 is further defined. Specifically, the movement directions of at least two movable frames 122 are perpendicular to each other.

[0124] For example, there are two movable frames 122. One movable frame 122 moves along the length direction of the base station 100, and the other movable frame 122 moves along the width direction of the base station 100. This allows for the adjustment of the overall dimensions of the base station 100 along its length and width.

[0125] For example, there are two movable frames 122. One movable frame 122 moves along the width direction of the base station 100, and the other movable frame 122 moves along the height direction of the base station 100. This allows for the adjustment of the overall dimensions of the base station 100 along both the width and height directions.

[0126] For example, there are two movable frames 122. One movable frame 122 moves along the length of the base station 100, and the other movable frame 122 moves along the height of the base station 100. This allows for the adjustment of the overall dimensions of the base station 100 along both the length and height directions.

[0127] For example, there are three active frames 122. The first active frame 122 moves along the length of the base station 100, the second active frame 122 moves along the width of the base station 100, and the third active frame 122 moves along the height of the base station 100.

[0128] In some embodiments, such as Figure 4 As shown, the active frame 122 is located in the middle of the outer frame 120.

[0129] In this embodiment, the structure of the outer frame 120 is further defined. Specifically, the movable frame 122 is located in the middle of the outer frame 120. The size of the movable frame 122 is adjustable. Therefore, the size of the outer frame 120 can be adjusted along multiple dimensions from the middle of the outer frame 120.

[0130] For example, the outer frame 120 is contracted towards the middle to reduce the overall size of the base station 100 of the cleaning equipment, so as to adapt to the carrier 210 with a small installation space (e.g., the carrier 210 includes cabinets and household appliances).

[0131] For example, the outer frame 120 can be expanded outward to increase the overall size of the base station 100 of the cleaning equipment, so as to accommodate cabinets and household appliances with larger installation space.

[0132] In some embodiments, such as Figure 3 and Figure 4 As shown, the base station 100 also includes: multiple legs 220, which are spaced apart around the periphery of the active frame 122.

[0133] In this embodiment, the base station 100 further includes a plurality of support legs 220, which are spaced apart around the periphery of the movable frame 122. The support legs 220 serve to support and fix the movable frame 122. The plurality of support legs 220 and the movable frame 122 cooperate to enclose a space for accommodating the base station body 110, which can meet the usage requirements of the outer frame 120 covering the base station body 110.

[0134] Understandably, each support leg 220 is connected to the movable frame 122.

[0135] Furthermore, this design can reduce the amount of material used in the outer frame 120, which helps to reduce the weight of the base station 100 and lower the production cost of the base station 100.

[0136] In some embodiments, the outrigger 220 is a telescopic member.

[0137] In this embodiment, the structure of the support leg 220 is further defined; specifically, the support leg 220 is a telescopic member.

[0138] It is understandable that the support leg 220 is placed on the placement surface (e.g., the ground), and the support leg 220 is supported between the placement surface and the movable frame 122. Extending the support leg 220 can increase the distance between the movable frame 122 and the placement surface, and retracting the support leg 220 can decrease the distance between the movable frame 122 and the placement surface.

[0139] The support leg 220 is a telescopic component, which can effectively support the movable frame 122 and adjust the height of the movable frame 122.

[0140] Specifically, such as Figure 3 and Figure 4 As shown, the outer frame 120 includes a movable frame 122 and four support legs 220, each of which is a telescopic component. The movable frame 122 and the four support legs 220 form an integral frame structure. The length, width, and height of the outer frame 120 are adjustable.

[0141] In some embodiments, such as Figure 1 and Figure 2 As shown, the active frame 122 is located at the end of the outer frame 120.

[0142] In this embodiment, the structure of the outer frame 120 is further defined. Specifically, the movable frame 122 is located at the end of the outer frame 120. The size of the movable frame 122 is adjustable, so the size of the outer frame 120 can be adjusted along multiple dimensions from the end of the outer frame 120.

[0143] For example, the outer frame 120 is contracted towards the middle to reduce the overall size of the base station 100 of the cleaning equipment, so as to adapt to the carrier 210 with a small installation space (e.g., the carrier 210 includes cabinets and household appliances).

