Patent classifications
A61G5/042
SYSTEM AND METHODS FOR TAGGING ACCESSIBILITY FEATURES WITH A MOTORIZED MOBILE SYSTEM
A system and method for a motorized mobile chair use a plurality of sensors having a plurality of sensor types to detect a plurality of objects and generate sensor data about the detected objects, each of the detected objects being a person, the sensor data about the objects comprising a plurality of range measurements to the people and a plurality of bearing measurements to the people. The system has at least one processor to receive the sensor data about the people, group the detected people into a plurality of zones, determine a closest person in each zone, and generate one or more control signals to cause the motorized mobile chair to match a speed and a direction of the closest person in the zone corresponding to a direction of travel of the motorized mobile chair while at least approximately maintaining a selected space to the closest person in the zone corresponding to the direction of travel of the motorized mobile chair.
Motorized personal transporter
A personal transporter includes a seat, a frame having a base and a strut supporting the seat, hinged to the base and pivotable between an open configuration and a folded configuration, a pair of driving wheels and at least one non-driving wheel associated to the base defining, in use, three unaligned points on the ground, a pair of electric motors, a pair of control pedals, each associated to a respective electric motor to drive a respective driving wheel, and a support rod for supporting the strut in the open configuration, hinged to the strut and slidably mounted on the base in a guide. The base has a rear portion for supporting the at least one non-driving wheel and a pair of front portions, each hinged to the strut and integrally rotatable with a respective control pedal.
SYSTEM AND METHOD FOR NAVIGATION SUPPORT FOR A MOTORIZED MOBILE SYSTEM
A system and method for providing precise navigation for a motorized mobile system (MMS) in data deprived environments, the system comprising at least one camera that is operably configured to generate one or more of an image of objects in a field-of-view of the sensors, wherein the object is identified and used to enhance navigation or operation of the MMS.
SYSTEM AND METHODS FOR SENSOR INTEGRATION IN SUPPORT OF SITUATIONAL AWARENESS FOR A MOTORIZED MOBILE SYSTEM
A system and method for providing safety for a motorized mobile system (MMS) are optimized for accurate object detection, the system comprising at least two sensors that are operably configured to generate one or more of a range measurement and a bearing measurement to an object, wherein the range and bearing measurements have associated uncertainties.
CHASSIS FOR A MOBILITY AID AND FOR AN ELECTRIC WHEELCHAIR
A chassis for a mobility aid, the mobility aid including at least one base two lateral walls, and at least one connecting element which connects the two lateral walls. The chassis includes a plurality of positioning aids for each lateral wall, a bracket that can be connected to one lateral wall in at least three different configurations, and a drive unit that is connected to each bracket, wherein a bracket configuration on the lateral walls determines the type of drive for the mobility aid.
SYSTEM AND METHODS FOR SENSOR INTEGRATION IN SUPPORT OF SITUATIONAL AWARENESS FOR A MOTORIZED MOBILE SYSTEM
A system and method for providing safety for a motorized mobile system (MMS) are optimized for accurate object detection, the method comprising generating one or more of a range measurement and a bearing measurement to an object using at least two sensors, wherein the range and bearing measurements have associated uncertainties.
MOVING DEVICE
A moving device is disclosed. The moving device includes a vehicle body, a prime mover, mounted on the vehicle body, a driving rotary body and a driven rotary body. The driving rotary body is configured to be driven by the prime mover. The driven rotary body is rotatably mounted on the vehicle body. The driven rotary body has a larger diameter than that of the driving rotary body. The driven rotary body is configured to rotate by contact with the driving rotary body in a rotational direction or by magnetic coupling force of the driving rotary body.
MOBILE DEVICE AND TRANSMISSION ASSEMBLY
A mobile device includes a body, a motor, a transmission assembly and two driven components. The motor and the transmission assembly are disposed at the body. The transmission assembly includes a differential, two shafts and two stoppers. The differential is coupled to the motor. The two shafts are respectively coupled to the two opposite sides of the differential. The two stoppers are respectively disposed corresponding to the two shafts. The two driven components are respectively connected to the two shafts. When one of the two shafts is locked by the corresponding stopper, the motor may still drive the other shaft and the driven component connected thereto to rotate relative to the body through the differential. A transmission assembly is also provided.
MOVING DEVICE
A moving device adapted to be actuated by a prime mover is disclosed. The moving device allows a caregiver to ride thereon. The moving device comprises a vehicle body and a plurality of rotors. The vehicle body includes a first frame portion and a second frame portion. The first frame portion allows the caregiver to ride thereon and the second frame portion allows a care receiver to ride thereon. The plurality of rotors are provided on the first frame portion and are rotatable in accordance with movement of the vehicle body. A wheel base defined by the plurality of rotors is constant. The second frame portion is provided on the first frame portion so as to be movable in accordance with a motion of the caregiver riding on and getting off the first frame portion.
Elevated height wheelchair
The present disclosure includes a wheelchair configured to reposition an occupant between a lowered and a raised position. The wheelchair can include a frame, a seat moveable relative to the frame, a drive wheel, one or more pairs of arm assemblies, and one or more sensors. The arm assembly includes a wheel configured to move from a first spatial location when the wheelchair is operating on flat, level ground to a second spatial location that is different than the first spatial location. Arm limiters can selectively engage the arm assembly based on at least one of a seat position, position of the arm assembly, and surface conditions of ground surface. The arm limiters can limit the range of motion of the arm assembly and sometimes other operational aspects of the chair.