一种充电集尘装置及清洁系统

By designing a charging and dust collection device that combines charging and dust collection components, the robot vacuum cleaner achieves both charging and dust collection functions. It can also be connected to external devices such as pet groomers, solving the problem of unreasonable charging base structure in existing technologies and improving efficiency and user experience.

CN224505345UActive Publication Date: 2026-07-17ZHEJIANG MIYUE TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG MIYUE TECH CO LTD
Filing Date
2025-07-23
Publication Date
2026-07-17

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  • Figure CN224505345U_ABST
    Figure CN224505345U_ABST
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Abstract

本实用新型提供一种充电集尘装置及清洁系统,涉及家用电器技术领域,第一集尘管道的输出口与集尘空间相连通,第一集尘管道的输入口贯通第一安装槽设置,风机件设置于第一壳体内,且风机件的输出端与集尘空间相连通,电源组件设置于第一壳体内,电源组件与风机件电性连接,且电源组件设置有第一电连接件。第二壳体与第一壳体可拆卸连接,充电组件设置于第二壳体。本实用新型的充电集尘装置可以配合扫地机器人进行使用,实现对扫地机器人的充电和集尘功能,第一壳体的第一安装槽位置还可以外接接头设备例如宠物剃毛器以实现吸尘或收集杂物的功能,提升充电集尘装置的适配性和使用效率,进而提高用户体验感。
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Claims

1. A charge dust collecting device, characterized by, include: The first housing is provided with a dust collection space, a first mounting groove and a first dust collection pipe. The output port of the first dust collection pipe is connected to the dust collection space, and the input port of the first dust collection pipe is provided through the first mounting groove. A fan component is disposed within the first housing, and the output end of the fan component is connected to the dust collection space; A power supply assembly is disposed within the first housing, the power supply assembly is electrically connected to the fan component, and the power supply assembly is provided with a first electrical connector; The second housing is provided with a second dust collection pipe, a plug-in part and a dust collection port. The inlet of the second dust collection pipe corresponds to the dust collection port, and the outlet of the second dust collection pipe is provided facing the plug-in part. The second housing is detachably connected to the first housing. A charging component is disposed in the second housing, and the charging component is provided with a second electrical connector; When the second housing is connected to the first housing, the plug-in part is inserted into the first mounting slot, the inlet of the first dust collection pipe is connected to the outlet of the second dust collection pipe, and the second electrical connector abuts against the first electrical connector.

2. The charging dust collecting device according to claim 1, wherein The plug-in part is provided with a third dust collection pipe. The plug-in part is located between the first dust collection pipe and the second dust collection pipe. The inlet of the first dust collection pipe is connected to the outlet of the second dust collection pipe through the third dust collection pipe to form a dust suction channel.

3. The charging dust collecting device according to claim 2, wherein The inlet of the first dust collection pipe is provided with a first adapter. When the second housing is connected to the first housing, one end of the first adapter is inserted into the third dust collection pipe, and the first adapter is engaged with the side wall of the third dust collection pipe.

4. The charging dust collecting device according to claim 2, wherein The output port of the second dust collection pipe is provided with a second adapter, and the end of the third dust collection pipe away from the first dust collection pipe is inserted into the second adapter.

5. The charging dust collecting device according to claim 1, wherein The first electrical connector is located in the first mounting groove, and the first electrical connector and the inlet of the first dust collection pipe are respectively located on different groove surfaces of the first mounting groove. The second electrical connector is located on the plug-in part, and the second electrical connector and the outlet of the second dust collection pipe are respectively located on different sides of the plug-in part.

6. The charging dust collecting apparatus according to any one of claims 1 to 5, wherein The first housing further defines a first cavity and a second cavity. The fan component is disposed in the first cavity, and the power supply component is disposed in the second cavity. When the second housing is connected to the first housing, the power supply component is located between the dust collection space and the second housing.

7. The charging dust collecting device according to claim 6, wherein The first cavity is separated from the dust collection space by a partition with an opening. The output end of the fan component faces the opening and is opposite to the output port of the first dust collection pipe.

8. The charging dust collecting device according to claim 7, wherein The first housing is also provided with a vent, which corresponds to the first cavity. The vent, the opening, and the outlet of the first dust collection pipe are all at the same height.

9. The charging dust collecting device according to claim 6, wherein The first shell is further provided with a dust collecting cover corresponding to the dust collecting space, the dust collecting cover is movably connected with the first shell, and the output port of the first dust collecting pipeline is located at a position close to the dust collecting cover.

10. A cleaning system characterized by, The charging dust collecting device comprises the charging dust collecting device according to any one of claims 1 to 9.