Base station and cleaning system

By designing a self-dust collection component and a triggering component in the base station, the problem of the self-dust collection program not starting after the base station end cover is opened is solved, realizing automatic start of self-dust collection, avoiding impurity residue, and improving the user experience of the cleaning device.

CN223614770UActive Publication Date: 2025-12-02ZHEJIANG SHAOXING SUPOR DOMESTIC ELECTRICAL APPLIANCE CO LTD
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Patent Information

Application Number
CN202423109008.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2025-12-02
Estimated Expiration
2034-12-16

AI Technical Summary

Technical Problem

After the base station's end cover is opened, the self-dust collection program does not start, resulting in debris remaining in the dust cup. When the handheld device is taken out, the debris spills out, affecting the user experience.

Method used

A base station was designed, which includes a self-collecting dust component and a triggering component. When the cleaning equipment is connected to the base station, the triggering component simultaneously triggers the opening of the self-collecting dust component and the dust cup component, ensuring that the self-collecting dust program starts automatically and avoiding impurity residue.

Benefits of technology

It enables the automatic activation of the self-dust collection program when the cleaning equipment is connected to the base station, avoiding the residue of impurities and improving the user experience of the cleaning device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides a base station and a cleaning system, and relates to the technical field of cleaning devices. The base station comprises a self-dust-collecting assembly and a triggering assembly. The self-dust-collecting assembly is used for supporting the cleaning equipment and collecting sundries in a dust cup assembly after the dust cup assembly of the cleaning equipment is started. The triggering assembly is arranged on the self-dust-collecting assembly, and the triggering assembly is configured to move relative to the self-dust-collecting assembly so as to trigger opening of the self-dust-collecting assembly and opening of a dust cup assembly of the cleaning equipment at the same time. Therefore, the problem that impurities remain in the dust cup assembly due to the fact that the self-dust-collecting assembly is not started can be avoided.
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Description

Technical Field

[0001] This application relates to the field of cleaning device technology, and more particularly to a base station and a cleaning system. Background Technology

[0002] With the development of science and technology and the improvement of living standards, living conditions are constantly improving, and people have higher requirements for the quality of their living environment. Household dust removal devices such as vacuum cleaners and floor scrubbers are appearing more and more in people's lives.

[0003] In related technologies, the cleaning device may include a base station and a handheld device. The handheld device is detachably connected to the base station. The handheld device includes a handheld body and a dust cup disposed on the handheld body, and the dust cup has an openable end cap. When the handheld device is in operation, it can suck debris from the surface to be cleaned into the dust cup. When the base station is connected to the handheld device, it can open the end cap and then clean the debris in the dust cup through the base station's self-collection program.

[0004] However, if the self-dust collection process is not activated after the base station's end cover is opened, debris will remain in the dust cup, and when the handheld device is removed, the debris will spill out. Utility Model Content

[0005] This application provides a base station and a cleaning system to solve the problem in related technologies where the self-dust collection process does not start after the base station's end cover is opened, leaving debris in the dust cup.

[0006] On the one hand, the base station provided in this application includes:

[0007] The self-collecting dust assembly supports the cleaning equipment and collects debris from the dust cup assembly after the dust cup assembly of the cleaning equipment is opened.

[0008] A trigger component, disposed on the self-collecting dust assembly, is configured to move relative to the self-collecting dust assembly to simultaneously trigger the opening of the self-collecting dust assembly and the opening of the dust cup assembly of the cleaning device.

[0009] In this way, the triggering component activates the self-collecting dust component and the dust cup component of the cleaning device at the same time. This synchronous operation can avoid the problem of impurities remaining in the dust cup component if the self-collecting dust component fails to start.

[0010] In one possible implementation, the base station provided in this application includes a self-dust collection component comprising:

[0011] Support frame, used to support cleaning equipment;

[0012] The self-collecting dust component is used to collect debris inside the dust cup assembly after the dust cup assembly is opened;

[0013] The self-dust collection start button and the trigger component are both mounted on the support frame. The trigger component moves relative to the support frame and simultaneously contacts the self-dust collection start button and the dust cup cover release component of the dust cup assembly, so that the self-dust collection start button activates the self-dust collection component and opens the dust cup assembly.

[0014] Thus, after the cleaning equipment is installed on the support frame, the user can apply force to the trigger component, causing it to move relative to the support frame. The trigger component then contacts the self-collecting dust start button, activating the self-collecting dust unit and generating negative pressure. Simultaneously, the trigger component contacts the dust cup cover release mechanism, releasing the end cap and opening the dust cup body. In this way, impurities inside the dust cup body are sucked out.

[0015] In one possible implementation, the base station provided in this application has a self-collecting dust duct inside the support frame. The self-collecting dust duct is connected to the self-collecting dust component. The self-collecting dust duct is configured to connect to the dust cup assembly when the dust cup assembly is opened, so that the self-collecting dust component collects debris inside the dust cup assembly.

