Patent classifications
B60P1/4442
MULTI-DIRECTIONAL CARGO LOADING/UNLOADING SYSTEM
A vehicle, cargo transfer device of the vehicle and a method of transferring a package between a vehicle to a delivery platform. A lift platform is extended from a floor of the vehicle via a support structure. The package is moved to the lift platform from one of the floor and the delivery platform. The lift platform is rotated via a turntable through a rotation angle. The support structure supports the turntable and the lift platform. The package is moved from the lift platform to the other of the floor and the delivery platform.
VEHICLE INTELLIGENT LIFTING SYSTEM
A vehicle intelligent lifting system, configured to be mounted to a vehicle body including a Controller Area Network (CAN) bus, is provided, including: a control module, in communication with the CAN bus, configured to obtain a signal from the CAN bus; a lifting device, in communication with the control module; wherein the control module determines whether to control the lifting device to operate according to vehicle information from the CAN bus.
Loading and unloading systems and methods
Methods and systems are provided for loading and unloading an item onto a vehicle. In one embodiment, a system includes: a loading system configured to receive a locker configured to store the item; a shuttle transfer system configured to transfer the locker to a storage position within the vehicle; and a swing arm system that couples to the loading system and the shuttle transfer system, the swing arm system configured to adjust a position of the loading system relative to the vehicle.
MOTORCYCLE LIFT
A lift system comprising a chassis having a frame. The frame including a first extension member and a second extension member opposite thereof. Each of the first extension member and the second extension member being extendable and coupled to the frame. A first scissor support is coupled to the first extension member. A second scissor support is coupled to the second extension member. The first and second scissor supports are configured rigid and extendable from each of the first and second extension members. A platform is coupled to each of the first and second scissor support. The platform is configured to rigidly support an object coupled thereto. A first actuator is coupled to the frame. The first actuator is configured to extend and retract the first and second extension members. A second actuator is coupled to the scissor lift and configured to move the platform.
LOADING AND UNLOADING SYSTEMS AND METHODS
Methods and systems are provided for loading and unloading an item onto a vehicle. In one embodiment, a system includes: a loading system configured to receive a locker configured to store the item; a shuttle transfer system configured to transfer the locker to a storage position within the vehicle; and a swing arm system that couples to the loading system and the shuttle transfer system, the swing arm system configured to adjust a position of the loading system relative to the vehicle.
REAR MOUNTED LIFT FOR OVER-THE-ROAD VEHICLE
A powered forklift assembly is configured to be operably mounted on an over-the-road vehicle to shift a load relative to a chassis of the vehicle. The powered forklift assembly includes a shiftable forklift and a vehicle bed. The shiftable forklift includes an extendable mast and a fork mechanism. The fork mechanism is attached to and is vertically shiftable relative to the mast and configured to support the load.
LIFTING DEVICE MOUNTED TO A VEHICLE
A lifting device for mounting to a vehicle includes a lifting surface having dimensions that fit a cargo area of the vehicle, the lifting surface being configured to carry a cargo; a telescoping assembly coupled to the vehicle and configured to horizontally extend by telescoping further than the vehicle; a lifting mechanism coupled to the telescoping assembly and to the lifting surface, the lifting mechanism being configured to move the lifting surface vertically to lift or lower the lifting surface. The lifting device further includes an actuating assembly in communication with the telescoping assembly and the lifting mechanism, the actuating assembly being configured to actuate the telescoping assembly to move horizontally in and out of the cargo area of the vehicle and to actuate the lifting mechanism to move vertically down to a loading surface and up to the cargo area of the vehicle.
LIFT ASSEMBLY FOR A PASSENGER VEHICLE
A wheelchair lift for a passenger vehicle such as a passenger bus, a motorcoach, or a class A motorhome. The wheelchair lift includes a housing having sidewalls and a plurality if bearings and a carriage supporting one or more of electrical, mechanical, and hydraulic components. A lift assembly is coupled to the carriage and includes a first rail and a second rail supported by the plurality of bearings. A first scissor leg assembly is coupled to the first rail and a second scissor leg assembly is coupled to the second rail, wherein each of the first scissor leg assembly and the second scissor leg assembly move between an expanded and a collapsed condition. A platform is coupled to the first the second scissor leg assemblies, wherein movement of the first scissor leg assembly and second scissor leg assembly between the expanded and collapsed condition adjusts a position of the platform.
Multi-directional cargo loading/unloading system
A vehicle, cargo transfer device of the vehicle and a method of transferring a package between a vehicle to a delivery platform. A lift platform is extended from a floor of the vehicle via a support structure. The package is moved to the lift platform from one of the floor and the delivery platform. The lift platform is rotated via a turntable through a rotation angle. The support structure supports the turntable and the lift platform. The package is moved from the lift platform to the other of the floor and the delivery platform.
DELIVERY VEHICLE, DELIVERY VEHICLE CONTROL SYSTEM, DELIVERY VEHICLE CONTROL METHOD, AND NON-TRANSITORY STORAGE MEDIUM
A delivery vehicle includes a vehicle body, an opening that is provided at the vehicle body, that is configured to be opened and closed by a shutter section, and that is configured to place a cabin interior and a cabin exterior in communication with each other, a housing area that is provided at the cabin interior and that is configured to house a package, a rail that is provided at the cabin interior, and a transfer unit that is configured to move along the rail and to transfer the package between the housing area and the opening.