[0144] For example, the outer frame 120 can be expanded outward to increase the overall size of the base station 100 of the cleaning equipment, so as to accommodate cabinets and household appliances with larger installation space.

[0145] In some embodiments, such as Figure 1 and Figure 2 As shown, the base station 100 also includes a positioning frame 128, the outer edge of which is connected to a movable frame 122, and the movable frame 122 is movable relative to the positioning frame 128.

[0146] In this embodiment, the structure of the outer frame 120 is further defined. Specifically, the outer frame 120 also includes a positioning frame 128. The outer edge of the positioning frame 128 is connected to the movable frame 122. The movable frame 122 can move along the positioning frame 128. For example, the movable frame 122 can move along the positioning frame 128 toward the base station body 110, and the movable frame 122 can also move along the positioning frame 128 in a direction away from the base station body 110.

[0147] That is, the positioning frame 128 has the function of restricting the movement path of the moving frame 122, and can effectively adjust the overall size of the base station 100.

[0148] In some embodiments, such as Figure 1 and Figure 2 As shown, the positioning frame 128 is connected to the base station body 110.

[0149] In this embodiment, the cooperation structure between the positioning frame 128 and the base station body 110 is further defined, so that the positioning frame 128 is connected to the base station body 110. That is, the positioning frame 128 serves as the mounting carrier 210 of the base station body 110 and has the function of installing and fixing the base station body 110.

[0150] Furthermore, the positioning frame 128 is connected to the movable frame 122. This arrangement ensures the matching dimensions between the base station body 110 and the movable frame 122, and ensures the positional relationship between the outer frame 120 and the base station body 110, providing effective and reliable structural support for effectively adjusting the overall external dimensions of the base station 100.

[0151] In some embodiments, such as Figure 2 and Figure 4 As shown, the movable frame 122 includes a first telescopic part 124 and a second telescopic part 125; one of the first telescopic part 124 or the second telescopic part 125 includes a slide rail, and the other includes a slide groove 160, the slide groove 160 being slidably connected to the slide rail; and / or one of the first telescopic part 124 and the second telescopic part 125 is provided with a plurality of first connecting holes 170, and the other is provided with a plurality of second connecting holes 180, the base station 100 also includes a fastener 190, the fastener 190 being used to connect a first connecting hole 170 and a second connecting hole 180; and / or one of the first telescopic part 124 and the second telescopic part 125 is provided with a sleeve, and the other is provided with a sleeve rod, the sleeve rod being able to be inserted into the sleeve.

[0152] In this embodiment, the structure of the movable frame 122 is further defined. Specifically, the movable frame 122 includes a first telescopic part 124 and a second telescopic part 125. The first telescopic part 124 and the second telescopic part 125 are movably connected. The second telescopic part 125 can move along the first telescopic part 124. For example, the second telescopic part 125 can move along the first telescopic part 124 toward the base station body 110. The second telescopic part 125 can also move along the first telescopic part 124 in a direction away from the base station body 110.

[0153] That is, the first telescopic part 124 has the function of restricting the movement path of the second telescopic part 125, and can effectively adjust the overall size of the base station 100.

[0154] The mating structure of the first telescopic portion 124 and the second telescopic portion 125 is further defined such that one of the first telescopic portion 124 and the second telescopic portion 125 includes a slide rail, and the other of the first telescopic portion 124 and the second telescopic portion 125 includes a slide groove 160. That is, the first telescopic portion 124 includes a slide rail, and the second telescopic portion 125 includes a slide groove 160. Alternatively, the first telescopic portion 124 includes a slide groove 160, and the second telescopic portion 125 includes a slide rail. The slide groove 160 is slidably connected to the slide rail. In other words, the purpose of sliding connection between the first telescopic portion 124 and the second telescopic portion 125 is achieved. Specifically, the second telescopic portion 125 can slide relative to the first telescopic portion 124 to enable the second telescopic portion 125 to move toward the base station body 110, or the second telescopic portion 125 to move away from the base station body 110.

