Abstract:
A tidying robot system is disclosed that includes a robot capable of moving aside or picking up and redepositing objects that obstruct areas the robot intends to vacuum. The robot includes a chassis, a robot vacuum system with a vacuum generating assembly and a dirt collector, a scoop, pusher pad arms with pusher pads, a robot charge connector, mobility system, a battery, a processor, and a memory storing instructions that, when executed by the processor, allow operation and control of the robot. The tidying robot system also includes a base station with a base station charge connector configured to couple with the robot charge connector. The tidying robot system also includes a robotic control system in at least one of the robot and a cloud server. The tidying robot system also includes logic to implement the operations and methods disclosed.
Abstract:
A cleaning device comprises a surface interaction layer (ML), a cleaning fluid supply (CFF) provided with a cleaning fluid channel (CFC) at the surface interaction layer (ML) for supplying a cleaning fluid to a surface (F) through the surface interaction layer (ML) being in contact with the surface (F), and a dirty fluid drain (DFD) having a dirty fluid channel (DFC) at the surface interaction layer (ML) for draining, by means of underpressure, dirty water from the surface (F) through the surface interaction layer (ML) being in contact with the surface (F).
Abstract:
A manure collecting vehicle includes: a manure collector having a manure collection port and at least one powered rotational manure conveyer to convey manure to the manure collection port as the vehicle drives through the manure; a manure holding tank in manure communication with the manure collection port, collected manure passing through the manure collection port into the manure holding tank as the vehicle drives through the manure; and, an air system to create an air pressure differential between inside the manure holding tank and outside the manure holding tank when the vehicle is driving through the manure to be collected so that the collected manure passes from the manure collection port into the manure holding tank under influence of the air differential.
Abstract:
Provided is an autonomous coverage robot including: a chassis; a set of wheels; a plurality of sensors; and a mopping assembly including: a fluid reservoir for storing a cleaning fluid; a cloth for receiving the cleaning fluid, wherein the cloth is oriented toward a work surface; a means to move at least the cloth of the mopping assembly up and down in a plane perpendicular to the work surface, wherein the means to move at least the cloth of the mopping assembly up and down is controlled automatically based on input provided by at least one of the plurality of sensors; and a means to move at least a portion of the mopping assembly back and forth in a plane parallel to the work surface.
Abstract:
A portable and compact, hand-held electrically powered vacuum tool, designed expressly for suctioning clogs from the drains and traps of sinks and bathtubs to pull clogs out of drains and traps thereby clearing the clog without use of chemicals and recover items such as rings and toothpaste-tube caps that have gone down the drain.
Abstract:
The object of the invention is a filtering device that can be coupled to a suction turbine (30) of the type used to suction pet faeces. Another object of the invention is the vacuum incorporated in said filtering device. The filtering device comprises an outer body (10) and a cartridge (20) that are partially disposed in the interior of the outer body (10) comprising an open front end (26) for suctioning the faeces (40) and a closed rear end (27), at least one opening (21) disposed on the surface (28) for the passage of the air flow (50) from the interior of the cartridge (20) to the interior of the outer body (10) and a filtering material (22).
Abstract:
A vacuum cleaner lint brush accessory system having a lint brush and cradle. The lint brush has longitudinally opposed handle and brush portions. The brush portion has a brush material adapted to remove fibrous substances from a surface to be cleaned. The cradle has a chamber opening leading to a chamber. The chamber extends in the longitudinal direction and is adapted to longitudinally receive at least the brush portion of the lint brush, the chamber has at least one brush cleaning pad adapted to engage the brush material and remove the fibrous substances from the brush material. The chamber further includes an air outlet spaced from the chamber opening. The air outlet is selectively connectable to a vacuum passage of a vacuum cleaner.
Abstract:
An apparatus for clearing dogged drains using a vacuum. The drain unclogging apparatus includes a vacuum and a vacuum hose attached by a coupling sleeve attached to a long, flexible hose which is inserted into a dogged drain to the site of the dog. The apparatus may be used with the vacuum's negative pressure, or with the vacuum's positive pressure to achieve unclogging of a drain.
Abstract:
A duct cleaning attachment includes a hollow body having an exterior surface with a curved under-belly, one of a tapered or rounded leading end, a trailing end, and an interior surface defining an interior cavity. A coupling is positioned at the trailing end wherein the body is coupled to a hose from a vacuum source in a manner that results in air being drawn from the interior cavity by the vacuum source. The body has openings from the exterior surface to the interior surface.
Abstract:
A swivelable vacuum hose coupler of a grooming clipper vacuum attachment includes a front attachment member attachable to a suction head of the vacuum attachment, a rear hose attachment member attachable to an end of a vacuum hose, and an annular swivel collar rigidly attached to a rear end portion of the front attachment member and rotatably coupled to a front end portion of the rear attachment member so as to hold the rear end portion of the front attachment member in an abutting relationship with the front end portion of the rear attachment member and the front attachment member in flow communication with the rear attachment member and to form a swivel joint with the rear attachment member such that the front attachment member can rotate at the swivel joint relative to the rear attachment member and thereby allow the rear attachment member to remain in a stationary position relative to the front attachment member.