[0016] In this way, the self-collecting dust duct can increase the airflow path to balance the internal air pressure, reduce the instability caused by excessive local airflow, and thus improve the stability of the dust collection cup assembly for collecting debris.

[0017] In one possible implementation, the base station provided in this application includes a triggering component comprising a first trigger and a second trigger, both of which are mounted on a support frame and are in contact with each other.

[0018] The first trigger is configured to drive the second trigger to move relative to the support frame when moving relative to the support frame, so that the first trigger contacts the self-dust collection start key, and the second trigger simultaneously contacts the dust cup cover release member.

[0019] In this way, the user can apply force to the first trigger, which moves relative to the support frame and contacts the self-dust collection start button to activate the self-dust collection device. Furthermore, during the movement of the first trigger, it can drive the second trigger to move relative to the support frame, and the second trigger simultaneously contacts the dust cup cover release mechanism to open the end cover of the dust cup assembly.

[0020] In one possible implementation, the base station provided in this application includes a first triggering element comprising a first support portion and a first contact portion disposed on one side of the first support portion. The first support portion is in contact with the self-dust collection start button, and the first contact portion is in contact with the second triggering element.

[0021] Thus, the first support moves relative to the support frame and contacts the self-dust collection start button to activate the self-dust collection component. Furthermore, during its sliding motion, the first support can drive the second trigger via the first contact part, thereby opening the dust cup assembly.

[0022] In one possible implementation, the base station provided in this application has a first inclined surface on the first contact portion and a second inclined surface on the second trigger element that matches the first inclined surface, with the first inclined surface in contact with the second inclined surface.

[0023] Thus, when the first inclined surface contacts the second inclined surface, and the first contact portion of the first trigger moves along the first direction, the second trigger is driven to move along the second direction perpendicular to the first direction under the action of the first and second inclined surfaces.

[0024] In one possible implementation, the base station provided in this application further includes at least one first reset member on the support frame. The first reset member is used to drive the first support part to separate from the self-dust collection start key after the first support part contacts the self-dust collection start key.

[0025] Thus, when the user cancels the force applied to the first support, the first reset member can provide a force to reset the first support, so that the first support is separated from the self-dust collection start key and reset to the initial position.

[0026] In one possible implementation, the base station provided in this application has a support column on at least one of the first support part and the support frame, and a first reset member is sleeved on the support column, with both ends of the first reset member contacting the first support part and the support frame respectively.

[0027] In this way, the support column can provide additional support for the first reset component, ensuring the stability of the first reset component's operation and preventing the first reset component from tilting, detaching, or popping out.

[0028] In one possible implementation, the base station provided in this application further includes at least one first limiting part for the first trigger, and at least one second limiting part is provided on the support frame. The first limiting part and the second limiting part are slidably connected to limit the movement distance of the first support part.

[0029] Thus, by setting a second limiting part and limiting the movement distance of the first support part on the support frame, excessive contact between the first support part and the self-dust collection start button can be avoided, which could lead to damage to the self-dust collection start button.

[0030] In one possible implementation, the base station provided in this application has a first limiting part and a second limiting part, one of which is a buckle and the other is a sliding groove that matches the buckle. The extension direction of the sliding groove is consistent with the movement direction of the first support part.

[0031] Thus, the buckle is slidably positioned within the groove, and the extension direction of the groove is consistent with the movement direction of the first support, i.e., the first direction, thereby limiting the movement distance of the first support and preventing excessive contact between the first support and the self-dust collection start button.

[0032] In one possible implementation, the base station provided in this application has a support frame including a frame and a cover, the cover being placed on the frame and having mounting holes.

[0033] The first trigger is mounted on the frame, and the first support part of the first trigger extends out of the cover body through the mounting hole;

[0034] The triggering component also includes a support member, which is mounted on the cover, and the second trigger member is inserted into the support member.

[0035] Thus, during assembly, the first trigger can be installed on the frame, the second trigger on the cover, and then the cover and frame can be assembled accordingly, with the first trigger and the second trigger in contact. The structure is simple and easy to install.

[0036] In one possible implementation, the base station provided in this application further includes at least one second reset member in the triggering component. The second reset member is sleeved on the second trigger member, and both the cover and the second trigger member are connected to the second reset member. The second reset member is used to drive the second trigger member to separate from the dust cup cover release member after the second trigger member contacts the dust cup cover release member.

[0037] Thus, by setting a second reset element, the second trigger element is separated from the dust cup cover release element and quickly reset.

[0038] In one possible implementation, the base station provided in this application has a plug-in portion on the cover for the dust cup assembly to be plugged into the cover.

[0039] Thus, by providing a connector, the dust cup assembly can be easily installed.

