Abstract:
A mop module for a robot cleaner includes: a module body detachably coupled to a cleaner body; and a mop mounted to the module body, and configured to wipe a floor as the cleaner body moves, wherein the module body includes: a hook protruding from the module body, and detachably mounted to the cleaner body by being elastically transformed; and a pressing member installed at the module body so as to be moveable in two opposite directions, and configured to elastically transform the hook in a pressing manner when moved in one direction by a pressing operation.
Abstract:
A robot cleaner is disclosed. The robot cleaner includes: a cleaner body (10); a dust suction unit (14) and a dust collection unit mounted in the cleaner body (10); and a driving device (40) configured to move the cleaner body (10), wherein the driving device (40) comprises: a power generation unit (50) configured to generate power; a power transmission unit (80) configured to transmit the power generated by the power generation unit (50) to a wheel (100); and the wheel (100) rotated by the power transmitted from the power transmission unit (80), the wheel (100) comprises: a wheel member (102) connected to the power transmission unit (80); and a first member (114) and a second member (120) coupled to an outer circumference of the wheel member (102) such that the first member (114) and the second member (120) contact different floors, and the first member (114) and the second member (120) are coupled to the single wheel member (102).
Abstract:
The present disclosure relates to a cleaner which includes: a dustbin having a slit formed on one side thereof; a compression lever housing disposed on an outside of the slit and mounted to the dustbin; a compression plate disposed on an inside of the dustbin and configured to ascend in a direction in which the slit extends; and a sealer disposed in the compression lever housing, coming in close contact with the slit, and extending along the slit. Therefore, the cleaner according to the present disclosure may prevent a problem that is likely to occur during an operation of the compression lever assembly because of trapped dust, and can be maintained in a cleaner state as the user may easily separate the cleaner by assemblies to sterilize the parts.
Abstract:
A robot cleaner includes: a cleaner body; a suction unit provided at a front side of the cleaner body, and configured to suck dust-contained air; a cyclone unit provided at a rear upper side of the suction unit, the cyclone unit having a first suction opening and a second suction opening for sucking air, and the cyclone unit having a first cyclone and a second cyclone for passing air therethrough, the air having dust filtered therefrom by a centrifugal force; a first guiding member and a second guiding member upward extending from the suction unit toward the cyclone unit with an inclination angle, the first guiding member for connection between the suction unit and the first suction opening, the second guiding member for connection between the suction unit and the second suction opening; and a dust box communicated with a dust discharge opening provided at a front side of the cyclone unit so as to collect dust filtered by the cyclone unit, the dust box partially or wholly accommodated between the first and second guiding members.
Abstract:
A robot cleaner includes: a cleaner body; a driving unit configured to provide a driving force; a driving pulley connected to the driving unit, and formed to be rotatable by receiving the driving force from the driving unit; first and second driven pulleys disposed at both sides of the driving pulley; and a belt forming a closed loop by entirely enclosing the driving pulley and the first and second driven pulleys, and configured to rotate the first and second driven pulleys when the driving pulley is rotated.
Abstract:
A mop module for a robot cleaner includes: a module body detachably coupled to a cleaner body; and a mop mounted to the module body, and configured to wipe a floor as the cleaner body moves, wherein the module body includes: a hook protruding from the module body, and detachably mounted to the cleaner body by being elastically transformed; and a pressing member installed at the module body so as to be moveable in two opposite directions, and configured to elastically transform the hook in a pressing manner when moved in one direction by a pressing operation.
Abstract:
Disclosed is a cleaner, including: a suction unit through which air comprising dust is sucked; a suction motor for generating a flow of the air such that the air flows into the suction unit; a cyclone unit in communication with the suction unit, for separating the dust from the air; a handle arranged in a direction opposite to the suction unit with respect to the cyclone unit and including a grip part allowing a user to grip with a hand; and a power supply unit for supplying power to the suction motor, and a longitudinal axis of the suction motor is disposed perpendicular to a longitudinal axis of the suction unit and parallel to a base surface of the power supply unit.
Abstract:
The invention provides a cleaner performing autonomous traveling, the cleaner comprising a main body (10); a driving unit (130) moving the main body (10); a cleaning unit for performing cleaning on a cleaning area in which the main body (10) is positioned; and a controller (180) for controlling an operation of the driving unit (130) and the cleaning unit, wherein the driving unit (130) includes: a main wheel (133) and an auxiliary wheel (137); a motor (131) for generating a driving force; a gear unit (136) connected to the main wheel (133) and the motor (131) for transferring the driving force from the motor (131) to the main wheel (133); a clutch member (138) connected to the gear unit (136) and transferring the driving force from the motor (131) to the auxiliary wheel (137); and an auxiliary shaft member (139) connected between the clutch member (138) and the auxiliary wheel (137), wherein the controller (180) changes an installation position of the auxiliary wheel (137) according to a state of the driving unit (130).