Abstract:
A window cleaning apparatus comprises: a first cleaning unit, which is positioned on one side of a window, having at least one built-in first magnetic module comprising a magnet; and a second cleaning unit, which is positioned on the opposite side of the window on which the first cleaning unit is positioned, having at least one built-in second magnetic module, which comprises a magnet having an opposite polarity to the magnetic module of the first cleaning unit so as to generate magnetic attraction with the first magnetic module. The second cleaning unit comprises an induction electricity generating module for generating electricity by inducing the change in the magnetic field emanating from the first magnetic module and/or the second magnetic module into voltage by means of electromagnetic induction.
Abstract:
The present invention relates to an automatic vacuum cleaner. According to an aspect of the present invention, the automatic vacuum cleaner includes a first movement part and a second movement part capable of together moving along an inclined cleaning surface, a movement unit provided in at least one of the first movement part and the second movement part, a cleaning member provided in at least one of the first movement part and the second movement part, and a detection unit which detects states of the cleaning surface, wherein movement speeds of the first movement part and the second movement part are varied according to the states of the cleaning surface.
Abstract:
This invention relates to remote control cleaning apparatus, primarily for use in cleaning both the exterior and interior sides of windows of tall buildings. Hoisting apparatus is adapted to move along a track on the roof of the building and to raise or lower a cleaning unit to a selected window. Control means which may comprise a second or master cleaning unit is provided for manual operation inside the building and electromagnetically couples to the exterior unit. Manual movement of the interior unit causes the exterior unit to follow it, the exterior unit being rendered substantially weightless through suspension by springs. Controls of the positioning, application of the cleaner, and removal thereof are provided at the interior unit and are effective at the exterior unit by electromagnetic coupling through the window and/or by wireless through a switching station at the hoisting apparatus and down to the suspended unit over the suspending wires which comprise electrical leads.
Abstract:
The present invention relates to the technical field of manufacturing of small appliances, and relates to a glass-wiping robot. The glass-wiping robot comprises a robot main body (1), a power cord (4) and a safety buckle (3). The power cord (4) is connected to the robot main body (1), and winds onto the safety buckle (3). The safety buckle (3) is provided thereon with a suction cup (2). The safety buckle (3) sucks on a glass via the suction cup (2). The glass-wiping robot of the present invention provides double protection and improved safety effects when the robot main body inadvertently falls off the window, allows for convenient fixing or moving of the safety buckle, and is convenient to carry.
Abstract:
The present invention relates to the technical field of manufacturing of small appliances, and relates to a glass-wiping robot. The glass-wiping robot comprises a robot main body, a power cord and a safety buckle. The power cord is connected to the robot main body, and winds onto the safety buckle. The safety buckle is provided thereon with a suction cup. The safety buckle sucks on a glass via the suction cup. The glass-wiping robot of the present invention provides double protection and improved safety effects when the robot main body inadvertently falls off the window, allows for convenient fixing or moving of the safety buckle, and is convenient to carry.
Abstract:
A window cleaning apparatus according to an embodiment of the present invention includes a first cleaning unit and a second cleaning unit attached on opposite surfaces of a window, respectively, through a magnetic field, and moving on the opposite surfaces of a window. The window cleaning apparatus includes a first magnetic module included in the first cleaning unit, a second magnetic module included in the second cleaning unit, and a control part moving or rotating at least one of the first and second cleaning units when the magnetic field between the first and second cleaning units is out of a normal range.
Abstract:
In a preferred form, this disclosure relates to a windshield wiper apparatus for wiping a windshield of an automotive vehicle. The windshield-wiping apparatus includes a wiper having an elongated arm and a wiper blade assembly carried by the arm at its upper end and an actuating mechanism for reciprocating the wiper across the windshield between first and second positions. The actuating mechanism includes a dual cam track arrangement for guidably supporting the windshield wiper and which causes the wiper to be moved vertically while simultaneously being generally horizontally reciprocated whereby the resultant path of movement of the wiper blade assembly is linear and transversely across the windshield.