[0040] In one possible implementation, the base station provided in this application has a mounting part on the frame, and the mounting part has a receiving groove. The self-dust collection component also includes a self-dust collection circuit board. The self-dust collection start button is disposed on the self-dust collection circuit board. The self-dust collection circuit board is electrically connected to the self-dust collection component. The self-dust collection circuit board is disposed in the receiving groove.

[0041] Thus, the self-collecting circuit board is installed through the receiving slot on the mounting part. After the first support part contacts the self-collecting start button, the self-collecting component is opened by the self-collecting circuit board to collect impurities in the dust cup assembly.

[0042] On the other hand, the cleaning system provided in this application includes a cleaning device and a base station as described above, the base station being used to collect debris from the dust cup assembly of the cleaning device.

[0043] Thus, a cleaning system equipped with the aforementioned base station can simultaneously activate the self-collecting dust component and the dust cup component of the cleaning equipment when the cleaning equipment is connected to the base station via a trigger component on the base station. This synchronous operation avoids the problem of impurities remaining in the dust cup component due to the self-collecting dust component not being activated.

[0044] In one possible implementation, the cleaning system provided in this application includes a dust cup assembly comprising:

[0045] The dust cup body has a dust collection chamber;

[0046] The end cap is rotatably mounted on the dust cup body to open or close the dust collection chamber by flipping it over.

[0047] The dust cup cover release element is movably disposed on the dust cup body to restrict the end cover onto the dust cup body or to release the restriction on the end cover.

[0048] Thus, the dust cup cover release component can be rotatably mounted on the dust cup body, and the dust cup cover release component is snapped together with the end cover. When the second trigger contacts the dust cup cover release component, the dust cup cover release component rotates relative to the dust cup body to release the restriction on the end cover, thereby opening the dust collection chamber.

[0049] In addition to the technical problems solved by the embodiments of this application, the technical features constituting the technical solutions, and the beneficial effects brought about by the technical features of these technical solutions described above, other technical problems that the cleaning system provided by this application can solve, other technical features included in the technical solutions, and the beneficial effects brought about by these technical features will be further described in detail in the specific embodiments. Attached Figure Description

[0050] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0051] Figure 1 This is a partial structural diagram of a base station provided in an embodiment of this application;

[0052] Figure 2 for Figure 1 Exploded view;

[0053] Figure 3This is a schematic diagram of the structure of the first trigger element in the base station provided in the embodiments of this application;

[0054] Figure 4 This is a schematic diagram of the structure of the first trigger and the frame in the base station provided in the embodiments of this application;

[0055] Figure 5 This is a schematic diagram of the structure of the second trigger and the cover in the base station provided in the embodiments of this application;

[0056] Figure 6 for Figure 1 AA section view in the middle;

[0057] Figure 7 for Figure 1 BB section view in the middle;

[0058] Figure 8 This is a schematic diagram of the structure of the cleaning system provided in the embodiments of this application;

[0059] Figure 9 for Figure 8 The enlarged view indicated by point C in the middle;

[0060] Figure 10 for Figure 9 A schematic diagram of the dust cup assembly's opening process.

[0061] Explanation of reference numerals in the attached figures:

[0062] 10. Base station; 20. Cleaning equipment;

[0063] 100. Self-collecting dust assembly;

[0064] 110. Support frame; 111. Second limiting part; 112. Frame body; 1121. Mounting part; 1122. Receiving groove; 113. Cover; 1131. Mounting hole; 1132. Insertion part; 120. Self-dust collection component; 130. Self-dust collection start button; 140. Self-dust collection air duct;

[0065] 200. Triggering component;

[0066] 210. First trigger element; 211. First support portion; 212. First contact portion; 213. Support column; 214. First limiting portion; 220. Second trigger element; 230. First reset element; 240. Support element; 250. Second reset element;

[0067] 300. Dust cup assembly;

[0068] 310. Dust cup body; 311. Dust collection chamber; 320. End cap; 330. Dust cup cover release component. Detailed Implementation

[0069] To make the objectives, technical solutions, and advantages of this application clearer, the technical solutions in the embodiments of this application will be described in more detail below with reference to the accompanying drawings. In the drawings, the same or similar reference numerals denote the same or similar components or components having the same or similar functions throughout. The described embodiments are some, but not all, embodiments of this application. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this application, and should not be construed as limiting this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application. The embodiments of this application will be described in detail below with reference to the accompanying drawings.

[0070] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, an indirect connection through an intermediate medium, or the internal communication between two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0071] In the description of this application, it should be understood that the terms "upper", "lower", "front", "back", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application.

[0072] The terms "first," "second," and "third" (if any) in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a particular order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments of this application described herein can be implemented, for example, in orders other than those illustrated or described herein.

[0073] Furthermore, the terms “comprising” and “having”, and any variations thereof, are intended to cover non-exclusive inclusion, such that a process, method, system, product, or display that includes a series of steps or units is not necessarily limited to those steps or units that are explicitly listed, but may include other steps or units that are not explicitly listed or that are inherent to such process, method, product, or display.

