A47L9/30

Cleaning device and lamp
09848749 · 2017-12-26 · ·

A cleaning device is provided with at least removable lamp console. When the lamp console is attached, the device can be used as a floor or desk lamp to illuminate a room and/or a table-top. The lamp console is removable to enable the device and/or lamp console to be used as a cleaner to clean a floor or other cleaning surface. Each lamp console is provided with a coupling mechanism that enables selective and electro-mechanical communication with a coupling mechanism of a cleaning device. This coupling enables interchangeability of various lamp consoles. Embodiments provide for a lamp console that acts as a handle-extension. Further embodiments provide for a second illumination display disposed on a portion of the cleaning device.

Cleaning device and lamp
09848749 · 2017-12-26 · ·

A cleaning device is provided with at least removable lamp console. When the lamp console is attached, the device can be used as a floor or desk lamp to illuminate a room and/or a table-top. The lamp console is removable to enable the device and/or lamp console to be used as a cleaner to clean a floor or other cleaning surface. Each lamp console is provided with a coupling mechanism that enables selective and electro-mechanical communication with a coupling mechanism of a cleaning device. This coupling enables interchangeability of various lamp consoles. Embodiments provide for a lamp console that acts as a handle-extension. Further embodiments provide for a second illumination display disposed on a portion of the cleaning device.

Vacuum

The present invention is directed to a vacuum including a dust extraction system. The system includes a filter assembly, an airflow generation assembly, and valve assembly. The airflow generation assembly is configured to draw contaminated air toward the filter assembly and exhaust filtered air as a discharge stream. The filter assembly is configured to remove contaminants from the contaminated airflow by capturing particulate material suspended within the airflow. The valve assembly is configured to selectively direct filtered airflow into the filter assembly such that the filtered air stream cleans the filter.

Vacuum

The present invention is directed to a vacuum including a dust extraction system. The system includes a filter assembly, an airflow generation assembly, and valve assembly. The airflow generation assembly is configured to draw contaminated air toward the filter assembly and exhaust filtered air as a discharge stream. The filter assembly is configured to remove contaminants from the contaminated airflow by capturing particulate material suspended within the airflow. The valve assembly is configured to selectively direct filtered airflow into the filter assembly such that the filtered air stream cleans the filter.

Light indicator system for an autonomous mobile robot

An autonomous mobile robot includes a body, a drive supporting the body above a floor surface, a light-propagating plate positioned on the body and having a periphery defining a continuous loop, light sources each being positioned to direct light through a portion of the plate to a portion of the continuous loop, and a controller to selectively operate the light sources to provide a visual indicator of a status or service condition of the autonomous mobile robot. The drive is configured to maneuver the mobile robot about the floor surface.

Light indicator system for an autonomous mobile robot

An autonomous mobile robot includes a body, a drive supporting the body above a floor surface, a light-propagating plate positioned on the body and having a periphery defining a continuous loop, light sources each being positioned to direct light through a portion of the plate to a portion of the continuous loop, and a controller to selectively operate the light sources to provide a visual indicator of a status or service condition of the autonomous mobile robot. The drive is configured to maneuver the mobile robot about the floor surface.

Moving robot without detection dead zone

There is provided a moving robot including a first light source module and a second light source module respectively project a first light section and a second light section, which are vertical light sections, in front of a moving direction, wherein the first light section and the second light section cross with each other at a predetermined distance in front of the moving robot so as to eliminate a detection dead zone between the first light source module and the second light source module in front of the moving robot to avoid collision with an object during operation.

Communicative lighting system for a floor cleaning device

Robotic devices are provided that can be operated in an autonomous mode. In various embodiments, the devices comprise lighting elements that are capable of displaying information to humans within a robotic environment. A variety of future and near-future actions are expressed through different operations and sequences of the lighting elements. The lighting elements further enable the device to express a current status.

ROBOT CLEANER
20170332871 · 2017-11-23 ·

A robot cleaner of the present disclosure comprises a main body configured to travel in a cleaning zone and to suction a foreign substance on a floor in the cleaning zone, an image sensor provided on the main body and configured to obtain an image of a predetermined area at a front side of the main body, a first light source provided on the main body and configured to emit a first pattern of light to a first sub-area of the predetermined area and a second light source provided on the main body at a position below the first light source and configured to emit a second pattern of light to a second sub-area of the predetermined area, the first sub-area being located lower than the second sub-area.

MOBILE ROBOT AND METHOD OF CONTROLLING THE SAME
20170332872 · 2017-11-23 ·

A mobile robot of the present disclosure includes a first pattern emission unit configured to emit a first patterned light downward and forward from the main body on a floor of an area to be cleaned; and an image acquisition unit configured to acquire an image of first patterned light emitted by the first pattern emission unit and incident on an obstacle. A pattern is detected from the acquired image to determine an obstacle, and a cliff is detected based on at least one of a shape or a position of the pattern in the image. The mobile robot may identify a travel path that does not lead to the cliff.