Patent classifications
A45B25/143
UMBRELLA INCLUDING INTEGRATED CAMERA
An intelligent umbrella includes a base assembly, a center support assembly having one or more arm support assemblies, and one or more arms coupled to the one or more arm support assemblies. The center support assembly is a tubular structure to house electrical and mechanical components. The umbrella includes a computing device, the computing device integrated inside the center support assembly. The computing device includes one or more memory devices, one or more processors and computer-readable instructions stored in the one or more memory devices and executable by the one or more processors. The intelligent umbrella includes a shading fabric. The intelligent umbrella includes a camera, the camera to capture images of an area in proximity to the intelligent shading umbrella, the camera integrated inside the center support assembly.
Computer-Readable Instructions Executable by a Processor to Operate an Umbrella
An article includes a non-transitory computer readable medium having stored thereon computer-readable instructions executable by a processor in a computing device of an umbrella to receive a communication request from a mobile communications device to receive measurements from one or more environmental sensors of the umbrella; receive environmental sensor measurements from the one or more environmental sensors; store the received sensor measurements in one or more memory devices; and communicate the sensor measurements to the mobile communication device that requested the measurements from the one or more environmental sensors. The article further comprises computer-readable instructions executable by a processor in a computing device to receive a communication request from the mobile communications device to move a component or assembly of the umbrella; communicate a command to a motor assembly to move the motor assembly; and communicate a status of the motor assembly to the mobile communication device.
INTELLIGENT UMBRELLA AND INTEGRATED AUDIO SUBSYSTEM AND RACK GEAR ASSEMBLY
An umbrella arm expansion assembly, comprising one or more arm expansion gear housings, an actuator housing including a linear actuator; one or more rack gear assemblies; and one or more arm support assemblies. The one or more rack gear assemblies move in a vertical direction in response to vertical movement of the linear actuator.
Umbrellas, Parasols, Shading Systems, Voice-Activated Hubs and Lighting Systems Utilizing Controller Area Network (CAN) Protocol
A shading device includes a base assembly, a support assembly, and an expansion assembly, where the expansion assembly to expand one or more arms to an open position or to retract the one or more arms to a closed position. The shading device includes a Bluetooth Low Energy (BLE) transceiver to receive commands or messages from a mobile computing device to activate one or more assemblies of the shading device; one or more Controller Area Network (CAN) transceivers; and a CAN bus to couple the one or more CAN transceivers to the one or more assemblies. The shading device also includes one or more memory devices; one or more processors; computer-readable instructions executable by the one or more processors to: communicate the commands or messages received from the BLE transceiver to the one or more CAN transceivers, the CAN bus and the one or more assemblies.
An Electrically-operated Umbrella
An electrically-operated umbrella comprises a column (1), an upper tray (2), a lower tray (3), a plurality of long rods (4), a plurality of short rods (5), and an electric air pump (6). One end of each short rod (5) is rotatably connected to the lower tray (3), the other end of each short rod (5) is rotatably connected to the middle portion or the upper portion of the corresponding long rod (4); the column (1) comprises an inner tube (11), and an outer tube (12), the outer tube (12) is sleeved around the inner tube (11); a closed air chamber (A) is defined between the bottom of the inner tube (11) and the bottom or the lower portion of the outer tube (12); the upper tray (2) is connected to the top of the inner tube (11), the lower tray (3) is connected to the outer tube (12) and sleeved around the outer tube (12); the electric air pump (6) is disposed inside the inner tube (11). The present invention is simple in structure, easy and quick to operate, free of lots of structural members, and low in cost. The service life of the umbrella is prolonged, umbrella becomes safer and more reliable in use, and the user experience is greatly improved.
Umbrella opening and closing system
An umbrella apparatus having a canopy portion hingedly coupled to a pole portion. The umbrellas apparatus includes a rechargeable electrical power system that provides electrical power to an electromechanical opening and closing system and a light assembly and an entertainment system. A solar energy system is conductively coupled to the rechargeable electrical power system and is utilized to collect and convert solar energy to electrical energy for recharging the electrical power system. The entertainment system features a USB port and allows users to stream music and control the color of the light assembly.
Umbrellas with Inflatable Portions
Some umbrellas include a support assembly, canopy assembly, and a toroidal air bladder. The support assembly includes a pump and a handle. The canopy assembly includes a plurality of support ribs attached to the handle, and a sheet attached to each of the support ribs. The toroidal air bladder is coupled to the air pump, and the air bladder disposed about the handle and engages the support ribs.
Umbrella system
An umbrella system includes a support pole connected to a rotating tube positioned around a center tube that extends between the support pole and a center support that is connected to an umbrella frame. The rotating tube has one or more helical grooves therein that are engaged by teeth of a hub which is connected to the umbrella frame. As the rotating tube is rotated, the hub is driven along the length of the rotating tube thereby opening and closing the umbrella frame. In one arrangement system includes a motor housing assembly including a plurality of batteries and a motor that includes a driven gear that meshes with a stationary gear which causes rotation of the rotating tube. The system also includes a counterbalance assembly positioned within the rotating tube. The counterbalance assembly includes at least one spring positioned within the rotating tube that provides a counterbalance force.
Shading Device Arm and Blade Assemblies
A shading device includes a base assembly resting on a surface, a support assembly, the support assembly connected to the base assembly; and an expansion assembly, the expansion assembly connected to the support assembly. The shading device further includes one or more arm assemblies, the one or more arm assemblies coupled to the expansion assembly. The one or more arm assemblies including one or more shading arms, one or more shading fabric assemblies, and one or more shading fabric tubes. A shading fabric assembly further includes a first weighted rod, a second weighted rod and shading fabric. The first weighted rod of shading fabric assembly is positioned in an interior portion of a first shading fabric tube and the second weighted rod of shading fabric assembly is positioned in an interior position of a second shading fabric tube.
Apparatus and Method for Identifying Operational Status of Umbrella, Parasol or Shading System Utilizing Lighting Elements
An umbrella includes a first lighting element, a second lighting element, a first electrical component associated with the first lighting element, a second electrical component associated with the second lighting element, and a computing device. The computing device includes one or more processors, one or more physical memory devices and computer-readable instructions being executable by the one or more processors to 1) receive first status message or signals from the first electrical component; 2) receive second status message or signals from the second electrical component; 3) generate first light element commands based, at least in part, on the received first status messages and communicate the generated first light element commands to the first light element; and 4) generate second light element commands based, at least in part, on the received second status messages and communicate the generated second light element commands to the second light element.