[0155] And / or, one of the first telescopic portion 124 and the second telescopic portion 125 is provided with a plurality of first connecting holes 170, and the other is provided with a plurality of second connecting holes 180. That is, the first telescopic portion 124 is provided with a plurality of first connectors, and the second telescopic portion 125 is provided with a plurality of second connecting holes 180. Alternatively, the first telescopic portion 124 is provided with a plurality of second connectors, and the second telescopic portion 125 is provided with a plurality of first connectors. The base station 100 also includes fasteners 190, which securely assemble the first telescopic portion 124 and the second telescopic portion 125 together through the first connecting holes 170 and the second connecting holes 180. The overall dimensions of the base station 100 can be adjusted by adjusting the corresponding positions of the first connecting holes 170 and the second connecting holes 180. The fasteners 190 include bolts and screws.

[0156] And / or one of the first telescopic portion 124 and the second telescopic portion 125 includes a sleeve, and the other of the first telescopic portion 124 and the second telescopic portion 125 includes a sleeve rod. That is, the first telescopic portion 124 includes a sleeve, and the second telescopic portion 125 includes a sleeve rod. Alternatively, the first telescopic portion 124 includes a sleeve rod, and the second telescopic portion 125 includes a sleeve. The sleeve rod can be inserted into the sleeve. That is, the first telescopic portion 124 and the second telescopic portion 125 are slidably connected. Specifically, the second telescopic portion 125 can slide relative to the first telescopic portion 124 to allow the second telescopic portion 125 to move toward the base station body 110, or the second telescopic portion 125 to move away from the base station body 110.

[0157] Specifically, the sleeve includes square sleeves and / or round sleeves.

[0158] In some embodiments, such as Figures 1 to 4 As shown, the base station body 110 also includes a functional module connection part 130, and the functional module connection part 130 is exposed outside the outer frame 120.

[0159] In this embodiment, the base station body 110 also includes a functional module connection part 130, and the functional module connection part 130 can be exposed outside the outer frame 120. That is, the outer frame 120 will not block the functional module connection part 130, and the functional module connection part 130 can be exposed outside the outer frame 120. The functional module connection part 130 is used to connect with the interface of household appliances and is embedded in the relevant circuit of household appliances to realize the sharing of relevant components of household appliances. This is beneficial to reduce the components of the base station 100, thus reducing the production cost of the base station 100.

[0160] For example, when the base station 100 has a drying function and the base station 100 is installed on an air purifier, the functional module connection part 130 of the base station 100 is connected to the fan interface of the air purifier to eliminate the fan of the base station 100.

[0161] In some embodiments, the functional module connection part 130 is a retractable part.

[0162] In this embodiment, by rationally configuring the structure of the functional module connection part 130, the functional module connection part 130 is made into a telescopic component. Since the specifications of the carrier 210 (e.g., furniture and household appliances) vary, the specifications of the mounting cavity 212 of the carrier 210 also vary. Therefore, the position of the interface connecting the carrier 210 and the functional module connection part 130 is not fixed but rather diverse. Because the functional module connection part 130 is a telescopic component, it can be lengthened or shortened according to the interface position to connect with the interface. This configuration meets the usage requirements for effective assembly of the base station 100 and the carrier 210.

[0163] In some embodiments, such as Figure 2 and Figure 4 As shown, the outer frame 120 is provided with a clearance opening 126, and the functional module connection part 130 is exposed outside the outer frame 120 through the clearance opening 126.

[0164] In this embodiment, the cooperation structure between the outer frame 120 and the functional module connection part 130 is further defined, such that the outer frame 120 is provided with a clearance opening 126, and the clearance opening 126 is correspondingly provided with the functional module connection part 130. The functional module connection part 130 can be exposed outside the outer frame 120 through the clearance opening 126. In this way, an effective and reliable structural support is provided for the interface connection between the functional module connection part 130 and the carrier 210.

[0165] In some embodiments, the functional module connection part 130 is connected to the outer frame 120.

[0166] In this embodiment, the mating structure of the outer frame 120 and the functional module connecting part 130 is further defined. Specifically, the functional module connecting part 130 is connected to the outer frame 120, and the shape of the functional module connecting part 130 changes accordingly when the size of the outer frame 120 changes. Since the functional module connecting part 130 is a telescopic component, it can change with the change of the outer frame 120, providing effective and reliable structural support for the interface connection between the functional module connecting part 130 and the carrier 210.

