Abstract:
A docking station for removing wet and dry debris from a floor cleaner. The docking station includes a dry debris conduit for evacuating a debris from the floor cleaner and a wet debris conduit for evacuating liquid and wet debris from the floor cleaner. The liquid and wet debris may be collected from a pad cleaning cycle performed at the docking station. Methods for servicing or performing maintenance on a floor cleaner by a docking station are disclosed.
Abstract:
An autonomous floor cleaning system includes an autonomous floor cleaner with a docking station. The docking station is configured to performing maintenance for the robot, such as washing mopping pads or refilling the supply tank. Methods for servicing or performing maintenance on an autonomous floor cleaner by a docking station are disclosed.
Abstract:
The disclosure provides a base station for a robot cleaner to park, the base station including a storage module configured to store a wiping substrate, a collection bin configured to store a dirty wiping substrate, a wiper replacement module configured to convey the dirty wiping substrate to the collection bin, and a drawing module configured to draw out dirt stored in a dust box.
Abstract:
A docking station for a mobile cleaning robot can include a base, a housing, and a pad cleaning system. The base can be configured to receive the mobile cleaning robot. The housing can be connected to the base. The pad cleaning system can be connected to the housing and can include a reservoir configured to retain liquid therein. The pad cleaning system can also include an agitator located at least partially within the reservoir. The agitator can be engageable with a cleaning pad of the mobile cleaning robot.
Abstract:
An autonomous floor cleaning system includes an autonomous floor cleaner with a docking station. The docking station is configured to performing maintenance for the autonomous floor cleaner, such as refilling the autonomous floor cleaner, emptying the autonomous floor cleaner, washing mopping pads, and/or recharging the autonomous floor cleaner. The docking system can supply heated cleaning fluid to the autonomous floor cleaner. Methods for servicing or performing maintenance on an autonomous floor cleaner by a docking station are disclosed.
Abstract:
A cleaning base station includes a base, a first electrode, an infrared module, and a guiding member. The base includes an open chamber accommodating a cleaning robot, and the open chamber includes a chamber sidewall extending in an arc shape. The first electrode is arranged on the chamber sidewall and contacts a second electrode of the cleaning robot. The infrared module is arranged on the chamber sidewall and aligns the cleaning robot. The guiding member is arranged on the chamber sidewall and protrudes from the chamber sidewall, the guiding member is capable of extending into a guiding groove defined on the cleaning robot, the guiding member includes a guiding part, the guiding part is positioned on one end of the guiding member far away from the chamber sidewall, and a cross-sectional size of the guiding part gradually decreases along a direction away from the chamber sidewall.
Abstract:
A mobile dock is disclosed and includes a receiving unit for receiving the floor cleaner. The paired device may be the floor cleaner, or a smart device of a user. The mobile dock follows a user, such that the dock is conveniently accessible during use of the floor cleaner.
Abstract:
Disclosed is a base station comprising a base and a liquid path system disposed on the base. The liquid path system may comprise a first device and a second device. The first device may be configured to perform a first treatment on water to form a first liquid, and the second device is configured to perform a second treatment on water to form a second liquid. The second liquid may be different from the first liquid in temperature and/or composition. The first device can provide the first liquid with a first function for a cleaning robot, and the second device can provide a second liquid with a second function for the cleaning robot, so that the base station can provide a variety of liquids with different functions for the cleaning robot to meet different floors, different environments, and different user needs.
Abstract:
A robot system includes a supply station. The system further includes: a robot, a robot tank adapted to store a liquid and disposed at the robot; and a supply station configured to supply additional liquid to the tank.
Abstract:
The present disclosure provides a docking station and a cleaning system, where the docking station includes: at least one accommodating chamber, and a docking chamber for docking of a self-moving cleaning apparatus; and a height of the docking station is less than 350 mm. The docking station in the embodiments of the present disclosure has a smaller height and can be placed in a low space, improving adaptability of the docking station. Moreover, the integrated box is movable, and if the integrated box is placed in an embedded mode, replacement of consumables is realized by moving the integrated box, without the need to move the docking station out of the embedded space, thereby making the replacement of consumables to be more convenient.