[0074] In related technologies, the cleaning device may include a base station and a handheld device. The handheld device is detachably connected to the base station. The handheld device includes a handheld body and a dust cup disposed on the handheld body. The dust cup has an openable end cap. When the handheld device is working, it can suck debris from the surface to be cleaned into the dust cup. When the base station is connected to the handheld device, it can open the end cap and then clean the debris in the dust cup through the base station's self-dust collection program.

[0075] However, if the self-dust collection process is not activated after the base station's end cover is opened, debris will remain in the dust cup, and when the handheld device is removed, the debris will spill out.

[0076] For example, in some cleaning devices, the end cover opening mechanism and the self-collection program switch on the base station are independently configured. In use, the end cover of the dust cup is typically opened first using the end cover opening mechanism, and then the self-collection program is activated using the self-collection program switch to clean the debris inside the dust cup. If the user forgets to activate the self-collection program, debris will remain inside the dust cup, and when the handheld device is removed, the debris will spill out, resulting in a poor user experience.

[0077] In view of the above problems, this application provides a base station and a cleaning system. The base station includes a self-collecting dust assembly and a triggering assembly. The self-collecting dust assembly supports the cleaning equipment and collects debris from the dust cup assembly after the dust cup assembly of the cleaning equipment is opened. The triggering assembly is disposed on the self-collecting dust assembly and is configured to move relative to the self-collecting dust assembly to simultaneously trigger the opening of both the self-collecting dust assembly and the dust cup assembly of the cleaning equipment. This synchronization avoids the problem of impurities remaining in the dust cup assembly if the self-collecting dust assembly fails to activate.

[0078] The specific implementation methods of the base station and cleaning system provided in this application will be described in detail below with reference to the accompanying drawings.

[0079] Reference Figures 1 to 8 As shown, the base station 10 provided in this application includes a self-dust collection component 100 and a triggering component 200.

[0080] The self-collecting dust assembly 100 is used to support the cleaning equipment 20, and collects debris in the dust cup assembly 300 after the dust cup assembly 300 of the cleaning equipment 20 is turned on.

[0081] Trigger component 200 is disposed on self-collecting dust assembly 100 and is configured to move relative to self-collecting dust assembly to simultaneously trigger the opening of self-collecting dust assembly 100 and the opening of dust cup assembly 300 of cleaning device 20.

[0082] It is understood that the base station 10 provided in this application can be used in conjunction with the cleaning device 20. The cleaning device 20 can be a handheld vacuum cleaner, including a dust cup assembly 300 and a suction unit. The suction unit generates negative pressure to suck debris from the surface to be cleaned into the dust cup assembly 300. The self-collecting dust assembly 100 of the base station 10 also has a suction mechanism. After the self-collecting dust assembly 100 is connected to the dust cup of the handheld vacuum cleaner, the suction mechanism generates negative pressure to suck out the impurities from the dust cup assembly 300.

[0083] The dust cup assembly 300 may include a dust cup body 310 and an end cap 320. The dust cup body 310 has a dust collection chamber 311, and the end cap 320 is rotatably disposed on the dust cup body 310 to open or close the dust collection chamber 311 by flipping.

[0084] The trigger component 200 is set on the self-collecting dust assembly 100. The trigger component 200 can open the end cap 320 on the dust cup body 310 at the same time as the suction mechanism of the self-collecting dust assembly 100 is turned on. This simultaneous action can prevent the user from forgetting to turn on the self-collecting dust assembly 100, which would result in impurities remaining in the dust cup assembly 300.

[0085] Furthermore, the trigger component 200 has two functions, making it convenient for users to operate.

[0086] Reference Figure 2 As shown, in some embodiments, the self-dust collection assembly 100 includes a support frame 110, a self-dust collection component 120, and a self-dust collection start button 130.

[0087] The support frame 110 is used to support the cleaning equipment 20, and the self-collecting dust component 120 is used to collect debris inside the dust cup assembly 300 after the dust cup assembly 300 is opened.

[0088] Both the self-dust collection start button 130 and the trigger component 200 are mounted on the support frame 110. The trigger component 200 moves relative to the support frame 110 and simultaneously contacts the self-dust collection start button 130 and the dust cup cover release member 330 of the dust cup assembly 300, so that the self-dust collection start button 130 opens the self-dust collection component 120 and opens the dust cup assembly 300.

[0089] The self-dust collection start button 130 is connected to the self-dust collection component 120. The self-dust collection component 120 can be the suction mechanism in the conventional technology described above. The self-dust collection component 120 is turned on by the dust collection start button, so that the dust collection component generates negative pressure and collects impurities in the dust cup assembly 300. This will not be described in detail.

[0090] It is understood that the dust cup cover release member 330 can be movably disposed on the dust cup body 310 of the dust cup assembly 300 to restrict the end cover 320 on the dust cup body 310 or to release the restriction on the end cover 320.