[0167] In some embodiments, such as Figure 2 and Figure 4 As shown, there are multiple functional module connection parts 130, which are arranged at intervals.

[0168] In this embodiment, there are multiple functional module connection parts 130, which are arranged at intervals.

[0169] Specifically, the functional module connection part 130 includes a connector.

[0170] Alternatively, the base station body 110 includes a functional module, a part of which is a retractable component. The functional module connection part 130 includes a connector and the retractable portion of the functional module, with the connector connected to the retractable portion. For example, the functional module includes a water tank, which includes a water pipe. The water pipe is a retractable component. The functional module connection part 130 includes a connector and the water pipe. The connector is connected to the water pipe and is used to connect to the interface of a household appliance, embedding itself in the relevant wiring of the household appliance. Another example is a functional module including a circuit, which includes a cable. The cable is retractable. The functional module connection part 130 includes a connector and the cable. The connector is connected to the cable and is used to connect to the interface of a household appliance, embedding itself in the relevant wiring of the household appliance. Yet another example is a functional module including a fan, which includes an air duct. The air duct is connected to a connector. The air duct is a retractable component. The functional module connection part 130 includes a connector and the air duct. The connector is used to connect to the interface of a household appliance, embedding itself in the relevant wiring of the household appliance.

[0171] In some embodiments, the functional module connection portion 130 includes a low-voltage connection portion 132, a high-voltage connection portion 134, a water inlet connection portion 136, a water outlet connection portion 139, and / or an air duct connection portion 138.

[0172] In this embodiment, the types of functional module connection parts 130 are further defined. The functional module connection parts 130 include a low-voltage connection part 132, a high-voltage connection part 134, a water inlet connection part 136, a water outlet connection part 139, and / or an air duct connection part 138.

[0173] For example, the base station body 110 includes a circuit, which includes a low-voltage connection part 132 and a high-voltage connection part 134.

[0174] For example, the base station body 110 includes a water tank, which includes an inlet connection 136 and an outlet connection 139.

[0175] For example, the base station body 110 includes a fan, and the fan includes a duct connection part 138.

[0176] In some embodiments, such as Figure 3 and Figure 4 As shown, the base station body 110 is equipped with a heating device 114 and a disinfection device 116.

[0177] At least one of the heating device 114 and the disinfection device 116 is located at the functional module connection portion 130.

[0178] In this embodiment, the structure of the base station body 110 is further defined. The base station body 110 is provided with a heating device 114 and a disinfection device 116, and at least one of the heating device 114 and the disinfection device 116 is located at the functional module connection portion 130. That is, the positional relationship between the heating device 114, the disinfection device 116, and the functional module connection portion 130 is defined. When airflow enters the base station body 110 through the functional module connection portion 130, the heating device 114 operates to heat the air, forming hot air, so that the base station 100 has a drying function. When airflow enters the base station body 110 through the functional module connection portion 130, the disinfection device 116 operates to release ions, so that the base station 100 has a disinfection function.

[0179] It is understandable that the heating device 114 and the disinfection device 116 are unique to the base station 100, and the base station 100 cannot use the electrical modules of the carrier 210. For example, in the ventilation path, the base station 100 can use the fan of the carrier 210. However, the carrier 210 is not equipped with the heating device 114 and the disinfection device 116, that is, the base station 100 cannot use the heating device 114 and the disinfection device 116.

[0180] In some other embodiments, the heating device 114 and the disinfection device 116 are located inside the base station body 110.

[0181] like Figure 5 As shown, a base station assembly 200 according to some embodiments of this application includes: a carrier 210, the carrier 210 having a mounting cavity 212; and a base station 100 of a cleaning device as described in any of the above embodiments, the base station 100 being disposed in the mounting cavity 212.

[0182] In this embodiment, the base station component 200 includes a carrier 210 and a base station 100 for cleaning equipment.

[0183] The carrier 210 is provided with a mounting cavity 212, and the base station 100 is located in the mounting cavity 212. That is, the space of the mounting cavity 212 of the carrier 210 is reasonably utilized so that the base station 100 is assembled on the carrier 210.

[0184] The base station 100 of the cleaning equipment includes a base station body 110, an outer frame 120, and a functional module connection part 130.

