Abstract:
One aspect of the present disclosure relates to a robot maintenance station comprising a station housing (120), a docking platform (122) carried by the station housing (120) and configured to support a robot (10) when docked, a collection bin (150), a vacuum filter (910) and a cyclonic or other circulatory bagless vacuuming system configured to draw air and debris from the robot cleaning bin (50) to deposit the debris into the debris bin (150) using centripetal acceleration of debris to divert debris from an air flow or the vacuum filter (910).
Abstract:
An autonomous cleaning apparatus including a body, a brush unit which is rotatably installed onto the body to collect dust from a bottom of the body, and a brush cleaning member including a first brush cleaning protrusion and a second brush cleaning protrusion that protrude toward the brush unit to make contact with the brush unit to remove foreign substances wound around the brush unit.
Abstract:
In a cleaning system, dust stored in a dust box is suspended in air introduced into the dust box through a first opening formed through a robot cleaner, and is then discharged to a second opening formed through a maintenance station through the first opening of the robot cleaner.
Abstract:
Die Erfindung betrifft ein zu verfahrendes Kehrgerät (1) mit einer Kehrbürste (6), einem zugeordneten Schmutzsammelraum (9), einer Flüssigkeits-Auftragseinrichtung (10), die in Verfahrrichtung (r) hinter der Kehrbürste (6) angeordnet ist, und einer Entfeuchtungs-Einrichtung (17), wobei vor der Entfeuchtungs-Einrichtung (17) eine Reinigungseinrichtung (15) angeordnet ist. Um ein verfahrendes Kehrgerät anzugeben, das hinsichtlich der Anordnung und Abfolge von Funktionseinheiten günstig ausgebildet ist, wird vorgeschlagen, dass die Entfeuchtungs-Einrichtung (17) hinter der Flüssigkeits-Auftragsvorrichtung (10) angeordnet ist, dass die Reinigungseinrichtung eine Reinigungswalze (15) ist, und dass die Reinigungswalze (15) mit einem Reinigungstuch (16) bespannt ist.
Abstract:
A docking station (190) is provided for allowing decontaminating parts of a floor care device (100). The floor care device (100) comprises at least one part (110) that is susceptible to contamination when the floor care device is used in a floor care mode. The method comprises detecting a transition of the floor care device (100) to a park mode, and in response thereto, executing a decontamination program, the decontamination program including emitting light with a wavelength of 222 nm and thereby illuminating the at least one part for the decontamination thereof.
Abstract:
A cleaning robot system is provided. The cleaning robot system includes a cleaning robot including one or more mop members configured to clean a surface and a base station that operates in conjunction with the cleaning robot. The base station includes a housing, a cleaning notch disposed in the housing and configured to receive the one or more mop members during a cleaning process for cleaning the one or more mop members, at least one fluid inlet structure configured to supply a cleaning fluid to at least a portion of the one or more mop members, one or more protruding portions disposed in the cleaning notch and configured to scrape off the cleaning fluid from at least the portion of the one or more mop members, and a fluid discharge structure configured to drain the cleaning fluid from the cleaning notch.
Abstract:
A water tank is provided for communicating with a cleaning system on a base station body of a base station and outside of the base station. The water tank includes a clean water cavity configured to hold clean water, a clean water input channel configured to be communicated with the clean water cavity and an external water source outside the base station, a clean water output channel configured to be communicated with the clean water cavity and the cleaning system on the base station body, a sewage cavity configured to hold sewage, a sewage input channel configured to be communicated with the cleaning system on the base station body and the sewage cavity, and a sewage output channel configured to be communicated with the sewage cavity and outside of the base station.
Abstract:
A docking station for a robotic vacuum cleaner may include a docking unit having a traveling path for the robotic vacuum cleaner to enter the docking station and travel to a mopping cloth attachment position where a mopping cloth is attachable to the vacuum cleaner. The docking station also includes a mopping cloth supply unit disposed above the docking unit and configured to receive a plurality of mopping cloths, and the plurality of mopping cloths are side by side along a horizontal direction. The mopping cloth supply unit may include a mopping cloth transporting unit that are configured so that the mopping cloth transporting unit sequentially transports each mopping cloth of the plurality of mopping cloths received by the mopping cloth supply unit along the horizontal direction to an outlet to be discharged through the outlet to the mopping cloth attachment position.