[0091] After the cleaning device 20 is installed on the support frame 110, the user can apply force to the trigger component 200, causing it to move relative to the support frame 110. The trigger component 200 then contacts the self-collecting dust start button 130, activating the self-collecting dust unit 120 and generating negative pressure. Simultaneously, the trigger component 200 contacts the dust cup cover release component 330, releasing it from the restriction on the end cover 320, thereby opening the dust cup body 310. In this way, impurities inside the dust cup body 310 are sucked out.

[0092] Reference Figure 1 , Figure 6 and Figure 7 As shown, in some embodiments, a self-collecting dust duct 140 is provided inside the support frame 110. The self-collecting dust duct 140 is connected to the self-collecting dust component 120. The self-collecting dust duct 140 is configured to connect to the dust cup assembly 300 when the dust cup assembly 300 is opened, so that the self-collecting dust component 120 collects debris inside the dust cup assembly 300.

[0093] The self-collecting dust duct 140 can increase the airflow path to balance the internal air pressure and reduce the instability caused by excessive local airflow, thereby improving the stability of the dust collection cup assembly 300 collected by the self-collecting dust component 120.

[0094] Reference Figure 2 , Figure 6 and Figure 7 As shown, in some embodiments, the triggering component 200 includes a first trigger 210 and a second trigger 220, both of which are disposed on the support frame 110 and are in contact with each other.

[0095] The first trigger 210 is configured to drive the second trigger 220 to move relative to the support frame 110 when moving relative to the support frame 110, so that the first trigger 210 contacts the self-dust collection start button 130 and the second trigger 220 simultaneously contacts the dust cup cover release member 330.

[0096] The first trigger 210 and the second trigger 220 can move in the same direction. The first trigger 210 and the second trigger 220 can also move in different directions, for example, they can move in opposite directions, perpendicular directions, or the first trigger 210 can move in a straight line and the second trigger 220 can move in a rotational direction, etc. The embodiments of this application do not impose too many restrictions on this.

[0097] In this way, the user can apply force to the first trigger 210, which moves relative to the support frame 110 and contacts the self-dust collection start button 130 to activate the self-dust collection component 120. Furthermore, during the movement of the first trigger 210, it can drive the second trigger 220 to move relative to the support frame 110, and the second trigger 220 simultaneously contacts the dust cup cover release component 330 to open the end cover 320 of the dust cup assembly 300.

[0098] Reference Figure 3 , Figure 4 and Figure 6 As shown, in some embodiments, the first trigger 210 includes a first support portion 211 and a first contact portion 212 disposed on one side of the first support portion 211. The first support portion 211 contacts the self-dust collection start button 130, and the first contact portion 212 contacts the second trigger 220.

[0099] In this way, the first support portion 211 moves relative to the support frame 110 and contacts the self-dust collection start button 130 to activate the self-dust collection component 120. Furthermore, during the sliding process, the first support portion 211 can drive the second trigger member 220 to move through the first contact portion 212, thereby opening the dust cup assembly 300.

[0100] The first support part 211 can be slidably disposed on the support frame 110 or rotatably disposed on the support frame 110. The second trigger 220 is the same. As long as the first support part 211 moves relative to the support frame 110, it can drive the second trigger 220 to move. This application embodiment does not impose too many restrictions on this.

[0101] Reference Figure 2 , Figure 3 and Figure 6 As shown, in some specific embodiments, the first contact portion 212 has a first inclined surface, and the second trigger member 220 has a second inclined surface that matches the first inclined surface, and the first inclined surface contacts the second inclined surface.

[0102] The first trigger 210 and the second trigger 220 are both slidably mounted on the support frame 110. The first trigger 210 moves along a first direction, and the second trigger 220 moves along a second direction. The first direction and the second direction are perpendicular. The first direction is as follows: Figure 6 As shown by the middle X arrow, the second direction is as follows: Figure 6 As indicated by the Y-arrow.

[0103] In this way, when the first inclined surface contacts the second inclined surface, and the first contact portion 212 of the first trigger 210 moves along the first direction, the second trigger 220 is driven to move along the second direction perpendicular to the first direction under the action of the first inclined surface and the second inclined surface.

[0104] The first direction is perpendicular to the second direction so that the structure of the trigger component 200 can be more compact and reduce the internal space occupied by the base station 10.

[0105] Reference Figure 2 and Figure 4 As shown, in some embodiments, the triggering component 200 further includes at least one first reset member 230, which is disposed on the support frame 110. The first reset member 230 is used to drive the first support portion 211 to separate from the self-dust collection start button 130 after the first support portion 211 contacts the self-dust collection start button 130.

[0106] Understandably, the first reset member 230 is used to provide a force that resets the first support portion 211. For example, the first reset member 230 can be a reset spring, a reset elastic sleeve, a reset elastic pad, etc., without further limitations.