[0185] The outer frame 120 covers the base station body 110. The outer frame 120 includes a movable frame 122, which is movable relative to the base station body 110. Specifically, the movable frame 122 can move toward the base station body 110, and the movable frame 122 can also move away from the base station body 110.

[0186] When the movable frame 122 moves toward the base station body 110, the overall size of the base station 100 of the cleaning equipment is reduced to fit the carrier 210 with a small installation space (e.g., the carrier 210 includes cabinets and household appliances).

[0187] When the movable frame 122 moves away from the base station body 110, it increases the overall size of the base station 100 of the cleaning equipment to accommodate cabinets and household appliances with larger installation spaces.

[0188] It is understood that the functional module connection part 130 is connected to the base station body 110, and the functional module connection part 130 can be exposed outside the outer frame 120. That is, the outer frame 120 will not block the functional module connection part 130, and the functional module connection part 130 can be exposed outside the outer frame 120. The functional module connection part 130 is used to connect with the interface of household appliances and is embedded in the relevant circuit of household appliances to realize the sharing of relevant components of household appliances. This is beneficial to reduce the components of the base station 100, thus reducing the production cost of the base station 100.

[0189] For example, when the base station 100 has a drying function and the base station 100 is installed on an air purifier, the functional module connection part 130 of the base station 100 is connected to the fan interface of the air purifier to eliminate the fan of the base station 100.

[0190] Specifically, to allow cleaning equipment to drive in and park, the base station 100 typically needs to be installed at ground level. Many carriers 210 (such as furniture and household appliances) have unused space at this height. Alternatively, the overall height of the furniture and household appliances can be increased by adding a mounting cavity 212 for the base station 100 at ground level, placing the base station 100 within this cavity. In other words, the existing space of the carriers 210 is utilized efficiently, without requiring additional indoor space to house the base station 100.

[0191] In other words, by rationally designing the structure of the base station 100 for the cleaning equipment, this application ensures the effectiveness and feasibility of using the base station 100 while adapting its external dimensions to the size of the mounting cavity 212 of the carrier 210. This allows the base station 100 to be placed within the mounting cavity 212 of the carrier 210, thus avoiding the occupation of indoor space. Furthermore, since the external dimensions of the base station 100 are adjustable, it can be adapted to mounting cavities 212 of different sizes on the carrier 210, achieving the goal of adapting to different carriers 210. This improves the installation adaptability of the base station 100 and avoids the need to develop different base stations 100 for each type of carrier 210.

[0192] In some embodiments, the carrier 210 includes a cabinet or a household appliance.

[0193] In this embodiment, the type of carrier 210 is defined, for example, carrier 210 includes cabinet or household appliance.

[0194] Cabinets include wardrobes, kitchen cabinets, shoe cabinets, etc., which will not be listed here.

[0195] Household appliances include water dispensers, air purifiers, air conditioners, etc., which will not be listed here.

[0196] The mounting cavity 212 may be located inside the cabinet or the appliance. Alternatively, the cabinet or appliance may be raised, separating it from the ground, with the bottom of the cabinet or appliance forming the mounting cavity 212 between it and the ground.

[0197] It is understandable that when the carrier 210 includes a cabinet, household appliances can be placed inside the cabinet, and the interfaces of the household appliances can be connected to the functional module connection part 130 of the base station 100. Alternatively, the household appliances can be connected to the functional module connection part 130 of the base station 100 through the cabinet.

[0198] Specifically, the external dimensions of the base station 100 of the cleaning equipment of this application can be changed, while the function of the base station body 110 of the base station 100 remains unchanged. The base station 100 is provided with a functional module connection part 130 for connecting with other carriers 210, which facilitates embedding and installation in different carriers 210.

[0199] Understandably, the outer frame 120 provides a certain level of support. Raising the cabinet or appliance separates it from the ground, creating a mounting cavity 212 between the bottom of the cabinet or appliance and the ground. The outer frame 120 is then inserted between the cabinet or appliance and the ground to provide support.

[0200] The base station 100 is equipped with an interface for connection to the carrier 210. The base station 100 includes a low-voltage connection 132, a high-voltage connection 134, a water inlet connection 136, a water outlet connection 139, and an air duct connection 138, etc., which will not be listed here. One end of the functional module connection 130 connects to the functional module inside the base station body 110, and the other end connects to the relevant wiring of the embedded furniture, enabling shared use. This allows for changes only to the external dimensions of the base station 100, without requiring redevelopment of the base station itself. Base stations of the same model (meaning identical functions and configurations) can be used and embedded in different carriers 210.

[0201] The functional module connection part 130 and the pipeline of the base station 100 are flexible and can be stretched and compressed as the size of the outer frame 120 changes, which facilitates connection with external electrical appliances under different sizes.

[0202] Specifically, such as Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, the base station body 110 is provided with a working cavity 112, which is used to house cleaning equipment.

[0203] In this utility model, the term "multiple" refers to two or more unless otherwise explicitly defined. The terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; "linking" can be a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0204] In the description of this specification, the terms "one embodiment," "some embodiments," "specific embodiment," etc., refer to a specific feature, structure, material, or characteristic described in connection with that embodiment or example, which is included in at least one embodiment or example of this utility model. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. The above descriptions are merely preferred embodiments of this utility model and are not intended to limit this utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A base station for a cleaning device, characterized in that, include: Base station body; An outer frame is fitted over the base station body, and the size of the outer frame is adjustable along at least one dimension. The outer frame includes a movable frame, which can move toward the base station body and can also move away from the base station body; The outer frame also includes: a positioning frame, the outer edge of which is connected to the movable frame, and the movable frame is movable relative to the positioning frame; The positioning frame is connected to the base station body.

2. The base station according to claim 1, characterized in that, There are multiple active frames, and at least two of the active frames move in different directions.

3. The base station according to claim 2, characterized in that, The movement directions of at least two of the active frames are perpendicular to each other.

4. The base station according to any one of claims 1 to 3, characterized in that, The active frame is located in the middle of the outer frame.

5. The base station according to claim 4, characterized in that, Also includes: Multiple support legs are spaced apart around the periphery of the movable frame.

6. The base station according to claim 5, characterized in that, The outrigger is a retractable component.

7. The base station according to any one of claims 1 to 3, characterized in that, The movable frame is located at the end of the outer frame.

8. The base station according to any one of claims 1 to 3, characterized in that, The movable frame includes a first telescopic part and a second telescopic part; One of the first telescopic portion and the second telescopic portion includes a slide rail, and the other includes a slide groove, wherein the slide groove is slidably connected to the slide rail; and / or One of the first telescopic portion and the second telescopic portion is provided with a plurality of first connecting holes, and the other is provided with a plurality of second connecting holes. The base station further includes a fastener for connecting one of the first connecting holes and one of the second connecting holes; and / or One of the first telescopic part and the second telescopic part is provided with a sleeve, and the other is provided with a sleeve rod, the sleeve rod being able to be inserted into the sleeve.

9. The base station according to any one of claims 1 to 3, characterized in that, The base station body also includes: The functional module connection part is exposed outside the outer frame. The functional module connection part includes a connector for connecting to the interface of a household appliance.

10. The base station according to claim 9, characterized in that, The connecting part of the functional module is a retractable component.

11. The base station according to claim 10, characterized in that, The outer frame is provided with a clearance opening, through which the functional module connection part protrudes from the outer frame.

12. The base station according to claim 10, characterized in that, The functional module connection part is connected to the outer frame.

13. The base station according to claim 9, characterized in that, The number of functional module connection parts is multiple, and the multiple functional module connection parts are arranged at intervals.

14. The base station according to claim 13, characterized in that, The functional module connection part includes a low-voltage connection part, a high-voltage connection part, a water inlet connection part, a water outlet connection part, and / or an air duct connection part.

15. The base station according to claim 9, characterized in that, The base station body is equipped with a heating device and a disinfection device, and at least one of the heating device and the disinfection device is located at the connection part of the functional module.

16. A base station component, characterized in that, include: The carrier is provided with an installation cavity; and The base station of the cleaning equipment as described in any one of claims 1 to 15, wherein the base station is disposed in the mounting cavity.

17. The base station component according to claim 16, characterized in that, The carrier includes a cabinet or a household appliance.