[0107] When the first support 211 contacts the self-dust collection start button 130, the first reset member 230 is in an energy storage state (e.g., compressed or stretched). When the force applied to the first support 211 is removed, the first reset member 230 gradually releases energy, provides a force to separate the first support 211 from the self-dust collection start button 130, and resets to the initial position.

[0108] Reference Figure 2 , Figure 3 and Figure 7 As shown, in some embodiments, at least one of the first support portion 211 and the support frame 110 is provided with a support column 213, and the first reset member 230 is sleeved on the support column 213, with both ends of the first reset member 230 contacting the first support portion 211 and the support frame 110 respectively.

[0109] In this way, the support column 213 can provide additional support for the first reset member 230, ensuring the stability of the first reset member 230 during operation and preventing the first reset member 230 from tilting, detaching, or popping out.

[0110] It is understood that a support column 213 may be provided on at least one of the first support portion 211 and the support frame 110. The support column 213 may be provided on the first support portion 211 or on the support frame 110. This application embodiment does not impose too many restrictions on this.

[0111] In a specific implementation, support columns 213 can be provided on opposite sides of the first support part 211, and a first reset member 230 is sleeved on each support column 213 to ensure the stability of the movement of the first support part 211.

[0112] Reference Figure 3 , Figure 5and Figure 7 As shown, in some embodiments, the first trigger 210 further includes at least one first limiting part 214, and the support frame 110 is provided with at least one second limiting part 111. The first limiting part 214 and the second limiting part 111 are slidably connected to limit the movement distance of the first support part 211.

[0113] In this way, by setting the second limiting part 111, the movement distance of the first support part 211 on the support frame 110 is limited, which can prevent the first support part 211 from making excessive contact with the self-dust collection start button 130, thus avoiding damage to the self-dust collection start button 130.

[0114] Reference Figure 7 As shown, in some specific embodiments, one of the first limiting part 214 and the second limiting part 111 is a buckle, and the other is a sliding groove that matches the buckle. The extending direction of the sliding groove is consistent with the moving direction of the first support part 211.

[0115] In this way, the buckle is slidably disposed in the groove, and the extension direction of the groove is consistent with the movement direction of the first support 211, that is, the first direction, thereby limiting the movement distance of the first support 211 and avoiding excessive contact between the first support 211 and the self-dust collection start button 130.

[0116] It is understood that the first limiting part 214 can be a snap fastener, and the second limiting part 111 can be a sliding groove. Of course, in some other implementations, the first limiting part 214 can be a sliding groove, and the second limiting part 111 can be a snap fastener. This application embodiment does not impose too many restrictions on this.

[0117] In a specific implementation, the first limiting part 214 can be a buckle, the second limiting part 111 can be a slide groove, buckles are respectively provided on the opposite sides of the first support part 211, and two slide grooves are provided on the support frame 110 to ensure the stability of the movement of the first support part 211.

[0118] Reference Figure 2 , Figure 4 and Figure 5 As shown, in some embodiments, the support frame 110 includes a frame body 112 and a cover body 113, the cover body 113 covering the frame body 112, and the cover body 113 having mounting holes 1131.

[0119] The first trigger 210 is disposed on the frame 112, and the first support portion 211 of the first trigger 210 extends to the outside of the cover 113 through the mounting hole 1131.

[0120] The trigger assembly 200 also includes a support member 240, which is disposed on the cover 113, and the second trigger member 220 is inserted into the support member 240.

[0121] The first trigger 210 can be slidably mounted on the frame 112, and the first support portion 211 of the first trigger 210 extends out of the cover 113 through the mounting hole 1131 on the cover 113, so that the user can apply force to the first support portion 211 to activate the self-dust collection component 120.

[0122] Furthermore, the second trigger 220 is slidably disposed on the cover 113 via the support 240. Under the action of the first trigger 210, it slides relative to the cover 113 and contacts the dust cup cover release member 330, thereby opening the dust cup assembly 300.

[0123] In this way, during assembly, the first trigger 210 can be installed on the frame 112 and the second trigger 220 can be installed on the cover 113. Then, the cover 113 and the frame 112 are assembled accordingly, and the first trigger 210 and the second trigger 220 are made to contact each other. The structure is simple and easy to install.

[0124] Reference Figure 2 and Figure 6 As shown, in some embodiments, the triggering component 200 further includes at least one second reset member 250, which is sleeved on the second trigger member 220. Both the cover 113 and the second trigger member 220 are connected to the second reset member 250. The second reset member 250 is used to drive the second trigger member 220 to separate from the dust cup cover release member 330 after the second trigger member 220 contacts the dust cup cover release member 330.

[0125] It is understood that the second reset member 250 is used to provide a force that resets the second trigger member 220. For example, the second reset member 250 may be a reset spring, a reset elastic sleeve, etc.

[0126] When the second trigger 220 contacts the dust cup cover release member 330, the second reset member 250 is in an energy-storing state (e.g., compressed or stretched). When the force applied to the first support portion 211 of the first trigger 210 is released, the first support portion 211 resets under the action of the first reset member 230. At the same time, the second reset member 250 gradually releases energy, providing a force to separate the second trigger 220 from the dust cup cover release member 330 and reset it to its initial position.

[0127] In this way, by setting the second reset member 250, the second trigger member 220 is separated from the dust cup cover release member 330 and quickly reset.

[0128] Reference Figure 2 and Figure 5As shown, in some embodiments, the cover 113 has a plug portion 1132 for the dust cup assembly 300 to be plugged into the cover 113.

[0129] The self-collecting dust duct 140 can be connected to the insertion part 1132, which has a through hole through which the second trigger 220 can extend into the insertion part 1132. After the dust cup assembly 300 is inserted into the cover 113, the second trigger 220 extends into the insertion part 1132 and contacts the dust cup cover release part 330, thereby opening the end cap 320 of the dust cup assembly 300 so that the dust collection chamber 311 of the dust cup body 310 is connected to the self-collecting dust duct 140.

[0130] Thus, by providing the plug-in part 1132, it is convenient to install the dust cup assembly 300.

[0131] Reference Figure 2 , Figure 4 and Figure 7 As shown, in some embodiments, the frame 112 has a mounting part 1121, the mounting part 1121 has a receiving groove 1122, the self-dust collection assembly 100 also includes a self-dust collection circuit board, the self-dust collection start button 130 is disposed on the self-dust collection circuit board, the self-dust collection circuit board is electrically connected to the self-dust collection component 120, and the self-dust collection circuit board is disposed in the receiving groove 1122.

[0132] In this way, the self-dust collection circuit board is installed through the receiving groove 1122 on the mounting part 1121. After the first support part 211 contacts the self-dust collection start button 130, the self-dust collection circuit board controls the self-dust collection component 120 to open, so as to collect impurities in the dust cup assembly 300.

[0133] In a specific implementation, second limiting parts 111 can be respectively provided on the opposite sides of the mounting part 1121. The second limiting parts 111 can be sliding grooves. The first limiting parts 214 provided on both sides of the first support part 211 can be slidably connected with the corresponding second limiting parts 111. The second limiting parts 111 can be snap-fits. In this way, the first support part 211 can be easily connected with the self-dust collection start button 130, and the overall structure is compact and easy to install.

[0134] Reference Figures 8 to 10 As shown, the cleaning system provided in this application includes a cleaning device 20 and a base station 10 as described above. The base station 10 is used to collect debris from the dust cup assembly 300 of the cleaning device 20.

[0135] Thus, the cleaning system equipped with the aforementioned base station 10 can simultaneously activate the self-collecting dust component 100 and the dust cup component 300 of the cleaning device 20 when the cleaning device 20 is connected to the base station 10. This synchronous operation avoids the problem of impurities remaining in the dust cup component 300 if the self-collecting dust component 100 fails to start.

[0136] Reference Figure 9 As shown, in some embodiments, the dust cup assembly 300 includes a dust cup body 310, an end cap 320, and a dust cup cap release member 330.

[0137] The dust cup body 310 has a dust collection chamber 311, and the end cap 320 is rotatably disposed on the dust cup body 310 to open or close the dust collection chamber 311 by flipping. The dust cup cover release member 330 is movably disposed on the dust cup body 310 to restrict the end cap 320 on the dust cup body 310 or to release the restriction on the end cap 320.

[0138] Among them, reference Figure 9 and Figure 10 As shown, the dust cup cover release member 330 is rotatably mounted on the dust cup body 310, and the dust cup cover release member 330 is snapped together with the end cover 320. When the second trigger member 220 contacts the dust cup cover release member 330, the dust cup cover release member 330 rotates relative to the dust cup body 310 to release the restriction on the end cover 320, thereby opening the dust collection chamber 311.

[0139] Furthermore, a reset elastic element can be provided between the dust cup cover release member 330 and the dust cup body 310. When the second trigger member 220 separates from the dust cup cover release member 330, the dust cup cover release member 330 is reset to its initial position under the action of the reset elastic element.

[0140] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.

Claims

1. A base station, characterized in that, include: Self-collecting dust assembly (100), which supports the cleaning device (20) and collects debris from the dust cup assembly (300) after the dust cup assembly (300) of the cleaning device (20) is opened: A trigger component (200) is disposed on the self-collecting dust assembly (100), the trigger component (200) being configured to move relative to the self-collecting dust assembly (100) to simultaneously trigger the opening of the self-collecting dust assembly (100) and the opening of the dust cup assembly (300) of the cleaning device (20).

2. The base station according to claim 1, characterized in that, The self-collecting dust assembly (100) includes: A support frame (110) is used to support the cleaning equipment (20). Self-collecting dust unit (120) is used to collect debris in the dust cup assembly (300) after the dust cup assembly (300) is opened; The self-dust collection start button (130) and the trigger component (200) are both disposed on the support frame (110). The trigger component (200) moves relative to the support frame (110) and simultaneously contacts the self-dust collection start button (130) and the dust cup cover release member (330) of the dust cup assembly (300) so that the self-dust collection start button (130) activates the self-dust collection component (120) and opens the dust cup assembly (300).

3. The base station according to claim 2, characterized in that, The support frame (110) is provided with a self-collecting air duct (140), which is connected to the self-collecting component (120). The self-collecting air duct (140) is configured to connect to the dust cup assembly (300) when the dust cup assembly (300) is opened, so that the self-collecting component (120) collects the debris in the dust cup assembly (300).

4. The base station according to claim 2, characterized in that, The triggering component (200) includes a first trigger (210) and a second trigger (220), both of which are disposed on the support frame (110) and are in contact with each other. The first trigger (210) is configured to drive the second trigger (220) to move relative to the support frame (110) when moving relative to the support frame (110), so that the first trigger (210) contacts the self-dust collection start button (130), and the second trigger (220) simultaneously contacts the dust cup cover release member (330).

5. The base station according to claim 4, characterized in that, The first trigger (210) includes a first support (211) and a first contact (212) disposed on one side of the first support (211). The first support (211) contacts the self-dust collection start button (130), and the first contact (212) contacts the second trigger (220).

6. The base station according to claim 5, characterized in that, The first contact portion (212) has a first inclined surface, and the second trigger (220) has a second inclined surface that matches the first inclined surface, and the first inclined surface contacts the second inclined surface.

7. The base station according to claim 5, characterized in that, The triggering component (200) further includes at least one first reset member (230), which is disposed on the support frame (110). The first reset member (230) is used to drive the first support part (211) to separate from the self-dust collection start button (130) after the first support part (211) contacts the self-dust collection start button (130).

8. The base station according to claim 7, characterized in that, A support column (213) is provided on at least one of the first support part (211) and the support frame (110), and the first reset member (230) is sleeved on the support column (213). The two ends of the first reset member (230) are in contact with the first support part (211) and the support frame (110) respectively.

9. The base station according to claim 5, characterized in that, The first trigger (210) further includes at least one first limiting part (214), and the support frame (110) is provided with at least one second limiting part (111). The first limiting part (214) and the second limiting part (111) are slidably connected to limit the movement distance of the first support part (211).

10. The base station according to claim 9, characterized in that, One of the first limiting part (214) and the second limiting part (111) is a buckle, and the other is a sliding groove that matches the buckle. The extension direction of the sliding groove is consistent with the movement direction of the first support part (211).

11. The base station according to any one of claims 4 to 10, characterized in that, The support frame (110) includes a frame (112) and a cover (113), the cover (113) covering the frame (112), and the cover (113) having mounting holes (1131). The first trigger (210) is disposed on the frame (112), and the first support part (211) of the first trigger (210) extends to the outside of the cover (113) through the mounting hole (1131); The triggering component (200) further includes a support (240) disposed on the cover (113), and the second trigger (220) is inserted into the support (240).

12. The base station according to claim 11, characterized in that, The triggering component (200) further includes at least one second reset member (250), which is sleeved on the second trigger member (220). Both the cover (113) and the second trigger member (220) are connected to the second reset member (250). The second reset member (250) is used to drive the second trigger member (220) to separate from the dust cup cover release member (330) after the second trigger member (220) contacts the dust cup cover release member (330).

13. The base station according to claim 11, characterized in that, The cover (113) has a plug-in portion (1132) for inserting the dust cup assembly (300) into the cover (113).

14. The base station according to claim 11, characterized in that, The frame (112) has a mounting part (1121), the mounting part (1121) has a receiving groove (1122), the self-dust collection assembly (100) also includes a self-dust collection circuit board, the self-dust collection start button (130) is disposed on the self-dust collection circuit board, the self-dust collection circuit board is electrically connected to the self-dust collection component (120), and the self-dust collection circuit board is disposed in the receiving groove (1122).

15. A cleaning system, characterized in that, Includes a cleaning device (20) and a base station (10) as claimed in any one of claims 1 to 14, the base station (10) being used to collect debris within the dust cup assembly (300) of the cleaning device (20).

16. The cleaning system according to claim 15, characterized in that, The dust cup assembly (300) includes: The dust cup body (310) has a dust collection chamber (311). The end cap (320) is rotatably mounted on the dust cup body (310) to open or close the dust collection chamber (311) by flipping it. A dust cup cover release member (330) is movably disposed on the dust cup body (310) for restricting the end cap (320) on the dust cup body (310) or releasing the restriction on the end cap (320).